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bt_put.c revision 1.1.1.2
      1      1.1  cgd /*-
      2  1.1.1.1  cgd  * Copyright (c) 1990, 1993, 1994
      3      1.1  cgd  *	The Regents of the University of California.  All rights reserved.
      4      1.1  cgd  *
      5      1.1  cgd  * This code is derived from software contributed to Berkeley by
      6      1.1  cgd  * Mike Olson.
      7      1.1  cgd  *
      8      1.1  cgd  * Redistribution and use in source and binary forms, with or without
      9      1.1  cgd  * modification, are permitted provided that the following conditions
     10      1.1  cgd  * are met:
     11      1.1  cgd  * 1. Redistributions of source code must retain the above copyright
     12      1.1  cgd  *    notice, this list of conditions and the following disclaimer.
     13      1.1  cgd  * 2. Redistributions in binary form must reproduce the above copyright
     14      1.1  cgd  *    notice, this list of conditions and the following disclaimer in the
     15      1.1  cgd  *    documentation and/or other materials provided with the distribution.
     16      1.1  cgd  * 3. All advertising materials mentioning features or use of this software
     17      1.1  cgd  *    must display the following acknowledgement:
     18      1.1  cgd  *	This product includes software developed by the University of
     19      1.1  cgd  *	California, Berkeley and its contributors.
     20      1.1  cgd  * 4. Neither the name of the University nor the names of its contributors
     21      1.1  cgd  *    may be used to endorse or promote products derived from this software
     22      1.1  cgd  *    without specific prior written permission.
     23      1.1  cgd  *
     24      1.1  cgd  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     25      1.1  cgd  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     26      1.1  cgd  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     27      1.1  cgd  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     28      1.1  cgd  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     29      1.1  cgd  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     30      1.1  cgd  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     31      1.1  cgd  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     32      1.1  cgd  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     33      1.1  cgd  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     34      1.1  cgd  * SUCH DAMAGE.
     35      1.1  cgd  */
     36      1.1  cgd 
     37      1.1  cgd #if defined(LIBC_SCCS) && !defined(lint)
     38  1.1.1.2  cgd static char sccsid[] = "@(#)bt_put.c	8.8 (Berkeley) 7/26/94";
     39      1.1  cgd #endif /* LIBC_SCCS and not lint */
     40      1.1  cgd 
     41      1.1  cgd #include <sys/types.h>
     42      1.1  cgd 
     43      1.1  cgd #include <errno.h>
     44      1.1  cgd #include <stdio.h>
     45      1.1  cgd #include <stdlib.h>
     46      1.1  cgd #include <string.h>
     47      1.1  cgd 
     48      1.1  cgd #include <db.h>
     49      1.1  cgd #include "btree.h"
     50      1.1  cgd 
     51      1.1  cgd static EPG *bt_fast __P((BTREE *, const DBT *, const DBT *, int *));
     52      1.1  cgd 
     53      1.1  cgd /*
     54      1.1  cgd  * __BT_PUT -- Add a btree item to the tree.
     55      1.1  cgd  *
     56      1.1  cgd  * Parameters:
     57      1.1  cgd  *	dbp:	pointer to access method
     58      1.1  cgd  *	key:	key
     59      1.1  cgd  *	data:	data
     60      1.1  cgd  *	flag:	R_NOOVERWRITE
     61      1.1  cgd  *
     62      1.1  cgd  * Returns:
     63      1.1  cgd  *	RET_ERROR, RET_SUCCESS and RET_SPECIAL if the key is already in the
     64      1.1  cgd  *	tree and R_NOOVERWRITE specified.
     65      1.1  cgd  */
     66      1.1  cgd int
     67      1.1  cgd __bt_put(dbp, key, data, flags)
     68      1.1  cgd 	const DB *dbp;
     69      1.1  cgd 	DBT *key;
     70      1.1  cgd 	const DBT *data;
     71      1.1  cgd 	u_int flags;
     72      1.1  cgd {
     73      1.1  cgd 	BTREE *t;
     74      1.1  cgd 	DBT tkey, tdata;
     75      1.1  cgd 	EPG *e;
     76      1.1  cgd 	PAGE *h;
     77      1.1  cgd 	indx_t index, nxtindex;
     78      1.1  cgd 	pgno_t pg;
     79  1.1.1.1  cgd 	u_int32_t nbytes;
     80      1.1  cgd 	int dflags, exact, status;
     81      1.1  cgd 	char *dest, db[NOVFLSIZE], kb[NOVFLSIZE];
     82      1.1  cgd 
     83      1.1  cgd 	t = dbp->internal;
     84      1.1  cgd 
     85  1.1.1.1  cgd 	/* Toss any page pinned across calls. */
     86  1.1.1.1  cgd 	if (t->bt_pinned != NULL) {
     87  1.1.1.1  cgd 		mpool_put(t->bt_mp, t->bt_pinned, 0);
     88  1.1.1.1  cgd 		t->bt_pinned = NULL;
     89  1.1.1.1  cgd 	}
     90  1.1.1.1  cgd 
     91  1.1.1.2  cgd 	/* Check for change to a read-only tree. */
     92  1.1.1.2  cgd 	if (F_ISSET(t, B_RDONLY)) {
     93  1.1.1.2  cgd 		errno = EPERM;
     94  1.1.1.2  cgd 		return (RET_ERROR);
     95  1.1.1.2  cgd 	}
     96  1.1.1.2  cgd 
     97      1.1  cgd 	switch (flags) {
     98      1.1  cgd 	case 0:
     99      1.1  cgd 	case R_NOOVERWRITE:
    100      1.1  cgd 		break;
    101  1.1.1.2  cgd 	case R_CURSOR:
    102  1.1.1.2  cgd 		/*
    103  1.1.1.2  cgd 		 * If flags is R_CURSOR, put the cursor.  Must already
    104  1.1.1.2  cgd 		 * have started a scan and not have already deleted it.
    105  1.1.1.2  cgd 		 */
    106  1.1.1.2  cgd 		if (F_ISSET(&t->bt_cursor, CURS_INIT) &&
    107  1.1.1.2  cgd 		    !F_ISSET(&t->bt_cursor,
    108  1.1.1.2  cgd 		        CURS_ACQUIRE | CURS_AFTER | CURS_BEFORE))
    109  1.1.1.2  cgd 			break;
    110  1.1.1.2  cgd 		/* FALLTHROUGH */
    111      1.1  cgd 	default:
    112  1.1.1.2  cgd 		errno = EINVAL;
    113      1.1  cgd 		return (RET_ERROR);
    114      1.1  cgd 	}
    115      1.1  cgd 
    116      1.1  cgd 	/*
    117  1.1.1.2  cgd 	 * If the key/data pair won't fit on a page, store it on overflow
    118  1.1.1.2  cgd 	 * pages.  Only put the key on the overflow page if the pair are
    119  1.1.1.2  cgd 	 * still too big after moving the data to an overflow page.
    120      1.1  cgd 	 *
    121      1.1  cgd 	 * XXX
    122  1.1.1.2  cgd 	 * If the insert fails later on, the overflow pages aren't recovered.
    123      1.1  cgd 	 */
    124      1.1  cgd 	dflags = 0;
    125      1.1  cgd 	if (key->size + data->size > t->bt_ovflsize) {
    126      1.1  cgd 		if (key->size > t->bt_ovflsize) {
    127      1.1  cgd storekey:		if (__ovfl_put(t, key, &pg) == RET_ERROR)
    128      1.1  cgd 				return (RET_ERROR);
    129      1.1  cgd 			tkey.data = kb;
    130      1.1  cgd 			tkey.size = NOVFLSIZE;
    131      1.1  cgd 			memmove(kb, &pg, sizeof(pgno_t));
    132      1.1  cgd 			memmove(kb + sizeof(pgno_t),
    133  1.1.1.1  cgd 			    &key->size, sizeof(u_int32_t));
    134      1.1  cgd 			dflags |= P_BIGKEY;
    135      1.1  cgd 			key = &tkey;
    136      1.1  cgd 		}
    137      1.1  cgd 		if (key->size + data->size > t->bt_ovflsize) {
    138      1.1  cgd 			if (__ovfl_put(t, data, &pg) == RET_ERROR)
    139      1.1  cgd 				return (RET_ERROR);
    140      1.1  cgd 			tdata.data = db;
    141      1.1  cgd 			tdata.size = NOVFLSIZE;
    142      1.1  cgd 			memmove(db, &pg, sizeof(pgno_t));
    143      1.1  cgd 			memmove(db + sizeof(pgno_t),
    144  1.1.1.1  cgd 			    &data->size, sizeof(u_int32_t));
    145      1.1  cgd 			dflags |= P_BIGDATA;
    146      1.1  cgd 			data = &tdata;
    147      1.1  cgd 		}
    148      1.1  cgd 		if (key->size + data->size > t->bt_ovflsize)
    149      1.1  cgd 			goto storekey;
    150      1.1  cgd 	}
    151      1.1  cgd 
    152      1.1  cgd 	/* Replace the cursor. */
    153      1.1  cgd 	if (flags == R_CURSOR) {
    154  1.1.1.2  cgd 		if ((h = mpool_get(t->bt_mp, t->bt_cursor.pg.pgno, 0)) == NULL)
    155      1.1  cgd 			return (RET_ERROR);
    156  1.1.1.2  cgd 		index = t->bt_cursor.pg.index;
    157      1.1  cgd 		goto delete;
    158      1.1  cgd 	}
    159      1.1  cgd 
    160      1.1  cgd 	/*
    161  1.1.1.2  cgd 	 * Find the key to delete, or, the location at which to insert.
    162  1.1.1.2  cgd 	 * Bt_fast and __bt_search both pin the returned page.
    163      1.1  cgd 	 */
    164      1.1  cgd 	if (t->bt_order == NOT || (e = bt_fast(t, key, data, &exact)) == NULL)
    165      1.1  cgd 		if ((e = __bt_search(t, key, &exact)) == NULL)
    166      1.1  cgd 			return (RET_ERROR);
    167      1.1  cgd 	h = e->page;
    168      1.1  cgd 	index = e->index;
    169      1.1  cgd 
    170      1.1  cgd 	/*
    171  1.1.1.2  cgd 	 * Add the key/data pair to the tree.  If an identical key is already
    172  1.1.1.2  cgd 	 * in the tree, and R_NOOVERWRITE is set, an error is returned.  If
    173  1.1.1.2  cgd 	 * R_NOOVERWRITE is not set, the key is either added (if duplicates are
    174  1.1.1.2  cgd 	 * permitted) or an error is returned.
    175      1.1  cgd 	 */
    176      1.1  cgd 	switch (flags) {
    177      1.1  cgd 	case R_NOOVERWRITE:
    178      1.1  cgd 		if (!exact)
    179      1.1  cgd 			break;
    180      1.1  cgd 		mpool_put(t->bt_mp, h, 0);
    181      1.1  cgd 		return (RET_SPECIAL);
    182      1.1  cgd 	default:
    183  1.1.1.2  cgd 		if (!exact || !F_ISSET(t, B_NODUPS))
    184      1.1  cgd 			break;
    185  1.1.1.2  cgd 		/*
    186  1.1.1.2  cgd 		 * !!!
    187  1.1.1.2  cgd 		 * Note, the delete may empty the page, so we need to put a
    188  1.1.1.2  cgd 		 * new entry into the page immediately.
    189  1.1.1.2  cgd 		 */
    190  1.1.1.2  cgd delete:		if (__bt_dleaf(t, key, h, index) == RET_ERROR) {
    191      1.1  cgd 			mpool_put(t->bt_mp, h, 0);
    192      1.1  cgd 			return (RET_ERROR);
    193      1.1  cgd 		}
    194      1.1  cgd 		break;
    195      1.1  cgd 	}
    196      1.1  cgd 
    197      1.1  cgd 	/*
    198      1.1  cgd 	 * If not enough room, or the user has put a ceiling on the number of
    199      1.1  cgd 	 * keys permitted in the page, split the page.  The split code will
    200      1.1  cgd 	 * insert the key and data and unpin the current page.  If inserting
    201      1.1  cgd 	 * into the offset array, shift the pointers up.
    202      1.1  cgd 	 */
    203      1.1  cgd 	nbytes = NBLEAFDBT(key->size, data->size);
    204      1.1  cgd 	if (h->upper - h->lower < nbytes + sizeof(indx_t)) {
    205      1.1  cgd 		if ((status = __bt_split(t, h, key,
    206      1.1  cgd 		    data, dflags, nbytes, index)) != RET_SUCCESS)
    207      1.1  cgd 			return (status);
    208      1.1  cgd 		goto success;
    209      1.1  cgd 	}
    210      1.1  cgd 
    211      1.1  cgd 	if (index < (nxtindex = NEXTINDEX(h)))
    212      1.1  cgd 		memmove(h->linp + index + 1, h->linp + index,
    213      1.1  cgd 		    (nxtindex - index) * sizeof(indx_t));
    214      1.1  cgd 	h->lower += sizeof(indx_t);
    215      1.1  cgd 
    216      1.1  cgd 	h->linp[index] = h->upper -= nbytes;
    217      1.1  cgd 	dest = (char *)h + h->upper;
    218      1.1  cgd 	WR_BLEAF(dest, key, data, dflags);
    219      1.1  cgd 
    220  1.1.1.2  cgd 	/* If the cursor is on this page, adjust it as necessary. */
    221  1.1.1.2  cgd 	if (F_ISSET(&t->bt_cursor, CURS_INIT) &&
    222  1.1.1.2  cgd 	    !F_ISSET(&t->bt_cursor, CURS_ACQUIRE) &&
    223  1.1.1.2  cgd 	    t->bt_cursor.pg.pgno == h->pgno && t->bt_cursor.pg.index >= index)
    224  1.1.1.2  cgd 		++t->bt_cursor.pg.index;
    225  1.1.1.2  cgd 
    226      1.1  cgd 	if (t->bt_order == NOT)
    227      1.1  cgd 		if (h->nextpg == P_INVALID) {
    228      1.1  cgd 			if (index == NEXTINDEX(h) - 1) {
    229      1.1  cgd 				t->bt_order = FORWARD;
    230      1.1  cgd 				t->bt_last.index = index;
    231      1.1  cgd 				t->bt_last.pgno = h->pgno;
    232      1.1  cgd 			}
    233      1.1  cgd 		} else if (h->prevpg == P_INVALID) {
    234      1.1  cgd 			if (index == 0) {
    235      1.1  cgd 				t->bt_order = BACK;
    236      1.1  cgd 				t->bt_last.index = 0;
    237      1.1  cgd 				t->bt_last.pgno = h->pgno;
    238      1.1  cgd 			}
    239      1.1  cgd 		}
    240      1.1  cgd 
    241      1.1  cgd 	mpool_put(t->bt_mp, h, MPOOL_DIRTY);
    242      1.1  cgd 
    243      1.1  cgd success:
    244  1.1.1.2  cgd 	if (flags == R_SETCURSOR)
    245  1.1.1.2  cgd 		__bt_setcur(t, e->page->pgno, e->index);
    246  1.1.1.2  cgd 
    247  1.1.1.2  cgd 	F_SET(t, B_MODIFIED);
    248      1.1  cgd 	return (RET_SUCCESS);
    249      1.1  cgd }
    250      1.1  cgd 
    251      1.1  cgd #ifdef STATISTICS
    252      1.1  cgd u_long bt_cache_hit, bt_cache_miss;
    253      1.1  cgd #endif
    254      1.1  cgd 
    255      1.1  cgd /*
    256      1.1  cgd  * BT_FAST -- Do a quick check for sorted data.
    257      1.1  cgd  *
    258      1.1  cgd  * Parameters:
    259      1.1  cgd  *	t:	tree
    260      1.1  cgd  *	key:	key to insert
    261      1.1  cgd  *
    262      1.1  cgd  * Returns:
    263      1.1  cgd  * 	EPG for new record or NULL if not found.
    264      1.1  cgd  */
    265      1.1  cgd static EPG *
    266      1.1  cgd bt_fast(t, key, data, exactp)
    267      1.1  cgd 	BTREE *t;
    268      1.1  cgd 	const DBT *key, *data;
    269      1.1  cgd 	int *exactp;
    270      1.1  cgd {
    271      1.1  cgd 	PAGE *h;
    272  1.1.1.1  cgd 	u_int32_t nbytes;
    273      1.1  cgd 	int cmp;
    274      1.1  cgd 
    275      1.1  cgd 	if ((h = mpool_get(t->bt_mp, t->bt_last.pgno, 0)) == NULL) {
    276      1.1  cgd 		t->bt_order = NOT;
    277      1.1  cgd 		return (NULL);
    278      1.1  cgd 	}
    279  1.1.1.1  cgd 	t->bt_cur.page = h;
    280  1.1.1.1  cgd 	t->bt_cur.index = t->bt_last.index;
    281      1.1  cgd 
    282      1.1  cgd 	/*
    283  1.1.1.2  cgd 	 * If won't fit in this page or have too many keys in this page,
    284  1.1.1.2  cgd 	 * have to search to get split stack.
    285      1.1  cgd 	 */
    286      1.1  cgd 	nbytes = NBLEAFDBT(key->size, data->size);
    287      1.1  cgd 	if (h->upper - h->lower < nbytes + sizeof(indx_t))
    288      1.1  cgd 		goto miss;
    289      1.1  cgd 
    290      1.1  cgd 	if (t->bt_order == FORWARD) {
    291  1.1.1.1  cgd 		if (t->bt_cur.page->nextpg != P_INVALID)
    292      1.1  cgd 			goto miss;
    293  1.1.1.1  cgd 		if (t->bt_cur.index != NEXTINDEX(h) - 1)
    294      1.1  cgd 			goto miss;
    295  1.1.1.1  cgd 		if ((cmp = __bt_cmp(t, key, &t->bt_cur)) < 0)
    296      1.1  cgd 			goto miss;
    297  1.1.1.1  cgd 		t->bt_last.index = cmp ? ++t->bt_cur.index : t->bt_cur.index;
    298      1.1  cgd 	} else {
    299  1.1.1.1  cgd 		if (t->bt_cur.page->prevpg != P_INVALID)
    300      1.1  cgd 			goto miss;
    301  1.1.1.1  cgd 		if (t->bt_cur.index != 0)
    302      1.1  cgd 			goto miss;
    303  1.1.1.1  cgd 		if ((cmp = __bt_cmp(t, key, &t->bt_cur)) > 0)
    304      1.1  cgd 			goto miss;
    305      1.1  cgd 		t->bt_last.index = 0;
    306      1.1  cgd 	}
    307      1.1  cgd 	*exactp = cmp == 0;
    308      1.1  cgd #ifdef STATISTICS
    309      1.1  cgd 	++bt_cache_hit;
    310      1.1  cgd #endif
    311  1.1.1.1  cgd 	return (&t->bt_cur);
    312      1.1  cgd 
    313      1.1  cgd miss:
    314      1.1  cgd #ifdef STATISTICS
    315      1.1  cgd 	++bt_cache_miss;
    316      1.1  cgd #endif
    317      1.1  cgd 	t->bt_order = NOT;
    318      1.1  cgd 	mpool_put(t->bt_mp, h, 0);
    319      1.1  cgd 	return (NULL);
    320      1.1  cgd }
    321