Files
windowmanager/wm/test/systemtest/window_test_utils.cpp
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leafly2021 1aa34247d9 codestyle
Signed-off-by: leafly2021 <figo.yefei@huawei.com>
Change-Id: Ibae115a0d99412306f56a13be6d48d7864a6fb98
2022-03-03 09:14:53 +08:00

427 lines
18 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 "window_test_utils.h"
#include <ability_context.h>
#include "wm_common_inner.h"
namespace OHOS {
namespace Rosen {
namespace {
constexpr HiviewDFX::HiLogLabel LABEL = {LOG_CORE, HILOG_DOMAIN_WINDOW, "WindowTestUtils"};
}
Rect WindowTestUtils::displayRect_ = {0, 0, 0, 0};
Rect WindowTestUtils::statusBarRect_ = {0, 0, 0, 0};
Rect WindowTestUtils::naviBarRect_ = {0, 0, 0, 0};
Rect WindowTestUtils::customAppRect_ = {0, 0, 0, 0};
Rect WindowTestUtils::limitDisplayRect_ = {0, 0, 0, 0};
SplitRects WindowTestUtils::splitRects_ = {
.primaryRect = {0, 0, 0, 0},
.secondaryRect = {0, 0, 0, 0},
.dividerRect = {0, 0, 0, 0},
};
Rect WindowTestUtils::singleTileRect_ = {0, 0, 0, 0};
std::vector<Rect> WindowTestUtils::doubleTileRects_ = std::vector<Rect>(2);
std::vector<Rect> WindowTestUtils::tripleTileRects_ = std::vector<Rect>(3);
bool WindowTestUtils::isVerticalDisplay_ = false;
sptr<Window> WindowTestUtils::CreateTestWindow(const TestWindowInfo& info)
{
sptr<WindowOption> option = new WindowOption();
option->SetWindowRect(info.rect);
option->SetWindowType(info.type);
option->SetWindowMode(info.mode);
option->SetFocusable(info.focusable_);
if (info.parentName != "") {
option->SetParentName(info.parentName);
}
if (info.needAvoid) {
option->AddWindowFlag(WindowFlag::WINDOW_FLAG_NEED_AVOID);
} else {
option->RemoveWindowFlag(WindowFlag::WINDOW_FLAG_NEED_AVOID);
}
if (info.parentLimit) {
option->AddWindowFlag(WindowFlag::WINDOW_FLAG_PARENT_LIMIT);
} else {
option->RemoveWindowFlag(WindowFlag::WINDOW_FLAG_PARENT_LIMIT);
}
sptr<Window> window = Window::Create(info.name, option);
return window;
}
sptr<Window> WindowTestUtils::CreateStatusBarWindow()
{
TestWindowInfo info = {
.name = "statusBar",
.rect = statusBarRect_,
.type = WindowType::WINDOW_TYPE_STATUS_BAR,
.mode = WindowMode::WINDOW_MODE_FLOATING,
.needAvoid = false,
.parentLimit = false,
.parentName = "",
};
return CreateTestWindow(info);
}
sptr<Window> WindowTestUtils::CreateNavigationBarWindow()
{
TestWindowInfo info = {
.name = "naviBar",
.rect = naviBarRect_,
.type = WindowType::WINDOW_TYPE_NAVIGATION_BAR,
.mode = WindowMode::WINDOW_MODE_FLOATING,
.needAvoid = false,
.parentLimit = false,
.parentName = "",
};
return CreateTestWindow(info);
}
sptr<WindowScene> WindowTestUtils::CreateWindowScene()
{
sptr<IWindowLifeCycle> listener = nullptr;
std::shared_ptr<AbilityRuntime::AbilityContext> abilityContext = nullptr;
sptr<WindowScene> scene = new WindowScene();
scene->Init(0, abilityContext, listener);
return scene;
}
Rect WindowTestUtils::GetDefaultFoatingRect(const sptr<Window>& window)
{
limitDisplayRect_ = displayRect_;
UpdateSplitRects(window);
constexpr uint32_t half = 2;
constexpr float ratio = 0.75; // 0.75: default height/width ratio
// calculate default H and w
uint32_t defaultW = static_cast<uint32_t>(displayRect_.width_ * ratio);
uint32_t defaultH = static_cast<uint32_t>(displayRect_.height_ * ratio);
// calculate default x and y
Rect resRect = {0, 0, defaultW, defaultH};
if (defaultW <= limitDisplayRect_.width_ && defaultH <= limitDisplayRect_.height_) {
int32_t centerPosX = limitDisplayRect_.posX_ + static_cast<int32_t>(limitDisplayRect_.width_ / half);
resRect.posX_ = centerPosX - static_cast<int32_t>(defaultW / half);
int32_t centerPosY = limitDisplayRect_.posY_ + static_cast<int32_t>(limitDisplayRect_.height_ / half);
resRect.posY_ = centerPosY - static_cast<int32_t>(defaultH / half);
}
return resRect;
}
Rect WindowTestUtils::GetLimitedDecoRect(const Rect& rect, float virtualPixelRatio)
{
constexpr uint32_t windowTitleBarHeight = 48;
constexpr uint32_t windowFrameWidth = 4;
uint32_t winFrameH = static_cast<uint32_t>((windowTitleBarHeight + windowFrameWidth) * virtualPixelRatio);
uint32_t winFrameW = static_cast<uint32_t>((windowFrameWidth + windowFrameWidth) * virtualPixelRatio);
uint32_t minVerticalFloatingW = static_cast<uint32_t>(MIN_VERTICAL_FLOATING_WIDTH * virtualPixelRatio);
uint32_t minVerticalFloatingH = static_cast<uint32_t>(MIN_VERTICAL_FLOATING_HEIGHT * virtualPixelRatio);
bool vertical = displayRect_.width_ < displayRect_.height_;
uint32_t minFloatingW = vertical ? minVerticalFloatingW : minVerticalFloatingH;
uint32_t minFloatingH = vertical ? minVerticalFloatingH : minVerticalFloatingW;
Rect resRect = {
rect.posX_,
rect.posY_,
std::max(minFloatingW, rect.width_ + winFrameW),
std::max(minFloatingH, rect.height_ + winFrameH),
};
return resRect;
}
Rect WindowTestUtils::CalcLimitedRect(const Rect& rect, float virtualPixelRatio)
{
uint32_t minVerticalFloatingW = static_cast<uint32_t>(MIN_VERTICAL_FLOATING_WIDTH * virtualPixelRatio);
uint32_t minVerticalFloatingH = static_cast<uint32_t>(MIN_VERTICAL_FLOATING_HEIGHT * virtualPixelRatio);
bool vertical = displayRect_.width_ < displayRect_.height_;
uint32_t minFloatingW = vertical ? minVerticalFloatingW : minVerticalFloatingH;
uint32_t minFloatingH = vertical ? minVerticalFloatingH : minVerticalFloatingW;
Rect resRect = {
rect.posX_,
rect.posY_,
std::max(minFloatingW, rect.width_),
std::max(minFloatingH, rect.height_),
};
return resRect;
}
Rect WindowTestUtils::GetFloatingLimitedRect(const Rect& rect, float virtualPixelRatio)
{
uint32_t minVerticalFloatingW = static_cast<uint32_t>(MIN_VERTICAL_FLOATING_WIDTH * virtualPixelRatio);
uint32_t minVerticalFloatingH = static_cast<uint32_t>(MIN_VERTICAL_FLOATING_HEIGHT * virtualPixelRatio);
bool vertical = displayRect_.width_ < displayRect_.height_;
uint32_t minFloatingW = vertical ? minVerticalFloatingW : minVerticalFloatingH;
uint32_t minFloatingH = vertical ? minVerticalFloatingH : minVerticalFloatingW;
Rect resRect = {
rect.posX_,
rect.posY_,
std::max(minFloatingW, rect.width_),
std::max(minFloatingH, rect.height_),
};
return resRect;
}
void WindowTestUtils::InitByDisplayRect(const Rect& displayRect)
{
const float barRatio = 0.07;
const float appRation = 0.4;
const float spaceRation = 0.125;
displayRect_ = displayRect;
limitDisplayRect_ = displayRect;
if (displayRect_.width_ < displayRect_.height_) {
isVerticalDisplay_ = true;
}
statusBarRect_ = {0, 0, displayRect_.width_, displayRect_.height_ * barRatio};
naviBarRect_ = {0, displayRect_.height_ * (1 - barRatio), displayRect_.width_, displayRect_.height_ * barRatio};
customAppRect_ = {
displayRect_.width_ * spaceRation,
displayRect_.height_ * spaceRation,
displayRect_.width_ * appRation,
displayRect_.height_ * appRation
};
}
void WindowTestUtils::InitTileWindowRects(const sptr<Window>& window)
{
constexpr uint32_t edgeInterval = 48;
constexpr uint32_t midInterval = 24;
constexpr float ratio = 0.75; // 0.75: default height/width ratio
constexpr float edgeRatio = 0.125;
constexpr int half = 2;
limitDisplayRect_ = displayRect_;
UpdateSplitRects(window);
int x = limitDisplayRect_.posX_ + (limitDisplayRect_.width_ * edgeRatio);
int y = limitDisplayRect_.posY_ + (limitDisplayRect_.height_ * edgeRatio);
uint32_t w = limitDisplayRect_.width_ * ratio;
uint32_t h = limitDisplayRect_.height_ * ratio;
singleTileRect_ = { x, y, w, h };
WLOGFI("singleRect_: %{public}d %{public}d %{public}d %{public}d", x, y, w, h);
x = edgeInterval;
w = (limitDisplayRect_.width_ - edgeInterval * half - midInterval) / half;
// calc doubleRect
doubleTileRects_[0] = {x, y, w, h};
doubleTileRects_[1] = {x + w + midInterval, y, w, h};
WLOGFI("doubleRects_: %{public}d %{public}d %{public}d %{public}d", x, y, w, h);
// calc tripleRect
w = (limitDisplayRect_.width_ - edgeInterval * half - midInterval * half) / 3; // 3 is triple rects num
tripleTileRects_[0] = {x, y, w, h};
tripleTileRects_[1] = {x + w + midInterval, y, w, h};
tripleTileRects_[2] = {x + w * half + midInterval * half, y, w, h}; // 2 is third index
WLOGFI("tripleRects_: %{public}d %{public}d %{public}d %{public}d", x, y, w, h);
}
bool WindowTestUtils::RectEqualTo(const sptr<Window>& window, const Rect& r)
{
usleep(100000); // 100000us
Rect l = window->GetRect();
bool res = ((l.posX_ == r.posX_) && (l.posY_ == r.posY_) && (l.width_ == r.width_) && (l.height_ == r.height_));
if (!res) {
WLOGFE("GetLayoutRect: %{public}d %{public}d %{public}d %{public}d, " \
"Expect: %{public}d %{public}d %{public}d %{public}d", l.posX_, l.posY_, l.width_, l.height_,
r.posX_, r.posY_, r.width_, r.height_);
}
return res;
}
bool WindowTestUtils::RectEqualToRect(const Rect& l, const Rect& r)
{
bool res = ((l.posX_ == r.posX_) && (l.posY_ == r.posY_) && (l.width_ == r.width_) && (l.height_ == r.height_));
if (!res) {
WLOGFE("GetLayoutRect: %{public}d %{public}d %{public}d %{public}d, " \
"Expect: %{public}d %{public}d %{public}d %{public}d", l.posX_, l.posY_, l.width_, l.height_,
r.posX_, r.posY_, r.width_, r.height_);
}
return res;
}
AvoidPosType WindowTestUtils::GetAvoidPosType(const Rect& rect)
{
if (rect.width_ >= rect.height_) {
if (rect.posY_ == 0) {
return AvoidPosType::AVOID_POS_TOP;
} else {
return AvoidPosType::AVOID_POS_BOTTOM;
}
} else {
if (rect.posX_ == 0) {
return AvoidPosType::AVOID_POS_LEFT;
} else {
return AvoidPosType::AVOID_POS_RIGHT;
}
}
return AvoidPosType::AVOID_POS_UNKNOWN;
}
void WindowTestUtils::InitSplitRects()
{
auto display = DisplayManager::GetInstance().GetDisplayById(0);
if (display == nullptr) {
WLOGFE("GetDefaultDisplay: failed!");
return;
}
WLOGFI("GetDefaultDisplay: id %{public}" PRIu64", w %{public}d, h %{public}d, fps %{public}u",
display->GetId(), display->GetWidth(), display->GetHeight(), display->GetFreshRate());
Rect displayRect = {0, 0, display->GetWidth(), display->GetHeight()};
displayRect_ = displayRect;
limitDisplayRect_ = displayRect;
float virtualPixelRatio = WindowTestUtils::GetVirtualPixelRatio(0);
uint32_t dividerWidth = static_cast<uint32_t>(DIVIDER_WIDTH * virtualPixelRatio);
if (displayRect_.width_ < displayRect_.height_) {
isVerticalDisplay_ = true;
}
if (isVerticalDisplay_) {
splitRects_.dividerRect = { 0,
static_cast<uint32_t>((displayRect_.height_ - dividerWidth) * DEFAULT_SPLIT_RATIO),
displayRect_.width_,
dividerWidth, };
} else {
splitRects_.dividerRect = { static_cast<uint32_t>((displayRect_.width_ - dividerWidth) * DEFAULT_SPLIT_RATIO),
0,
dividerWidth,
displayRect_.height_ };
}
}
void WindowTestUtils::UpdateSplitRects(const sptr<Window>& window)
{
std::unique_ptr<WindowTestUtils> testUtils = std::make_unique<WindowTestUtils>();
auto res = window->GetAvoidAreaByType(AvoidAreaType::TYPE_SYSTEM, testUtils->avoidArea_);
if (res != WMError::WM_OK) {
WLOGFE("Get avoid type failed");
}
testUtils->UpdateLimitDisplayRect(testUtils->avoidArea_.leftRect);
testUtils->UpdateLimitDisplayRect(testUtils->avoidArea_.topRect);
testUtils->UpdateLimitDisplayRect(testUtils->avoidArea_.rightRect);
testUtils->UpdateLimitDisplayRect(testUtils->avoidArea_.bottomRect);
if (isVerticalDisplay_) {
splitRects_.dividerRect.posY_ = limitDisplayRect_.posY_ +
static_cast<uint32_t>((limitDisplayRect_.height_ - splitRects_.dividerRect.height_) * DEFAULT_SPLIT_RATIO);
testUtils->UpdateLimitSplitRects(splitRects_.dividerRect.posY_);
} else {
splitRects_.dividerRect.posX_ = limitDisplayRect_.posX_ +
static_cast<uint32_t>((limitDisplayRect_.width_ - splitRects_.dividerRect.width_) * DEFAULT_SPLIT_RATIO);
testUtils->UpdateLimitSplitRects(splitRects_.dividerRect.posX_);
}
}
void WindowTestUtils::UpdateLimitDisplayRect(Rect& avoidRect)
{
if (((avoidRect.posX_ == 0) && (avoidRect.posY_ == 0) &&
(avoidRect.width_ == 0) && (avoidRect.height_ == 0))) {
return;
}
auto avoidPosType = GetAvoidPosType(avoidRect);
int32_t offsetH = 0;
int32_t offsetW = 0;
switch (avoidPosType) {
case AvoidPosType::AVOID_POS_TOP:
offsetH = avoidRect.posY_ + avoidRect.height_ - limitDisplayRect_.posY_;
limitDisplayRect_.posY_ += offsetH;
limitDisplayRect_.height_ -= offsetH;
break;
case AvoidPosType::AVOID_POS_BOTTOM:
offsetH = limitDisplayRect_.posY_ + limitDisplayRect_.height_ - avoidRect.posY_;
limitDisplayRect_.height_ -= offsetH;
break;
case AvoidPosType::AVOID_POS_LEFT:
offsetW = avoidRect.posX_ + avoidRect.width_ - limitDisplayRect_.posX_;
limitDisplayRect_.posX_ += offsetW;
limitDisplayRect_.width_ -= offsetW;
break;
case AvoidPosType::AVOID_POS_RIGHT:
offsetW = limitDisplayRect_.posX_ + limitDisplayRect_.width_ - avoidRect.posX_;
limitDisplayRect_.width_ -= offsetW;
break;
default:
WLOGFE("invalid avoidPosType: %{public}d", avoidPosType);
}
}
void WindowTestUtils::UpdateLimitSplitRects(int32_t divPos)
{
std::unique_ptr<WindowTestUtils> testUtils = std::make_unique<WindowTestUtils>();
if (isVerticalDisplay_) {
splitRects_.dividerRect.posY_ = divPos;
splitRects_.primaryRect.posX_ = displayRect_.posX_;
splitRects_.primaryRect.posY_ = displayRect_.posY_;
splitRects_.primaryRect.height_ = divPos;
splitRects_.primaryRect.width_ = displayRect_.width_;
splitRects_.secondaryRect.posX_ = displayRect_.posX_;
splitRects_.secondaryRect.posY_ = splitRects_.dividerRect.posY_ + splitRects_.dividerRect.height_;
splitRects_.secondaryRect.height_ = displayRect_.height_ - splitRects_.secondaryRect.posY_;
splitRects_.secondaryRect.width_ = displayRect_.width_;
} else {
splitRects_.dividerRect.posX_ = divPos;
splitRects_.primaryRect.posX_ = displayRect_.posX_;
splitRects_.primaryRect.posY_ = displayRect_.posY_;
splitRects_.primaryRect.width_ = divPos;
splitRects_.primaryRect.height_ = displayRect_.height_;
splitRects_.secondaryRect.posX_ = splitRects_.dividerRect.posX_ + splitRects_.dividerRect.width_;
splitRects_.secondaryRect.posY_ = displayRect_.posY_;
splitRects_.secondaryRect.width_ = displayRect_.width_ - splitRects_.secondaryRect.posX_;
splitRects_.secondaryRect.height_ = displayRect_.height_;
}
testUtils->UpdateLimitSplitRect(splitRects_.primaryRect);
testUtils->UpdateLimitSplitRect(splitRects_.secondaryRect);
}
void WindowTestUtils::UpdateLimitSplitRect(Rect& limitSplitRect)
{
Rect curLimitRect = limitSplitRect;
limitSplitRect.posX_ = std::max(limitDisplayRect_.posX_, curLimitRect.posX_);
limitSplitRect.posY_ = std::max(limitDisplayRect_.posY_, curLimitRect.posY_);
limitSplitRect.width_ = std::min(limitDisplayRect_.posX_ + limitDisplayRect_.width_,
curLimitRect.posX_ + curLimitRect.width_) -
limitSplitRect.posX_;
limitSplitRect.height_ = std::min(limitDisplayRect_.posY_ + limitDisplayRect_.height_,
curLimitRect.posY_ + curLimitRect.height_) -
limitSplitRect.posY_;
}
float WindowTestUtils::GetVirtualPixelRatio(DisplayId displayId)
{
auto display = DisplayManager::GetInstance().GetDisplayById(displayId);
if (display == nullptr) {
WLOGFE("GetVirtualPixel fail. Get display fail. displayId:%{public}" PRIu64", use Default vpr:1.0", displayId);
return 1.0; // Use DefaultVPR 1.0
}
float virtualPixelRatio = display->GetVirtualPixelRatio();
if (virtualPixelRatio == 0.0) {
WLOGFE("GetVirtualPixel fail. vpr is 0.0. displayId:%{public}" PRIu64", use Default vpr:1.0", displayId);
return 1.0; // Use DefaultVPR 1.0
}
WLOGFI("GetVirtualPixel success. displayId:%{public}" PRIu64", vpr:%{public}f", displayId, virtualPixelRatio);
return virtualPixelRatio;
}
} // namespace ROSEN
} // namespace OHOS