mirror of
https://github.com/MariaDB/server.git
synced 2025-01-16 20:12:31 +01:00
b4f595b95f
include/my_bitmap.h: new bitmap operation mysql-test/r/view.result: added warnings Correct inserting data check (absence of default value) for view underlying tables (BUG#6443) mysql-test/t/view.test: Correct inserting data check (absence of default value) for view underlying tables (BUG#6443) mysys/my_bitmap.c: new bitmap operation sql/field.h: index of field in table added sql/item.cc: Name resolution context added table list removed from fix_fields() arguments sql/item.h: Name resolution context added table list removed from fix_fields() arguments sql/item_cmpfunc.cc: table list removed from fix_fields() arguments sql/item_cmpfunc.h: table list removed from fix_fields() arguments sql/item_func.cc: table list removed from fix_fields() arguments sql/item_func.h: table list removed from fix_fields() arguments sql/item_row.cc: table list removed from fix_fields() arguments sql/item_row.h: table list removed from fix_fields() arguments sql/item_strfunc.cc: fixed server crash on NULL argument sql/item_strfunc.h: table list removed from fix_fields() arguments sql/item_subselect.cc: table list removed from fix_fields() arguments sql/item_subselect.h: table list removed from fix_fields() arguments sql/item_sum.cc: table list removed from fix_fields() arguments sql/item_sum.h: table list removed from fix_fields() arguments sql/item_timefunc.cc: table list removed from fix_fields() arguments sql/item_timefunc.h: table list removed from fix_fields() arguments sql/item_uniq.h: table list removed from fix_fields() arguments sql/log_event.cc: Name resolution context added sql/log_event.h: Name resolution context added sql/mysql_priv.h: Name resolution context added sql/set_var.cc: table list removed from fix_fields() arguments sql/share/errmsg.txt: new error message sql/sp.cc: Name resolution context added sql/sp_head.cc: table list removed from fix_fields() arguments sql/sp_head.h: Name resolution context added sql/sql_base.cc: table list removed from fix_fields() arguments Name resolution context added sql/sql_class.cc: renamed variable sql/sql_delete.cc: Name resolution context added sql/sql_derived.cc: Name resolution context added sql/sql_do.cc: table list removed from fix_fields() arguments sql/sql_handler.cc: Name resolution context added sql/sql_help.cc: Name resolution context added sql/sql_insert.cc: Name resolution context added table list removed from fix_fields() arguments sql/sql_lex.cc: Name resolution context added sql/sql_lex.h: removed resolve mode (information stored into name resolution context) sql/sql_load.cc: table list removed from fix_fields() arguments sql/sql_olap.cc: Name resolution context added sql/sql_parse.cc: Name resolution context added sql/sql_prepare.cc: table list removed from fix_fields() arguments sql/sql_select.cc: table list removed from fix_fields() arguments sql/sql_show.cc: Name resolution context added sql/sql_trigger.cc: table list removed from fix_fields() arguments sql/sql_udf.h: table list removed from fix_fields() arguments sql/sql_union.cc: Name resolution context added sql/sql_update.cc: Name resolution context added sql/sql_view.cc: Name resolution context added sql/sql_view.h: table list removed from fix_fields() arguments sql/sql_yacc.yy: Name resolution context added sql/table.cc: Name resolution context added merged view processing moved sql/table.h: merged view processing moved
1484 lines
57 KiB
C++
1484 lines
57 KiB
C++
/* Copyright (C) 2000 MySQL AB & MySQL Finland AB & TCX DataKonsult AB
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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; either version 2 of the License, or
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(at your option) any later version.
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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., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA */
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/*
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Because of the function new_field() all field classes that have static
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variables must declare the size_of() member function.
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*/
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#ifdef USE_PRAGMA_INTERFACE
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#pragma interface /* gcc class implementation */
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#endif
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#define NOT_FIXED_DEC 31
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#define DATETIME_DEC 6
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class Send_field;
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class Protocol;
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struct st_cache_field;
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void field_conv(Field *to,Field *from);
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inline uint get_enum_pack_length(int elements)
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{
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return elements < 256 ? 1 : 2;
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}
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inline uint get_set_pack_length(int elements)
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{
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uint len= (elements + 7) / 8;
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return len > 4 ? 8 : len;
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}
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class Field
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{
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Field(const Item &); /* Prevent use of these */
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void operator=(Field &);
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public:
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static void *operator new(size_t size) {return (void*) sql_alloc((uint) size); }
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static void operator delete(void *ptr_arg, size_t size) { TRASH(ptr_arg, size); }
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char *ptr; // Position to field in record
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uchar *null_ptr; // Byte where null_bit is
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/*
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Note that you can use table->in_use as replacement for current_thd member
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only inside of val_*() and store() members (e.g. you can't use it in cons)
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*/
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struct st_table *table; // Pointer for table
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struct st_table *orig_table; // Pointer to original table
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const char **table_name, *field_name;
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LEX_STRING comment;
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query_id_t query_id; // For quick test of used fields
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/* Field is part of the following keys */
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key_map key_start,part_of_key,part_of_sortkey;
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/*
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We use three additional unireg types for TIMESTAMP to overcome limitation
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of current binary format of .frm file. We'd like to be able to support
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NOW() as default and on update value for such fields but unable to hold
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this info anywhere except unireg_check field. This issue will be resolved
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in more clean way with transition to new text based .frm format.
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See also comment for Field_timestamp::Field_timestamp().
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*/
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enum utype { NONE,DATE,SHIELD,NOEMPTY,CASEUP,PNR,BGNR,PGNR,YES,NO,REL,
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CHECK,EMPTY,UNKNOWN_FIELD,CASEDN,NEXT_NUMBER,INTERVAL_FIELD,
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BIT_FIELD, TIMESTAMP_OLD_FIELD, CAPITALIZE, BLOB_FIELD,
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TIMESTAMP_DN_FIELD, TIMESTAMP_UN_FIELD, TIMESTAMP_DNUN_FIELD};
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enum geometry_type
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{
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GEOM_GEOMETRY = 0, GEOM_POINT = 1, GEOM_LINESTRING = 2, GEOM_POLYGON = 3,
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GEOM_MULTIPOINT = 4, GEOM_MULTILINESTRING = 5, GEOM_MULTIPOLYGON = 6,
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GEOM_GEOMETRYCOLLECTION = 7
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};
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enum imagetype { itRAW, itMBR};
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utype unireg_check;
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uint32 field_length; // Length of field
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uint field_index; // field number in fields array
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uint16 flags;
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uchar null_bit; // Bit used to test null bit
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Field(char *ptr_arg,uint32 length_arg,uchar *null_ptr_arg,uchar null_bit_arg,
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utype unireg_check_arg, const char *field_name_arg,
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struct st_table *table_arg);
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virtual ~Field() {}
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/* Store functions returns 1 on overflow and -1 on fatal error */
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virtual int store(const char *to,uint length,CHARSET_INFO *cs)=0;
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virtual int store(double nr)=0;
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virtual int store(longlong nr)=0;
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virtual int store_decimal(const my_decimal *d)=0;
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virtual int store_time(TIME *ltime, timestamp_type t_type);
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virtual double val_real(void)=0;
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virtual longlong val_int(void)=0;
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virtual my_decimal *val_decimal(my_decimal *);
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inline String *val_str(String *str) { return val_str(str, str); }
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/*
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val_str(buf1, buf2) gets two buffers and should use them as follows:
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if it needs a temp buffer to convert result to string - use buf1
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example Field_tiny::val_str()
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if the value exists as a string already - use buf2
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example Field_string::val_str()
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consequently, buf2 may be created as 'String buf;' - no memory
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will be allocated for it. buf1 will be allocated to hold a
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value if it's too small. Using allocated buffer for buf2 may result in
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an unnecessary free (and later, may be an alloc).
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This trickery is used to decrease a number of malloc calls.
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*/
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virtual String *val_str(String*,String *)=0;
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String *val_int_as_str(String *val_buffer, my_bool unsigned_flag);
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virtual Item_result result_type () const=0;
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virtual Item_result cmp_type () const { return result_type(); }
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virtual Item_result cast_to_int_type () const { return result_type(); }
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static bool type_can_have_key_part(enum_field_types);
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static enum_field_types field_type_merge(enum_field_types, enum_field_types);
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static Item_result result_merge_type(enum_field_types);
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bool eq(Field *field)
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{
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return (ptr == field->ptr && null_ptr == field->null_ptr &&
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null_bit == field->null_bit);
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}
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virtual bool eq_def(Field *field);
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virtual uint32 pack_length() const { return (uint32) field_length; }
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virtual uint32 pack_length_in_rec() const { return pack_length(); }
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virtual void reset(void) { bzero(ptr,pack_length()); }
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virtual void reset_fields() {}
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virtual void set_default()
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{
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my_ptrdiff_t offset = (my_ptrdiff_t) (table->s->default_values -
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table->record[0]);
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memcpy(ptr, ptr + offset, pack_length());
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if (null_ptr)
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*null_ptr= ((*null_ptr & (uchar) ~null_bit) |
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null_ptr[offset] & null_bit);
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}
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virtual bool binary() const { return 1; }
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virtual bool zero_pack() const { return 1; }
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virtual enum ha_base_keytype key_type() const { return HA_KEYTYPE_BINARY; }
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virtual uint32 key_length() const { return pack_length(); }
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virtual enum_field_types type() const =0;
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virtual enum_field_types real_type() const { return type(); }
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inline int cmp(const char *str) { return cmp(ptr,str); }
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virtual int cmp(const char *,const char *)=0;
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virtual int cmp_binary(const char *a,const char *b, uint32 max_length=~0L)
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{ return memcmp(a,b,pack_length()); }
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int cmp_offset(uint row_offset) { return cmp(ptr,ptr+row_offset); }
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int cmp_binary_offset(uint row_offset)
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{ return cmp_binary(ptr, ptr+row_offset); };
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virtual int key_cmp(const byte *a,const byte *b)
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{ return cmp((char*) a,(char*) b); }
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virtual int key_cmp(const byte *str, uint length)
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{ return cmp(ptr,(char*) str); }
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virtual uint decimals() const { return 0; }
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/*
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Caller beware: sql_type can change str.Ptr, so check
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ptr() to see if it changed if you are using your own buffer
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in str and restore it with set() if needed
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*/
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virtual void sql_type(String &str) const =0;
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virtual uint size_of() const =0; // For new field
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inline bool is_null(uint row_offset=0)
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{ return null_ptr ? (null_ptr[row_offset] & null_bit ? 1 : 0) : table->null_row; }
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inline bool is_real_null(uint row_offset=0)
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{ return null_ptr ? (null_ptr[row_offset] & null_bit ? 1 : 0) : 0; }
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inline bool is_null_in_record(const uchar *record)
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{
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if (!null_ptr)
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return 0;
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return test(record[(uint) (null_ptr - (uchar*) table->record[0])] &
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null_bit);
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}
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inline void set_null(int row_offset=0)
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{ if (null_ptr) null_ptr[row_offset]|= null_bit; }
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inline void set_notnull(int row_offset=0)
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{ if (null_ptr) null_ptr[row_offset]&= (uchar) ~null_bit; }
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inline bool maybe_null(void) { return null_ptr != 0 || table->maybe_null; }
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inline bool real_maybe_null(void) { return null_ptr != 0; }
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virtual void make_field(Send_field *);
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virtual void sort_string(char *buff,uint length)=0;
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virtual bool optimize_range(uint idx, uint part);
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/*
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This should be true for fields which, when compared with constant
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items, can be casted to longlong. In this case we will at 'fix_fields'
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stage cast the constant items to longlongs and at the execution stage
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use field->val_int() for comparison. Used to optimize clauses like
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'a_column BETWEEN date_const, date_const'.
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*/
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virtual bool can_be_compared_as_longlong() const { return FALSE; }
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virtual void free() {}
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virtual Field *new_field(MEM_ROOT *root, struct st_table *new_table);
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virtual Field *new_key_field(MEM_ROOT *root, struct st_table *new_table,
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char *new_ptr, uchar *new_null_ptr,
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uint new_null_bit);
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inline void move_field(char *ptr_arg,uchar *null_ptr_arg,uchar null_bit_arg)
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{
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ptr=ptr_arg; null_ptr=null_ptr_arg; null_bit=null_bit_arg;
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}
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inline void move_field(char *ptr_arg) { ptr=ptr_arg; }
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inline void move_field(my_ptrdiff_t ptr_diff)
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{
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ptr=ADD_TO_PTR(ptr,ptr_diff,char*);
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if (null_ptr)
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null_ptr=ADD_TO_PTR(null_ptr,ptr_diff,uchar*);
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}
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inline void get_image(char *buff,uint length, CHARSET_INFO *cs)
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{ memcpy(buff,ptr,length); }
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inline void set_image(char *buff,uint length, CHARSET_INFO *cs)
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{ memcpy(ptr,buff,length); }
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virtual void get_key_image(char *buff, uint length, imagetype type)
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{ get_image(buff,length, &my_charset_bin); }
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virtual void set_key_image(char *buff,uint length)
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{ set_image(buff,length, &my_charset_bin); }
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inline longlong val_int_offset(uint row_offset)
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{
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ptr+=row_offset;
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longlong tmp=val_int();
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ptr-=row_offset;
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return tmp;
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}
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inline String *val_str(String *str, char *new_ptr)
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{
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char *old_ptr= ptr;
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ptr= new_ptr;
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val_str(str);
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ptr= old_ptr;
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return str;
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}
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bool quote_data(String *unquoted_string);
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bool needs_quotes(void);
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virtual bool send_binary(Protocol *protocol);
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virtual char *pack(char* to, const char *from, uint max_length=~(uint) 0)
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{
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uint32 length=pack_length();
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memcpy(to,from,length);
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return to+length;
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}
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virtual const char *unpack(char* to, const char *from)
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{
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uint length=pack_length();
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memcpy(to,from,length);
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return from+length;
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}
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virtual char *pack_key(char* to, const char *from, uint max_length)
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{
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return pack(to,from,max_length);
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}
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virtual char *pack_key_from_key_image(char* to, const char *from,
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uint max_length)
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{
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return pack(to,from,max_length);
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}
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virtual const char *unpack_key(char* to, const char *from, uint max_length)
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{
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return unpack(to,from);
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}
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virtual uint packed_col_length(const char *to, uint length)
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{ return length;}
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virtual uint max_packed_col_length(uint max_length)
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{ return max_length;}
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virtual int pack_cmp(const char *a,const char *b, uint key_length_arg,
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my_bool insert_or_update)
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{ return cmp(a,b); }
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virtual int pack_cmp(const char *b, uint key_length_arg,
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my_bool insert_or_update)
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{ return cmp(ptr,b); }
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uint offset(); // Should be inline ...
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void copy_from_tmp(int offset);
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uint fill_cache_field(struct st_cache_field *copy);
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virtual bool get_date(TIME *ltime,uint fuzzydate);
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virtual bool get_time(TIME *ltime);
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virtual CHARSET_INFO *charset(void) const { return &my_charset_bin; }
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virtual CHARSET_INFO *sort_charset(void) const { return charset(); }
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virtual bool has_charset(void) const { return FALSE; }
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virtual void set_charset(CHARSET_INFO *charset) { }
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bool set_warning(MYSQL_ERROR::enum_warning_level, unsigned int code,
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int cuted_increment);
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bool check_int(const char *str, int length, const char *int_end,
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CHARSET_INFO *cs);
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void set_datetime_warning(MYSQL_ERROR::enum_warning_level, uint code,
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const char *str, uint str_len,
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timestamp_type ts_type, int cuted_increment);
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void set_datetime_warning(MYSQL_ERROR::enum_warning_level, uint code,
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longlong nr, timestamp_type ts_type,
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int cuted_increment);
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void set_datetime_warning(MYSQL_ERROR::enum_warning_level, const uint code,
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double nr, timestamp_type ts_type);
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inline bool check_overflow(int op_result)
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{
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return (op_result == E_DEC_OVERFLOW);
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}
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int warn_if_overflow(int op_result);
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/* maximum possible display length */
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virtual uint32 max_length()= 0;
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/* convert decimal to longlong with overflow check */
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longlong convert_decimal2longlong(const my_decimal *val, bool unsigned_flag,
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int *err);
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friend bool reopen_table(THD *,struct st_table *,bool);
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friend int cre_myisam(my_string name, register TABLE *form, uint options,
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ulonglong auto_increment_value);
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friend class Copy_field;
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friend class Item_avg_field;
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friend class Item_std_field;
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friend class Item_sum_num;
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friend class Item_sum_sum;
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friend class Item_sum_str;
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friend class Item_sum_count;
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friend class Item_sum_avg;
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friend class Item_sum_std;
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friend class Item_sum_min;
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friend class Item_sum_max;
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friend class Item_func_group_concat;
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};
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class Field_num :public Field {
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public:
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const uint8 dec;
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bool zerofill,unsigned_flag; // Purify cannot handle bit fields
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Field_num(char *ptr_arg,uint32 len_arg, uchar *null_ptr_arg,
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uchar null_bit_arg, utype unireg_check_arg,
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const char *field_name_arg,
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struct st_table *table_arg,
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uint8 dec_arg, bool zero_arg, bool unsigned_arg);
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Item_result result_type () const { return REAL_RESULT; }
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void prepend_zeros(String *value);
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void add_zerofill_and_unsigned(String &res) const;
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friend class create_field;
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void make_field(Send_field *);
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uint decimals() const { return (uint) dec; }
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uint size_of() const { return sizeof(*this); }
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bool eq_def(Field *field);
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int store_decimal(const my_decimal *);
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my_decimal *val_decimal(my_decimal *);
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};
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class Field_str :public Field {
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protected:
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CHARSET_INFO *field_charset;
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public:
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Field_str(char *ptr_arg,uint32 len_arg, uchar *null_ptr_arg,
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uchar null_bit_arg, utype unireg_check_arg,
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const char *field_name_arg,
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struct st_table *table_arg, CHARSET_INFO *charset);
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Item_result result_type () const { return STRING_RESULT; }
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uint decimals() const { return NOT_FIXED_DEC; }
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int store(double nr);
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int store(longlong nr)=0;
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int store_decimal(const my_decimal *);
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int store(const char *to,uint length,CHARSET_INFO *cs)=0;
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uint size_of() const { return sizeof(*this); }
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CHARSET_INFO *charset(void) const { return field_charset; }
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void set_charset(CHARSET_INFO *charset) { field_charset=charset; }
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bool binary() const { return field_charset == &my_charset_bin; }
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uint32 max_length() { return field_length; }
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friend class create_field;
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my_decimal *val_decimal(my_decimal *);
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};
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/* base class for Field_string, Field_varstring and Field_blob */
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class Field_longstr :public Field_str
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{
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public:
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Field_longstr(char *ptr_arg, uint32 len_arg, uchar *null_ptr_arg,
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uchar null_bit_arg, utype unireg_check_arg,
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const char *field_name_arg,
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struct st_table *table_arg,CHARSET_INFO *charset)
|
|
:Field_str(ptr_arg, len_arg, null_ptr_arg, null_bit_arg, unireg_check_arg,
|
|
field_name_arg, table_arg, charset)
|
|
{}
|
|
|
|
int store_decimal(const my_decimal *d);
|
|
};
|
|
|
|
/* base class for float and double and decimal (old one) */
|
|
class Field_real :public Field_num {
|
|
public:
|
|
|
|
Field_real(char *ptr_arg, uint32 len_arg, uchar *null_ptr_arg,
|
|
uchar null_bit_arg, utype unireg_check_arg,
|
|
const char *field_name_arg,
|
|
struct st_table *table_arg,
|
|
uint8 dec_arg, bool zero_arg, bool unsigned_arg)
|
|
:Field_num(ptr_arg, len_arg, null_ptr_arg, null_bit_arg, unireg_check_arg,
|
|
field_name_arg, table_arg, dec_arg, zero_arg, unsigned_arg)
|
|
{}
|
|
|
|
|
|
int store_decimal(const my_decimal *);
|
|
my_decimal *val_decimal(my_decimal *);
|
|
};
|
|
|
|
|
|
class Field_decimal :public Field_real {
|
|
public:
|
|
Field_decimal(char *ptr_arg, uint32 len_arg, uchar *null_ptr_arg,
|
|
uchar null_bit_arg,
|
|
enum utype unireg_check_arg, const char *field_name_arg,
|
|
struct st_table *table_arg,
|
|
uint8 dec_arg,bool zero_arg,bool unsigned_arg)
|
|
:Field_real(ptr_arg, len_arg, null_ptr_arg, null_bit_arg,
|
|
unireg_check_arg, field_name_arg, table_arg,
|
|
dec_arg, zero_arg, unsigned_arg)
|
|
{}
|
|
enum_field_types type() const { return FIELD_TYPE_DECIMAL;}
|
|
enum ha_base_keytype key_type() const
|
|
{ return zerofill ? HA_KEYTYPE_BINARY : HA_KEYTYPE_NUM; }
|
|
void reset(void);
|
|
int store(const char *to,uint length,CHARSET_INFO *charset);
|
|
int store(double nr);
|
|
int store(longlong nr);
|
|
double val_real(void);
|
|
longlong val_int(void);
|
|
String *val_str(String*,String *);
|
|
int cmp(const char *,const char*);
|
|
void sort_string(char *buff,uint length);
|
|
void overflow(bool negative);
|
|
bool zero_pack() const { return 0; }
|
|
void sql_type(String &str) const;
|
|
uint32 max_length() { return field_length; }
|
|
};
|
|
|
|
|
|
/* New decimal/numeric field which use fixed point arithmetic */
|
|
class Field_new_decimal :public Field_num {
|
|
public:
|
|
/* The maximum number of decimal digits can be stored */
|
|
uint precision;
|
|
uint bin_size;
|
|
/*
|
|
Constructors take max_length of the field as a parameter - not the
|
|
precision as the number of decimal digits allowed.
|
|
So for example we need to count length from precision handling
|
|
CREATE TABLE ( DECIMAL(x,y))
|
|
*/
|
|
Field_new_decimal(char *ptr_arg, uint32 len_arg, uchar *null_ptr_arg,
|
|
uchar null_bit_arg,
|
|
enum utype unireg_check_arg, const char *field_name_arg,
|
|
struct st_table *table_arg,
|
|
uint8 dec_arg, bool zero_arg, bool unsigned_arg);
|
|
Field_new_decimal(uint32 len_arg, bool maybe_null_arg,
|
|
const char *field_name_arg,
|
|
struct st_table *table_arg, uint8 dec_arg,
|
|
bool unsigned_arg);
|
|
enum_field_types type() const { return FIELD_TYPE_NEWDECIMAL;}
|
|
enum ha_base_keytype key_type() const { return HA_KEYTYPE_BINARY; }
|
|
Item_result result_type () const { return DECIMAL_RESULT; }
|
|
void reset(void);
|
|
bool store_value(const my_decimal *decimal_value);
|
|
void set_value_on_overflow(my_decimal *decimal_value, bool sign);
|
|
int store(const char *to, uint length, CHARSET_INFO *charset);
|
|
int store(double nr);
|
|
int store(longlong nr);
|
|
int store_decimal(const my_decimal *);
|
|
double val_real(void);
|
|
longlong val_int(void);
|
|
my_decimal *val_decimal(my_decimal *);
|
|
String *val_str(String*, String *);
|
|
int cmp(const char *, const char*);
|
|
void sort_string(char *buff, uint length);
|
|
bool zero_pack() const { return 0; }
|
|
void sql_type(String &str) const;
|
|
uint32 max_length() { return field_length; }
|
|
uint size_of() const { return sizeof(*this); }
|
|
uint32 pack_length() const { return (uint32) bin_size; }
|
|
};
|
|
|
|
|
|
class Field_tiny :public Field_num {
|
|
public:
|
|
Field_tiny(char *ptr_arg, uint32 len_arg, uchar *null_ptr_arg,
|
|
uchar null_bit_arg,
|
|
enum utype unireg_check_arg, const char *field_name_arg,
|
|
struct st_table *table_arg,
|
|
bool zero_arg, bool unsigned_arg)
|
|
:Field_num(ptr_arg, len_arg, null_ptr_arg, null_bit_arg,
|
|
unireg_check_arg, field_name_arg, table_arg,
|
|
0, zero_arg,unsigned_arg)
|
|
{}
|
|
enum Item_result result_type () const { return INT_RESULT; }
|
|
enum_field_types type() const { return FIELD_TYPE_TINY;}
|
|
enum ha_base_keytype key_type() const
|
|
{ return unsigned_flag ? HA_KEYTYPE_BINARY : HA_KEYTYPE_INT8; }
|
|
int store(const char *to,uint length,CHARSET_INFO *charset);
|
|
int store(double nr);
|
|
int store(longlong nr);
|
|
void reset(void) { ptr[0]=0; }
|
|
double val_real(void);
|
|
longlong val_int(void);
|
|
String *val_str(String*,String *);
|
|
bool send_binary(Protocol *protocol);
|
|
int cmp(const char *,const char*);
|
|
void sort_string(char *buff,uint length);
|
|
uint32 pack_length() const { return 1; }
|
|
void sql_type(String &str) const;
|
|
uint32 max_length() { return 4; }
|
|
};
|
|
|
|
|
|
class Field_short :public Field_num {
|
|
public:
|
|
Field_short(char *ptr_arg, uint32 len_arg, uchar *null_ptr_arg,
|
|
uchar null_bit_arg,
|
|
enum utype unireg_check_arg, const char *field_name_arg,
|
|
struct st_table *table_arg,
|
|
bool zero_arg, bool unsigned_arg)
|
|
:Field_num(ptr_arg, len_arg, null_ptr_arg, null_bit_arg,
|
|
unireg_check_arg, field_name_arg, table_arg,
|
|
0, zero_arg,unsigned_arg)
|
|
{}
|
|
Field_short(uint32 len_arg,bool maybe_null_arg, const char *field_name_arg,
|
|
struct st_table *table_arg,bool unsigned_arg)
|
|
:Field_num((char*) 0, len_arg, maybe_null_arg ? (uchar*) "": 0,0,
|
|
NONE, field_name_arg, table_arg,0,0,unsigned_arg)
|
|
{}
|
|
enum Item_result result_type () const { return INT_RESULT; }
|
|
enum_field_types type() const { return FIELD_TYPE_SHORT;}
|
|
enum ha_base_keytype key_type() const
|
|
{ return unsigned_flag ? HA_KEYTYPE_USHORT_INT : HA_KEYTYPE_SHORT_INT;}
|
|
int store(const char *to,uint length,CHARSET_INFO *charset);
|
|
int store(double nr);
|
|
int store(longlong nr);
|
|
void reset(void) { ptr[0]=ptr[1]=0; }
|
|
double val_real(void);
|
|
longlong val_int(void);
|
|
String *val_str(String*,String *);
|
|
bool send_binary(Protocol *protocol);
|
|
int cmp(const char *,const char*);
|
|
void sort_string(char *buff,uint length);
|
|
uint32 pack_length() const { return 2; }
|
|
void sql_type(String &str) const;
|
|
uint32 max_length() { return 6; }
|
|
};
|
|
|
|
|
|
class Field_medium :public Field_num {
|
|
public:
|
|
Field_medium(char *ptr_arg, uint32 len_arg, uchar *null_ptr_arg,
|
|
uchar null_bit_arg,
|
|
enum utype unireg_check_arg, const char *field_name_arg,
|
|
struct st_table *table_arg,
|
|
bool zero_arg, bool unsigned_arg)
|
|
:Field_num(ptr_arg, len_arg, null_ptr_arg, null_bit_arg,
|
|
unireg_check_arg, field_name_arg, table_arg,
|
|
0, zero_arg,unsigned_arg)
|
|
{}
|
|
enum Item_result result_type () const { return INT_RESULT; }
|
|
enum_field_types type() const { return FIELD_TYPE_INT24;}
|
|
enum ha_base_keytype key_type() const
|
|
{ return unsigned_flag ? HA_KEYTYPE_UINT24 : HA_KEYTYPE_INT24; }
|
|
int store(const char *to,uint length,CHARSET_INFO *charset);
|
|
int store(double nr);
|
|
int store(longlong nr);
|
|
void reset(void) { ptr[0]=ptr[1]=ptr[2]=0; }
|
|
double val_real(void);
|
|
longlong val_int(void);
|
|
String *val_str(String*,String *);
|
|
bool send_binary(Protocol *protocol);
|
|
int cmp(const char *,const char*);
|
|
void sort_string(char *buff,uint length);
|
|
uint32 pack_length() const { return 3; }
|
|
void sql_type(String &str) const;
|
|
uint32 max_length() { return 8; }
|
|
};
|
|
|
|
|
|
class Field_long :public Field_num {
|
|
public:
|
|
Field_long(char *ptr_arg, uint32 len_arg, uchar *null_ptr_arg,
|
|
uchar null_bit_arg,
|
|
enum utype unireg_check_arg, const char *field_name_arg,
|
|
struct st_table *table_arg,
|
|
bool zero_arg, bool unsigned_arg)
|
|
:Field_num(ptr_arg, len_arg, null_ptr_arg, null_bit_arg,
|
|
unireg_check_arg, field_name_arg, table_arg,
|
|
0, zero_arg,unsigned_arg)
|
|
{}
|
|
Field_long(uint32 len_arg,bool maybe_null_arg, const char *field_name_arg,
|
|
struct st_table *table_arg,bool unsigned_arg)
|
|
:Field_num((char*) 0, len_arg, maybe_null_arg ? (uchar*) "": 0,0,
|
|
NONE, field_name_arg, table_arg,0,0,unsigned_arg)
|
|
{}
|
|
enum Item_result result_type () const { return INT_RESULT; }
|
|
enum_field_types type() const { return FIELD_TYPE_LONG;}
|
|
enum ha_base_keytype key_type() const
|
|
{ return unsigned_flag ? HA_KEYTYPE_ULONG_INT : HA_KEYTYPE_LONG_INT; }
|
|
int store(const char *to,uint length,CHARSET_INFO *charset);
|
|
int store(double nr);
|
|
int store(longlong nr);
|
|
void reset(void) { ptr[0]=ptr[1]=ptr[2]=ptr[3]=0; }
|
|
double val_real(void);
|
|
longlong val_int(void);
|
|
bool send_binary(Protocol *protocol);
|
|
String *val_str(String*,String *);
|
|
int cmp(const char *,const char*);
|
|
void sort_string(char *buff,uint length);
|
|
uint32 pack_length() const { return 4; }
|
|
void sql_type(String &str) const;
|
|
uint32 max_length() { return 11; }
|
|
};
|
|
|
|
|
|
#ifdef HAVE_LONG_LONG
|
|
class Field_longlong :public Field_num {
|
|
public:
|
|
Field_longlong(char *ptr_arg, uint32 len_arg, uchar *null_ptr_arg,
|
|
uchar null_bit_arg,
|
|
enum utype unireg_check_arg, const char *field_name_arg,
|
|
struct st_table *table_arg,
|
|
bool zero_arg, bool unsigned_arg)
|
|
:Field_num(ptr_arg, len_arg, null_ptr_arg, null_bit_arg,
|
|
unireg_check_arg, field_name_arg, table_arg,
|
|
0, zero_arg,unsigned_arg)
|
|
{}
|
|
Field_longlong(uint32 len_arg,bool maybe_null_arg,
|
|
const char *field_name_arg,
|
|
struct st_table *table_arg, bool unsigned_arg)
|
|
:Field_num((char*) 0, len_arg, maybe_null_arg ? (uchar*) "": 0,0,
|
|
NONE, field_name_arg, table_arg,0,0,unsigned_arg)
|
|
{}
|
|
enum Item_result result_type () const { return INT_RESULT; }
|
|
enum_field_types type() const { return FIELD_TYPE_LONGLONG;}
|
|
enum ha_base_keytype key_type() const
|
|
{ return unsigned_flag ? HA_KEYTYPE_ULONGLONG : HA_KEYTYPE_LONGLONG; }
|
|
int store(const char *to,uint length,CHARSET_INFO *charset);
|
|
int store(double nr);
|
|
int store(longlong nr);
|
|
void reset(void) { ptr[0]=ptr[1]=ptr[2]=ptr[3]=ptr[4]=ptr[5]=ptr[6]=ptr[7]=0; }
|
|
double val_real(void);
|
|
longlong val_int(void);
|
|
String *val_str(String*,String *);
|
|
bool send_binary(Protocol *protocol);
|
|
int cmp(const char *,const char*);
|
|
void sort_string(char *buff,uint length);
|
|
uint32 pack_length() const { return 8; }
|
|
void sql_type(String &str) const;
|
|
bool can_be_compared_as_longlong() const { return TRUE; }
|
|
uint32 max_length() { return 20; }
|
|
};
|
|
#endif
|
|
|
|
|
|
class Field_float :public Field_real {
|
|
public:
|
|
Field_float(char *ptr_arg, uint32 len_arg, uchar *null_ptr_arg,
|
|
uchar null_bit_arg,
|
|
enum utype unireg_check_arg, const char *field_name_arg,
|
|
struct st_table *table_arg,
|
|
uint8 dec_arg,bool zero_arg,bool unsigned_arg)
|
|
:Field_real(ptr_arg, len_arg, null_ptr_arg, null_bit_arg,
|
|
unireg_check_arg, field_name_arg, table_arg,
|
|
dec_arg, zero_arg, unsigned_arg)
|
|
{}
|
|
Field_float(uint32 len_arg, bool maybe_null_arg, const char *field_name_arg,
|
|
struct st_table *table_arg, uint8 dec_arg)
|
|
:Field_real((char*) 0, len_arg, maybe_null_arg ? (uchar*) "": 0, (uint) 0,
|
|
NONE, field_name_arg, table_arg, dec_arg, 0, 0)
|
|
{}
|
|
enum_field_types type() const { return FIELD_TYPE_FLOAT;}
|
|
enum ha_base_keytype key_type() const { return HA_KEYTYPE_FLOAT; }
|
|
int store(const char *to,uint length,CHARSET_INFO *charset);
|
|
int store(double nr);
|
|
int store(longlong nr);
|
|
void reset(void) { bzero(ptr,sizeof(float)); }
|
|
double val_real(void);
|
|
longlong val_int(void);
|
|
String *val_str(String*,String *);
|
|
bool send_binary(Protocol *protocol);
|
|
int cmp(const char *,const char*);
|
|
void sort_string(char *buff,uint length);
|
|
uint32 pack_length() const { return sizeof(float); }
|
|
void sql_type(String &str) const;
|
|
uint32 max_length() { return 24; }
|
|
};
|
|
|
|
|
|
class Field_double :public Field_real {
|
|
public:
|
|
Field_double(char *ptr_arg, uint32 len_arg, uchar *null_ptr_arg,
|
|
uchar null_bit_arg,
|
|
enum utype unireg_check_arg, const char *field_name_arg,
|
|
struct st_table *table_arg,
|
|
uint8 dec_arg,bool zero_arg,bool unsigned_arg)
|
|
:Field_real(ptr_arg, len_arg, null_ptr_arg, null_bit_arg,
|
|
unireg_check_arg, field_name_arg, table_arg,
|
|
dec_arg, zero_arg, unsigned_arg)
|
|
{}
|
|
Field_double(uint32 len_arg, bool maybe_null_arg, const char *field_name_arg,
|
|
struct st_table *table_arg, uint8 dec_arg)
|
|
:Field_real((char*) 0, len_arg, maybe_null_arg ? (uchar*) "": 0, (uint) 0,
|
|
NONE, field_name_arg, table_arg, dec_arg, 0, 0)
|
|
{}
|
|
enum_field_types type() const { return FIELD_TYPE_DOUBLE;}
|
|
enum ha_base_keytype key_type() const { return HA_KEYTYPE_DOUBLE; }
|
|
int store(const char *to,uint length,CHARSET_INFO *charset);
|
|
int store(double nr);
|
|
int store(longlong nr);
|
|
void reset(void) { bzero(ptr,sizeof(double)); }
|
|
double val_real(void);
|
|
longlong val_int(void);
|
|
String *val_str(String*,String *);
|
|
bool send_binary(Protocol *protocol);
|
|
int cmp(const char *,const char*);
|
|
void sort_string(char *buff,uint length);
|
|
uint32 pack_length() const { return sizeof(double); }
|
|
void sql_type(String &str) const;
|
|
uint32 max_length() { return 53; }
|
|
};
|
|
|
|
|
|
/* Everything saved in this will disappear. It will always return NULL */
|
|
|
|
class Field_null :public Field_str {
|
|
static uchar null[1];
|
|
public:
|
|
Field_null(char *ptr_arg, uint32 len_arg,
|
|
enum utype unireg_check_arg, const char *field_name_arg,
|
|
struct st_table *table_arg, CHARSET_INFO *cs)
|
|
:Field_str(ptr_arg, len_arg, null, 1,
|
|
unireg_check_arg, field_name_arg, table_arg, cs)
|
|
{}
|
|
enum_field_types type() const { return FIELD_TYPE_NULL;}
|
|
int store(const char *to, uint length, CHARSET_INFO *cs)
|
|
{ null[0]=1; return 0; }
|
|
int store(double nr) { null[0]=1; return 0; }
|
|
int store(longlong nr) { null[0]=1; return 0; }
|
|
int store_decimal(const my_decimal *d) { null[0]=1; return 0; }
|
|
void reset(void) {}
|
|
double val_real(void) { return 0.0;}
|
|
longlong val_int(void) { return 0;}
|
|
my_decimal *val_decimal(my_decimal *) { return 0; }
|
|
String *val_str(String *value,String *value2)
|
|
{ value2->length(0); return value2;}
|
|
int cmp(const char *a, const char *b) { return 0;}
|
|
void sort_string(char *buff, uint length) {}
|
|
uint32 pack_length() const { return 0; }
|
|
void sql_type(String &str) const;
|
|
uint size_of() const { return sizeof(*this); }
|
|
uint32 max_length() { return 4; }
|
|
};
|
|
|
|
|
|
class Field_timestamp :public Field_str {
|
|
public:
|
|
Field_timestamp(char *ptr_arg, uint32 len_arg,
|
|
uchar *null_ptr_arg, uchar null_bit_arg,
|
|
enum utype unireg_check_arg, const char *field_name_arg,
|
|
struct st_table *table_arg,
|
|
CHARSET_INFO *cs);
|
|
enum_field_types type() const { return FIELD_TYPE_TIMESTAMP;}
|
|
enum ha_base_keytype key_type() const { return HA_KEYTYPE_ULONG_INT; }
|
|
enum Item_result cmp_type () const { return INT_RESULT; }
|
|
int store(const char *to,uint length,CHARSET_INFO *charset);
|
|
int store(double nr);
|
|
int store(longlong nr);
|
|
void reset(void) { ptr[0]=ptr[1]=ptr[2]=ptr[3]=0; }
|
|
double val_real(void);
|
|
longlong val_int(void);
|
|
String *val_str(String*,String *);
|
|
bool send_binary(Protocol *protocol);
|
|
int cmp(const char *,const char*);
|
|
void sort_string(char *buff,uint length);
|
|
uint32 pack_length() const { return 4; }
|
|
void sql_type(String &str) const;
|
|
bool can_be_compared_as_longlong() const { return TRUE; }
|
|
bool zero_pack() const { return 0; }
|
|
void set_time();
|
|
virtual void set_default()
|
|
{
|
|
if (table->timestamp_field == this &&
|
|
unireg_check != TIMESTAMP_UN_FIELD)
|
|
set_time();
|
|
else
|
|
Field::set_default();
|
|
}
|
|
/* Get TIMESTAMP field value as seconds since begging of Unix Epoch */
|
|
inline long get_timestamp(my_bool *null_value)
|
|
{
|
|
if ((*null_value= is_null()))
|
|
return 0;
|
|
#ifdef WORDS_BIGENDIAN
|
|
if (table->s->db_low_byte_first)
|
|
return sint4korr(ptr);
|
|
#endif
|
|
long tmp;
|
|
longget(tmp,ptr);
|
|
return tmp;
|
|
}
|
|
bool get_date(TIME *ltime,uint fuzzydate);
|
|
bool get_time(TIME *ltime);
|
|
timestamp_auto_set_type get_auto_set_type() const;
|
|
};
|
|
|
|
|
|
class Field_year :public Field_tiny {
|
|
public:
|
|
Field_year(char *ptr_arg, uint32 len_arg, uchar *null_ptr_arg,
|
|
uchar null_bit_arg,
|
|
enum utype unireg_check_arg, const char *field_name_arg,
|
|
struct st_table *table_arg)
|
|
:Field_tiny(ptr_arg, len_arg, null_ptr_arg, null_bit_arg,
|
|
unireg_check_arg, field_name_arg, table_arg, 1, 1)
|
|
{}
|
|
enum_field_types type() const { return FIELD_TYPE_YEAR;}
|
|
int store(const char *to,uint length,CHARSET_INFO *charset);
|
|
int store(double nr);
|
|
int store(longlong nr);
|
|
double val_real(void);
|
|
longlong val_int(void);
|
|
String *val_str(String*,String *);
|
|
bool send_binary(Protocol *protocol);
|
|
void sql_type(String &str) const;
|
|
bool can_be_compared_as_longlong() const { return TRUE; }
|
|
};
|
|
|
|
|
|
class Field_date :public Field_str {
|
|
public:
|
|
Field_date(char *ptr_arg, uchar *null_ptr_arg, uchar null_bit_arg,
|
|
enum utype unireg_check_arg, const char *field_name_arg,
|
|
struct st_table *table_arg, CHARSET_INFO *cs)
|
|
:Field_str(ptr_arg, 10, null_ptr_arg, null_bit_arg,
|
|
unireg_check_arg, field_name_arg, table_arg, cs)
|
|
{}
|
|
Field_date(bool maybe_null_arg, const char *field_name_arg,
|
|
struct st_table *table_arg, CHARSET_INFO *cs)
|
|
:Field_str((char*) 0,10, maybe_null_arg ? (uchar*) "": 0,0,
|
|
NONE, field_name_arg, table_arg, cs) {}
|
|
enum_field_types type() const { return FIELD_TYPE_DATE;}
|
|
enum ha_base_keytype key_type() const { return HA_KEYTYPE_ULONG_INT; }
|
|
enum Item_result cmp_type () const { return INT_RESULT; }
|
|
int store(const char *to,uint length,CHARSET_INFO *charset);
|
|
int store(double nr);
|
|
int store(longlong nr);
|
|
void reset(void) { ptr[0]=ptr[1]=ptr[2]=ptr[3]=0; }
|
|
double val_real(void);
|
|
longlong val_int(void);
|
|
String *val_str(String*,String *);
|
|
bool send_binary(Protocol *protocol);
|
|
int cmp(const char *,const char*);
|
|
void sort_string(char *buff,uint length);
|
|
uint32 pack_length() const { return 4; }
|
|
void sql_type(String &str) const;
|
|
bool can_be_compared_as_longlong() const { return TRUE; }
|
|
bool zero_pack() const { return 1; }
|
|
};
|
|
|
|
class Field_newdate :public Field_str {
|
|
public:
|
|
Field_newdate(char *ptr_arg, uchar *null_ptr_arg, uchar null_bit_arg,
|
|
enum utype unireg_check_arg, const char *field_name_arg,
|
|
struct st_table *table_arg, CHARSET_INFO *cs)
|
|
:Field_str(ptr_arg, 10, null_ptr_arg, null_bit_arg,
|
|
unireg_check_arg, field_name_arg, table_arg, cs)
|
|
{}
|
|
enum_field_types type() const { return FIELD_TYPE_DATE;}
|
|
enum_field_types real_type() const { return FIELD_TYPE_NEWDATE; }
|
|
enum ha_base_keytype key_type() const { return HA_KEYTYPE_UINT24; }
|
|
enum Item_result cmp_type () const { return INT_RESULT; }
|
|
int store(const char *to,uint length,CHARSET_INFO *charset);
|
|
int store(double nr);
|
|
int store(longlong nr);
|
|
int store_time(TIME *ltime, timestamp_type type);
|
|
void reset(void) { ptr[0]=ptr[1]=ptr[2]=0; }
|
|
double val_real(void);
|
|
longlong val_int(void);
|
|
String *val_str(String*,String *);
|
|
bool send_binary(Protocol *protocol);
|
|
int cmp(const char *,const char*);
|
|
void sort_string(char *buff,uint length);
|
|
uint32 pack_length() const { return 3; }
|
|
void sql_type(String &str) const;
|
|
bool can_be_compared_as_longlong() const { return TRUE; }
|
|
bool zero_pack() const { return 1; }
|
|
bool get_date(TIME *ltime,uint fuzzydate);
|
|
bool get_time(TIME *ltime);
|
|
};
|
|
|
|
|
|
class Field_time :public Field_str {
|
|
public:
|
|
Field_time(char *ptr_arg, uchar *null_ptr_arg, uchar null_bit_arg,
|
|
enum utype unireg_check_arg, const char *field_name_arg,
|
|
struct st_table *table_arg, CHARSET_INFO *cs)
|
|
:Field_str(ptr_arg, 8, null_ptr_arg, null_bit_arg,
|
|
unireg_check_arg, field_name_arg, table_arg, cs)
|
|
{}
|
|
Field_time(bool maybe_null_arg, const char *field_name_arg,
|
|
struct st_table *table_arg, CHARSET_INFO *cs)
|
|
:Field_str((char*) 0,8, maybe_null_arg ? (uchar*) "": 0,0,
|
|
NONE, field_name_arg, table_arg, cs) {}
|
|
enum_field_types type() const { return FIELD_TYPE_TIME;}
|
|
enum ha_base_keytype key_type() const { return HA_KEYTYPE_INT24; }
|
|
enum Item_result cmp_type () const { return INT_RESULT; }
|
|
int store_time(TIME *ltime, timestamp_type type);
|
|
int store(const char *to,uint length,CHARSET_INFO *charset);
|
|
int store(double nr);
|
|
int store(longlong nr);
|
|
void reset(void) { ptr[0]=ptr[1]=ptr[2]=0; }
|
|
double val_real(void);
|
|
longlong val_int(void);
|
|
String *val_str(String*,String *);
|
|
bool get_date(TIME *ltime, uint fuzzydate);
|
|
bool send_binary(Protocol *protocol);
|
|
bool get_time(TIME *ltime);
|
|
int cmp(const char *,const char*);
|
|
void sort_string(char *buff,uint length);
|
|
uint32 pack_length() const { return 3; }
|
|
void sql_type(String &str) const;
|
|
bool can_be_compared_as_longlong() const { return TRUE; }
|
|
bool zero_pack() const { return 1; }
|
|
};
|
|
|
|
|
|
class Field_datetime :public Field_str {
|
|
public:
|
|
Field_datetime(char *ptr_arg, uchar *null_ptr_arg, uchar null_bit_arg,
|
|
enum utype unireg_check_arg, const char *field_name_arg,
|
|
struct st_table *table_arg, CHARSET_INFO *cs)
|
|
:Field_str(ptr_arg, 19, null_ptr_arg, null_bit_arg,
|
|
unireg_check_arg, field_name_arg, table_arg, cs)
|
|
{}
|
|
Field_datetime(bool maybe_null_arg, const char *field_name_arg,
|
|
struct st_table *table_arg, CHARSET_INFO *cs)
|
|
:Field_str((char*) 0,19, maybe_null_arg ? (uchar*) "": 0,0,
|
|
NONE, field_name_arg, table_arg, cs) {}
|
|
enum_field_types type() const { return FIELD_TYPE_DATETIME;}
|
|
#ifdef HAVE_LONG_LONG
|
|
enum ha_base_keytype key_type() const { return HA_KEYTYPE_ULONGLONG; }
|
|
#endif
|
|
enum Item_result cmp_type () const { return INT_RESULT; }
|
|
uint decimals() const { return DATETIME_DEC; }
|
|
int store(const char *to,uint length,CHARSET_INFO *charset);
|
|
int store(double nr);
|
|
int store(longlong nr);
|
|
int store_time(TIME *ltime, timestamp_type type);
|
|
void reset(void) { ptr[0]=ptr[1]=ptr[2]=ptr[3]=ptr[4]=ptr[5]=ptr[6]=ptr[7]=0; }
|
|
double val_real(void);
|
|
longlong val_int(void);
|
|
String *val_str(String*,String *);
|
|
bool send_binary(Protocol *protocol);
|
|
int cmp(const char *,const char*);
|
|
void sort_string(char *buff,uint length);
|
|
uint32 pack_length() const { return 8; }
|
|
void sql_type(String &str) const;
|
|
bool can_be_compared_as_longlong() const { return TRUE; }
|
|
bool zero_pack() const { return 1; }
|
|
bool get_date(TIME *ltime,uint fuzzydate);
|
|
bool get_time(TIME *ltime);
|
|
};
|
|
|
|
|
|
class Field_string :public Field_longstr {
|
|
public:
|
|
Field_string(char *ptr_arg, uint32 len_arg,uchar *null_ptr_arg,
|
|
uchar null_bit_arg,
|
|
enum utype unireg_check_arg, const char *field_name_arg,
|
|
struct st_table *table_arg, CHARSET_INFO *cs)
|
|
:Field_longstr(ptr_arg, len_arg, null_ptr_arg, null_bit_arg,
|
|
unireg_check_arg, field_name_arg, table_arg, cs) {};
|
|
Field_string(uint32 len_arg,bool maybe_null_arg, const char *field_name_arg,
|
|
struct st_table *table_arg, CHARSET_INFO *cs)
|
|
:Field_longstr((char*) 0, len_arg, maybe_null_arg ? (uchar*) "": 0, 0,
|
|
NONE, field_name_arg, table_arg, cs) {};
|
|
|
|
enum_field_types type() const
|
|
{
|
|
return ((orig_table &&
|
|
orig_table->s->db_create_options & HA_OPTION_PACK_RECORD &&
|
|
field_length >= 4) &&
|
|
orig_table->s->frm_version < FRM_VER_TRUE_VARCHAR ?
|
|
MYSQL_TYPE_VAR_STRING : MYSQL_TYPE_STRING);
|
|
}
|
|
enum ha_base_keytype key_type() const
|
|
{ return binary() ? HA_KEYTYPE_BINARY : HA_KEYTYPE_TEXT; }
|
|
bool zero_pack() const { return 0; }
|
|
void reset(void) { charset()->cset->fill(charset(),ptr,field_length,' '); }
|
|
int store(const char *to,uint length,CHARSET_INFO *charset);
|
|
int store(longlong nr);
|
|
int store(double nr) { return Field_str::store(nr); } /* QQ: To be deleted */
|
|
double val_real(void);
|
|
longlong val_int(void);
|
|
String *val_str(String*,String *);
|
|
my_decimal *val_decimal(my_decimal *);
|
|
int cmp(const char *,const char*);
|
|
void sort_string(char *buff,uint length);
|
|
void sql_type(String &str) const;
|
|
char *pack(char *to, const char *from, uint max_length=~(uint) 0);
|
|
const char *unpack(char* to, const char *from);
|
|
int pack_cmp(const char *a,const char *b,uint key_length,
|
|
my_bool insert_or_update);
|
|
int pack_cmp(const char *b,uint key_length,my_bool insert_or_update);
|
|
uint packed_col_length(const char *to, uint length);
|
|
uint max_packed_col_length(uint max_length);
|
|
uint size_of() const { return sizeof(*this); }
|
|
enum_field_types real_type() const { return FIELD_TYPE_STRING; }
|
|
bool has_charset(void) const
|
|
{ return charset() == &my_charset_bin ? FALSE : TRUE; }
|
|
Field *new_field(MEM_ROOT *root, struct st_table *new_table);
|
|
};
|
|
|
|
|
|
class Field_varstring :public Field_longstr {
|
|
public:
|
|
/* Store number of bytes used to store length (1 or 2) */
|
|
uint32 length_bytes;
|
|
Field_varstring(char *ptr_arg,
|
|
uint32 len_arg, uint length_bytes_arg,
|
|
uchar *null_ptr_arg,
|
|
uchar null_bit_arg,
|
|
enum utype unireg_check_arg, const char *field_name_arg,
|
|
struct st_table *table_arg, CHARSET_INFO *cs)
|
|
:Field_longstr(ptr_arg, len_arg, null_ptr_arg, null_bit_arg,
|
|
unireg_check_arg, field_name_arg, table_arg, cs),
|
|
length_bytes(length_bytes_arg)
|
|
{
|
|
if (table)
|
|
table->s->varchar_fields++;
|
|
}
|
|
Field_varstring(uint32 len_arg,bool maybe_null_arg,
|
|
const char *field_name_arg,
|
|
struct st_table *table_arg, CHARSET_INFO *cs)
|
|
:Field_longstr((char*) 0,len_arg, maybe_null_arg ? (uchar*) "": 0, 0,
|
|
NONE, field_name_arg, table_arg, cs),
|
|
length_bytes(len_arg < 256 ? 1 :2)
|
|
{
|
|
if (table)
|
|
table->s->varchar_fields++;
|
|
}
|
|
|
|
enum_field_types type() const { return MYSQL_TYPE_VARCHAR; }
|
|
enum ha_base_keytype key_type() const;
|
|
bool zero_pack() const { return 0; }
|
|
void reset(void) { bzero(ptr,field_length+length_bytes); }
|
|
uint32 pack_length() const { return (uint32) field_length+length_bytes; }
|
|
uint32 key_length() const { return (uint32) field_length; }
|
|
int store(const char *to,uint length,CHARSET_INFO *charset);
|
|
int store(longlong nr);
|
|
int store(double nr) { return Field_str::store(nr); } /* QQ: To be deleted */
|
|
double val_real(void);
|
|
longlong val_int(void);
|
|
String *val_str(String*,String *);
|
|
my_decimal *val_decimal(my_decimal *);
|
|
int cmp(const char *,const char*);
|
|
void sort_string(char *buff,uint length);
|
|
void get_key_image(char *buff,uint length, imagetype type);
|
|
void set_key_image(char *buff,uint length);
|
|
void sql_type(String &str) const;
|
|
char *pack(char *to, const char *from, uint max_length=~(uint) 0);
|
|
char *pack_key(char *to, const char *from, uint max_length);
|
|
char *pack_key_from_key_image(char* to, const char *from, uint max_length);
|
|
const char *unpack(char* to, const char *from);
|
|
const char *unpack_key(char* to, const char *from, uint max_length);
|
|
int pack_cmp(const char *a, const char *b, uint key_length,
|
|
my_bool insert_or_update);
|
|
int pack_cmp(const char *b, uint key_length,my_bool insert_or_update);
|
|
int cmp_binary(const char *a,const char *b, uint32 max_length=~0L);
|
|
int key_cmp(const byte *,const byte*);
|
|
int key_cmp(const byte *str, uint length);
|
|
uint packed_col_length(const char *to, uint length);
|
|
uint max_packed_col_length(uint max_length);
|
|
uint size_of() const { return sizeof(*this); }
|
|
enum_field_types real_type() const { return MYSQL_TYPE_VARCHAR; }
|
|
bool has_charset(void) const
|
|
{ return charset() == &my_charset_bin ? FALSE : TRUE; }
|
|
Field *new_field(MEM_ROOT *root, struct st_table *new_table);
|
|
Field *new_key_field(MEM_ROOT *root, struct st_table *new_table,
|
|
char *new_ptr, uchar *new_null_ptr,
|
|
uint new_null_bit);
|
|
};
|
|
|
|
|
|
class Field_blob :public Field_longstr {
|
|
protected:
|
|
uint packlength;
|
|
String value; // For temporaries
|
|
public:
|
|
Field_blob(char *ptr_arg, uchar *null_ptr_arg, uchar null_bit_arg,
|
|
enum utype unireg_check_arg, const char *field_name_arg,
|
|
struct st_table *table_arg,uint blob_pack_length,
|
|
CHARSET_INFO *cs);
|
|
Field_blob(uint32 len_arg,bool maybe_null_arg, const char *field_name_arg,
|
|
struct st_table *table_arg, CHARSET_INFO *cs)
|
|
:Field_longstr((char*) 0,len_arg, maybe_null_arg ? (uchar*) "": 0, 0,
|
|
NONE, field_name_arg, table_arg, cs),
|
|
packlength(4)
|
|
{
|
|
flags|= BLOB_FLAG;
|
|
}
|
|
enum_field_types type() const { return FIELD_TYPE_BLOB;}
|
|
enum ha_base_keytype key_type() const
|
|
{ return binary() ? HA_KEYTYPE_VARBINARY2 : HA_KEYTYPE_VARTEXT2; }
|
|
int store(const char *to,uint length,CHARSET_INFO *charset);
|
|
int store(double nr);
|
|
int store(longlong nr);
|
|
double val_real(void);
|
|
longlong val_int(void);
|
|
String *val_str(String*,String *);
|
|
my_decimal *val_decimal(my_decimal *);
|
|
int cmp(const char *,const char*);
|
|
int cmp(const char *a, uint32 a_length, const char *b, uint32 b_length);
|
|
int cmp_binary(const char *a,const char *b, uint32 max_length=~0L);
|
|
int key_cmp(const byte *,const byte*);
|
|
int key_cmp(const byte *str, uint length);
|
|
uint32 key_length() const { return 0; }
|
|
void sort_string(char *buff,uint length);
|
|
uint32 pack_length() const
|
|
{ return (uint32) (packlength+table->s->blob_ptr_size); }
|
|
inline uint32 max_data_length() const
|
|
{
|
|
return (uint32) (((ulonglong) 1 << (packlength*8)) -1);
|
|
}
|
|
void reset(void) { bzero(ptr, packlength+sizeof(char*)); }
|
|
void reset_fields() { bzero((char*) &value,sizeof(value)); }
|
|
void store_length(uint32 number);
|
|
inline uint32 get_length(uint row_offset=0)
|
|
{ return get_length(ptr+row_offset); }
|
|
uint32 get_length(const char *ptr);
|
|
void put_length(char *pos, uint32 length);
|
|
inline void get_ptr(char **str)
|
|
{
|
|
memcpy_fixed(str,ptr+packlength,sizeof(char*));
|
|
}
|
|
inline void set_ptr(char *length,char *data)
|
|
{
|
|
memcpy(ptr,length,packlength);
|
|
memcpy_fixed(ptr+packlength,&data,sizeof(char*));
|
|
}
|
|
inline void set_ptr(uint32 length,char *data)
|
|
{
|
|
store_length(length);
|
|
memcpy_fixed(ptr+packlength,&data,sizeof(char*));
|
|
}
|
|
void get_key_image(char *buff,uint length, imagetype type);
|
|
void set_key_image(char *buff,uint length);
|
|
void sql_type(String &str) const;
|
|
inline bool copy()
|
|
{ char *tmp;
|
|
get_ptr(&tmp);
|
|
if (value.copy(tmp,get_length(),charset()))
|
|
{
|
|
Field_blob::reset();
|
|
return 1;
|
|
}
|
|
tmp=(char*) value.ptr(); memcpy_fixed(ptr+packlength,&tmp,sizeof(char*));
|
|
return 0;
|
|
}
|
|
char *pack(char *to, const char *from, uint max_length= ~(uint) 0);
|
|
char *pack_key(char *to, const char *from, uint max_length);
|
|
char *pack_key_from_key_image(char* to, const char *from, uint max_length);
|
|
const char *unpack(char *to, const char *from);
|
|
const char *unpack_key(char* to, const char *from, uint max_length);
|
|
int pack_cmp(const char *a, const char *b, uint key_length,
|
|
my_bool insert_or_update);
|
|
int pack_cmp(const char *b, uint key_length,my_bool insert_or_update);
|
|
uint packed_col_length(const char *col_ptr, uint length);
|
|
uint max_packed_col_length(uint max_length);
|
|
void free() { value.free(); }
|
|
inline void clear_temporary() { bzero((char*) &value,sizeof(value)); }
|
|
friend void field_conv(Field *to,Field *from);
|
|
uint size_of() const { return sizeof(*this); }
|
|
bool has_charset(void) const
|
|
{ return charset() == &my_charset_bin ? FALSE : TRUE; }
|
|
uint32 max_length();
|
|
};
|
|
|
|
|
|
#ifdef HAVE_SPATIAL
|
|
class Field_geom :public Field_blob {
|
|
public:
|
|
enum geometry_type geom_type;
|
|
|
|
Field_geom(char *ptr_arg, uchar *null_ptr_arg, uint null_bit_arg,
|
|
enum utype unireg_check_arg, const char *field_name_arg,
|
|
struct st_table *table_arg,uint blob_pack_length,
|
|
enum geometry_type geom_type_arg)
|
|
:Field_blob(ptr_arg, null_ptr_arg, null_bit_arg, unireg_check_arg,
|
|
field_name_arg, table_arg, blob_pack_length,&my_charset_bin)
|
|
{ geom_type= geom_type_arg; }
|
|
Field_geom(uint32 len_arg,bool maybe_null_arg, const char *field_name_arg,
|
|
struct st_table *table_arg, enum geometry_type geom_type_arg)
|
|
:Field_blob(len_arg, maybe_null_arg, field_name_arg,
|
|
table_arg, &my_charset_bin)
|
|
{ geom_type= geom_type_arg; }
|
|
enum ha_base_keytype key_type() const { return HA_KEYTYPE_VARBINARY2; }
|
|
enum_field_types type() const { return FIELD_TYPE_GEOMETRY; }
|
|
void sql_type(String &str) const;
|
|
int store(const char *to, uint length, CHARSET_INFO *charset);
|
|
int store(double nr);
|
|
int store(longlong nr);
|
|
int store_decimal(const my_decimal *);
|
|
void get_key_image(char *buff,uint length,imagetype type);
|
|
};
|
|
#endif /*HAVE_SPATIAL*/
|
|
|
|
|
|
class Field_enum :public Field_str {
|
|
protected:
|
|
uint packlength;
|
|
public:
|
|
TYPELIB *typelib;
|
|
Field_enum(char *ptr_arg, uint32 len_arg, uchar *null_ptr_arg,
|
|
uchar null_bit_arg,
|
|
enum utype unireg_check_arg, const char *field_name_arg,
|
|
struct st_table *table_arg,uint packlength_arg,
|
|
TYPELIB *typelib_arg,
|
|
CHARSET_INFO *charset_arg)
|
|
:Field_str(ptr_arg, len_arg, null_ptr_arg, null_bit_arg,
|
|
unireg_check_arg, field_name_arg, table_arg, charset_arg),
|
|
packlength(packlength_arg),typelib(typelib_arg)
|
|
{
|
|
flags|=ENUM_FLAG;
|
|
}
|
|
enum_field_types type() const { return FIELD_TYPE_STRING; }
|
|
enum Item_result cmp_type () const { return INT_RESULT; }
|
|
enum Item_result cast_to_int_type () const { return INT_RESULT; }
|
|
enum ha_base_keytype key_type() const;
|
|
int store(const char *to,uint length,CHARSET_INFO *charset);
|
|
int store(double nr);
|
|
int store(longlong nr);
|
|
void reset() { bzero(ptr,packlength); }
|
|
double val_real(void);
|
|
longlong val_int(void);
|
|
String *val_str(String*,String *);
|
|
int cmp(const char *,const char*);
|
|
void sort_string(char *buff,uint length);
|
|
uint32 pack_length() const { return (uint32) packlength; }
|
|
void store_type(ulonglong value);
|
|
void sql_type(String &str) const;
|
|
uint size_of() const { return sizeof(*this); }
|
|
enum_field_types real_type() const { return FIELD_TYPE_ENUM; }
|
|
virtual bool zero_pack() const { return 0; }
|
|
bool optimize_range(uint idx, uint part) { return 0; }
|
|
bool eq_def(Field *field);
|
|
bool has_charset(void) const { return TRUE; }
|
|
/* enum and set are sorted as integers */
|
|
CHARSET_INFO *sort_charset(void) const { return &my_charset_bin; }
|
|
};
|
|
|
|
|
|
class Field_set :public Field_enum {
|
|
public:
|
|
Field_set(char *ptr_arg, uint32 len_arg, uchar *null_ptr_arg,
|
|
uchar null_bit_arg,
|
|
enum utype unireg_check_arg, const char *field_name_arg,
|
|
struct st_table *table_arg,uint32 packlength_arg,
|
|
TYPELIB *typelib_arg, CHARSET_INFO *charset_arg)
|
|
:Field_enum(ptr_arg, len_arg, null_ptr_arg, null_bit_arg,
|
|
unireg_check_arg, field_name_arg,
|
|
table_arg, packlength_arg,
|
|
typelib_arg,charset_arg)
|
|
{
|
|
flags=(flags & ~ENUM_FLAG) | SET_FLAG;
|
|
}
|
|
int store(const char *to,uint length,CHARSET_INFO *charset);
|
|
int store(double nr) { return Field_set::store((longlong) nr); }
|
|
int store(longlong nr);
|
|
virtual bool zero_pack() const { return 1; }
|
|
String *val_str(String*,String *);
|
|
void sql_type(String &str) const;
|
|
enum_field_types real_type() const { return FIELD_TYPE_SET; }
|
|
bool has_charset(void) const { return TRUE; }
|
|
};
|
|
|
|
|
|
class Field_bit :public Field {
|
|
public:
|
|
uchar *bit_ptr; // position in record where 'uneven' bits store
|
|
uchar bit_ofs; // offset to 'uneven' high bits
|
|
uint bit_len; // number of 'uneven' high bits
|
|
Field_bit(char *ptr_arg, uint32 len_arg, uchar *null_ptr_arg,
|
|
uchar null_bit_arg, uchar *bit_ptr_arg, uchar bit_ofs_arg,
|
|
enum utype unireg_check_arg, const char *field_name_arg,
|
|
struct st_table *table_arg);
|
|
enum_field_types type() const { return FIELD_TYPE_BIT; }
|
|
enum ha_base_keytype key_type() const { return HA_KEYTYPE_BIT; }
|
|
uint32 key_length() const { return (uint32) field_length + (bit_len > 0); }
|
|
uint32 max_length() { return (uint32) field_length * 8 + bit_len; }
|
|
uint size_of() const { return sizeof(*this); }
|
|
Item_result result_type () const { return INT_RESULT; }
|
|
void reset(void) { bzero(ptr, field_length); }
|
|
int store(const char *to, uint length, CHARSET_INFO *charset);
|
|
int store(double nr);
|
|
int store(longlong nr);
|
|
int store_decimal(const my_decimal *);
|
|
double val_real(void);
|
|
longlong val_int(void);
|
|
String *val_str(String*, String *);
|
|
my_decimal *val_decimal(my_decimal *);
|
|
int cmp(const char *a, const char *b)
|
|
{ return cmp_binary(a, b); }
|
|
int key_cmp(const byte *a, const byte *b)
|
|
{ return cmp_binary((char *) a, (char *) b); }
|
|
int key_cmp(const byte *str, uint length);
|
|
int cmp_offset(uint row_offset);
|
|
void get_key_image(char *buff, uint length, imagetype type);
|
|
void set_key_image(char *buff, uint length)
|
|
{ Field_bit::store(buff, length, &my_charset_bin); }
|
|
void sort_string(char *buff, uint length)
|
|
{ get_key_image(buff, length, itRAW); }
|
|
uint32 pack_length() const
|
|
{ return (uint32) field_length + (bit_len > 0); }
|
|
uint32 pack_length_in_rec() const { return field_length; }
|
|
void sql_type(String &str) const;
|
|
char *pack(char *to, const char *from, uint max_length=~(uint) 0);
|
|
const char *unpack(char* to, const char *from);
|
|
Field *new_key_field(MEM_ROOT *root, struct st_table *new_table,
|
|
char *new_ptr, uchar *new_null_ptr,
|
|
uint new_null_bit);
|
|
void set_bit_ptr(uchar *bit_ptr_arg, uchar bit_ofs_arg)
|
|
{
|
|
bit_ptr= bit_ptr_arg;
|
|
bit_ofs= bit_ofs_arg;
|
|
}
|
|
};
|
|
|
|
|
|
class Field_bit_as_char: public Field_bit {
|
|
public:
|
|
uchar create_length;
|
|
Field_bit_as_char(char *ptr_arg, uint32 len_arg, uchar *null_ptr_arg,
|
|
uchar null_bit_arg, uchar *bit_ptr_arg, uchar bit_ofs_arg,
|
|
enum utype unireg_check_arg, const char *field_name_arg,
|
|
struct st_table *table_arg);
|
|
enum ha_base_keytype key_type() const { return HA_KEYTYPE_BINARY; }
|
|
uint32 max_length() { return (uint32) create_length; }
|
|
uint size_of() const { return sizeof(*this); }
|
|
int store(const char *to, uint length, CHARSET_INFO *charset);
|
|
int store(double nr) { return Field_bit::store(nr); }
|
|
int store(longlong nr) { return Field_bit::store(nr); }
|
|
void sql_type(String &str) const;
|
|
};
|
|
|
|
|
|
/*
|
|
Create field class for CREATE TABLE
|
|
*/
|
|
|
|
class create_field :public Sql_alloc
|
|
{
|
|
public:
|
|
const char *field_name;
|
|
const char *change; // If done with alter table
|
|
const char *after; // Put column after this one
|
|
LEX_STRING comment; // Comment for field
|
|
Item *def; // Default value
|
|
enum enum_field_types sql_type;
|
|
ulong length;
|
|
uint decimals, flags, pack_length, key_length;
|
|
Field::utype unireg_check;
|
|
TYPELIB *interval; // Which interval to use
|
|
List<String> interval_list;
|
|
CHARSET_INFO *charset;
|
|
Field::geometry_type geom_type;
|
|
Field *field; // For alter table
|
|
|
|
uint8 row,col,sc_length,interval_id; // For rea_create_table
|
|
uint offset,pack_flag;
|
|
create_field() :after(0) {}
|
|
create_field(Field *field, Field *orig_field);
|
|
void create_length_to_internal_length(void);
|
|
|
|
/* Init for a tmp table field. To be extended if need be. */
|
|
void init_for_tmp_table(enum_field_types sql_type_arg,
|
|
uint32 max_length, uint32 decimals,
|
|
bool maybe_null, bool is_unsigned);
|
|
};
|
|
|
|
|
|
/*
|
|
A class for sending info to the client
|
|
*/
|
|
|
|
class Send_field {
|
|
public:
|
|
const char *db_name;
|
|
const char *table_name,*org_table_name;
|
|
const char *col_name,*org_col_name;
|
|
ulong length;
|
|
uint charsetnr, flags, decimals;
|
|
enum_field_types type;
|
|
Send_field() {}
|
|
};
|
|
|
|
|
|
/*
|
|
A class for quick copying data to fields
|
|
*/
|
|
|
|
class Copy_field :public Sql_alloc {
|
|
void (*get_copy_func(Field *to,Field *from))(Copy_field *);
|
|
public:
|
|
char *from_ptr,*to_ptr;
|
|
uchar *from_null_ptr,*to_null_ptr;
|
|
my_bool *null_row;
|
|
uint from_bit,to_bit;
|
|
uint from_length,to_length;
|
|
Field *from_field,*to_field;
|
|
String tmp; // For items
|
|
|
|
Copy_field() {}
|
|
~Copy_field() {}
|
|
void set(Field *to,Field *from,bool save); // Field to field
|
|
void set(char *to,Field *from); // Field to string
|
|
void (*do_copy)(Copy_field *);
|
|
void (*do_copy2)(Copy_field *); // Used to handle null values
|
|
};
|
|
|
|
|
|
Field *make_field(char *ptr, uint32 field_length,
|
|
uchar *null_pos, uchar null_bit,
|
|
uint pack_flag, enum_field_types field_type,
|
|
CHARSET_INFO *cs,
|
|
Field::geometry_type geom_type,
|
|
Field::utype unireg_check,
|
|
TYPELIB *interval, const char *field_name,
|
|
struct st_table *table);
|
|
uint pack_length_to_packflag(uint type);
|
|
enum_field_types get_blob_type_from_length(ulong length);
|
|
uint32 calc_pack_length(enum_field_types type,uint32 length);
|
|
int set_field_to_null(Field *field);
|
|
int set_field_to_null_with_conversions(Field *field, bool no_conversions);
|
|
|
|
/*
|
|
The following are for the interface with the .frm file
|
|
*/
|
|
|
|
#define FIELDFLAG_DECIMAL 1
|
|
#define FIELDFLAG_BINARY 1 // Shares same flag
|
|
#define FIELDFLAG_NUMBER 2
|
|
#define FIELDFLAG_ZEROFILL 4
|
|
#define FIELDFLAG_PACK 120 // Bits used for packing
|
|
#define FIELDFLAG_INTERVAL 256 // mangled with decimals!
|
|
#define FIELDFLAG_BITFIELD 512 // mangled with decimals!
|
|
#define FIELDFLAG_BLOB 1024 // mangled with decimals!
|
|
#define FIELDFLAG_GEOM 2048 // mangled with decimals!
|
|
|
|
#define FIELDFLAG_TREAT_BIT_AS_CHAR 4096 /* use Field_bit_as_char */
|
|
|
|
#define FIELDFLAG_LEFT_FULLSCREEN 8192
|
|
#define FIELDFLAG_RIGHT_FULLSCREEN 16384
|
|
#define FIELDFLAG_FORMAT_NUMBER 16384 // predit: ###,,## in output
|
|
#define FIELDFLAG_NO_DEFAULT 16384 /* sql */
|
|
#define FIELDFLAG_SUM ((uint) 32768)// predit: +#fieldflag
|
|
#define FIELDFLAG_MAYBE_NULL ((uint) 32768)// sql
|
|
#define FIELDFLAG_PACK_SHIFT 3
|
|
#define FIELDFLAG_DEC_SHIFT 8
|
|
#define FIELDFLAG_MAX_DEC 31
|
|
#define FIELDFLAG_NUM_SCREEN_TYPE 0x7F01
|
|
#define FIELDFLAG_ALFA_SCREEN_TYPE 0x7800
|
|
|
|
#define MTYP_TYPENR(type) (type & 127) /* Remove bits from type */
|
|
|
|
#define f_is_dec(x) ((x) & FIELDFLAG_DECIMAL)
|
|
#define f_is_num(x) ((x) & FIELDFLAG_NUMBER)
|
|
#define f_is_zerofill(x) ((x) & FIELDFLAG_ZEROFILL)
|
|
#define f_is_packed(x) ((x) & FIELDFLAG_PACK)
|
|
#define f_packtype(x) (((x) >> FIELDFLAG_PACK_SHIFT) & 15)
|
|
#define f_decimals(x) ((uint8) (((x) >> FIELDFLAG_DEC_SHIFT) & FIELDFLAG_MAX_DEC))
|
|
#define f_is_alpha(x) (!f_is_num(x))
|
|
#define f_is_binary(x) ((x) & FIELDFLAG_BINARY) // 4.0- compatibility
|
|
#define f_is_enum(x) (((x) & (FIELDFLAG_INTERVAL | FIELDFLAG_NUMBER)) == FIELDFLAG_INTERVAL)
|
|
#define f_is_bitfield(x) (((x) & (FIELDFLAG_BITFIELD | FIELDFLAG_NUMBER)) == FIELDFLAG_BITFIELD)
|
|
#define f_is_blob(x) (((x) & (FIELDFLAG_BLOB | FIELDFLAG_NUMBER)) == FIELDFLAG_BLOB)
|
|
#define f_is_geom(x) (((x) & (FIELDFLAG_GEOM | FIELDFLAG_NUMBER)) == FIELDFLAG_GEOM)
|
|
#define f_is_equ(x) ((x) & (1+2+FIELDFLAG_PACK+31*256))
|
|
#define f_settype(x) (((int) x) << FIELDFLAG_PACK_SHIFT)
|
|
#define f_maybe_null(x) (x & FIELDFLAG_MAYBE_NULL)
|
|
#define f_no_default(x) (x & FIELDFLAG_NO_DEFAULT)
|
|
#define f_bit_as_char(x) ((x) & FIELDFLAG_TREAT_BIT_AS_CHAR)
|