mariadb/sql/item_strfunc.h
Konstantin Osipov 3227ba706f Backport of:
ChangeSet@1.2703, 2007-12-07 09:35:28-05:00, cmiller@zippy.cornsilk.net +40 -0
Bug#13174: SHA2 function
Patch contributed from Bill Karwin, paper unnumbered CLA in Seattle

Implement SHA2 functions.

Chad added code to make it work with YaSSL.  Also, he removed the 
(probable) bug of embedded server never using SSL-dependent 
functions.  (libmysqld/Makefile.am didn't read ANY autoconf defs.)

Function specification:
  SHA2( string cleartext, integer hash_length ) 
    -> string hash, or NULL
where hash_length is one of 224, 256, 384, or 512.  If either is 
NULL or a length is unsupported, then the result is NULL.  The 
resulting string is always the length of the hash_length parameter
or is NULL.

Include the canonical hash examples from the NIST in the test
results.
---
Polish and address concerns of reviewers.


.bzrignore:
  Added libmysqld/sha2.cc to the ignore list.
client/mysql.cc:
  Add condition to remove code for embedded server.
client/mysqltest.cc:
  Add condition to remove code for embedded server.
include/Makefile.am:
  New header file to header list.
include/mysql_embed.h:
  Embedded servers can use SSL-library functions too!
include/sha2.h:
  Compatibility layer to make YaSSL behave like OpenSSL.
include/sslopt-case.h:
  Remove SSL-communication parameters from command lines.
include/sslopt-longopts.h:
  Remove SSL-communication parameters from command lines.
include/sslopt-vars.h:
  Don't declare variables that are only used in SSL communication, if
  we are compiling the embedded server.
include/violite.h:
  Don't even compile the SSL-communication function if we're in the
  embedded server.
  ---
  Remove CPP condition indentation.
libmysqld/CMakeLists.txt:
  Add new file to source list.
libmysqld/Makefile.am:
  Include standard DEFS in embedded compilation.  It's an undiscovered
  but that it's not there.
  
  Add new file to source list.
libmysqld/examples/Makefile.am:
  Include autoconf DEFS.
libmysqld/lib_sql.cc:
  Initialize SSL-related variables in embedded server.
mysql-test/include/have_ssl_crypto_functs.inc:
  Distinguish between communication and crypto.
  Use the tristate value of "have_ssl" variable to know whether to
  test or not for SSL-provided crypto functions.
mysql-test/r/func_digest.result:
  
  Test against the sample test vectors in the NIST Secure
  Hash Standard (http://csrc.nist.gov/cryptval/shs.htm)
mysql-test/r/func_encrypt_nossl.result:
  Update results to the new error message text.
mysql-test/r/have_ssl_is_yes_or_disabled_only.require:
  Distinguish between communication and crypto.
  
  Use the tristate value of "have_ssl" variable to know whether to
  test or not for SSL-provided crypto functions.
mysql-test/suite/rpl/t/rpl_ssl.test:
  Distinguish between communication and crypto.
mysql-test/suite/rpl/t/rpl_ssl1.test:
  Distinguish between communication and crypto.
mysql-test/t/func_des_encrypt.test:
  Distinguish between communication and crypto.
mysql-test/t/func_digest.test:
  Test against the sample test vectors in the NIST Secure
  Hash Standard (http://csrc.nist.gov/cryptval/shs.htm)
  
  Also, test that various parameters (legal and illegal)
  do what we expect.
  ---
  Distinguish between communication and crypto.
mysql-test/t/func_encrypt.test:
  Distinguish between communication and crypto.
mysql-test/t/openssl_1.test:
  Don't test SSL communication if we're in the embedded server.
  ---
  Distinguish between communication and crypto.
mysql-test/t/ssl-big.test:
  Don't test SSL communication if we're in the embedded server.
  ---
  Distinguish between communication and crypto.
mysql-test/t/ssl.test:
  Don't test SSL communication if we're in the embedded server.
  ---
  Distinguish between communication and crypto.
mysql-test/t/ssl_8k_key.test:
  Don't test SSL communication if we're in the embedded server.
  ---
  Distinguish between communication and crypto.
mysql-test/t/ssl_compress.test:
  Don't test SSL communication if we're in the embedded server.
  ---
  Distinguish between communication and crypto.
mysql-test/t/ssl_connect.test:
  Don't test SSL communication if we're in the embedded server.
  ---
  Distinguish between communication and crypto.
sql-common/client.c:
  SSL is useful for more functionality than just connecting.  Test
  for whether we are not embedded server also.
sql/CMakeLists.txt:
  Add new source file to source list so that we have access to SHA2
  functions.
sql/Makefile.am:
  Add new source file to source list so that we have access to SHA2
  functions.
sql/item_create.cc:
  Bootstrap the SHA2 function into the server.
sql/item_strfunc.cc:
  Add new SHA2 Item class methods.
  
  Clean up two minor problems.
  ---
  Remove extraneous debugging.
  ---
  We must check nullness of a parameter only /after/ computing its
  value.
sql/item_strfunc.h:
  Declare new SHA2 Item class.
sql/mysqld.cc:
  For embedded server, don't refer to SSL-communications variables
  or values.
  ---
  Remove CPP condition indentation.
sql/sha2.cc:
  Compatibility layer to make YaSSL behave like OpenSSL.
  ---
  Add comment for generated functions.
sql/sql_acl.cc:
  For embedded server, don't refer to SSL-communications variables
  or values.
sql/sql_connect.cc:
  SSL is useful for more functionality than just connecting.  Test
  for whether we are not embedded server also.
sql/sys_vars.cc:
  For embedded server, don't refer to SSL-communications variables
  or values.
2010-04-13 19:04:45 +04:00

896 lines
23 KiB
C++

#ifndef ITEM_STRFUNC_INCLUDED
#define ITEM_STRFUNC_INCLUDED
/* Copyright (C) 2000-2003 MySQL AB
This program is free software; you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation; version 2 of the License.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program; if not, write to the Free Software
Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA */
/* This file defines all string functions */
#ifdef USE_PRAGMA_INTERFACE
#pragma interface /* gcc class implementation */
#endif
class MY_LOCALE;
class Item_str_func :public Item_func
{
public:
Item_str_func() :Item_func() { decimals=NOT_FIXED_DEC; }
Item_str_func(Item *a) :Item_func(a) {decimals=NOT_FIXED_DEC; }
Item_str_func(Item *a,Item *b) :Item_func(a,b) { decimals=NOT_FIXED_DEC; }
Item_str_func(Item *a,Item *b,Item *c) :Item_func(a,b,c) { decimals=NOT_FIXED_DEC; }
Item_str_func(Item *a,Item *b,Item *c,Item *d) :Item_func(a,b,c,d) {decimals=NOT_FIXED_DEC; }
Item_str_func(Item *a,Item *b,Item *c,Item *d, Item* e) :Item_func(a,b,c,d,e) {decimals=NOT_FIXED_DEC; }
Item_str_func(List<Item> &list) :Item_func(list) {decimals=NOT_FIXED_DEC; }
longlong val_int();
double val_real();
my_decimal *val_decimal(my_decimal *);
enum Item_result result_type () const { return STRING_RESULT; }
void left_right_max_length();
bool fix_fields(THD *thd, Item **ref);
};
/*
Functions that return values with ASCII repertoire
*/
class Item_str_ascii_func :public Item_str_func
{
String ascii_buf;
public:
Item_str_ascii_func() :Item_str_func() {}
Item_str_ascii_func(Item *a) :Item_str_func(a) {}
Item_str_ascii_func(Item *a,Item *b) :Item_str_func(a,b) {}
Item_str_ascii_func(Item *a,Item *b,Item *c) :Item_str_func(a,b,c) {}
String *val_str_convert_from_ascii(String *str, String *ascii_buf);
String *val_str(String *str);
virtual String *val_str_ascii(String *)= 0;
};
class Item_func_md5 :public Item_str_ascii_func
{
String tmp_value;
public:
Item_func_md5(Item *a) :Item_str_ascii_func(a) {}
String *val_str_ascii(String *);
void fix_length_and_dec();
const char *func_name() const { return "md5"; }
};
class Item_func_sha :public Item_str_ascii_func
{
public:
Item_func_sha(Item *a) :Item_str_ascii_func(a) {}
String *val_str_ascii(String *);
void fix_length_and_dec();
const char *func_name() const { return "sha"; }
};
class Item_func_sha2 :public Item_str_func
{
public:
Item_func_sha2(Item *a, Item *b) :Item_str_func(a, b)
{
collation.set(&my_charset_bin);
}
String *val_str(String *);
void fix_length_and_dec();
const char *func_name() const { return "sha2"; }
};
class Item_func_aes_encrypt :public Item_str_func
{
public:
Item_func_aes_encrypt(Item *a, Item *b) :Item_str_func(a,b) {}
String *val_str(String *);
void fix_length_and_dec();
const char *func_name() const { return "aes_encrypt"; }
};
class Item_func_aes_decrypt :public Item_str_func
{
public:
Item_func_aes_decrypt(Item *a, Item *b) :Item_str_func(a,b) {}
String *val_str(String *);
void fix_length_and_dec();
const char *func_name() const { return "aes_decrypt"; }
};
class Item_func_concat :public Item_str_func
{
String tmp_value;
public:
Item_func_concat(List<Item> &list) :Item_str_func(list) {}
Item_func_concat(Item *a,Item *b) :Item_str_func(a,b) {}
String *val_str(String *);
void fix_length_and_dec();
const char *func_name() const { return "concat"; }
};
class Item_func_concat_ws :public Item_str_func
{
String tmp_value;
public:
Item_func_concat_ws(List<Item> &list) :Item_str_func(list) {}
String *val_str(String *);
void fix_length_and_dec();
const char *func_name() const { return "concat_ws"; }
table_map not_null_tables() const { return 0; }
};
class Item_func_reverse :public Item_str_func
{
String tmp_value;
public:
Item_func_reverse(Item *a) :Item_str_func(a) {}
String *val_str(String *);
void fix_length_and_dec();
const char *func_name() const { return "reverse"; }
};
class Item_func_replace :public Item_str_func
{
String tmp_value,tmp_value2;
public:
Item_func_replace(Item *org,Item *find,Item *replace)
:Item_str_func(org,find,replace) {}
String *val_str(String *);
void fix_length_and_dec();
const char *func_name() const { return "replace"; }
};
class Item_func_insert :public Item_str_func
{
String tmp_value;
public:
Item_func_insert(Item *org,Item *start,Item *length,Item *new_str)
:Item_str_func(org,start,length,new_str) {}
String *val_str(String *);
void fix_length_and_dec();
const char *func_name() const { return "insert"; }
};
class Item_str_conv :public Item_str_func
{
protected:
uint multiply;
my_charset_conv_case converter;
String tmp_value;
public:
Item_str_conv(Item *item) :Item_str_func(item) {}
String *val_str(String *);
};
class Item_func_lcase :public Item_str_conv
{
public:
Item_func_lcase(Item *item) :Item_str_conv(item) {}
const char *func_name() const { return "lcase"; }
void fix_length_and_dec();
};
class Item_func_ucase :public Item_str_conv
{
public:
Item_func_ucase(Item *item) :Item_str_conv(item) {}
const char *func_name() const { return "ucase"; }
void fix_length_and_dec();
};
class Item_func_left :public Item_str_func
{
String tmp_value;
public:
Item_func_left(Item *a,Item *b) :Item_str_func(a,b) {}
String *val_str(String *);
void fix_length_and_dec();
const char *func_name() const { return "left"; }
};
class Item_func_right :public Item_str_func
{
String tmp_value;
public:
Item_func_right(Item *a,Item *b) :Item_str_func(a,b) {}
String *val_str(String *);
void fix_length_and_dec();
const char *func_name() const { return "right"; }
};
class Item_func_substr :public Item_str_func
{
String tmp_value;
public:
Item_func_substr(Item *a,Item *b) :Item_str_func(a,b) {}
Item_func_substr(Item *a,Item *b,Item *c) :Item_str_func(a,b,c) {}
String *val_str(String *);
void fix_length_and_dec();
const char *func_name() const { return "substr"; }
};
class Item_func_substr_index :public Item_str_func
{
String tmp_value;
public:
Item_func_substr_index(Item *a,Item *b,Item *c) :Item_str_func(a,b,c) {}
String *val_str(String *);
void fix_length_and_dec();
const char *func_name() const { return "substring_index"; }
};
class Item_func_trim :public Item_str_func
{
protected:
String tmp_value;
String remove;
public:
Item_func_trim(Item *a,Item *b) :Item_str_func(a,b) {}
Item_func_trim(Item *a) :Item_str_func(a) {}
String *val_str(String *);
void fix_length_and_dec();
const char *func_name() const { return "trim"; }
virtual void print(String *str, enum_query_type query_type);
virtual const char *mode_name() const { return "both"; }
};
class Item_func_ltrim :public Item_func_trim
{
public:
Item_func_ltrim(Item *a,Item *b) :Item_func_trim(a,b) {}
Item_func_ltrim(Item *a) :Item_func_trim(a) {}
String *val_str(String *);
const char *func_name() const { return "ltrim"; }
const char *mode_name() const { return "leading"; }
};
class Item_func_rtrim :public Item_func_trim
{
public:
Item_func_rtrim(Item *a,Item *b) :Item_func_trim(a,b) {}
Item_func_rtrim(Item *a) :Item_func_trim(a) {}
String *val_str(String *);
const char *func_name() const { return "rtrim"; }
const char *mode_name() const { return "trailing"; }
};
/*
Item_func_password -- new (4.1.1) PASSWORD() function implementation.
Returns strcat('*', octet2hex(sha1(sha1(password)))). '*' stands for new
password format, sha1(sha1(password) is so-called hash_stage2 value.
Length of returned string is always 41 byte. To find out how entire
authentication procedure works, see comments in password.c.
*/
class Item_func_password :public Item_str_ascii_func
{
char tmp_value[SCRAMBLED_PASSWORD_CHAR_LENGTH+1];
public:
Item_func_password(Item *a) :Item_str_ascii_func(a) {}
String *val_str_ascii(String *str);
void fix_length_and_dec()
{
fix_length_and_charset(SCRAMBLED_PASSWORD_CHAR_LENGTH, default_charset());
}
const char *func_name() const { return "password"; }
static char *alloc(THD *thd, const char *password, size_t pass_len);
};
/*
Item_func_old_password -- PASSWORD() implementation used in MySQL 3.21 - 4.0
compatibility mode. This item is created in sql_yacc.yy when
'old_passwords' session variable is set, and to handle OLD_PASSWORD()
function.
*/
class Item_func_old_password :public Item_str_ascii_func
{
char tmp_value[SCRAMBLED_PASSWORD_CHAR_LENGTH_323+1];
public:
Item_func_old_password(Item *a) :Item_str_ascii_func(a) {}
String *val_str_ascii(String *str);
void fix_length_and_dec()
{
fix_length_and_charset(SCRAMBLED_PASSWORD_CHAR_LENGTH_323, default_charset());
}
const char *func_name() const { return "old_password"; }
static char *alloc(THD *thd, const char *password, size_t pass_len);
};
class Item_func_des_encrypt :public Item_str_func
{
String tmp_value,tmp_arg;
public:
Item_func_des_encrypt(Item *a) :Item_str_func(a) {}
Item_func_des_encrypt(Item *a, Item *b): Item_str_func(a,b) {}
String *val_str(String *);
void fix_length_and_dec()
{
maybe_null=1;
/* 9 = MAX ((8- (arg_len % 8)) + 1) */
max_length = args[0]->max_length + 9;
}
const char *func_name() const { return "des_encrypt"; }
};
class Item_func_des_decrypt :public Item_str_func
{
String tmp_value;
public:
Item_func_des_decrypt(Item *a) :Item_str_func(a) {}
Item_func_des_decrypt(Item *a, Item *b): Item_str_func(a,b) {}
String *val_str(String *);
void fix_length_and_dec()
{
maybe_null=1;
/* 9 = MAX ((8- (arg_len % 8)) + 1) */
max_length = args[0]->max_length - 9;
}
const char *func_name() const { return "des_decrypt"; }
};
class Item_func_encrypt :public Item_str_func
{
String tmp_value;
/* Encapsulate common constructor actions */
void constructor_helper()
{
collation.set(&my_charset_bin);
}
public:
Item_func_encrypt(Item *a) :Item_str_func(a)
{
constructor_helper();
}
Item_func_encrypt(Item *a, Item *b): Item_str_func(a,b)
{
constructor_helper();
}
String *val_str(String *);
void fix_length_and_dec() { maybe_null=1; max_length = 13; }
const char *func_name() const { return "encrypt"; }
};
#include "sql_crypt.h"
class Item_func_encode :public Item_str_func
{
private:
/** Whether the PRNG has already been seeded. */
bool seeded;
protected:
SQL_CRYPT sql_crypt;
public:
Item_func_encode(Item *a, Item *seed):
Item_str_func(a, seed) {}
String *val_str(String *);
void fix_length_and_dec();
const char *func_name() const { return "encode"; }
protected:
virtual void crypto_transform(String *);
private:
/** Provide a seed for the PRNG sequence. */
bool seed();
};
class Item_func_decode :public Item_func_encode
{
public:
Item_func_decode(Item *a, Item *seed): Item_func_encode(a, seed) {}
const char *func_name() const { return "decode"; }
protected:
void crypto_transform(String *);
};
class Item_func_sysconst :public Item_str_func
{
public:
Item_func_sysconst()
{ collation.set(system_charset_info,DERIVATION_SYSCONST); }
Item *safe_charset_converter(CHARSET_INFO *tocs);
/*
Used to create correct Item name in new converted item in
safe_charset_converter, return string representation of this function
call
*/
virtual const char *fully_qualified_func_name() const = 0;
};
class Item_func_database :public Item_func_sysconst
{
public:
Item_func_database() :Item_func_sysconst() {}
String *val_str(String *);
void fix_length_and_dec()
{
max_length= MAX_FIELD_NAME * system_charset_info->mbmaxlen;
maybe_null=1;
}
const char *func_name() const { return "database"; }
const char *fully_qualified_func_name() const { return "database()"; }
};
class Item_func_user :public Item_func_sysconst
{
protected:
bool init (const char *user, const char *host);
public:
Item_func_user()
{
str_value.set("", 0, system_charset_info);
}
String *val_str(String *)
{
DBUG_ASSERT(fixed == 1);
return (null_value ? 0 : &str_value);
}
bool fix_fields(THD *thd, Item **ref);
void fix_length_and_dec()
{
max_length= (USERNAME_LENGTH +
(HOSTNAME_LENGTH + 1) * SYSTEM_CHARSET_MBMAXLEN);
}
const char *func_name() const { return "user"; }
const char *fully_qualified_func_name() const { return "user()"; }
int save_in_field(Field *field, bool no_conversions)
{
return save_str_value_in_field(field, &str_value);
}
};
class Item_func_current_user :public Item_func_user
{
Name_resolution_context *context;
public:
Item_func_current_user(Name_resolution_context *context_arg)
: context(context_arg) {}
bool fix_fields(THD *thd, Item **ref);
const char *func_name() const { return "current_user"; }
const char *fully_qualified_func_name() const { return "current_user()"; }
};
class Item_func_soundex :public Item_str_func
{
String tmp_value;
public:
Item_func_soundex(Item *a) :Item_str_func(a) {}
String *val_str(String *);
void fix_length_and_dec();
const char *func_name() const { return "soundex"; }
};
class Item_func_elt :public Item_str_func
{
public:
Item_func_elt(List<Item> &list) :Item_str_func(list) {}
double val_real();
longlong val_int();
String *val_str(String *str);
void fix_length_and_dec();
const char *func_name() const { return "elt"; }
};
class Item_func_make_set :public Item_str_func
{
Item *item;
String tmp_str;
public:
Item_func_make_set(Item *a,List<Item> &list) :Item_str_func(list),item(a) {}
String *val_str(String *str);
bool fix_fields(THD *thd, Item **ref)
{
DBUG_ASSERT(fixed == 0);
return ((!item->fixed && item->fix_fields(thd, &item)) ||
item->check_cols(1) ||
Item_func::fix_fields(thd, ref));
}
void split_sum_func(THD *thd, Item **ref_pointer_array, List<Item> &fields);
void fix_length_and_dec();
void update_used_tables();
const char *func_name() const { return "make_set"; }
bool walk(Item_processor processor, bool walk_subquery, uchar *arg)
{
return item->walk(processor, walk_subquery, arg) ||
Item_str_func::walk(processor, walk_subquery, arg);
}
Item *transform(Item_transformer transformer, uchar *arg);
virtual void print(String *str, enum_query_type query_type);
};
class Item_func_format :public Item_str_func
{
String tmp_str;
MY_LOCALE *locale;
public:
Item_func_format(Item *org, Item *dec): Item_str_func(org, dec) {}
Item_func_format(Item *org, Item *dec, Item *lang):
Item_str_func(org, dec, lang) {}
MY_LOCALE *get_locale(Item *item);
String *val_str(String *);
void fix_length_and_dec();
const char *func_name() const { return "format"; }
virtual void print(String *str, enum_query_type query_type);
};
class Item_func_char :public Item_str_func
{
public:
Item_func_char(List<Item> &list) :Item_str_func(list)
{ collation.set(&my_charset_bin); }
Item_func_char(List<Item> &list, CHARSET_INFO *cs) :Item_str_func(list)
{ collation.set(cs); }
String *val_str(String *);
void fix_length_and_dec()
{
max_length= arg_count * 4;
}
const char *func_name() const { return "char"; }
};
class Item_func_repeat :public Item_str_func
{
String tmp_value;
public:
Item_func_repeat(Item *arg1,Item *arg2) :Item_str_func(arg1,arg2) {}
String *val_str(String *);
void fix_length_and_dec();
const char *func_name() const { return "repeat"; }
};
class Item_func_rpad :public Item_str_func
{
String tmp_value, rpad_str;
public:
Item_func_rpad(Item *arg1,Item *arg2,Item *arg3)
:Item_str_func(arg1,arg2,arg3) {}
String *val_str(String *);
void fix_length_and_dec();
const char *func_name() const { return "rpad"; }
};
class Item_func_lpad :public Item_str_func
{
String tmp_value, lpad_str;
public:
Item_func_lpad(Item *arg1,Item *arg2,Item *arg3)
:Item_str_func(arg1,arg2,arg3) {}
String *val_str(String *);
void fix_length_and_dec();
const char *func_name() const { return "lpad"; }
};
class Item_func_conv :public Item_str_func
{
public:
Item_func_conv(Item *a,Item *b,Item *c) :Item_str_func(a,b,c) {}
const char *func_name() const { return "conv"; }
String *val_str(String *);
void fix_length_and_dec()
{
collation.set(default_charset());
max_length=64;
maybe_null= 1;
}
};
class Item_func_hex :public Item_str_func
{
String tmp_value;
public:
Item_func_hex(Item *a) :Item_str_func(a) {}
const char *func_name() const { return "hex"; }
String *val_str(String *);
void fix_length_and_dec()
{
collation.set(default_charset());
decimals=0;
max_length=args[0]->max_length*2*collation.collation->mbmaxlen;
}
};
class Item_func_unhex :public Item_str_func
{
String tmp_value;
public:
Item_func_unhex(Item *a) :Item_str_func(a)
{
/* there can be bad hex strings */
maybe_null= 1;
}
const char *func_name() const { return "unhex"; }
String *val_str(String *);
void fix_length_and_dec()
{
collation.set(&my_charset_bin);
decimals=0;
max_length=(1+args[0]->max_length)/2;
}
};
class Item_func_binary :public Item_str_func
{
public:
Item_func_binary(Item *a) :Item_str_func(a) {}
String *val_str(String *a)
{
DBUG_ASSERT(fixed == 1);
String *tmp=args[0]->val_str(a);
null_value=args[0]->null_value;
if (tmp)
tmp->set_charset(&my_charset_bin);
return tmp;
}
void fix_length_and_dec()
{
collation.set(&my_charset_bin);
max_length=args[0]->max_length;
}
virtual void print(String *str, enum_query_type query_type);
const char *func_name() const { return "cast_as_binary"; }
};
class Item_load_file :public Item_str_func
{
String tmp_value;
public:
Item_load_file(Item *a) :Item_str_func(a) {}
String *val_str(String *);
const char *func_name() const { return "load_file"; }
void fix_length_and_dec()
{
collation.set(&my_charset_bin, DERIVATION_COERCIBLE);
maybe_null=1;
max_length=MAX_BLOB_WIDTH;
}
};
class Item_func_export_set: public Item_str_func
{
public:
Item_func_export_set(Item *a,Item *b,Item* c) :Item_str_func(a,b,c) {}
Item_func_export_set(Item *a,Item *b,Item* c,Item* d) :Item_str_func(a,b,c,d) {}
Item_func_export_set(Item *a,Item *b,Item* c,Item* d,Item* e) :Item_str_func(a,b,c,d,e) {}
String *val_str(String *str);
void fix_length_and_dec();
const char *func_name() const { return "export_set"; }
};
class Item_func_inet_ntoa : public Item_str_func
{
public:
Item_func_inet_ntoa(Item *a) :Item_str_func(a)
{
}
String* val_str(String* str);
const char *func_name() const { return "inet_ntoa"; }
void fix_length_and_dec()
{
decimals= 0;
fix_length_and_charset(3 * 8 + 7, default_charset());
maybe_null= 1;
}
};
class Item_func_quote :public Item_str_func
{
String tmp_value;
public:
Item_func_quote(Item *a) :Item_str_func(a) {}
const char *func_name() const { return "quote"; }
String *val_str(String *);
void fix_length_and_dec()
{
collation.set(args[0]->collation);
max_length= args[0]->max_length * 2 + 2;
}
};
class Item_func_conv_charset :public Item_str_func
{
bool use_cached_value;
public:
bool safe;
CHARSET_INFO *conv_charset; // keep it public
Item_func_conv_charset(Item *a, CHARSET_INFO *cs) :Item_str_func(a)
{ conv_charset= cs; use_cached_value= 0; safe= 0; }
Item_func_conv_charset(Item *a, CHARSET_INFO *cs, bool cache_if_const)
:Item_str_func(a)
{
DBUG_ASSERT(args[0]->fixed);
conv_charset= cs;
if (cache_if_const && args[0]->const_item())
{
uint errors= 0;
String tmp, *str= args[0]->val_str(&tmp);
if (!str || str_value.copy(str->ptr(), str->length(),
str->charset(), conv_charset, &errors))
null_value= 1;
use_cached_value= 1;
str_value.mark_as_const();
safe= (errors == 0);
}
else
{
use_cached_value= 0;
/*
Conversion from and to "binary" is safe.
Conversion to Unicode is safe.
Other kind of conversions are potentially lossy.
*/
safe= (args[0]->collation.collation == &my_charset_bin ||
cs == &my_charset_bin ||
(cs->state & MY_CS_UNICODE));
}
}
String *val_str(String *);
void fix_length_and_dec();
const char *func_name() const { return "convert"; }
virtual void print(String *str, enum_query_type query_type);
};
class Item_func_set_collation :public Item_str_func
{
public:
Item_func_set_collation(Item *a, Item *b) :Item_str_func(a,b) {};
String *val_str(String *);
void fix_length_and_dec();
bool eq(const Item *item, bool binary_cmp) const;
const char *func_name() const { return "collate"; }
enum Functype functype() const { return COLLATE_FUNC; }
virtual void print(String *str, enum_query_type query_type);
Item_field *filed_for_view_update()
{
/* this function is transparent for view updating */
return args[0]->filed_for_view_update();
}
};
class Item_func_charset :public Item_str_func
{
public:
Item_func_charset(Item *a) :Item_str_func(a) {}
String *val_str(String *);
const char *func_name() const { return "charset"; }
void fix_length_and_dec()
{
collation.set(system_charset_info);
max_length= 64 * collation.collation->mbmaxlen; // should be enough
maybe_null= 0;
};
table_map not_null_tables() const { return 0; }
};
class Item_func_collation :public Item_str_func
{
public:
Item_func_collation(Item *a) :Item_str_func(a) {}
String *val_str(String *);
const char *func_name() const { return "collation"; }
void fix_length_and_dec()
{
collation.set(system_charset_info);
max_length= 64 * collation.collation->mbmaxlen; // should be enough
maybe_null= 0;
};
table_map not_null_tables() const { return 0; }
};
class Item_func_crc32 :public Item_int_func
{
String value;
public:
Item_func_crc32(Item *a) :Item_int_func(a) { unsigned_flag= 1; }
const char *func_name() const { return "crc32"; }
void fix_length_and_dec() { max_length=10; }
longlong val_int();
};
class Item_func_uncompressed_length : public Item_int_func
{
String value;
public:
Item_func_uncompressed_length(Item *a):Item_int_func(a){}
const char *func_name() const{return "uncompressed_length";}
void fix_length_and_dec() { max_length=10; }
longlong val_int();
};
#ifdef HAVE_COMPRESS
#define ZLIB_DEPENDED_FUNCTION ;
#else
#define ZLIB_DEPENDED_FUNCTION { null_value=1; return 0; }
#endif
class Item_func_compress: public Item_str_func
{
String buffer;
public:
Item_func_compress(Item *a):Item_str_func(a){}
void fix_length_and_dec(){max_length= (args[0]->max_length*120)/100+12;}
const char *func_name() const{return "compress";}
String *val_str(String *) ZLIB_DEPENDED_FUNCTION
};
class Item_func_uncompress: public Item_str_func
{
String buffer;
public:
Item_func_uncompress(Item *a): Item_str_func(a){}
void fix_length_and_dec(){ maybe_null= 1; max_length= MAX_BLOB_WIDTH; }
const char *func_name() const{return "uncompress";}
String *val_str(String *) ZLIB_DEPENDED_FUNCTION
};
#define UUID_LENGTH (8+1+4+1+4+1+4+1+12)
class Item_func_uuid: public Item_str_func
{
public:
Item_func_uuid(): Item_str_func() {}
void fix_length_and_dec()
{
collation.set(system_charset_info,
DERIVATION_COERCIBLE, MY_REPERTOIRE_ASCII);
fix_char_length(UUID_LENGTH);
}
const char *func_name() const{ return "uuid"; }
String *val_str(String *);
};
extern String my_empty_string;
#endif /* ITEM_STRFUNC_INCLUDED */