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/* Copyright (c) 2000, 2011, Oracle and/or its affiliates. All rights reserved.
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   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
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   the Free Software Foundation; version 2 of the License.
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   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.
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   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., 59 Temple Place, Suite 330, Boston, MA  02111-1307  USA */


/* Some general useful functions */

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#include "my_global.h"                          /* NO_EMBEDDED_ACCESS_CHECKS */
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#include "sql_priv.h"
#include "unireg.h"                    // REQUIRED: for other includes
#include "table.h"
#include "frm_crypt.h"           // get_crypt_for_frm
#include "key.h"                                // find_ref_key
#include "sql_table.h"                          // build_table_filename,
                                                // primary_key_name
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#include "sql_trigger.h"
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#include "sql_parse.h"                          // free_items
#include "strfunc.h"                            // unhex_type2
#include "sql_partition.h"       // mysql_unpack_partition,
                                 // fix_partition_func, partition_info
#include "sql_acl.h"             // *_ACL, acl_getroot_no_password
#include "sql_base.h"            // release_table_share
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#include <m_ctype.h>
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#include "my_md5.h"
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#include "sql_select.h"
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#include "mdl.h"                 // MDL_wait_for_graph_visitor
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/* INFORMATION_SCHEMA name */
LEX_STRING INFORMATION_SCHEMA_NAME= {C_STRING_WITH_LEN("information_schema")};

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/* PERFORMANCE_SCHEMA name */
LEX_STRING PERFORMANCE_SCHEMA_DB_NAME= {C_STRING_WITH_LEN("performance_schema")};

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/* MYSQL_SCHEMA name */
LEX_STRING MYSQL_SCHEMA_NAME= {C_STRING_WITH_LEN("mysql")};

/* GENERAL_LOG name */
LEX_STRING GENERAL_LOG_NAME= {C_STRING_WITH_LEN("general_log")};

/* SLOW_LOG name */
LEX_STRING SLOW_LOG_NAME= {C_STRING_WITH_LEN("slow_log")};

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	/* Functions defined in this file */

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void open_table_error(TABLE_SHARE *share, int error, int db_errno,
                      myf errortype, int errarg);
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static int open_binary_frm(THD *thd, TABLE_SHARE *share,
                           uchar *head, File file);
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static void fix_type_pointers(const char ***array, TYPELIB *point_to_type,
			      uint types, char **names);
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static uint find_field(Field **fields, uchar *record, uint start, uint length);
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inline bool is_system_table_name(const char *name, uint length);
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static ulong get_form_pos(File file, uchar *head);

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/**************************************************************************
  Object_creation_ctx implementation.
**************************************************************************/

Object_creation_ctx *Object_creation_ctx::set_n_backup(THD *thd)
{
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  Object_creation_ctx *backup_ctx;
  DBUG_ENTER("Object_creation_ctx::set_n_backup");
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  backup_ctx= create_backup_ctx(thd);
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  change_env(thd);

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  DBUG_RETURN(backup_ctx);
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}

void Object_creation_ctx::restore_env(THD *thd, Object_creation_ctx *backup_ctx)
{
  if (!backup_ctx)
    return;

  backup_ctx->change_env(thd);

  delete backup_ctx;
}

/**************************************************************************
  Default_object_creation_ctx implementation.
**************************************************************************/

Default_object_creation_ctx::Default_object_creation_ctx(THD *thd)
  : m_client_cs(thd->variables.character_set_client),
    m_connection_cl(thd->variables.collation_connection)
{ }

Default_object_creation_ctx::Default_object_creation_ctx(
  CHARSET_INFO *client_cs, CHARSET_INFO *connection_cl)
  : m_client_cs(client_cs),
    m_connection_cl(connection_cl)
{ }

Object_creation_ctx *
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Default_object_creation_ctx::create_backup_ctx(THD *thd) const
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{
  return new Default_object_creation_ctx(thd);
}

void Default_object_creation_ctx::change_env(THD *thd) const
{
  thd->variables.character_set_client= m_client_cs;
  thd->variables.collation_connection= m_connection_cl;

  thd->update_charset();
}

/**************************************************************************
  View_creation_ctx implementation.
**************************************************************************/

View_creation_ctx *View_creation_ctx::create(THD *thd)
{
  View_creation_ctx *ctx= new (thd->mem_root) View_creation_ctx(thd);

  return ctx;
}

/*************************************************************************/

View_creation_ctx * View_creation_ctx::create(THD *thd,
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                                              TABLE_LIST *view)
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{
  View_creation_ctx *ctx= new (thd->mem_root) View_creation_ctx(thd);

  /* Throw a warning if there is NULL cs name. */

  if (!view->view_client_cs_name.str ||
      !view->view_connection_cl_name.str)
  {
    push_warning_printf(thd, MYSQL_ERROR::WARN_LEVEL_NOTE,
                        ER_VIEW_NO_CREATION_CTX,
                        ER(ER_VIEW_NO_CREATION_CTX),
                        (const char *) view->db,
                        (const char *) view->table_name);

    ctx->m_client_cs= system_charset_info;
    ctx->m_connection_cl= system_charset_info;

    return ctx;
  }

  /* Resolve cs names. Throw a warning if there is unknown cs name. */

  bool invalid_creation_ctx;

  invalid_creation_ctx= resolve_charset(view->view_client_cs_name.str,
                                        system_charset_info,
                                        &ctx->m_client_cs);

  invalid_creation_ctx= resolve_collation(view->view_connection_cl_name.str,
                                          system_charset_info,
                                          &ctx->m_connection_cl) ||
                        invalid_creation_ctx;

  if (invalid_creation_ctx)
  {
    sql_print_warning("View '%s'.'%s': there is unknown charset/collation "
                      "names (client: '%s'; connection: '%s').",
                      (const char *) view->db,
                      (const char *) view->table_name,
                      (const char *) view->view_client_cs_name.str,
                      (const char *) view->view_connection_cl_name.str);

    push_warning_printf(thd, MYSQL_ERROR::WARN_LEVEL_NOTE,
                        ER_VIEW_INVALID_CREATION_CTX,
                        ER(ER_VIEW_INVALID_CREATION_CTX),
                        (const char *) view->db,
                        (const char *) view->table_name);
  }

  return ctx;
}

/*************************************************************************/

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/* Get column name from column hash */

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static uchar *get_field_name(Field **buff, size_t *length,
                             my_bool not_used __attribute__((unused)))
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{
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  *length= (uint) strlen((*buff)->field_name);
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  return (uchar*) (*buff)->field_name;
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}

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/*
  Returns pointer to '.frm' extension of the file name.

  SYNOPSIS
    fn_rext()
    name       file name

  DESCRIPTION
    Checks file name part starting with the rightmost '.' character,
    and returns it if it is equal to '.frm'. 

  TODO
    It is a good idea to get rid of this function modifying the code
    to garantee that the functions presently calling fn_rext() always
    get arguments in the same format: either with '.frm' or without '.frm'.

  RETURN VALUES
    Pointer to the '.frm' extension. If there is no extension,
    or extension is not '.frm', pointer at the end of file name.
*/

char *fn_rext(char *name)
{
  char *res= strrchr(name, '.');
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  if (res && !strcmp(res, reg_ext))
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    return res;
  return name + strlen(name);
}

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TABLE_CATEGORY get_table_category(const LEX_STRING *db, const LEX_STRING *name)
{
  DBUG_ASSERT(db != NULL);
  DBUG_ASSERT(name != NULL);

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  if (is_infoschema_db(db->str, db->length))
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    return TABLE_CATEGORY_INFORMATION;
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  if ((db->length == PERFORMANCE_SCHEMA_DB_NAME.length) &&
      (my_strcasecmp(system_charset_info,
                     PERFORMANCE_SCHEMA_DB_NAME.str,
                     db->str) == 0))
    return TABLE_CATEGORY_PERFORMANCE;
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  if ((db->length == MYSQL_SCHEMA_NAME.length) &&
      (my_strcasecmp(system_charset_info,
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                     MYSQL_SCHEMA_NAME.str,
                     db->str) == 0))
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  {
    if (is_system_table_name(name->str, name->length))
      return TABLE_CATEGORY_SYSTEM;

    if ((name->length == GENERAL_LOG_NAME.length) &&
        (my_strcasecmp(system_charset_info,
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                       GENERAL_LOG_NAME.str,
                       name->str) == 0))
      return TABLE_CATEGORY_LOG;
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    if ((name->length == SLOW_LOG_NAME.length) &&
        (my_strcasecmp(system_charset_info,
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                       SLOW_LOG_NAME.str,
                       name->str) == 0))
      return TABLE_CATEGORY_LOG;
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  }

  return TABLE_CATEGORY_USER;
}

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/*
  Allocate a setup TABLE_SHARE structure

  SYNOPSIS
    alloc_table_share()
    TABLE_LIST		Take database and table name from there
    key			Table cache key (db \0 table_name \0...)
    key_length		Length of key

  RETURN
    0  Error (out of memory)
    #  Share
*/

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TABLE_SHARE *alloc_table_share(TABLE_LIST *table_list, char *key,
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                               uint key_length)
{
  MEM_ROOT mem_root;
  TABLE_SHARE *share;
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  char *key_buff, *path_buff;
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  char path[FN_REFLEN];
  uint path_length;
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  DBUG_ENTER("alloc_table_share");
  DBUG_PRINT("enter", ("table: '%s'.'%s'",
                       table_list->db, table_list->table_name));
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  path_length= build_table_filename(path, sizeof(path) - 1,
                                    table_list->db,
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                                    table_list->table_name, "", 0);
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  init_sql_alloc(&mem_root, TABLE_ALLOC_BLOCK_SIZE, 0);
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  if (multi_alloc_root(&mem_root,
                       &share, sizeof(*share),
                       &key_buff, key_length,
                       &path_buff, path_length + 1,
                       NULL))
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  {
    bzero((char*) share, sizeof(*share));

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    share->set_table_cache_key(key_buff, key, key_length);
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    share->path.str= path_buff;
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    share->path.length= path_length;
    strmov(share->path.str, path);
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    share->normalized_path.str=    share->path.str;
    share->normalized_path.length= path_length;
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    share->version=       refresh_version;

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    /*
      Since alloc_table_share() can be called without any locking (for
      example, ha_create_table... functions), we do not assign a table
      map id here.  Instead we assign a value that is not used
      elsewhere, and then assign a table map id inside open_table()
      under the protection of the LOCK_open mutex.
    */
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    share->table_map_id= ~0UL;
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    share->cached_row_logging_check= -1;

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    share->used_tables.empty();
    share->free_tables.empty();
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    share->m_flush_tickets.empty();
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    memcpy((char*) &share->mem_root, (char*) &mem_root, sizeof(mem_root));
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    mysql_mutex_init(key_TABLE_SHARE_LOCK_ha_data,
                     &share->LOCK_ha_data, MY_MUTEX_INIT_FAST);
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  }
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  DBUG_RETURN(share);
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}


/*
  Initialize share for temporary tables

  SYNOPSIS
    init_tmp_table_share()
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    thd         thread handle
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    share	Share to fill
    key		Table_cache_key, as generated from create_table_def_key.
		must start with db name.    
    key_length	Length of key
    table_name	Table name
    path	Path to file (possible in lower case) without .frm

  NOTES
    This is different from alloc_table_share() because temporary tables
    don't have to be shared between threads or put into the table def
    cache, so we can do some things notable simpler and faster

    If table is not put in thd->temporary_tables (happens only when
    one uses OPEN TEMPORARY) then one can specify 'db' as key and
    use key_length= 0 as neither table_cache_key or key_length will be used).
*/

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void init_tmp_table_share(THD *thd, TABLE_SHARE *share, const char *key,
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                          uint key_length, const char *table_name,
                          const char *path)
{
  DBUG_ENTER("init_tmp_table_share");
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  DBUG_PRINT("enter", ("table: '%s'.'%s'", key, table_name));
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  bzero((char*) share, sizeof(*share));
  init_sql_alloc(&share->mem_root, TABLE_ALLOC_BLOCK_SIZE, 0);
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  share->table_category=         TABLE_CATEGORY_TEMPORARY;
  share->tmp_table=              INTERNAL_TMP_TABLE;
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  share->db.str=                 (char*) key;
  share->db.length=		 strlen(key);
  share->table_cache_key.str=    (char*) key;
  share->table_cache_key.length= key_length;
  share->table_name.str=         (char*) table_name;
  share->table_name.length=      strlen(table_name);
  share->path.str=               (char*) path;
  share->normalized_path.str=    (char*) path;
  share->path.length= share->normalized_path.length= strlen(path);
  share->frm_version= 		 FRM_VER_TRUE_VARCHAR;

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  share->cached_row_logging_check= -1;
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  /*
    table_map_id is also used for MERGE tables to suppress repeated
    compatibility checks.
  */
  share->table_map_id= (ulong) thd->query_id;

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  share->used_tables.empty();
  share->free_tables.empty();
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  share->m_flush_tickets.empty();
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  DBUG_VOID_RETURN;
}


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/**
  Release resources (plugins) used by the share and free its memory.
  TABLE_SHARE is self-contained -- it's stored in its own MEM_ROOT.
  Free this MEM_ROOT.
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*/

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void TABLE_SHARE::destroy()
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{
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  uint idx;
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  KEY *info_it;
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  /* The mutex is initialized only for shares that are part of the TDC */
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  if (tmp_table == NO_TMP_TABLE)
    mysql_mutex_destroy(&LOCK_ha_data);
  my_hash_free(&name_hash);
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  plugin_unlock(NULL, db_plugin);
  db_plugin= NULL;
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  /* Release fulltext parsers */
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  info_it= key_info;
  for (idx= keys; idx; idx--, info_it++)
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  {
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    if (info_it->flags & HA_USES_PARSER)
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    {
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      plugin_unlock(NULL, info_it->parser);
      info_it->flags= 0;
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    }
  }
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  if (ha_data_destroy)
  {
    ha_data_destroy(ha_data);
    ha_data_destroy= NULL;
  }
#ifdef WITH_PARTITION_STORAGE_ENGINE
  if (ha_part_data_destroy)
  {
    ha_part_data_destroy(ha_part_data);
    ha_part_data_destroy= NULL;
  }
#endif /* WITH_PARTITION_STORAGE_ENGINE */
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  /*
    Make a copy since the share is allocated in its own root,
    and free_root() updates its argument after freeing the memory.
  */
  MEM_ROOT own_root= mem_root;
  free_root(&own_root, MYF(0));
}

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/*
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  Free table share and memory used by it

  SYNOPSIS
    free_table_share()
    share		Table share
*/

void free_table_share(TABLE_SHARE *share)
{
  DBUG_ENTER("free_table_share");
  DBUG_PRINT("enter", ("table: %s.%s", share->db.str, share->table_name.str));
  DBUG_ASSERT(share->ref_count == 0);

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  if (share->m_flush_tickets.is_empty())
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  {
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    /*
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      No threads are waiting for this share to be flushed (the
      share is not old, is for a temporary table, or just nobody
      happens to be waiting for it). Destroy it.
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    */
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    share->destroy();
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  }
  else
  {
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    Wait_for_flush_list::Iterator it(share->m_flush_tickets);
    Wait_for_flush *ticket;
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    /*
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      We're about to iterate over a list that is used
      concurrently. Make sure this never happens without a lock.
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    */
    mysql_mutex_assert_owner(&LOCK_open);

    while ((ticket= it++))
      (void) ticket->get_ctx()->m_wait.set_status(MDL_wait::GRANTED);
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    /*
      If there are threads waiting for this share to be flushed,
      the last one to receive the notification will destroy the
      share. At this point the share is removed from the table
      definition cache, so is OK to proceed here without waiting
      for this thread to do the work.
    */
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  }
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  DBUG_VOID_RETURN;
}
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/**
  Return TRUE if a table name matches one of the system table names.
  Currently these are:

  help_category, help_keyword, help_relation, help_topic,
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  proc, event
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  time_zone, time_zone_leap_second, time_zone_name, time_zone_transition,
  time_zone_transition_type

  This function trades accuracy for speed, so may return false
  positives. Presumably mysql.* database is for internal purposes only
  and should not contain user tables.
*/

inline bool is_system_table_name(const char *name, uint length)
{
  CHARSET_INFO *ci= system_charset_info;

  return (
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           /* mysql.proc table */
           (length == 4 &&
             my_tolower(ci, name[0]) == 'p' && 
             my_tolower(ci, name[1]) == 'r' &&
             my_tolower(ci, name[2]) == 'o' &&
             my_tolower(ci, name[3]) == 'c') ||

           (length > 4 &&
             (
               /* one of mysql.help* tables */
               (my_tolower(ci, name[0]) == 'h' &&
                 my_tolower(ci, name[1]) == 'e' &&
                 my_tolower(ci, name[2]) == 'l' &&
                 my_tolower(ci, name[3]) == 'p') ||

               /* one of mysql.time_zone* tables */
               (my_tolower(ci, name[0]) == 't' &&
                 my_tolower(ci, name[1]) == 'i' &&
                 my_tolower(ci, name[2]) == 'm' &&
                 my_tolower(ci, name[3]) == 'e') ||

               /* mysql.event table */
               (my_tolower(ci, name[0]) == 'e' &&
                 my_tolower(ci, name[1]) == 'v' &&
                 my_tolower(ci, name[2]) == 'e' &&
                 my_tolower(ci, name[3]) == 'n' &&
                 my_tolower(ci, name[4]) == 't')
             )
           )
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         );
}


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/**
  Check if a string contains path elements
*/  

static inline bool has_disabled_path_chars(const char *str)
{
  for (; *str; str++)
    switch (*str)
    {
      case FN_EXTCHAR:
      case '/':
      case '\\':
      case '~':
      case '@':
        return TRUE;
    }
  return FALSE;
}


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/*
  Read table definition from a binary / text based .frm file
  
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  SYNOPSIS
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  open_table_def()
  thd		Thread handler
  share		Fill this with table definition
  db_flags	Bit mask of the following flags: OPEN_VIEW
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  NOTES
    This function is called when the table definition is not cached in
    table_def_cache
    The data is returned in 'share', which is alloced by
    alloc_table_share().. The code assumes that share is initialized.
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  RETURN VALUES
   0	ok
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   1	Error (see open_table_error)
   2    Error (see open_table_error)
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   3    Wrong data in .frm file
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   4    Error (see open_table_error)
   5    Error (see open_table_error: charset unavailable)
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   6    Unknown .frm version
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*/
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int open_table_def(THD *thd, TABLE_SHARE *share, uint db_flags)
{
  int error, table_type;
  bool error_given;
  File file;
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  uchar head[64];
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  char	path[FN_REFLEN];
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  MEM_ROOT **root_ptr, *old_root;
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  DBUG_ENTER("open_table_def");
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  DBUG_PRINT("enter", ("table: '%s'.'%s'  path: '%s'", share->db.str,
                       share->table_name.str, share->normalized_path.str));
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  error= 1;
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  error_given= 0;
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  strxmov(path, share->normalized_path.str, reg_ext, NullS);
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  if ((file= mysql_file_open(key_file_frm,
                             path, O_RDONLY | O_SHARE, MYF(0))) < 0)
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  {
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    /*
      We don't try to open 5.0 unencoded name, if
      - non-encoded name contains '@' signs, 
        because '@' can be misinterpreted.
        It is not clear if '@' is escape character in 5.1,
        or a normal character in 5.0.
        
      - non-encoded db or table name contain "#mysql50#" prefix.
        This kind of tables must have been opened only by the
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        mysql_file_open() above.
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    */
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    if (has_disabled_path_chars(share->table_name.str) ||
        has_disabled_path_chars(share->db.str) ||
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        !strncmp(share->db.str, MYSQL50_TABLE_NAME_PREFIX,
                 MYSQL50_TABLE_NAME_PREFIX_LENGTH) ||
        !strncmp(share->table_name.str, MYSQL50_TABLE_NAME_PREFIX,
                 MYSQL50_TABLE_NAME_PREFIX_LENGTH))
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      goto err_not_open;

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    /* Try unencoded 5.0 name */
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    uint length;
    strxnmov(path, sizeof(path)-1,
             mysql_data_home, "/", share->db.str, "/",
             share->table_name.str, reg_ext, NullS);
    length= unpack_filename(path, path) - reg_ext_length;
    /*
      The following is a safety test and should never fail
      as the old file name should never be longer than the new one.
    */
    DBUG_ASSERT(length <= share->normalized_path.length);
    /*
      If the old and the new names have the same length,
      then table name does not have tricky characters,
      so no need to check the old file name.
    */
    if (length == share->normalized_path.length ||
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        ((file= mysql_file_open(key_file_frm,
                                path, O_RDONLY | O_SHARE, MYF(0))) < 0))
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      goto err_not_open;

    /* Unencoded 5.0 table name found */
    path[length]= '\0'; // Remove .frm extension
    strmov(share->normalized_path.str, path);
    share->normalized_path.length= length;
  }
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658
  error= 4;
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  if (mysql_file_read(file, head, 64, MYF(MY_NABP)))
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    goto err;
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  if (head[0] == (uchar) 254 && head[1] == 1)
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  {
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    if (head[2] == FRM_VER || head[2] == FRM_VER+1 ||
        (head[2] >= FRM_VER+3 && head[2] <= FRM_VER+4))
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    {
      /* Open view only */
      if (db_flags & OPEN_VIEW_ONLY)
      {
        error_given= 1;
        goto err;
      }
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      table_type= 1;
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    }
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    else
    {
      error= 6;                                 // Unkown .frm version
      goto err;
    }
  }
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  else if (memcmp(head, STRING_WITH_LEN("TYPE=")) == 0)
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  {
    error= 5;
    if (memcmp(head+5,"VIEW",4) == 0)
    {
      share->is_view= 1;
      if (db_flags & OPEN_VIEW)
        error= 0;
    }
    goto err;
  }
  else
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    goto err;
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  /* No handling of text based files yet */
  if (table_type == 1)
  {
    root_ptr= my_pthread_getspecific_ptr(MEM_ROOT**, THR_MALLOC);
    old_root= *root_ptr;
    *root_ptr= &share->mem_root;
    error= open_binary_frm(thd, share, head, file);
    *root_ptr= old_root;
    error_given= 1;
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  }

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  share->table_category= get_table_category(& share->db, & share->table_name);

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  if (!error)
    thd->status_var.opened_shares++;
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err:
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  mysql_file_close(file, MYF(MY_WME));
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err_not_open:
  if (error && !error_given)
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  {
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    share->error= error;
    open_table_error(share, error, (share->open_errno= my_errno), 0);
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  }
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  DBUG_RETURN(error);
}


/*
  Read data from a binary .frm file from MySQL 3.23 - 5.0 into TABLE_SHARE
*/

static int open_binary_frm(THD *thd, TABLE_SHARE *share, uchar *head,
                           File file)
{
  int error, errarg= 0;
  uint new_frm_ver, field_pack_length, new_field_pack_flag;
  uint interval_count, interval_parts, read_length, int_length;
  uint db_create_options, keys, key_parts, n_length;
  uint key_info_length, com_length, null_bit_pos;
  uint extra_rec_buf_length;
  uint i,j;
  bool use_hash;
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  char *keynames, *names, *comment_pos;
741
  uchar forminfo[288];
742
  uchar *record;
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  uchar *disk_buff, *strpos, *null_flags, *null_pos;
  ulong pos, record_offset, *rec_per_key, rec_buff_length;
  handler *handler_file= 0;
  KEY	*keyinfo;
  KEY_PART_INFO *key_part;
  SQL_CRYPT *crypted=0;
  Field  **field_ptr, *reg_field;
  const char **interval_array;
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  enum legacy_db_type legacy_db_type;
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  my_bitmap_map *bitmaps;
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  DBUG_ENTER("open_binary_frm");

  new_field_pack_flag= head[27];
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  new_frm_ver= (head[2] - FRM_VER);
757
  field_pack_length= new_frm_ver < 2 ? 11 : 17;
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  disk_buff= 0;
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  error= 3;
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  /* Position of the form in the form file. */
  if (!(pos= get_form_pos(file, head)))
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    goto err;                                   /* purecov: inspected */
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  mysql_file_seek(file,pos,MY_SEEK_SET,MYF(0));
  if (mysql_file_read(file, forminfo,288,MYF(MY_NABP)))
    goto err;
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  share->frm_version= head[2];
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  /*
    Check if .frm file created by MySQL 5.0. In this case we want to
    display CHAR fields as CHAR and not as VARCHAR.
    We do it this way as we want to keep the old frm version to enable
    MySQL 4.1 to read these files.
  */
  if (share->frm_version == FRM_VER_TRUE_VARCHAR -1 && head[33] == 5)
    share->frm_version= FRM_VER_TRUE_VARCHAR;

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#ifdef WITH_PARTITION_STORAGE_ENGINE
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  if (*(head+61) &&
      !(share->default_part_db_type= 
        ha_checktype(thd, (enum legacy_db_type) (uint) *(head+61), 1, 0)))
    goto err;
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  DBUG_PRINT("info", ("default_part_db_type = %u", head[61]));
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#endif
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  legacy_db_type= (enum legacy_db_type) (uint) *(head+3);
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  DBUG_ASSERT(share->db_plugin == NULL);
  /*
    if the storage engine is dynamic, no point in resolving it by its
    dynamically allocated legacy_db_type. We will resolve it later by name.
  */
  if (legacy_db_type > DB_TYPE_UNKNOWN && 
      legacy_db_type < DB_TYPE_FIRST_DYNAMIC)
    share->db_plugin= ha_lock_engine(NULL, 
                                     ha_checktype(thd, legacy_db_type, 0, 0));
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  share->db_create_options= db_create_options= uint2korr(head+30);
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  share->db_options_in_use= share->db_create_options;
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  share->mysql_version= uint4korr(head+51);
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  share->null_field_first= 0;
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  if (!head[32])				// New frm file in 3.23
  {
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    share->avg_row_length= uint4korr(head+34);
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    share->row_type= (row_type) head[40];
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    share->table_charset= get_charset((((uint) head[41]) << 8) + 
                                        (uint) head[38],MYF(0));
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    share->null_field_first= 1;
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  }
  if (!share->table_charset)
  {
    /* unknown charset in head[38] or pre-3.23 frm */
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    if (use_mb(default_charset_info))
    {
      /* Warn that we may be changing the size of character columns */
      sql_print_warning("'%s' had no or invalid character set, "
                        "and default character set is multi-byte, "
                        "so character column sizes may have changed",
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                        share->path.str);
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    }
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    share->table_charset= default_charset_info;
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  }
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  share->db_record_offset= 1;
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  if (db_create_options & HA_OPTION_LONG_BLOB_PTR)
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    share->blob_ptr_size= portable_sizeof_char_ptr;
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  /* Set temporarily a good value for db_low_byte_first */
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  share->db_low_byte_first= test(legacy_db_type != DB_TYPE_ISAM);
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  error=4;
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  share->max_rows= uint4korr(head+18);
  share->min_rows= uint4korr(head+22);
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  /* Read keyinformation */
830
  key_info_length= (uint) uint2korr(head+28);
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  mysql_file_seek(file, (ulong) uint2korr(head+6), MY_SEEK_SET, MYF(0));
832
  if (read_string(file,(uchar**) &disk_buff,key_info_length))
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    goto err;                                   /* purecov: inspected */
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  if (disk_buff[0] & 0x80)
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  {
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    share->keys=      keys=      (disk_buff[1] << 7) | (disk_buff[0] & 0x7f);
    share->key_parts= key_parts= uint2korr(disk_buff+2);
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  }
  else
  {
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    share->keys=      keys=      disk_buff[0];
    share->key_parts= key_parts= disk_buff[1];
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  }
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  share->keys_for_keyread.init(0);
  share->keys_in_use.init(keys);
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  n_length=keys*sizeof(KEY)+key_parts*sizeof(KEY_PART_INFO);
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  if (!(keyinfo = (KEY*) alloc_root(&share->mem_root,
				    n_length + uint2korr(disk_buff+4))))
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    goto err;                                   /* purecov: inspected */
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  bzero((char*) keyinfo,n_length);
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  share->key_info= keyinfo;
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  key_part= reinterpret_cast<KEY_PART_INFO*>(keyinfo+keys);
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  strpos=disk_buff+6;

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  if (!(rec_per_key= (ulong*) alloc_root(&share->mem_root,
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                                         sizeof(ulong)*key_parts)))
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    goto err;
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  for (i=0 ; i < keys ; i++, keyinfo++)
  {
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    keyinfo->table= 0;                           // Updated in open_frm
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    if (new_frm_ver >= 3)
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    {
      keyinfo->flags=	   (uint) uint2korr(strpos) ^ HA_NOSAME;
      keyinfo->key_length= (uint) uint2korr(strpos+2);
      keyinfo->key_parts=  (uint) strpos[4];
      keyinfo->algorithm=  (enum ha_key_alg) strpos[5];
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      keyinfo->block_size= uint2korr(strpos+6);
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      strpos+=8;
    }
    else
    {
      keyinfo->flags=	 ((uint) strpos[0]) ^ HA_NOSAME;
      keyinfo->key_length= (uint) uint2korr(strpos+1);
      keyinfo->key_parts=  (uint) strpos[3];
      keyinfo->algorithm= HA_KEY_ALG_UNDEF;
      strpos+=4;
    }
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    keyinfo->key_part=	 key_part;
    keyinfo->rec_per_key= rec_per_key;
    for (j=keyinfo->key_parts ; j-- ; key_part++)
    {
      *rec_per_key++=0;
      key_part->fieldnr=	(uint16) (uint2korr(strpos) & FIELD_NR_MASK);
      key_part->offset= (uint) uint2korr(strpos+2)-1;
      key_part->key_type=	(uint) uint2korr(strpos+5);
      // key_part->field=	(Field*) 0;	// Will be fixed later
890
      if (new_frm_ver >= 1)
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      {
	key_part->key_part_flag= *(strpos+4);
	key_part->length=	(uint) uint2korr(strpos+7);
	strpos+=9;
      }
      else
      {
	key_part->length=	*(strpos+4);
	key_part->key_part_flag=0;
	if (key_part->length > 128)
	{
	  key_part->length&=127;		/* purecov: inspected */
	  key_part->key_part_flag=HA_REVERSE_SORT; /* purecov: inspected */
	}
	strpos+=7;
      }
      key_part->store_length=key_part->length;
    }
  }
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  keynames=(char*) key_part;
  strpos+= (strmov(keynames, (char *) strpos) - keynames)+1;
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  //reading index comments
  for (keyinfo= share->key_info, i=0; i < keys; i++, keyinfo++)
  {
    if (keyinfo->flags & HA_USES_COMMENT)
    {
      keyinfo->comment.length= uint2korr(strpos);
      keyinfo->comment.str= strmake_root(&share->mem_root, (char*) strpos+2,
                                         keyinfo->comment.length);
      strpos+= 2 + keyinfo->comment.length;
    } 
    DBUG_ASSERT(test(keyinfo->flags & HA_USES_COMMENT) == 
               (keyinfo->comment.length > 0));
  }

927
  share->reclength = uint2korr((head+16));
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  if (*(head+26) == 1)
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    share->system= 1;				/* one-record-database */
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#ifdef HAVE_CRYPTED_FRM
  else if (*(head+26) == 2)
  {
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    crypted= get_crypt_for_frm();
    share->crypted= 1;
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  }
#endif

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  record_offset= (ulong) (uint2korr(head+6)+
                          ((uint2korr(head+14) == 0xffff ?
                            uint4korr(head+47) : uint2korr(head+14))));
 
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  if ((n_length= uint4korr(head+55)))
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  {
    /* Read extra data segment */
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    uchar *buff, *next_chunk, *buff_end;
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    DBUG_PRINT("info", ("extra segment size is %u bytes", n_length));
947
    if (!(next_chunk= buff= (uchar*) my_malloc(n_length, MYF(MY_WME))))
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      goto err;
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    if (mysql_file_pread(file, buff, n_length, record_offset + share->reclength,
                         MYF(MY_NABP)))
951
    {
952
      my_free(buff);
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      goto err;
    }
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    share->connect_string.length= uint2korr(buff);
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    if (!(share->connect_string.str= strmake_root(&share->mem_root,
                                                  (char*) next_chunk + 2,
                                                  share->connect_string.
                                                  length)))
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    {
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      my_free(buff);
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      goto err;
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    }
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    next_chunk+= share->connect_string.length + 2;
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    buff_end= buff + n_length;
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    if (next_chunk + 2 < buff_end)
    {
      uint str_db_type_length= uint2korr(next_chunk);
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      LEX_STRING name;
      name.str= (char*) next_chunk + 2;
      name.length= str_db_type_length;

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      plugin_ref tmp_plugin= ha_resolve_by_name(thd, &name);
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      if (tmp_plugin != NULL && !plugin_equals(tmp_plugin, share->db_plugin))
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      {
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        if (legacy_db_type > DB_TYPE_UNKNOWN &&
            legacy_db_type < DB_TYPE_FIRST_DYNAMIC &&
            legacy_db_type != ha_legacy_type(
                plugin_data(tmp_plugin, handlerton *)))
        {
          /* bad file, legacy_db_type did not match the name */
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          my_free(buff);
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          goto err;
        }
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        /*
          tmp_plugin is locked with a local lock.
          we unlock the old value of share->db_plugin before
          replacing it with a globally locked version of tmp_plugin
        */
        plugin_unlock(NULL, share->db_plugin);
        share->db_plugin= my_plugin_lock(NULL, &tmp_plugin);
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        DBUG_PRINT("info", ("setting dbtype to '%.*s' (%d)",
                            str_db_type_length, next_chunk + 2,
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                            ha_legacy_type(share->db_type())));
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      }
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#ifdef WITH_PARTITION_STORAGE_ENGINE
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      else if (str_db_type_length == 9 &&
               !strncmp((char *) next_chunk + 2, "partition", 9))
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      {
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        /*
          Use partition handler
          tmp_plugin is locked with a local lock.
          we unlock the old value of share->db_plugin before
          replacing it with a globally locked version of tmp_plugin
        */
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        /* Check if the partitioning engine is ready */
        if (!plugin_is_ready(&name, MYSQL_STORAGE_ENGINE_PLUGIN))
        {
          error= 8;
          my_error(ER_OPTION_PREVENTS_STATEMENT, MYF(0),
                   "--skip-partition");
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          my_free(buff);
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          goto err;
        }
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        plugin_unlock(NULL, share->db_plugin);
        share->db_plugin= ha_lock_engine(NULL, partition_hton);
        DBUG_PRINT("info", ("setting dbtype to '%.*s' (%d)",
                            str_db_type_length, next_chunk + 2,
                            ha_legacy_type(share->db_type())));
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      }
#endif
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      else if (!tmp_plugin)
      {
        /* purecov: begin inspected */
        error= 8;
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        name.str[name.length]=0;
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        my_error(ER_UNKNOWN_STORAGE_ENGINE, MYF(0), name.str);
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        my_free(buff);
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        goto err;
        /* purecov: end */
      }
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      next_chunk+= str_db_type_length + 2;
    }
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    if (next_chunk + 5 < buff_end)
1035
    {
1036
      uint32 partition_info_str_len = uint4korr(next_chunk);
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#ifdef WITH_PARTITION_STORAGE_ENGINE
1038
      if ((share->partition_info_buffer_size=
1039
             share->partition_info_str_len= partition_info_str_len))
1040
      {
1041
        if (!(share->partition_info_str= (char*)
1042
              memdup_root(&share->mem_root, next_chunk + 4,
1043
                          partition_info_str_len + 1)))
1044
        {
1045
          my_free(buff);
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          goto err;
        }
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      }
#else
1050
      if (partition_info_str_len)
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      {
        DBUG_PRINT("info", ("WITH_PARTITION_STORAGE_ENGINE is not defined"));
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        my_free(buff);
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        goto err;
1055
      }
1056
#endif
1057
      next_chunk+= 5 + partition_info_str_len;
1058
    }
1059 1060
#if MYSQL_VERSION_ID < 50200
    if (share->mysql_version >= 50106 && share->mysql_version <= 50109)
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    {
      /*
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         Partition state array was here in version 5.1.6 to 5.1.9, this code
         makes it possible to load a 5.1.6 table in later versions. Can most
         likely be removed at some point in time. Will only be used for
         upgrades within 5.1 series of versions. Upgrade to 5.2 can only be
         done from newer 5.1 versions.
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      */
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      next_chunk+= 4;
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    }
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    else
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#endif
1073
    if (share->mysql_version >= 50110)
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    {
      /* New auto_partitioned indicator introduced in 5.1.11 */
#ifdef WITH_PARTITION_STORAGE_ENGINE
      share->auto_partitioned= *next_chunk;
#endif
      next_chunk++;
    }
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    keyinfo= share->key_info;
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    for (i= 0; i < keys; i++, keyinfo++)
    {
      if (keyinfo->flags & HA_USES_PARSER)
      {
        LEX_STRING parser_name;
        if (next_chunk >= buff_end)
        {
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          DBUG_PRINT("error",
                     ("fulltext key uses parser that is not defined in .frm"));
1091
          my_free(buff);
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          goto err;
        }
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        parser_name.str= (char*) next_chunk;
        parser_name.length= strlen((char*) next_chunk);
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        next_chunk+= parser_name.length + 1;
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        keyinfo->parser= my_plugin_lock_by_name(NULL, &parser_name,
                                                MYSQL_FTPARSER_PLUGIN);
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        if (! keyinfo->parser)
        {
          my_error(ER_PLUGIN_IS_NOT_LOADED, MYF(0), parser_name.str);
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          my_free(buff);
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          goto err;
        }
      }
    }
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    if (forminfo[46] == (uchar)255)
    {
      //reading long table comment
      if (next_chunk + 2 > buff_end)
      {
          DBUG_PRINT("error",
                     ("long table comment is not defined in .frm"));
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          my_free(buff);
1115 1116 1117 1118 1119 1120
          goto err;
      }
      share->comment.length = uint2korr(next_chunk);
      if (! (share->comment.str= strmake_root(&share->mem_root,
             (char*)next_chunk + 2, share->comment.length)))
      {
1121
          my_free(buff);
1122 1123 1124 1125
          goto err;
      }
      next_chunk+= 2 + share->comment.length;
    }
1126
    my_free(buff);
1127
  }
1128
  share->key_block_size= uint2korr(head+62);
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1129 1130

  error=4;
1131
  extra_rec_buf_length= uint2korr(head+59);
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1132
  rec_buff_length= ALIGN_SIZE(share->reclength + 1 + extra_rec_buf_length);
1133
  share->rec_buff_length= rec_buff_length;
1134 1135
  if (!(record= (uchar *) alloc_root(&share->mem_root,
                                     rec_buff_length)))
1136
    goto err;                                   /* purecov: inspected */
1137
  share->default_values= record;
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1138 1139
  if (mysql_file_pread(file, record, (size_t) share->reclength,
                       record_offset, MYF(MY_NABP)))
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1140
    goto err;                                   /* purecov: inspected */
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1141

1142
  mysql_file_seek(file, pos+288, MY_SEEK_SET, MYF(0));
1143
#ifdef HAVE_CRYPTED_FRM
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1144 1145
  if (crypted)
  {
1146 1147
    crypted->decode((char*) forminfo+256,288-256);
    if (sint2korr(forminfo+284) != 0)		// Should be 0
1148
      goto err;                                 // Wrong password
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1149
  }
1150
#endif
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1151

1152 1153 1154 1155 1156 1157 1158 1159 1160 1161 1162 1163 1164 1165
  share->fields= uint2korr(forminfo+258);
  pos= uint2korr(forminfo+260);   /* Length of all screens */
  n_length= uint2korr(forminfo+268);
  interval_count= uint2korr(forminfo+270);
  interval_parts= uint2korr(forminfo+272);
  int_length= uint2korr(forminfo+274);
  share->null_fields= uint2korr(forminfo+282);
  com_length= uint2korr(forminfo+284);
  if (forminfo[46] != (uchar)255)
  {
    share->comment.length=  (int) (forminfo[46]);
    share->comment.str= strmake_root(&share->mem_root, (char*) forminfo+47,
                                     share->comment.length);
  }
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1166

1167
  DBUG_PRINT("info",("i_count: %d  i_parts: %d  index: %d  n_length: %d  int_length: %d  com_length: %d", interval_count,interval_parts, share->keys,n_length,int_length, com_length));
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1168 1169

  if (!(field_ptr = (Field **)
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	alloc_root(&share->mem_root,
1171
		   (uint) ((share->fields+1)*sizeof(Field*)+
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1172
			   interval_count*sizeof(TYPELIB)+
1173
			   (share->fields+interval_parts+
1174
			    keys+3)*sizeof(char *)+
1175
			   (n_length+int_length+com_length)))))
1176
    goto err;                                   /* purecov: inspected */
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1177

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  share->field= field_ptr;
1179
  read_length=(uint) (share->fields * field_pack_length +
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		      pos+ (uint) (n_length+int_length+com_length));
1181
  if (read_string(file,(uchar**) &disk_buff,read_length))
1182
    goto err;                                   /* purecov: inspected */
1183
#ifdef HAVE_CRYPTED_FRM
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1184 1185 1186 1187 1188 1189
  if (crypted)
  {
    crypted->decode((char*) disk_buff,read_length);
    delete crypted;
    crypted=0;
  }
1190
#endif
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1191 1192
  strpos= disk_buff+pos;

1193
  share->intervals= (TYPELIB*) (field_ptr+share->fields+1);
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1194 1195
  interval_array= (const char **) (share->intervals+interval_count);
  names= (char*) (interval_array+share->fields+interval_parts+keys+3);
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1196
  if (!interval_count)
1197 1198
    share->intervals= 0;			// For better debugging
  memcpy((char*) names, strpos+(share->fields*field_pack_length),
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	 (uint) (n_length+int_length));
1200
  comment_pos= names+(n_length+int_length);
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1201
  memcpy(comment_pos, disk_buff+read_length-com_length, com_length);
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1202

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1203
  fix_type_pointers(&interval_array, &share->fieldnames, 1, &names);
1204 1205
  if (share->fieldnames.count != share->fields)
    goto err;
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1206
  fix_type_pointers(&interval_array, share->intervals, interval_count,
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1207
		    &names);
1208 1209 1210 1211

  {
    /* Set ENUM and SET lengths */
    TYPELIB *interval;
1212 1213
    for (interval= share->intervals;
         interval < share->intervals + interval_count;
1214 1215 1216
         interval++)
    {
      uint count= (uint) (interval->count + 1) * sizeof(uint);
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1217
      if (!(interval->type_lengths= (uint *) alloc_root(&share->mem_root,
1218
                                                        count)))
1219
        goto err;
1220
      for (count= 0; count < interval->count; count++)
1221 1222 1223 1224
      {
        char *val= (char*) interval->type_names[count];
        interval->type_lengths[count]= strlen(val);
      }
1225 1226 1227 1228
      interval->type_lengths[count]= 0;
    }
  }

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1229
  if (keynames)
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    fix_type_pointers(&interval_array, &share->keynames, 1, &keynames);
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1231

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1232 1233
 /* Allocate handler */
  if (!(handler_file= get_new_handler(share, thd->mem_root,
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1234
                                      share->db_type())))
1235 1236
    goto err;

1237
  record= share->default_values-1;              /* Fieldstart = 1 */
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1238
  if (share->null_field_first)
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1239
  {
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1240
    null_flags= null_pos= (uchar*) record+1;
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1241
    null_bit_pos= (db_create_options & HA_OPTION_PACK_RECORD) ? 0 : 1;
1242 1243 1244 1245 1246
    /*
      null_bytes below is only correct under the condition that
      there are no bit fields.  Correct values is set below after the
      table struct is initialized
    */
1247
    share->null_bytes= (share->null_fields + null_bit_pos + 7) / 8;
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  }
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1249
#ifndef WE_WANT_TO_SUPPORT_VERY_OLD_FRM_FILES
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  else
  {
1252
    share->null_bytes= (share->null_fields+7)/8;
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    null_flags= null_pos= (uchar*) (record + 1 +share->reclength -
                                    share->null_bytes);
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1255
    null_bit_pos= 0;
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  }
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1257
#endif
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1258

1259
  use_hash= share->fields >= MAX_FIELDS_BEFORE_HASH;
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1260
  if (use_hash)
Konstantin Osipov's avatar
Konstantin Osipov committed
1261 1262 1263 1264
    use_hash= !my_hash_init(&share->name_hash,
                            system_charset_info,
                            share->fields,0,0,
                            (my_hash_get_key) get_field_name,0,0);
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1265

1266
  for (i=0 ; i < share->fields; i++, strpos+=field_pack_length, field_ptr++)
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  {
1268
    uint pack_flag, interval_nr, unireg_type, recpos, field_length;
1269
    enum_field_types field_type;
1270
    CHARSET_INFO *charset=NULL;
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1271
    Field::geometry_type geom_type= Field::GEOM_GEOMETRY;
1272
    LEX_STRING comment;
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1273

1274
    if (new_frm_ver >= 3)
1275 1276
    {
      /* new frm file in 4.1 */
1277 1278 1279 1280 1281 1282 1283
      field_length= uint2korr(strpos+3);
      recpos=	    uint3korr(strpos+5);
      pack_flag=    uint2korr(strpos+8);
      unireg_type=  (uint) strpos[10];
      interval_nr=  (uint) strpos[12];
      uint comment_length=uint2korr(strpos+15);
      field_type=(enum_field_types) (uint) strpos[13];
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1284

1285
      /* charset and geometry_type share the same byte in frm */
1286
      if (field_type == MYSQL_TYPE_GEOMETRY)
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1287
      {
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1288
#ifdef HAVE_SPATIAL
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1289 1290
	geom_type= (Field::geometry_type) strpos[14];
	charset= &my_charset_bin;
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1291 1292
#else
	error= 4;  // unsupported field type
1293
	goto err;
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1294
#endif
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1295 1296 1297
      }
      else
      {
1298 1299
        uint csid= strpos[14] + (((uint) strpos[11]) << 8);
        if (!csid)
1300
          charset= &my_charset_bin;
1301
        else if (!(charset= get_charset(csid, MYF(0))))
1302 1303
        {
          error= 5; // Unknown or unavailable charset
1304
          errarg= (int) csid;
1305
          goto err;
1306
        }
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      }
1308 1309 1310 1311 1312 1313 1314 1315 1316 1317 1318 1319 1320 1321
      if (!comment_length)
      {
	comment.str= (char*) "";
	comment.length=0;
      }
      else
      {
	comment.str=    (char*) comment_pos;
	comment.length= comment_length;
	comment_pos+=   comment_length;
      }
    }
    else
    {
1322 1323 1324
      field_length= (uint) strpos[3];
      recpos=	    uint2korr(strpos+4),
      pack_flag=    uint2korr(strpos+6);
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1325
      pack_flag&=   ~FIELDFLAG_NO_DEFAULT;     // Safety for old files
1326 1327 1328
      unireg_type=  (uint) strpos[8];
      interval_nr=  (uint) strpos[10];

1329 1330
      /* old frm file */
      field_type= (enum_field_types) f_packtype(pack_flag);
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      if (f_is_binary(pack_flag))
      {
        /*
          Try to choose the best 4.1 type:
          - for 4.0 "CHAR(N) BINARY" or "VARCHAR(N) BINARY" 
            try to find a binary collation for character set.
          - for other types (e.g. BLOB) just use my_charset_bin. 
        */
        if (!f_is_blob(pack_flag))
        {
          // 3.23 or 4.0 string
1342
          if (!(charset= get_charset_by_csname(share->table_charset->csname,
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1343 1344 1345 1346 1347 1348 1349
                                               MY_CS_BINSORT, MYF(0))))
            charset= &my_charset_bin;
        }
        else
          charset= &my_charset_bin;
      }
      else
1350
        charset= share->table_charset;
1351 1352
      bzero((char*) &comment, sizeof(comment));
    }
1353 1354 1355 1356

    if (interval_nr && charset->mbminlen > 1)
    {
      /* Unescape UCS2 intervals from HEX notation */
1357
      TYPELIB *interval= share->intervals + interval_nr - 1;
1358
      unhex_type2(interval);
1359 1360
    }
    
1361
#ifndef TO_BE_DELETED_ON_PRODUCTION
1362
    if (field_type == MYSQL_TYPE_NEWDECIMAL && !share->mysql_version)
1363 1364 1365 1366 1367 1368 1369 1370 1371 1372
    {
      /*
        Fix pack length of old decimal values from 5.0.3 -> 5.0.4
        The difference is that in the old version we stored precision
        in the .frm table while we now store the display_length
      */
      uint decimals= f_decimals(pack_flag);
      field_length= my_decimal_precision_to_length(field_length,
                                                   decimals,
                                                   f_is_dec(pack_flag) == 0);
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1373 1374 1375 1376
      sql_print_error("Found incompatible DECIMAL field '%s' in %s; "
                      "Please do \"ALTER TABLE '%s' FORCE\" to fix it!",
                      share->fieldnames.type_names[i], share->table_name.str,
                      share->table_name.str);
Marc Alff's avatar
Marc Alff committed
1377
      push_warning_printf(thd, MYSQL_ERROR::WARN_LEVEL_WARN,
1378
                          ER_CRASHED_ON_USAGE,
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1379 1380 1381 1382 1383
                          "Found incompatible DECIMAL field '%s' in %s; "
                          "Please do \"ALTER TABLE '%s' FORCE\" to fix it!",
                          share->fieldnames.type_names[i],
                          share->table_name.str,
                          share->table_name.str);
1384 1385 1386 1387
      share->crashed= 1;                        // Marker for CHECK TABLE
    }
#endif

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1388 1389
    *field_ptr= reg_field=
      make_field(share, record+recpos,
1390
		 (uint32) field_length,
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1391
		 null_pos, null_bit_pos,
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1392
		 pack_flag,
1393
		 field_type,
1394
		 charset,
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		 geom_type,
1396
		 (Field::utype) MTYP_TYPENR(unireg_type),
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		 (interval_nr ?
1398
		  share->intervals+interval_nr-1 :
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		  (TYPELIB*) 0),
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		 share->fieldnames.type_names[i]);
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1401
    if (!reg_field)				// Not supported field type
1402 1403
    {
      error= 4;
1404
      goto err;			/* purecov: inspected */
1405
    }
1406

1407
    reg_field->field_index= i;
1408
    reg_field->comment=comment;
1409
    if (field_type == MYSQL_TYPE_BIT && !f_bit_as_char(pack_flag))
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1410
    {
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1411
      if ((null_bit_pos+= field_length & 7) > 7)
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1412
      {
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        null_pos++;
        null_bit_pos-= 8;
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      }
    }
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    if (!(reg_field->flags & NOT_NULL_FLAG))
    {
      if (!(null_bit_pos= (null_bit_pos + 1) & 7))
        null_pos++;
    }
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1422 1423
    if (f_no_default(pack_flag))
      reg_field->flags|= NO_DEFAULT_VALUE_FLAG;
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1424

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1425
    if (reg_field->unireg_check == Field::NEXT_NUMBER)
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1426 1427
      share->found_next_number_field= field_ptr;
    if (share->timestamp_field == reg_field)
1428
      share->timestamp_field_offset= i;
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1429

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1430
    if (use_hash)
1431 1432 1433 1434 1435 1436 1437 1438 1439 1440
      if (my_hash_insert(&share->name_hash, (uchar*) field_ptr) )
      {
        /*
          Set return code 8 here to indicate that an error has
          occurred but that the error message already has been
          sent (OOM).
        */
        error= 8; 
        goto err;
      }
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1441 1442 1443 1444 1445 1446
  }
  *field_ptr=0;					// End marker

  /* Fix key->name and key_part->field */
  if (key_parts)
  {
1447
    uint primary_key=(uint) (find_type((char*) primary_key_name,
1448
				       &share->keynames, 3) - 1);
1449
    longlong ha_option= handler_file->ha_table_flags();
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1450 1451
    keyinfo= share->key_info;
    key_part= keyinfo->key_part;
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1452

1453
    for (uint key=0 ; key < share->keys ; key++,keyinfo++)
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1454
    {
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      uint usable_parts= 0;
1456
      keyinfo->name=(char*) share->keynames.type_names[key];
1457
      /* Fix fulltext keys for old .frm files */
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1458 1459
      if (share->key_info[key].flags & HA_FULLTEXT)
	share->key_info[key].algorithm= HA_KEY_ALG_FULLTEXT;
1460

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1461 1462 1463 1464 1465 1466 1467 1468 1469 1470 1471 1472 1473 1474 1475 1476 1477 1478 1479 1480 1481
      if (primary_key >= MAX_KEY && (keyinfo->flags & HA_NOSAME))
      {
	/*
	  If the UNIQUE key doesn't have NULL columns and is not a part key
	  declare this as a primary key.
	*/
	primary_key=key;
	for (i=0 ; i < keyinfo->key_parts ;i++)
	{
	  uint fieldnr= key_part[i].fieldnr;
	  if (!fieldnr ||
	      share->field[fieldnr-1]->null_ptr ||
	      share->field[fieldnr-1]->key_length() !=
	      key_part[i].length)
	  {
	    primary_key=MAX_KEY;		// Can't be used
	    break;
	  }
	}
      }

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1482 1483
      for (i=0 ; i < keyinfo->key_parts ; key_part++,i++)
      {
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        Field *field;
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1485
	if (new_field_pack_flag <= 1)
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	  key_part->fieldnr= (uint16) find_field(share->field,
1487
                                                 share->default_values,
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                                                 (uint) key_part->offset,
                                                 (uint) key_part->length);
	if (!key_part->fieldnr)
        {
          error= 4;                             // Wrong file
          goto err;
        }
        field= key_part->field= share->field[key_part->fieldnr-1];
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        key_part->type= field->key_type();
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        if (field->null_ptr)
        {
1499
          key_part->null_offset=(uint) ((uchar*) field->null_ptr -
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                                        share->default_values);
          key_part->null_bit= field->null_bit;
          key_part->store_length+=HA_KEY_NULL_LENGTH;
          keyinfo->flags|=HA_NULL_PART_KEY;
          keyinfo->extra_length+= HA_KEY_NULL_LENGTH;
          keyinfo->key_length+= HA_KEY_NULL_LENGTH;
        }
1507
        if (field->type() == MYSQL_TYPE_BLOB ||
1508 1509
            field->real_type() == MYSQL_TYPE_VARCHAR ||
            field->type() == MYSQL_TYPE_GEOMETRY)
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        {
1511 1512
          if (field->type() == MYSQL_TYPE_BLOB ||
              field->type() == MYSQL_TYPE_GEOMETRY)
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            key_part->key_part_flag|= HA_BLOB_PART;
          else
            key_part->key_part_flag|= HA_VAR_LENGTH_PART;
          keyinfo->extra_length+=HA_KEY_BLOB_LENGTH;
          key_part->store_length+=HA_KEY_BLOB_LENGTH;
          keyinfo->key_length+= HA_KEY_BLOB_LENGTH;
        }
        if (field->type() == MYSQL_TYPE_BIT)
          key_part->key_part_flag|= HA_BIT_PART;

        if (i == 0 && key != primary_key)
          field->flags |= (((keyinfo->flags & HA_NOSAME) &&
                           (keyinfo->key_parts == 1)) ?
                           UNIQUE_KEY_FLAG : MULTIPLE_KEY_FLAG);
        if (i == 0)
          field->key_start.set_bit(key);
        if (field->key_length() == key_part->length &&
            !(field->flags & BLOB_FLAG))
        {
          if (handler_file->index_flags(key, i, 0) & HA_KEYREAD_ONLY)
          {
            share->keys_for_keyread.set_bit(key);
            field->part_of_key.set_bit(key);
1536
            field->part_of_key_not_clustered.set_bit(key);
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          }
          if (handler_file->index_flags(key, i, 1) & HA_READ_ORDER)
            field->part_of_sortkey.set_bit(key);
        }
        if (!(key_part->key_part_flag & HA_REVERSE_SORT) &&
            usable_parts == i)
          usable_parts++;			// For FILESORT
        field->flags|= PART_KEY_FLAG;
        if (key == primary_key)
        {
          field->flags|= PRI_KEY_FLAG;
          /*
            If this field is part of the primary key and all keys contains
            the primary key, then we can use any key to find this column
          */
          if (ha_option & HA_PRIMARY_KEY_IN_READ_INDEX)
1553
          {
1554 1555 1556
            if (field->key_length() == key_part->length &&
                !(field->flags & BLOB_FLAG))
              field->part_of_key= share->keys_in_use;
1557
            if (field->part_of_sortkey.is_set(key))
1558 1559
              field->part_of_sortkey= share->keys_in_use;
          }
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        }
        if (field->key_length() != key_part->length)
        {
1563
#ifndef TO_BE_DELETED_ON_PRODUCTION
1564
          if (field->type() == MYSQL_TYPE_NEWDECIMAL)
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          {
            /*
              Fix a fatal error in decimal key handling that causes crashes
              on Innodb. We fix it by reducing the key length so that
              InnoDB never gets a too big key when searching.
              This allows the end user to do an ALTER TABLE to fix the
              error.
            */
            keyinfo->key_length-= (key_part->length - field->key_length());
            key_part->store_length-= (uint16)(key_part->length -
                                              field->key_length());
            key_part->length= (uint16)field->key_length();
            sql_print_error("Found wrong key definition in %s; "
                            "Please do \"ALTER TABLE '%s' FORCE \" to fix it!",
                            share->table_name.str,
                            share->table_name.str);
Marc Alff's avatar
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1581
            push_warning_printf(thd, MYSQL_ERROR::WARN_LEVEL_WARN,
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                                ER_CRASHED_ON_USAGE,
                                "Found wrong key definition in %s; "
                                "Please do \"ALTER TABLE '%s' FORCE\" to fix "
                                "it!",
                                share->table_name.str,
                                share->table_name.str);
            share->crashed= 1;                // Marker for CHECK TABLE
            goto to_be_deleted;
          }
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#endif
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          key_part->key_part_flag|= HA_PART_KEY_SEG;
        }
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	to_be_deleted:

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        /*
          If the field can be NULL, don't optimize away the test
          key_part_column = expression from the WHERE clause
          as we need to test for NULL = NULL.
        */
        if (field->real_maybe_null())
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          key_part->key_part_flag|= HA_NULL_PART;
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      }
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      keyinfo->usable_key_parts= usable_parts; // Filesort
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      set_if_bigger(share->max_key_length,keyinfo->key_length+
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                    keyinfo->key_parts);
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      share->total_key_length+= keyinfo->key_length;
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      /*
        MERGE tables do not have unique indexes. But every key could be
        an unique index on the underlying MyISAM table. (Bug #10400)
      */
      if ((keyinfo->flags & HA_NOSAME) ||
          (ha_option & HA_ANY_INDEX_MAY_BE_UNIQUE))
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        set_if_bigger(share->max_unique_length,keyinfo->key_length);
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    }
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    if (primary_key < MAX_KEY &&
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	(share->keys_in_use.is_set(primary_key)))
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    {
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      share->primary_key= primary_key;
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      /*
	If we are using an integer as the primary key then allow the user to
	refer to it as '_rowid'
      */
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      if (share->key_info[primary_key].key_parts == 1)
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      {
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	Field *field= share->key_info[primary_key].key_part[0].field;
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	if (field && field->result_type() == INT_RESULT)
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        {
          /* note that fieldnr here (and rowid_field_offset) starts from 1 */
	  share->rowid_field_offset= (share->key_info[primary_key].key_part[0].
                                      fieldnr);
        }
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      }
    }
    else
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      share->primary_key = MAX_KEY; // we do not have a primary key
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  }
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  else
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    share->primary_key= MAX_KEY;
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  my_free(disk_buff);
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  disk_buff=0;
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  if (new_field_pack_flag <= 1)
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  {
    /* Old file format with default as not null */
    uint null_length= (share->null_fields+7)/8;
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    bfill(share->default_values + (null_flags - (uchar*) record),
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          null_length, 255);
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  }

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  if (share->found_next_number_field)
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  {
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    reg_field= *share->found_next_number_field;
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    if ((int) (share->next_number_index= (uint)
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	       find_ref_key(share->key_info, share->keys,
                            share->default_values, reg_field,
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			    &share->next_number_key_offset,
                            &share->next_number_keypart)) < 0)
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    {
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      /* Wrong field definition */
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      error= 4;
      goto err;
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    }
    else
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      reg_field->flags |= AUTO_INCREMENT_FLAG;
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  }

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  if (share->blob_fields)
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  {
    Field **ptr;
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    uint k, *save;
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    /* Store offsets to blob fields to find them fast */
    if (!(share->blob_field= save=
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	  (uint*) alloc_root(&share->mem_root,
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                             (uint) (share->blob_fields* sizeof(uint)))))
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      goto err;
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    for (k=0, ptr= share->field ; *ptr ; ptr++, k++)
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    {
      if ((*ptr)->flags & BLOB_FLAG)
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	(*save++)= k;
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    }
  }

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  /*
    the correct null_bytes can now be set, since bitfields have been taken
    into account
  */
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  share->null_bytes= (null_pos - (uchar*) null_flags +
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                      (null_bit_pos + 7) / 8);
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  share->last_null_bit_pos= null_bit_pos;
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  share->db_low_byte_first= handler_file->low_byte_first();
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  share->column_bitmap_size= bitmap_buffer_size(share->fields);

  if (!(bitmaps= (my_bitmap_map*) alloc_root(&share->mem_root,
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                                             share->column_bitmap_size)))
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    goto err;
  bitmap_init(&share->all_set, bitmaps, share->fields, FALSE);
  bitmap_set_all(&share->all_set);

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  delete handler_file;
#ifndef DBUG_OFF
  if (use_hash)
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    (void) my_hash_check(&share->name_hash);
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#endif
  DBUG_RETURN (0);

 err:
  share->error= error;
  share->open_errno= my_errno;
  share->errarg= errarg;
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  my_free(disk_buff);
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  delete crypted;
  delete handler_file;
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  my_hash_free(&share->name_hash);
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  if (share->ha_data_destroy)
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  {
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    share->ha_data_destroy(share->ha_data);
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    share->ha_data_destroy= NULL;
  }
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#ifdef WITH_PARTITION_STORAGE_ENGINE
  if (share->ha_part_data_destroy)
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  {
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    share->ha_part_data_destroy(share->ha_part_data);
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    share->ha_data_destroy= NULL;
  }
#endif /* WITH_PARTITION_STORAGE_ENGINE */
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  open_table_error(share, error, share->open_errno, errarg);
  DBUG_RETURN(error);
} /* open_binary_frm */


/*
  Open a table based on a TABLE_SHARE

  SYNOPSIS
    open_table_from_share()
    thd			Thread handler
    share		Table definition
    alias       	Alias for table
    db_stat		open flags (for example HA_OPEN_KEYFILE|
    			HA_OPEN_RNDFILE..) can be 0 (example in
                        ha_example_table)
    prgflag   		READ_ALL etc..
    ha_open_flags	HA_OPEN_ABORT_IF_LOCKED etc..
    outparam       	result table

  RETURN VALUES
   0	ok
   1	Error (see open_table_error)
   2    Error (see open_table_error)
   3    Wrong data in .frm file
   4    Error (see open_table_error)
   5    Error (see open_table_error: charset unavailable)
   7    Table definition has changed in engine
*/

int open_table_from_share(THD *thd, TABLE_SHARE *share, const char *alias,
                          uint db_stat, uint prgflag, uint ha_open_flags,
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                          TABLE *outparam, bool is_create_table)
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{
  int error;
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  uint records, i, bitmap_size;
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  bool error_reported= FALSE;
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  uchar *record, *bitmaps;
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  Field **field_ptr;
  DBUG_ENTER("open_table_from_share");
  DBUG_PRINT("enter",("name: '%s.%s'  form: 0x%lx", share->db.str,
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                      share->table_name.str, (long) outparam));
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  error= 1;
  bzero((char*) outparam, sizeof(*outparam));
  outparam->in_use= thd;
  outparam->s= share;
  outparam->db_stat= db_stat;
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  outparam->write_row_record= NULL;
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  init_sql_alloc(&outparam->mem_root, TABLE_ALLOC_BLOCK_SIZE, 0);

  if (!(outparam->alias= my_strdup(alias, MYF(MY_WME))))
    goto err;
  outparam->quick_keys.init();
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  outparam->covering_keys.init();
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  outparam->merge_keys.init();
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  outparam->keys_in_use_for_query.init();

  /* Allocate handler */
1791 1792 1793 1794 1795 1796 1797 1798 1799 1800 1801
  outparam->file= 0;
  if (!(prgflag & OPEN_FRM_FILE_ONLY))
  {
    if (!(outparam->file= get_new_handler(share, &outparam->mem_root,
                                          share->db_type())))
      goto err;
  }
  else
  {
    DBUG_ASSERT(!db_stat);
  }
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  error= 4;
  outparam->reginfo.lock_type= TL_UNLOCK;
  outparam->current_lock= F_UNLCK;
  records=0;
  if ((db_stat & HA_OPEN_KEYFILE) || (prgflag & DELAYED_OPEN))
    records=1;
  if (prgflag & (READ_ALL+EXTRA_RECORD))
    records++;

1812
  if (!(record= (uchar*) alloc_root(&outparam->mem_root,
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                                   share->rec_buff_length * records)))
    goto err;                                   /* purecov: inspected */

  if (records == 0)
  {
    /* We are probably in hard repair, and the buffers should not be used */
    outparam->record[0]= outparam->record[1]= share->default_values;
  }
  else
  {
    outparam->record[0]= record;
    if (records > 1)
      outparam->record[1]= record+ share->rec_buff_length;
    else
      outparam->record[1]= outparam->record[0];   // Safety
  }

#ifdef HAVE_purify
  /*
    We need this because when we read var-length rows, we are not updating
    bytes after end of varchar
  */
  if (records > 1)
  {
    memcpy(outparam->record[0], share->default_values, share->rec_buff_length);
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    memcpy(outparam->record[1], share->default_values, share->null_bytes);
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    if (records > 2)
      memcpy(outparam->record[1], share->default_values,
             share->rec_buff_length);
  }
#endif

  if (!(field_ptr = (Field **) alloc_root(&outparam->mem_root,
                                          (uint) ((share->fields+1)*
                                                  sizeof(Field*)))))
    goto err;                                   /* purecov: inspected */

  outparam->field= field_ptr;

1852
  record= (uchar*) outparam->record[0]-1;	/* Fieldstart = 1 */
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  if (share->null_field_first)
    outparam->null_flags= (uchar*) record+1;
  else
    outparam->null_flags= (uchar*) (record+ 1+ share->reclength -
                                    share->null_bytes);

  /* Setup copy of fields from share, but use the right alias and record */
  for (i=0 ; i < share->fields; i++, field_ptr++)
  {
    if (!((*field_ptr)= share->field[i]->clone(&outparam->mem_root, outparam)))
      goto err;
  }
  (*field_ptr)= 0;                              // End marker

  if (share->found_next_number_field)
    outparam->found_next_number_field=
      outparam->field[(uint) (share->found_next_number_field - share->field)];
  if (share->timestamp_field)
    outparam->timestamp_field= (Field_timestamp*) outparam->field[share->timestamp_field_offset];


  /* Fix key->name and key_part->field */
  if (share->key_parts)
  {
    KEY	*key_info, *key_info_end;
    KEY_PART_INFO *key_part;
    uint n_length;
    n_length= share->keys*sizeof(KEY) + share->key_parts*sizeof(KEY_PART_INFO);
    if (!(key_info= (KEY*) alloc_root(&outparam->mem_root, n_length)))
      goto err;
    outparam->key_info= key_info;
1884 1885
    key_part= (reinterpret_cast<KEY_PART_INFO*>(key_info+share->keys));

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    memcpy(key_info, share->key_info, sizeof(*key_info)*share->keys);
    memcpy(key_part, share->key_info[0].key_part, (sizeof(*key_part) *
                                                   share->key_parts));

    for (key_info_end= key_info + share->keys ;
         key_info < key_info_end ;
         key_info++)
    {
      KEY_PART_INFO *key_part_end;

      key_info->table= outparam;
      key_info->key_part= key_part;

      for (key_part_end= key_part+ key_info->key_parts ;
           key_part < key_part_end ;
           key_part++)
      {
        Field *field= key_part->field= outparam->field[key_part->fieldnr-1];

        if (field->key_length() != key_part->length &&
            !(field->flags & BLOB_FLAG))
        {
          /*
            We are using only a prefix of the column as a key:
            Create a new field for the key part that matches the index
          */
          field= key_part->field=field->new_field(&outparam->mem_root,
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                                                  outparam, 0);
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          field->field_length= key_part->length;
        }
      }
    }
  }

#ifdef WITH_PARTITION_STORAGE_ENGINE
1921
  if (share->partition_info_str_len && outparam->file)
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  {
1923 1924 1925 1926 1927 1928 1929 1930 1931 1932 1933 1934 1935
  /*
    In this execution we must avoid calling thd->change_item_tree since
    we might release memory before statement is completed. We do this
    by changing to a new statement arena. As part of this arena we also
    set the memory root to be the memory root of the table since we
    call the parser and fix_fields which both can allocate memory for
    item objects. We keep the arena to ensure that we can release the
    free_list when closing the table object.
    SEE Bug #21658
  */

    Query_arena *backup_stmt_arena_ptr= thd->stmt_arena;
    Query_arena backup_arena;
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    Query_arena part_func_arena(&outparam->mem_root,
                                Query_arena::STMT_INITIALIZED);
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    thd->set_n_backup_active_arena(&part_func_arena, &backup_arena);
    thd->stmt_arena= &part_func_arena;
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    bool tmp;
1941
    bool work_part_info_used;
1942

1943 1944
    tmp= mysql_unpack_partition(thd, share->partition_info_str,
                                share->partition_info_str_len,
1945
                                outparam, is_create_table,
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                                share->default_part_db_type,
                                &work_part_info_used);
1948 1949 1950 1951 1952 1953 1954
    if (tmp)
    {
      thd->stmt_arena= backup_stmt_arena_ptr;
      thd->restore_active_arena(&part_func_arena, &backup_arena);
      goto partititon_err;
    }
    outparam->part_info->is_auto_partitioned= share->auto_partitioned;
1955
    DBUG_PRINT("info", ("autopartitioned: %u", share->auto_partitioned));
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    /* we should perform the fix_partition_func in either local or
       caller's arena depending on work_part_info_used value
    */
1959
    if (!work_part_info_used)
1960
      tmp= fix_partition_func(thd, outparam, is_create_table);
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    thd->stmt_arena= backup_stmt_arena_ptr;
    thd->restore_active_arena(&part_func_arena, &backup_arena);
1963
    if (!tmp)
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    {
      if (work_part_info_used)
        tmp= fix_partition_func(thd, outparam, is_create_table);
    }
1968
    outparam->part_info->item_free_list= part_func_arena.free_list;
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partititon_err:
1970
    if (tmp)
1971 1972 1973 1974 1975 1976 1977 1978 1979 1980
    {
      if (is_create_table)
      {
        /*
          During CREATE/ALTER TABLE it is ok to receive errors here.
          It is not ok if it happens during the opening of an frm
          file as part of a normal query.
        */
        error_reported= TRUE;
      }
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      goto err;
1982
    }
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  }
#endif

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  /* Allocate bitmaps */

  bitmap_size= share->column_bitmap_size;
1989
  if (!(bitmaps= (uchar*) alloc_root(&outparam->mem_root, bitmap_size*3)))
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    goto err;
  bitmap_init(&outparam->def_read_set,
              (my_bitmap_map*) bitmaps, share->fields, FALSE);
  bitmap_init(&outparam->def_write_set,
              (my_bitmap_map*) (bitmaps+bitmap_size), share->fields, FALSE);
  bitmap_init(&outparam->tmp_set,
              (my_bitmap_map*) (bitmaps+bitmap_size*2), share->fields, FALSE);
  outparam->default_column_bitmaps();

1999
  /* The table struct is now initialized;  Open the table */
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  error= 2;
2001 2002
  if (db_stat)
  {
2003 2004
    int ha_err;
    if ((ha_err= (outparam->file->
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                  ha_open(outparam, share->normalized_path.str,
2006 2007 2008 2009 2010 2011 2012 2013
                          (db_stat & HA_READ_ONLY ? O_RDONLY : O_RDWR),
                          (db_stat & HA_OPEN_TEMPORARY ? HA_OPEN_TMP_TABLE :
                           ((db_stat & HA_WAIT_IF_LOCKED) ||
                            (specialflag & SPECIAL_WAIT_IF_LOCKED)) ?
                           HA_OPEN_WAIT_IF_LOCKED :
                           (db_stat & (HA_ABORT_IF_LOCKED | HA_GET_INFO)) ?
                          HA_OPEN_ABORT_IF_LOCKED :
                           HA_OPEN_IGNORE_IF_LOCKED) | ha_open_flags))))
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    {
      /* Set a flag if the table is crashed and it can be auto. repaired */
2016
      share->crashed= ((ha_err == HA_ERR_CRASHED_ON_USAGE) &&
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                       outparam->file->auto_repair() &&
                       !(ha_open_flags & HA_OPEN_FOR_REPAIR));
2019

2020
      switch (ha_err)
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      {
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        case HA_ERR_NO_SUCH_TABLE:
	  /*
            The table did not exists in storage engine, use same error message
            as if the .frm file didn't exist
          */
	  error= 1;
	  my_errno= ENOENT;
          break;
        case EMFILE:
	  /*
            Too many files opened, use same error message as if the .frm
            file can't open
           */
          DBUG_PRINT("error", ("open file: %s failed, too many files opened (errno: %d)", 
		  share->normalized_path.str, ha_err));
	  error= 1;
	  my_errno= EMFILE;
          break;
        default:
          outparam->file->print_error(ha_err, MYF(0));
          error_reported= TRUE;
          if (ha_err == HA_ERR_TABLE_DEF_CHANGED)
            error= 7;
          break;
2046
      }
2047
      goto err;                                 /* purecov: inspected */
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    }
  }

2051 2052 2053 2054
#if defined(HAVE_purify) && !defined(DBUG_OFF)
  bzero((char*) bitmaps, bitmap_size*3);
#endif

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  outparam->no_replicate= outparam->file &&
                          test(outparam->file->ha_table_flags() &
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                               HA_HAS_OWN_BINLOGGING);
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  thd->status_var.opened_tables++;
2059

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  DBUG_RETURN (0);

2062
 err:
2063
  if (! error_reported)
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    open_table_error(share, error, my_errno, 0);
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  delete outparam->file;
2066
#ifdef WITH_PARTITION_STORAGE_ENGINE
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  if (outparam->part_info)
    free_items(outparam->part_info->item_free_list);
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#endif
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  outparam->file= 0;				// For easier error checking
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  outparam->db_stat=0;
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  free_root(&outparam->mem_root, MYF(0));       // Safe to call on bzero'd root
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  my_free((void *) outparam->alias);
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  DBUG_RETURN (error);
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}
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/*
  Free information allocated by openfrm

  SYNOPSIS
    closefrm()
    table		TABLE object to free
    free_share		Is 1 if we also want to free table_share
*/
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int closefrm(register TABLE *table, bool free_share)
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{
  int error=0;
  DBUG_ENTER("closefrm");
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  DBUG_PRINT("enter", ("table: 0x%lx", (long) table));
2092

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  if (table->db_stat)
    error=table->file->close();
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  my_free((void *) table->alias);
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  table->alias= 0;
  if (table->field)
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  {
    for (Field **ptr=table->field ; *ptr ; ptr++)
      delete *ptr;
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    table->field= 0;
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  }
  delete table->file;
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  table->file= 0;				/* For easier errorchecking */
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#ifdef WITH_PARTITION_STORAGE_ENGINE
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  if (table->part_info)
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  {
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    free_items(table->part_info->item_free_list);
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    table->part_info->item_free_list= 0;
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    table->part_info= 0;
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  }
#endif
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  if (free_share)
  {
    if (table->s->tmp_table == NO_TMP_TABLE)
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      release_table_share(table->s);
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    else
      free_table_share(table->s);
  }
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  free_root(&table->mem_root, MYF(0));
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  DBUG_RETURN(error);
}


/* Deallocate temporary blob storage */

void free_blobs(register TABLE *table)
{
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  uint *ptr, *end;
  for (ptr= table->s->blob_field, end=ptr + table->s->blob_fields ;
       ptr != end ;
       ptr++)
    ((Field_blob*) table->field[*ptr])->free();
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}


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/**
  Reclaim temporary blob storage which is bigger than 
  a threshold.
 
  @param table A handle to the TABLE object containing blob fields
  @param size The threshold value.
 
*/

void free_field_buffers_larger_than(TABLE *table, uint32 size)
{
  uint *ptr, *end;
  for (ptr= table->s->blob_field, end=ptr + table->s->blob_fields ;
       ptr != end ;
       ptr++)
  {
    Field_blob *blob= (Field_blob*) table->field[*ptr];
    if (blob->get_field_buffer_size() > size)
        blob->free();
  }
}

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/**
  Find where a form starts.

  @param head The start of the form file.
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  @remark If formname is NULL then only formnames is read.

  @retval The form position.
*/
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static ulong get_form_pos(File file, uchar *head)
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{
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  uchar *pos, *buf;
  uint names, length;
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  ulong ret_value=0;
  DBUG_ENTER("get_form_pos");

2176
  names= uint2korr(head+8);
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  if (!(names= uint2korr(head+8)))
    DBUG_RETURN(0);
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  length= uint2korr(head+4);

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  mysql_file_seek(file, 64L, MY_SEEK_SET, MYF(0));
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  if (!(buf= (uchar*) my_malloc(length+names*4, MYF(MY_WME))))
    DBUG_RETURN(0);

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  if (mysql_file_read(file, buf, length+names*4, MYF(MY_NABP)))
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  {
2190
    my_free(buf);
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    DBUG_RETURN(0);
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  }
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  pos= buf+length;
  ret_value= uint4korr(pos);

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  my_free(buf);
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  DBUG_RETURN(ret_value);
}


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/*
  Read string from a file with malloc
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  NOTES:
    We add an \0 at end of the read string to make reading of C strings easier
*/

int read_string(File file, uchar**to, size_t length)
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{
  DBUG_ENTER("read_string");

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  my_free(*to);
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  if (!(*to= (uchar*) my_malloc(length+1,MYF(MY_WME))) ||
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      mysql_file_read(file, *to, length, MYF(MY_NABP)))
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  {
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     my_free(*to);                            /* purecov: inspected */
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    *to= 0;                                   /* purecov: inspected */
    DBUG_RETURN(1);                           /* purecov: inspected */
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  }
  *((char*) *to+length)= '\0';
  DBUG_RETURN (0);
} /* read_string */


	/* Add a new form to a form file */

ulong make_new_entry(File file, uchar *fileinfo, TYPELIB *formnames,
		     const char *newname)
{
  uint i,bufflength,maxlength,n_length,length,names;
  ulong endpos,newpos;
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  uchar buff[IO_SIZE];
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  uchar *pos;
  DBUG_ENTER("make_new_entry");

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  length=(uint) strlen(newname)+1;
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  n_length=uint2korr(fileinfo+4);
  maxlength=uint2korr(fileinfo+6);
  names=uint2korr(fileinfo+8);
  newpos=uint4korr(fileinfo+10);

  if (64+length+n_length+(names+1)*4 > maxlength)
  {						/* Expand file */
    newpos+=IO_SIZE;
    int4store(fileinfo+10,newpos);
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    /* Copy from file-end */
    endpos= (ulong) mysql_file_seek(file, 0L, MY_SEEK_END, MYF(0));
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    bufflength= (uint) (endpos & (IO_SIZE-1));	/* IO_SIZE is a power of 2 */

    while (endpos > maxlength)
    {
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      mysql_file_seek(file, (ulong) (endpos-bufflength), MY_SEEK_SET, MYF(0));
      if (mysql_file_read(file, buff, bufflength, MYF(MY_NABP+MY_WME)))
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	DBUG_RETURN(0L);
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      mysql_file_seek(file, (ulong) (endpos-bufflength+IO_SIZE), MY_SEEK_SET,
                      MYF(0));
      if ((mysql_file_write(file, buff, bufflength, MYF(MY_NABP+MY_WME))))
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	DBUG_RETURN(0);
      endpos-=bufflength; bufflength=IO_SIZE;
    }
    bzero(buff,IO_SIZE);			/* Null new block */
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    mysql_file_seek(file, (ulong) maxlength, MY_SEEK_SET, MYF(0));
    if (mysql_file_write(file, buff, bufflength, MYF(MY_NABP+MY_WME)))
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	DBUG_RETURN(0L);
    maxlength+=IO_SIZE;				/* Fix old ref */
    int2store(fileinfo+6,maxlength);
    for (i=names, pos= (uchar*) *formnames->type_names+n_length-1; i-- ;
	 pos+=4)
    {
      endpos=uint4korr(pos)+IO_SIZE;
      int4store(pos,endpos);
    }
  }

  if (n_length == 1 )
  {						/* First name */
    length++;
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    (void) strxmov((char*) buff,"/",newname,"/",NullS);
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  }
  else
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    (void) strxmov((char*) buff,newname,"/",NullS); /* purecov: inspected */
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  mysql_file_seek(file, 63L+(ulong) n_length, MY_SEEK_SET, MYF(0));
  if (mysql_file_write(file, buff, (size_t) length+1, MYF(MY_NABP+MY_WME)) ||
      (names && mysql_file_write(file,
                                 (uchar*) (*formnames->type_names+n_length-1),
                                 names*4, MYF(MY_NABP+MY_WME))) ||
      mysql_file_write(file, fileinfo+10, 4, MYF(MY_NABP+MY_WME)))
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    DBUG_RETURN(0L); /* purecov: inspected */

  int2store(fileinfo+8,names+1);
  int2store(fileinfo+4,n_length+length);
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  (void) mysql_file_chsize(file, newpos, 0, MYF(MY_WME));/* Append file with '\0' */
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  DBUG_RETURN(newpos);
} /* make_new_entry */


	/* error message when opening a form file */

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void open_table_error(TABLE_SHARE *share, int error, int db_errno, int errarg)
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{
  int err_no;
  char buff[FN_REFLEN];
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  myf errortype= ME_ERROR+ME_WAITTANG;
  DBUG_ENTER("open_table_error");
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  switch (error) {
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  case 7:
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  case 1:
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    if (db_errno == ENOENT)
      my_error(ER_NO_SUCH_TABLE, MYF(0), share->db.str, share->table_name.str);
    else
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    {
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      strxmov(buff, share->normalized_path.str, reg_ext, NullS);
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      my_error((db_errno == EMFILE) ? ER_CANT_OPEN_FILE : ER_FILE_NOT_FOUND,
               errortype, buff, db_errno);
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    }
    break;
  case 2:
  {
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    handler *file= 0;
    const char *datext= "";
    
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    if (share->db_type() != NULL)
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    {
      if ((file= get_new_handler(share, current_thd->mem_root,
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                                 share->db_type())))
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      {
        if (!(datext= *file->bas_ext()))
          datext= "";
      }
    }
    err_no= (db_errno == ENOENT) ? ER_FILE_NOT_FOUND : (db_errno == EAGAIN) ?
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      ER_FILE_USED : ER_CANT_OPEN_FILE;
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    strxmov(buff, share->normalized_path.str, datext, NullS);
    my_error(err_no,errortype, buff, db_errno);
    delete file;
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    break;
  }
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  case 5:
  {
    const char *csname= get_charset_name((uint) errarg);
    char tmp[10];
    if (!csname || csname[0] =='?')
    {
      my_snprintf(tmp, sizeof(tmp), "#%d", errarg);
      csname= tmp;
    }
    my_printf_error(ER_UNKNOWN_COLLATION,
                    "Unknown collation '%s' in table '%-.64s' definition", 
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                    MYF(0), csname, share->table_name.str);
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    break;
  }
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  case 6:
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    strxmov(buff, share->normalized_path.str, reg_ext, NullS);
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    my_printf_error(ER_NOT_FORM_FILE,
                    "Table '%-.64s' was created with a different version "
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                    "of MySQL and cannot be read", 
                    MYF(0), buff);
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    break;
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  case 8:
    break;
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  default:				/* Better wrong error than none */
  case 4:
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    strxmov(buff, share->normalized_path.str, reg_ext, NullS);
    my_error(ER_NOT_FORM_FILE, errortype, buff, 0);
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    break;
  }
  DBUG_VOID_RETURN;
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} /* open_table_error */
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	/*
	** fix a str_type to a array type
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	** typeparts separated with some char. differents types are separated
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	** with a '\0'
	*/

static void
fix_type_pointers(const char ***array, TYPELIB *point_to_type, uint types,
		  char **names)
{
  char *type_name, *ptr;
  char chr;

  ptr= *names;
  while (types--)
  {
    point_to_type->name=0;
    point_to_type->type_names= *array;

    if ((chr= *ptr))			/* Test if empty type */
    {
      while ((type_name=strchr(ptr+1,chr)) != NullS)
      {
	*((*array)++) = ptr+1;
	*type_name= '\0';		/* End string */
	ptr=type_name;
      }
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      ptr+=2;				/* Skip end mark and last 0 */
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    }
    else
      ptr++;
    point_to_type->count= (uint) (*array - point_to_type->type_names);
    point_to_type++;
    *((*array)++)= NullS;		/* End of type */
  }
  *names=ptr;				/* Update end */
  return;
} /* fix_type_pointers */


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TYPELIB *typelib(MEM_ROOT *mem_root, List<String> &strings)
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{
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  TYPELIB *result= (TYPELIB*) alloc_root(mem_root, sizeof(TYPELIB));
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  if (!result)
    return 0;
  result->count=strings.elements;
  result->name="";
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  uint nbytes= (sizeof(char*) + sizeof(uint)) * (result->count + 1);
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  if (!(result->type_names= (const char**) alloc_root(mem_root, nbytes)))
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    return 0;
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  result->type_lengths= (uint*) (result->type_names + result->count + 1);
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  List_iterator<String> it(strings);
  String *tmp;
  for (uint i=0; (tmp=it++) ; i++)
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  {
    result->type_names[i]= tmp->ptr();
    result->type_lengths[i]= tmp->length();
  }
  result->type_names[result->count]= 0;		// End marker
  result->type_lengths[result->count]= 0;
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  return result;
}


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/*
 Search after a field with given start & length
 If an exact field isn't found, return longest field with starts
 at right position.
 
 NOTES
   This is needed because in some .frm fields 'fieldnr' was saved wrong

 RETURN
   0  error
   #  field number +1
*/
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static uint find_field(Field **fields, uchar *record, uint start, uint length)
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{
  Field **field;
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  uint i, pos;
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  pos= 0;
  for (field= fields, i=1 ; *field ; i++,field++)
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  {
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    if ((*field)->offset(record) == start)
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    {
      if ((*field)->key_length() == length)
	return (i);
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      if (!pos || fields[pos-1]->pack_length() <
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	  (*field)->pack_length())
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	pos= i;
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    }
  }
  return (pos);
}


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	/* Check that the integer is in the internal */
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int set_zone(register int nr, int min_zone, int max_zone)
{
  if (nr<=min_zone)
    return (min_zone);
  if (nr>=max_zone)
    return (max_zone);
  return (nr);
} /* set_zone */

	/* Adjust number to next larger disk buffer */

ulong next_io_size(register ulong pos)
{
  reg2 ulong offset;
  if ((offset= pos & (IO_SIZE-1)))
    return pos-offset+IO_SIZE;
  return pos;
} /* next_io_size */


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/*
  Store an SQL quoted string.

  SYNOPSIS  
    append_unescaped()
    res		result String
    pos		string to be quoted
    length	it's length

  NOTE
    This function works correctly with utf8 or single-byte charset strings.
    May fail with some multibyte charsets though.
*/
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2508
void append_unescaped(String *res, const char *pos, uint length)
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{
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  const char *end= pos+length;
  res->append('\'');

  for (; pos != end ; pos++)
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  {
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#if defined(USE_MB) && MYSQL_VERSION_ID < 40100
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    uint mblen;
    if (use_mb(default_charset_info) &&
        (mblen= my_ismbchar(default_charset_info, pos, end)))
    {
      res->append(pos, mblen);
      pos+= mblen;
      continue;
    }
#endif

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    switch (*pos) {
    case 0:				/* Must be escaped for 'mysql' */
      res->append('\\');
      res->append('0');
      break;
    case '\n':				/* Must be escaped for logs */
      res->append('\\');
      res->append('n');
      break;
    case '\r':
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      res->append('\\');		/* This gives better readability */
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      res->append('r');
      break;
    case '\\':
      res->append('\\');		/* Because of the sql syntax */
      res->append('\\');
      break;
    case '\'':
      res->append('\'');		/* Because of the sql syntax */
      res->append('\'');
      break;
    default:
      res->append(*pos);
      break;
    }
  }
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  res->append('\'');
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}

2555

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	/* Create a .frm file */

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File create_frm(THD *thd, const char *name, const char *db,
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                const char *table, uint reclength, uchar *fileinfo,
2560
  		HA_CREATE_INFO *create_info, uint keys, KEY *key_info)
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{
  register File file;
  ulong length;
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  uchar fill[IO_SIZE];
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  int create_flags= O_RDWR | O_TRUNC;
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  ulong key_comment_total_bytes= 0;
  uint i;
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  if (create_info->options & HA_LEX_CREATE_TMP_TABLE)
    create_flags|= O_EXCL | O_NOFOLLOW;
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  /* Fix this when we have new .frm files;  Current limit is 4G rows (QQ) */
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  if (create_info->max_rows > UINT_MAX32)
    create_info->max_rows= UINT_MAX32;
  if (create_info->min_rows > UINT_MAX32)
    create_info->min_rows= UINT_MAX32;
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  if ((file= mysql_file_create(key_file_frm,
                               name, CREATE_MODE, create_flags, MYF(0))) >= 0)
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  {
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    uint key_length, tmp_key_length, tmp, csid;
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    bzero((char*) fileinfo,64);
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    /* header */
    fileinfo[0]=(uchar) 254;
    fileinfo[1]= 1;
    fileinfo[2]= FRM_VER+3+ test(create_info->varchar);

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    fileinfo[3]= (uchar) ha_legacy_type(
          ha_checktype(thd,ha_legacy_type(create_info->db_type),0,0));
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    fileinfo[4]=1;
    int2store(fileinfo+6,IO_SIZE);		/* Next block starts here */
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    /*
      Keep in sync with pack_keys() in unireg.cc
      For each key:
      8 bytes for the key header
      9 bytes for each key-part (MAX_REF_PARTS)
      NAME_LEN bytes for the name
      1 byte for the NAMES_SEP_CHAR (before the name)
      For all keys:
      6 bytes for the header
      1 byte for the NAMES_SEP_CHAR (after the last name)
      9 extra bytes (padding for safety? alignment?)
    */
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    for (i= 0; i < keys; i++)
    {
      DBUG_ASSERT(test(key_info[i].flags & HA_USES_COMMENT) == 
                 (key_info[i].comment.length > 0));
      if (key_info[i].flags & HA_USES_COMMENT)
        key_comment_total_bytes += 2 + key_info[i].comment.length;
    }

    key_length= keys * (8 + MAX_REF_PARTS * 9 + NAME_LEN + 1) + 16
                + key_comment_total_bytes;

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    length= next_io_size((ulong) (IO_SIZE+key_length+reclength+
                                  create_info->extra_size));
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    int4store(fileinfo+10,length);
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    tmp_key_length= (key_length < 0xffff) ? key_length : 0xffff;
    int2store(fileinfo+14,tmp_key_length);
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    int2store(fileinfo+16,reclength);
    int4store(fileinfo+18,create_info->max_rows);
    int4store(fileinfo+22,create_info->min_rows);
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    /* fileinfo[26] is set in mysql_create_frm() */
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    fileinfo[27]=2;				// Use long pack-fields
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    /* fileinfo[28 & 29] is set to key_info_length in mysql_create_frm() */
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    create_info->table_options|=HA_OPTION_LONG_BLOB_PTR; // Use portable blob pointers
    int2store(fileinfo+30,create_info->table_options);
    fileinfo[32]=0;				// No filename anymore
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    fileinfo[33]=5;                             // Mark for 5.0 frm file
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    int4store(fileinfo+34,create_info->avg_row_length);
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    csid= (create_info->default_table_charset ?
           create_info->default_table_charset->number : 0);
    fileinfo[38]= (uchar) csid;
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    /*
      In future versions, we will store in fileinfo[39] the values of the
      TRANSACTIONAL and PAGE_CHECKSUM clauses of CREATE TABLE.
    */
    fileinfo[39]= 0;
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    fileinfo[40]= (uchar) create_info->row_type;
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    /* Next few bytes where for RAID support */
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    fileinfo[41]= (uchar) (csid >> 8);
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    fileinfo[42]= 0;
    fileinfo[43]= 0;
    fileinfo[44]= 0;
    fileinfo[45]= 0;
    fileinfo[46]= 0;
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    int4store(fileinfo+47, key_length);
    tmp= MYSQL_VERSION_ID;          // Store to avoid warning from int4store
    int4store(fileinfo+51, tmp);
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    int4store(fileinfo+55, create_info->extra_size);
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    /*
      59-60 is reserved for extra_rec_buf_length,
      61 for default_part_db_type
    */
    int2store(fileinfo+62, create_info->key_block_size);
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2656 2657 2658
    bzero(fill,IO_SIZE);
    for (; length > IO_SIZE ; length-= IO_SIZE)
    {
Marc Alff's avatar
Marc Alff committed
2659
      if (mysql_file_write(file, fill, IO_SIZE, MYF(MY_WME | MY_NABP)))
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2660
      {
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2661 2662
        (void) mysql_file_close(file, MYF(0));
        (void) mysql_file_delete(key_file_frm, name, MYF(0));
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2663 2664 2665 2666
	return(-1);
      }
    }
  }
2667 2668 2669 2670 2671 2672 2673
  else
  {
    if (my_errno == ENOENT)
      my_error(ER_BAD_DB_ERROR,MYF(0),db);
    else
      my_error(ER_CANT_CREATE_TABLE,MYF(0),table,my_errno);
  }
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2674 2675 2676 2677 2678 2679
  return (file);
} /* create_frm */


void update_create_info_from_table(HA_CREATE_INFO *create_info, TABLE *table)
{
2680
  TABLE_SHARE *share= table->s;
2681
  DBUG_ENTER("update_create_info_from_table");
2682 2683 2684 2685 2686 2687 2688

  create_info->max_rows= share->max_rows;
  create_info->min_rows= share->min_rows;
  create_info->table_options= share->db_create_options;
  create_info->avg_row_length= share->avg_row_length;
  create_info->row_type= share->row_type;
  create_info->default_table_charset= share->table_charset;
2689
  create_info->table_charset= 0;
2690
  create_info->comment= share->comment;
2691

2692
  DBUG_VOID_RETURN;
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2693
}
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2694 2695 2696 2697 2698

int
rename_file_ext(const char * from,const char * to,const char * ext)
{
  char from_b[FN_REFLEN],to_b[FN_REFLEN];
Konstantin Osipov's avatar
Konstantin Osipov committed
2699 2700
  (void) strxmov(from_b,from,ext,NullS);
  (void) strxmov(to_b,to,ext,NullS);
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Marc Alff committed
2701
  return (mysql_file_rename(key_file_frm, from_b, to_b, MYF(MY_WME)));
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2702 2703 2704
}


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2705 2706 2707 2708 2709 2710 2711 2712 2713 2714
/*
  Allocate string field in MEM_ROOT and return it as String

  SYNOPSIS
    get_field()
    mem   	MEM_ROOT for allocating
    field 	Field for retrieving of string
    res         result String

  RETURN VALUES
2715 2716
    1   string is empty
    0	all ok
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2717 2718 2719 2720
*/

bool get_field(MEM_ROOT *mem, Field *field, String *res)
{
2721
  char buff[MAX_FIELD_WIDTH], *to;
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2722
  String str(buff,sizeof(buff),&my_charset_bin);
2723 2724
  uint length;

2725
  field->val_str(&str);
2726
  if (!(length= str.length()))
2727 2728
  {
    res->length(0);
2729
    return 1;
2730 2731 2732
  }
  if (!(to= strmake_root(mem, str.ptr(), length)))
    length= 0;                                  // Safety fix
2733 2734
  res->set(to, length, ((Field_str*)field)->charset());
  return 0;
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2735 2736
}

2737

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2738
/*
2739 2740 2741 2742 2743 2744 2745 2746 2747 2748
  Allocate string field in MEM_ROOT and return it as NULL-terminated string

  SYNOPSIS
    get_field()
    mem   	MEM_ROOT for allocating
    field 	Field for retrieving of string

  RETURN VALUES
    NullS  string is empty
    #      pointer to NULL-terminated string value of field
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2749 2750
*/

2751
char *get_field(MEM_ROOT *mem, Field *field)
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2752
{
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2753
  char buff[MAX_FIELD_WIDTH], *to;
2754
  String str(buff,sizeof(buff),&my_charset_bin);
2755 2756
  uint length;

2757
  field->val_str(&str);
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2758
  length= str.length();
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2759
  if (!length || !(to= (char*) alloc_root(mem,length+1)))
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2760 2761 2762 2763 2764 2765
    return NullS;
  memcpy(to,str.ptr(),(uint) length);
  to[length]=0;
  return to;
}

2766 2767 2768 2769 2770
/*
  DESCRIPTION
    given a buffer with a key value, and a map of keyparts
    that are present in this value, returns the length of the value
*/
2771
uint calculate_key_len(TABLE *table, uint key, const uchar *buf,
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2772
                       key_part_map keypart_map)
2773 2774 2775 2776 2777 2778 2779 2780 2781 2782 2783 2784 2785 2786 2787 2788 2789
{
  /* works only with key prefixes */
  DBUG_ASSERT(((keypart_map + 1) & keypart_map) == 0);

  KEY *key_info= table->s->key_info+key;
  KEY_PART_INFO *key_part= key_info->key_part;
  KEY_PART_INFO *end_key_part= key_part + key_info->key_parts;
  uint length= 0;

  while (key_part < end_key_part && keypart_map)
  {
    length+= key_part->store_length;
    keypart_map >>= 1;
    key_part++;
  }
  return length;
}
2790 2791 2792 2793 2794 2795

/*
  Check if database name is valid

  SYNPOSIS
    check_db_name()
2796
    org_name		Name of database and length
2797 2798 2799 2800 2801 2802 2803 2804 2805

  NOTES
    If lower_case_table_names is set then database is converted to lower case

  RETURN
    0	ok
    1   error
*/

2806
bool check_db_name(LEX_STRING *org_name)
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2807
{
2808
  char *name= org_name->str;
2809
  uint name_length= org_name->length;
2810
  bool check_for_path_chars;
2811

2812
  if (!name_length || name_length > NAME_LEN)
2813
    return 1;
2814

2815 2816 2817 2818 2819 2820
  if ((check_for_path_chars= check_mysql50_prefix(name)))
  {
    name+= MYSQL50_TABLE_NAME_PREFIX_LENGTH;
    name_length-= MYSQL50_TABLE_NAME_PREFIX_LENGTH;
  }

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2821
  if (lower_case_table_names && name != any_db)
2822
    my_casedn_str(files_charset_info, name);
2823

2824
  return check_table_name(name, name_length, check_for_path_chars);
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2825 2826 2827 2828 2829
}


/*
  Allow anything as a table name, as long as it doesn't contain an
2830
  ' ' at the end
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2831 2832 2833
  returns 1 on error
*/

2834
bool check_table_name(const char *name, size_t length, bool check_for_path_chars)
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2835
{
2836 2837
  // name length in symbols
  size_t name_length= 0;
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2838
  const char *end= name+length;
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2839 2840
  if (!length || length > NAME_LEN)
    return 1;
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2841
#if defined(USE_MB) && defined(USE_MB_IDENT)
2842
  bool last_char_is_space= FALSE;
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2843 2844 2845 2846
#else
  if (name[length-1]==' ')
    return 1;
#endif
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2847 2848 2849 2850

  while (name != end)
  {
#if defined(USE_MB) && defined(USE_MB_IDENT)
2851
    last_char_is_space= my_isspace(system_charset_info, *name);
2852
    if (use_mb(system_charset_info))
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2853
    {
2854
      int len=my_ismbchar(system_charset_info, name, end);
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2855 2856 2857
      if (len)
      {
        name += len;
2858
        name_length++;
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2859 2860 2861 2862
        continue;
      }
    }
#endif
2863 2864
    if (check_for_path_chars &&
        (*name == '/' || *name == '\\' || *name == '~' || *name == FN_EXTCHAR))
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2865 2866
      return 1;
    name++;
2867
    name_length++;
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2868
  }
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2869
#if defined(USE_MB) && defined(USE_MB_IDENT)
2870
  return last_char_is_space || (name_length > NAME_CHAR_LEN);
2871
#else
2872
  return FALSE;
2873
#endif
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2874 2875
}

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2876

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2877 2878
bool check_column_name(const char *name)
{
2879 2880
  // name length in symbols
  size_t name_length= 0;
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2881
  bool last_char_is_space= TRUE;
2882

unknown's avatar
unknown committed
2883 2884 2885
  while (*name)
  {
#if defined(USE_MB) && defined(USE_MB_IDENT)
2886
    last_char_is_space= my_isspace(system_charset_info, *name);
2887
    if (use_mb(system_charset_info))
unknown's avatar
unknown committed
2888
    {
2889
      int len=my_ismbchar(system_charset_info, name, 
2890
                          name+system_charset_info->mbmaxlen);
unknown's avatar
unknown committed
2891 2892 2893
      if (len)
      {
        name += len;
2894
        name_length++;
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2895 2896 2897
        continue;
      }
    }
unknown's avatar
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2898
#else
2899
    last_char_is_space= *name==' ';
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2900 2901 2902 2903
#endif
    if (*name == NAMES_SEP_CHAR)
      return 1;
    name++;
2904
    name_length++;
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2905
  }
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2906
  /* Error if empty or too long column name */
2907
  return last_char_is_space || (name_length > NAME_CHAR_LEN);
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2908 2909
}

2910

2911
/**
2912 2913
  Checks whether a table is intact. Should be done *just* after the table has
  been opened.
2914 2915 2916 2917 2918 2919 2920 2921 2922 2923 2924 2925

  @param[in] table             The table to check
  @param[in] table_f_count     Expected number of columns in the table
  @param[in] table_def         Expected structure of the table (column name
                               and type)

  @retval  FALSE  OK
  @retval  TRUE   There was an error. An error message is output
                  to the error log.  We do not push an error
                  message into the error stack because this
                  function is currently only called at start up,
                  and such errors never reach the user.
2926 2927
*/

2928 2929
bool
Table_check_intact::check(TABLE *table, const TABLE_FIELD_DEF *table_def)
2930 2931 2932
{
  uint i;
  my_bool error= FALSE;
2933
  const TABLE_FIELD_TYPE *field_def= table_def->field;
2934
  DBUG_ENTER("table_check_intact");
2935
  DBUG_PRINT("info",("table: %s  expected_count: %d",
2936
                     table->alias, table_def->count));
2937

2938 2939 2940
  /* Whether the table definition has already been validated. */
  if (table->s->table_field_def_cache == table_def)
    DBUG_RETURN(FALSE);
2941

2942
  if (table->s->fields != table_def->count)
2943
  {
2944 2945 2946 2947
    DBUG_PRINT("info", ("Column count has changed, checking the definition"));

    /* previous MySQL version */
    if (MYSQL_VERSION_ID > table->s->mysql_version)
2948
    {
2949 2950 2951 2952
      report_error(ER_COL_COUNT_DOESNT_MATCH_PLEASE_UPDATE,
                   ER(ER_COL_COUNT_DOESNT_MATCH_PLEASE_UPDATE),
                   table->alias, table_def->count, table->s->fields,
                   table->s->mysql_version, MYSQL_VERSION_ID);
2953 2954 2955 2956
      DBUG_RETURN(TRUE);
    }
    else if (MYSQL_VERSION_ID == table->s->mysql_version)
    {
2957 2958 2959
      report_error(ER_COL_COUNT_DOESNT_MATCH_CORRUPTED,
                   ER(ER_COL_COUNT_DOESNT_MATCH_CORRUPTED), table->alias,
                   table_def->count, table->s->fields);
2960 2961 2962 2963 2964 2965 2966 2967 2968 2969 2970
      DBUG_RETURN(TRUE);
    }
    /*
      Something has definitely changed, but we're running an older
      version of MySQL with new system tables.
      Let's check column definitions. If a column was added at
      the end of the table, then we don't care much since such change
      is backward compatible.
    */
  }
  char buffer[STRING_BUFFER_USUAL_SIZE];
2971
  for (i=0 ; i < table_def->count; i++, field_def++)
2972 2973 2974 2975 2976 2977
  {
    String sql_type(buffer, sizeof(buffer), system_charset_info);
    sql_type.length(0);
    if (i < table->s->fields)
    {
      Field *field= table->field[i];
2978

2979 2980
      if (strncmp(field->field_name, field_def->name.str,
                  field_def->name.length))
2981
      {
2982
        /*
2983 2984 2985
          Name changes are not fatal, we use ordinal numbers to access columns.
          Still this can be a sign of a tampered table, output an error
          to the error log.
2986
        */
2987 2988 2989 2990
        report_error(0, "Incorrect definition of table %s.%s: "
                     "expected column '%s' at position %d, found '%s'.",
                     table->s->db.str, table->alias, field_def->name.str, i,
                     field->field_name);
2991
      }
2992
      field->sql_type(sql_type);
2993
      /*
2994 2995 2996 2997 2998 2999 3000 3001 3002 3003 3004 3005 3006 3007 3008 3009
        Generally, if column types don't match, then something is
        wrong.

        However, we only compare column definitions up to the
        length of the original definition, since we consider the
        following definitions compatible:

        1. DATETIME and DATETIM
        2. INT(11) and INT(11
        3. SET('one', 'two') and SET('one', 'two', 'more')

        For SETs or ENUMs, if the same prefix is there it's OK to
        add more elements - they will get higher ordinal numbers and
        the new table definition is backward compatible with the
        original one.
       */
3010 3011
      if (strncmp(sql_type.c_ptr_safe(), field_def->type.str,
                  field_def->type.length - 1))
3012
      {
3013 3014 3015 3016 3017
        report_error(0, "Incorrect definition of table %s.%s: "
                     "expected column '%s' at position %d to have type "
                     "%s, found type %s.", table->s->db.str, table->alias,
                     field_def->name.str, i, field_def->type.str,
                     sql_type.c_ptr_safe());
3018
        error= TRUE;
3019
      }
3020
      else if (field_def->cset.str && !field->has_charset())
3021
      {
3022 3023 3024 3025 3026
        report_error(0, "Incorrect definition of table %s.%s: "
                     "expected the type of column '%s' at position %d "
                     "to have character set '%s' but the type has no "
                     "character set.", table->s->db.str, table->alias,
                     field_def->name.str, i, field_def->cset.str);
3027 3028
        error= TRUE;
      }
3029 3030
      else if (field_def->cset.str &&
               strcmp(field->charset()->csname, field_def->cset.str))
3031
      {
3032 3033 3034 3035 3036 3037
        report_error(0, "Incorrect definition of table %s.%s: "
                     "expected the type of column '%s' at position %d "
                     "to have character set '%s' but found "
                     "character set '%s'.", table->s->db.str, table->alias,
                     field_def->name.str, i, field_def->cset.str,
                     field->charset()->csname);
3038
        error= TRUE;
3039 3040
      }
    }
3041 3042
    else
    {
3043 3044 3045 3046 3047
      report_error(0, "Incorrect definition of table %s.%s: "
                   "expected column '%s' at position %d to have type %s "
                   " but the column is not found.",
                   table->s->db.str, table->alias,
                   field_def->name.str, i, field_def->type.str);
3048 3049
      error= TRUE;
    }
3050
  }
3051 3052 3053 3054

  if (! error)
    table->s->table_field_def_cache= table_def;

3055
  DBUG_RETURN(error);
3056 3057 3058
}


3059 3060 3061 3062 3063 3064
/**
  Traverse portion of wait-for graph which is reachable through edge
  represented by this flush ticket in search for deadlocks.

  @retval TRUE  A deadlock is found. A victim is remembered
                by the visitor.
3065
  @retval FALSE Success, no deadlocks.
3066 3067
*/

3068
bool Wait_for_flush::accept_visitor(MDL_wait_for_graph_visitor *gvisitor)
3069
{
3070
  return m_share->visit_subgraph(this, gvisitor);
3071 3072 3073
}


3074
uint Wait_for_flush::get_deadlock_weight() const
3075 3076 3077 3078 3079 3080 3081 3082 3083 3084 3085 3086 3087 3088
{
  return m_deadlock_weight;
}


/**
  Traverse portion of wait-for graph which is reachable through this
  table share in search for deadlocks.

  @param waiting_ticket  Ticket representing wait for this share.
  @param dvisitor        Deadlock detection visitor.

  @retval TRUE  A deadlock is found. A victim is remembered
                by the visitor.
3089
  @retval FALSE No deadlocks, it's OK to begin wait.
3090 3091
*/

3092 3093
bool TABLE_SHARE::visit_subgraph(Wait_for_flush *wait_for_flush,
                                 MDL_wait_for_graph_visitor *gvisitor)
3094 3095
{
  TABLE *table;
3096
  MDL_context *src_ctx= wait_for_flush->get_ctx();
3097 3098 3099
  bool result= TRUE;

  /*
3100 3101 3102 3103 3104
    To protect used_tables list from being concurrently modified
    while we are iterating through it we acquire LOCK_open.
    This does not introduce deadlocks in the deadlock detector
    because we won't try to acquire LOCK_open while
    holding a write-lock on MDL_lock::m_rwlock.
3105
  */
3106
  if (gvisitor->m_lock_open_count++ == 0)
3107 3108 3109 3110
    mysql_mutex_lock(&LOCK_open);

  I_P_List_iterator <TABLE, TABLE_share> tables_it(used_tables);

3111 3112 3113 3114 3115
  /*
    In case of multiple searches running in parallel, avoid going
    over the same loop twice and shortcut the search.
    Do it after taking the lock to weed out unnecessary races.
  */
3116 3117 3118 3119 3120 3121
  if (src_ctx->m_wait.get_status() != MDL_wait::EMPTY)
  {
    result= FALSE;
    goto end;
  }

3122
  if (gvisitor->enter_node(src_ctx))
3123 3124 3125 3126
    goto end;

  while ((table= tables_it++))
  {
3127
    if (gvisitor->inspect_edge(&table->in_use->mdl_context))
3128 3129 3130 3131 3132 3133 3134 3135
    {
      goto end_leave_node;
    }
  }

  tables_it.rewind();
  while ((table= tables_it++))
  {
3136
    if (table->in_use->mdl_context.visit_subgraph(gvisitor))
3137 3138 3139 3140 3141 3142 3143 3144
    {
      goto end_leave_node;
    }
  }

  result= FALSE;

end_leave_node:
3145
  gvisitor->leave_node(src_ctx);
3146 3147

end:
3148
  if (gvisitor->m_lock_open_count-- == 1)
3149 3150 3151 3152 3153 3154 3155
    mysql_mutex_unlock(&LOCK_open);

  return result;
}


/**
3156 3157
  Wait until the subject share is removed from the table
  definition cache and make sure it's destroyed.
3158 3159 3160 3161 3162

  @param mdl_context     MDL context for thread which is going to wait.
  @param abstime         Timeout for waiting as absolute time value.
  @param deadlock_weight Weight of this wait for deadlock detector.

3163 3164 3165 3166
  @pre LOCK_open is write locked, the share is used (has
       non-zero reference count), is marked for flush and
       this connection does not reference the share.
       LOCK_open will be unlocked temporarily during execution.
3167 3168 3169 3170 3171

  @retval FALSE - Success.
  @retval TRUE  - Error (OOM, deadlock, timeout, etc...).
*/

3172 3173
bool TABLE_SHARE::wait_for_old_version(THD *thd, struct timespec *abstime,
                                       uint deadlock_weight)
3174
{
3175 3176
  MDL_context *mdl_context= &thd->mdl_context;
  Wait_for_flush ticket(mdl_context, this, deadlock_weight);
3177 3178 3179 3180
  MDL_wait::enum_wait_status wait_status;

  mysql_mutex_assert_owner(&LOCK_open);
  /*
3181 3182 3183
    We should enter this method only when share's version is not
    up to date and the share is referenced. Otherwise our
    thread will never be woken up from wait.
3184 3185 3186
  */
  DBUG_ASSERT(version != refresh_version && ref_count != 0);

3187
  m_flush_tickets.push_front(&ticket);
3188 3189 3190 3191 3192

  mdl_context->m_wait.reset_status();

  mysql_mutex_unlock(&LOCK_open);

3193
  mdl_context->will_wait_for(&ticket);
3194 3195 3196

  mdl_context->find_deadlock();

3197 3198
  wait_status= mdl_context->m_wait.timed_wait(thd, abstime, TRUE,
                                              "Waiting for table flush");
3199 3200 3201 3202 3203

  mdl_context->done_waiting_for();

  mysql_mutex_lock(&LOCK_open);

3204
  m_flush_tickets.remove(&ticket);
3205

3206
  if (m_flush_tickets.is_empty() && ref_count == 0)
3207
  {
3208 3209 3210 3211 3212
    /*
      If our thread was the last one using the share,
      we must destroy it here.
    */
    destroy();
3213 3214
  }

3215 3216 3217 3218 3219 3220 3221 3222 3223 3224 3225
  /*
    In cases when our wait was aborted by KILL statement,
    a deadlock or a timeout, the share might still be referenced,
    so we don't delete it. Note, that we can't determine this
    condition by checking wait_status alone, since, for example,
    a timeout can happen after all references to the table share
    were released, but before the share is removed from the
    cache and we receive the notification. This is why
    we first destroy the share, and then look at
    wait_status.
  */
3226 3227 3228 3229 3230 3231 3232 3233 3234 3235 3236 3237 3238 3239 3240 3241 3242 3243 3244
  switch (wait_status)
  {
  case MDL_wait::GRANTED:
    return FALSE;
  case MDL_wait::VICTIM:
    my_error(ER_LOCK_DEADLOCK, MYF(0));
    return TRUE;
  case MDL_wait::TIMEOUT:
    my_error(ER_LOCK_WAIT_TIMEOUT, MYF(0));
    return TRUE;
  case MDL_wait::KILLED:
    return TRUE;
  default:
    DBUG_ASSERT(0);
    return TRUE;
  }
}


3245
/**
3246 3247 3248 3249 3250
  Initialize TABLE instance (newly created, or coming either from table
  cache or THD::temporary_tables list) and prepare it for further use
  during statement execution. Set the 'alias' attribute from the specified
  TABLE_LIST element. Remember the TABLE_LIST element in the
  TABLE::pos_in_table_list member.
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  @param thd  Thread context.
  @param tl   TABLE_LIST element.
*/

void TABLE::init(THD *thd, TABLE_LIST *tl)
{
  DBUG_ASSERT(s->ref_count > 0 || s->tmp_table != NO_TMP_TABLE);

  if (thd->lex->need_correct_ident())
    alias_name_used= my_strcasecmp(table_alias_charset,
                                   s->table_name.str,
                                   tl->alias);
  /* Fix alias if table name changes. */
  if (strcmp(alias, tl->alias))
  {
    uint length= (uint) strlen(tl->alias)+1;
    alias= (char*) my_realloc((char*) alias, length, MYF(MY_WME));
    memcpy((char*) alias, tl->alias, length);
  }

  tablenr= thd->current_tablenr++;
  used_fields= 0;
  const_table= 0;
  null_row= 0;
  maybe_null= 0;
  force_index= 0;
  force_index_order= 0;
  force_index_group= 0;
  status= STATUS_NO_RECORD;
  insert_values= 0;
  fulltext_searched= 0;
  file->ft_handler= 0;
  reginfo.impossible_range= 0;

  /* Catch wrong handling of the auto_increment_field_not_null. */
  DBUG_ASSERT(!auto_increment_field_not_null);
  auto_increment_field_not_null= FALSE;

  if (timestamp_field)
    timestamp_field_type= timestamp_field->get_auto_set_type();

  pos_in_table_list= tl;

  clear_column_bitmaps();

  DBUG_ASSERT(key_read == 0);

  /* Tables may be reused in a sub statement. */
  DBUG_ASSERT(!file->extra(HA_EXTRA_IS_ATTACHED_CHILDREN));
}


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/*
  Create Item_field for each column in the table.

  SYNPOSIS
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    TABLE::fill_item_list()
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      item_list          a pointer to an empty list used to store items

  DESCRIPTION
    Create Item_field object for each column in the table and
    initialize it with the corresponding Field. New items are
    created in the current THD memory root.

  RETURN VALUE
    0                    success
    1                    out of memory
*/

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3321
bool TABLE::fill_item_list(List<Item> *item_list) const
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{
  /*
    All Item_field's created using a direct pointer to a field
    are fixed in Item_field constructor.
  */
  for (Field **ptr= field; *ptr; ptr++)
  {
    Item_field *item= new Item_field(*ptr);
    if (!item || item_list->push_back(item))
      return TRUE;
  }
  return FALSE;
}

/*
  Reset an existing list of Item_field items to point to the
  Fields of this table.

  SYNPOSIS
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3341
    TABLE::fill_item_list()
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      item_list          a non-empty list with Item_fields

  DESCRIPTION
    This is a counterpart of fill_item_list used to redirect
    Item_fields to the fields of a newly created table.
    The caller must ensure that number of items in the item_list
    is the same as the number of columns in the table.
*/

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3351
void TABLE::reset_item_list(List<Item> *item_list) const
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{
  List_iterator_fast<Item> it(*item_list);
  for (Field **ptr= field; *ptr; ptr++)
  {
    Item_field *item_field= (Item_field*) it++;
    DBUG_ASSERT(item_field != 0);
    item_field->reset_field(*ptr);
  }
}
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/*
  calculate md5 of query

  SYNOPSIS
3366
    TABLE_LIST::calc_md5()
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    buffer	buffer for md5 writing
*/
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3370
void  TABLE_LIST::calc_md5(char *buffer)
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{
3372
  uchar digest[16];
3373
  MY_MD5_HASH(digest, (uchar *) select_stmt.str, select_stmt.length);
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  sprintf((char *) buffer,
	    "%02x%02x%02x%02x%02x%02x%02x%02x%02x%02x%02x%02x%02x%02x%02x%02x",
	    digest[0], digest[1], digest[2], digest[3],
	    digest[4], digest[5], digest[6], digest[7],
	    digest[8], digest[9], digest[10], digest[11],
	    digest[12], digest[13], digest[14], digest[15]);
}


3383 3384
/**
   @brief Set underlying table for table place holder of view.
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   @details
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   Replace all views that only use one table with the table itself.  This
   allows us to treat the view as a simple table and even update it (it is a
   kind of optimization).

   @note 

   This optimization is potentially dangerous as it makes views
   masquerade as base tables: Views don't have the pointer TABLE_LIST::table
   set to non-@c NULL.

   We may have the case where a view accesses tables not normally accessible
   in the current Security_context (only in the definer's
   Security_context). According to the table's GRANT_INFO (TABLE::grant),
   access is fulfilled, but this is implicitly meant in the definer's security
   context. Hence we must never look at only a TABLE's GRANT_INFO without
   looking at the one of the referring TABLE_LIST.
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*/
3405

3406
void TABLE_LIST::set_underlying_merge()
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{
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  TABLE_LIST *tbl;

3410
  if ((tbl= merge_underlying_list))
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  {
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    /* This is a view. Process all tables of view */
3413
    DBUG_ASSERT(view && effective_algorithm == VIEW_ALGORITHM_MERGE);
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    do
    {
3416
      if (tbl->merge_underlying_list)          // This is a view
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      {
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        DBUG_ASSERT(tbl->view &&
                    tbl->effective_algorithm == VIEW_ALGORITHM_MERGE);
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        /*
          This is the only case where set_ancestor is called on an object
          that may not be a view (in which case ancestor is 0)
        */
3424
        tbl->merge_underlying_list->set_underlying_merge();
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      }
    } while ((tbl= tbl->next_local));

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    if (!multitable_view)
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    {
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      table= merge_underlying_list->table;
      schema_table= merge_underlying_list->schema_table;
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    }
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  }
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}


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/*
  setup fields of placeholder of merged VIEW

  SYNOPSIS
3441
    TABLE_LIST::setup_underlying()
3442
    thd		    - thread handler
3443

3444 3445
  DESCRIPTION
    It is:
3446
    - preparing translation table for view columns
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    If there are underlying view(s) procedure first will be called for them.

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  RETURN
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    FALSE - OK
    TRUE  - error
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*/
3453

3454
bool TABLE_LIST::setup_underlying(THD *thd)
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{
3456
  DBUG_ENTER("TABLE_LIST::setup_underlying");
3457 3458

  if (!field_translation && merge_underlying_list)
3459
  {
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    Field_translator *transl;
    SELECT_LEX *select= &view->select_lex;
    Item *item;
    TABLE_LIST *tbl;
    List_iterator_fast<Item> it(select->item_list);
    uint field_count= 0;

3467
    if (check_stack_overrun(thd, STACK_MIN_SIZE, (uchar*) &field_count))
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    {
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      DBUG_RETURN(TRUE);
3470
    }
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3472
    for (tbl= merge_underlying_list; tbl; tbl= tbl->next_local)
3473
    {
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      if (tbl->merge_underlying_list &&
          tbl->setup_underlying(thd))
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      {
        DBUG_RETURN(TRUE);
      }
    }
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    /* Create view fields translation table */

    if (!(transl=
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          (Field_translator*)(thd->stmt_arena->
3485 3486
                              alloc(select->item_list.elements *
                                    sizeof(Field_translator)))))
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    {
3488
      DBUG_RETURN(TRUE);
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    }
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    while ((item= it++))
3492
    {
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      transl[field_count].name= item->name;
      transl[field_count++].item= item;
3495
    }
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    field_translation= transl;
    field_translation_end= transl + field_count;
    /* TODO: use hash for big number of fields */
3499

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    /* full text function moving to current select */
    if (view->select_lex.ftfunc_list->elements)
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    {
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      Item_func_match *ifm;
      SELECT_LEX *current_select= thd->lex->current_select;
      List_iterator_fast<Item_func_match>
        li(*(view->select_lex.ftfunc_list));
      while ((ifm= li++))
        current_select->ftfunc_list->push_front(ifm);
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    }
  }
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  DBUG_RETURN(FALSE);
}
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/*
  Prepare where expression of view
3517

3518
  SYNOPSIS
3519
    TABLE_LIST::prep_where()
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    thd             - thread handler
    conds           - condition of this JOIN
    no_where_clause - do not build WHERE or ON outer qwery do not need it
                      (it is INSERT), we do not need conds if this flag is set
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3525 3526
  NOTE: have to be called befor CHECK OPTION preparation, because it makes
  fix_fields for view WHERE clause
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  RETURN
    FALSE - OK
    TRUE  - error
*/
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3533
bool TABLE_LIST::prep_where(THD *thd, Item **conds,
3534 3535
                               bool no_where_clause)
{
3536
  DBUG_ENTER("TABLE_LIST::prep_where");
3537

3538
  for (TABLE_LIST *tbl= merge_underlying_list; tbl; tbl= tbl->next_local)
3539
  {
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    if (tbl->view && tbl->prep_where(thd, conds, no_where_clause))
    {
      DBUG_RETURN(TRUE);
    }
3544
  }
3545

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  if (where)
  {
    if (!where->fixed && where->fix_fields(thd, &where))
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    {
3550
      DBUG_RETURN(TRUE);
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    }
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    /*
      check that it is not VIEW in which we insert with INSERT SELECT
      (in this case we can't add view WHERE condition to main SELECT_LEX)
    */
3557
    if (!no_where_clause && !where_processed)
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    {
3559
      TABLE_LIST *tbl= this;
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      Query_arena *arena= thd->stmt_arena, backup;
      arena= thd->activate_stmt_arena_if_needed(&backup);  // For easier test
3562

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      /* Go up to join tree and try to find left join */
      for (; tbl; tbl= tbl->embedding)
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      {
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        if (tbl->outer_join)
        {
          /*
            Store WHERE condition to ON expression for outer join, because
3570
            we can't use WHERE to correctly execute left joins on VIEWs and
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            this expression will not be moved to WHERE condition (i.e. will
            be clean correctly for PS/SP)
          */
3574 3575
          tbl->on_expr= and_conds(tbl->on_expr,
                                  where->copy_andor_structure(thd));
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          break;
        }
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      }
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      if (tbl == 0)
3580
        *conds= and_conds(*conds, where->copy_andor_structure(thd));
3581
      if (arena)
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        thd->restore_active_arena(arena, &backup);
3583
      where_processed= TRUE;
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    }
  }
3586

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  DBUG_RETURN(FALSE);
}


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/*
  Merge ON expressions for a view

  SYNOPSIS
    merge_on_conds()
    thd             thread handle
    table           table for the VIEW
    is_cascaded     TRUE <=> merge ON expressions from underlying views

  DESCRIPTION
    This function returns the result of ANDing the ON expressions
    of the given view and all underlying views. The ON expressions
    of the underlying views are added only if is_cascaded is TRUE.

  RETURN
    Pointer to the built expression if there is any.
    Otherwise and in the case of a failure NULL is returned.
*/

static Item *
merge_on_conds(THD *thd, TABLE_LIST *table, bool is_cascaded)
{
  DBUG_ENTER("merge_on_conds");

  Item *cond= NULL;
  DBUG_PRINT("info", ("alias: %s", table->alias));
  if (table->on_expr)
    cond= table->on_expr->copy_andor_structure(thd);
  if (!table->nested_join)
    DBUG_RETURN(cond);
  List_iterator<TABLE_LIST> li(table->nested_join->join_list);
  while (TABLE_LIST *tbl= li++)
  {
    if (tbl->view && !is_cascaded)
      continue;
    cond= and_conds(cond, merge_on_conds(thd, tbl, is_cascaded));
  }
  DBUG_RETURN(cond);
}


3632 3633 3634 3635
/*
  Prepare check option expression of table

  SYNOPSIS
3636
    TABLE_LIST::prep_check_option()
3637 3638 3639 3640 3641 3642 3643 3644 3645 3646 3647
    thd             - thread handler
    check_opt_type  - WITH CHECK OPTION type (VIEW_CHECK_NONE,
                      VIEW_CHECK_LOCAL, VIEW_CHECK_CASCADED)
                      we use this parameter instead of direct check of
                      effective_with_check to change type of underlying
                      views to VIEW_CHECK_CASCADED if outer view have
                      such option and prevent processing of underlying
                      view check options if outer view have just
                      VIEW_CHECK_LOCAL option.

  NOTE
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    This method builds check option condition to use it later on
    every call (usual execution or every SP/PS call).
3650
    This method have to be called after WHERE preparation
3651
    (TABLE_LIST::prep_where)
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3653 3654 3655 3656 3657
  RETURN
    FALSE - OK
    TRUE  - error
*/

3658
bool TABLE_LIST::prep_check_option(THD *thd, uint8 check_opt_type)
3659
{
3660
  DBUG_ENTER("TABLE_LIST::prep_check_option");
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  bool is_cascaded= check_opt_type == VIEW_CHECK_CASCADED;
3662

3663
  for (TABLE_LIST *tbl= merge_underlying_list; tbl; tbl= tbl->next_local)
3664
  {
3665
    /* see comment of check_opt_type parameter */
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    if (tbl->view && tbl->prep_check_option(thd, (is_cascaded ?
                                                  VIEW_CHECK_CASCADED :
                                                  VIEW_CHECK_NONE)))
3669
      DBUG_RETURN(TRUE);
3670
  }
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  if (check_opt_type && !check_option_processed)
3673
  {
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    Query_arena *arena= thd->stmt_arena, backup;
    arena= thd->activate_stmt_arena_if_needed(&backup);  // For easier test

3677 3678 3679
    if (where)
    {
      DBUG_ASSERT(where->fixed);
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      check_option= where->copy_andor_structure(thd);
3681
    }
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    if (is_cascaded)
3683
    {
3684
      for (TABLE_LIST *tbl= merge_underlying_list; tbl; tbl= tbl->next_local)
3685 3686
      {
        if (tbl->check_option)
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          check_option= and_conds(check_option, tbl->check_option);
3688 3689
      }
    }
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    check_option= and_conds(check_option,
                            merge_on_conds(thd, this, is_cascaded));

    if (arena)
      thd->restore_active_arena(arena, &backup);
    check_option_processed= TRUE;

3697 3698 3699 3700 3701 3702
  }

  if (check_option)
  {
    const char *save_where= thd->where;
    thd->where= "check option";
3703 3704
    if ((!check_option->fixed &&
        check_option->fix_fields(thd, &check_option)) ||
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        check_option->check_cols(1))
    {
      DBUG_RETURN(TRUE);
    }
    thd->where= save_where;
3710
  }
3711 3712 3713
  DBUG_RETURN(FALSE);
}

3714

3715
/**
3716 3717 3718 3719 3720 3721
  Hide errors which show view underlying table information. 
  There are currently two mechanisms at work that handle errors for views,
  this one and a more general mechanism based on an Internal_error_handler,
  see Show_create_error_handler. The latter handles errors encountered during
  execution of SHOW CREATE VIEW, while the machanism using this method is
  handles SELECT from views. The two methods should not clash.
3722

3723
  @param[in,out]  thd     thread handler
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3725
  @pre This method can be called only if there is an error.
3726 3727
*/

3728
void TABLE_LIST::hide_view_error(THD *thd)
3729
{
3730
  if (thd->killed || thd->get_internal_handler())
3731
    return;
3732
  /* Hide "Unknown column" or "Unknown function" error */
3733 3734
  DBUG_ASSERT(thd->is_error());

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  if (thd->stmt_da->sql_errno() == ER_BAD_FIELD_ERROR ||
      thd->stmt_da->sql_errno() == ER_SP_DOES_NOT_EXIST ||
      thd->stmt_da->sql_errno() == ER_FUNC_INEXISTENT_NAME_COLLISION ||
      thd->stmt_da->sql_errno() == ER_PROCACCESS_DENIED_ERROR ||
      thd->stmt_da->sql_errno() == ER_COLUMNACCESS_DENIED_ERROR ||
      thd->stmt_da->sql_errno() == ER_TABLEACCESS_DENIED_ERROR ||
      thd->stmt_da->sql_errno() == ER_TABLE_NOT_LOCKED ||
      thd->stmt_da->sql_errno() == ER_NO_SUCH_TABLE)
3743
  {
3744
    TABLE_LIST *top= top_table();
3745
    thd->clear_error();
3746
    my_error(ER_VIEW_INVALID, MYF(0), top->view_db.str, top->view_name.str);
3747
  }
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3748
  else if (thd->stmt_da->sql_errno() == ER_NO_DEFAULT_FOR_FIELD)
3749
  {
3750
    TABLE_LIST *top= top_table();
3751 3752
    thd->clear_error();
    // TODO: make correct error message
3753 3754
    my_error(ER_NO_DEFAULT_FOR_VIEW_FIELD, MYF(0),
             top->view_db.str, top->view_name.str);
3755
  }
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}


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/*
  Find underlying base tables (TABLE_LIST) which represent given
  table_to_find (TABLE)

  SYNOPSIS
3764
    TABLE_LIST::find_underlying_table()
3765 3766 3767 3768 3769 3770 3771
    table_to_find table to find

  RETURN
    0  table is not found
    found table reference
*/

3772
TABLE_LIST *TABLE_LIST::find_underlying_table(TABLE *table_to_find)
3773 3774
{
  /* is this real table and table which we are looking for? */
3775
  if (table == table_to_find && merge_underlying_list == 0)
3776 3777
    return this;

3778
  for (TABLE_LIST *tbl= merge_underlying_list; tbl; tbl= tbl->next_local)
3779 3780 3781 3782 3783 3784 3785 3786
  {
    TABLE_LIST *result;
    if ((result= tbl->find_underlying_table(table_to_find)))
      return result;
  }
  return 0;
}

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/*
3788
  cleanup items belonged to view fields translation table
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  SYNOPSIS
3791
    TABLE_LIST::cleanup_items()
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*/

3794
void TABLE_LIST::cleanup_items()
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{
  if (!field_translation)
    return;

3799 3800 3801
  for (Field_translator *transl= field_translation;
       transl < field_translation_end;
       transl++)
3802
    transl->item->walk(&Item::cleanup_processor, 0, 0);
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}


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/*
  check CHECK OPTION condition

  SYNOPSIS
3810
    TABLE_LIST::view_check_option()
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    ignore_failure ignore check option fail

  RETURN
    VIEW_CHECK_OK     OK
    VIEW_CHECK_ERROR  FAILED
    VIEW_CHECK_SKIP   FAILED, but continue
*/

3819
int TABLE_LIST::view_check_option(THD *thd, bool ignore_failure)
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{
  if (check_option && check_option->val_int() == 0)
  {
3823
    TABLE_LIST *main_view= top_table();
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    if (ignore_failure)
    {
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      push_warning_printf(thd, MYSQL_ERROR::WARN_LEVEL_WARN,
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                          ER_VIEW_CHECK_FAILED, ER(ER_VIEW_CHECK_FAILED),
3828
                          main_view->view_db.str, main_view->view_name.str);
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      return(VIEW_CHECK_SKIP);
    }
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    my_error(ER_VIEW_CHECK_FAILED, MYF(0), main_view->view_db.str,
             main_view->view_name.str);
    return(VIEW_CHECK_ERROR);
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  }
  return(VIEW_CHECK_OK);
}


3839
/*
3840
  Find table in underlying tables by mask and check that only this
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  table belong to given mask
3842 3843

  SYNOPSIS
3844
    TABLE_LIST::check_single_table()
3845
    table_arg	reference on variable where to store found table
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		(should be 0 on call, to find table, or point to table for
		unique test)
    map         bit mask of tables
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    view_arg    view for which we are looking table
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  RETURN
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    FALSE table not found or found only one
    TRUE  found several tables
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*/

3856
bool TABLE_LIST::check_single_table(TABLE_LIST **table_arg,
3857
                                       table_map map,
3858
                                       TABLE_LIST *view_arg)
3859
{
3860
  for (TABLE_LIST *tbl= merge_underlying_list; tbl; tbl= tbl->next_local)
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  {
    if (tbl->table)
    {
      if (tbl->table->map & map)
      {
3866
	if (*table_arg)
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	  return TRUE;
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        *table_arg= tbl;
        tbl->check_option= view_arg->check_option;
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      }
    }
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    else if (tbl->check_single_table(table_arg, map, view_arg))
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      return TRUE;
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  }
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  return FALSE;
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}


/*
  Set insert_values buffer

  SYNOPSIS
    set_insert_values()
    mem_root   memory pool for allocating

  RETURN
    FALSE - OK
    TRUE  - out of memory
*/

3891
bool TABLE_LIST::set_insert_values(MEM_ROOT *mem_root)
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{
  if (table)
  {
    if (!table->insert_values &&
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        !(table->insert_values= (uchar *)alloc_root(mem_root,
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                                                   table->s->rec_buff_length)))
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      return TRUE;
  }
  else
  {
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    DBUG_ASSERT(view && merge_underlying_list);
    for (TABLE_LIST *tbl= merge_underlying_list; tbl; tbl= tbl->next_local)
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      if (tbl->set_insert_values(mem_root))
        return TRUE;
  }
  return FALSE;
}


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/*
  Test if this is a leaf with respect to name resolution.

  SYNOPSIS
3915
    TABLE_LIST::is_leaf_for_name_resolution()
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  DESCRIPTION
    A table reference is a leaf with respect to name resolution if
    it is either a leaf node in a nested join tree (table, view,
    schema table, subquery), or an inner node that represents a
    NATURAL/USING join, or a nested join with materialized join
    columns.

  RETURN
    TRUE if a leaf, FALSE otherwise.
*/
3927
bool TABLE_LIST::is_leaf_for_name_resolution()
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{
  return (view || is_natural_join || is_join_columns_complete ||
          !nested_join);
}


/*
  Retrieve the first (left-most) leaf in a nested join tree with
  respect to name resolution.

  SYNOPSIS
3939
    TABLE_LIST::first_leaf_for_name_resolution()
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  DESCRIPTION
    Given that 'this' is a nested table reference, recursively walk
    down the left-most children of 'this' until we reach a leaf
    table reference with respect to name resolution.

  IMPLEMENTATION
    The left-most child of a nested table reference is the last element
    in the list of children because the children are inserted in
    reverse order.

  RETURN
3952
    If 'this' is a nested table reference - the left-most child of
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      the tree rooted in 'this',
3954
    else return 'this'
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*/

3957
TABLE_LIST *TABLE_LIST::first_leaf_for_name_resolution()
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{
3959 3960 3961
  TABLE_LIST *cur_table_ref;
  NESTED_JOIN *cur_nested_join;
  LINT_INIT(cur_table_ref);
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3963
  if (is_leaf_for_name_resolution())
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    return this;
3965
  DBUG_ASSERT(nested_join);
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  for (cur_nested_join= nested_join;
       cur_nested_join;
       cur_nested_join= cur_table_ref->nested_join)
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  {
    List_iterator_fast<TABLE_LIST> it(cur_nested_join->join_list);
    cur_table_ref= it++;
    /*
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      If the current nested join is a RIGHT JOIN, the operands in
      'join_list' are in reverse order, thus the first operand is
      already at the front of the list. Otherwise the first operand
      is in the end of the list of join operands.
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    */
    if (!(cur_table_ref->outer_join & JOIN_TYPE_RIGHT))
    {
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      TABLE_LIST *next;
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      while ((next= it++))
        cur_table_ref= next;
    }
    if (cur_table_ref->is_leaf_for_name_resolution())
      break;
  }
  return cur_table_ref;
}


/*
  Retrieve the last (right-most) leaf in a nested join tree with
  respect to name resolution.

  SYNOPSIS
3997
    TABLE_LIST::last_leaf_for_name_resolution()
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  DESCRIPTION
    Given that 'this' is a nested table reference, recursively walk
    down the right-most children of 'this' until we reach a leaf
    table reference with respect to name resolution.

  IMPLEMENTATION
    The right-most child of a nested table reference is the first
    element in the list of children because the children are inserted
    in reverse order.

  RETURN
    - If 'this' is a nested table reference - the right-most child of
      the tree rooted in 'this',
    - else - 'this'
*/

4015
TABLE_LIST *TABLE_LIST::last_leaf_for_name_resolution()
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{
  TABLE_LIST *cur_table_ref= this;
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  NESTED_JOIN *cur_nested_join;
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4020
  if (is_leaf_for_name_resolution())
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    return this;
4022
  DBUG_ASSERT(nested_join);
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4023

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  for (cur_nested_join= nested_join;
       cur_nested_join;
       cur_nested_join= cur_table_ref->nested_join)
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  {
4028
    cur_table_ref= cur_nested_join->join_list.head();
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    /*
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      If the current nested is a RIGHT JOIN, the operands in
      'join_list' are in reverse order, thus the last operand is in the
      end of the list.
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    */
    if ((cur_table_ref->outer_join & JOIN_TYPE_RIGHT))
    {
      List_iterator_fast<TABLE_LIST> it(cur_nested_join->join_list);
4037
      TABLE_LIST *next;
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      cur_table_ref= it++;
      while ((next= it++))
        cur_table_ref= next;
    }
    if (cur_table_ref->is_leaf_for_name_resolution())
      break;
  }
  return cur_table_ref;
}


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/*
  Register access mode which we need for underlying tables

  SYNOPSIS
    register_want_access()
    want_access          Acess which we require
*/

4057
void TABLE_LIST::register_want_access(ulong want_access)
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{
  /* Remove SHOW_VIEW_ACL, because it will be checked during making view */
  want_access&= ~SHOW_VIEW_ACL;
  if (belong_to_view)
  {
    grant.want_privilege= want_access;
    if (table)
      table->grant.want_privilege= want_access;
  }
  for (TABLE_LIST *tbl= merge_underlying_list; tbl; tbl= tbl->next_local)
    tbl->register_want_access(want_access);
}


/*
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4073
  Load security context information for this view
4074 4075

  SYNOPSIS
4076
    TABLE_LIST::prepare_view_securety_context()
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    thd                  [in] thread handler

  RETURN
    FALSE  OK
    TRUE   Error
*/

#ifndef NO_EMBEDDED_ACCESS_CHECKS
4085
bool TABLE_LIST::prepare_view_securety_context(THD *thd)
4086
{
4087
  DBUG_ENTER("TABLE_LIST::prepare_view_securety_context");
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  DBUG_PRINT("enter", ("table: %s", alias));

  DBUG_ASSERT(!prelocking_placeholder && view);
  if (view_suid)
  {
    DBUG_PRINT("info", ("This table is suid view => load contest"));
    DBUG_ASSERT(view && view_sctx);
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    if (acl_getroot(view_sctx, definer.user.str, definer.host.str,
                                definer.host.str, thd->db))
4097
    {
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      if ((thd->lex->sql_command == SQLCOM_SHOW_CREATE) ||
          (thd->lex->sql_command == SQLCOM_SHOW_FIELDS))
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      {
        push_warning_printf(thd, MYSQL_ERROR::WARN_LEVEL_NOTE, 
                            ER_NO_SUCH_USER, 
                            ER(ER_NO_SUCH_USER),
                            definer.user.str, definer.host.str);
      }
      else
      {
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        if (thd->security_ctx->master_access & SUPER_ACL)
        {
          my_error(ER_NO_SUCH_USER, MYF(0), definer.user.str, definer.host.str);

        }
        else
        {
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          if (thd->password == 2)
            my_error(ER_ACCESS_DENIED_NO_PASSWORD_ERROR, MYF(0),
                     thd->security_ctx->priv_user,
                     thd->security_ctx->priv_host);
          else
            my_error(ER_ACCESS_DENIED_ERROR, MYF(0),
                     thd->security_ctx->priv_user,
                     thd->security_ctx->priv_host,
                     (thd->password ?  ER(ER_YES) : ER(ER_NO)));
4124
        }
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        DBUG_RETURN(TRUE);
      }
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    }
  }
  DBUG_RETURN(FALSE);
}
#endif


/*
  Find security context of current view

  SYNOPSIS
4138
    TABLE_LIST::find_view_security_context()
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    thd                  [in] thread handler

*/

#ifndef NO_EMBEDDED_ACCESS_CHECKS
4144
Security_context *TABLE_LIST::find_view_security_context(THD *thd)
4145 4146 4147
{
  Security_context *sctx;
  TABLE_LIST *upper_view= this;
4148
  DBUG_ENTER("TABLE_LIST::find_view_security_context");
4149 4150 4151 4152 4153 4154 4155 4156 4157 4158 4159 4160 4161 4162 4163 4164 4165 4166 4167 4168 4169 4170 4171 4172 4173 4174 4175 4176

  DBUG_ASSERT(view);
  while (upper_view && !upper_view->view_suid)
  {
    DBUG_ASSERT(!upper_view->prelocking_placeholder);
    upper_view= upper_view->referencing_view;
  }
  if (upper_view)
  {
    DBUG_PRINT("info", ("Securety context of view %s will be used",
                        upper_view->alias));
    sctx= upper_view->view_sctx;
    DBUG_ASSERT(sctx);
  }
  else
  {
    DBUG_PRINT("info", ("Current global context will be used"));
    sctx= thd->security_ctx;
  }
  DBUG_RETURN(sctx);
}
#endif


/*
  Prepare security context and load underlying tables priveleges for view

  SYNOPSIS
4177
    TABLE_LIST::prepare_security()
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    thd                  [in] thread handler

  RETURN
    FALSE  OK
    TRUE   Error
*/

4185
bool TABLE_LIST::prepare_security(THD *thd)
4186 4187 4188
{
  List_iterator_fast<TABLE_LIST> tb(*view_tables);
  TABLE_LIST *tbl;
4189
  DBUG_ENTER("TABLE_LIST::prepare_security");
4190 4191 4192 4193 4194 4195 4196 4197 4198 4199
#ifndef NO_EMBEDDED_ACCESS_CHECKS
  Security_context *save_security_ctx= thd->security_ctx;

  DBUG_ASSERT(!prelocking_placeholder);
  if (prepare_view_securety_context(thd))
    DBUG_RETURN(TRUE);
  thd->security_ctx= find_view_security_context(thd);
  while ((tbl= tb++))
  {
    DBUG_ASSERT(tbl->referencing_view);
4200
    char *local_db, *local_table_name;
4201 4202
    if (tbl->view)
    {
4203 4204
      local_db= tbl->view_db.str;
      local_table_name= tbl->view_name.str;
4205 4206 4207
    }
    else
    {
4208 4209
      local_db= tbl->db;
      local_table_name= tbl->table_name;
4210
    }
4211 4212
    fill_effective_table_privileges(thd, &tbl->grant, local_db,
                                    local_table_name);
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    if (tbl->table)
      tbl->table->grant= grant;
  }
  thd->security_ctx= save_security_ctx;
#else
  while ((tbl= tb++))
    tbl->grant.privilege= ~NO_ACCESS;
#endif
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  DBUG_RETURN(FALSE);
4222 4223 4224
}


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Natural_join_column::Natural_join_column(Field_translator *field_param,
                                         TABLE_LIST *tab)
{
  DBUG_ASSERT(tab->field_translation);
  view_field= field_param;
  table_field= NULL;
  table_ref= tab;
  is_common= FALSE;
}


4236
Natural_join_column::Natural_join_column(Item_field *field_param,
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                                         TABLE_LIST *tab)
{
4239
  DBUG_ASSERT(tab->table == field_param->field->table);
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  table_field= field_param;
  view_field= NULL;
  table_ref= tab;
  is_common= FALSE;
}


const char *Natural_join_column::name()
{
  if (view_field)
  {
    DBUG_ASSERT(table_field == NULL);
    return view_field->name;
  }
4254 4255

  return table_field->field_name;
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}


Item *Natural_join_column::create_item(THD *thd)
{
  if (view_field)
  {
    DBUG_ASSERT(table_field == NULL);
4264 4265
    return create_view_field(thd, table_ref, &view_field->item,
                             view_field->name);
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  }
4267
  return table_field;
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}


Field *Natural_join_column::field()
{
  if (view_field)
  {
    DBUG_ASSERT(table_field == NULL);
    return NULL;
  }
4278
  return table_field->field;
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}


const char *Natural_join_column::table_name()
{
4284
  DBUG_ASSERT(table_ref);
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  return table_ref->alias;
}


const char *Natural_join_column::db_name()
{
  if (view_field)
    return table_ref->view_db.str;
4293

4294
  /*
Konstantin Osipov's avatar
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4295
    Test that TABLE_LIST::db is the same as TABLE_SHARE::db to
4296 4297 4298
    ensure consistency. An exception are I_S schema tables, which
    are inconsistent in this respect.
  */
4299
  DBUG_ASSERT(!strcmp(table_ref->db,
4300
                      table_ref->table->s->db.str) ||
4301
              (table_ref->schema_table &&
4302 4303
               is_infoschema_db(table_ref->table->s->db.str,
                                table_ref->table->s->db.length)));
4304
  return table_ref->db;
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}


GRANT_INFO *Natural_join_column::grant()
{
  if (view_field)
    return &(table_ref->grant);
4312
  return &(table_ref->table->grant);
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}


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VIEW  
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void Field_iterator_view::set(TABLE_LIST *table)
{
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  DBUG_ASSERT(table->field_translation);
4319
  view= table;
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  ptr= table->field_translation;
4321
  array_end= table->field_translation_end;
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}


const char *Field_iterator_table::name()
{
  return (*ptr)->field_name;
}


4331
Item *Field_iterator_table::create_item(THD *thd)
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VIEW  
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{
4333 4334 4335 4336 4337 4338 4339 4340 4341 4342
  SELECT_LEX *select= thd->lex->current_select;

  Item_field *item= new Item_field(thd, &select->context, *ptr);
  if (item && thd->variables.sql_mode & MODE_ONLY_FULL_GROUP_BY &&
      !thd->lex->in_sum_func && select->cur_pos_in_select_list != UNDEF_POS)
  {
    select->non_agg_fields.push_back(item);
    item->marker= select->cur_pos_in_select_list;
  }
  return item;
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}


const char *Field_iterator_view::name()
{
4348
  return ptr->name;
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}


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Item *Field_iterator_view::create_item(THD *thd)
{
  return create_view_field(thd, view, &ptr->item, ptr->name);
}

Item *create_view_field(THD *thd, TABLE_LIST *view, Item **field_ref,
                        const char *name)
{
  bool save_wrapper= thd->lex->select_lex.no_wrap_view_item;
  Item *field= *field_ref;
  DBUG_ENTER("create_view_field");

  if (view->schema_table_reformed)
  {
    /*
4367 4368 4369
      Translation table items are always Item_fields and already fixed
      ('mysql_schema_table' function). So we can return directly the
      field. This case happens only for 'show & where' commands.
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    */
    DBUG_ASSERT(field && field->fixed);
    DBUG_RETURN(field);
  }

  DBUG_ASSERT(field);
  thd->lex->current_select->no_wrap_view_item= TRUE;
  if (!field->fixed)
  {
    if (field->fix_fields(thd, field_ref))
    {
      thd->lex->current_select->no_wrap_view_item= save_wrapper;
      DBUG_RETURN(0);
    }
    field= *field_ref;
  }
  thd->lex->current_select->no_wrap_view_item= save_wrapper;
4387
  if (save_wrapper)
4388 4389 4390
  {
    DBUG_RETURN(field);
  }
4391
  Item *item= new Item_direct_view_ref(view, field_ref, name);
4392 4393 4394 4395
  DBUG_RETURN(item);
}


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void Field_iterator_natural_join::set(TABLE_LIST *table_ref)
{
  DBUG_ASSERT(table_ref->join_columns);
4399 4400
  column_ref_it.init(*(table_ref->join_columns));
  cur_column_ref= column_ref_it++;
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}


4404 4405
void Field_iterator_natural_join::next()
{
4406
  cur_column_ref= column_ref_it++;
4407 4408
  DBUG_ASSERT(!cur_column_ref || ! cur_column_ref->table_field ||
              cur_column_ref->table_ref->table ==
4409
              cur_column_ref->table_field->field->table);
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}


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void Field_iterator_table_ref::set_field_iterator()
{
  DBUG_ENTER("Field_iterator_table_ref::set_field_iterator");
  /*
    If the table reference we are iterating over is a natural join, or it is
    an operand of a natural join, and TABLE_LIST::join_columns contains all
    the columns of the join operand, then we pick the columns from
    TABLE_LIST::join_columns, instead of the  orginial container of the
    columns of the join operator.
  */
  if (table_ref->is_join_columns_complete)
  {
    /* Necesary, but insufficient conditions. */
    DBUG_ASSERT(table_ref->is_natural_join ||
                table_ref->nested_join ||
4428
                (table_ref->join_columns &&
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                /* This is a merge view. */
                ((table_ref->field_translation &&
                  table_ref->join_columns->elements ==
                  (ulong)(table_ref->field_translation_end -
                          table_ref->field_translation)) ||
                 /* This is stored table or a tmptable view. */
                 (!table_ref->field_translation &&
                  table_ref->join_columns->elements ==
4437
                  table_ref->table->s->fields))));
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    field_it= &natural_join_it;
    DBUG_PRINT("info",("field_it for '%s' is Field_iterator_natural_join",
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                       table_ref->alias));
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  }
  /* This is a merge view, so use field_translation. */
  else if (table_ref->field_translation)
  {
    DBUG_ASSERT(table_ref->view &&
                table_ref->effective_algorithm == VIEW_ALGORITHM_MERGE);
    field_it= &view_field_it;
    DBUG_PRINT("info", ("field_it for '%s' is Field_iterator_view",
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                        table_ref->alias));
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  }
  /* This is a base table or stored view. */
  else
  {
    DBUG_ASSERT(table_ref->table || table_ref->view);
    field_it= &table_field_it;
    DBUG_PRINT("info", ("field_it for '%s' is Field_iterator_table",
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                        table_ref->alias));
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  }
4459
  field_it->set(table_ref);
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  DBUG_VOID_RETURN;
}


void Field_iterator_table_ref::set(TABLE_LIST *table)
{
  DBUG_ASSERT(table);
  first_leaf= table->first_leaf_for_name_resolution();
  last_leaf=  table->last_leaf_for_name_resolution();
  DBUG_ASSERT(first_leaf && last_leaf);
  table_ref= first_leaf;
  set_field_iterator();
}


void Field_iterator_table_ref::next()
{
  /* Move to the next field in the current table reference. */
  field_it->next();
  /*
    If all fields of the current table reference are exhausted, move to
    the next leaf table reference.
  */
  if (field_it->end_of_fields() && table_ref != last_leaf)
  {
    table_ref= table_ref->next_name_resolution_table;
    DBUG_ASSERT(table_ref);
    set_field_iterator();
  }
}


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const char *Field_iterator_table_ref::get_table_name()
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{
  if (table_ref->view)
    return table_ref->view_name.str;
  else if (table_ref->is_natural_join)
    return natural_join_it.column_ref()->table_name();
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  DBUG_ASSERT(!strcmp(table_ref->table_name,
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                      table_ref->table->s->table_name.str));
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  return table_ref->table_name;
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}


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const char *Field_iterator_table_ref::get_db_name()
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{
  if (table_ref->view)
    return table_ref->view_db.str;
  else if (table_ref->is_natural_join)
    return natural_join_it.column_ref()->db_name();
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  /*
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    Test that TABLE_LIST::db is the same as TABLE_SHARE::db to
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    ensure consistency. An exception are I_S schema tables, which
    are inconsistent in this respect.
  */
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  DBUG_ASSERT(!strcmp(table_ref->db, table_ref->table->s->db.str) ||
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              (table_ref->schema_table &&
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               is_infoschema_db(table_ref->table->s->db.str,
                                table_ref->table->s->db.length)));
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  return table_ref->db;
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}


GRANT_INFO *Field_iterator_table_ref::grant()
{
  if (table_ref->view)
    return &(table_ref->grant);
  else if (table_ref->is_natural_join)
    return natural_join_it.column_ref()->grant();
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  return &(table_ref->table->grant);
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}


/*
  Create new or return existing column reference to a column of a
  natural/using join.

  SYNOPSIS
    Field_iterator_table_ref::get_or_create_column_ref()
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    parent_table_ref  the parent table reference over which the
                      iterator is iterating
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  DESCRIPTION
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    Create a new natural join column for the current field of the
    iterator if no such column was created, or return an already
    created natural join column. The former happens for base tables or
    views, and the latter for natural/using joins. If a new field is
    created, then the field is added to 'parent_table_ref' if it is
    given, or to the original table referene of the field if
    parent_table_ref == NULL.

  NOTES
    This method is designed so that when a Field_iterator_table_ref
    walks through the fields of a table reference, all its fields
    are created and stored as follows:
    - If the table reference being iterated is a stored table, view or
      natural/using join, store all natural join columns in a list
      attached to that table reference.
    - If the table reference being iterated is a nested join that is
      not natural/using join, then do not materialize its result
      fields. This is OK because for such table references
      Field_iterator_table_ref iterates over the fields of the nested
      table references (recursively). In this way we avoid the storage
      of unnecessay copies of result columns of nested joins.
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  RETURN
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    #     Pointer to a column of a natural join (or its operand)
    NULL  No memory to allocate the column
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*/

Natural_join_column *
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Field_iterator_table_ref::get_or_create_column_ref(THD *thd, TABLE_LIST *parent_table_ref)
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{
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  Natural_join_column *nj_col;
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  bool is_created= TRUE;
  uint field_count;
  TABLE_LIST *add_table_ref= parent_table_ref ?
                             parent_table_ref : table_ref;
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  LINT_INIT(field_count);
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  if (field_it == &table_field_it)
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  {
    /* The field belongs to a stored table. */
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    Field *tmp_field= table_field_it.field();
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    Item_field *tmp_item=
      new Item_field(thd, &thd->lex->current_select->context, tmp_field);
    if (!tmp_item)
      return NULL;
    nj_col= new Natural_join_column(tmp_item, table_ref);
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    field_count= table_ref->table->s->fields;
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  }
  else if (field_it == &view_field_it)
  {
    /* The field belongs to a merge view or information schema table. */
    Field_translator *translated_field= view_field_it.field_translator();
    nj_col= new Natural_join_column(translated_field, table_ref);
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    field_count= table_ref->field_translation_end -
                 table_ref->field_translation;
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  }
  else
  {
    /*
      The field belongs to a NATURAL join, therefore the column reference was
      already created via one of the two constructor calls above. In this case
      we just return the already created column reference.
    */
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    DBUG_ASSERT(table_ref->is_join_columns_complete);
    is_created= FALSE;
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    nj_col= natural_join_it.column_ref();
    DBUG_ASSERT(nj_col);
  }
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  DBUG_ASSERT(!nj_col->table_field ||
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              nj_col->table_ref->table == nj_col->table_field->field->table);
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  /*
    If the natural join column was just created add it to the list of
    natural join columns of either 'parent_table_ref' or to the table
    reference that directly contains the original field.
  */
  if (is_created)
  {
    /* Make sure not all columns were materialized. */
    DBUG_ASSERT(!add_table_ref->is_join_columns_complete);
    if (!add_table_ref->join_columns)
    {
      /* Create a list of natural join columns on demand. */
      if (!(add_table_ref->join_columns= new List<Natural_join_column>))
        return NULL;
      add_table_ref->is_join_columns_complete= FALSE;
    }
    add_table_ref->join_columns->push_back(nj_col);
    /*
      If new fields are added to their original table reference, mark if
      all fields were added. We do it here as the caller has no easy way
      of knowing when to do it.
      If the fields are being added to parent_table_ref, then the caller
      must take care to mark when all fields are created/added.
    */
    if (!parent_table_ref &&
        add_table_ref->join_columns->elements == field_count)
      add_table_ref->is_join_columns_complete= TRUE;
  }

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  return nj_col;
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}


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/*
  Return an existing reference to a column of a natural/using join.

  SYNOPSIS
    Field_iterator_table_ref::get_natural_column_ref()

  DESCRIPTION
    The method should be called in contexts where it is expected that
    all natural join columns are already created, and that the column
    being retrieved is a Natural_join_column.

  RETURN
    #     Pointer to a column of a natural join (or its operand)
    NULL  No memory to allocate the column
*/

Natural_join_column *
Field_iterator_table_ref::get_natural_column_ref()
{
  Natural_join_column *nj_col;

  DBUG_ASSERT(field_it == &natural_join_it);
  /*
    The field belongs to a NATURAL join, therefore the column reference was
    already created via one of the two constructor calls above. In this case
    we just return the already created column reference.
  */
  nj_col= natural_join_it.column_ref();
  DBUG_ASSERT(nj_col &&
              (!nj_col->table_field ||
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               nj_col->table_ref->table == nj_col->table_field->field->table));
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  return nj_col;
}

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/*****************************************************************************
  Functions to handle column usage bitmaps (read_set, write_set etc...)
*****************************************************************************/

/* Reset all columns bitmaps */

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void TABLE::clear_column_bitmaps()
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{
  /*
    Reset column read/write usage. It's identical to:
    bitmap_clear_all(&table->def_read_set);
    bitmap_clear_all(&table->def_write_set);
  */
  bzero((char*) def_read_set.bitmap, s->column_bitmap_size*2);
  column_bitmaps_set(&def_read_set, &def_write_set);
}


/*
  Tell handler we are going to call position() and rnd_pos() later.
  
  NOTES:
  This is needed for handlers that uses the primary key to find the
  row. In this case we have to extend the read bitmap with the primary
  key fields.
*/

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void TABLE::prepare_for_position()
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{
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  DBUG_ENTER("TABLE::prepare_for_position");
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  if ((file->ha_table_flags() & HA_PRIMARY_KEY_IN_READ_INDEX) &&
      s->primary_key < MAX_KEY)
  {
    mark_columns_used_by_index_no_reset(s->primary_key, read_set);
    /* signal change */
    file->column_bitmaps_signal();
  }
  DBUG_VOID_RETURN;
}


/*
  Mark that only fields from one key is used

  NOTE:
    This changes the bitmap to use the tmp bitmap
    After this, you can't access any other columns in the table until
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    bitmaps are reset, for example with TABLE::clear_column_bitmaps()
    or TABLE::restore_column_maps_after_mark_index()
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*/

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void TABLE::mark_columns_used_by_index(uint index)
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{
  MY_BITMAP *bitmap= &tmp_set;
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  DBUG_ENTER("TABLE::mark_columns_used_by_index");
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  set_keyread(TRUE);
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  bitmap_clear_all(bitmap);
  mark_columns_used_by_index_no_reset(index, bitmap);
  column_bitmaps_set(bitmap, bitmap);
  DBUG_VOID_RETURN;
}


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/*
  Add fields used by a specified index to the table's read_set.

  NOTE:
    The original state can be restored with
    restore_column_maps_after_mark_index().
*/

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void TABLE::add_read_columns_used_by_index(uint index)
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{
  MY_BITMAP *bitmap= &tmp_set;
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  DBUG_ENTER("TABLE::add_read_columns_used_by_index");
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  set_keyread(TRUE);
  bitmap_copy(bitmap, read_set);
  mark_columns_used_by_index_no_reset(index, bitmap);
  column_bitmaps_set(bitmap, write_set);
  DBUG_VOID_RETURN;
}


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/*
  Restore to use normal column maps after key read

  NOTES
    This reverse the change done by mark_columns_used_by_index

  WARNING
    For this to work, one must have the normal table maps in place
    when calling mark_columns_used_by_index
*/

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void TABLE::restore_column_maps_after_mark_index()
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{
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  DBUG_ENTER("TABLE::restore_column_maps_after_mark_index");
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  set_keyread(FALSE);
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  default_column_bitmaps();
  file->column_bitmaps_signal();
  DBUG_VOID_RETURN;
}


/*
  mark columns used by key, but don't reset other fields
*/

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void TABLE::mark_columns_used_by_index_no_reset(uint index,
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                                                   MY_BITMAP *bitmap)
{
  KEY_PART_INFO *key_part= key_info[index].key_part;
  KEY_PART_INFO *key_part_end= (key_part +
                                key_info[index].key_parts);
  for (;key_part != key_part_end; key_part++)
    bitmap_set_bit(bitmap, key_part->fieldnr-1);
}


/*
  Mark auto-increment fields as used fields in both read and write maps

  NOTES
    This is needed in insert & update as the auto-increment field is
    always set and sometimes read.
*/

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void TABLE::mark_auto_increment_column()
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{
  DBUG_ASSERT(found_next_number_field);
  /*
    We must set bit in read set as update_auto_increment() is using the
    store() to check overflow of auto_increment values
  */
  bitmap_set_bit(read_set, found_next_number_field->field_index);
  bitmap_set_bit(write_set, found_next_number_field->field_index);
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  if (s->next_number_keypart)
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    mark_columns_used_by_index_no_reset(s->next_number_index, read_set);
  file->column_bitmaps_signal();
}


/*
  Mark columns needed for doing an delete of a row

  DESCRIPTON
    Some table engines don't have a cursor on the retrieve rows
    so they need either to use the primary key or all columns to
    be able to delete a row.

    If the engine needs this, the function works as follows:
    - If primary key exits, mark the primary key columns to be read.
    - If not, mark all columns to be read

    If the engine has HA_REQUIRES_KEY_COLUMNS_FOR_DELETE, we will
    mark all key columns as 'to-be-read'. This allows the engine to
    loop over the given record to find all keys and doesn't have to
    retrieve the row again.
*/

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void TABLE::mark_columns_needed_for_delete()
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{
  if (triggers)
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    triggers->mark_fields_used(TRG_EVENT_DELETE);
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  if (file->ha_table_flags() & HA_REQUIRES_KEY_COLUMNS_FOR_DELETE)
  {
    Field **reg_field;
    for (reg_field= field ; *reg_field ; reg_field++)
    {
      if ((*reg_field)->flags & PART_KEY_FLAG)
        bitmap_set_bit(read_set, (*reg_field)->field_index);
    }
    file->column_bitmaps_signal();
  }
  if (file->ha_table_flags() & HA_PRIMARY_KEY_REQUIRED_FOR_DELETE)
  {
    /*
      If the handler has no cursor capabilites, we have to read either
      the primary key, the hidden primary key or all columns to be
      able to do an delete
    */
    if (s->primary_key == MAX_KEY)
      file->use_hidden_primary_key();
    else
    {
      mark_columns_used_by_index_no_reset(s->primary_key, read_set);
      file->column_bitmaps_signal();
    }
  }
}


/*
  Mark columns needed for doing an update of a row

  DESCRIPTON
    Some engines needs to have all columns in an update (to be able to
    build a complete row). If this is the case, we mark all not
    updated columns to be read.

    If this is no the case, we do like in the delete case and mark
    if neeed, either the primary key column or all columns to be read.
    (see mark_columns_needed_for_delete() for details)

    If the engine has HA_REQUIRES_KEY_COLUMNS_FOR_DELETE, we will
    mark all USED key columns as 'to-be-read'. This allows the engine to
    loop over the given record to find all changed keys and doesn't have to
    retrieve the row again.
*/

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void TABLE::mark_columns_needed_for_update()
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{
  DBUG_ENTER("mark_columns_needed_for_update");
  if (triggers)
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    triggers->mark_fields_used(TRG_EVENT_UPDATE);
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  if (file->ha_table_flags() & HA_REQUIRES_KEY_COLUMNS_FOR_DELETE)
  {
    /* Mark all used key columns for read */
    Field **reg_field;
    for (reg_field= field ; *reg_field ; reg_field++)
    {
      /* Merge keys is all keys that had a column refered to in the query */
      if (merge_keys.is_overlapping((*reg_field)->part_of_key))
        bitmap_set_bit(read_set, (*reg_field)->field_index);
    }
    file->column_bitmaps_signal();
  }
  if (file->ha_table_flags() & HA_PRIMARY_KEY_REQUIRED_FOR_DELETE)
  {
    /*
      If the handler has no cursor capabilites, we have to read either
      the primary key, the hidden primary key or all columns to be
      able to do an update
    */
    if (s->primary_key == MAX_KEY)
      file->use_hidden_primary_key();
    else
    {
      mark_columns_used_by_index_no_reset(s->primary_key, read_set);
      file->column_bitmaps_signal();
    }
  }
  DBUG_VOID_RETURN;
}


/*
  Mark columns the handler needs for doing an insert

  For now, this is used to mark fields used by the trigger
  as changed.
*/

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void TABLE::mark_columns_needed_for_insert()
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{
  if (triggers)
  {
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    /*
      We don't need to mark columns which are used by ON DELETE and
      ON UPDATE triggers, which may be invoked in case of REPLACE or
      INSERT ... ON DUPLICATE KEY UPDATE, since before doing actual
      row replacement or update write_record() will mark all table
      fields as used.
    */
    triggers->mark_fields_used(TRG_EVENT_INSERT);
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  }
  if (found_next_number_field)
    mark_auto_increment_column();
}

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/*
  Cleanup this table for re-execution.

  SYNOPSIS
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    TABLE_LIST::reinit_before_use()
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*/

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void TABLE_LIST::reinit_before_use(THD *thd)
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{
  /*
    Reset old pointers to TABLEs: they are not valid since the tables
    were closed in the end of previous prepare or execute call.
  */
  table= 0;
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  /* Reset is_schema_table_processed value(needed for I_S tables */
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  schema_table_state= NOT_PROCESSED;
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  TABLE_LIST *embedded; /* The table at the current level of nesting. */
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  TABLE_LIST *parent_embedding= this; /* The parent nested table reference. */
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  do
  {
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    embedded= parent_embedding;
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    if (embedded->prep_on_expr)
      embedded->on_expr= embedded->prep_on_expr->copy_andor_structure(thd);
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    parent_embedding= embedded->embedding;
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  }
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  while (parent_embedding &&
         parent_embedding->nested_join->join_list.head() == embedded);
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  mdl_request.ticket= NULL;
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}

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/*
  Return subselect that contains the FROM list this table is taken from

  SYNOPSIS
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    TABLE_LIST::containing_subselect()
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  RETURN
    Subselect item for the subquery that contains the FROM list
    this table is taken from if there is any
    0 - otherwise

*/

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Item_subselect *TABLE_LIST::containing_subselect()
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{    
  return (select_lex ? select_lex->master_unit()->item : 0);
}
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/*
  Compiles the tagged hints list and fills up the bitmasks.

  SYNOPSIS
    process_index_hints()
      table         the TABLE to operate on.

  DESCRIPTION
    The parser collects the index hints for each table in a "tagged list" 
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    (TABLE_LIST::index_hints). Using the information in this tagged list
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    this function sets the members st_table::keys_in_use_for_query,
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    st_table::keys_in_use_for_group_by, st_table::keys_in_use_for_order_by,
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    st_table::force_index, st_table::force_index_order,
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    st_table::force_index_group and st_table::covering_keys.
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    Current implementation of the runtime does not allow mixing FORCE INDEX
    and USE INDEX, so this is checked here. Then the FORCE INDEX list 
    (if non-empty) is appended to the USE INDEX list and a flag is set.

    Multiple hints of the same kind are processed so that each clause 
    is applied to what is computed in the previous clause.
    For example:
        USE INDEX (i1) USE INDEX (i2)
    is equivalent to
        USE INDEX (i1,i2)
    and means "consider only i1 and i2".
        
    Similarly
        USE INDEX () USE INDEX (i1)
    is equivalent to
        USE INDEX (i1)
    and means "consider only the index i1"

    It is OK to have the same index several times, e.g. "USE INDEX (i1,i1)" is
    not an error.
        
    Different kind of hints (USE/FORCE/IGNORE) are processed in the following
    order:
      1. All indexes in USE (or FORCE) INDEX are added to the mask.
      2. All IGNORE INDEX

    e.g. "USE INDEX i1, IGNORE INDEX i1, USE INDEX i1" will not use i1 at all
    as if we had "USE INDEX i1, USE INDEX i1, IGNORE INDEX i1".

    As an optimization if there is a covering index, and we have 
    IGNORE INDEX FOR GROUP/ORDER, and this index is used for the JOIN part, 
    then we have to ignore the IGNORE INDEX FROM GROUP/ORDER.

  RETURN VALUE
    FALSE                no errors found
    TRUE                 found and reported an error.
*/
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bool TABLE_LIST::process_index_hints(TABLE *tbl)
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{
  /* initialize the result variables */
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  tbl->keys_in_use_for_query= tbl->keys_in_use_for_group_by= 
    tbl->keys_in_use_for_order_by= tbl->s->keys_in_use;
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  /* index hint list processing */
  if (index_hints)
  {
    key_map index_join[INDEX_HINT_FORCE + 1];
    key_map index_order[INDEX_HINT_FORCE + 1];
    key_map index_group[INDEX_HINT_FORCE + 1];
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    Index_hint *hint;
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    int type;
    bool have_empty_use_join= FALSE, have_empty_use_order= FALSE, 
         have_empty_use_group= FALSE;
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    List_iterator <Index_hint> iter(*index_hints);
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    /* initialize temporary variables used to collect hints of each kind */
    for (type= INDEX_HINT_IGNORE; type <= INDEX_HINT_FORCE; type++)
    {
      index_join[type].clear_all();
      index_order[type].clear_all();
      index_group[type].clear_all();
    }

    /* iterate over the hints list */
    while ((hint= iter++))
    {
      uint pos;

      /* process empty USE INDEX () */
      if (hint->type == INDEX_HINT_USE && !hint->key_name.str)
      {
        if (hint->clause & INDEX_HINT_MASK_JOIN)
        {
          index_join[hint->type].clear_all();
          have_empty_use_join= TRUE;
        }
        if (hint->clause & INDEX_HINT_MASK_ORDER)
        {
          index_order[hint->type].clear_all();
          have_empty_use_order= TRUE;
        }
        if (hint->clause & INDEX_HINT_MASK_GROUP)
        {
          index_group[hint->type].clear_all();
          have_empty_use_group= TRUE;
        }
        continue;
      }

      /* 
        Check if an index with the given name exists and get his offset in 
        the keys bitmask for the table 
      */
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      if (tbl->s->keynames.type_names == 0 ||
          (pos= find_type(&tbl->s->keynames, hint->key_name.str,
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                          hint->key_name.length, 1)) <= 0)
      {
        my_error(ER_KEY_DOES_NOT_EXITS, MYF(0), hint->key_name.str, alias);
        return 1;
      }

      pos--;

      /* add to the appropriate clause mask */
      if (hint->clause & INDEX_HINT_MASK_JOIN)
        index_join[hint->type].set_bit (pos);
      if (hint->clause & INDEX_HINT_MASK_ORDER)
        index_order[hint->type].set_bit (pos);
      if (hint->clause & INDEX_HINT_MASK_GROUP)
        index_group[hint->type].set_bit (pos);
    }

    /* cannot mix USE INDEX and FORCE INDEX */
    if ((!index_join[INDEX_HINT_FORCE].is_clear_all() ||
         !index_order[INDEX_HINT_FORCE].is_clear_all() ||
         !index_group[INDEX_HINT_FORCE].is_clear_all()) &&
        (!index_join[INDEX_HINT_USE].is_clear_all() ||  have_empty_use_join ||
         !index_order[INDEX_HINT_USE].is_clear_all() || have_empty_use_order ||
         !index_group[INDEX_HINT_USE].is_clear_all() || have_empty_use_group))
    {
      my_error(ER_WRONG_USAGE, MYF(0), index_hint_type_name[INDEX_HINT_USE],
               index_hint_type_name[INDEX_HINT_FORCE]);
      return 1;
    }

    /* process FORCE INDEX as USE INDEX with a flag */
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    if (!index_order[INDEX_HINT_FORCE].is_clear_all())
    {
      tbl->force_index_order= TRUE;
      index_order[INDEX_HINT_USE].merge(index_order[INDEX_HINT_FORCE]);
    }

    if (!index_group[INDEX_HINT_FORCE].is_clear_all())
    {
      tbl->force_index_group= TRUE;
      index_group[INDEX_HINT_USE].merge(index_group[INDEX_HINT_FORCE]);
    }

    /*
      TODO: get rid of tbl->force_index (on if any FORCE INDEX is specified) and
      create tbl->force_index_join instead.
      Then use the correct force_index_XX instead of the global one.
    */
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    if (!index_join[INDEX_HINT_FORCE].is_clear_all() ||
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        tbl->force_index_group || tbl->force_index_order)
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    {
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      tbl->force_index= TRUE;
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      index_join[INDEX_HINT_USE].merge(index_join[INDEX_HINT_FORCE]);
    }

    /* apply USE INDEX */
    if (!index_join[INDEX_HINT_USE].is_clear_all() || have_empty_use_join)
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      tbl->keys_in_use_for_query.intersect(index_join[INDEX_HINT_USE]);
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    if (!index_order[INDEX_HINT_USE].is_clear_all() || have_empty_use_order)
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      tbl->keys_in_use_for_order_by.intersect (index_order[INDEX_HINT_USE]);
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    if (!index_group[INDEX_HINT_USE].is_clear_all() || have_empty_use_group)
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      tbl->keys_in_use_for_group_by.intersect (index_group[INDEX_HINT_USE]);
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    /* apply IGNORE INDEX */
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    tbl->keys_in_use_for_query.subtract (index_join[INDEX_HINT_IGNORE]);
    tbl->keys_in_use_for_order_by.subtract (index_order[INDEX_HINT_IGNORE]);
    tbl->keys_in_use_for_group_by.subtract (index_group[INDEX_HINT_IGNORE]);
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  }

  /* make sure covering_keys don't include indexes disabled with a hint */
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  tbl->covering_keys.intersect(tbl->keys_in_use_for_query);
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  return 0;
}

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size_t max_row_length(TABLE *table, const uchar *data)
{
  TABLE_SHARE *table_s= table->s;
  size_t length= table_s->reclength + 2 * table_s->fields;
  uint *const beg= table_s->blob_field;
  uint *const end= beg + table_s->blob_fields;

  for (uint *ptr= beg ; ptr != end ; ++ptr)
  {
    Field_blob* const blob= (Field_blob*) table->field[*ptr];
    length+= blob->get_length((const uchar*)
                              (data + blob->offset(table->record[0]))) +
      HA_KEY_BLOB_LENGTH;
  }
  return length;
}

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/**
   Helper function which allows to allocate metadata lock request
   objects for all elements of table list.
*/

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void init_mdl_requests(TABLE_LIST *table_list)
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{
  for ( ; table_list ; table_list= table_list->next_global)
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    table_list->mdl_request.init(MDL_key::TABLE,
                                 table_list->db, table_list->table_name,
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                                 table_list->lock_type >= TL_WRITE_ALLOW_WRITE ?
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                                 MDL_SHARED_WRITE : MDL_SHARED_READ,
                                 MDL_TRANSACTION);
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}


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/**
  Update TABLE::const_key_parts for single table UPDATE/DELETE query

  @param conds               WHERE clause expression

  @retval TRUE   error (OOM)
  @retval FALSE  success

  @note
    Set const_key_parts bits if key fields are equal to constants in
    the WHERE expression.
*/

bool TABLE::update_const_key_parts(COND *conds)
{
  bzero((char*) const_key_parts, sizeof(key_part_map) * s->keys);

  if (conds == NULL)
    return FALSE;

  for (uint index= 0; index < s->keys; index++)
  {
    KEY_PART_INFO *keyinfo= key_info[index].key_part;
    KEY_PART_INFO *keyinfo_end= keyinfo + key_info[index].key_parts;

    for (key_part_map part_map= (key_part_map)1; 
        keyinfo < keyinfo_end;
        keyinfo++, part_map<<= 1)
    {
      if (const_expression_in_where(conds, NULL, keyinfo->field))
        const_key_parts[index]|= part_map;
    }
  }
  return FALSE;
}

/**
  Test if the order list consists of simple field expressions

  @param order                Linked list of ORDER BY arguments

  @return TRUE if @a order is empty or consist of simple field expressions
*/

bool is_simple_order(ORDER *order)
{
  for (ORDER *ord= order; ord; ord= ord->next)
  {
    if (ord->item[0]->real_item()->type() != Item::FIELD_ITEM)
      return FALSE;
  }
  return TRUE;
}


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/*****************************************************************************
** Instansiate templates
*****************************************************************************/

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#ifdef HAVE_EXPLICIT_TEMPLATE_INSTANTIATION
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template class List<String>;
template class List_iterator<String>;
#endif