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299 lines
7.0 KiB
C
299 lines
7.0 KiB
C
/* rcbox.c: Reference counted data
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*
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* Copyright 2018 Emmanuele Bassi
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*
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* This library is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Lesser General Public
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* License as published by the Free Software Foundation; either
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* version 2.1 of the License, or (at your option) any later version.
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*
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* This library 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 GNU
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* Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public
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* License along with this library; if not, see <http://www.gnu.org/licenses/>.
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*/
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#include <glib.h>
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typedef struct {
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float x, y;
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} Point;
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static Point *global_point;
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/* test_rcbox_new: Test g_rc_box_new() */
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static void
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test_rcbox_new (void)
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{
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Point *a = g_rc_box_new (Point);
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g_assert_nonnull (a);
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g_assert_cmpuint (g_rc_box_get_size (a), ==, sizeof (Point));
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g_rc_box_release (a);
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a = g_rc_box_new0 (Point);
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g_assert_nonnull (a);
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g_assert_cmpfloat (a->x, ==, 0.f);
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g_assert_cmpfloat (a->y, ==, 0.f);
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g_rc_box_release (a);
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}
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/* test_atomic_rcbox_new: Test g_atomic_rc_box_new() */
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static void
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test_atomic_rcbox_new (void)
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{
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Point *a = g_atomic_rc_box_new (Point);
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g_assert_nonnull (a);
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g_assert_cmpuint (g_atomic_rc_box_get_size (a), ==, sizeof (Point));
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g_atomic_rc_box_release (a);
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a = g_atomic_rc_box_new0 (Point);
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g_assert_nonnull (a);
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g_assert_cmpfloat (a->x, ==, 0.f);
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g_assert_cmpfloat (a->y, ==, 0.f);
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g_atomic_rc_box_release (a);
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}
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static void
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point_clear (Point *p)
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{
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g_assert_nonnull (p);
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g_assert_true (global_point == p);
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g_assert_cmpfloat (p->x, ==, 42.0f);
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g_assert_cmpfloat (p->y, ==, 47.0f);
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g_test_message ("global_point = %p", p);
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global_point = NULL;
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}
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/* test_rcbox_release_full: Verify that g_rc_box_release_full() calls
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* the clear function only when the last reference is released
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*/
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static void
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test_rcbox_release_full (void)
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{
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Point *p = g_rc_box_new (Point);
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g_assert_nonnull (p);
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global_point = p;
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p->x = 42.0f;
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p->y = 47.0f;
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g_assert_true (g_rc_box_acquire (p) == p);
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g_rc_box_release_full (p, (GDestroyNotify) point_clear);
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g_assert_nonnull (global_point);
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g_assert_true (p == global_point);
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g_rc_box_release_full (p, (GDestroyNotify) point_clear);
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g_assert_null (global_point);
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}
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/* test_atomic_rcbox_release_full: Verify that g_atomic_rc_box_release_full()
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* calls the clear function only when the last reference is released
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*/
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static void
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test_atomic_rcbox_release_full (void)
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{
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Point *p = g_atomic_rc_box_new (Point);
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g_assert_nonnull (p);
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global_point = p;
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p->x = 42.0f;
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p->y = 47.0f;
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g_assert_true (g_atomic_rc_box_acquire (p) == p);
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g_atomic_rc_box_release_full (p, (GDestroyNotify) point_clear);
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g_assert_nonnull (global_point);
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g_assert_true (p == global_point);
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g_atomic_rc_box_release_full (p, (GDestroyNotify) point_clear);
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g_assert_null (global_point);
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}
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static Point *global_point_a;
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static Point *global_point_b;
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static void
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point_clear_dup_a (Point *a)
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{
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g_assert_true (a == global_point_a);
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g_test_message ("global_point_a = %p", a);
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global_point_a = NULL;
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}
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static void
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point_clear_dup_b (Point *b)
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{
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g_assert_true (b == global_point_b);
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g_test_message ("global_point_b = %p", b);
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global_point_b = NULL;
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}
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/* test_rcbox_dup: Verify that g_rc_box_dup() copies only the
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* data and does not change the reference count of the original
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*/
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static void
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test_rcbox_dup (void)
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{
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Point *a, *b;
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a = g_rc_box_new (Point);
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a->x = 10.f;
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a->y = 5.f;
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b = g_rc_box_dup (sizeof (Point), a);
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g_assert_true (a != b);
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g_assert_cmpfloat (a->x, ==, b->x);
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g_assert_cmpfloat (a->y, ==, b->y);
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global_point_a = a;
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global_point_b = b;
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a->x = 1.f;
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a->y = 1.f;
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g_assert_cmpfloat (a->x, !=, b->x);
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g_assert_cmpfloat (a->y, !=, b->y);
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b->x = 5.f;
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b->y = 10.f;
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g_assert_cmpfloat (a->x, !=, b->x);
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g_assert_cmpfloat (a->y, !=, b->y);
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g_rc_box_release_full (a, (GDestroyNotify) point_clear_dup_a);
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g_assert_null (global_point_a);
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g_assert_nonnull (global_point_b);
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g_rc_box_release_full (b, (GDestroyNotify) point_clear_dup_b);
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g_assert_null (global_point_b);
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}
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/* test_atomic_rcbox_dup: Verify that g_atomic_rc_box_dup() copies
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* only the data and does not change the reference count of the original
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*/
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static void
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test_atomic_rcbox_dup (void)
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{
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Point *a, *b;
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a = g_atomic_rc_box_new (Point);
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a->x = 10.f;
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a->y = 5.f;
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b = g_atomic_rc_box_dup (sizeof (Point), a);
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g_assert_true (a != b);
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g_assert_cmpfloat (a->x, ==, b->x);
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g_assert_cmpfloat (a->y, ==, b->y);
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global_point_a = a;
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global_point_b = b;
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a->x = 1.f;
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a->y = 1.f;
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g_assert_cmpfloat (a->x, !=, b->x);
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g_assert_cmpfloat (a->y, !=, b->y);
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b->x = 5.f;
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b->y = 10.f;
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g_assert_cmpfloat (a->x, !=, b->x);
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g_assert_cmpfloat (a->y, !=, b->y);
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g_atomic_rc_box_release_full (a, (GDestroyNotify) point_clear_dup_a);
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g_assert_null (global_point_a);
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g_assert_nonnull (global_point_b);
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g_atomic_rc_box_release_full (b, (GDestroyNotify) point_clear_dup_b);
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g_assert_null (global_point_b);
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}
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/* The expected alignment of the refcounted data, absent any other
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* alignment requirement, is `2 * sizeof(void*)`; GLib only really
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* supports void* sized 8 or 4 (see the comment in gatomic.h)
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*/
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#if GLIB_SIZEOF_VOID_P == 8
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static const gsize rcbox_alignment = 16;
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#else
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static const gsize rcbox_alignment = 8;
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#endif
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/* verify that the refcounted allocation is properly aligned */
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static void
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test_rcbox_alignment (void)
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{
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const gsize block_sizes[] = {
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1,
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2,
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4,
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sizeof (gint32) * 3,
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};
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int i;
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for (i = 0; i < G_N_ELEMENTS (block_sizes); i++)
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{
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gpointer p = g_rc_box_alloc0 (block_sizes[i]);
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g_assert_nonnull (p);
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g_assert_true (((guintptr) p & (rcbox_alignment - 1)) == 0);
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g_rc_box_release (p);
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}
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}
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/* verify that the atomically refcounted allocation is properly aligned */
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static void
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test_atomic_rcbox_alignment (void)
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{
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const gsize block_sizes[] = {
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1,
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2,
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4,
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sizeof (gint32) * 3,
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};
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int i;
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for (i = 0; i < G_N_ELEMENTS (block_sizes); i++)
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{
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gpointer p = g_atomic_rc_box_alloc0 (block_sizes[i]);
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g_assert_nonnull (p);
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g_assert_true (((guintptr) p & (rcbox_alignment - 1)) == 0);
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g_atomic_rc_box_release (p);
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}
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}
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int
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main (int argc,
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char *argv[])
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{
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g_test_init (&argc, &argv, NULL);
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g_test_add_func ("/rcbox/new", test_rcbox_new);
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g_test_add_func ("/rcbox/release-full", test_rcbox_release_full);
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g_test_add_func ("/rcbox/dup", test_rcbox_dup);
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g_test_add_func ("/rcbox/alignment", test_rcbox_alignment);
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g_test_add_func ("/atomic-rcbox/new", test_atomic_rcbox_new);
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g_test_add_func ("/atomic-rcbox/release-full", test_atomic_rcbox_release_full);
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g_test_add_func ("/atomic-rcbox/dup", test_atomic_rcbox_dup);
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g_test_add_func ("/atomic-rcbox/alignment", test_atomic_rcbox_alignment);
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return g_test_run ();
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}
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