Files
windowmanager/dmserver/src/abstract_screen.cpp
T
xiaojianfeng 04cd4feb4e gadd screenInfo and screenGroupInfo
Signed-off-by: xiaojianfeng <xiaojianfeng3@huawei.com>
Change-Id: I4fa1ae05fe455746dc293acb94598efb8b27e231
2022-01-27 11:55:43 +08:00

190 lines
6.2 KiB
C++

/*
* Copyright (c) 2021 Huawei Device Co., Ltd.
* Licensed under the Apache License, Version 2.0 (the "License");
* you may not use this file except in compliance with the License.
* You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*/
#include "abstract_screen.h"
#include "abstract_screen_controller.h"
#include "display_manager_service.h"
#include "window_manager_hilog.h"
namespace OHOS::Rosen {
namespace {
constexpr HiviewDFX::HiLogLabel LABEL = {LOG_CORE, 0, "AbstractScreenGroup"};
}
AbstractScreen::AbstractScreen(ScreenId dmsId, ScreenId rsId)
: dmsId_(dmsId), rsId_(rsId)
{
}
AbstractScreen::~AbstractScreen()
{
}
sptr<AbstractScreenInfo> AbstractScreen::GetActiveScreenInfo() const
{
if (activeIdx_ < 0 || activeIdx_ >= infos_.size()) {
WLOGE("active mode index is wrong: %{public}d", activeIdx_);
return nullptr;
}
return infos_[activeIdx_];
}
sptr<AbstractScreenGroup> AbstractScreen::GetGroup() const
{
return DisplayManagerService::GetInstance().GetAbstractScreenController()->GetAbstractScreenGroup(groupDmsId_);
}
const sptr<ScreenInfo> AbstractScreen::ConvertToScreenInfo() const
{
sptr<ScreenInfo> info = new ScreenInfo();
FillScreenInfo(info);
return info;
}
void AbstractScreen::FillScreenInfo(sptr<ScreenInfo> info) const
{
info->id_ = dmsId_;
if (activeIdx_ >= 0 && activeIdx_ < infos_.size()) {
sptr<AbstractScreenInfo> abstractScreenInfo = infos_[activeIdx_];
info->height_ = abstractScreenInfo->height_;
info->width_ = abstractScreenInfo->width_;
}
info->virtualPixelRatio_ = virtualPixelRatio;
info->virtualHeight_ = virtualPixelRatio * info->height_;
info->virtualWidth_ = virtualPixelRatio * info->width_;
info->parent_ = groupDmsId_;
info->hasChild_ = DisplayManagerService::GetInstance().GetAbstractScreenController()->IsScreenGroup(dmsId_);
}
AbstractScreenGroup::AbstractScreenGroup(ScreenId dmsId, ScreenId rsId, ScreenCombination combination)
: AbstractScreen(dmsId, rsId), combination_(combination)
{
type_ = ScreenType::UNDEFINE;
}
AbstractScreenGroup::~AbstractScreenGroup()
{
rsDisplayNode_ = nullptr;
abstractScreenMap_.clear();
}
const sptr<ScreenGroupInfo> AbstractScreenGroup::ConvertToScreenGroupInfo() const
{
sptr<ScreenGroupInfo> screenGroupInfo = new ScreenGroupInfo();
FillScreenInfo(screenGroupInfo);
screenGroupInfo->combination_ = combination_;
for (auto iter = abstractScreenMap_.begin(); iter != abstractScreenMap_.end(); iter++) {
screenGroupInfo->children_.push_back(iter->first);
}
auto positions = GetChildrenPosition();
screenGroupInfo->position_.insert(screenGroupInfo->position_.end(), positions.begin(), positions.end());
return screenGroupInfo;
}
bool AbstractScreenGroup::AddChild(sptr<AbstractScreen>& dmsScreen, Point& startPoint)
{
if (dmsScreen == nullptr) {
WLOGE("AddChild, dmsScreen is nullptr.");
return false;
}
ScreenId screenId = dmsScreen->dmsId_;
auto iter = abstractScreenMap_.find(screenId);
if (iter != abstractScreenMap_.end()) {
WLOGE("AddChild, abstractScreenMap_ has dmsScreen:%{public}" PRIu64"", screenId);
return false;
}
struct RSDisplayNodeConfig config;
switch (combination_) {
case ScreenCombination::SCREEN_ALONE:
case ScreenCombination::SCREEN_EXPAND:
config = { dmsScreen->rsId_ };
break;
case ScreenCombination::SCREEN_MIRROR:
WLOGE("The feature will be supported in the future");
return false;
default:
WLOGE("fail to add child. invalid group combination:%{public}u", combination_);
return false;
}
std::shared_ptr<RSDisplayNode> rsDisplayNode = RSDisplayNode::Create(config);
if (rsDisplayNode == nullptr) {
WLOGE("fail to add child. create rsDisplayNode fail!");
return false;
}
dmsScreen->rsDisplayNode_ = rsDisplayNode;
abstractScreenMap_.insert(std::make_pair(screenId, std::make_pair(dmsScreen, startPoint)));
return true;
}
bool AbstractScreenGroup::AddChildren(std::vector<sptr<AbstractScreen>>& dmsScreens, std::vector<Point>& startPoints)
{
size_t size = dmsScreens.size();
if (size != startPoints.size()) {
WLOGE("AddChildren, unequal size.");
return false;
}
bool res = true;
for (size_t i = 0; i < size; i++) {
res &= AddChild(dmsScreens[i], startPoints[i]);
}
return res;
}
bool AbstractScreenGroup::RemoveChild(sptr<AbstractScreen>& dmsScreen)
{
if (dmsScreen == nullptr) {
WLOGE("RemoveChild, dmsScreen is nullptr.");
return false;
}
ScreenId screenId = dmsScreen->dmsId_;
dmsScreen->groupDmsId_ = SCREEN_ID_INVALID;
bool res = abstractScreenMap_.erase(screenId);
if (abstractScreenMap_.size() == 1) {
combination_ = ScreenCombination::SCREEN_ALONE;
}
return res;
}
bool AbstractScreenGroup::HasChild(ScreenId childScreen) const
{
auto iter = abstractScreenMap_.find(childScreen);
return iter != abstractScreenMap_.end();
}
std::vector<sptr<AbstractScreen>> AbstractScreenGroup::GetChildren() const
{
std::vector<sptr<AbstractScreen>> res;
for (auto iter = abstractScreenMap_.begin(); iter != abstractScreenMap_.end(); iter++) {
res.push_back(iter->second.first);
}
return res;
}
std::vector<Point> AbstractScreenGroup::GetChildrenPosition() const
{
std::vector<Point> res;
for (auto iter = abstractScreenMap_.begin(); iter != abstractScreenMap_.end(); iter++) {
res.push_back(iter->second.second);
}
return res;
}
size_t AbstractScreenGroup::GetChildCount() const
{
return abstractScreenMap_.size();
}
} // namespace OHOS::Rosen