-/* PSPP - computes sample statistics.
+/* PSPP - a program for statistical analysis.
Copyright (C) 1997-9, 2000, 2006 Free Software Foundation, Inc.
- 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 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 3 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.
+ 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., 51 Franklin Street, Fifth Floor, Boston, MA
- 02110-1301, USA. */
+ along with this program. If not, see <http://www.gnu.org/licenses/>. */
#include <config.h>
#include <stdio.h>
-#include <data/case-ordering.h>
#include <data/case.h>
#include <data/casereader.h>
#include <data/casewriter.h>
#include <data/casewriter-provider.h>
#include <data/settings.h>
-#include <libpspp/alloc.h>
+#include <data/subcase.h>
#include <libpspp/array.h>
#include <libpspp/assertion.h>
#include <math/merge.h>
+#include "xalloc.h"
+
#include "gettext.h"
#define _(msgid) gettext (msgid)
struct sort_writer
{
- struct case_ordering *ordering;
+ size_t value_cnt;
+ struct subcase ordering;
struct merge *merge;
struct pqueue *pqueue;
static struct casewriter_class sort_casewriter_class;
-static struct pqueue *pqueue_create (const struct case_ordering *);
+static struct pqueue *pqueue_create (const struct subcase *, size_t);
static void pqueue_destroy (struct pqueue *);
static bool pqueue_is_full (const struct pqueue *);
static bool pqueue_is_empty (const struct pqueue *);
static void output_record (struct sort_writer *);
struct casewriter *
-sort_create_writer (struct case_ordering *ordering)
+sort_create_writer (const struct subcase *ordering, size_t value_cnt)
{
struct sort_writer *sort;
sort = xmalloc (sizeof *sort);
- sort->ordering = case_ordering_clone (ordering);
- sort->merge = merge_create (ordering);
- sort->pqueue = pqueue_create (ordering);
+ sort->value_cnt = value_cnt;
+ subcase_clone (&sort->ordering, ordering);
+ sort->merge = merge_create (ordering, value_cnt);
+ sort->pqueue = pqueue_create (ordering, value_cnt);
sort->run = NULL;
sort->run_id = 0;
case_nullify (&sort->run_end);
- case_ordering_destroy (ordering);
-
- return casewriter_create (&sort_casewriter_class, sort);
+ return casewriter_create (value_cnt, &sort_casewriter_class, sort);
}
static void
output_record (sort);
next_run = (case_is_null (&sort->run_end)
- || case_ordering_compare_cases (c, &sort->run_end,
- sort->ordering) < 0);
+ || subcase_compare_3way (&sort->ordering, c,
+ &sort->ordering, &sort->run_end) < 0);
pqueue_push (sort->pqueue, c, sort->run_id + (next_run ? 1 : 0));
}
{
struct sort_writer *sort = sort_;
- case_ordering_destroy (sort->ordering);
+ subcase_destroy (&sort->ordering);
merge_destroy (sort->merge);
pqueue_destroy (sort->pqueue);
casewriter_destroy (sort->run);
if (sort->run == NULL && sort->run_id == 0)
{
/* In-core sort. */
- sort->run = mem_writer_create (case_ordering_get_value_cnt (
- sort->ordering));
+ sort->run = mem_writer_create (casewriter_get_value_cnt (writer));
sort->run_id = 1;
}
while (!pqueue_is_empty (sort->pqueue))
}
if (sort->run == NULL)
{
- sort->run = tmpfile_writer_create (case_ordering_get_value_cnt (
- sort->ordering));
+ sort->run = tmpfile_writer_create (sort->value_cnt);
sort->run_id = min_run_id;
}
};
\f
/* Reads all the cases from INPUT. Sorts the cases according to
- ORDERING. Returns the sorted cases in a new casereader, or a
- null pointer if an I/O error occurs. Both INPUT and ORDERING
- are destroyed upon return, regardless of success. */
+ ORDERING. Returns the sorted cases in a new casereader. */
struct casereader *
-sort_execute (struct casereader *input, struct case_ordering *ordering)
+sort_execute (struct casereader *input, const struct subcase *ordering)
{
- struct casewriter *output = sort_create_writer (ordering);
+ struct casewriter *output =
+ sort_create_writer (ordering, casereader_get_value_cnt (input));
casereader_transfer (input, output);
return casewriter_make_reader (output);
}
+
+/* Reads all the cases from INPUT. Sorts the cases in ascending
+ order according to VARIABLE. Returns the sorted cases in a
+ new casereader. */
+struct casereader *
+sort_execute_1var (struct casereader *input, const struct variable *var)
+{
+ struct subcase sc;
+ struct casereader *reader;
+
+ subcase_init_var (&sc, var, SC_ASCEND);
+ reader = sort_execute (input, &sc);
+ subcase_destroy (&sc);
+ return reader;
+}
\f
struct pqueue
{
- struct case_ordering *ordering;
+ struct subcase ordering;
struct pqueue_record *records;
size_t record_cnt;
size_t record_cap;
const void *pq_);
static struct pqueue *
-pqueue_create (const struct case_ordering *ordering)
+pqueue_create (const struct subcase *ordering, size_t value_cnt)
{
struct pqueue *pq;
pq = xmalloc (sizeof *pq);
- pq->ordering = case_ordering_clone (ordering);
+ subcase_clone (&pq->ordering, ordering);
pq->record_cap
- = get_workspace_cases (case_ordering_get_value_cnt (ordering));
+ = settings_get_workspace_cases (value_cnt);
if (pq->record_cap > max_buffers)
pq->record_cap = max_buffers;
else if (pq->record_cap < min_buffers)
pqueue_pop (pq, &c, &id);
case_destroy (&c);
}
- case_ordering_destroy (pq->ordering);
+ subcase_destroy (&pq->ordering);
free (pq->records);
free (pq);
}
const struct pqueue *pq = pq_;
int result = a->id < b->id ? -1 : a->id > b->id;
if (result == 0)
- result = case_ordering_compare_cases (&a->c, &b->c, pq->ordering);
+ result = subcase_compare_3way (&pq->ordering, &a->c,
+ &pq->ordering, &b->c);
if (result == 0)
result = a->idx < b->idx ? -1 : a->idx > b->idx;
return -result;