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1095 | /* -*- Mode: C++; tab-width: 4; indent-tabs-mode: nil; c-basic-offset: 4 -*- */
/*
* This file is part of the LibreOffice project.
*
* This Source Code Form is subject to the terms of the Mozilla Public
* License, v. 2.0. If a copy of the MPL was not distributed with this
* file, You can obtain one at http://mozilla.org/MPL/2.0/.
*
* This file incorporates work covered by the following license notice:
*
* Licensed to the Apache Software Foundation (ASF) under one or more
* contributor license agreements. See the NOTICE file distributed
* with this work for additional information regarding copyright
* ownership. The ASF licenses this file to you 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 .
*/
#include <string.h>
#include <svsys.h>
#include <process.h>
#include <osl/conditn.hxx>
#include <osl/file.hxx>
#include <rtl/ustrbuf.hxx>
#include <sal/log.hxx>
#include <tools/debug.hxx>
#include <tools/time.hxx>
#include <comphelper/solarmutex.hxx>
#include <o3tl/char16_t2wchar_t.hxx>
#include <vcl/inputtypes.hxx>
#include <vcl/opengl/OpenGLHelper.hxx>
#include <vcl/opengl/OpenGLContext.hxx>
#include <vcl/timer.hxx>
#include <vclpluginapi.h>
#include <opengl/salbmp.hxx>
#include <opengl/win/gdiimpl.hxx>
#include <win/wincomp.hxx>
#include <win/salids.hrc>
#include <win/saldata.hxx>
#include <win/salinst.h>
#include <win/salframe.h>
#include <win/salobj.h>
#include <win/saltimer.h>
#include <win/salbmp.h>
#include <win/winlayout.hxx>
#include <config_features.h>
#include <vcl/skia/SkiaHelper.hxx>
#if HAVE_FEATURE_SKIA
#include <config_skia.h>
#include <skia/salbmp.hxx>
#include <skia/win/gdiimpl.hxx>
#endif
#include <salsys.hxx>
#include <desktop/crashreport.hxx>
#if defined _MSC_VER
#ifndef min
#define min(a,b) (((a) < (b)) ? (a) : (b))
#endif
#ifndef max
#define max(a,b) (((a) > (b)) ? (a) : (b))
#endif
#endif
#include <prewin.h>
#include <gdiplus.h>
#include <shlobj.h>
#include <postwin.h>
void SalAbort( const OUString& rErrorText, bool )
{
ImplFreeSalGDI();
if ( rErrorText.isEmpty() )
{
// make sure crash reporter is triggered
RaiseException( 0, EXCEPTION_NONCONTINUABLE, 0, nullptr );
FatalAppExitW( 0, L"Application Error" );
}
else
{
CrashReporter::addKeyValue("AbortMessage", rErrorText, CrashReporter::Write);
// make sure crash reporter is triggered
RaiseException( 0, EXCEPTION_NONCONTINUABLE, 0, nullptr );
FatalAppExitW( 0, o3tl::toW(rErrorText.getStr()) );
}
}
static LRESULT CALLBACK SalComWndProcW( HWND hWnd, UINT nMsg, WPARAM wParam, LPARAM lParam );
class SalYieldMutex : public comphelper::SolarMutex
{
public: // for ImplSalYield() and ImplSalYieldMutexAcquireWithWait()
osl::Condition m_condition; /// for MsgWaitForMultipleObjects()
protected:
virtual void doAcquire( sal_uInt32 nLockCount ) override;
virtual sal_uInt32 doRelease( bool bUnlockAll ) override;
static void BeforeReleaseHandler();
public:
explicit SalYieldMutex();
virtual bool IsCurrentThread() const override;
virtual bool tryToAcquire() override;
};
SalYieldMutex::SalYieldMutex()
{
SetBeforeReleaseHandler( &SalYieldMutex::BeforeReleaseHandler );
}
void SalYieldMutex::BeforeReleaseHandler()
{
OpenGLContext::prepareForYield();
if ( GetSalData()->mnAppThreadId != GetCurrentThreadId() )
{
// If we don't call these message, the Output from the
// Java clients doesn't come in the right order
GdiFlush();
}
}
/// note: while VCL is fully up and running (other threads started and
/// before shutdown), the main thread must acquire SolarMutex only via
/// this function to avoid deadlock
void SalYieldMutex::doAcquire( sal_uInt32 nLockCount )
{
WinSalInstance* pInst = GetSalData()->mpInstance;
if ( pInst && pInst->IsMainThread() )
{
if ( pInst->m_nNoYieldLock )
return;
// tdf#96887 If this is the main thread, then we must wait for two things:
// - the yield mutex being unlocked
// - SendMessage() being triggered
// This can nicely be done using MsgWaitForMultipleObjects. The 2nd one is
// needed because if we don't reschedule, then we create deadlocks if a
// Window's create/destroy is called via SendMessage() from another thread.
// Have a look at the osl_waitCondition implementation for more info.
do {
// reset condition *before* acquiring!
m_condition.reset();
if (m_aMutex.tryToAcquire())
break;
// wait for SalYieldMutex::release() to set the condition
osl::Condition::Result res = m_condition.wait();
assert(osl::Condition::Result::result_ok == res);
}
while ( true );
}
else
m_aMutex.acquire();
++m_nCount;
--nLockCount;
comphelper::SolarMutex::doAcquire( nLockCount );
}
sal_uInt32 SalYieldMutex::doRelease( const bool bUnlockAll )
{
WinSalInstance* pInst = GetSalData()->mpInstance;
if ( pInst && pInst->m_nNoYieldLock && pInst->IsMainThread() )
return 1;
sal_uInt32 nCount = comphelper::SolarMutex::doRelease( bUnlockAll );
// wake up ImplSalYieldMutexAcquireWithWait() after release
if ( 0 == m_nCount )
m_condition.set();
return nCount;
}
bool SalYieldMutex::tryToAcquire()
{
WinSalInstance* pInst = GetSalData()->mpInstance;
if ( pInst )
{
if ( pInst->m_nNoYieldLock && pInst->IsMainThread() )
return true;
else
return comphelper::SolarMutex::tryToAcquire();
}
else
return false;
}
void ImplSalYieldMutexAcquireWithWait( sal_uInt32 nCount )
{
WinSalInstance* pInst = GetSalData()->mpInstance;
if ( pInst )
pInst->GetYieldMutex()->acquire( nCount );
}
bool ImplSalYieldMutexTryToAcquire()
{
WinSalInstance* pInst = GetSalData()->mpInstance;
return pInst && pInst->GetYieldMutex()->tryToAcquire();
}
void ImplSalYieldMutexRelease()
{
WinSalInstance* pInst = GetSalData()->mpInstance;
if ( pInst )
{
GdiFlush();
pInst->GetYieldMutex()->release();
}
}
bool SalYieldMutex::IsCurrentThread() const
{
if ( !GetSalData()->mpInstance->m_nNoYieldLock )
return SolarMutex::IsCurrentThread();
else
return GetSalData()->mpInstance->IsMainThread();
}
void SalData::initKeyCodeMap()
{
UINT nKey;
#define initKey( a, b )\
nKey = LOWORD( VkKeyScanW( a ) );\
if( nKey < 0xffff )\
maVKMap[ nKey ] = b;
maVKMap.clear();
initKey( L'+', KEY_ADD );
initKey( L'-', KEY_SUBTRACT );
initKey( L'*', KEY_MULTIPLY );
initKey( L'/', KEY_DIVIDE );
initKey( L'.', KEY_POINT );
initKey( L',', KEY_COMMA );
initKey( L'<', KEY_LESS );
initKey( L'>', KEY_GREATER );
initKey( L'=', KEY_EQUAL );
initKey( L'~', KEY_TILDE );
initKey( L'`', KEY_QUOTELEFT );
initKey( L'[', KEY_BRACKETLEFT );
initKey( L']', KEY_BRACKETRIGHT );
initKey( L';', KEY_SEMICOLON );
initKey( L'\'', KEY_QUOTERIGHT );
}
// SalData
SalData::SalData()
{
mhInst = nullptr; // default instance handle
mnCmdShow = 0; // default frame show style
mhDitherPal = nullptr; // dither palette
mhDitherDIB = nullptr; // dither memory handle
mpDitherDIB = nullptr; // dither memory
mpDitherDIBData = nullptr; // beginning of DIB data
mpDitherDiff = nullptr; // Dither mapping table
mpDitherLow = nullptr; // Dither mapping table
mpDitherHigh = nullptr; // Dither mapping table
mhSalObjMsgHook = nullptr; // hook to get interesting msg for SalObject
mhWantLeaveMsg = nullptr; // window handle, that want a MOUSELEAVE message
mpMouseLeaveTimer = nullptr; // Timer for MouseLeave Test
mpInstance = nullptr; // pointer of first instance
mpFirstFrame = nullptr; // pointer of first frame
mpFirstObject = nullptr; // pointer of first object window
mpFirstVD = nullptr; // first VirDev
mpFirstPrinter = nullptr; // first printing printer
mpHDCCache = nullptr; // Cache for three DC's
mh50Bmp = nullptr; // 50% Bitmap
mh50Brush = nullptr; // 50% Brush
int i;
for(i=0; i<MAX_STOCKPEN; i++)
{
maStockPenColorAry[i] = 0;
mhStockPenAry[i] = nullptr;
}
for(i=0; i<MAX_STOCKBRUSH; i++)
{
maStockBrushColorAry[i] = 0;
mhStockBrushAry[i] = nullptr;
}
mnStockPenCount = 0; // count of static pens
mnStockBrushCount = 0; // count of static brushes
mnSalObjWantKeyEvt = 0; // KeyEvent for the SalObj hook
mnCacheDCInUse = 0; // count of CacheDC in use
mbObjClassInit = false; // is SALOBJECTCLASS initialised
mbInPalChange = false; // is in WM_QUERYNEWPALETTE
mnAppThreadId = 0; // Id from Application-Thread
mbScrSvrEnabled = FALSE; // ScreenSaver enabled
mpFirstIcon = nullptr; // icon cache, points to first icon, NULL if none
mpSharedTempFontItem = nullptr;
mpOtherTempFontItem = nullptr;
mbThemeChanged = false; // true if visual theme was changed: throw away theme handles
mbThemeMenuSupport = false;
// init with NULL
gdiplusToken = 0;
initKeyCodeMap();
SetSalData( this );
initNWF();
CoInitializeEx(nullptr, COINIT_APARTMENTTHREADED); // put main thread in Single Threaded Apartment (STA)
static Gdiplus::GdiplusStartupInput gdiplusStartupInput;
Gdiplus::GdiplusStartup(&gdiplusToken, &gdiplusStartupInput, nullptr);
}
SalData::~SalData()
{
deInitNWF();
SetSalData( nullptr );
CoUninitialize();
if (gdiplusToken)
Gdiplus::GdiplusShutdown(gdiplusToken);
}
extern "C" {
VCLPLUG_WIN_PUBLIC SalInstance* create_SalInstance()
{
SalData* pSalData = new SalData();
STARTUPINFOW aSI;
aSI.cb = sizeof( aSI );
GetStartupInfoW( &aSI );
pSalData->mhInst = GetModuleHandleW( nullptr );
pSalData->mnCmdShow = aSI.wShowWindow;
pSalData->mnAppThreadId = GetCurrentThreadId();
// register frame class
WNDCLASSEXW aWndClassEx;
aWndClassEx.cbSize = sizeof( aWndClassEx );
aWndClassEx.style = CS_OWNDC;
aWndClassEx.lpfnWndProc = SalFrameWndProcW;
aWndClassEx.cbClsExtra = 0;
aWndClassEx.cbWndExtra = SAL_FRAME_WNDEXTRA;
aWndClassEx.hInstance = pSalData->mhInst;
aWndClassEx.hCursor = nullptr;
aWndClassEx.hbrBackground = nullptr;
aWndClassEx.lpszMenuName = nullptr;
aWndClassEx.lpszClassName = SAL_FRAME_CLASSNAMEW;
ImplLoadSalIcon( SAL_RESID_ICON_DEFAULT, aWndClassEx.hIcon, aWndClassEx.hIconSm );
if ( !RegisterClassExW( &aWndClassEx ) )
return nullptr;
aWndClassEx.hIcon = nullptr;
aWndClassEx.hIconSm = nullptr;
aWndClassEx.style |= CS_SAVEBITS;
aWndClassEx.lpszClassName = SAL_SUBFRAME_CLASSNAMEW;
if ( !RegisterClassExW( &aWndClassEx ) )
return nullptr;
// shadow effect for popups on XP
aWndClassEx.style |= CS_DROPSHADOW;
aWndClassEx.lpszClassName = SAL_TMPSUBFRAME_CLASSNAMEW;
if ( !RegisterClassExW( &aWndClassEx ) )
return nullptr;
aWndClassEx.style = 0;
aWndClassEx.lpfnWndProc = SalComWndProcW;
aWndClassEx.cbWndExtra = 0;
aWndClassEx.lpszClassName = SAL_COM_CLASSNAMEW;
if ( !RegisterClassExW( &aWndClassEx ) )
return nullptr;
HWND hComWnd = CreateWindowExW( WS_EX_TOOLWINDOW, SAL_COM_CLASSNAMEW,
L"", WS_POPUP, 0, 0, 0, 0, nullptr, nullptr,
pSalData->mhInst, nullptr );
if ( !hComWnd )
return nullptr;
WinSalInstance* pInst = new WinSalInstance;
// init instance (only one instance in this version !!!)
pSalData->mpInstance = pInst;
pInst->mhInst = pSalData->mhInst;
pInst->mhComWnd = hComWnd;
// init static GDI Data
ImplInitSalGDI();
return pInst;
}
}
WinSalInstance::WinSalInstance()
: SalInstance(std::make_unique<SalYieldMutex>())
, mhInst( nullptr )
, mhComWnd( nullptr )
, m_nNoYieldLock( 0 )
{
ImplSVData* pSVData = ImplGetSVData();
pSVData->maAppData.mxToolkitName = OUString("win");
#if HAVE_FEATURE_SKIA
WinSkiaSalGraphicsImpl::prepareSkia();
#endif
}
WinSalInstance::~WinSalInstance()
{
ImplFreeSalGDI();
DestroyWindow( mhComWnd );
#if HAVE_FEATURE_SKIA
SkiaHelper::cleanup();
#endif
}
static LRESULT ImplSalDispatchMessage( const MSG* pMsg )
{
SalData* pSalData = GetSalData();
if ( pSalData->mpFirstObject && ImplSalPreDispatchMsg( pMsg ) )
return 0;
LRESULT lResult = DispatchMessageW( pMsg );
if ( pSalData->mpFirstObject )
ImplSalPostDispatchMsg( pMsg );
return lResult;
}
bool ImplSalYield( bool bWait, bool bHandleAllCurrentEvents )
{
static sal_uInt32 nLastTicks = 0;
MSG aMsg;
bool bWasMsg = false, bOneEvent = false, bWasTimeoutMsg = false;<--- The scope of the variable 'bOneEvent' can be reduced. [+]The scope of the variable 'bOneEvent' can be reduced. Warning: Be careful when fixing this message, especially when there are inner loops. Here is an example where cppcheck will write that the scope for 'i' can be reduced:<--- Variable 'bOneEvent' is assigned a value that is never used.
void f(int x)<--- Variable 'bOneEvent' is assigned a value that is never used.
{<--- Variable 'bOneEvent' is assigned a value that is never used.
int i = 0;<--- Variable 'bOneEvent' is assigned a value that is never used.
if (x) {<--- Variable 'bOneEvent' is assigned a value that is never used.
// it's safe to move 'int i = 0;' here<--- Variable 'bOneEvent' is assigned a value that is never used.
for (int n = 0; n < 10; ++n) {<--- Variable 'bOneEvent' is assigned a value that is never used.
// it is possible but not safe to move 'int i = 0;' here<--- Variable 'bOneEvent' is assigned a value that is never used.
do_something(&i);<--- Variable 'bOneEvent' is assigned a value that is never used.
}<--- Variable 'bOneEvent' is assigned a value that is never used.
}<--- Variable 'bOneEvent' is assigned a value that is never used.
}<--- Variable 'bOneEvent' is assigned a value that is never used.
When you see this message it is always safe to reduce the variable scope 1 level. <--- Variable 'bOneEvent' is assigned a value that is never used.
ImplSVData *const pSVData = ImplGetSVData();
WinSalTimer* pTimer = static_cast<WinSalTimer*>( pSVData->maSchedCtx.mpSalTimer );
const bool bNoYieldLock = (GetSalData()->mpInstance->m_nNoYieldLock > 0);
assert( !bNoYieldLock );
if ( bNoYieldLock )
return false;
sal_uInt32 nCurTicks = 0;
if ( bHandleAllCurrentEvents )
nCurTicks = GetTickCount();
bool bHadNewerEvent = false;
do
{
bOneEvent = PeekMessageW( &aMsg, nullptr, 0, 0, PM_REMOVE );
if ( bOneEvent )
{
bWasMsg = true;
TranslateMessage( &aMsg );
LRESULT nRet = ImplSalDispatchMessage( &aMsg );
if ( !bWasTimeoutMsg )
bWasTimeoutMsg = (SAL_MSG_TIMER_CALLBACK == aMsg.message)
&& static_cast<bool>( nRet );
if ( bHandleAllCurrentEvents
&& !bHadNewerEvent && aMsg.time > nCurTicks
&& (nLastTicks <= nCurTicks || aMsg.time < nLastTicks) )
bHadNewerEvent = true;
bOneEvent = !bHadNewerEvent;
}
if ( !(bHandleAllCurrentEvents && bOneEvent) )
break;
}
while( true );
// 0ms timeouts are handled out-of-bounds to prevent busy-locking the
// event loop with timeout messages.
// We ensure we never handle more than one timeout per call.
// This way we'll always process a normal system message.
if ( !bWasTimeoutMsg && pTimer && pTimer->IsDirectTimeout() )
{
pTimer->ImplHandleElapsedTimer();
bWasMsg = true;
}
if ( bHandleAllCurrentEvents )
nLastTicks = nCurTicks;
if ( bWait && !bWasMsg )
{
if ( GetMessageW( &aMsg, nullptr, 0, 0 ) )
{
bWasMsg = true;
TranslateMessage( &aMsg );
ImplSalDispatchMessage( &aMsg );
}
}
// we're back in the main loop after resize or move
if ( pTimer )
pTimer->SetForceRealTimer( false );
return bWasMsg;
}
bool WinSalInstance::IsMainThread() const
{
const SalData* pSalData = GetSalData();
return pSalData->mnAppThreadId == GetCurrentThreadId();
}
bool WinSalInstance::DoYield(bool bWait, bool bHandleAllCurrentEvents)
{
bool bDidWork = false;
SolarMutexReleaser aReleaser;
if ( !IsMainThread() )
{
bDidWork = SendMessageW( mhComWnd, SAL_MSG_THREADYIELD,
WPARAM(false), static_cast<LPARAM>(bHandleAllCurrentEvents) );
if ( !bDidWork && bWait )
{
maWaitingYieldCond.reset();
maWaitingYieldCond.wait();
bDidWork = true;
}
}
else
{
bDidWork = ImplSalYield( bWait, bHandleAllCurrentEvents );
if ( bDidWork )
maWaitingYieldCond.set();
}
return bDidWork;
}
#define CASE_NOYIELDLOCK( salmsg, function ) \
case salmsg: \
if (bIsOtherThreadMessage) \
{ \
++pInst->m_nNoYieldLock; \
function; \
--pInst->m_nNoYieldLock; \
} \
else \
{ \
DBG_TESTSOLARMUTEX(); \
function; \
} \
break;
#define CASE_NOYIELDLOCK_RESULT( salmsg, function ) \
case salmsg: \
if (bIsOtherThreadMessage) \
{ \
++pInst->m_nNoYieldLock; \
nRet = reinterpret_cast<LRESULT>( function ); \
--pInst->m_nNoYieldLock; \
} \
else \
{ \
DBG_TESTSOLARMUTEX(); \
nRet = reinterpret_cast<LRESULT>( function ); \
} \
break;
LRESULT CALLBACK SalComWndProc( HWND, UINT nMsg, WPARAM wParam, LPARAM lParam, bool& rDef )
{
const bool bIsOtherThreadMessage = InSendMessage();
LRESULT nRet = 0;
WinSalInstance *pInst = GetSalData()->mpInstance;
WinSalTimer *const pTimer = static_cast<WinSalTimer*>( ImplGetSVData()->maSchedCtx.mpSalTimer );
SAL_INFO("vcl.gdi.wndproc", "SalComWndProc(nMsg=" << nMsg << ", wParam=" << wParam
<< ", lParam=" << lParam << "); inSendMsg: " << bIsOtherThreadMessage);
switch ( nMsg )
{
case SAL_MSG_THREADYIELD:
assert( !static_cast<bool>(wParam) );
nRet = static_cast<LRESULT>(ImplSalYield(
false, static_cast<bool>( lParam ) ));
break;
case SAL_MSG_STARTTIMER:
{
auto const nParam = static_cast<sal_uInt64>( lParam );
sal_uInt64 nTime = tools::Time::GetSystemTicks();
if ( nTime < nParam )
nTime = nParam - nTime;
else
nTime = 0;
assert( pTimer != nullptr );
pTimer->ImplStart( nTime );
break;
}
case SAL_MSG_STOPTIMER:
assert( pTimer != nullptr );
pTimer->ImplStop();
break;
CASE_NOYIELDLOCK_RESULT( SAL_MSG_CREATEFRAME, ImplSalCreateFrame( GetSalData()->mpInstance,
reinterpret_cast<HWND>(lParam), static_cast<SalFrameStyleFlags>(wParam)) )
CASE_NOYIELDLOCK_RESULT( SAL_MSG_RECREATEHWND, ImplSalReCreateHWND(
reinterpret_cast<HWND>(wParam), reinterpret_cast<HWND>(lParam), false) )
CASE_NOYIELDLOCK_RESULT( SAL_MSG_RECREATECHILDHWND, ImplSalReCreateHWND(
reinterpret_cast<HWND>(wParam), reinterpret_cast<HWND>(lParam), true) )
CASE_NOYIELDLOCK( SAL_MSG_DESTROYFRAME, delete reinterpret_cast<SalFrame*>(lParam) )
case SAL_MSG_DESTROYHWND:
// We only destroy the native window here. We do NOT destroy the SalFrame contained
// in the structure (GetWindowPtr()).
if (DestroyWindow(reinterpret_cast<HWND>(lParam)) == 0)
{
OSL_FAIL("DestroyWindow failed!");
// Failure: We remove the SalFrame from the window structure. So we avoid that
// the window structure may contain an invalid pointer, once the SalFrame is deleted.
SetWindowPtr(reinterpret_cast<HWND>(lParam), nullptr);
}
break;
CASE_NOYIELDLOCK_RESULT( SAL_MSG_CREATEOBJECT, ImplSalCreateObject(
GetSalData()->mpInstance, reinterpret_cast<WinSalFrame*>(lParam)) )
CASE_NOYIELDLOCK( SAL_MSG_DESTROYOBJECT, delete reinterpret_cast<SalObject*>(lParam) )
CASE_NOYIELDLOCK_RESULT( SAL_MSG_GETCACHEDDC, GetDCEx(
reinterpret_cast<HWND>(wParam), nullptr, DCX_CACHE) )
CASE_NOYIELDLOCK( SAL_MSG_RELEASEDC, ReleaseDC(
reinterpret_cast<HWND>(wParam), reinterpret_cast<HDC>(lParam)) )
case SAL_MSG_TIMER_CALLBACK:
assert( pTimer != nullptr );
pTimer->ImplHandleTimerEvent( wParam );
break;
case WM_TIMER:
assert( pTimer != nullptr );
pTimer->ImplHandle_WM_TIMER( wParam );
break;
case SAL_MSG_FORCE_REAL_TIMER:
assert(pTimer != nullptr);
pTimer->SetForceRealTimer(true);
break;
case SAL_MSG_DUMMY:
break;
default:
rDef = true;
break;
}
return nRet;
}
#undef CASE_NOYIELDLOCK
#undef CASE_NOYIELDLOCK_RESULT
LRESULT CALLBACK SalComWndProcW( HWND hWnd, UINT nMsg, WPARAM wParam, LPARAM lParam )
{
bool bDef = false;
LRESULT nRet = 0;
__try
{
nRet = SalComWndProc( hWnd, nMsg, wParam, lParam, bDef );
}
__except(WinSalInstance::WorkaroundExceptionHandlingInUSER32Lib(GetExceptionCode(), GetExceptionInformation()))
{
}
if ( bDef )
{
if ( !ImplHandleGlobalMsg( hWnd, nMsg, wParam, lParam, nRet ) )
nRet = DefWindowProcW( hWnd, nMsg, wParam, lParam );
}
return nRet;
}
namespace {
struct MsgRange
{
UINT nStart;
UINT nEnd;
};
}
static std::vector<MsgRange> GetOtherRanges( VclInputFlags nType )
{
assert( nType != VCL_INPUT_ANY );
// this array must be kept sorted!
const UINT nExcludeMsgIds[] =
{
0,
WM_MOVE, // 3
WM_SIZE, // 5
WM_PAINT, // 15
WM_KEYDOWN, // 256
WM_TIMER, // 275
WM_MOUSEFIRST, // 512
513,
514,
515,
516,
517,
518,
519,
520,
WM_MOUSELAST, // 521
SAL_MSG_POSTMOVE, // WM_USER+136
SAL_MSG_POSTCALLSIZE, // WM_USER+137
SAL_MSG_TIMER_CALLBACK, // WM_USER+162
UINT_MAX
};
const unsigned MAX_EXCL = SAL_N_ELEMENTS( nExcludeMsgIds );
bool aExcludeMsgList[ MAX_EXCL ] = { false, };
std::vector<MsgRange> aResult;
// set the excluded values
if ( !(nType & VclInputFlags::MOUSE) )
{
for ( unsigned i = 0; nExcludeMsgIds[ 6 + i ] <= WM_MOUSELAST; ++i )
aExcludeMsgList[ 6 + i ] = true;
}
if ( !(nType & VclInputFlags::KEYBOARD) )
aExcludeMsgList[ 4 ] = true;
if ( !(nType & VclInputFlags::PAINT) )
{
aExcludeMsgList[ 1 ] = true;
aExcludeMsgList[ 2 ] = true;
aExcludeMsgList[ 3 ] = true;
aExcludeMsgList[ 16 ] = true;
aExcludeMsgList[ 17 ] = true;
}
if ( !(nType & VclInputFlags::TIMER) )
{
aExcludeMsgList[ 5 ] = true;
aExcludeMsgList[ 18 ] = true;
}
// build the message ranges to check
MsgRange aRange = { 0, 0 };
bool doEnd = true;
for ( unsigned i = 1; i < MAX_EXCL; ++i )
{
if ( aExcludeMsgList[ i ] )
{
if ( !doEnd )
{
if ( nExcludeMsgIds[ i ] == aRange.nStart )
++aRange.nStart;
else
doEnd = true;
}
if ( doEnd )
{
aRange.nEnd = nExcludeMsgIds[ i ] - 1;
aResult.push_back( aRange );
doEnd = false;
aRange.nStart = aRange.nEnd + 2;
}
}
}
if ( aRange.nStart != UINT_MAX )
{
aRange.nEnd = UINT_MAX;
aResult.push_back( aRange );
}
return aResult;
}
bool WinSalInstance::AnyInput( VclInputFlags nType )
{
MSG aMsg;
if ( nType & VclInputFlags::TIMER )
{
const WinSalTimer* pTimer = static_cast<WinSalTimer*>( ImplGetSVData()->maSchedCtx.mpSalTimer );
if ( pTimer && pTimer->HasTimerElapsed() )
return true;
}
if ( (nType & VCL_INPUT_ANY) == VCL_INPUT_ANY )
{
// revert bugfix for #108919# which never reported timeouts when called from the timer handler
// which made the application completely unresponsive during background formatting
if ( PeekMessageW( &aMsg, nullptr, 0, 0, PM_NOREMOVE | PM_NOYIELD ) )
return true;
}
else
{
const bool bCheck_KEYBOARD (nType & VclInputFlags::KEYBOARD);
const bool bCheck_OTHER (nType & VclInputFlags::OTHER);
// If there is a modifier key event, it counts as OTHER
// Previously we were simply ignoring these events...
if ( bCheck_KEYBOARD || bCheck_OTHER )
{
if ( PeekMessageW( &aMsg, nullptr, WM_KEYDOWN, WM_KEYDOWN,
PM_NOREMOVE | PM_NOYIELD ) )
{
const bool bIsModifier = ( (aMsg.wParam == VK_SHIFT) ||
(aMsg.wParam == VK_CONTROL) || (aMsg.wParam == VK_MENU) );
if ( bCheck_KEYBOARD && !bIsModifier )
return true;
if ( bCheck_OTHER && bIsModifier )
return true;
}
}
// Other checks for all messages not excluded.
// The less we exclude, the less ranges have to be checked!
if ( bCheck_OTHER )
{
// TIMER and KEYBOARD are already handled, so always exclude them!
VclInputFlags nOtherType = nType &
~VclInputFlags(VclInputFlags::KEYBOARD | VclInputFlags::TIMER);
std::vector<MsgRange> aMsgRangeList( GetOtherRanges( nOtherType ) );
for ( MsgRange const & aRange : aMsgRangeList )
if ( PeekMessageW( &aMsg, nullptr, aRange.nStart,
aRange.nEnd, PM_NOREMOVE | PM_NOYIELD ) )
return true;
// MOUSE and PAINT already handled, so skip further checks
return false;
}
if ( nType & VclInputFlags::MOUSE )
{
if ( PeekMessageW( &aMsg, nullptr, WM_MOUSEFIRST, WM_MOUSELAST,
PM_NOREMOVE | PM_NOYIELD ) )
return true;
}
if ( nType & VclInputFlags::PAINT )
{
if ( PeekMessageW( &aMsg, nullptr, WM_PAINT, WM_PAINT,
PM_NOREMOVE | PM_NOYIELD ) )
return true;
if ( PeekMessageW( &aMsg, nullptr, WM_SIZE, WM_SIZE,
PM_NOREMOVE | PM_NOYIELD ) )
return true;
if ( PeekMessageW( &aMsg, nullptr, SAL_MSG_POSTCALLSIZE, SAL_MSG_POSTCALLSIZE,
PM_NOREMOVE | PM_NOYIELD ) )
return true;
if ( PeekMessageW( &aMsg, nullptr, WM_MOVE, WM_MOVE,
PM_NOREMOVE | PM_NOYIELD ) )
return true;
if ( PeekMessageW( &aMsg, nullptr, SAL_MSG_POSTMOVE, SAL_MSG_POSTMOVE,
PM_NOREMOVE | PM_NOYIELD ) )
return true;
}
}
return false;
}
SalFrame* WinSalInstance::CreateChildFrame( SystemParentData* pSystemParentData, SalFrameStyleFlags nSalFrameStyle )
{
// to switch to Main-Thread
return reinterpret_cast<SalFrame*>(static_cast<sal_IntPtr>(SendMessageW( mhComWnd, SAL_MSG_CREATEFRAME, static_cast<WPARAM>(nSalFrameStyle), reinterpret_cast<LPARAM>(pSystemParentData->hWnd) )));
}
SalFrame* WinSalInstance::CreateFrame( SalFrame* pParent, SalFrameStyleFlags nSalFrameStyle )
{
// to switch to Main-Thread
HWND hWndParent;
if ( pParent )
hWndParent = static_cast<WinSalFrame*>(pParent)->mhWnd;
else
hWndParent = nullptr;
return reinterpret_cast<SalFrame*>(static_cast<sal_IntPtr>(SendMessageW( mhComWnd, SAL_MSG_CREATEFRAME, static_cast<WPARAM>(nSalFrameStyle), reinterpret_cast<LPARAM>(hWndParent) )));
}
void WinSalInstance::DestroyFrame( SalFrame* pFrame )
{
OpenGLContext::prepareForYield();
SendMessageW( mhComWnd, SAL_MSG_DESTROYFRAME, 0, reinterpret_cast<LPARAM>(pFrame) );
}
SalObject* WinSalInstance::CreateObject( SalFrame* pParent,
SystemWindowData* /*pWindowData*/, // SystemWindowData meaningless on Windows
bool /*bShow*/ )
{
// to switch to Main-Thread
return reinterpret_cast<SalObject*>(static_cast<sal_IntPtr>(SendMessageW( mhComWnd, SAL_MSG_CREATEOBJECT, 0, reinterpret_cast<LPARAM>(static_cast<WinSalFrame*>(pParent)) )));
}
void WinSalInstance::DestroyObject( SalObject* pObject )
{
SendMessageW( mhComWnd, SAL_MSG_DESTROYOBJECT, 0, reinterpret_cast<LPARAM>(pObject) );
}
OUString WinSalInstance::GetConnectionIdentifier()
{
return OUString();
}
/** Add a file to the system shells recent document list if there is any.
This function may have no effect under Unix because there is no
standard API among the different desktop managers.
@param aFileUrl
The file url of the document.
*/
void WinSalInstance::AddToRecentDocumentList(const OUString& rFileUrl, const OUString& /*rMimeType*/, const OUString& rDocumentService)
{
if (Application::IsHeadlessModeEnabled())
return;
OUString system_path;
osl::FileBase::RC rc = osl::FileBase::getSystemPathFromFileURL(rFileUrl, system_path);
OSL_ENSURE(osl::FileBase::E_None == rc, "Invalid file url");
if (osl::FileBase::E_None == rc)
{
IShellItem* pShellItem = nullptr;
HRESULT hr = SHCreateItemFromParsingName(o3tl::toW(system_path.getStr()), nullptr, IID_PPV_ARGS(&pShellItem));
if ( SUCCEEDED(hr) && pShellItem )
{
OUString sApplicationName;
if ( rDocumentService == "com.sun.star.text.TextDocument" ||
rDocumentService == "com.sun.star.text.GlobalDocument" ||
rDocumentService == "com.sun.star.text.WebDocument" ||
rDocumentService == "com.sun.star.xforms.XMLFormDocument" )
sApplicationName = "Writer";
else if ( rDocumentService == "com.sun.star.sheet.SpreadsheetDocument" ||
rDocumentService == "com.sun.star.chart2.ChartDocument" )
sApplicationName = "Calc";
else if ( rDocumentService == "com.sun.star.presentation.PresentationDocument" )
sApplicationName = "Impress";
else if ( rDocumentService == "com.sun.star.drawing.DrawingDocument" )
sApplicationName = "Draw";
else if ( rDocumentService == "com.sun.star.formula.FormulaProperties" )
sApplicationName = "Math";
else if ( rDocumentService == "com.sun.star.sdb.DatabaseDocument" ||
rDocumentService == "com.sun.star.sdb.OfficeDatabaseDocument" ||
rDocumentService == "com.sun.star.sdb.RelationDesign" ||
rDocumentService == "com.sun.star.sdb.QueryDesign" ||
rDocumentService == "com.sun.star.sdb.TableDesign" ||
rDocumentService == "com.sun.star.sdb.DataSourceBrowser" )
sApplicationName = "Base";
if ( !sApplicationName.isEmpty() )
{
OUString sApplicationID("TheDocumentFoundation.LibreOffice." + sApplicationName);
SHARDAPPIDINFO info;
info.psi = pShellItem;
info.pszAppID = o3tl::toW(sApplicationID.getStr());
SHAddToRecentDocs ( SHARD_APPIDINFO, &info );
return;
}
}
// For whatever reason, we could not use the SHARD_APPIDINFO semantics
SHAddToRecentDocs(SHARD_PATHW, system_path.getStr());
}
}
SalTimer* WinSalInstance::CreateSalTimer()
{
return new WinSalTimer();
}
std::shared_ptr<SalBitmap> WinSalInstance::CreateSalBitmap()
{
#if HAVE_FEATURE_SKIA
if (SkiaHelper::isVCLSkiaEnabled())
return std::make_shared<SkiaSalBitmap>();
else
#endif
if (OpenGLHelper::isVCLOpenGLEnabled())
return std::make_shared<OpenGLSalBitmap>();
else
return std::make_shared<WinSalBitmap>();
}
int WinSalInstance::WorkaroundExceptionHandlingInUSER32Lib(int, LPEXCEPTION_POINTERS pExceptionInfo)
{
// Decide if an exception is a c++ (mostly UNO) exception or a process violation.
// Depending on this information we pass process violations directly to our signal handler ...
// and c++ (UNO) exceptions are sended to the following code on the current stack.
// Problem behind: user32.dll sometime consumes exceptions/process violations .-)
// see also #112221#
static const DWORD EXCEPTION_MSC_CPP_EXCEPTION = 0xE06D7363;
if (pExceptionInfo->ExceptionRecord->ExceptionCode == EXCEPTION_MSC_CPP_EXCEPTION)
return EXCEPTION_CONTINUE_SEARCH;
return UnhandledExceptionFilter( pExceptionInfo );
}
typedef LONG NTSTATUS;
typedef NTSTATUS(WINAPI* RtlGetVersion_t)(PRTL_OSVERSIONINFOW);
constexpr NTSTATUS STATUS_SUCCESS = 0x00000000;
OUString WinSalInstance::getOSVersion()
{
OUStringBuffer aVer(50); // capacity for string like "Windows 6.1 Service Pack 1 build 7601"
aVer.append("Windows ");
// GetVersion(Ex) and VersionHelpers (based on VerifyVersionInfo) API are
// subject to manifest-based behavior since Windows 8.1, so give wrong results.
// Another approach would be to use NetWkstaGetInfo, but that has some small
// reported delays (some milliseconds), and might get slower in domains with
// poor network connections.
// So go with a solution described at https://msdn.microsoft.com/en-us/library/ms724429
bool bHaveVerFromKernel32 = false;
if (HMODULE h_kernel32 = GetModuleHandleW(L"kernel32.dll"))
{
wchar_t szPath[MAX_PATH];
DWORD dwCount = GetModuleFileNameW(h_kernel32, szPath, SAL_N_ELEMENTS(szPath));
if (dwCount != 0 && dwCount < SAL_N_ELEMENTS(szPath))
{
dwCount = GetFileVersionInfoSizeW(szPath, nullptr);
if (dwCount != 0)
{
std::unique_ptr<char[]> ver(new char[dwCount]);
if (GetFileVersionInfoW(szPath, 0, dwCount, ver.get()) != FALSE)
{
void* pBlock = nullptr;
UINT dwBlockSz = 0;
if (VerQueryValueW(ver.get(), L"\\", &pBlock, &dwBlockSz) != FALSE && dwBlockSz >= sizeof(VS_FIXEDFILEINFO))
{
VS_FIXEDFILEINFO* vi1 = static_cast<VS_FIXEDFILEINFO*>(pBlock);
aVer.append(OUString::number(HIWORD(vi1->dwProductVersionMS)) + "."
+ OUString::number(LOWORD(vi1->dwProductVersionMS)));
bHaveVerFromKernel32 = true;
}
}
}
}
}
// Now use RtlGetVersion (which is not subject to deprecation for GetVersion(Ex) API)
// to get build number and SP info
bool bHaveVerFromRtlGetVersion = false;
if (HMODULE h_ntdll = GetModuleHandleW(L"ntdll.dll"))
{
if (auto RtlGetVersion
= reinterpret_cast<RtlGetVersion_t>(GetProcAddress(h_ntdll, "RtlGetVersion")))
{
RTL_OSVERSIONINFOW vi2{}; // initialize with zeroes - a better alternative to memset
vi2.dwOSVersionInfoSize = sizeof(vi2);
if (STATUS_SUCCESS == RtlGetVersion(&vi2))
{
if (!bHaveVerFromKernel32) // we failed above; let's hope this would be useful
aVer.append(OUString::number(vi2.dwMajorVersion) + "."
+ OUString::number(vi2.dwMinorVersion));
aVer.append(" ");
if (vi2.szCSDVersion[0])
aVer.append(o3tl::toU(vi2.szCSDVersion)).append(" ");
aVer.append("Build " + OUString::number(vi2.dwBuildNumber));
bHaveVerFromRtlGetVersion = true;
}
}
}
if (!bHaveVerFromKernel32 && !bHaveVerFromRtlGetVersion)
aVer.append("unknown");
return aVer.makeStringAndClear();
}
std::shared_ptr<vcl::BackendCapabilities> WinSalInstance::GetBackendCapabilities()
{
auto pBackendCapabilities = SalInstance::GetBackendCapabilities();
#if HAVE_FEATURE_SKIA
#if SKIA_USE_BITMAP32
if( SkiaHelper::isVCLSkiaEnabled())
pBackendCapabilities->mbSupportsBitmap32 = true;
#endif
#endif
return pBackendCapabilities;
}
/* vim:set shiftwidth=4 softtabstop=4 expandtab: */
|