/* GTK - The GIMP Toolkit * Copyright (C) 1995-1997 Peter Mattis, Spencer Kimball and Josh MacDonald * * This library is free software; you can redistribute it and/or * modify it under the terms of the GNU Lesser General Public * License as published by the Free Software Foundation; either * version 2 of the License, or (at your option) any later version. * * This library 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 * Lesser General Public License for more details. * * You should have received a copy of the GNU Lesser General Public * License along with this library. If not, see . */ /* * Modified by the GTK+ Team and others 1997-2000. See the AUTHORS * file for a list of people on the GTK+ Team. See the ChangeLog * files for a list of changes. These files are distributed with * GTK+ at ftp://ftp.gtk.org/pub/gtk/. */ #include "config.h" #define GDK_DISABLE_DEPRECATION_WARNINGS #include "gtktable.h" #include "gtktypebuiltins.h" #include "gtkprivate.h" #include "gtkintl.h" /** * SECTION:gtktable * @Short_description: Pack widgets in regular patterns * @Title: GtkTable * @See_also: #GtkGrid * * The #GtkTable functions allow the programmer to arrange widgets in rows and * columns, making it easy to align many widgets next to each other, * horizontally and vertically. * * Tables are created with a call to gtk_table_new(), the size of which can * later be changed with gtk_table_resize(). * * Widgets can be added to a table using gtk_table_attach() or the more * convenient (but slightly less flexible) gtk_table_attach_defaults(). * * To alter the space next to a specific row, use gtk_table_set_row_spacing(), * and for a column, gtk_table_set_col_spacing(). * The gaps between all rows or columns can be changed by * calling gtk_table_set_row_spacings() or gtk_table_set_col_spacings() * respectively. Note that spacing is added between the * children, while padding added by gtk_table_attach() is added on * either side of the widget it belongs to. * * gtk_table_set_homogeneous(), can be used to set whether all cells in the * table will resize themselves to the size of the largest widget in the table. * * > #GtkTable has been deprecated. Use #GtkGrid instead. It provides the same * > capabilities as GtkTable for arranging widgets in a rectangular grid, but * > does support height-for-width geometry management. */ struct _GtkTablePrivate { GtkTableRowCol *cols; GtkTableRowCol *rows; GList *children; guint16 column_spacing; guint16 ncols; guint16 nrows; guint16 row_spacing; guint homogeneous : 1; }; enum { PROP_0, PROP_N_ROWS, PROP_N_COLUMNS, PROP_COLUMN_SPACING, PROP_ROW_SPACING, PROP_HOMOGENEOUS }; enum { CHILD_PROP_0, CHILD_PROP_LEFT_ATTACH, CHILD_PROP_RIGHT_ATTACH, CHILD_PROP_TOP_ATTACH, CHILD_PROP_BOTTOM_ATTACH, CHILD_PROP_X_OPTIONS, CHILD_PROP_Y_OPTIONS, CHILD_PROP_X_PADDING, CHILD_PROP_Y_PADDING }; static void gtk_table_finalize (GObject *object); static void gtk_table_get_preferred_width (GtkWidget *widget, gint *minimum, gint *natural); static void gtk_table_get_preferred_height (GtkWidget *widget, gint *minimum, gint *natural); static void gtk_table_size_allocate (GtkWidget *widget, GtkAllocation *allocation); static void gtk_table_compute_expand (GtkWidget *widget, gboolean *hexpand, gboolean *vexpand); static void gtk_table_add (GtkContainer *container, GtkWidget *widget); static void gtk_table_remove (GtkContainer *container, GtkWidget *widget); static void gtk_table_forall (GtkContainer *container, gboolean include_internals, GtkCallback callback, gpointer callback_data); static void gtk_table_get_property (GObject *object, guint prop_id, GValue *value, GParamSpec *pspec); static void gtk_table_set_property (GObject *object, guint prop_id, const GValue *value, GParamSpec *pspec); static void gtk_table_set_child_property (GtkContainer *container, GtkWidget *child, guint property_id, const GValue *value, GParamSpec *pspec); static void gtk_table_get_child_property (GtkContainer *container, GtkWidget *child, guint property_id, GValue *value, GParamSpec *pspec); static GType gtk_table_child_type (GtkContainer *container); static void gtk_table_size_request_init (GtkTable *table); static void gtk_table_size_request_pass1 (GtkTable *table); static void gtk_table_size_request_pass2 (GtkTable *table); static void gtk_table_size_request_pass3 (GtkTable *table); static void gtk_table_size_allocate_init (GtkTable *table); static void gtk_table_size_allocate_pass1 (GtkTable *table); static void gtk_table_size_allocate_pass2 (GtkTable *table); G_DEFINE_TYPE_WITH_PRIVATE (GtkTable, gtk_table, GTK_TYPE_CONTAINER) static void gtk_table_class_init (GtkTableClass *class) { GObjectClass *gobject_class = G_OBJECT_CLASS (class); GtkWidgetClass *widget_class = GTK_WIDGET_CLASS (class); GtkContainerClass *container_class = GTK_CONTAINER_CLASS (class); gobject_class->finalize = gtk_table_finalize; gobject_class->get_property = gtk_table_get_property; gobject_class->set_property = gtk_table_set_property; widget_class->get_preferred_width = gtk_table_get_preferred_width; widget_class->get_preferred_height = gtk_table_get_preferred_height; widget_class->size_allocate = gtk_table_size_allocate; widget_class->compute_expand = gtk_table_compute_expand; container_class->add = gtk_table_add; container_class->remove = gtk_table_remove; container_class->forall = gtk_table_forall; container_class->child_type = gtk_table_child_type; container_class->set_child_property = gtk_table_set_child_property; container_class->get_child_property = gtk_table_get_child_property; gtk_container_class_handle_border_width (container_class); g_object_class_install_property (gobject_class, PROP_N_ROWS, g_param_spec_uint ("n-rows", P_("Rows"), P_("The number of rows in the table"), 1, 65535, 1, GTK_PARAM_READWRITE)); g_object_class_install_property (gobject_class, PROP_N_COLUMNS, g_param_spec_uint ("n-columns", P_("Columns"), P_("The number of columns in the table"), 1, 65535, 1, GTK_PARAM_READWRITE)); g_object_class_install_property (gobject_class, PROP_ROW_SPACING, g_param_spec_uint ("row-spacing", P_("Row spacing"), P_("The amount of space between two consecutive rows"), 0, 65535, 0, GTK_PARAM_READWRITE)); g_object_class_install_property (gobject_class, PROP_COLUMN_SPACING, g_param_spec_uint ("column-spacing", P_("Column spacing"), P_("The amount of space between two consecutive columns"), 0, 65535, 0, GTK_PARAM_READWRITE)); g_object_class_install_property (gobject_class, PROP_HOMOGENEOUS, g_param_spec_boolean ("homogeneous", P_("Homogeneous"), P_("If TRUE, the table cells are all the same width/height"), FALSE, GTK_PARAM_READWRITE)); gtk_container_class_install_child_property (container_class, CHILD_PROP_LEFT_ATTACH, g_param_spec_uint ("left-attach", P_("Left attachment"), P_("The column number to attach the left side of the child to"), 0, 65535, 0, GTK_PARAM_READWRITE)); gtk_container_class_install_child_property (container_class, CHILD_PROP_RIGHT_ATTACH, g_param_spec_uint ("right-attach", P_("Right attachment"), P_("The column number to attach the right side of a child widget to"), 1, 65535, 1, GTK_PARAM_READWRITE)); gtk_container_class_install_child_property (container_class, CHILD_PROP_TOP_ATTACH, g_param_spec_uint ("top-attach", P_("Top attachment"), P_("The row number to attach the top of a child widget to"), 0, 65535, 0, GTK_PARAM_READWRITE)); gtk_container_class_install_child_property (container_class, CHILD_PROP_BOTTOM_ATTACH, g_param_spec_uint ("bottom-attach", P_("Bottom attachment"), P_("The row number to attach the bottom of the child to"), 1, 65535, 1, GTK_PARAM_READWRITE)); gtk_container_class_install_child_property (container_class, CHILD_PROP_X_OPTIONS, g_param_spec_flags ("x-options", P_("Horizontal options"), P_("Options specifying the horizontal behaviour of the child"), GTK_TYPE_ATTACH_OPTIONS, GTK_EXPAND | GTK_FILL, GTK_PARAM_READWRITE)); gtk_container_class_install_child_property (container_class, CHILD_PROP_Y_OPTIONS, g_param_spec_flags ("y-options", P_("Vertical options"), P_("Options specifying the vertical behaviour of the child"), GTK_TYPE_ATTACH_OPTIONS, GTK_EXPAND | GTK_FILL, GTK_PARAM_READWRITE)); gtk_container_class_install_child_property (container_class, CHILD_PROP_X_PADDING, g_param_spec_uint ("x-padding", P_("Horizontal padding"), P_("Extra space to put between the child and its left and right neighbors, in pixels"), 0, 65535, 0, GTK_PARAM_READWRITE)); gtk_container_class_install_child_property (container_class, CHILD_PROP_Y_PADDING, g_param_spec_uint ("y-padding", P_("Vertical padding"), P_("Extra space to put between the child and its upper and lower neighbors, in pixels"), 0, 65535, 0, GTK_PARAM_READWRITE)); } static void gtk_table_compute_expand (GtkWidget *widget, gboolean *hexpand_p, gboolean *vexpand_p) { GtkTable *table = GTK_TABLE (widget); GtkTablePrivate *priv = table->priv; GList *list; GtkTableChild *child; gboolean hexpand; gboolean vexpand; hexpand = FALSE; vexpand = FALSE; for (list = priv->children; list; list = list->next) { child = list->data; if (!hexpand) hexpand = child->xexpand || gtk_widget_compute_expand (child->widget, GTK_ORIENTATION_HORIZONTAL); if (!vexpand) vexpand = child->yexpand || gtk_widget_compute_expand (child->widget, GTK_ORIENTATION_VERTICAL); if (hexpand && vexpand) break; } *hexpand_p = hexpand; *vexpand_p = vexpand; } static GType gtk_table_child_type (GtkContainer *container) { return GTK_TYPE_WIDGET; } static void gtk_table_get_property (GObject *object, guint prop_id, GValue *value, GParamSpec *pspec) { GtkTable *table = GTK_TABLE (object); GtkTablePrivate *priv = table->priv; switch (prop_id) { case PROP_N_ROWS: g_value_set_uint (value, priv->nrows); break; case PROP_N_COLUMNS: g_value_set_uint (value, priv->ncols); break; case PROP_ROW_SPACING: g_value_set_uint (value, priv->row_spacing); break; case PROP_COLUMN_SPACING: g_value_set_uint (value, priv->column_spacing); break; case PROP_HOMOGENEOUS: g_value_set_boolean (value, priv->homogeneous); break; default: G_OBJECT_WARN_INVALID_PROPERTY_ID (object, prop_id, pspec); break; } } static void gtk_table_set_property (GObject *object, guint prop_id, const GValue *value, GParamSpec *pspec) { GtkTable *table = GTK_TABLE (object); GtkTablePrivate *priv = table->priv; switch (prop_id) { case PROP_N_ROWS: gtk_table_resize (table, g_value_get_uint (value), priv->ncols); break; case PROP_N_COLUMNS: gtk_table_resize (table, priv->nrows, g_value_get_uint (value)); break; case PROP_ROW_SPACING: gtk_table_set_row_spacings (table, g_value_get_uint (value)); break; case PROP_COLUMN_SPACING: gtk_table_set_col_spacings (table, g_value_get_uint (value)); break; case PROP_HOMOGENEOUS: gtk_table_set_homogeneous (table, g_value_get_boolean (value)); break; default: G_OBJECT_WARN_INVALID_PROPERTY_ID (object, prop_id, pspec); break; } } static void gtk_table_set_child_property (GtkContainer *container, GtkWidget *child, guint property_id, const GValue *value, GParamSpec *pspec) { GtkTable *table = GTK_TABLE (container); GtkTablePrivate *priv = table->priv; GtkTableChild *table_child; GList *list; table_child = NULL; for (list = priv->children; list; list = list->next) { table_child = list->data; if (table_child->widget == child) break; } if (!list) { GTK_CONTAINER_WARN_INVALID_CHILD_PROPERTY_ID (container, property_id, pspec); return; } switch (property_id) { case CHILD_PROP_LEFT_ATTACH: table_child->left_attach = g_value_get_uint (value); if (table_child->right_attach <= table_child->left_attach) table_child->right_attach = table_child->left_attach + 1; if (table_child->right_attach >= priv->ncols) gtk_table_resize (table, priv->nrows, table_child->right_attach); break; case CHILD_PROP_RIGHT_ATTACH: table_child->right_attach = g_value_get_uint (value); if (table_child->right_attach <= table_child->left_attach) table_child->left_attach = table_child->right_attach - 1; if (table_child->right_attach >= priv->ncols) gtk_table_resize (table, priv->nrows, table_child->right_attach); break; case CHILD_PROP_TOP_ATTACH: table_child->top_attach = g_value_get_uint (value); if (table_child->bottom_attach <= table_child->top_attach) table_child->bottom_attach = table_child->top_attach + 1; if (table_child->bottom_attach >= priv->nrows) gtk_table_resize (table, table_child->bottom_attach, priv->ncols); break; case CHILD_PROP_BOTTOM_ATTACH: table_child->bottom_attach = g_value_get_uint (value); if (table_child->bottom_attach <= table_child->top_attach) table_child->top_attach = table_child->bottom_attach - 1; if (table_child->bottom_attach >= priv->nrows) gtk_table_resize (table, table_child->bottom_attach, priv->ncols); break; case CHILD_PROP_X_OPTIONS: { gboolean xexpand; xexpand = (g_value_get_flags (value) & GTK_EXPAND) != 0; if (table_child->xexpand != xexpand) { table_child->xexpand = xexpand; gtk_widget_queue_compute_expand (GTK_WIDGET (table)); } table_child->xshrink = (g_value_get_flags (value) & GTK_SHRINK) != 0; table_child->xfill = (g_value_get_flags (value) & GTK_FILL) != 0; } break; case CHILD_PROP_Y_OPTIONS: { gboolean yexpand; yexpand = (g_value_get_flags (value) & GTK_EXPAND) != 0; if (table_child->yexpand != yexpand) { table_child->yexpand = yexpand; gtk_widget_queue_compute_expand (GTK_WIDGET (table)); } table_child->yshrink = (g_value_get_flags (value) & GTK_SHRINK) != 0; table_child->yfill = (g_value_get_flags (value) & GTK_FILL) != 0; } break; case CHILD_PROP_X_PADDING: table_child->xpadding = g_value_get_uint (value); break; case CHILD_PROP_Y_PADDING: table_child->ypadding = g_value_get_uint (value); break; default: GTK_CONTAINER_WARN_INVALID_CHILD_PROPERTY_ID (container, property_id, pspec); break; } if (gtk_widget_get_visible (child) && gtk_widget_get_visible (GTK_WIDGET (table))) gtk_widget_queue_resize (child); } static void gtk_table_get_child_property (GtkContainer *container, GtkWidget *child, guint property_id, GValue *value, GParamSpec *pspec) { GtkTable *table = GTK_TABLE (container); GtkTablePrivate *priv = table->priv; GtkTableChild *table_child; GList *list; table_child = NULL; for (list = priv->children; list; list = list->next) { table_child = list->data; if (table_child->widget == child) break; } if (!list) { GTK_CONTAINER_WARN_INVALID_CHILD_PROPERTY_ID (container, property_id, pspec); return; } switch (property_id) { case CHILD_PROP_LEFT_ATTACH: g_value_set_uint (value, table_child->left_attach); break; case CHILD_PROP_RIGHT_ATTACH: g_value_set_uint (value, table_child->right_attach); break; case CHILD_PROP_TOP_ATTACH: g_value_set_uint (value, table_child->top_attach); break; case CHILD_PROP_BOTTOM_ATTACH: g_value_set_uint (value, table_child->bottom_attach); break; case CHILD_PROP_X_OPTIONS: g_value_set_flags (value, (table_child->xexpand * GTK_EXPAND | table_child->xshrink * GTK_SHRINK | table_child->xfill * GTK_FILL)); break; case CHILD_PROP_Y_OPTIONS: g_value_set_flags (value, (table_child->yexpand * GTK_EXPAND | table_child->yshrink * GTK_SHRINK | table_child->yfill * GTK_FILL)); break; case CHILD_PROP_X_PADDING: g_value_set_uint (value, table_child->xpadding); break; case CHILD_PROP_Y_PADDING: g_value_set_uint (value, table_child->ypadding); break; default: GTK_CONTAINER_WARN_INVALID_CHILD_PROPERTY_ID (container, property_id, pspec); break; } } static void gtk_table_init (GtkTable *table) { GtkTablePrivate *priv; table->priv = gtk_table_get_instance_private (table); priv = table->priv; gtk_widget_set_has_window (GTK_WIDGET (table), FALSE); gtk_widget_set_redraw_on_allocate (GTK_WIDGET (table), FALSE); priv->children = NULL; priv->rows = NULL; priv->cols = NULL; priv->nrows = 0; priv->ncols = 0; priv->column_spacing = 0; priv->row_spacing = 0; priv->homogeneous = FALSE; gtk_table_resize (table, 1, 1); } /** * gtk_table_new: * @rows: The number of rows the new table should have. * @columns: The number of columns the new table should have. * @homogeneous: If set to %TRUE, all table cells are resized to the size of * the cell containing the largest widget. * * Used to create a new table widget. An initial size must be given by * specifying how many rows and columns the table should have, although * this can be changed later with gtk_table_resize(). @rows and @columns * must both be in the range 1 .. 65535. For historical reasons, 0 is accepted * as well and is silently interpreted as 1. * * Returns: A pointer to the newly created table widget. * * Deprecated: 3.4: Use gtk_grid_new(). */ GtkWidget* gtk_table_new (guint rows, guint columns, gboolean homogeneous) { GtkTable *table; GtkTablePrivate *priv; if (rows == 0) rows = 1; if (columns == 0) columns = 1; table = g_object_new (GTK_TYPE_TABLE, NULL); priv = table->priv; priv->homogeneous = (homogeneous ? TRUE : FALSE); gtk_table_resize (table, rows, columns); return GTK_WIDGET (table); } /** * gtk_table_resize: * @table: The #GtkTable you wish to change the size of. * @rows: The new number of rows. * @columns: The new number of columns. * * If you need to change a table’s size after * it has been created, this function allows you to do so. * * Deprecated: 3.4: #GtkGrid resizes automatically. */ void gtk_table_resize (GtkTable *table, guint n_rows, guint n_cols) { GtkTablePrivate *priv; g_return_if_fail (GTK_IS_TABLE (table)); g_return_if_fail (n_rows > 0 && n_rows <= 65535); g_return_if_fail (n_cols > 0 && n_cols <= 65535); priv = table->priv; n_rows = MAX (n_rows, 1); n_cols = MAX (n_cols, 1); if (n_rows != priv->nrows || n_cols != priv->ncols) { GList *list; for (list = priv->children; list; list = list->next) { GtkTableChild *child; child = list->data; n_rows = MAX (n_rows, child->bottom_attach); n_cols = MAX (n_cols, child->right_attach); } if (n_rows != priv->nrows) { guint i; i = priv->nrows; priv->nrows = n_rows; priv->rows = g_realloc (priv->rows, priv->nrows * sizeof (GtkTableRowCol)); for (; i < priv->nrows; i++) { priv->rows[i].requisition = 0; priv->rows[i].allocation = 0; priv->rows[i].spacing = priv->row_spacing; priv->rows[i].need_expand = 0; priv->rows[i].need_shrink = 0; priv->rows[i].expand = 0; priv->rows[i].shrink = 0; } g_object_notify (G_OBJECT (table), "n-rows"); } if (n_cols != priv->ncols) { guint i; i = priv->ncols; priv->ncols = n_cols; priv->cols = g_realloc (priv->cols, priv->ncols * sizeof (GtkTableRowCol)); for (; i < priv->ncols; i++) { priv->cols[i].requisition = 0; priv->cols[i].allocation = 0; priv->cols[i].spacing = priv->column_spacing; priv->cols[i].need_expand = 0; priv->cols[i].need_shrink = 0; priv->cols[i].expand = 0; priv->cols[i].shrink = 0; } g_object_notify (G_OBJECT (table), "n-columns"); } } } /** * gtk_table_attach: * @table: The #GtkTable to add a new widget to. * @child: The widget to add. * @left_attach: the column number to attach the left side of a child widget to. * @right_attach: the column number to attach the right side of a child widget to. * @top_attach: the row number to attach the top of a child widget to. * @bottom_attach: the row number to attach the bottom of a child widget to. * @xoptions: Used to specify the properties of the child widget when the table is resized. * @yoptions: The same as xoptions, except this field determines behaviour of vertical resizing. * @xpadding: An integer value specifying the padding on the left and right of the widget being added to the table. * @ypadding: The amount of padding above and below the child widget. * * Adds a widget to a table. The number of 'cells' that a widget will occupy is * specified by @left_attach, @right_attach, @top_attach and @bottom_attach. * These each represent the leftmost, rightmost, uppermost and lowest column * and row numbers of the table. (Columns and rows are indexed from zero). * * To make a button occupy the lower right cell of a 2x2 table, use * |[ * gtk_table_attach (table, button, * 1, 2, // left, right attach * 1, 2, // top, bottom attach * xoptions, yoptions, * xpadding, ypadding); * ]| * If you want to make the button span the entire bottom row, use @left_attach == 0 and @right_attach = 2 instead. * * Deprecated: 3.4: Use gtk_grid_attach() with #GtkGrid. Note that the attach * arguments differ between those two functions. */ void gtk_table_attach (GtkTable *table, GtkWidget *child, guint left_attach, guint right_attach, guint top_attach, guint bottom_attach, GtkAttachOptions xoptions, GtkAttachOptions yoptions, guint xpadding, guint ypadding) { GtkTablePrivate *priv; GtkTableChild *table_child; g_return_if_fail (GTK_IS_TABLE (table)); g_return_if_fail (GTK_IS_WIDGET (child)); g_return_if_fail (gtk_widget_get_parent (child) == NULL); /* g_return_if_fail (left_attach >= 0); */ g_return_if_fail (left_attach < right_attach); /* g_return_if_fail (top_attach >= 0); */ g_return_if_fail (top_attach < bottom_attach); priv = table->priv; if (right_attach >= priv->ncols) gtk_table_resize (table, priv->nrows, right_attach); if (bottom_attach >= priv->nrows) gtk_table_resize (table, bottom_attach, priv->ncols); table_child = g_new (GtkTableChild, 1); table_child->widget = child; table_child->left_attach = left_attach; table_child->right_attach = right_attach; table_child->top_attach = top_attach; table_child->bottom_attach = bottom_attach; table_child->xexpand = (xoptions & GTK_EXPAND) != 0; table_child->xshrink = (xoptions & GTK_SHRINK) != 0; table_child->xfill = (xoptions & GTK_FILL) != 0; table_child->xpadding = xpadding; table_child->yexpand = (yoptions & GTK_EXPAND) != 0; table_child->yshrink = (yoptions & GTK_SHRINK) != 0; table_child->yfill = (yoptions & GTK_FILL) != 0; table_child->ypadding = ypadding; priv->children = g_list_prepend (priv->children, table_child); gtk_widget_set_parent (child, GTK_WIDGET (table)); } /** * gtk_table_attach_defaults: * @table: The table to add a new child widget to. * @widget: The child widget to add. * @left_attach: The column number to attach the left side of the child widget to. * @right_attach: The column number to attach the right side of the child widget to. * @top_attach: The row number to attach the top of the child widget to. * @bottom_attach: The row number to attach the bottom of the child widget to. * * As there are many options associated with gtk_table_attach(), this convenience * function provides the programmer with a means to add children to a table with * identical padding and expansion options. The values used for the #GtkAttachOptions * are `GTK_EXPAND | GTK_FILL`, and the padding is set to 0. * * Deprecated: 3.4: Use gtk_grid_attach() with #GtkGrid. Note that the attach * arguments differ between those two functions. */ void gtk_table_attach_defaults (GtkTable *table, GtkWidget *widget, guint left_attach, guint right_attach, guint top_attach, guint bottom_attach) { gtk_table_attach (table, widget, left_attach, right_attach, top_attach, bottom_attach, GTK_EXPAND | GTK_FILL, GTK_EXPAND | GTK_FILL, 0, 0); } /** * gtk_table_set_row_spacing: * @table: a #GtkTable containing the row whose properties you wish to change. * @row: row number whose spacing will be changed. * @spacing: number of pixels that the spacing should take up. * * Changes the space between a given table row and the subsequent row. * * Deprecated: 3.4: Use gtk_widget_set_margin_top() and * gtk_widget_set_margin_bottom() on the widgets contained in the row if * you need this functionality. #GtkGrid does not support per-row spacing. */ void gtk_table_set_row_spacing (GtkTable *table, guint row, guint spacing) { GtkTablePrivate *priv; g_return_if_fail (GTK_IS_TABLE (table)); priv = table->priv; g_return_if_fail (row < priv->nrows); if (priv->rows[row].spacing != spacing) { priv->rows[row].spacing = spacing; if (gtk_widget_get_visible (GTK_WIDGET (table))) gtk_widget_queue_resize (GTK_WIDGET (table)); } } /** * gtk_table_get_row_spacing: * @table: a #GtkTable * @row: a row in the table, 0 indicates the first row * * Gets the amount of space between row @row, and * row @row + 1. See gtk_table_set_row_spacing(). * * Return value: the row spacing * * Deprecated: 3.4: #GtkGrid does not offer a replacement for this * functionality. **/ guint gtk_table_get_row_spacing (GtkTable *table, guint row) { GtkTablePrivate *priv; g_return_val_if_fail (GTK_IS_TABLE (table), 0); priv = table->priv; g_return_val_if_fail (row < priv->nrows - 1, 0); return priv->rows[row].spacing; } /** * gtk_table_set_col_spacing: * @table: a #GtkTable. * @column: the column whose spacing should be changed. * @spacing: number of pixels that the spacing should take up. * * Alters the amount of space between a given table column and the following * column. * * Deprecated: 3.4: Use gtk_widget_set_margin_start() and * gtk_widget_set_margin_end() on the widgets contained in the row if * you need this functionality. #GtkGrid does not support per-row spacing. */ void gtk_table_set_col_spacing (GtkTable *table, guint column, guint spacing) { GtkTablePrivate *priv; g_return_if_fail (GTK_IS_TABLE (table)); priv = table->priv; g_return_if_fail (column < priv->ncols); if (priv->cols[column].spacing != spacing) { priv->cols[column].spacing = spacing; if (gtk_widget_get_visible (GTK_WIDGET (table))) gtk_widget_queue_resize (GTK_WIDGET (table)); } } /** * gtk_table_get_col_spacing: * @table: a #GtkTable * @column: a column in the table, 0 indicates the first column * * Gets the amount of space between column @col, and * column @col + 1. See gtk_table_set_col_spacing(). * * Return value: the column spacing * * Deprecated: 3.4: #GtkGrid does not offer a replacement for this * functionality. **/ guint gtk_table_get_col_spacing (GtkTable *table, guint column) { GtkTablePrivate *priv; g_return_val_if_fail (GTK_IS_TABLE (table), 0); priv = table->priv; g_return_val_if_fail (column < priv->ncols, 0); return priv->cols[column].spacing; } /** * gtk_table_set_row_spacings: * @table: a #GtkTable. * @spacing: the number of pixels of space to place between every row in the table. * * Sets the space between every row in @table equal to @spacing. * * Deprecated: 3.4: Use gtk_grid_set_row_spacing() with #GtkGrid. */ void gtk_table_set_row_spacings (GtkTable *table, guint spacing) { GtkTablePrivate *priv; guint row; g_return_if_fail (GTK_IS_TABLE (table)); priv = table->priv; priv->row_spacing = spacing; for (row = 0; row < priv->nrows; row++) priv->rows[row].spacing = spacing; if (gtk_widget_get_visible (GTK_WIDGET (table))) gtk_widget_queue_resize (GTK_WIDGET (table)); g_object_notify (G_OBJECT (table), "row-spacing"); } /** * gtk_table_get_default_row_spacing: * @table: a #GtkTable * * Gets the default row spacing for the table. This is * the spacing that will be used for newly added rows. * (See gtk_table_set_row_spacings()) * * Return value: the default row spacing * * Deprecated: 3.4: Use gtk_grid_get_row_spacing() with #GtkGrid. **/ guint gtk_table_get_default_row_spacing (GtkTable *table) { g_return_val_if_fail (GTK_IS_TABLE (table), 0); return table->priv->row_spacing; } /** * gtk_table_set_col_spacings: * @table: a #GtkTable. * @spacing: the number of pixels of space to place between every column * in the table. * * Sets the space between every column in @table equal to @spacing. * * Deprecated: 3.4: Use gtk_grid_set_column_spacing() with #GtkGrid. */ void gtk_table_set_col_spacings (GtkTable *table, guint spacing) { GtkTablePrivate *priv; guint col; g_return_if_fail (GTK_IS_TABLE (table)); priv = table->priv; priv->column_spacing = spacing; for (col = 0; col < priv->ncols; col++) priv->cols[col].spacing = spacing; if (gtk_widget_get_visible (GTK_WIDGET (table))) gtk_widget_queue_resize (GTK_WIDGET (table)); g_object_notify (G_OBJECT (table), "column-spacing"); } /** * gtk_table_get_default_col_spacing: * @table: a #GtkTable * * Gets the default column spacing for the table. This is * the spacing that will be used for newly added columns. * (See gtk_table_set_col_spacings()) * * Return value: the default column spacing * * Deprecated: 3.4: Use gtk_grid_get_column_spacing() with #GtkGrid. **/ guint gtk_table_get_default_col_spacing (GtkTable *table) { g_return_val_if_fail (GTK_IS_TABLE (table), 0); return table->priv->column_spacing; } /** * gtk_table_set_homogeneous: * @table: The #GtkTable you wish to set the homogeneous properties of. * @homogeneous: Set to %TRUE to ensure all table cells are the same size. Set * to %FALSE if this is not your desired behaviour. * * Changes the homogenous property of table cells, ie. whether all cells are * an equal size or not. * * Deprecated: 3.4: Use gtk_grid_set_row_homogeneous() and * gtk_grid_set_column_homogeneous() with #GtkGrid. */ void gtk_table_set_homogeneous (GtkTable *table, gboolean homogeneous) { GtkTablePrivate *priv; g_return_if_fail (GTK_IS_TABLE (table)); priv = table->priv; homogeneous = (homogeneous != 0); if (homogeneous != priv->homogeneous) { priv->homogeneous = homogeneous; if (gtk_widget_get_visible (GTK_WIDGET (table))) gtk_widget_queue_resize (GTK_WIDGET (table)); g_object_notify (G_OBJECT (table), "homogeneous"); } } /** * gtk_table_get_homogeneous: * @table: a #GtkTable * * Returns whether the table cells are all constrained to the same * width and height. (See gtk_table_set_homogeneous ()) * * Return value: %TRUE if the cells are all constrained to the same size * * Deprecated: 3.4: Use gtk_grid_get_row_homogeneous() and * gtk_grid_get_column_homogeneous() with #GtkGrid. **/ gboolean gtk_table_get_homogeneous (GtkTable *table) { g_return_val_if_fail (GTK_IS_TABLE (table), FALSE); return table->priv->homogeneous; } /** * gtk_table_get_size: * @table: a #GtkTable * @rows: (out) (allow-none): return location for the number of * rows, or %NULL * @columns: (out) (allow-none): return location for the number * of columns, or %NULL * * Gets the number of rows and columns in the table. * * Since: 2.22 * * Deprecated: 3.4: #GtkGrid does not expose the number of columns and * rows. **/ void gtk_table_get_size (GtkTable *table, guint *rows, guint *columns) { GtkTablePrivate *priv; g_return_if_fail (GTK_IS_TABLE (table)); priv = table->priv; if (rows) *rows = priv->nrows; if (columns) *columns = priv->ncols; } static void gtk_table_finalize (GObject *object) { GtkTable *table = GTK_TABLE (object); GtkTablePrivate *priv = table->priv; g_free (priv->rows); g_free (priv->cols); G_OBJECT_CLASS (gtk_table_parent_class)->finalize (object); } static void gtk_table_get_preferred_width (GtkWidget *widget, gint *minimum, gint *natural) { GtkTable *table = GTK_TABLE (widget); GtkTablePrivate *priv = table->priv; gint col; gtk_table_size_request_init (table); gtk_table_size_request_pass1 (table); gtk_table_size_request_pass2 (table); gtk_table_size_request_pass3 (table); gtk_table_size_request_pass2 (table); *minimum = 0; for (col = 0; col < priv->ncols; col++) *minimum += priv->cols[col].requisition; for (col = 0; col + 1 < priv->ncols; col++) *minimum += priv->cols[col].spacing; *natural = *minimum; } static void gtk_table_get_preferred_height (GtkWidget *widget, gint *minimum, gint *natural) { GtkTable *table = GTK_TABLE (widget); GtkTablePrivate *priv = table->priv; gint row; gtk_table_size_request_init (table); gtk_table_size_request_pass1 (table); gtk_table_size_request_pass2 (table); gtk_table_size_request_pass3 (table); gtk_table_size_request_pass2 (table); *minimum = 0; for (row = 0; row < priv->nrows; row++) *minimum += priv->rows[row].requisition; for (row = 0; row + 1 < priv->nrows; row++) *minimum += priv->rows[row].spacing; *natural = *minimum; } static void gtk_table_size_allocate (GtkWidget *widget, GtkAllocation *allocation) { GtkTable *table = GTK_TABLE (widget); gtk_widget_set_allocation (widget, allocation); gtk_table_size_allocate_init (table); gtk_table_size_allocate_pass1 (table); gtk_table_size_allocate_pass2 (table); } static void gtk_table_add (GtkContainer *container, GtkWidget *widget) { gtk_table_attach_defaults (GTK_TABLE (container), widget, 0, 1, 0, 1); } static void gtk_table_remove (GtkContainer *container, GtkWidget *widget) { GtkTable *table = GTK_TABLE (container); GtkTablePrivate *priv = table->priv; GtkTableChild *child; GtkWidget *widget_container = GTK_WIDGET (container); GList *children; children = priv->children; while (children) { child = children->data; children = children->next; if (child->widget == widget) { gboolean was_visible = gtk_widget_get_visible (widget); gtk_widget_unparent (widget); priv->children = g_list_remove (priv->children, child); g_free (child); if (was_visible && gtk_widget_get_visible (widget_container)) gtk_widget_queue_resize (widget_container); break; } } } static void gtk_table_forall (GtkContainer *container, gboolean include_internals, GtkCallback callback, gpointer callback_data) { GtkTable *table = GTK_TABLE (container); GtkTablePrivate *priv = table->priv; GtkTableChild *child; GList *children; children = priv->children; while (children) { child = children->data; children = children->next; (* callback) (child->widget, callback_data); } } static void gtk_table_size_request_init (GtkTable *table) { GtkTablePrivate *priv = table->priv; GtkTableChild *child; GList *children; gint row, col; for (row = 0; row < priv->nrows; row++) { priv->rows[row].requisition = 0; priv->rows[row].expand = FALSE; } for (col = 0; col < priv->ncols; col++) { priv->cols[col].requisition = 0; priv->cols[col].expand = FALSE; } children = priv->children; while (children) { child = children->data; children = children->next; if (child->left_attach == (child->right_attach - 1) && (child->xexpand || gtk_widget_compute_expand (child->widget, GTK_ORIENTATION_HORIZONTAL))) priv->cols[child->left_attach].expand = TRUE; if (child->top_attach == (child->bottom_attach - 1) && (child->yexpand || gtk_widget_compute_expand (child->widget, GTK_ORIENTATION_VERTICAL))) priv->rows[child->top_attach].expand = TRUE; } } static void gtk_table_size_request_pass1 (GtkTable *table) { GtkTablePrivate *priv = table->priv; GtkTableChild *child; GList *children; gint width; gint height; children = priv->children; while (children) { child = children->data; children = children->next; if (gtk_widget_get_visible (child->widget)) { GtkRequisition child_requisition; gtk_widget_get_preferred_size (child->widget, &child_requisition, NULL); /* Child spans a single column. */ if (child->left_attach == (child->right_attach - 1)) { width = child_requisition.width + child->xpadding * 2; priv->cols[child->left_attach].requisition = MAX (priv->cols[child->left_attach].requisition, width); } /* Child spans a single row. */ if (child->top_attach == (child->bottom_attach - 1)) { height = child_requisition.height + child->ypadding * 2; priv->rows[child->top_attach].requisition = MAX (priv->rows[child->top_attach].requisition, height); } } } } static void gtk_table_size_request_pass2 (GtkTable *table) { GtkTablePrivate *priv = table->priv; gint max_width; gint max_height; gint row, col; if (priv->homogeneous) { max_width = 0; max_height = 0; for (col = 0; col < priv->ncols; col++) max_width = MAX (max_width, priv->cols[col].requisition); for (row = 0; row < priv->nrows; row++) max_height = MAX (max_height, priv->rows[row].requisition); for (col = 0; col < priv->ncols; col++) priv->cols[col].requisition = max_width; for (row = 0; row < priv->nrows; row++) priv->rows[row].requisition = max_height; } } static void gtk_table_size_request_pass3 (GtkTable *table) { GtkTablePrivate *priv = table->priv; GtkTableChild *child; GList *children; gint width, height; gint row, col; gint extra; children = priv->children; while (children) { child = children->data; children = children->next; if (gtk_widget_get_visible (child->widget)) { /* Child spans multiple columns. */ if (child->left_attach != (child->right_attach - 1)) { GtkRequisition child_requisition; gtk_widget_get_preferred_size (child->widget, &child_requisition, NULL); /* Check and see if there is already enough space * for the child. */ width = 0; for (col = child->left_attach; col < child->right_attach; col++) { width += priv->cols[col].requisition; if ((col + 1) < child->right_attach) width += priv->cols[col].spacing; } /* If we need to request more space for this child to fill * its requisition, then divide up the needed space amongst the * columns it spans, favoring expandable columns if any. */ if (width < child_requisition.width + child->xpadding * 2) { gint n_expand = 0; gboolean force_expand = FALSE; width = child_requisition.width + child->xpadding * 2 - width; for (col = child->left_attach; col < child->right_attach; col++) if (priv->cols[col].expand) n_expand++; if (n_expand == 0) { n_expand = (child->right_attach - child->left_attach); force_expand = TRUE; } for (col = child->left_attach; col < child->right_attach; col++) if (force_expand || priv->cols[col].expand) { extra = width / n_expand; priv->cols[col].requisition += extra; width -= extra; n_expand--; } } } /* Child spans multiple rows. */ if (child->top_attach != (child->bottom_attach - 1)) { GtkRequisition child_requisition; gtk_widget_get_preferred_size (child->widget, &child_requisition, NULL); /* Check and see if there is already enough space * for the child. */ height = 0; for (row = child->top_attach; row < child->bottom_attach; row++) { height += priv->rows[row].requisition; if ((row + 1) < child->bottom_attach) height += priv->rows[row].spacing; } /* If we need to request more space for this child to fill * its requisition, then divide up the needed space amongst the * rows it spans, favoring expandable rows if any. */ if (height < child_requisition.height + child->ypadding * 2) { gint n_expand = 0; gboolean force_expand = FALSE; height = child_requisition.height + child->ypadding * 2 - height; for (row = child->top_attach; row < child->bottom_attach; row++) { if (priv->rows[row].expand) n_expand++; } if (n_expand == 0) { n_expand = (child->bottom_attach - child->top_attach); force_expand = TRUE; } for (row = child->top_attach; row < child->bottom_attach; row++) if (force_expand || priv->rows[row].expand) { extra = height / n_expand; priv->rows[row].requisition += extra; height -= extra; n_expand--; } } } } } } static void gtk_table_size_allocate_init (GtkTable *table) { GtkTablePrivate *priv = table->priv; GtkTableChild *child; GList *children; gint row, col; gint has_expand; gint has_shrink; /* Initialize the rows and cols. * By default, rows and cols do not expand and do shrink. * Those values are modified by the children that occupy * the rows and cols. */ for (col = 0; col < priv->ncols; col++) { priv->cols[col].allocation = priv->cols[col].requisition; priv->cols[col].need_expand = FALSE; priv->cols[col].need_shrink = TRUE; priv->cols[col].expand = FALSE; priv->cols[col].shrink = TRUE; priv->cols[col].empty = TRUE; } for (row = 0; row < priv->nrows; row++) { priv->rows[row].allocation = priv->rows[row].requisition; priv->rows[row].need_expand = FALSE; priv->rows[row].need_shrink = TRUE; priv->rows[row].expand = FALSE; priv->rows[row].shrink = TRUE; priv->rows[row].empty = TRUE; } /* Loop over all the children and adjust the row and col values * based on whether the children want to be allowed to expand * or shrink. This loop handles children that occupy a single * row or column. */ children = priv->children; while (children) { child = children->data; children = children->next; if (gtk_widget_get_visible (child->widget)) { if (child->left_attach == (child->right_attach - 1)) { if (child->xexpand || gtk_widget_compute_expand (child->widget, GTK_ORIENTATION_HORIZONTAL)) priv->cols[child->left_attach].expand = TRUE; if (!child->xshrink) priv->cols[child->left_attach].shrink = FALSE; priv->cols[child->left_attach].empty = FALSE; } if (child->top_attach == (child->bottom_attach - 1)) { if (child->yexpand || gtk_widget_compute_expand (child->widget, GTK_ORIENTATION_VERTICAL)) priv->rows[child->top_attach].expand = TRUE; if (!child->yshrink) priv->rows[child->top_attach].shrink = FALSE; priv->rows[child->top_attach].empty = FALSE; } } } /* Loop over all the children again and this time handle children * which span multiple rows or columns. */ children = priv->children; while (children) { child = children->data; children = children->next; if (gtk_widget_get_visible (child->widget)) { if (child->left_attach != (child->right_attach - 1)) { for (col = child->left_attach; col < child->right_attach; col++) priv->cols[col].empty = FALSE; if (child->xexpand) { has_expand = FALSE; for (col = child->left_attach; col < child->right_attach; col++) if (priv->cols[col].expand) { has_expand = TRUE; break; } if (!has_expand) for (col = child->left_attach; col < child->right_attach; col++) priv->cols[col].need_expand = TRUE; } if (!child->xshrink) { has_shrink = TRUE; for (col = child->left_attach; col < child->right_attach; col++) if (!priv->cols[col].shrink) { has_shrink = FALSE; break; } if (has_shrink) for (col = child->left_attach; col < child->right_attach; col++) priv->cols[col].need_shrink = FALSE; } } if (child->top_attach != (child->bottom_attach - 1)) { for (row = child->top_attach; row < child->bottom_attach; row++) priv->rows[row].empty = FALSE; if (child->yexpand) { has_expand = FALSE; for (row = child->top_attach; row < child->bottom_attach; row++) if (priv->rows[row].expand) { has_expand = TRUE; break; } if (!has_expand) for (row = child->top_attach; row < child->bottom_attach; row++) priv->rows[row].need_expand = TRUE; } if (!child->yshrink) { has_shrink = TRUE; for (row = child->top_attach; row < child->bottom_attach; row++) if (!priv->rows[row].shrink) { has_shrink = FALSE; break; } if (has_shrink) for (row = child->top_attach; row < child->bottom_attach; row++) priv->rows[row].need_shrink = FALSE; } } } } /* Loop over the columns and set the expand and shrink values * if the column can be expanded or shrunk. */ for (col = 0; col < priv->ncols; col++) { if (priv->cols[col].empty) { priv->cols[col].expand = FALSE; priv->cols[col].shrink = FALSE; } else { if (priv->cols[col].need_expand) priv->cols[col].expand = TRUE; if (!priv->cols[col].need_shrink) priv->cols[col].shrink = FALSE; } } /* Loop over the rows and set the expand and shrink values * if the row can be expanded or shrunk. */ for (row = 0; row < priv->nrows; row++) { if (priv->rows[row].empty) { priv->rows[row].expand = FALSE; priv->rows[row].shrink = FALSE; } else { if (priv->rows[row].need_expand) priv->rows[row].expand = TRUE; if (!priv->rows[row].need_shrink) priv->rows[row].shrink = FALSE; } } } static void gtk_table_size_allocate_pass1 (GtkTable *table) { GtkTablePrivate *priv = table->priv; GtkAllocation allocation; gint real_width; gint real_height; gint width, height; gint row, col; gint nexpand; gint nshrink; gint extra; /* If we were allocated more space than we requested * then we have to expand any expandable rows and columns * to fill in the extra space. */ gtk_widget_get_allocation (GTK_WIDGET (table), &allocation); real_width = allocation.width; real_height = allocation.height; if (priv->homogeneous) { if (!priv->children) nexpand = 1; else { nexpand = 0; for (col = 0; col < priv->ncols; col++) if (priv->cols[col].expand) { nexpand += 1; break; } } if (nexpand) { width = real_width; for (col = 0; col + 1 < priv->ncols; col++) width -= priv->cols[col].spacing; for (col = 0; col < priv->ncols; col++) { extra = width / (priv->ncols - col); priv->cols[col].allocation = MAX (1, extra); width -= extra; } } } else { width = 0; nexpand = 0; nshrink = 0; for (col = 0; col < priv->ncols; col++) { width += priv->cols[col].requisition; if (priv->cols[col].expand) nexpand += 1; if (priv->cols[col].shrink) nshrink += 1; } for (col = 0; col + 1 < priv->ncols; col++) width += priv->cols[col].spacing; /* Check to see if we were allocated more width than we requested. */ if ((width < real_width) && (nexpand >= 1)) { width = real_width - width; for (col = 0; col < priv->ncols; col++) if (priv->cols[col].expand) { extra = width / nexpand; priv->cols[col].allocation += extra; width -= extra; nexpand -= 1; } } /* Check to see if we were allocated less width than we requested, * then shrink until we fit the size give. */ if (width > real_width) { gint total_nshrink = nshrink; extra = width - real_width; while (total_nshrink > 0 && extra > 0) { nshrink = total_nshrink; for (col = 0; col < priv->ncols; col++) if (priv->cols[col].shrink) { gint allocation = priv->cols[col].allocation; priv->cols[col].allocation = MAX (1, (gint) priv->cols[col].allocation - extra / nshrink); extra -= allocation - priv->cols[col].allocation; nshrink -= 1; if (priv->cols[col].allocation < 2) { total_nshrink -= 1; priv->cols[col].shrink = FALSE; } } } } } if (priv->homogeneous) { if (!priv->children) nexpand = 1; else { nexpand = 0; for (row = 0; row < priv->nrows; row++) if (priv->rows[row].expand) { nexpand += 1; break; } } if (nexpand) { height = real_height; for (row = 0; row + 1 < priv->nrows; row++) height -= priv->rows[row].spacing; for (row = 0; row < priv->nrows; row++) { extra = height / (priv->nrows - row); priv->rows[row].allocation = MAX (1, extra); height -= extra; } } } else { height = 0; nexpand = 0; nshrink = 0; for (row = 0; row < priv->nrows; row++) { height += priv->rows[row].requisition; if (priv->rows[row].expand) nexpand += 1; if (priv->rows[row].shrink) nshrink += 1; } for (row = 0; row + 1 < priv->nrows; row++) height += priv->rows[row].spacing; /* Check to see if we were allocated more height than we requested. */ if ((height < real_height) && (nexpand >= 1)) { height = real_height - height; for (row = 0; row < priv->nrows; row++) if (priv->rows[row].expand) { extra = height / nexpand; priv->rows[row].allocation += extra; height -= extra; nexpand -= 1; } } /* Check to see if we were allocated less height than we requested. * then shrink until we fit the size give. */ if (height > real_height) { gint total_nshrink = nshrink; extra = height - real_height; while (total_nshrink > 0 && extra > 0) { nshrink = total_nshrink; for (row = 0; row < priv->nrows; row++) if (priv->rows[row].shrink) { gint allocation = priv->rows[row].allocation; priv->rows[row].allocation = MAX (1, (gint) priv->rows[row].allocation - extra / nshrink); extra -= allocation - priv->rows[row].allocation; nshrink -= 1; if (priv->rows[row].allocation < 2) { total_nshrink -= 1; priv->rows[row].shrink = FALSE; } } } } } } static void gtk_table_size_allocate_pass2 (GtkTable *table) { GtkTablePrivate *priv = table->priv; GtkTableChild *child; GList *children; gint max_width; gint max_height; gint x, y; gint row, col; GtkAllocation allocation; GtkAllocation table_allocation, widget_allocation; GtkWidget *widget = GTK_WIDGET (table); children = priv->children; while (children) { child = children->data; children = children->next; if (gtk_widget_get_visible (child->widget)) { GtkRequisition child_requisition; gtk_widget_get_preferred_size (child->widget, &child_requisition, NULL); gtk_widget_get_allocation (GTK_WIDGET (table), &table_allocation); x = table_allocation.x; y = table_allocation.y; max_width = 0; max_height = 0; for (col = 0; col < child->left_attach; col++) { x += priv->cols[col].allocation; x += priv->cols[col].spacing; } for (col = child->left_attach; col < child->right_attach; col++) { max_width += priv->cols[col].allocation; if ((col + 1) < child->right_attach) max_width += priv->cols[col].spacing; } for (row = 0; row < child->top_attach; row++) { y += priv->rows[row].allocation; y += priv->rows[row].spacing; } for (row = child->top_attach; row < child->bottom_attach; row++) { max_height += priv->rows[row].allocation; if ((row + 1) < child->bottom_attach) max_height += priv->rows[row].spacing; } if (child->xfill) { allocation.width = MAX (1, max_width - (gint)child->xpadding * 2); allocation.x = x + (max_width - allocation.width) / 2; } else { allocation.width = child_requisition.width; allocation.x = x + (max_width - allocation.width) / 2; } if (child->yfill) { allocation.height = MAX (1, max_height - (gint)child->ypadding * 2); allocation.y = y + (max_height - allocation.height) / 2; } else { allocation.height = child_requisition.height; allocation.y = y + (max_height - allocation.height) / 2; } gtk_widget_get_allocation (widget, &widget_allocation); if (gtk_widget_get_direction (widget) == GTK_TEXT_DIR_RTL) allocation.x = widget_allocation.x + widget_allocation.width - (allocation.x - widget_allocation.x) - allocation.width; gtk_widget_size_allocate (child->widget, &allocation); } } }