mariadb/mysys/tree.c
unknown 5a28c2caca Fixes and code cleanups after merge with 4.0.3
Warning handling and initial prepared statement handling (last not complete yet)
Changed a lot of functions that returned 0/1 to my_bool type.
GRANT handling now uses read/write locks instead of mutex
Change basic net functions to use THD instead of NET
(needed for 4.1 protocol)
Use my_sprintf instead of sprintf() + strlen()
Added alloc_query() to be able to chare query initialization code with
prepared statements.
Cleanup handling of SHOW COUNT(*) WARNINGS and SELECT LAST_INSERT_ID()

Note that the following test fails (will be fixed ASAP):
sub_select, union, rpl_rotate_logs and rpl_mystery22


BitKeeper/deleted/.del-README~3449730baf983117:
  Delete: mysql-test/t/README
BitKeeper/deleted/.del-sql_error.cc~2f1caca8d2485dbe:
  Delete: libmysqld/sql_error.cc
BitKeeper/deleted/.del-sql_prepare.cc~f703729793935ed6:
  Delete: libmysqld/sql_prepare.cc
Docs/manual.texi:
  Updated variable list
client/mysql.cc:
  Show warning count to user.
client/mysqltest.c:
  Add warnings to test results
configure.in:
  New shared library version number
include/errmsg.h:
  Indentation cleanup
include/mysql.h:
  Removed MYSQL_ERROR
  Indentaion cleanups
include/mysql_com.h:
  Changed functions to returns true/false to my_bool.
include/mysqld_error.h:
  New error messages
isam/pack_isam.c:
  Indentation change
libmysql/Makefile.am:
  Fix of wrong merge
libmysql/Makefile.shared:
  Indentation cleanup
libmysql/errmsg.c:
  Removed not used errors
libmysql/libmysql.c:
  Change functions to return 1 on error (not -1)
  Change type of functions that returns 0/1 to my_bool
  Lot of code optimizations.
  Lot of changes for prepared statements. This now handles sending of binary data to server.
  Receving of binary data is not yet done (will have to wait until server code for this is ready)
  mysql_warning_count and mysql_warnings() implemented.
libmysql/libmysql.def:
  Added mysql_warnings and mysql_warning_count
libmysql/manager.c:
  Fixed wrong testing of result from my_connect()
libmysqld/lib_sql.cc:
  Removed global variable THR_NET
  Change basic net functions to use THD instead of NET
  GRANT handling now uses read/write locks instead of mutex
libmysqld/libmysqld.c:
  Changed functions to be my_bool
myisam/ft_boolean_search.c:
  Trivial code cleanup
myisam/ft_stopwords.c:
  Trivial code cleanup
myisam/mi_check.c:
  Update to 4.1 structures
myisam/myisampack.c:
  Trivial code cleanup
myisam/rt_key.c:
  Code cleanup
myisam/rt_test.c:
  Code cleanup
  Removed compiler warnings
myisam/sp_key.c:
  Indentation changes
myisam/sp_test.c:
  Removed compiler warnings
mysql-test/README:
  Updated to reflect the new --external flag.
mysql-test/mysql-test-run.sh:
  --local (start new server) is now default.
  Use --external to test against external server.
mysql-test/r/rollback.result:
  Updated for 4.1 warnings
mysql-test/r/rpl_log.result:
  Update for 4.1
mysql-test/t/rollback.test:
  Updated for 4.1 warnings
mysql-test/t/rpl_log_pos.test:
  Portability fix
mysys/hash.c:
  Indentation change
mysys/my_error.c:
  Indentation change
mysys/tree.c:
  Updated file description
sql/field.cc:
  Fixed bugs introduced by merge
  Use my_sprintf instead of sprintf() + strlen()
sql/field.h:
  Add CHARSET_INFO to field structure
sql/gstream.h:
  Indentation changes.
  Added GPL copyright header
sql/ha_innodb.cc:
  Updated parameters for net functions.
sql/item.cc:
  Updates of Item_param
  Indentation changes
sql/item.h:
  Removed size_of() function from item.
sql/item_func.cc:
  Update function usage for 4.1
  Added get_system_var()
sql/item_func.h:
  Indentation change
sql/item_strfunc.cc:
  Removed not needed inclusion of gstream.h
  Update to use system variables (from 4.0)
sql/item_sum.h:
  Removed size_of() functions from item.
sql/item_timefunc.cc:
  Change sprintf() + strlen() -> my_sprintf()
  Added length parameter to ->append()
sql/item_timefunc.h:
  Removed size_of() functions from item.
sql/item_uniq.h:
  Removed size_of() functions from item.
sql/lex.h:
  Removed SQL_ERROR_COUNT variable
sql/log.cc:
  Change sprintf() + strlen() -> my_sprintf()
sql/log_event.cc:
  Change sprintf() + strlen() -> my_sprintf()
sql/mini_client.cc:
  Added check that one always specifies a length to mc_mysql_query()
sql/mysql_priv.h:
  New prototypes
  Change of NET -> THD parameter for net functions.
sql/mysqld.cc:
  New startup options:  'max_prepared_statements', 'max_error_count'
  Updated usage of net functions.
sql/net_pkg.cc:
  Change basic net functions to use THD instead of NET
  (needed to be able to handle 4.0 and 4.1 protocols)
  Lots of function comments
sql/net_serv.cc:
  Change int return values -> my_bool
  Updated net_write_command() to take an extra header block to be added to the packet.
  (This made the prepared statement code much nicer and more efficient)
sql/repl_failsafe.cc:
  Update net functions to use THD instead of NET
sql/set_var.cc:
  Added @@error_count and @@warning_count variables.
  Updated to 4.1 function usage
sql/set_var.h:
  Added @@error_count and @@warning_count variables.
sql/share/czech/errmsg.txt:
  Removed Warning: from warning error messages.
sql/share/english/errmsg.txt:
  Removed Warning: from warning error messages.
sql/share/greek/errmsg.txt:
  Removed Warning: from warning error messages.
sql/share/hungarian/errmsg.txt:
  Removed Warning: from warning error messages.
sql/share/japanese/errmsg.txt:
  Removed Warning: from warning error messages.
sql/share/korean/errmsg.txt:
  Removed Warning: from warning error messages.
sql/share/norwegian-ny/errmsg.txt:
  Removed Warning: from warning error messages.
sql/share/norwegian/errmsg.txt:
  Removed Warning: from warning error messages.
sql/share/polish/errmsg.txt:
  Removed Warning: from warning error messages.
sql/share/romanian/errmsg.txt:
  Removed Warning: from warning error messages.
sql/share/slovak/errmsg.txt:
  Removed Warning: from warning error messages.
sql/share/swedish/errmsg.txt:
  Removed Warning: from warning error messages.
sql/slave.cc:
  Change basic net functions to use THD instead of NET
  skip_load_data_file recoded to fit new client/server protocol
sql/spatial.h:
  Added copyright header
  Indentation cleanups
sql/sql_acl.cc:
  Change basic net functions to use THD instead of NET
  GRANT handling now uses read/write locks instead of mutex
sql/sql_analyse.cc:
  Change basic net functions to use THD instead of NET
  sprintf() + strlen() -> my_sprintf()
sql/sql_base.cc:
  More DBUG statements
sql/sql_class.cc:
  Change basic net functions to use THD instead of NET
  warning and prepared statement handling
sql/sql_class.h:
  Change basic net functions to use THD instead of NET
  warning and prepared statement handling
sql/sql_db.cc:
  Code cleanup & optimization.
sql/sql_delete.cc:
  Change basic net functions to use THD instead of NET
sql/sql_derived.cc:
  Change basic net functions to use THD instead of NET
sql/sql_do.cc:
  Change basic net functions to use THD instead of NET
sql/sql_error.cc:
  Big rewrite of error handling.
sql/sql_handler.cc:
  Change basic net functions to use THD instead of NET
sql/sql_insert.cc:
  Change basic net functions to use THD instead of NET
sql/sql_lex.cc:
  Change basic net functions to use THD instead of NET
sql/sql_lex.h:
  Added param_count to st_select_lex_node
sql/sql_list.h:
  Removed not needed error list.
sql/sql_load.cc:
  Change basic net functions to use THD instead of NET
sql/sql_parse.cc:
  Change basic net functions to use THD instead of NET
  Added alloc_query() to be able to chare query initialization code with
  prepared statements.
  Update of warning handling.
  Added create_select_for_variable() (for SHOW COUNT(*) WARNINGS)
sql/sql_prepare.cc:
  Initial prepared statement handling
sql/sql_rename.cc:
  Change basic net functions to use THD instead of NET
sql/sql_repl.cc:
  Change basic net functions to use THD instead of NET
sql/sql_select.cc:
  Small code cleanups
  Added missing initialization of error that caused some queries that returned an empty result set to fail
sql/sql_select.h:
  Ensure that JOIN.error is properly initialized
sql/sql_show.cc:
  Change basic net functions to use THD instead of NET
  A lot of optimization
sql/sql_table.cc:
  Change basic net functions to use THD instead of NET
  Indentaion cleanup
sql/sql_udf.cc:
  Change basic net functions to use THD instead of NET
sql/sql_union.cc:
  Change basic net functions to use THD instead of NET
sql/sql_update.cc:
  Change basic net functions to use THD instead of NET
sql/sql_yacc.yy:
  Change basic net functions to use THD instead of NET
  Cleanup handling of SHOW COUNT(*) WARNINGS and SELECT LAST_INSERT_ID()
sql/structs.h:
  Moved structures to files where they was used
sql/table.cc:
  Don't accept empty database names
sql/uniques.cc:
  Indentation cleanup
sql/unireg.cc:
  Change basic net functions to use THD instead of NET
sql/unireg.h:
  Added defaults for warnings and prepared statements
strings/ctype-simple.c:
  optimization
tests/client_test.c:
  Fixed wrong paramaters to printf()
2002-10-02 13:33:08 +03:00

726 lines
18 KiB
C

/* Copyright (C) 2000 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; either version 2 of the License, or
(at your option) any later version.
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 */
/*
Code for handling red-black (balanced) binary trees.
key in tree is allocated accrding to following:
1) If size < 0 then tree will not allocate keys and only a pointer to
each key is saved in tree.
compare and search functions uses and returns key-pointer
2) If size == 0 then there are two options:
- key_size != 0 to tree_insert: The key will be stored in the tree.
- key_size == 0 to tree_insert: A pointer to the key is stored.
compare and search functions uses and returns key-pointer.
3) if key_size is given to init_tree then each node will continue the
key and calls to insert_key may increase length of key.
if key_size > sizeof(pointer) and key_size is a multiple of 8 (double
allign) then key will be put on a 8 alligned adress. Else
the key will be on adress (element+1). This is transparent for user
compare and search functions uses a pointer to given key-argument.
- If you use a free function for tree-elements and you are freeing
the element itself, you should use key_size = 0 to init_tree and
tree_search
The actual key in TREE_ELEMENT is saved as a pointer or after the
TREE_ELEMENT struct.
If one uses only pointers in tree one can use tree_set_pointer() to
change address of data.
Implemented by monty.
*/
#include "mysys_priv.h"
#include <m_string.h>
#include <my_tree.h>
#include "my_base.h"
#define BLACK 1
#define RED 0
#define DEFAULT_ALLOC_SIZE (8192-MALLOC_OVERHEAD)
static void delete_tree_element(TREE *,TREE_ELEMENT *);
static int tree_walk_left_root_right(TREE *,TREE_ELEMENT *,
tree_walk_action,void *);
static int tree_walk_right_root_left(TREE *,TREE_ELEMENT *,
tree_walk_action,void *);
static void left_rotate(TREE_ELEMENT **parent,TREE_ELEMENT *leaf);
static void right_rotate(TREE_ELEMENT **parent, TREE_ELEMENT *leaf);
static void rb_insert(TREE *tree,TREE_ELEMENT ***parent,
TREE_ELEMENT *leaf);
static void rb_delete_fixup(TREE *tree,TREE_ELEMENT ***parent);
/* The actuall code for handling binary trees */
#ifndef DBUG_OFF
static int test_rb_tree(TREE_ELEMENT *element);
#endif
void init_tree(TREE *tree, uint default_alloc_size, uint memory_limit,
int size, qsort_cmp2 compare, my_bool with_delete,
tree_element_free free_element, void *custom_arg)
{
DBUG_ENTER("init_tree");
DBUG_PRINT("enter",("tree: %lx size: %d",tree,size));
if (!default_alloc_size)
default_alloc_size= DEFAULT_ALLOC_SIZE;
bzero((gptr) &tree->null_element,sizeof(tree->null_element));
tree->root= &tree->null_element;
tree->compare=compare;
tree->size_of_element=size > 0 ? (uint) size : 0;
tree->memory_limit=memory_limit;
tree->free=free_element;
tree->allocated=0;
tree->elements_in_tree=0;
tree->custom_arg = custom_arg;
tree->null_element.colour=BLACK;
tree->null_element.left=tree->null_element.right=0;
tree->flag= 0;
if (!free_element && size >= 0 &&
((uint) size <= sizeof(void*) || ((uint) size & (sizeof(void*)-1))))
{
tree->offset_to_key=sizeof(TREE_ELEMENT); /* Put key after element */
/* Fix allocation size so that we don't lose any memory */
default_alloc_size/=(sizeof(TREE_ELEMENT)+size);
if (!default_alloc_size)
default_alloc_size=1;
default_alloc_size*=(sizeof(TREE_ELEMENT)+size);
}
else
{
tree->offset_to_key=0; /* use key through pointer */
tree->size_of_element+=sizeof(void*);
}
if (!(tree->with_delete=with_delete))
{
init_alloc_root(&tree->mem_root, default_alloc_size,0);
tree->mem_root.min_malloc=(sizeof(TREE_ELEMENT)+tree->size_of_element);
}
DBUG_VOID_RETURN;
}
static void free_tree(TREE *tree, myf free_flags)
{
DBUG_ENTER("free_tree");
DBUG_PRINT("enter",("tree: %lx",tree));
if (tree->root) /* If initialized */
{
if (tree->with_delete)
delete_tree_element(tree,tree->root);
else
{
if (tree->free)
{
if (tree->memory_limit)
(*tree->free)(NULL, free_init, tree->custom_arg);
delete_tree_element(tree,tree->root);
if (tree->memory_limit)
(*tree->free)(NULL, free_end, tree->custom_arg);
}
free_root(&tree->mem_root, free_flags);
}
}
tree->root= &tree->null_element;
tree->elements_in_tree=0;
tree->allocated=0;
DBUG_VOID_RETURN;
}
void delete_tree(TREE* tree)
{
free_tree(tree, MYF(0)); /* my_free() mem_root if applicable */
}
void reset_tree(TREE* tree)
{
free_tree(tree, MYF(MY_MARK_BLOCKS_FREE));
/* do not my_free() mem_root if applicable, just mark blocks as free */
}
static void delete_tree_element(TREE *tree, TREE_ELEMENT *element)
{
if (element != &tree->null_element)
{
delete_tree_element(tree,element->left);
if (tree->free)
(*tree->free)(ELEMENT_KEY(tree,element), free_free, tree->custom_arg);
delete_tree_element(tree,element->right);
if (tree->with_delete)
my_free((char*) element,MYF(0));
}
}
/* Code for insert, search and delete of elements */
/* parent[0] = & parent[-1][0]->left ||
parent[0] = & parent[-1][0]->right */
TREE_ELEMENT *tree_insert(TREE *tree, void *key, uint key_size,
void* custom_arg)
{
int cmp;
TREE_ELEMENT *element,***parent;
parent= tree->parents;
*parent = &tree->root; element= tree->root;
for (;;)
{
if (element == &tree->null_element ||
(cmp = (*tree->compare)(custom_arg, ELEMENT_KEY(tree,element),
key)) == 0)
break;
if (cmp < 0)
{
*++parent= &element->right; element= element->right;
}
else
{
*++parent = &element->left; element= element->left;
}
}
if (element == &tree->null_element)
{
uint alloc_size=sizeof(TREE_ELEMENT)+key_size+tree->size_of_element;
tree->allocated+=alloc_size;
if (tree->memory_limit && tree->elements_in_tree
&& tree->allocated > tree->memory_limit)
{
reset_tree(tree);
return tree_insert(tree, key, key_size, custom_arg);
}
key_size+=tree->size_of_element;
if (tree->with_delete)
element=(TREE_ELEMENT *) my_malloc(alloc_size, MYF(MY_WME));
else
element=(TREE_ELEMENT *)
alloc_root(&tree->mem_root,alloc_size);
if (!element)
return(NULL);
**parent=element;
element->left=element->right= &tree->null_element;
if (!tree->offset_to_key)
{
if (key_size == sizeof(void*)) /* no length, save pointer */
*((void**) (element+1))=key;
else
{
*((void**) (element+1))= (void*) ((void **) (element+1)+1);
memcpy((byte*) *((void **) (element+1)),key,
(size_t) (key_size-sizeof(void*)));
}
}
else
memcpy((byte*) element+tree->offset_to_key,key,(size_t) key_size);
element->count=1; /* May give warning in purify */
tree->elements_in_tree++;
rb_insert(tree,parent,element); /* rebalance tree */
}
else
{
if (tree->flag & TREE_NO_DUPS)
return(NULL);
element->count++;
}
DBUG_EXECUTE("check_tree", test_rb_tree(tree->root););
return element;
}
int tree_delete(TREE *tree, void *key, void *custom_arg)
{
int cmp,remove_colour;
TREE_ELEMENT *element,***parent, ***org_parent, *nod;
if (!tree->with_delete)
return 1; /* not allowed */
parent= tree->parents;
*parent= &tree->root; element= tree->root;
for (;;)
{
if (element == &tree->null_element)
return 1; /* Was not in tree */
if ((cmp = (*tree->compare)(custom_arg, ELEMENT_KEY(tree,element),
key)) == 0)
break;
if (cmp < 0)
{
*++parent= &element->right; element= element->right;
}
else
{
*++parent = &element->left; element= element->left;
}
}
if (element->left == &tree->null_element)
{
(**parent)=element->right;
remove_colour= element->colour;
}
else if (element->right == &tree->null_element)
{
(**parent)=element->left;
remove_colour= element->colour;
}
else
{
org_parent= parent;
*++parent= &element->right; nod= element->right;
while (nod->left != &tree->null_element)
{
*++parent= &nod->left; nod= nod->left;
}
(**parent)=nod->right; /* unlink nod from tree */
remove_colour= nod->colour;
org_parent[0][0]=nod; /* put y in place of element */
org_parent[1]= &nod->right;
nod->left=element->left;
nod->right=element->right;
nod->colour=element->colour;
}
if (remove_colour == BLACK)
rb_delete_fixup(tree,parent);
if (tree->free)
(*tree->free)(ELEMENT_KEY(tree,element), free_free, tree->custom_arg);
my_free((gptr) element,MYF(0));
tree->elements_in_tree--;
return 0;
}
void *tree_search(TREE *tree, void *key, void *custom_arg)
{
int cmp;
TREE_ELEMENT *element=tree->root;
for (;;)
{
if (element == &tree->null_element)
return (void*) 0;
if ((cmp = (*tree->compare)(custom_arg, ELEMENT_KEY(tree,element),
key)) == 0)
return ELEMENT_KEY(tree,element);
if (cmp < 0)
element=element->right;
else
element=element->left;
}
}
void *tree_search_key(TREE *tree, const void *key,
TREE_ELEMENT **parents, TREE_ELEMENT ***last_pos,
enum ha_rkey_function flag, void *custom_arg)
{
int cmp;
TREE_ELEMENT *element = tree->root;
TREE_ELEMENT **last_left_step_parent = NULL;
TREE_ELEMENT **last_equal_element = NULL;
/*
TODO: handle HA_READ_KEY_OR_PREV, HA_READ_BEFORE_KEY, HA_READ_PREFIX,
HA_READ_PREFIX_LAST flags if needed.
*/
*parents = &tree->null_element;
while (element != &tree->null_element)
{
*++parents = element;
if ((cmp = (*tree->compare)(custom_arg, ELEMENT_KEY(tree, element),
key)) == 0)
{
switch (flag) {
case HA_READ_KEY_EXACT:
case HA_READ_KEY_OR_NEXT:
last_equal_element = parents;
cmp = 1;
break;
case HA_READ_AFTER_KEY:
cmp = -1;
break;
default:
return NULL;
}
}
if (cmp < 0) /* element < key */
{
element = element->right;
}
else
{
last_left_step_parent = parents;
element = element->left;
}
}
switch (flag) {
case HA_READ_KEY_EXACT:
*last_pos = last_equal_element;
break;
case HA_READ_KEY_OR_NEXT:
*last_pos = last_equal_element ? last_equal_element : last_left_step_parent;
break;
case HA_READ_AFTER_KEY:
*last_pos = last_left_step_parent;
break;
default:
return NULL;
}
return *last_pos ? ELEMENT_KEY(tree, **last_pos) : NULL;
}
/*
Search first (the most left) or last (the most right) tree element
*/
void *tree_search_edge(TREE *tree, TREE_ELEMENT **parents,
TREE_ELEMENT ***last_pos, int child_offs)
{
TREE_ELEMENT *element= tree->root;
*parents= &tree->null_element;
while (element != &tree->null_element)
{
*++parents= element;
element= ELEMENT_CHILD(element, child_offs);
}
*last_pos= parents;
return **last_pos != &tree->null_element ?
ELEMENT_KEY(tree, **last_pos) : NULL;
}
void *tree_search_next(TREE *tree, TREE_ELEMENT ***last_pos, int l_offs,
int r_offs)
{
TREE_ELEMENT *x= **last_pos;
if (ELEMENT_CHILD(x, r_offs) != &tree->null_element)
{
x= ELEMENT_CHILD(x, r_offs);
*++*last_pos= x;
while (ELEMENT_CHILD(x, l_offs) != &tree->null_element)
{
x= ELEMENT_CHILD(x, l_offs);
*++*last_pos= x;
}
return ELEMENT_KEY(tree, x);
}
else
{
TREE_ELEMENT *y= *--*last_pos;
while (y != &tree->null_element && x == ELEMENT_CHILD(y, r_offs))
{
x= y;
y= *--*last_pos;
}
return y == &tree->null_element ? NULL : ELEMENT_KEY(tree, y);
}
}
/*
Expected that tree is fully balanced
(each path from root to leaf has the same length)
*/
uint tree_record_pos(TREE *tree, const void *key,
enum ha_rkey_function flag, void *custom_arg)
{
int cmp;
TREE_ELEMENT *element= tree->root;
double left= 1;
double right= tree->elements_in_tree;
uint last_equal_pos= HA_POS_ERROR;
while (element != &tree->null_element)
{
if ((cmp= (*tree->compare)(custom_arg, ELEMENT_KEY(tree, element),
key)) == 0)
{
switch (flag) {
case HA_READ_KEY_EXACT:
last_equal_pos= (left + right) / 2;
cmp= 1;
break;
case HA_READ_BEFORE_KEY:
cmp= 1;
break;
case HA_READ_AFTER_KEY:
cmp= -1;
break;
default:
return HA_POS_ERROR;
}
}
if (cmp < 0) /* element < key */
{
element= element->right;
left= (left + right) / 2;
}
else
{
element= element->left;
right= (left + right) / 2;
}
}
switch (flag) {
case HA_READ_KEY_EXACT:
return last_equal_pos;
case HA_READ_BEFORE_KEY:
return (uint) right;
case HA_READ_AFTER_KEY:
return (uint) left;
default:
return HA_POS_ERROR;
}
}
int tree_walk(TREE *tree, tree_walk_action action, void *argument, TREE_WALK visit)
{
switch (visit) {
case left_root_right:
return tree_walk_left_root_right(tree,tree->root,action,argument);
case right_root_left:
return tree_walk_right_root_left(tree,tree->root,action,argument);
}
return 0; /* Keep gcc happy */
}
static int tree_walk_left_root_right(TREE *tree, TREE_ELEMENT *element, tree_walk_action action, void *argument)
{
int error;
if (element->left) /* Not null_element */
{
if ((error=tree_walk_left_root_right(tree,element->left,action,
argument)) == 0 &&
(error=(*action)(ELEMENT_KEY(tree,element),
(element_count) element->count,
argument)) == 0)
error=tree_walk_left_root_right(tree,element->right,action,argument);
return error;
}
return 0;
}
static int tree_walk_right_root_left(TREE *tree, TREE_ELEMENT *element, tree_walk_action action, void *argument)
{
int error;
if (element->right) /* Not null_element */
{
if ((error=tree_walk_right_root_left(tree,element->right,action,
argument)) == 0 &&
(error=(*action)(ELEMENT_KEY(tree,element),
(element_count) element->count,
argument)) == 0)
error=tree_walk_right_root_left(tree,element->left,action,argument);
return error;
}
return 0;
}
/* Functions to fix up the tree after insert and delete */
static void left_rotate(TREE_ELEMENT **parent, TREE_ELEMENT *leaf)
{
TREE_ELEMENT *y;
y=leaf->right;
leaf->right=y->left;
parent[0]=y;
y->left=leaf;
}
static void right_rotate(TREE_ELEMENT **parent, TREE_ELEMENT *leaf)
{
TREE_ELEMENT *x;
x=leaf->left;
leaf->left=x->right;
parent[0]=x;
x->right=leaf;
}
static void rb_insert(TREE *tree, TREE_ELEMENT ***parent, TREE_ELEMENT *leaf)
{
TREE_ELEMENT *y,*par,*par2;
leaf->colour=RED;
while (leaf != tree->root && (par=parent[-1][0])->colour == RED)
{
if (par == (par2=parent[-2][0])->left)
{
y= par2->right;
if (y->colour == RED)
{
par->colour=BLACK;
y->colour=BLACK;
leaf=par2;
parent-=2;
leaf->colour=RED; /* And the loop continues */
}
else
{
if (leaf == par->right)
{
left_rotate(parent[-1],par);
par=leaf; /* leaf is now parent to old leaf */
}
par->colour=BLACK;
par2->colour=RED;
right_rotate(parent[-2],par2);
break;
}
}
else
{
y= par2->left;
if (y->colour == RED)
{
par->colour=BLACK;
y->colour=BLACK;
leaf=par2;
parent-=2;
leaf->colour=RED; /* And the loop continues */
}
else
{
if (leaf == par->left)
{
right_rotate(parent[-1],par);
par=leaf;
}
par->colour=BLACK;
par2->colour=RED;
left_rotate(parent[-2],par2);
break;
}
}
}
tree->root->colour=BLACK;
}
static void rb_delete_fixup(TREE *tree, TREE_ELEMENT ***parent)
{
TREE_ELEMENT *x,*w,*par;
x= **parent;
while (x != tree->root && x->colour == BLACK)
{
if (x == (par=parent[-1][0])->left)
{
w=par->right;
if (w->colour == RED)
{
w->colour=BLACK;
par->colour=RED;
left_rotate(parent[-1],par);
parent[0]= &w->left;
*++parent= &par->left;
w=par->right;
}
if (w->left->colour == BLACK && w->right->colour == BLACK)
{
w->colour=RED;
x=par;
parent--;
}
else
{
if (w->right->colour == BLACK)
{
w->left->colour=BLACK;
w->colour=RED;
right_rotate(&par->right,w);
w=par->right;
}
w->colour=par->colour;
par->colour=BLACK;
w->right->colour=BLACK;
left_rotate(parent[-1],par);
x=tree->root;
break;
}
}
else
{
w=par->left;
if (w->colour == RED)
{
w->colour=BLACK;
par->colour=RED;
right_rotate(parent[-1],par);
parent[0]= &w->right;
*++parent= &par->right;
w=par->left;
}
if (w->right->colour == BLACK && w->left->colour == BLACK)
{
w->colour=RED;
x=par;
parent--;
}
else
{
if (w->left->colour == BLACK)
{
w->right->colour=BLACK;
w->colour=RED;
left_rotate(&par->left,w);
w=par->left;
}
w->colour=par->colour;
par->colour=BLACK;
w->left->colour=BLACK;
right_rotate(parent[-1],par);
x=tree->root;
break;
}
}
}
x->colour=BLACK;
}
#ifndef DBUG_OFF
/* Test that the proporties for a red-black tree holds */
static int test_rb_tree(TREE_ELEMENT *element)
{
int count_l,count_r;
if (!element->left)
return 0; /* Found end of tree */
if (element->colour == RED &&
(element->left->colour == RED || element->right->colour == RED))
{
printf("Wrong tree: Found two red in a row\n");
return -1;
}
count_l=test_rb_tree(element->left);
count_r=test_rb_tree(element->right);
if (count_l >= 0 && count_r >= 0)
{
if (count_l == count_r)
return count_l+(element->colour == BLACK);
printf("Wrong tree: Incorrect black-count: %d - %d\n",count_l,count_r);
}
return -1;
}
#endif