Modules/WidgetsNew/private/Widget.cpp
2024-10-11 14:46:01 +03:00

331 lines
7.6 KiB
C++

#include "Widget.hpp"
#include <algorithm>
using namespace tp;
WidgetManagerInterface* Widget::getRoot() {
Widget* iter = mParent;
while (iter && iter->mParent) {
iter = iter->mParent;
}
return dynamic_cast<WidgetManagerInterface*>(iter);
}
void Widget::triggerWidgetUpdate(const char* reason) {
if (auto root = getRoot()) {
root->updateWidget(this, reason);
}
}
Widget::Widget() {
mArea.setTargetRect({ 100, 100, 10, 10, });
mArea.endAnimation();
}
void Widget::setAreaCache(const tp::RectF& area) {
mAreaCache = area;
}
void Widget::setArea(const RectF& area) {
if (mArea.getTargetRect() == area) return;
mArea.setTargetRect(area);
triggerWidgetUpdate("new area");
}
RectF Widget::getArea() const {
return mArea.getCurrentRect();
}
RectF Widget::getAreaT() const {
return mArea.getTargetRect();
}
RectF Widget::getAreaCache() const {
return mAreaCache;
}
RectF Widget::getRelativeArea() const {
return { {}, mArea.getCurrentRect().size };
}
RectF Widget::getRelativeAreaT() const {
return { {}, mArea.getTargetRect().size };
}
RectF Widget::getRelativeAreaCache() const {
return { {}, mAreaCache.size };
}
void Widget::endAnimations() {
mArea.endAnimation();
}
bool Widget::processesEvents() const {
return false;
}
void Widget::updateAnimations() {
mArea.updateCurrentRect();
}
bool Widget::needsNextFrame() const {
return !mArea.shouldEndTransition(); // || mInFocus;
}
void Widget::bringToFront() {
if (!mParent) return;
auto& order = mParent->mDepthOrder;
auto node = order.find(this);
DEBUG_ASSERT(node)
order.detach(node);
order.pushFront(node);
}
void Widget::bringToBack() {
if (!mParent) return;
auto& order = mParent->mDepthOrder;
auto node = order.find(this);
DEBUG_ASSERT(node)
order.detach(node);
order.pushBack(node);
}
void Widget::mouseEnter() {
mInFocus = true;
}
void Widget::mouseLeave() {
mInFocus = false;
}
bool Widget::propagateEventsToChildren() const {
return true;
}
void Widget::addChild(Widget* child) {
if (auto node = mDepthOrder.find(child)) {
node->data->bringToFront();
return;
}
if (child->mParent) {
child->mParent->removeChild(child);
}
mChildren.push_back(child);
mDepthOrder.pushBack(child);
child->mParent = this;
triggerWidgetUpdate("add child");
child->triggerWidgetUpdate("new parent");
}
void Widget::removeChild(Widget* child) {
auto node = mDepthOrder.find(child);
if (!node) return;
mDepthOrder.removeNode(node);
mChildren.erase(std::remove(mChildren.begin(), mChildren.end(), child), mChildren.end());
triggerWidgetUpdate("removed child");
child->triggerWidgetUpdate("parent changed");
}
void Widget::setSizePolicy(tp::Widget::SizePolicy x, tp::Widget::SizePolicy y) {
mSizePolicy = { x, y };
triggerWidgetUpdate("chane size policy");
}
void Widget::setLayoutPolicy(LayoutPolicy layoutPolicy) {
mLayoutPolicy = layoutPolicy;
triggerWidgetUpdate("new layout");
}
const Vec2F& Widget::getMinSize() { return mMinSize; }
void Widget::setMinSize(const Vec2F& size) {
mMinSize = size;
triggerWidgetUpdate("new min size");
}
void Widget::pickRect() {
auto current = getAreaCache();
auto children = getChildrenEnclosure();
auto parent = getParentEnclosure();
auto rangeX = pickRange(current.getRangeX(), children.getRangeX(), parent.getRangeX(), false);
auto rangeY = pickRange(current.getRangeY(), children.getRangeY(), parent.getRangeY(), true);
auto newArea = RectF(rangeX, rangeY);
for (auto child : mChildren) {
child->setAreaCache(child->getAreaCache().move(current.pos - newArea.pos));
}
setAreaCache(newArea);
}
void Widget::clampRect() {
auto current = getAreaCache();
auto children = getChildrenEnclosure();
auto parent = getParentEnclosure();
auto rangeX = clampRange(current.getRangeX(), children.getRangeX(), parent.getRangeX(), false);
auto rangeY = clampRange(current.getRangeY(), children.getRangeY(), parent.getRangeY(), true);
setAreaCache(RectF(rangeX, rangeY));
}
void Widget::adjustChildrenRect() {
if (mChildren.empty()) return;
switch (mLayoutPolicy) {
case LayoutPolicy::Passive: break;
case LayoutPolicy::Vertically: adjustLayout(true); break;
case LayoutPolicy::Horizontally: adjustLayout(false); break;
}
}
halnf Widget::changeChildSize(tp::Widget* widget, halnf diff, bool vertical) {
auto prevSize = widget->getAreaCache().size[vertical];
{
auto area = widget->getAreaCache();
area.size[vertical] += diff;
widget->setAreaCache(area);
widget->clampMinMaxSize();
}
auto newSize = widget->getAreaCache().size[vertical];
return newSize - prevSize;
}
void Widget::adjustLayout(bool vertical) {
std::vector<std::pair<Widget*, bool>> contributors;
Vec2F contentSize = { 0, 0 };
Vec2F availableSize = getRelativeAreaT().size;
for (auto child : mChildren) {
if (child->mSizePolicy[vertical] == SizePolicy::Expanding) {
contributors.emplace_back( child, true );
auto area = child->getAreaCache();
area.size[vertical] = 0;
child->setAreaCache(area);
child->clampRect();
} else {
// child->triggerWidgetUpdate("expand child in layout");
}
contentSize += child->getAreaCache().size;
}
availableSize -= mLayoutGap * ((halnf) mChildren.size() - 1) + mLayoutMargin * 2;
auto diff = availableSize - contentSize;
// expand or contract as much as possible
while (!contributors.empty() && (diff[vertical] != 0)) {
auto quota = diff / (halnf) contributors.size();
for (auto& contributor : contributors) {
if (!contributor.second) continue;
// contributor.first->endAnimations();
auto contribution = changeChildSize(contributor.first, quota[vertical], vertical);
if (contribution == 0) {
contributor.second = false;
}
diff[vertical] -= contribution;
}
contributors.erase(
std::remove_if(contributors.begin(), contributors.end(), [](auto node) { return !node.second; }),
contributors.end()
);
}
// arrange
halnf iterPos = mLayoutMargin;
for (auto child : mChildren) {
auto area = child->getAreaCache();
area.pos[vertical] = iterPos;
iterPos += area.size[vertical] + mLayoutGap;
child->setAreaCache(area);
// child->updateAnimations();
// child->triggerWidgetUpdate("layout changed");
}
}
RangeF Widget::pickRange(const RangeF& current, const RangeF& children, const RangeF& parent, bool vertical) {
RangeF out;
switch (mSizePolicy[vertical]) {
case SizePolicy::Fixed: out = current; break;
case SizePolicy::Expanding: out = parent; break;
case SizePolicy::Minimal: out = children; break;
}
out = clampRange(out, children, parent, vertical);
return out;
}
void Widget::clampMinMaxSize() {
auto current = getAreaCache();
current.size.clamp(mMinSize, mMaxSize);
setAreaCache(current);
}
RangeF Widget::clampRange(const RangeF& current, const RangeF& children, const RangeF& parent, bool vertical) {
auto out = current;
if (!mChildren.empty()) {
auto clampedChild = children;
clampedChild.clamp(parent);
out.clamp(clampedChild, parent);
} else {
out.clamp(parent);
}
// clamp min max sizes
auto len = clamp(current.size(), mMinSize[vertical], mMaxSize[vertical]);
if (len != current.size()) {
out.resizeFromCenter(len);
}
return out;
}
RectF Widget::getChildrenEnclosure() {
RectF out;
if (mChildren.empty()) {
out = { getAreaCache().center(), { 0, 0 } };
} else {
out = mChildren.front()->getAreaCache();
for (auto child : mChildren) {
out.expand(child->getAreaCache());
}
out.pos += getAreaCache().pos;
}
return out;
}
RectF Widget::getParentEnclosure() {
DEBUG_ASSERT(mParent);
if (!mParent) return { { 0, 0 }, mMaxSize };
auto out = mParent->getRelativeAreaT();
if (mParent->mLayoutPolicy != LayoutPolicy::Passive) {
return out.scaleFromCenter(mParent->mLayoutMargin, true);
}
return out;
}