d663b4eaee
* chore: fix cpplint 'include_what_you_use' warnings Typically by including <memory>, <utility> etc. * chore: fix 'static/global string constant' warning Use C style strings instead of std::string. Style guide forbids non-trivial static / global variables. https://google.github.io/styleguide/cppguide.html#Static_and_Global_Variables /home/charles/electron/electron-gn/src/electron/script/cpplint.js * refactor: remove global string variables. Fix 'global string variables are not permitted' linter warnings by using the base::NoDestructor<> wrapper to make it explicit that these variables are never destroyed. The style guide's take on globals with nontrivial destructors: https://google.github.io/styleguide/cppguide.html#Static_and_Global_Variables * fix: initializer error introduced in last commit * fix: remove WIP file that was included by accident * fix: include order * fix: include order * fix: include order * fix: include order, again
854 lines
24 KiB
C++
854 lines
24 KiB
C++
#ifndef NOMINMAX
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#define NOMINMAX
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#endif
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#include "brightray/browser/win/win32_desktop_notifications/toast.h"
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#include <combaseapi.h>
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#include <UIAutomation.h>
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#include <uxtheme.h>
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#include <windowsx.h>
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#include <algorithm>
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#include <memory>
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#include "base/logging.h"
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#include "brightray/browser/win/win32_desktop_notifications/common.h"
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#include "brightray/browser/win/win32_desktop_notifications/toast_uia.h"
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#pragma comment(lib, "msimg32.lib")
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#pragma comment(lib, "uxtheme.lib")
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using std::min;
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using std::shared_ptr;
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namespace brightray {
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static COLORREF GetAccentColor() {
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bool success = false;
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if (IsAppThemed()) {
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HKEY hkey;
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if (RegOpenKeyEx(HKEY_CURRENT_USER,
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TEXT("SOFTWARE\\Microsoft\\Windows\\DWM"), 0,
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KEY_QUERY_VALUE, &hkey) == ERROR_SUCCESS) {
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COLORREF color;
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DWORD type, size;
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if (RegQueryValueEx(hkey, TEXT("AccentColor"), nullptr, &type,
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reinterpret_cast<BYTE*>(&color),
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&(size = sizeof(color))) == ERROR_SUCCESS &&
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type == REG_DWORD) {
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// convert from RGBA
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color = RGB(GetRValue(color), GetGValue(color), GetBValue(color));
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success = true;
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} else if (RegQueryValueEx(hkey, TEXT("ColorizationColor"), nullptr,
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&type, reinterpret_cast<BYTE*>(&color),
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&(size = sizeof(color))) == ERROR_SUCCESS &&
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type == REG_DWORD) {
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// convert from BGRA
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color = RGB(GetBValue(color), GetGValue(color), GetRValue(color));
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success = true;
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}
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RegCloseKey(hkey);
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if (success)
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return color;
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}
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}
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return GetSysColor(COLOR_ACTIVECAPTION);
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}
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// Stretches a bitmap to the specified size, preserves alpha channel
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static HBITMAP StretchBitmap(HBITMAP bitmap, unsigned width, unsigned height) {
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// We use StretchBlt for the scaling, but that discards the alpha channel.
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// So we first create a separate grayscale bitmap from the alpha channel,
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// scale that separately, and copy it back to the scaled color bitmap.
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BITMAP bm;
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if (!GetObject(bitmap, sizeof(bm), &bm))
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return NULL;
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if (width == 0 || height == 0)
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return NULL;
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HBITMAP result_bitmap = NULL;
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HDC hdc_screen = GetDC(NULL);
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HBITMAP alpha_src_bitmap;
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{
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BITMAPINFOHEADER bmi = {sizeof(BITMAPINFOHEADER)};
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bmi.biWidth = bm.bmWidth;
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bmi.biHeight = bm.bmHeight;
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bmi.biPlanes = bm.bmPlanes;
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bmi.biBitCount = bm.bmBitsPixel;
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bmi.biCompression = BI_RGB;
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void* alpha_src_bits;
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alpha_src_bitmap =
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CreateDIBSection(NULL, reinterpret_cast<BITMAPINFO*>(&bmi),
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DIB_RGB_COLORS, &alpha_src_bits, NULL, 0);
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if (alpha_src_bitmap) {
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if (GetDIBits(hdc_screen, bitmap, 0, 0, 0,
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reinterpret_cast<BITMAPINFO*>(&bmi), DIB_RGB_COLORS) &&
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bmi.biSizeImage > 0 && (bmi.biSizeImage % 4) == 0) {
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auto* buf = reinterpret_cast<BYTE*>(
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_aligned_malloc(bmi.biSizeImage, sizeof(DWORD)));
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if (buf) {
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GetDIBits(hdc_screen, bitmap, 0, bm.bmHeight, buf,
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reinterpret_cast<BITMAPINFO*>(&bmi), DIB_RGB_COLORS);
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const DWORD* src = reinterpret_cast<DWORD*>(buf);
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const DWORD* end = reinterpret_cast<DWORD*>(buf + bmi.biSizeImage);
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BYTE* dest = reinterpret_cast<BYTE*>(alpha_src_bits);
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for (; src != end; ++src, ++dest) {
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BYTE a = *src >> 24;
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*dest++ = a;
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*dest++ = a;
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*dest++ = a;
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}
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_aligned_free(buf);
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}
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}
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}
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}
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if (alpha_src_bitmap) {
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BITMAPINFOHEADER bmi = {sizeof(BITMAPINFOHEADER)};
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bmi.biWidth = width;
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bmi.biHeight = height;
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bmi.biPlanes = 1;
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bmi.biBitCount = 32;
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bmi.biCompression = BI_RGB;
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void* color_bits;
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auto* color_bitmap =
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CreateDIBSection(NULL, reinterpret_cast<BITMAPINFO*>(&bmi),
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DIB_RGB_COLORS, &color_bits, NULL, 0);
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void* alpha_bits;
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auto* alpha_bitmap =
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CreateDIBSection(NULL, reinterpret_cast<BITMAPINFO*>(&bmi),
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DIB_RGB_COLORS, &alpha_bits, NULL, 0);
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HDC hdc = CreateCompatibleDC(NULL);
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HDC hdc_src = CreateCompatibleDC(NULL);
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if (color_bitmap && alpha_bitmap && hdc && hdc_src) {
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SetStretchBltMode(hdc, HALFTONE);
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// resize color channels
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SelectObject(hdc, color_bitmap);
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SelectObject(hdc_src, bitmap);
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StretchBlt(hdc, 0, 0, width, height, hdc_src, 0, 0, bm.bmWidth,
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bm.bmHeight, SRCCOPY);
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// resize alpha channel
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SelectObject(hdc, alpha_bitmap);
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SelectObject(hdc_src, alpha_src_bitmap);
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StretchBlt(hdc, 0, 0, width, height, hdc_src, 0, 0, bm.bmWidth,
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bm.bmHeight, SRCCOPY);
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// flush before touching the bits
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GdiFlush();
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// apply the alpha channel
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auto* dest = reinterpret_cast<BYTE*>(color_bits);
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auto* src = reinterpret_cast<const BYTE*>(alpha_bits);
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auto* end = src + (width * height * 4);
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while (src != end) {
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dest[3] = src[0];
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dest += 4;
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src += 4;
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}
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// create the resulting bitmap
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result_bitmap =
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CreateDIBitmap(hdc_screen, &bmi, CBM_INIT, color_bits,
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reinterpret_cast<BITMAPINFO*>(&bmi), DIB_RGB_COLORS);
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}
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if (hdc_src)
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DeleteDC(hdc_src);
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if (hdc)
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DeleteDC(hdc);
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if (alpha_bitmap)
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DeleteObject(alpha_bitmap);
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if (color_bitmap)
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DeleteObject(color_bitmap);
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DeleteObject(alpha_src_bitmap);
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}
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ReleaseDC(NULL, hdc_screen);
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return result_bitmap;
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}
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const TCHAR DesktopNotificationController::Toast::class_name_[] =
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TEXT("DesktopNotificationToast");
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DesktopNotificationController::Toast::Toast(HWND hwnd,
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shared_ptr<NotificationData>* data)
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: hwnd_(hwnd), data_(*data) {
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HDC hdc_screen = GetDC(NULL);
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hdc_ = CreateCompatibleDC(hdc_screen);
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ReleaseDC(NULL, hdc_screen);
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}
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DesktopNotificationController::Toast::~Toast() {
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if (uia_) {
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auto* UiaDisconnectProvider =
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reinterpret_cast<decltype(&::UiaDisconnectProvider)>(GetProcAddress(
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GetModuleHandle(L"uiautomationcore.dll"), "UiaDisconnectProvider"));
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// first detach from the toast, then call UiaDisconnectProvider;
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// UiaDisconnectProvider may call WM_GETOBJECT and we don't want
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// it to return the object that we're disconnecting
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uia_->DetachToast();
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if (UiaDisconnectProvider)
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UiaDisconnectProvider(uia_);
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uia_->Release();
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uia_ = nullptr;
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}
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DeleteDC(hdc_);
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if (bitmap_)
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DeleteBitmap(bitmap_);
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if (scaled_image_)
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DeleteBitmap(scaled_image_);
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}
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void DesktopNotificationController::Toast::Register(HINSTANCE hinstance) {
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WNDCLASSEX wc = {sizeof(wc)};
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wc.lpfnWndProc = &Toast::WndProc;
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wc.lpszClassName = class_name_;
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wc.cbWndExtra = sizeof(Toast*);
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wc.hInstance = hinstance;
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wc.hCursor = LoadCursor(NULL, IDC_ARROW);
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RegisterClassEx(&wc);
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}
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LRESULT DesktopNotificationController::Toast::WndProc(HWND hwnd,
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UINT message,
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WPARAM wparam,
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LPARAM lparam) {
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switch (message) {
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case WM_CREATE: {
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auto*& cs = reinterpret_cast<const CREATESTRUCT*&>(lparam);
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auto* data =
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static_cast<shared_ptr<NotificationData>*>(cs->lpCreateParams);
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auto* inst = new Toast(hwnd, data);
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SetWindowLongPtr(hwnd, 0, (LONG_PTR)inst);
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} break;
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case WM_NCDESTROY:
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delete Get(hwnd);
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SetWindowLongPtr(hwnd, 0, 0);
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return 0;
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case WM_DESTROY:
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if (Get(hwnd)->uia_) {
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// free UI Automation resources associated with this window
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UiaReturnRawElementProvider(hwnd, 0, 0, nullptr);
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}
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break;
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case WM_MOUSEACTIVATE:
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return MA_NOACTIVATE;
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case WM_TIMER:
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if (wparam == TimerID_AutoDismiss) {
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Get(hwnd)->AutoDismiss();
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}
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return 0;
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case WM_LBUTTONDOWN: {
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auto* inst = Get(hwnd);
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inst->Dismiss();
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Notification notification(inst->data_);
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if (inst->is_close_hot_)
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inst->data_->controller->OnNotificationDismissed(notification);
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else
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inst->data_->controller->OnNotificationClicked(notification);
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}
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return 0;
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case WM_MOUSEMOVE: {
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auto* inst = Get(hwnd);
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if (!inst->is_highlighted_) {
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inst->is_highlighted_ = true;
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TRACKMOUSEEVENT tme = {sizeof(tme), TME_LEAVE, hwnd};
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TrackMouseEvent(&tme);
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}
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POINT cursor = {GET_X_LPARAM(lparam), GET_Y_LPARAM(lparam)};
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inst->is_close_hot_ =
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(PtInRect(&inst->close_button_rect_, cursor) != FALSE);
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if (!inst->is_non_interactive_)
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inst->CancelDismiss();
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inst->UpdateContents();
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}
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return 0;
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case WM_MOUSELEAVE: {
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auto* inst = Get(hwnd);
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inst->is_highlighted_ = false;
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inst->is_close_hot_ = false;
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inst->UpdateContents();
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if (!inst->ease_out_active_ && inst->ease_in_pos_ == 1.0f)
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inst->ScheduleDismissal();
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// Make sure stack collapse happens if needed
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inst->data_->controller->StartAnimation();
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}
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return 0;
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case WM_WINDOWPOSCHANGED: {
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auto*& wp = reinterpret_cast<WINDOWPOS*&>(lparam);
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if (wp->flags & SWP_HIDEWINDOW) {
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if (!IsWindowVisible(hwnd))
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Get(hwnd)->is_highlighted_ = false;
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}
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} break;
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case WM_GETOBJECT:
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if (lparam == UiaRootObjectId) {
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auto* inst = Get(hwnd);
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if (!inst->uia_) {
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inst->uia_ = new UIAutomationInterface(inst);
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inst->uia_->AddRef();
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}
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// don't return the interface if it's being disconnected
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if (!inst->uia_->IsDetached()) {
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return UiaReturnRawElementProvider(hwnd, wparam, lparam, inst->uia_);
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}
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}
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break;
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}
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return DefWindowProc(hwnd, message, wparam, lparam);
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}
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HWND DesktopNotificationController::Toast::Create(
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HINSTANCE hinstance,
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shared_ptr<NotificationData>& data) {
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return CreateWindowEx(WS_EX_LAYERED | WS_EX_NOACTIVATE | WS_EX_TOPMOST,
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class_name_, nullptr, WS_POPUP, 0, 0, 0, 0, NULL, NULL,
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hinstance, &data);
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}
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void DesktopNotificationController::Toast::Draw() {
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const COLORREF accent = GetAccentColor();
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COLORREF back_color;
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{
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// base background color is 2/3 of accent
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// highlighted adds a bit of intensity to every channel
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int h = is_highlighted_ ? (0xff / 20) : 0;
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back_color = RGB(min(0xff, (GetRValue(accent) * 2 / 3) + h),
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min(0xff, (GetGValue(accent) * 2 / 3) + h),
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min(0xff, (GetBValue(accent) * 2 / 3) + h));
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}
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const float back_luma = (GetRValue(back_color) * 0.299f / 255) +
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(GetGValue(back_color) * 0.587f / 255) +
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(GetBValue(back_color) * 0.114f / 255);
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const struct {
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float r, g, b;
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} back_f = {
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GetRValue(back_color) / 255.0f,
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GetGValue(back_color) / 255.0f,
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GetBValue(back_color) / 255.0f,
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};
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COLORREF fore_color, dimmed_color;
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{
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// based on the lightness of background, we draw foreground in light
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// or dark shades of gray blended onto the background with slight
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// transparency to avoid sharp contrast
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constexpr float alpha = 0.9f;
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constexpr float intensity_light[] = {(1.0f * alpha), (0.8f * alpha)};
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constexpr float intensity_dark[] = {(0.1f * alpha), (0.3f * alpha)};
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// select foreground intensity values (light or dark)
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auto& i = (back_luma < 0.6f) ? intensity_light : intensity_dark;
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float r, g, b;
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r = i[0] + back_f.r * (1 - alpha);
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g = i[0] + back_f.g * (1 - alpha);
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b = i[0] + back_f.b * (1 - alpha);
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fore_color = RGB(r * 0xff, g * 0xff, b * 0xff);
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r = i[1] + back_f.r * (1 - alpha);
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g = i[1] + back_f.g * (1 - alpha);
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b = i[1] + back_f.b * (1 - alpha);
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dimmed_color = RGB(r * 0xff, g * 0xff, b * 0xff);
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}
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// Draw background
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{
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auto* brush = CreateSolidBrush(back_color);
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RECT rc = {0, 0, toast_size_.cx, toast_size_.cy};
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FillRect(hdc_, &rc, brush);
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DeleteBrush(brush);
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}
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SetBkMode(hdc_, TRANSPARENT);
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const auto close = L'\x2715';
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auto* caption_font = data_->controller->GetCaptionFont();
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auto* body_font = data_->controller->GetBodyFont();
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TEXTMETRIC tm_cap;
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SelectFont(hdc_, caption_font);
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GetTextMetrics(hdc_, &tm_cap);
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auto text_offset_x = margin_.cx;
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BITMAP image_info = {};
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if (scaled_image_) {
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GetObject(scaled_image_, sizeof(image_info), &image_info);
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text_offset_x += margin_.cx + image_info.bmWidth;
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}
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// calculate close button rect
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POINT close_pos;
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{
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SIZE extent = {};
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GetTextExtentPoint32W(hdc_, &close, 1, &extent);
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close_button_rect_.right = toast_size_.cx;
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close_button_rect_.top = 0;
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close_pos.x = close_button_rect_.right - margin_.cy - extent.cx;
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close_pos.y = close_button_rect_.top + margin_.cy;
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close_button_rect_.left = close_pos.x - margin_.cy;
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close_button_rect_.bottom = close_pos.y + extent.cy + margin_.cy;
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}
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// image
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if (scaled_image_) {
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HDC hdc_image = CreateCompatibleDC(NULL);
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SelectBitmap(hdc_image, scaled_image_);
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BLENDFUNCTION blend = {AC_SRC_OVER, 0, 255, AC_SRC_ALPHA};
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AlphaBlend(hdc_, margin_.cx, margin_.cy, image_info.bmWidth,
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image_info.bmHeight, hdc_image, 0, 0, image_info.bmWidth,
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image_info.bmHeight, blend);
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DeleteDC(hdc_image);
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}
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// caption
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{
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RECT rc = {text_offset_x, margin_.cy, close_button_rect_.left,
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toast_size_.cy};
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SelectFont(hdc_, caption_font);
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SetTextColor(hdc_, fore_color);
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DrawText(hdc_, data_->caption.data(), (UINT)data_->caption.length(), &rc,
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DT_SINGLELINE | DT_END_ELLIPSIS | DT_NOPREFIX);
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}
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// body text
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if (!data_->body_text.empty()) {
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RECT rc = {text_offset_x, 2 * margin_.cy + tm_cap.tmAscent,
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toast_size_.cx - margin_.cx, toast_size_.cy - margin_.cy};
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SelectFont(hdc_, body_font);
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SetTextColor(hdc_, dimmed_color);
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DrawText(hdc_, data_->body_text.data(), (UINT)data_->body_text.length(),
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&rc,
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DT_LEFT | DT_WORDBREAK | DT_NOPREFIX | DT_END_ELLIPSIS |
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DT_EDITCONTROL);
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}
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// close button
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{
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SelectFont(hdc_, caption_font);
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SetTextColor(hdc_, is_close_hot_ ? fore_color : dimmed_color);
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ExtTextOut(hdc_, close_pos.x, close_pos.y, 0, nullptr, &close, 1, nullptr);
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}
|
|
|
|
is_content_updated_ = true;
|
|
}
|
|
|
|
void DesktopNotificationController::Toast::Invalidate() {
|
|
is_content_updated_ = false;
|
|
}
|
|
|
|
bool DesktopNotificationController::Toast::IsRedrawNeeded() const {
|
|
return !is_content_updated_;
|
|
}
|
|
|
|
void DesktopNotificationController::Toast::UpdateBufferSize() {
|
|
if (hdc_) {
|
|
SIZE new_size;
|
|
{
|
|
TEXTMETRIC tm_cap = {};
|
|
HFONT font = data_->controller->GetCaptionFont();
|
|
if (font) {
|
|
SelectFont(hdc_, font);
|
|
if (!GetTextMetrics(hdc_, &tm_cap))
|
|
return;
|
|
}
|
|
|
|
TEXTMETRIC tm_body = {};
|
|
font = data_->controller->GetBodyFont();
|
|
if (font) {
|
|
SelectFont(hdc_, font);
|
|
if (!GetTextMetrics(hdc_, &tm_body))
|
|
return;
|
|
}
|
|
|
|
this->margin_ = {tm_cap.tmAveCharWidth * 2, tm_cap.tmAscent / 2};
|
|
|
|
new_size.cx = margin_.cx + (32 * tm_cap.tmAveCharWidth) + margin_.cx;
|
|
new_size.cy = margin_.cy + (tm_cap.tmHeight) + margin_.cy;
|
|
|
|
if (!data_->body_text.empty())
|
|
new_size.cy += margin_.cy + (3 * tm_body.tmHeight);
|
|
|
|
if (data_->image) {
|
|
BITMAP bm;
|
|
if (GetObject(data_->image, sizeof(bm), &bm)) {
|
|
// cap the image size
|
|
const int max_dim_size = 80;
|
|
|
|
auto width = bm.bmWidth;
|
|
auto height = bm.bmHeight;
|
|
if (width < height) {
|
|
if (height > max_dim_size) {
|
|
width = width * max_dim_size / height;
|
|
height = max_dim_size;
|
|
}
|
|
} else {
|
|
if (width > max_dim_size) {
|
|
height = height * max_dim_size / width;
|
|
width = max_dim_size;
|
|
}
|
|
}
|
|
|
|
ScreenMetrics scr;
|
|
SIZE image_draw_size = {scr.X(width), scr.Y(height)};
|
|
|
|
new_size.cx += image_draw_size.cx + margin_.cx;
|
|
|
|
auto height_with_image =
|
|
margin_.cy + (image_draw_size.cy) + margin_.cy;
|
|
|
|
if (new_size.cy < height_with_image)
|
|
new_size.cy = height_with_image;
|
|
|
|
UpdateScaledImage(image_draw_size);
|
|
}
|
|
}
|
|
}
|
|
|
|
if (new_size.cx != this->toast_size_.cx ||
|
|
new_size.cy != this->toast_size_.cy) {
|
|
HDC hdc_screen = GetDC(NULL);
|
|
auto* new_bitmap =
|
|
CreateCompatibleBitmap(hdc_screen, new_size.cx, new_size.cy);
|
|
ReleaseDC(NULL, hdc_screen);
|
|
|
|
if (new_bitmap) {
|
|
if (SelectBitmap(hdc_, new_bitmap)) {
|
|
RECT dirty1 = {}, dirty2 = {};
|
|
if (toast_size_.cx < new_size.cx) {
|
|
dirty1 = {toast_size_.cx, 0, new_size.cx, toast_size_.cy};
|
|
}
|
|
if (toast_size_.cy < new_size.cy) {
|
|
dirty2 = {0, toast_size_.cy, new_size.cx, new_size.cy};
|
|
}
|
|
|
|
if (this->bitmap_)
|
|
DeleteBitmap(this->bitmap_);
|
|
this->bitmap_ = new_bitmap;
|
|
this->toast_size_ = new_size;
|
|
|
|
Invalidate();
|
|
|
|
// Resize also the DWM buffer to prevent flicker during
|
|
// window resizing. Make sure any existing data is not
|
|
// overwritten by marking the dirty region.
|
|
{
|
|
POINT origin = {0, 0};
|
|
|
|
UPDATELAYEREDWINDOWINFO ulw;
|
|
ulw.cbSize = sizeof(ulw);
|
|
ulw.hdcDst = NULL;
|
|
ulw.pptDst = nullptr;
|
|
ulw.psize = &toast_size_;
|
|
ulw.hdcSrc = hdc_;
|
|
ulw.pptSrc = &origin;
|
|
ulw.crKey = 0;
|
|
ulw.pblend = nullptr;
|
|
ulw.dwFlags = 0;
|
|
ulw.prcDirty = &dirty1;
|
|
auto b1 = UpdateLayeredWindowIndirect(hwnd_, &ulw);
|
|
ulw.prcDirty = &dirty2;
|
|
auto b2 = UpdateLayeredWindowIndirect(hwnd_, &ulw);
|
|
DCHECK(b1 && b2);
|
|
}
|
|
|
|
return;
|
|
}
|
|
|
|
DeleteBitmap(new_bitmap);
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
void DesktopNotificationController::Toast::UpdateScaledImage(const SIZE& size) {
|
|
BITMAP bm;
|
|
if (!GetObject(scaled_image_, sizeof(bm), &bm) || bm.bmWidth != size.cx ||
|
|
bm.bmHeight != size.cy) {
|
|
if (scaled_image_)
|
|
DeleteBitmap(scaled_image_);
|
|
scaled_image_ = StretchBitmap(data_->image, size.cx, size.cy);
|
|
}
|
|
}
|
|
|
|
void DesktopNotificationController::Toast::UpdateContents() {
|
|
Draw();
|
|
|
|
if (IsWindowVisible(hwnd_)) {
|
|
RECT rc;
|
|
GetWindowRect(hwnd_, &rc);
|
|
POINT origin = {0, 0};
|
|
SIZE size = {rc.right - rc.left, rc.bottom - rc.top};
|
|
UpdateLayeredWindow(hwnd_, NULL, nullptr, &size, hdc_, &origin, 0, nullptr,
|
|
0);
|
|
}
|
|
}
|
|
|
|
void DesktopNotificationController::Toast::Dismiss() {
|
|
if (!is_non_interactive_) {
|
|
// Set a flag to prevent further interaction. We don't disable the HWND
|
|
// because we still want to receive mouse move messages in order to keep
|
|
// the toast under the cursor and not collapse it while dismissing.
|
|
is_non_interactive_ = true;
|
|
|
|
AutoDismiss();
|
|
}
|
|
}
|
|
|
|
void DesktopNotificationController::Toast::AutoDismiss() {
|
|
KillTimer(hwnd_, TimerID_AutoDismiss);
|
|
StartEaseOut();
|
|
}
|
|
|
|
void DesktopNotificationController::Toast::CancelDismiss() {
|
|
KillTimer(hwnd_, TimerID_AutoDismiss);
|
|
ease_out_active_ = false;
|
|
ease_out_pos_ = 0;
|
|
}
|
|
|
|
void DesktopNotificationController::Toast::ScheduleDismissal() {
|
|
ULONG duration;
|
|
if (!SystemParametersInfo(SPI_GETMESSAGEDURATION, 0, &duration, 0)) {
|
|
duration = 5;
|
|
}
|
|
SetTimer(hwnd_, TimerID_AutoDismiss, duration * 1000, nullptr);
|
|
}
|
|
|
|
void DesktopNotificationController::Toast::ResetContents() {
|
|
if (scaled_image_) {
|
|
DeleteBitmap(scaled_image_);
|
|
scaled_image_ = NULL;
|
|
}
|
|
|
|
Invalidate();
|
|
}
|
|
|
|
void DesktopNotificationController::Toast::PopUp(int y) {
|
|
vertical_pos_target_ = vertical_pos_ = y;
|
|
StartEaseIn();
|
|
}
|
|
|
|
void DesktopNotificationController::Toast::SetVerticalPosition(int y) {
|
|
// Don't restart animation if current target is the same
|
|
if (y == vertical_pos_target_)
|
|
return;
|
|
|
|
// Make sure the new animation's origin is at the current position
|
|
vertical_pos_ += static_cast<int>((vertical_pos_target_ - vertical_pos_) *
|
|
stack_collapse_pos_);
|
|
|
|
// Set new target position and start the animation
|
|
vertical_pos_target_ = y;
|
|
stack_collapse_start_ = GetTickCount();
|
|
data_->controller->StartAnimation();
|
|
}
|
|
|
|
HDWP DesktopNotificationController::Toast::Animate(HDWP hdwp,
|
|
const POINT& origin) {
|
|
UpdateBufferSize();
|
|
|
|
if (IsRedrawNeeded())
|
|
Draw();
|
|
|
|
POINT src_origin = {0, 0};
|
|
|
|
UPDATELAYEREDWINDOWINFO ulw;
|
|
ulw.cbSize = sizeof(ulw);
|
|
ulw.hdcDst = NULL;
|
|
ulw.pptDst = nullptr;
|
|
ulw.psize = nullptr;
|
|
ulw.hdcSrc = hdc_;
|
|
ulw.pptSrc = &src_origin;
|
|
ulw.crKey = 0;
|
|
ulw.pblend = nullptr;
|
|
ulw.dwFlags = 0;
|
|
ulw.prcDirty = nullptr;
|
|
|
|
POINT pt = {0, 0};
|
|
SIZE size = {0, 0};
|
|
BLENDFUNCTION blend;
|
|
UINT dwpFlags =
|
|
SWP_NOACTIVATE | SWP_SHOWWINDOW | SWP_NOREDRAW | SWP_NOCOPYBITS;
|
|
|
|
auto ease_in_pos = AnimateEaseIn();
|
|
auto ease_out_pos = AnimateEaseOut();
|
|
auto stack_collapse_pos = AnimateStackCollapse();
|
|
|
|
auto y_offset = (vertical_pos_target_ - vertical_pos_) * stack_collapse_pos;
|
|
|
|
size.cx = static_cast<int>(toast_size_.cx * ease_in_pos);
|
|
size.cy = toast_size_.cy;
|
|
|
|
pt.x = origin.x - size.cx;
|
|
pt.y = static_cast<int>(origin.y - vertical_pos_ - y_offset - size.cy);
|
|
|
|
ulw.pptDst = &pt;
|
|
ulw.psize = &size;
|
|
|
|
if (ease_in_active_ && ease_in_pos == 1.0f) {
|
|
ease_in_active_ = false;
|
|
ScheduleDismissal();
|
|
}
|
|
|
|
this->ease_in_pos_ = ease_in_pos;
|
|
this->stack_collapse_pos_ = stack_collapse_pos;
|
|
|
|
if (ease_out_pos != this->ease_out_pos_) {
|
|
blend.BlendOp = AC_SRC_OVER;
|
|
blend.BlendFlags = 0;
|
|
blend.SourceConstantAlpha = (BYTE)(255 * (1.0f - ease_out_pos));
|
|
blend.AlphaFormat = 0;
|
|
|
|
ulw.pblend = &blend;
|
|
ulw.dwFlags = ULW_ALPHA;
|
|
|
|
this->ease_out_pos_ = ease_out_pos;
|
|
|
|
if (ease_out_pos == 1.0f) {
|
|
ease_out_active_ = false;
|
|
|
|
dwpFlags &= ~SWP_SHOWWINDOW;
|
|
dwpFlags |= SWP_HIDEWINDOW;
|
|
}
|
|
}
|
|
|
|
if (stack_collapse_pos == 1.0f) {
|
|
vertical_pos_ = vertical_pos_target_;
|
|
}
|
|
|
|
// `UpdateLayeredWindowIndirect` updates position, size, and transparency.
|
|
// `DeferWindowPos` updates z-order, and also position and size in case
|
|
// ULWI fails, which can happen when one of the dimensions is zero (e.g.
|
|
// at the beginning of ease-in).
|
|
|
|
UpdateLayeredWindowIndirect(hwnd_, &ulw);
|
|
hdwp = DeferWindowPos(hdwp, hwnd_, HWND_TOPMOST, pt.x, pt.y, size.cx, size.cy,
|
|
dwpFlags);
|
|
return hdwp;
|
|
}
|
|
|
|
void DesktopNotificationController::Toast::StartEaseIn() {
|
|
DCHECK(!ease_in_active_);
|
|
ease_in_start_ = GetTickCount();
|
|
ease_in_active_ = true;
|
|
data_->controller->StartAnimation();
|
|
}
|
|
|
|
void DesktopNotificationController::Toast::StartEaseOut() {
|
|
DCHECK(!ease_out_active_);
|
|
ease_out_start_ = GetTickCount();
|
|
ease_out_active_ = true;
|
|
data_->controller->StartAnimation();
|
|
}
|
|
|
|
bool DesktopNotificationController::Toast::IsStackCollapseActive() const {
|
|
return (vertical_pos_ != vertical_pos_target_);
|
|
}
|
|
|
|
float DesktopNotificationController::Toast::AnimateEaseIn() {
|
|
if (!ease_in_active_)
|
|
return ease_in_pos_;
|
|
|
|
constexpr DWORD duration = 500;
|
|
auto elapsed = GetTickCount() - ease_in_start_;
|
|
float time = std::min(duration, elapsed) / static_cast<float>(duration);
|
|
|
|
// decelerating exponential ease
|
|
const float a = -8.0f;
|
|
auto pos = (std::exp(a * time) - 1.0f) / (std::exp(a) - 1.0f);
|
|
|
|
return pos;
|
|
}
|
|
|
|
float DesktopNotificationController::Toast::AnimateEaseOut() {
|
|
if (!ease_out_active_)
|
|
return ease_out_pos_;
|
|
|
|
constexpr DWORD duration = 120;
|
|
auto elapsed = GetTickCount() - ease_out_start_;
|
|
float time = std::min(duration, elapsed) / static_cast<float>(duration);
|
|
|
|
// accelerating circle ease
|
|
auto pos = 1.0f - std::sqrt(1 - time * time);
|
|
|
|
return pos;
|
|
}
|
|
|
|
float DesktopNotificationController::Toast::AnimateStackCollapse() {
|
|
if (!IsStackCollapseActive())
|
|
return stack_collapse_pos_;
|
|
|
|
constexpr DWORD duration = 500;
|
|
auto elapsed = GetTickCount() - stack_collapse_start_;
|
|
float time = std::min(duration, elapsed) / static_cast<float>(duration);
|
|
|
|
// decelerating exponential ease
|
|
const float a = -8.0f;
|
|
auto pos = (std::exp(a * time) - 1.0f) / (std::exp(a) - 1.0f);
|
|
|
|
return pos;
|
|
}
|
|
|
|
} // namespace brightray
|