302 lines
9.3 KiB
C++
302 lines
9.3 KiB
C++
/////////////////////////////////////////////////////////////////////////////
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// Name: wx/msw/private/fswatcher.h
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// Purpose: File system watcher impl classes
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// Author: Bartosz Bekier
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// Created: 2009-05-26
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// Copyright: (c) 2009 Bartosz Bekier <bartosz.bekier@gmail.com>
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// Licence: wxWindows licence
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/////////////////////////////////////////////////////////////////////////////
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#ifndef WX_MSW_PRIVATE_FSWATCHER_H_
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#define WX_MSW_PRIVATE_FSWATCHER_H_
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#include "wx/filename.h"
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#include "wx/vector.h"
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#include "wx/msw/private.h"
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// ============================================================================
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// wxFSWatcherEntry implementation & helper declarations
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// ============================================================================
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class wxFSWatcherImplMSW;
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class wxFSWatchEntryMSW : public wxFSWatchInfo
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{
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public:
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enum
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{
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BUFFER_SIZE = 4096 // TODO parametrize
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};
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wxFSWatchEntryMSW(const wxFSWatchInfo& winfo) :
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wxFSWatchInfo(winfo)
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{
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// get handle for this path
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m_handle = OpenDir(m_path);
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m_overlapped = (OVERLAPPED*)calloc(1, sizeof(OVERLAPPED));
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wxZeroMemory(m_buffer);
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}
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virtual ~wxFSWatchEntryMSW()
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{
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wxLogTrace(wxTRACE_FSWATCHER, "Deleting entry '%s'", m_path);
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if (m_handle != INVALID_HANDLE_VALUE)
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{
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if (!CloseHandle(m_handle))
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{
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wxLogSysError(_("Unable to close the handle for '%s'"),
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m_path);
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}
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}
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free(m_overlapped);
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}
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bool IsOk() const
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{
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return m_handle != INVALID_HANDLE_VALUE;
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}
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HANDLE GetHandle() const
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{
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return m_handle;
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}
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void* GetBuffer()
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{
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return m_buffer;
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}
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OVERLAPPED* GetOverlapped() const
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{
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return m_overlapped;
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}
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private:
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// opens dir with all flags, attributes etc. necessary to be later
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// asynchronous watched with ReadDirectoryChangesW
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static HANDLE OpenDir(const wxString& path)
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{
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HANDLE handle = CreateFile(path.t_str(),
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FILE_LIST_DIRECTORY,
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FILE_SHARE_READ |
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FILE_SHARE_WRITE |
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FILE_SHARE_DELETE,
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NULL,
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OPEN_EXISTING,
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FILE_FLAG_BACKUP_SEMANTICS |
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FILE_FLAG_OVERLAPPED,
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NULL);
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if (handle == INVALID_HANDLE_VALUE)
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{
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wxLogSysError(_("Failed to open directory \"%s\" for monitoring."),
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path);
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}
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return handle;
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}
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HANDLE m_handle; // handle to opened directory
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char m_buffer[BUFFER_SIZE]; // buffer for fs events
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OVERLAPPED* m_overlapped;
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wxDECLARE_NO_COPY_CLASS(wxFSWatchEntryMSW);
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};
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// ============================================================================
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// wxFSWatcherImplMSW helper classes implementations
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// ============================================================================
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class wxIOCPService
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{
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public:
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wxIOCPService() :
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m_iocp(INVALID_HANDLE_VALUE)
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{
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Init();
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}
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~wxIOCPService()
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{
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if (m_iocp != INVALID_HANDLE_VALUE)
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{
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if (!CloseHandle(m_iocp))
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{
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wxLogSysError(_("Unable to close I/O completion port handle"));
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}
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}
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m_watches.clear();
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}
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// associates a wxFSWatchEntryMSW with completion port
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bool Add(wxSharedPtr<wxFSWatchEntryMSW> watch)
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{
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wxCHECK_MSG( m_iocp != INVALID_HANDLE_VALUE, false, "IOCP not init" );
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wxCHECK_MSG( watch->IsOk(), false, "Invalid watch" );
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// associate with IOCP
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HANDLE ret = CreateIoCompletionPort(watch->GetHandle(), m_iocp,
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(ULONG_PTR)watch.get(), 0);
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if (ret == NULL)
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{
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wxLogSysError(_("Unable to associate handle with "
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"I/O completion port"));
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return false;
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}
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else if (ret != m_iocp)
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{
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wxFAIL_MSG(_("Unexpectedly new I/O completion port was created"));
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return false;
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}
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// add to watch map
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wxFSWatchEntries::value_type val(watch->GetPath(), watch);
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return m_watches.insert(val).second;
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}
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// Removes a watch we're currently using. Notice that this doesn't happen
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// immediately, CompleteRemoval() must be called later when it's really
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// safe to delete the watch, i.e. after completion of the IO operation
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// using it.
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bool ScheduleForRemoval(const wxSharedPtr<wxFSWatchEntryMSW>& watch)
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{
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wxCHECK_MSG( m_iocp != INVALID_HANDLE_VALUE, false, "IOCP not init" );
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wxCHECK_MSG( watch->IsOk(), false, "Invalid watch" );
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const wxString path = watch->GetPath();
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wxFSWatchEntries::iterator it = m_watches.find(path);
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wxCHECK_MSG( it != m_watches.end(), false,
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"Can't remove a watch we don't use" );
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// We can't just delete the watch here as we can have pending events
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// for it and if we destroyed it now, we could get a dangling (or,
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// worse, reused to point to another object) pointer in ReadEvents() so
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// just remember that this one should be removed when CompleteRemoval()
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// is called later.
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m_removedWatches.insert(wxFSWatchEntries::value_type(path, watch));
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m_watches.erase(it);
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return true;
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}
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// Really remove the watch previously passed to ScheduleForRemoval().
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//
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// It's ok to call this for a watch that hadn't been removed before, in
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// this case we'll just return false and do nothing.
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bool CompleteRemoval(wxFSWatchEntryMSW* watch)
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{
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wxFSWatchEntries::iterator it = m_removedWatches.find(watch->GetPath());
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if ( it == m_removedWatches.end() )
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return false;
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// Removing the object from the map will result in deleting the watch
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// itself as it's not referenced from anywhere else now.
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m_removedWatches.erase(it);
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return true;
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}
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// post completion packet
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bool PostEmptyStatus()
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{
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wxCHECK_MSG( m_iocp != INVALID_HANDLE_VALUE, false, "IOCP not init" );
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int ret = PostQueuedCompletionStatus(m_iocp, 0, 0, NULL);
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if (!ret)
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{
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wxLogSysError(_("Unable to post completion status"));
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}
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return ret != 0;
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}
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// Wait for completion status to arrive.
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// This function can block forever in it's wait for completion status.
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// Use PostEmptyStatus() to wake it up (and end the worker thread)
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bool GetStatus(unsigned long* count, wxFSWatchEntryMSW** watch,
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OVERLAPPED** overlapped)
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{
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wxCHECK_MSG( m_iocp != INVALID_HANDLE_VALUE, false, "IOCP not init" );
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wxCHECK_MSG( count != NULL, false, "Null out parameter 'count'");
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wxCHECK_MSG( watch != NULL, false, "Null out parameter 'watch'");
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wxCHECK_MSG( overlapped != NULL, false,
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"Null out parameter 'overlapped'");
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int ret = GetQueuedCompletionStatus(m_iocp, count, (ULONG_PTR *)watch,
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overlapped, INFINITE);
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if (!ret)
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{
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wxLogSysError(_("Unable to dequeue completion packet"));
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}
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return ret != 0;
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}
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protected:
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bool Init()
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{
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m_iocp = CreateIoCompletionPort(INVALID_HANDLE_VALUE, NULL, 0, 0);
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if (m_iocp == NULL)
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{
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wxLogSysError(_("Unable to create I/O completion port"));
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}
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return m_iocp != NULL;
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}
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HANDLE m_iocp;
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// The hash containing all the wxFSWatchEntryMSW objects currently being
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// watched keyed by their paths.
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wxFSWatchEntries m_watches;
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// Contains the watches which had been removed but are still pending.
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wxFSWatchEntries m_removedWatches;
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};
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class wxIOCPThread : public wxThread
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{
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public:
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wxIOCPThread(wxFSWatcherImplMSW* service, wxIOCPService* iocp);
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// finishes this thread
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bool Finish();
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protected:
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// structure to hold information needed to process one native event
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// this is just a dummy holder, so it doesn't take ownership of it's data
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struct wxEventProcessingData
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{
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wxEventProcessingData(const FILE_NOTIFY_INFORMATION* ne,
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const wxFSWatchEntryMSW* watch) :
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nativeEvent(ne), watch(watch)
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{}
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const FILE_NOTIFY_INFORMATION* nativeEvent;
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const wxFSWatchEntryMSW* watch;
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};
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virtual ExitCode Entry();
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// wait for events to occur, read them and send to interested parties
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// returns false it empty status was read, which means we whould exit
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// true otherwise
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bool ReadEvents();
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void ProcessNativeEvents(wxVector<wxEventProcessingData>& events);
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void SendEvent(wxFileSystemWatcherEvent& evt);
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static int Native2WatcherFlags(int flags);
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static wxString FileNotifyInformationToString(
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const FILE_NOTIFY_INFORMATION& e);
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static wxFileName GetEventPath(const wxFSWatchEntryMSW& watch,
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const FILE_NOTIFY_INFORMATION& e);
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wxFSWatcherImplMSW* m_service;
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wxIOCPService* m_iocp;
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};
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#endif /* WX_MSW_PRIVATE_FSWATCHER_H_ */
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