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2f68949962
GLib 2.20 has a nice g_assert() wrapper which will print out the GError if it's not NULL.
384 lines
9.1 KiB
C
384 lines
9.1 KiB
C
#include <stdlib.h>
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#include <string.h>
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#include <clutter/clutter.h>
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#include "test-conform-common.h"
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typedef struct _ModelData
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{
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ClutterModel *model;
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guint n_row;
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} ModelData;
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enum
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{
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COLUMN_FOO, /* G_TYPE_STRING */
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COLUMN_BAR, /* G_TYPE_INT */
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N_COLUMNS
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};
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static const struct {
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const gchar *expected_foo;
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gint expected_bar;
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} base_model[] = {
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{ "String 1", 1 },
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{ "String 2", 2 },
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{ "String 3", 3 },
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{ "String 4", 4 },
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{ "String 5", 5 },
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{ "String 6", 6 },
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{ "String 7", 7 },
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{ "String 8", 8 },
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{ "String 9", 9 },
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};
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static const struct {
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const gchar *expected_foo;
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gint expected_bar;
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} forward_base[] = {
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{ "String 1", 1 },
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{ "String 2", 2 },
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{ "String 3", 3 },
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{ "String 4", 4 },
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{ "String 5", 5 },
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{ "String 6", 6 },
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{ "String 7", 7 },
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{ "String 8", 8 },
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{ "String 9", 9 },
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};
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static const struct {
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const gchar *expected_foo;
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gint expected_bar;
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} backward_base[] = {
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{ "String 9", 9 },
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{ "String 8", 8 },
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{ "String 7", 7 },
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{ "String 6", 6 },
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{ "String 5", 5 },
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{ "String 4", 4 },
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{ "String 3", 3 },
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{ "String 2", 2 },
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{ "String 1", 1 },
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};
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static const struct {
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const gchar *expected_foo;
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gint expected_bar;
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} filter_odd[] = {
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{ "String 1", 1 },
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{ "String 3", 3 },
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{ "String 5", 5 },
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{ "String 7", 7 },
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{ "String 9", 9 },
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};
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static const struct {
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const gchar *expected_foo;
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gint expected_bar;
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} filter_even[] = {
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{ "String 8", 8 },
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{ "String 6", 6 },
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{ "String 4", 4 },
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{ "String 2", 2 },
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};
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static inline void
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compare_iter (ClutterModelIter *iter,
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const gint expected_row,
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const gchar *expected_foo,
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const gint expected_bar)
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{
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gchar *foo = NULL;
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gint bar = 0;
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gint row = 0;
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row = clutter_model_iter_get_row (iter);
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clutter_model_iter_get (iter,
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COLUMN_FOO, &foo,
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COLUMN_BAR, &bar,
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-1);
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if (g_test_verbose ())
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g_print ("Row %d => %d: Got [ '%s', '%d' ], expected [ '%s', '%d' ]\n",
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row, expected_row,
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foo, bar,
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expected_foo, expected_bar);
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g_assert_cmpint (row, ==, expected_row);
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g_assert_cmpstr (foo, ==, expected_foo);
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g_assert_cmpint (bar, ==, expected_bar);
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g_free (foo);
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}
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static void
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on_row_added (ClutterModel *model,
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ClutterModelIter *iter,
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gpointer data)
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{
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ModelData *model_data = data;
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compare_iter (iter,
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model_data->n_row,
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base_model[model_data->n_row].expected_foo,
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base_model[model_data->n_row].expected_bar);
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model_data->n_row += 1;
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}
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static gboolean
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filter_even_rows (ClutterModel *model,
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ClutterModelIter *iter,
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gpointer dummy G_GNUC_UNUSED)
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{
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gint bar_value;
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clutter_model_iter_get (iter, COLUMN_BAR, &bar_value, -1);
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if (bar_value % 2 == 0)
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return TRUE;
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return FALSE;
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}
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static gboolean
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filter_odd_rows (ClutterModel *model,
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ClutterModelIter *iter,
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gpointer dummy G_GNUC_UNUSED)
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{
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gint bar_value;
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clutter_model_iter_get (iter, COLUMN_BAR, &bar_value, -1);
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if (bar_value % 2 != 0)
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return TRUE;
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return FALSE;
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}
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void
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test_list_model_filter (TestConformSimpleFixture *fixture,
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gconstpointer data)
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{
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ModelData test_data = { NULL, 0 };
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ClutterModelIter *iter;
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gint i;
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test_data.model = clutter_list_model_new (N_COLUMNS,
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G_TYPE_STRING, "Foo",
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G_TYPE_INT, "Bar");
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test_data.n_row = 0;
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for (i = 1; i < 10; i++)
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{
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gchar *foo = g_strdup_printf ("String %d", i);
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clutter_model_append (test_data.model,
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COLUMN_FOO, foo,
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COLUMN_BAR, i,
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-1);
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g_free (foo);
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}
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if (g_test_verbose ())
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g_print ("Forward iteration (filter odd)...\n");
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clutter_model_set_filter (test_data.model, filter_odd_rows, NULL, NULL);
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iter = clutter_model_get_first_iter (test_data.model);
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g_assert (iter != NULL);
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i = 0;
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while (!clutter_model_iter_is_last (iter))
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{
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compare_iter (iter, i,
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filter_odd[i].expected_foo,
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filter_odd[i].expected_bar);
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iter = clutter_model_iter_next (iter);
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i += 1;
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}
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g_object_unref (iter);
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if (g_test_verbose ())
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g_print ("Backward iteration (filter even)...\n");
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clutter_model_set_filter (test_data.model, filter_even_rows, NULL, NULL);
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iter = clutter_model_get_last_iter (test_data.model);
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g_assert (iter != NULL);
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i = 0;
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do
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{
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compare_iter (iter, G_N_ELEMENTS (filter_even) - i - 1,
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filter_even[i].expected_foo,
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filter_even[i].expected_bar);
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iter = clutter_model_iter_prev (iter);
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i += 1;
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}
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while (!clutter_model_iter_is_first (iter));
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g_object_unref (iter);
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g_object_unref (test_data.model);
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}
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void
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test_list_model_iterate (TestConformSimpleFixture *fixture,
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gconstpointer data)
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{
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ModelData test_data = { NULL, 0 };
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ClutterModelIter *iter;
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gint i;
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test_data.model = clutter_list_model_new (N_COLUMNS,
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G_TYPE_STRING, "Foo",
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G_TYPE_INT, "Bar");
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test_data.n_row = 0;
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g_signal_connect (test_data.model, "row-added",
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G_CALLBACK (on_row_added),
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&test_data);
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for (i = 1; i < 10; i++)
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{
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gchar *foo = g_strdup_printf ("String %d", i);
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clutter_model_append (test_data.model,
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COLUMN_FOO, foo,
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COLUMN_BAR, i,
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-1);
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g_free (foo);
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}
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if (g_test_verbose ())
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g_print ("Forward iteration...\n");
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iter = clutter_model_get_first_iter (test_data.model);
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g_assert (iter != NULL);
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i = 0;
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while (!clutter_model_iter_is_last (iter))
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{
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compare_iter (iter, i,
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forward_base[i].expected_foo,
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forward_base[i].expected_bar);
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iter = clutter_model_iter_next (iter);
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i += 1;
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}
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g_object_unref (iter);
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if (g_test_verbose ())
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g_print ("Backward iteration...\n");
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iter = clutter_model_get_last_iter (test_data.model);
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g_assert (iter != NULL);
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i = 0;
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do
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{
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compare_iter (iter, G_N_ELEMENTS (backward_base) - i - 1,
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backward_base[i].expected_foo,
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backward_base[i].expected_bar);
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iter = clutter_model_iter_prev (iter);
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i += 1;
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}
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while (!clutter_model_iter_is_first (iter));
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compare_iter (iter, G_N_ELEMENTS (backward_base) - i - 1,
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backward_base[i].expected_foo,
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backward_base[i].expected_bar);
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g_object_unref (iter);
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g_object_unref (test_data.model);
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}
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void
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test_list_model_populate (TestConformSimpleFixture *fixture,
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gconstpointer data)
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{
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ModelData test_data = { NULL, 0 };
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gint i;
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test_data.model = clutter_list_model_new (N_COLUMNS,
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G_TYPE_STRING, "Foo",
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G_TYPE_INT, "Bar");
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test_data.n_row = 0;
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g_signal_connect (test_data.model, "row-added",
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G_CALLBACK (on_row_added),
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&test_data);
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for (i = 1; i < 10; i++)
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{
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gchar *foo = g_strdup_printf ("String %d", i);
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clutter_model_append (test_data.model,
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COLUMN_FOO, foo,
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COLUMN_BAR, i,
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-1);
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g_free (foo);
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}
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g_object_unref (test_data.model);
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}
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void
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test_list_model_from_script (TestConformSimpleFixture *fixture,
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gconstpointer dummy)
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{
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ClutterScript *script = clutter_script_new ();
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GObject *model;
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GError *error = NULL;
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gchar *test_file;
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const gchar *name;
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GType type;
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test_file = clutter_test_get_data_file ("test-script-model.json");
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clutter_script_load_from_file (script, test_file, &error);
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if (g_test_verbose () && error)
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g_print ("Error: %s", error->message);
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#if GLIB_CHECK_VERSION (2, 20, 0)
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g_assert_no_error (error);
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#else
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g_assert (error == NULL);
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#endif /* GLIB_CHECK_VERSION (2, 20, 0) */
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model = clutter_script_get_object (script, "test-model");
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g_assert (CLUTTER_IS_MODEL (model));
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g_assert (clutter_model_get_n_columns (CLUTTER_MODEL (model)) == 3);
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name = clutter_model_get_column_name (CLUTTER_MODEL (model), 0);
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type = clutter_model_get_column_type (CLUTTER_MODEL (model), 0);
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if (g_test_verbose ())
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g_print ("column[0]: %s, type: %s\n", name, g_type_name (type));
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g_assert (strcmp (name, "text-column") == 0);
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g_assert (type == G_TYPE_STRING);
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name = clutter_model_get_column_name (CLUTTER_MODEL (model), 2);
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type = clutter_model_get_column_type (CLUTTER_MODEL (model), 2);
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if (g_test_verbose ())
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g_print ("column[2]: %s, type: %s\n", name, g_type_name (type));
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g_assert (strcmp (name, "actor-column") == 0);
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g_assert (type == CLUTTER_TYPE_RECTANGLE);
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}
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