mirror of
https://github.com/davatorium/rofi.git
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379 lines
12 KiB
C
379 lines
12 KiB
C
/*
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* rofi
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*
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* MIT/X11 License
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* Copyright © 2013-2022 Qball Cow <qball@gmpclient.org>
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*
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* Permission is hereby granted, free of charge, to any person obtaining
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* a copy of this software and associated documentation files (the
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* "Software"), to deal in the Software without restriction, including
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* without limitation the rights to use, copy, modify, merge, publish,
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* distribute, sublicense, and/or sell copies of the Software, and to
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* permit persons to whom the Software is furnished to do so, subject to
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* the following conditions:
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*
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* The above copyright notice and this permission notice shall be
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* included in all copies or substantial portions of the Software.
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*
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
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* OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
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* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.
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* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY
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* CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT,
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* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE
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* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
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*
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*/
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/** The log domain of this widget. */
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#define G_LOG_DOMAIN "Widgets.Box"
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#include "widgets/box.h"
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#include "theme.h"
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#include "widgets/widget-internal.h"
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#include "widgets/widget.h"
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#include <stdio.h>
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/** Default spacing used in the box*/
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#define DEFAULT_SPACING 2
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struct _box {
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widget widget;
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RofiOrientation type;
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int max_size;
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// RofiPadding between elements
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RofiDistance spacing;
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GList *children;
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};
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static void box_update(widget *wid);
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static int box_get_desired_width(widget *wid, const int height) {
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box *b = (box *)wid;
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int spacing = distance_get_pixel(b->spacing, b->type);
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int width = 0;
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// Allow user to override.
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RofiDistance w = rofi_theme_get_distance(wid, "width", 0);
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width = distance_get_pixel(w, ROFI_ORIENTATION_HORIZONTAL);
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if (width > 0) {
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return width;
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}
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if (b->type == ROFI_ORIENTATION_HORIZONTAL) {
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int active_widgets = 0;
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for (GList *iter = g_list_first(b->children); iter != NULL;
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iter = g_list_next(iter)) {
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widget *child = (widget *)iter->data;
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if (!child->enabled) {
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continue;
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}
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active_widgets++;
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if (child->expand == TRUE) {
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width += widget_get_desired_width(child, height);
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continue;
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}
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width += widget_get_desired_width(child, height);
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}
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if (active_widgets > 0) {
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width += (active_widgets - 1) * spacing;
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}
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} else {
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for (GList *iter = g_list_first(b->children); iter != NULL;
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iter = g_list_next(iter)) {
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widget *child = (widget *)iter->data;
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if (!child->enabled) {
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continue;
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}
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width = MAX(widget_get_desired_width(child, height), width);
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}
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}
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width += widget_padding_get_padding_width(wid);
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return width;
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}
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static int box_get_desired_height(widget *wid, const int width) {
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box *b = (box *)wid;
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int spacing = distance_get_pixel(b->spacing, b->type);
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int height = 0;
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if (b->type == ROFI_ORIENTATION_VERTICAL) {
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int active_widgets = 0;
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for (GList *iter = g_list_first(b->children); iter != NULL;
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iter = g_list_next(iter)) {
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widget *child = (widget *)iter->data;
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if (!child->enabled) {
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continue;
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}
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active_widgets++;
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height += widget_get_desired_height(child, width);
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}
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if (active_widgets > 0) {
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height += (active_widgets - 1) * spacing;
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}
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} else {
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for (GList *iter = g_list_first(b->children); iter != NULL;
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iter = g_list_next(iter)) {
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widget *child = (widget *)iter->data;
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if (!child->enabled) {
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continue;
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}
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height = MAX(widget_get_desired_height(child, width), height);
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}
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}
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height += widget_padding_get_padding_height(wid);
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return height;
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}
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static void vert_calculate_size(box *b) {
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int spacing = distance_get_pixel(b->spacing, ROFI_ORIENTATION_VERTICAL);
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int expanding_widgets = 0;
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int active_widgets = 0;
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int rem_width = widget_padding_get_remaining_width(WIDGET(b));
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int rem_height = widget_padding_get_remaining_height(WIDGET(b));
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for (GList *iter = g_list_first(b->children); iter != NULL;
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iter = g_list_next(iter)) {
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widget *child = (widget *)iter->data;
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if (child->enabled && child->expand == FALSE) {
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widget_resize(child, rem_width,
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widget_get_desired_height(child, rem_width));
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}
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}
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b->max_size = 0;
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for (GList *iter = g_list_first(b->children); iter != NULL;
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iter = g_list_next(iter)) {
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widget *child = (widget *)iter->data;
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if (!child->enabled) {
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continue;
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}
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active_widgets++;
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if (child->expand == TRUE) {
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expanding_widgets++;
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continue;
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}
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if (child->h > 0) {
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b->max_size += child->h;
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}
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}
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if (active_widgets > 0) {
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b->max_size += (active_widgets - 1) * spacing;
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}
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if (b->max_size > rem_height) {
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b->max_size = rem_height;
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g_debug("Widgets to large (height) for box: %d %d", b->max_size,
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b->widget.h);
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return;
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}
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if (active_widgets > 0) {
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int top = widget_padding_get_top(WIDGET(b));
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double rem = rem_height - b->max_size;
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int index = 0;
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for (GList *iter = g_list_first(b->children); iter != NULL;
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iter = g_list_next(iter)) {
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widget *child = (widget *)iter->data;
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if (child->enabled == FALSE) {
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continue;
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}
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if (child->expand == TRUE) {
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// Re-calculate to avoid round issues leaving one pixel left.
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int expanding_widgets_size = (rem) / (expanding_widgets - index);
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widget_move(child, widget_padding_get_left(WIDGET(b)), top);
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top += expanding_widgets_size;
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widget_resize(child, rem_width, expanding_widgets_size);
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top += spacing;
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rem -= expanding_widgets_size;
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index++;
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} else {
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widget_move(child, widget_padding_get_left(WIDGET(b)), top);
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top += widget_get_height(child);
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top += spacing;
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}
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}
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}
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b->max_size += widget_padding_get_padding_height(WIDGET(b));
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}
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static void hori_calculate_size(box *b) {
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int spacing = distance_get_pixel(b->spacing, ROFI_ORIENTATION_HORIZONTAL);
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int expanding_widgets = 0;
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int active_widgets = 0;
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int rem_width = widget_padding_get_remaining_width(WIDGET(b));
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int rem_height = widget_padding_get_remaining_height(WIDGET(b));
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for (GList *iter = g_list_first(b->children); iter != NULL;
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iter = g_list_next(iter)) {
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widget *child = (widget *)iter->data;
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if (child->enabled && child->expand == FALSE) {
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widget_resize(child,
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widget_get_desired_width(child, rem_height), // child->w,
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rem_height);
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}
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}
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b->max_size = 0;
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for (GList *iter = g_list_first(b->children); iter != NULL;
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iter = g_list_next(iter)) {
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widget *child = (widget *)iter->data;
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if (!child->enabled) {
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continue;
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}
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active_widgets++;
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if (child->expand == TRUE) {
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expanding_widgets++;
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continue;
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}
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// Size used by fixed width widgets.
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if (child->h > 0) {
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b->max_size += child->w;
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}
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}
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b->max_size += MAX(0, ((active_widgets - 1) * spacing));
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if (b->max_size > (rem_width)) {
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b->max_size = rem_width;
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g_debug("Widgets to large (width) for box: %d %d", b->max_size,
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b->widget.w);
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// return;
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}
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if (active_widgets > 0) {
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int left = widget_padding_get_left(WIDGET(b));
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double rem = rem_width - b->max_size;
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int index = 0;
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if (rem < 0) {
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rem = 0;
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}
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for (GList *iter = g_list_first(b->children); iter != NULL;
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iter = g_list_next(iter)) {
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widget *child = (widget *)iter->data;
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if (child->enabled == FALSE) {
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continue;
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}
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if (child->expand == TRUE) {
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// Re-calculate to avoid round issues leaving one pixel left.
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int expanding_widgets_size = (rem) / (expanding_widgets - index);
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widget_move(child, left, widget_padding_get_top(WIDGET(b)));
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left += expanding_widgets_size;
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widget_resize(child, expanding_widgets_size, rem_height);
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left += spacing;
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rem -= expanding_widgets_size;
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index++;
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} else {
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widget_move(child, left, widget_padding_get_top(WIDGET(b)));
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left += widget_get_width(child);
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left += spacing;
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}
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}
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}
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b->max_size += widget_padding_get_padding_width(WIDGET(b));
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}
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static void box_draw(widget *wid, cairo_t *draw) {
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box *b = (box *)wid;
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for (GList *iter = g_list_first(b->children); iter != NULL;
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iter = g_list_next(iter)) {
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widget *child = (widget *)iter->data;
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widget_draw(child, draw);
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}
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}
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static void box_free(widget *wid) {
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box *b = (box *)wid;
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for (GList *iter = g_list_first(b->children); iter != NULL;
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iter = g_list_next(iter)) {
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widget *child = (widget *)iter->data;
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widget_free(child);
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}
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g_list_free(b->children);
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g_free(b);
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}
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void box_add(box *box, widget *child, gboolean expand) {
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if (box == NULL) {
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return;
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}
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// Make sure box is width/heigh enough.
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if (box->type == ROFI_ORIENTATION_VERTICAL) {
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int width = box->widget.w;
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width =
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MAX(width, child->w + widget_padding_get_padding_width(WIDGET(box)));
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box->widget.w = width;
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} else {
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int height = box->widget.h;
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height =
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MAX(height, child->h + widget_padding_get_padding_height(WIDGET(box)));
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box->widget.h = height;
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}
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child->expand = rofi_theme_get_boolean(child, "expand", expand);
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g_assert(child->parent == WIDGET(box));
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box->children = g_list_append(box->children, (void *)child);
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widget_update(WIDGET(box));
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}
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static void box_resize(widget *widget, short w, short h) {
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box *b = (box *)widget;
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if (b->widget.w != w || b->widget.h != h) {
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b->widget.w = w;
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b->widget.h = h;
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widget_update(widget);
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}
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}
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static widget *box_find_mouse_target(widget *wid, WidgetType type, gint x,
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gint y) {
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box *b = (box *)wid;
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for (GList *iter = g_list_first(b->children); iter != NULL;
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iter = g_list_next(iter)) {
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widget *child = (widget *)iter->data;
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if (!child->enabled) {
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continue;
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}
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if (widget_intersect(child, x, y)) {
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gint rx = x - child->x;
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gint ry = y - child->y;
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widget *target = widget_find_mouse_target(child, type, rx, ry);
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if (target != NULL) {
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return target;
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}
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}
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}
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return NULL;
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}
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static void box_set_state(widget *wid, const char *state) {
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for (GList *iter = g_list_first(((box *)wid)->children); iter != NULL;
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iter = g_list_next(iter)) {
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widget *child = (widget *)iter->data;
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widget_set_state(child, state);
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}
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}
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box *box_create(widget *parent, const char *name, RofiOrientation type) {
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box *b = g_malloc0(sizeof(box));
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// Initialize widget.
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widget_init(WIDGET(b), parent, WIDGET_TYPE_UNKNOWN, name);
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b->type = type;
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b->widget.draw = box_draw;
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b->widget.free = box_free;
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b->widget.resize = box_resize;
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b->widget.update = box_update;
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b->widget.find_mouse_target = box_find_mouse_target;
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b->widget.get_desired_height = box_get_desired_height;
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b->widget.get_desired_width = box_get_desired_width;
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b->widget.set_state = box_set_state;
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b->type = rofi_theme_get_orientation(WIDGET(b), "orientation", b->type);
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b->spacing = rofi_theme_get_distance(WIDGET(b), "spacing", DEFAULT_SPACING);
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return b;
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}
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static void box_update(widget *wid) {
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box *b = (box *)wid;
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switch (b->type) {
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case ROFI_ORIENTATION_VERTICAL:
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vert_calculate_size(b);
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break;
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case ROFI_ORIENTATION_HORIZONTAL:
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default:
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hori_calculate_size(b);
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}
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if (wid->parent) {
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widget_update(wid->parent);
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}
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}
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