mirror of
https://github.com/MariaDB/server.git
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457 lines
12 KiB
C++
457 lines
12 KiB
C++
/* Copyright (c) 2008, 2010, Oracle and/or its affiliates. All rights reserved.
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This program is free software; you can redistribute it and/or modify
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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,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program; if not, write to the Free Software
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Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1335 USA */
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#include "mariadb.h"
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#include "sql_priv.h"
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#include "sp_head.h"
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#include "sp_pcontext.h"
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#include "sp_rcontext.h"
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#include "sql_signal.h"
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/*
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The parser accepts any error code (desired)
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The runtime internally supports any error code (desired)
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The client server protocol is limited to 16 bits error codes (restriction),
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and the value of 65535 is reserved for progress reporting.
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Enforcing the 65534 limit in the runtime until the protocol can change.
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*/
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#define MAX_MYSQL_ERRNO 65534
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const LEX_CSTRING Diag_condition_item_names[]=
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{
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{ STRING_WITH_LEN("CLASS_ORIGIN") },
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{ STRING_WITH_LEN("SUBCLASS_ORIGIN") },
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{ STRING_WITH_LEN("CONSTRAINT_CATALOG") },
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{ STRING_WITH_LEN("CONSTRAINT_SCHEMA") },
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{ STRING_WITH_LEN("CONSTRAINT_NAME") },
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{ STRING_WITH_LEN("CATALOG_NAME") },
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{ STRING_WITH_LEN("SCHEMA_NAME") },
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{ STRING_WITH_LEN("TABLE_NAME") },
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{ STRING_WITH_LEN("COLUMN_NAME") },
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{ STRING_WITH_LEN("CURSOR_NAME") },
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{ STRING_WITH_LEN("MESSAGE_TEXT") },
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{ STRING_WITH_LEN("MYSQL_ERRNO") },
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{ STRING_WITH_LEN("CONDITION_IDENTIFIER") },
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{ STRING_WITH_LEN("CONDITION_NUMBER") },
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{ STRING_WITH_LEN("CONNECTION_NAME") },
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{ STRING_WITH_LEN("MESSAGE_LENGTH") },
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{ STRING_WITH_LEN("MESSAGE_OCTET_LENGTH") },
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{ STRING_WITH_LEN("PARAMETER_MODE") },
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{ STRING_WITH_LEN("PARAMETER_NAME") },
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{ STRING_WITH_LEN("PARAMETER_ORDINAL_POSITION") },
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{ STRING_WITH_LEN("RETURNED_SQLSTATE") },
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{ STRING_WITH_LEN("ROUTINE_CATALOG") },
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{ STRING_WITH_LEN("ROUTINE_NAME") },
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{ STRING_WITH_LEN("ROUTINE_SCHEMA") },
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{ STRING_WITH_LEN("SERVER_NAME") },
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{ STRING_WITH_LEN("SPECIFIC_NAME") },
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{ STRING_WITH_LEN("TRIGGER_CATALOG") },
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{ STRING_WITH_LEN("TRIGGER_NAME") },
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{ STRING_WITH_LEN("TRIGGER_SCHEMA") }
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};
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Set_signal_information::Set_signal_information(
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const Set_signal_information& set)
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{
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memcpy(m_item, set.m_item, sizeof(m_item));
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}
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void Set_signal_information::clear()
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{
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memset(m_item, 0, sizeof(m_item));
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}
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static bool assign_fixed_string(MEM_ROOT *mem_root,
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CHARSET_INFO *dst_cs,
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size_t max_char,
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String *dst,
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const String* src)
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{
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bool truncated;
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size_t numchars;
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CHARSET_INFO *src_cs;
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const char* src_str;
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const char* src_end;
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size_t src_len;
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size_t to_copy;
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char* dst_str;
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size_t dst_len;
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size_t dst_copied;
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uint32 dummy_offset;
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src_str= src->ptr();
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if (src_str == NULL)
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{
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dst->set((const char*) NULL, 0, dst_cs);
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return false;
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}
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src_cs= src->charset();
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src_len= src->length();
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src_end= src_str + src_len;
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numchars= src_cs->cset->numchars(src_cs, src_str, src_end);
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if (numchars <= max_char)
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{
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to_copy= src->length();
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truncated= false;
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}
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else
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{
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numchars= max_char;
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to_copy= dst_cs->cset->charpos(dst_cs, src_str, src_end, numchars);
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truncated= true;
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}
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if (String::needs_conversion(to_copy, src_cs, dst_cs, & dummy_offset))
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{
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dst_len= numchars * dst_cs->mbmaxlen;
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dst_str= (char*) alloc_root(mem_root, dst_len + 1);
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if (dst_str)
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{
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dst_copied= String_copier().well_formed_copy(dst_cs, dst_str, dst_len,
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src_cs, src_str, src_len,
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numchars);
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DBUG_ASSERT(dst_copied <= dst_len);
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dst_len= dst_copied; /* In case the copy truncated the data */
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dst_str[dst_copied]= '\0';
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}
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}
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else
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{
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dst_len= to_copy;
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dst_str= (char*) alloc_root(mem_root, dst_len + 1);
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if (dst_str)
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{
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memcpy(dst_str, src_str, to_copy);
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dst_str[to_copy]= '\0';
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}
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}
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dst->set(dst_str, dst_len, dst_cs);
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return truncated;
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}
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static int assign_condition_item(MEM_ROOT *mem_root, const char* name, THD *thd,
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Item *set, String *ci)
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{
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char str_buff[(64+1)*4]; /* Room for a null terminated UTF8 String 64 */
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String str_value(str_buff, sizeof(str_buff), & my_charset_utf8_bin);
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String *str;
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bool truncated;
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DBUG_ENTER("assign_condition_item");
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if (set->is_null())
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{
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thd->raise_error_printf(ER_WRONG_VALUE_FOR_VAR, name, "NULL");
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DBUG_RETURN(1);
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}
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str= set->val_str(& str_value);
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truncated= assign_fixed_string(mem_root, & my_charset_utf8_bin, 64, ci, str);
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if (truncated)
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{
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if (thd->is_strict_mode())
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{
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thd->raise_error_printf(ER_COND_ITEM_TOO_LONG, name);
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DBUG_RETURN(1);
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}
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thd->raise_warning_printf(WARN_COND_ITEM_TRUNCATED, name);
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}
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DBUG_RETURN(0);
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}
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int Sql_cmd_common_signal::eval_signal_informations(THD *thd, Sql_condition *cond)
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{
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struct cond_item_map
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{
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enum enum_diag_condition_item_name m_item;
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String Sql_condition::*m_member;
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};
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static cond_item_map map[]=
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{
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{ DIAG_CLASS_ORIGIN, & Sql_condition::m_class_origin },
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{ DIAG_SUBCLASS_ORIGIN, & Sql_condition::m_subclass_origin },
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{ DIAG_CONSTRAINT_CATALOG, & Sql_condition::m_constraint_catalog },
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{ DIAG_CONSTRAINT_SCHEMA, & Sql_condition::m_constraint_schema },
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{ DIAG_CONSTRAINT_NAME, & Sql_condition::m_constraint_name },
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{ DIAG_CATALOG_NAME, & Sql_condition::m_catalog_name },
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{ DIAG_SCHEMA_NAME, & Sql_condition::m_schema_name },
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{ DIAG_TABLE_NAME, & Sql_condition::m_table_name },
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{ DIAG_COLUMN_NAME, & Sql_condition::m_column_name },
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{ DIAG_CURSOR_NAME, & Sql_condition::m_cursor_name }
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};
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Item *set;
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String str_value;
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String *str;
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int i;
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uint j;
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int result= 1;
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enum enum_diag_condition_item_name item_enum;
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String *member;
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const LEX_CSTRING *name;
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DBUG_ENTER("Sql_cmd_common_signal::eval_signal_informations");
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for (i= FIRST_DIAG_SET_PROPERTY;
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i <= LAST_DIAG_SET_PROPERTY;
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i++)
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{
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if ((set= m_set_signal_information.m_item[i]) &&
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set->fix_fields_if_needed(thd, &m_set_signal_information.m_item[i]))
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goto end;
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}
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/*
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Generically assign all the UTF8 String 64 condition items
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described in the map.
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*/
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for (j= 0; j < array_elements(map); j++)
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{
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item_enum= map[j].m_item;
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set= m_set_signal_information.m_item[item_enum];
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if (set != NULL)
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{
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member= & (cond->* map[j].m_member);
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name= & Diag_condition_item_names[item_enum];
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if (assign_condition_item(cond->m_mem_root, name->str, thd, set, member))
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goto end;
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}
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}
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/*
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Assign the remaining attributes.
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*/
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set= m_set_signal_information.m_item[DIAG_MESSAGE_TEXT];
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if (set != NULL)
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{
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if (set->is_null())
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{
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thd->raise_error_printf(ER_WRONG_VALUE_FOR_VAR,
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"MESSAGE_TEXT", "NULL");
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goto end;
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}
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/*
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Enforce that SET MESSAGE_TEXT = <value> evaluates the value
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as VARCHAR(MYSQL_ERRMSG_SIZE) CHARACTER SET UTF8.
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*/
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bool truncated;
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String utf8_text;
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str= set->val_str(& str_value);
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truncated= assign_fixed_string(thd->mem_root, & my_charset_utf8_bin,
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MYSQL_ERRMSG_SIZE,
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& utf8_text, str);
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if (truncated)
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{
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if (thd->is_strict_mode())
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{
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thd->raise_error_printf(ER_COND_ITEM_TOO_LONG,
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"MESSAGE_TEXT");
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goto end;
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}
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thd->raise_warning_printf(WARN_COND_ITEM_TRUNCATED,
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"MESSAGE_TEXT");
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}
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/*
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See the comments
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"Design notes about Sql_condition::m_message_text."
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in file sql_error.cc
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*/
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String converted_text;
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converted_text.set_charset(error_message_charset_info);
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converted_text.append(utf8_text.ptr(), utf8_text.length(),
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utf8_text.charset());
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cond->set_builtin_message_text(converted_text.c_ptr_safe());
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}
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set= m_set_signal_information.m_item[DIAG_MYSQL_ERRNO];
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if (set != NULL)
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{
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if (set->is_null())
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{
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thd->raise_error_printf(ER_WRONG_VALUE_FOR_VAR,
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"MYSQL_ERRNO", "NULL");
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goto end;
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}
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longlong code= set->val_int();
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if ((code <= 0) || (code > MAX_MYSQL_ERRNO))
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{
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str= set->val_str(& str_value);
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thd->raise_error_printf(ER_WRONG_VALUE_FOR_VAR,
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"MYSQL_ERRNO", str->c_ptr_safe());
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goto end;
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}
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cond->m_sql_errno= (int) code;
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}
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/*
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The various item->val_xxx() methods don't return an error code,
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but flag thd in case of failure.
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*/
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if (likely(!thd->is_error()))
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result= 0;
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end:
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for (i= FIRST_DIAG_SET_PROPERTY;
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i <= LAST_DIAG_SET_PROPERTY;
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i++)
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{
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set= m_set_signal_information.m_item[i];
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if (set)
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{
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if (set->fixed)
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set->cleanup();
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}
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}
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DBUG_RETURN(result);
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}
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bool Sql_cmd_common_signal::raise_condition(THD *thd, Sql_condition *cond)
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{
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bool result= TRUE;
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DBUG_ENTER("Sql_cmd_common_signal::raise_condition");
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DBUG_ASSERT(thd->lex->query_tables == NULL);
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cond->assign_defaults(thd, m_cond);
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if (eval_signal_informations(thd, cond))
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DBUG_RETURN(result);
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/* SIGNAL should not signal WARN_LEVEL_NOTE, but RESIGNAL can */
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DBUG_ASSERT(cond->m_level == Sql_condition::WARN_LEVEL_ERROR ||
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cond->m_level != Sql_condition::WARN_LEVEL_NOTE ||
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sql_command_code() == SQLCOM_RESIGNAL);
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(void) thd->raise_condition(cond);
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if (cond->m_level == Sql_condition::WARN_LEVEL_WARN ||
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cond->m_level == Sql_condition::WARN_LEVEL_NOTE)
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{
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my_ok(thd);
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result= FALSE;
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}
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DBUG_RETURN(result);
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}
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bool Sql_cmd_signal::execute(THD *thd)
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{
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bool result= TRUE;
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DBUG_ASSERT(m_cond);
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Sql_condition cond(thd->mem_root, m_cond->get_user_condition_identity());
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DBUG_ENTER("Sql_cmd_signal::execute");
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/*
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WL#2110 SIGNAL specification says:
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When SIGNAL is executed, it has five effects, in the following order:
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(1) First, the diagnostics area is completely cleared. So if the
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SIGNAL is in a DECLARE HANDLER then any pending errors or warnings
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are gone. So is 'row count'.
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This has roots in the SQL standard specification for SIGNAL.
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*/
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thd->get_stmt_da()->reset_diagnostics_area();
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thd->set_row_count_func(0);
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thd->get_stmt_da()->clear_warning_info(thd->query_id);
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result= raise_condition(thd, &cond);
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DBUG_RETURN(result);
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}
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/**
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Execute RESIGNAL SQL-statement.
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@param thd Thread context.
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@return Error status
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@retval true in case of error
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@retval false on success
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*/
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bool Sql_cmd_resignal::execute(THD *thd)
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{
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Diagnostics_area *da= thd->get_stmt_da();
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const sp_rcontext::Sql_condition_info *signaled;
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int result= TRUE;
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DBUG_ENTER("Resignal_statement::execute");
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// This is a way to force sql_conditions from the current Warning_info to be
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// passed to the caller's Warning_info.
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da->set_warning_info_id(thd->query_id);
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if (! thd->spcont || ! (signaled= thd->spcont->raised_condition()))
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{
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thd->raise_error(ER_RESIGNAL_WITHOUT_ACTIVE_HANDLER);
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DBUG_RETURN(result);
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}
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Sql_condition signaled_err(thd->mem_root, *signaled, signaled->message);
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if (m_cond)
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{
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query_cache_abort(thd, &thd->query_cache_tls);
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/* Keep handled conditions. */
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da->unmark_sql_conditions_from_removal();
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/* Check if the old condition still exists. */
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if (da->has_sql_condition(signaled->message, strlen(signaled->message)))
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{
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/*
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Make room for the new RESIGNAL condition and one for the stack trace
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note.
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*/
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da->reserve_space(thd, 2);
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}
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else
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{
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/*
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Make room for old condition + the new RESIGNAL condition + the stack
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trace note.
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*/
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da->reserve_space(thd, 3);
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da->push_warning(thd, &signaled_err);
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}
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}
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/* RESIGNAL with signal_value */
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result= raise_condition(thd, &signaled_err);
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DBUG_RETURN(result);
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}
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