Files
test2/source/blender/editors/interface/views/interface_view.cc
Julian Eisel 71273df2d5 UI: Draw hierarchy lines for tree-views
Hierarchy lines (like we also have in the Outliner) make it easier to
visually parse the hierarchy, and avoid confusion about nesting level.
Especially when some items have icons and/or collapse chevrons and some
not (thus different levels of visual indentation).
They were planned for #93582 and #107881, also see
https://code.blender.org/2023/05/the-next-big-step-grease-pencil-3-0/#layer-groups.

The drawing is implemented as a general tree-view feature, so all
tree-views with collapsable items (which excludes the spreadsheet
data-set tree view) will get them without further setup.
2023-07-06 17:09:32 +02:00

313 lines
8.8 KiB
C++

/* SPDX-FileCopyrightText: 2023 Blender Foundation
*
* SPDX-License-Identifier: GPL-2.0-or-later */
/** \file
* \ingroup edinterface
*
* Code to manage views as part of the regular screen hierarchy. E.g. managing ownership of views
* inside blocks (#uiBlock.views), looking up items in the region, passing WM notifiers to views,
* etc.
*
* Blocks and their contained views are reconstructed on every redraw. This file also contains
* functions related to this recreation of views inside blocks. For example to query state
* information before the view is done reconstructing (#AbstractView.is_reconstructed() returns
* false), it may be enough to query the previous version of the block/view/view-item. Since such
* queries rely on the details of the UI reconstruction process, they should remain internal to
* `interface/` code.
*/
#include <memory>
#include <type_traits>
#include <variant>
#include "DNA_screen_types.h"
#include "BKE_screen.h"
#include "BLI_listbase.h"
#include "BLI_map.hh"
#include "ED_screen.h"
#include "interface_intern.hh"
#include "UI_interface.hh"
#include "UI_abstract_view.hh"
#include "UI_grid_view.hh"
#include "UI_tree_view.hh"
using namespace blender;
using namespace blender::ui;
/**
* Wrapper to store views in a #ListBase, addressable via an identifier.
*/
struct ViewLink : public Link {
std::string idname;
std::unique_ptr<AbstractView> view;
static void views_bounds_calc(const uiBlock &block);
};
template<class T>
static T *ui_block_add_view_impl(uiBlock &block,
StringRef idname,
std::unique_ptr<AbstractView> view)
{
ViewLink *view_link = MEM_new<ViewLink>(__func__);
BLI_addtail(&block.views, view_link);
view_link->view = std::move(view);
view_link->idname = idname;
return dynamic_cast<T *>(view_link->view.get());
}
AbstractGridView *UI_block_add_view(uiBlock &block,
StringRef idname,
std::unique_ptr<AbstractGridView> grid_view)
{
return ui_block_add_view_impl<AbstractGridView>(block, idname, std::move(grid_view));
}
AbstractTreeView *UI_block_add_view(uiBlock &block,
StringRef idname,
std::unique_ptr<AbstractTreeView> tree_view)
{
return ui_block_add_view_impl<AbstractTreeView>(block, idname, std::move(tree_view));
}
void ui_block_free_views(uiBlock *block)
{
LISTBASE_FOREACH_MUTABLE (ViewLink *, link, &block->views) {
MEM_delete(link);
}
}
void ViewLink::views_bounds_calc(const uiBlock &block)
{
Map<AbstractView *, rcti> views_bounds;
rcti minmax;
BLI_rcti_init_minmax(&minmax);
LISTBASE_FOREACH (ViewLink *, link, &block.views) {
views_bounds.add(link->view.get(), minmax);
}
LISTBASE_FOREACH (uiBut *, but, &block.buttons) {
if (but->type != UI_BTYPE_VIEW_ITEM) {
continue;
}
uiButViewItem *view_item_but = static_cast<uiButViewItem *>(but);
if (!view_item_but->view_item) {
continue;
}
/* Get the view from the button. */
AbstractViewItem &view_item = reinterpret_cast<AbstractViewItem &>(*view_item_but->view_item);
AbstractView &view = view_item.get_view();
rcti &bounds = views_bounds.lookup(&view);
rcti but_rcti{};
BLI_rcti_rctf_copy_round(&but_rcti, &view_item_but->rect);
BLI_rcti_do_minmax_rcti(&bounds, &but_rcti);
}
for (const auto item : views_bounds.items()) {
const rcti &bounds = item.value;
if (BLI_rcti_is_empty(&bounds)) {
continue;
}
AbstractView &view = *item.key;
view.bounds_ = bounds;
}
}
void ui_block_views_bounds_calc(const uiBlock *block)
{
ViewLink::views_bounds_calc(*block);
}
void ui_block_views_listen(const uiBlock *block, const wmRegionListenerParams *listener_params)
{
ARegion *region = listener_params->region;
LISTBASE_FOREACH (ViewLink *, view_link, &block->views) {
if (view_link->view->listen(*listener_params->notifier)) {
ED_region_tag_redraw(region);
}
}
}
void ui_block_views_draw_overlays(const ARegion *region, const uiBlock *block)
{
LISTBASE_FOREACH (ViewLink *, view_link, &block->views) {
view_link->view->draw_overlays(*region);
}
}
uiViewHandle *UI_region_view_find_at(const ARegion *region, const int xy[2], const int pad)
{
/* NOTE: Similar to #ui_but_find_mouse_over_ex(). */
if (!ui_region_contains_point_px(region, xy)) {
return nullptr;
}
LISTBASE_FOREACH (uiBlock *, block, &region->uiblocks) {
float mx = xy[0], my = xy[1];
ui_window_to_block_fl(region, block, &mx, &my);
LISTBASE_FOREACH (ViewLink *, view_link, &block->views) {
std::optional<rcti> bounds = view_link->view->get_bounds();
if (!bounds) {
continue;
}
rcti padded_bounds = *bounds;
if (pad) {
BLI_rcti_pad(&padded_bounds, pad, pad);
}
if (BLI_rcti_isect_pt(&padded_bounds, mx, my)) {
return reinterpret_cast<uiViewHandle *>(view_link->view.get());
}
}
}
return nullptr;
}
uiViewItemHandle *UI_region_views_find_item_at(const ARegion *region, const int xy[2])
{
uiButViewItem *item_but = (uiButViewItem *)ui_view_item_find_mouse_over(region, xy);
if (!item_but) {
return nullptr;
}
return item_but->view_item;
}
uiViewItemHandle *UI_region_views_find_active_item(const ARegion *region)
{
uiButViewItem *item_but = (uiButViewItem *)ui_view_item_find_active(region);
if (!item_but) {
return nullptr;
}
return item_but->view_item;
}
namespace blender::ui {
std::unique_ptr<DropTargetInterface> region_views_find_drop_target_at(const ARegion *region,
const int xy[2])
{
uiViewItemHandle *hovered_view_item = UI_region_views_find_item_at(region, xy);
if (hovered_view_item) {
std::unique_ptr<DropTargetInterface> drop_target = view_item_drop_target(hovered_view_item);
if (drop_target) {
return drop_target;
}
}
/* Get style for some sensible padding around the view items. */
const uiStyle *style = UI_style_get_dpi();
uiViewHandle *hovered_view = UI_region_view_find_at(region, xy, style->buttonspacex);
if (hovered_view) {
std::unique_ptr<DropTargetInterface> drop_target = view_drop_target(hovered_view);
if (drop_target) {
return drop_target;
}
}
return nullptr;
}
} // namespace blender::ui
static StringRef ui_block_view_find_idname(const uiBlock &block, const AbstractView &view)
{
/* First get the idname the of the view we're looking for. */
LISTBASE_FOREACH (ViewLink *, view_link, &block.views) {
if (view_link->view.get() == &view) {
return view_link->idname;
}
}
return {};
}
template<class T>
static T *ui_block_view_find_matching_in_old_block_impl(const uiBlock &new_block,
const T &new_view)
{
uiBlock *old_block = new_block.oldblock;
if (!old_block) {
return nullptr;
}
StringRef idname = ui_block_view_find_idname(new_block, new_view);
if (idname.is_empty()) {
return nullptr;
}
LISTBASE_FOREACH (ViewLink *, old_view_link, &old_block->views) {
if (old_view_link->idname == idname) {
return dynamic_cast<T *>(old_view_link->view.get());
}
}
return nullptr;
}
uiViewHandle *ui_block_view_find_matching_in_old_block(const uiBlock *new_block,
const uiViewHandle *new_view_handle)
{
BLI_assert(new_block && new_view_handle);
const AbstractView &new_view = reinterpret_cast<const AbstractView &>(*new_view_handle);
AbstractView *old_view = ui_block_view_find_matching_in_old_block_impl(*new_block, new_view);
return reinterpret_cast<uiViewHandle *>(old_view);
}
uiButViewItem *ui_block_view_find_matching_view_item_but_in_old_block(
const uiBlock *new_block, const uiViewItemHandle *new_item_handle)
{
uiBlock *old_block = new_block->oldblock;
if (!old_block) {
return nullptr;
}
const AbstractViewItem &new_item = *reinterpret_cast<const AbstractViewItem *>(new_item_handle);
const AbstractView *old_view = ui_block_view_find_matching_in_old_block_impl(
*new_block, new_item.get_view());
if (!old_view) {
return nullptr;
}
LISTBASE_FOREACH (uiBut *, old_but, &old_block->buttons) {
if (old_but->type != UI_BTYPE_VIEW_ITEM) {
continue;
}
uiButViewItem *old_item_but = (uiButViewItem *)old_but;
if (!old_item_but->view_item) {
continue;
}
AbstractViewItem &old_item = *reinterpret_cast<AbstractViewItem *>(old_item_but->view_item);
/* Check if the item is from the expected view. */
if (&old_item.get_view() != old_view) {
continue;
}
if (UI_view_item_matches(reinterpret_cast<const uiViewItemHandle *>(&new_item),
reinterpret_cast<const uiViewItemHandle *>(&old_item)))
{
return old_item_but;
}
}
return nullptr;
}