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392 lines
16 KiB
C
392 lines
16 KiB
C
/********************************************************************\
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* qofquery.h -- find objects that match a certain expression. *
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* *
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* This program is free software; you can redistribute it and/or *
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* modify it under the terms of the GNU General Public License as *
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* published by the Free Software Foundation; either version 2 of *
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* the License, or (at your option) any later version. *
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* *
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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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* *
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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, contact: *
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* *
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* Free Software Foundation Voice: +1-617-542-5942 *
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* 51 Franklin Street, Fifth Floor Fax: +1-617-542-2652 *
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* Boston, MA 02110-1301, USA gnu@gnu.org *
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* *
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\********************************************************************/
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/** @addtogroup Query
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BASIC QUERY API:
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With this API you can create arbitrary logical
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queries to find sets of arbitrary object. To make simple
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queries (1 term, such as a search for a parameter with one value),
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create the appropriate
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QueryTerm structure and stick it in a Query object using
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xaccInitQuery. The QueryTerm should be malloc'd but the Query object
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will handle freeing it. To make compound queries, make multiple
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simple queries and combine them using qof_query_merge() and the logical
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operations of your choice.
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SQL QUERY API:
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As an alternative to building queries one predicate at a time,
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you can use the SQL query interface. This interface will accept
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a string containing an SQL query, parse it, convert it into the
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core representation, and execute it.
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STRUCTURE OF A QUERY: A Query is a logical function of any number of
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QueryTerms. A QueryTerm consists of a C function pointer (the
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Predicate) and a PredicateData structure containing data passed to the
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predicate function. The PredicateData structure is a constant
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associated with the Term and is identical for every object that is
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tested.
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The terms of the Query may represent any logical function and are
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stored in canonical form, i.e. the function is expressed as a logical
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sum of logical products. So if you have QueryTerms a, b, c, d, e and
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you have the logical function a(b+c) + !(c(d+e)), it gets stored as
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ab + ac + !c + !c!e +!d!c + !d!e. This may not be optimal for evaluation
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of some functions but it's easy to store, easy to manipulate, and it
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doesn't require a complete algebra system to deal with.
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The representation is of a GList of GLists of QueryTerms. The
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"backbone" GList q->terms represents the OR-chain, and every item on
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the backbone is a GList of QueryTerms representing an AND-chain
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corresponding to a single product-term in the canonical
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representation. QueryTerms are duplicated when necessary to fill out
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the canonical form, and the same predicate may be evaluated multiple
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times per split for complex queries. This is a place where we could
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probably optimize.
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@{ */
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/** @file qofquery.h
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@brief find objects that match a certain expression.
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@author Copyright (C) 2002 Derek Atkins <warlord@MIT.EDU>
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@author Copyright (C) 2003 Linas Vepstas <linas@linas.org>
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*/
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#ifndef QOF_QUERYNEW_H
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#define QOF_QUERYNEW_H
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#include "guid.h"
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#include "qofbook.h"
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#include "qofquerycore.h"
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#include "qofchoice.h"
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#ifdef __cplusplus
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extern "C"
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{
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#endif
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#define QOF_MOD_QUERY "qof.query"
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/** A Query */
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typedef struct _QofQuery QofQuery;
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/** Query Term Operators, for combining Query Terms */
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typedef enum
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{
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QOF_QUERY_AND = 1,
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QOF_QUERY_OR,
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QOF_QUERY_NAND,
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QOF_QUERY_NOR,
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QOF_QUERY_XOR
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} QofQueryOp;
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/** First/only term is same as 'and' */
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#define QOF_QUERY_FIRST_TERM QOF_QUERY_AND
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/** Default sort object type */
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#define QUERY_DEFAULT_SORT "QofQueryDefaultSort"
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/** "Known" Object Parameters -- all objects must support these */
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#define QOF_PARAM_BOOK "book"
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#define QOF_PARAM_GUID "guid"
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/** "Known" Object Parameters -- some objects might support these */
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#define QOF_PARAM_KVP "kvp"
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#define QOF_PARAM_ACTIVE "active"
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#define QOF_PARAM_VERSION "version"
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/* --------------------------------------------------------- */
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/** \name Query Subsystem Initialization and Shutdown */
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// @{
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/** Subsystem initialization and shutdown. Call init() once
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* to initialize the query subsystem; call shutdown() to free
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* up any resources associated with the query subsystem.
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* Typically called during application startup, shutdown.
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*/
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void qof_query_init (void);
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void qof_query_shutdown (void);
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// @}
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/* --------------------------------------------------------- */
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/** \name Low-Level API Functions */
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// @{
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QofQueryParamList * qof_query_build_param_list (char const *param, ...);
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/** Create a new query.
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* Before running the query, a 'search-for' type must be set
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* otherwise nothing will be returned. The results of the query
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* is a list of the indicated search-for type.
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*
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* Allocates and initializes a Query structure which must be
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* freed by the user with qof_query_destroy(). A newly-allocated
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* QofQuery object matches nothing (qof_query_run() will return NULL).
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*/
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QofQuery * qof_query_create (void);
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QofQuery * qof_query_create_for (QofIdTypeConst obj_type);
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/** Frees the resources associate with a Query object. */
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void qof_query_destroy (QofQuery *q);
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/** Set the object type to be searched for. The results of
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* performing the query will be a list of this obj_type.
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*/
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void qof_query_search_for (QofQuery *query, QofIdTypeConst obj_type);
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/** Set the book to be searched. Books contain/identify collections
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* of objects; the search will be performed over those books
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* specified with this function. If no books are set, no results
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* will be returned (since there is nothing to search over).
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*
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* You can search multiple books. To specify multiple books, call
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* this function multiple times with different arguments.
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* XXX needed qof_query_clear_books() to reset the list ...
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*/
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void qof_query_set_book (QofQuery *q, QofBook *book);
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/** This is the general function that adds a new Query Term to a query.
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* It will find the 'obj_type' object of the search item and compare
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* the 'param_list' parameter to the predicate data via the comparator.
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*
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* The param_list is a recursive list of parameters. For example, you
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* can say 'split->memo' by creating a list of one element, "SPLIT_MEMO".
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* You can say 'split->account->name' by creating a list of two elements,
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* "SPLIT_ACCOUNT" and "ACCOUNT_NAME". The list becomes the property of
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* the Query.
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*
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* For example:
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*
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* acct_name_pred_data = make_string_pred_data(QOF_STRING_MATCH_CASEINSENSITIVE,
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* account_name);
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* param_list = make_list (SPLIT_ACCOUNT, ACCOUNT_NAME, NULL);
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* qof_query_add_term (query, param_list, QOF_COMPARE_EQUAL,
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* acct_name_pred_data, QOF_QUERY_AND);
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*
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* Please note that QofQuery does not, at this time, support joins.
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* That is, one cannot specify a predicate that is a parameter list.
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* Put another way, one cannot search for objects where
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* obja->thingy == objb->stuff
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*/
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void qof_query_add_term (QofQuery *query, QofQueryParamList *param_list,
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QofQueryPredData *pred_data, QofQueryOp op);
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/** DOCUMENT ME !! */
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void qof_query_add_guid_match (QofQuery *q, QofQueryParamList *param_list,
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const GncGUID *guid, QofQueryOp op);
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/** DOCUMENT ME !! */
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void qof_query_add_guid_list_match (QofQuery *q, QofQueryParamList *param_list,
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GList *guid_list, QofGuidMatch options,
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QofQueryOp op);
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/** Handy-dandy convenience routines, avoids having to create
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* a separate predicate for boolean matches. We might want to
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* create handy-dandy sugar routines for the other predicate types
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* as well. */
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void qof_query_add_boolean_match (QofQuery *q,
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QofQueryParamList *param_list,
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gboolean value,
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QofQueryOp op);
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/** Perform the query, return the results.
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* The returned list is a list of the 'search-for' type that was
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* previously set with the qof_query_search_for() or the
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* qof_query_create_for() routines. The returned list will have
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* been sorted using the indicated sort order, and trimmed to the
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* max_results length.
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*
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* Do NOT free the resulting list. This list is managed internally
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* by QofQuery.
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*/
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GList * qof_query_run (QofQuery *query);
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/** Return the results of the last query, without causing the query to
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* be re-run. Do NOT free the resulting list. This list is managed
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* internally by QofQuery.
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*/
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GList * qof_query_last_run (QofQuery *query);
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/** Perform a subquery, return the results.
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* Instead of running over a book, the subquery runs over the results
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* of the primary query.
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*
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* Do NOT free the resulting list. This list is managed internally
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* by QofQuery.
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*/
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GList * qof_query_run_subquery (QofQuery *subquery,
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const QofQuery* primary_query);
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/** Remove all query terms from query. query matches nothing
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* after qof_query_clear().
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*/
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void qof_query_clear (QofQuery *query);
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/** Remove query terms of a particular type from q. The "type" of a term
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* is determined by the type of data that gets passed to the predicate
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* function.
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* XXX ??? Huh? remove anything of that predicate type, or just
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* the particular predicate ?
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*/
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void qof_query_purge_terms (QofQuery *q, QofQueryParamList *param_list);
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/** Return boolean FALSE if there are no terms in the query
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* Can be used as a predicate to see if the query has been
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* initialized (return value > 0) or is "blank" (return value == 0).
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*/
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int qof_query_has_terms (QofQuery *q);
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/** Return the number of terms in the canonical form of the query.
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*/
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int qof_query_num_terms (QofQuery *q);
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/** DOCUMENT ME !! */
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gboolean qof_query_has_term_type (QofQuery *q, QofQueryParamList *term_param);
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GSList * qof_query_get_term_type (QofQuery *q, QofQueryParamList *term_param);
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/** Make a copy of the indicated query */
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QofQuery * qof_query_copy (QofQuery *q);
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/** Make a copy of the indicated query, inverting the sense
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* of the search. In other words, if the original query search
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* for all objects with a certain condition, the inverted query
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* will search for all object with NOT that condition. The union
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* of the results returned by the original and inverted queries
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* equals the set of all searched objects. These to sets are
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* disjoint (share no members in common).
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*
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* This will return a newly allocated QofQuery object, or NULL
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* on error. Free it with qof_query_destroy() when no longer needed.
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*/
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QofQuery * qof_query_invert(QofQuery *q);
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/** Combine two queries together using the Boolean set (logical)
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* operator 'op'. For example, if the operator 'op' is set to
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* QUERY_AND, then the set of results returned by the query will
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* will be the Boolean set intersection of the results returned
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* by q1 and q2. Similarly, QUERY_OR maps to set union, etc.
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*
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* Both queries must have compatible
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* search-types. If both queries are set, they must search for the
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* same object type. If only one is set, the resulting query will
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* search for the set type. If neither query has the search-type set,
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* the result will be unset as well.
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*
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* This will return a newly allocated QofQuery object, or NULL on
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* error. Free it with qof_query_destroy() when no longer needed.
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* Note that if either input query is NULL then the returned query is
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* NOT newly allocated -- it will return the non-NULL query. You
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* only need to call this function when both q1 and q2 are non-NULL.
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*/
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QofQuery * qof_query_merge(QofQuery *q1, QofQuery *q2, QofQueryOp op);
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/** Like qof_query_merge, but this will merge a copy of q2 into q1.
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* q2 remains unchanged.
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*/
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void qof_query_merge_in_place(QofQuery *q1, QofQuery *q2, QofQueryOp op);
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/**
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* When a query is run, the results are sorted before being returned.
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* This routine can be used to set the parameters on which the sort will
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* be performed. Two objects in the result list will be compared using
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* the 'primary_sort_params', and sorted based on that order. If the
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* comparison shows that they are equal, then the
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* 'secondary_sort_params' will be used. If still equal, then the
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* tertiary parameters will be compared. Any or all of these parameter
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* lists may be NULL. Any of these parameter lists may be set to
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* QUERY_DEFAULT_SORT.
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*
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* Note that if there are more results than the 'max-results' value,
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* then only the *last* max-results will be returned. For example,
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* if the sort is set to be increasing date order, then only the
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* objects with the most recent dates will be returned.
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*
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* The input lists become the property of QofQuery and are managed
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* by it. They will be freed when the query is destroyed (or when
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* new lists are set).
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*/
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void qof_query_set_sort_order (QofQuery *q,
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QofQueryParamList *primary_sort_params,
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QofQueryParamList *secondary_sort_params,
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QofQueryParamList *tertiary_sort_params);
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void qof_query_set_sort_options (QofQuery *q, gint prim_op, gint sec_op,
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gint tert_op);
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/**
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* When a query is run, the results are sorted before being returned.
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* This routine can be used to control the direction of the ordering.
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* A value of TRUE indicates the sort will be in increasing order,
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* a value of FALSE will order results in decreasing order.
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*
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* Note that if there are more results than the 'max-results' value,
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* then only the *last* max-results will be returned. For example,
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* if the sort is set to be increasing date order, then only the
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* objects with the most recent dates will be returned.
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*/
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void qof_query_set_sort_increasing (QofQuery *q, gboolean prim_inc,
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gboolean sec_inc, gboolean tert_inc);
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/**
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* Set the maximum number of results that should be returned.
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* If 'max-results' is set to -1, then all of the results are
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* returned. If there are more results than 'max-results',
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* then the result list is trimmed. Note that there is an
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* important interplay between 'max-results' and the sort order:
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* only the last bit of results are returned. For example,
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* if the sort order is set to be increasing date order, then
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* only the objects with the most recent dates will be returned.
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*/
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void qof_query_set_max_results (QofQuery *q, int n);
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/** Compare two queries for equality.
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* Query terms are compared each to each.
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* This is a simplistic
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* implementation -- logical equivalences between different
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* and/or trees are ignored.
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*/
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gboolean qof_query_equal (const QofQuery *q1, const QofQuery *q2);
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/** Log the Query
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*
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* \deprecated Do not call directly, use the standard log
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* module code: ::qof_log_set_level(QOF_MOD_QUERY, QOF_LOG_DEBUG);
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*/
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void qof_query_print (QofQuery *query);
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/** Return the type of data we're querying for */
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/*@ dependent @*/
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QofIdType qof_query_get_search_for (const QofQuery *q);
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/** Return the list of books we're using */
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GList * qof_query_get_books (QofQuery *q);
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// @}
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/* @} */
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#ifdef __cplusplus
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}
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#endif
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#endif /* QOF_QUERYNEW_H */
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