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SWT is an open source widget toolkit for Java designed to provide efficient, portable access to the user-interface facilities of the operating systems on which it is implemented.
/*******************************************************************************
* Copyright (c) 2000, 2012 IBM Corporation and others.
* All rights reserved. This program and the accompanying materials
* are made available under the terms of the Eclipse Public License v1.0
* which accompanies this distribution, and is available at
* http://www.eclipse.org/legal/epl-v10.html
*
* Contributors:
* IBM Corporation - initial API and implementation
*******************************************************************************/
package org.eclipse.swt.widgets;
import java.util.*;
import org.eclipse.swt.*;
import org.eclipse.swt.graphics.*;
import org.eclipse.swt.internal.*;
import org.eclipse.swt.internal.cocoa.*;
/**
* Instances of this class are responsible for managing the
* connection between SWT and the underlying operating
* system. Their most important function is to implement
* the SWT event loop in terms of the platform event model.
* They also provide various methods for accessing information
* about the operating system, and have overall control over
* the operating system resources which SWT allocates.
*
* Applications which are built with SWT will almost always
* require only a single display. In particular, some platforms
* which SWT supports will not allow more than one active
* display. In other words, some platforms do not support
* creating a new display if one already exists that has not been
* sent the dispose() message.
*
* In SWT, the thread which creates a Display
* instance is distinguished as the user-interface thread
* for that display.
*
* The user-interface thread for a particular display has the
* following special attributes:
*
*
* The event loop for that display must be run from the thread.
*
*
* Some SWT API methods (notably, most of the public methods in
* Widget and its subclasses), may only be called
* from the thread. (To support multi-threaded user-interface
* applications, class Display provides inter-thread
* communication methods which allow threads other than the
* user-interface thread to request that it perform operations
* on their behalf.)
*
*
* The thread is not allowed to construct other
* Displays until that display has been disposed.
* (Note that, this is in addition to the restriction mentioned
* above concerning platform support for multiple displays. Thus,
* the only way to have multiple simultaneously active displays,
* even on platforms which support it, is to have multiple threads.)
*
*
* Enforcing these attributes allows SWT to be implemented directly
* on the underlying operating system's event model. This has
* numerous benefits including smaller footprint, better use of
* resources, safer memory management, clearer program logic,
* better performance, and fewer overall operating system threads
* required. The down side however, is that care must be taken
* (only) when constructing multi-threaded applications to use the
* inter-thread communication mechanisms which this class provides
* when required.
*
* All SWT API methods which may only be called from the user-interface
* thread are distinguished in their documentation by indicating that
* they throw the "ERROR_THREAD_INVALID_ACCESS"
* SWT exception.
*
*
*
Styles:
*
(none)
*
Events:
*
Close, Dispose, OpenDocument, Settings, Skin
*
*
* IMPORTANT: This class is not intended to be subclassed.
*
* @see #syncExec
* @see #asyncExec
* @see #wake
* @see #readAndDispatch
* @see #sleep
* @see Device#dispose
* @see Display snippets
* @see Sample code and further information
* @noextend This class is not intended to be subclassed by clients.
*/
public class Display extends Device {
static byte[] types = {'*','\0'};
static int size = C.PTR_SIZEOF, align = C.PTR_SIZEOF == 4 ? 2 : 3;
/* Windows and Events */
Event [] eventQueue;
EventTable eventTable, filterTable;
boolean disposing;
int sendEventCount;
/* gesture event state */
double rotation;
double magnification;
boolean gestureActive;
/* touch event state */
int touchCounter;
long primaryIdentifier;
NSMutableArray currentTouches;
TouchSource[] touchSources;
/* Sync/Async Widget Communication */
Synchronizer synchronizer;
Thread thread;
boolean allowTimers = true, runAsyncMessages = true;
GCData[] contexts;
Caret currentCaret;
boolean ignoreFocus;
boolean sendEvent;
int clickCountButton, clickCount;
int blinkTime;
Control currentControl, trackingControl, tooltipControl;
Widget tooltipTarget;
NSMutableArray isPainting, needsDisplay, needsDisplayInRect, runLoopModes;
NSDictionary markedAttributes;
/* Fonts */
boolean smallFonts;
NSFont buttonFont, popUpButtonFont, textFieldFont, secureTextFieldFont;
NSFont searchFieldFont, comboBoxFont, sliderFont, scrollerFont;
NSFont textViewFont, tableViewFont, outlineViewFont, datePickerFont;
NSFont boxFont, tabViewFont, progressIndicatorFont;
Shell [] modalShells;
Dialog modalDialog;
NSPanel modalPanel;
Menu menuBar;
Menu[] menus, popups;
NSApplication application;
long /*int*/ applicationClass;
NSImage dockImage;
boolean isEmbedded;
static boolean launched = false;
int systemUIMode, systemUIOptions;
/* Focus */
Control focusControl, currentFocusControl;
int focusEvent;
NSWindow screenWindow, keyWindow;
NSAutoreleasePool[] pools;
int poolCount, loopCount;
int[] screenID = new int[32];
NSPoint[] screenCascade = new NSPoint[32];
long /*int*/ runLoopObserver;
Callback observerCallback;
boolean lockCursor = true;
long /*int*/ oldCursorSetProc;
Callback cursorSetCallback;
Combo currentCombo;
boolean mozillaRunning;
static final String MOZILLA_RUNNING = "org.eclipse.swt.internal.mozillaRunning"; //$NON-NLS-1$
// the following Callbacks are never freed
static Callback windowCallback2, windowCallback3, windowCallback4, windowCallback5, windowCallback6;
static Callback dialogCallback3, dialogCallback4, dialogCallback5;
static Callback applicationCallback2, applicationCallback3, applicationCallback4, applicationCallback6;
/* Display Shutdown */
Runnable [] disposeList;
/* Deferred Layout list */
Composite[] layoutDeferred;
int layoutDeferredCount;
/* System Tray */
Tray tray;
TrayItem currentTrayItem;
Menu trayItemMenu;
/* Main menu bar and application menu */
Menu appMenuBar, appMenu;
/* TaskBar */
TaskBar taskBar;
/* System Resources */
Image errorImage, infoImage, warningImage;
Cursor [] cursors = new Cursor [SWT.CURSOR_HAND + 1];
/* System Colors */
double /*float*/ [][] colors;
double /*float*/ [] alternateSelectedControlTextColor, selectedControlTextColor;
double /*float*/ [] alternateSelectedControlColor, secondarySelectedControlColor;
/* Key Mappings. */
static int [] [] KeyTable = {
/* Keyboard and Mouse Masks */
{58, SWT.ALT},
{56, SWT.SHIFT},
{59, SWT.CONTROL},
{55, SWT.COMMAND},
{61, SWT.ALT},
{62, SWT.CONTROL},
{60, SWT.SHIFT},
{54, SWT.COMMAND},
/* Non-Numeric Keypad Keys */
{126, SWT.ARROW_UP},
{125, SWT.ARROW_DOWN},
{123, SWT.ARROW_LEFT},
{124, SWT.ARROW_RIGHT},
{116, SWT.PAGE_UP},
{121, SWT.PAGE_DOWN},
{115, SWT.HOME},
{119, SWT.END},
// {??, SWT.INSERT},
/* Virtual and Ascii Keys */
{51, SWT.BS},
{36, SWT.CR},
{117, SWT.DEL},
{53, SWT.ESC},
{76, SWT.LF},
{48, SWT.TAB},
/* Functions Keys */
{122, SWT.F1},
{120, SWT.F2},
{99, SWT.F3},
{118, SWT.F4},
{96, SWT.F5},
{97, SWT.F6},
{98, SWT.F7},
{100, SWT.F8},
{101, SWT.F9},
{109, SWT.F10},
{103, SWT.F11},
{111, SWT.F12},
{105, SWT.F13},
{107, SWT.F14},
{113, SWT.F15},
{106, SWT.F16},
{64, SWT.F17},
{79, SWT.F18},
{80, SWT.F19},
// {??, SWT.F20},
/* Numeric Keypad Keys */
{67, SWT.KEYPAD_MULTIPLY},
{69, SWT.KEYPAD_ADD},
{76, SWT.KEYPAD_CR},
{78, SWT.KEYPAD_SUBTRACT},
{65, SWT.KEYPAD_DECIMAL},
{75, SWT.KEYPAD_DIVIDE},
{82, SWT.KEYPAD_0},
{83, SWT.KEYPAD_1},
{84, SWT.KEYPAD_2},
{85, SWT.KEYPAD_3},
{86, SWT.KEYPAD_4},
{87, SWT.KEYPAD_5},
{88, SWT.KEYPAD_6},
{89, SWT.KEYPAD_7},
{91, SWT.KEYPAD_8},
{92, SWT.KEYPAD_9},
{81, SWT.KEYPAD_EQUAL},
/* Other keys */
{57, SWT.CAPS_LOCK},
{71, SWT.NUM_LOCK},
// {??, SWT.SCROLL_LOCK},
// {??, SWT.PAUSE},
// {??, SWT.BREAK},
// {??, SWT.PRINT_SCREEN},
{114, SWT.HELP},
};
static String APP_NAME;
static String APP_VERSION = ""; //$NON-NLS-1$
static final String ADD_WIDGET_KEY = "org.eclipse.swt.internal.addWidget"; //$NON-NLS-1$
static final byte[] SWT_OBJECT = {'S', 'W', 'T', '_', 'O', 'B', 'J', 'E', 'C', 'T', '\0'};
static final byte[] SWT_EMBED_FRAMES = {'S', 'W', 'T', '_', 'E', 'M', 'B', 'E', 'D', '_', 'F', 'R', 'A', 'M', 'E', 'S', '\0'};
static final byte[] SWT_IMAGE = {'S', 'W', 'T', '_', 'I', 'M', 'A', 'G', 'E', '\0'};
static final byte[] SWT_ROW = {'S', 'W', 'T', '_', 'R', 'O', 'W', '\0'};
static final byte[] SWT_COLUMN = {'S', 'W', 'T', '_', 'C', 'O', 'L', 'U', 'M', 'N', '\0'};
static final String SET_MODAL_DIALOG = "org.eclipse.swt.internal.modalDialog"; //$NON-NLS-1$
/* Multiple Displays. */
static Display Default;
static Display [] Displays = new Display [4];
/* Skinning support */
static final int GROW_SIZE = 1024;
Widget [] skinList = new Widget [GROW_SIZE];
int skinCount;
/* Package Name */
static final String PACKAGE_PREFIX = "org.eclipse.swt.widgets.";
/* Timer */
Runnable timerList [];
NSTimer nsTimers [];
SWTWindowDelegate timerDelegate;
static SWTApplicationDelegate applicationDelegate;
static NSObject currAppDelegate;
/* Settings */
boolean runSettings;
SWTWindowDelegate settingsDelegate;
static final int DEFAULT_BUTTON_INTERVAL = 30;
/* Display Data */
Object data;
String [] keys;
Object [] values;
static Map/**/ dynamicObjectMap;
/*
* TEMPORARY CODE. Install the runnable that
* gets the current display. This code will
* be removed in the future.
*/
static {
DeviceFinder = new Runnable () {
public void run () {
Device device = getCurrent ();
if (device == null) {
device = getDefault ();
}
setDevice (device);
}
};
}
/*
* TEMPORARY CODE.
*/
static void setDevice (Device device) {
CurrentDevice = device;
}
static byte [] ascii (String name) {
int length = name.length ();
char [] chars = new char [length];
name.getChars (0, length, chars, 0);
byte [] buffer = new byte [length + 1];
for (int i=0; iSWT. When the event does occur,
* the listener is notified by sending it the handleEvent()
* message.
*
* Setting the type of an event to SWT.None from
* within the handleEvent() method can be used to
* change the event type and stop subsequent Java listeners
* from running. Because event filters run before other listeners,
* event filters can both block other listeners and set arbitrary
* fields within an event. For this reason, event filters are both
* powerful and dangerous. They should generally be avoided for
* performance, debugging and code maintenance reasons.
*
*
* @param eventType the type of event to listen for
* @param listener the listener which should be notified when the event occurs
*
* @exception IllegalArgumentException
*
ERROR_NULL_ARGUMENT - if the listener is null
*
* @exception SWTException
*
ERROR_THREAD_INVALID_ACCESS - if not called from the thread that created the receiver
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
*
* @see Listener
* @see SWT
* @see #removeFilter
* @see #removeListener
*
* @since 3.0
*/
public void addFilter (int eventType, Listener listener) {
checkDevice ();
if (listener == null) error (SWT.ERROR_NULL_ARGUMENT);
if (filterTable == null) filterTable = new EventTable ();
filterTable.hook (eventType, listener);
}
void addLayoutDeferred (Composite comp) {
if (layoutDeferred == null) layoutDeferred = new Composite [64];
if (layoutDeferredCount == layoutDeferred.length) {
Composite [] temp = new Composite [layoutDeferred.length + 64];
System.arraycopy (layoutDeferred, 0, temp, 0, layoutDeferred.length);
layoutDeferred = temp;
}
layoutDeferred[layoutDeferredCount++] = comp;
}
/**
* Adds the listener to the collection of listeners who will
* be notified when an event of the given type occurs. The event
* type is one of the event constants defined in class SWT.
* When the event does occur in the display, the listener is notified by
* sending it the handleEvent() message.
*
* @param eventType the type of event to listen for
* @param listener the listener which should be notified when the event occurs
*
* @exception IllegalArgumentException
*
ERROR_NULL_ARGUMENT - if the listener is null
*
* @exception SWTException
*
ERROR_THREAD_INVALID_ACCESS - if not called from the thread that created the receiver
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
*
* @see Listener
* @see SWT
* @see #removeListener
*
* @since 2.0
*/
public void addListener (int eventType, Listener listener) {
checkDevice ();
if (listener == null) error (SWT.ERROR_NULL_ARGUMENT);
if (eventTable == null) eventTable = new EventTable ();
eventTable.hook (eventType, listener);
}
void addMenu (Menu menu) {
if (menus == null) menus = new Menu [12];
for (int i=0; i= skinList.length) {
Widget[] newSkinWidgets = new Widget [skinList.length + GROW_SIZE];
System.arraycopy (skinList, 0, newSkinWidgets, 0, skinList.length);
skinList = newSkinWidgets;
}
skinList [skinCount++] = widget;
}
void addWidget (NSObject view, Widget widget) {
if (view == null) return;
long /*int*/ ivar = OS.object_setInstanceVariable (view.id, SWT_OBJECT, widget.jniRef);
if (ivar == 0) {
if (dynamicObjectMap == null) {
dynamicObjectMap = new HashMap();
}
LONG JNIRef = new LONG(widget.jniRef);
dynamicObjectMap.put(view, JNIRef);
}
}
/**
* Causes the run() method of the runnable to
* be invoked by the user-interface thread at the next
* reasonable opportunity. The caller of this method continues
* to run in parallel, and is not notified when the
* runnable has completed. Specifying null as the
* runnable simply wakes the user-interface thread when run.
*
* Note that at the time the runnable is invoked, widgets
* that have the receiver as their display may have been
* disposed. Therefore, it is necessary to check for this
* case inside the runnable before accessing the widget.
*
*
* @param runnable code to run on the user-interface thread or null
*
* @exception SWTException
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
*
* @see #syncExec
*/
public void asyncExec (Runnable runnable) {
synchronized (Device.class) {
if (isDisposed ()) error (SWT.ERROR_DEVICE_DISPOSED);
synchronizer.asyncExec (runnable);
}
}
/**
* Causes the system hardware to emit a short sound
* (if it supports this capability).
*
* @exception SWTException
*
ERROR_THREAD_INVALID_ACCESS - if not called from the thread that created the receiver
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
*/
public void beep () {
checkDevice ();
OS.NSBeep ();
}
void cascadeWindow (NSWindow window, NSScreen screen) {
NSDictionary dictionary = screen.deviceDescription();
int screenNumber = new NSNumber(dictionary.objectForKey(NSString.stringWith("NSScreenNumber")).id).intValue();
int index = 0;
while (screenID[index] != 0 && screenID[index] != screenNumber) index++;
screenID[index] = screenNumber;
NSPoint cascade = screenCascade[index];
if (cascade == null) {
NSRect frame = screen.frame();
cascade = new NSPoint();
cascade.x = frame.x;
cascade.y = frame.y + frame.height;
}
screenCascade[index] = window.cascadeTopLeftFromPoint(cascade);
}
protected void checkDevice () {
if (thread == null) error (SWT.ERROR_WIDGET_DISPOSED);
if (thread != Thread.currentThread ()) error (SWT.ERROR_THREAD_INVALID_ACCESS);
if (isDisposed ()) error (SWT.ERROR_DEVICE_DISPOSED);
}
void checkEnterExit (Control control, NSEvent nsEvent, boolean send) {
if (control != currentControl) {
if (currentControl != null && !currentControl.isDisposed()) {
currentControl.sendMouseEvent (nsEvent, SWT.MouseExit, send);
}
if (control != null && control.isDisposed()) control = null;
currentControl = control;
if (control != null) {
control.sendMouseEvent (nsEvent, SWT.MouseEnter, send);
}
setCursor (control);
}
NSPoint location = NSEvent.mouseLocation();
if (control == null || control != currentControl || hoverLastLocation == null || location.x != hoverLastLocation.x || location.y != hoverLastLocation.y) {
hoverLastLocation = location;
timerExec (control != null && !control.isDisposed() ? getToolTipTime () : -1, hoverTimer);
}
}
void checkFocus () {
if (ignoreFocus) return;
Control oldControl = currentFocusControl;
Control newControl = getFocusControl ();
if (oldControl != newControl) {
if (oldControl != null && !oldControl.isDisposed ()) {
oldControl.sendFocusEvent (SWT.FocusOut);
}
currentFocusControl = newControl;
if (newControl != null && !newControl.isDisposed ()) {
newControl.sendFocusEvent (SWT.FocusIn);
}
}
}
/**
* Checks that this class can be subclassed.
*
* IMPORTANT: See the comment in Widget.checkSubclass().
*
*
* @exception SWTException
*
ERROR_INVALID_SUBCLASS - if this class is not an allowed subclass
*
*
* @see Widget#checkSubclass
*/
protected void checkSubclass () {
if (!Display.isValidClass (getClass ())) error (SWT.ERROR_INVALID_SUBCLASS);
}
/**
* Constructs a new instance of this class.
*
* Note: The resulting display is marked as the current
* display. If this is the first display which has been
* constructed since the application started, it is also
* marked as the default display.
*
*
* @exception SWTException
*
ERROR_THREAD_INVALID_ACCESS - if called from a thread that already created an existing display
*
ERROR_INVALID_SUBCLASS - if this class is not an allowed subclass
*
*
* @see #getCurrent
* @see #getDefault
* @see Widget#checkSubclass
* @see Shell
*/
public Display () {
this (null);
}
/**
* Constructs a new instance of this class using the parameter.
*
* @param data the device data
*/
public Display (DeviceData data) {
super (data);
}
static void checkDisplay (Thread thread, boolean multiple) {
synchronized (Device.class) {
for (int i=0; i
*
ERROR_THREAD_INVALID_ACCESS - if not called from the thread that created the receiver
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
*
* @see Device#dispose
*
* @since 2.0
*/
public void close () {
checkDevice ();
Event event = new Event ();
sendEvent (SWT.Close, event);
if (event.doit) dispose ();
}
/**
* Creates the device in the operating system. If the device
* does not have a handle, this method may do nothing depending
* on the device.
*
* This method is called before init.
*
*
* @param data the DeviceData which describes the receiver
*
* @see #init
*/
protected void create (DeviceData data) {
checkSubclass ();
checkDisplay (thread = Thread.currentThread (), false);
createDisplay (data);
register (this);
synchronizer = new Synchronizer (this);
if (Default == null) Default = this;
}
void createDisplay (DeviceData data) {
if (OS.VERSION < 0x1050) {
System.out.println ("***WARNING: SWT requires MacOS X version " + 10 + "." + 5 + " or greater"); //$NON-NLS-1$ //$NON-NLS-2$ //$NON-NLS-3$
System.out.println ("***WARNING: Detected: " + Integer.toHexString((OS.VERSION & 0xFF00) >> 8) + "." + Integer.toHexString((OS.VERSION & 0xF0) >> 4) + "." + Integer.toHexString(OS.VERSION & 0xF)); //$NON-NLS-1$ //$NON-NLS-2$ //$NON-NLS-3$
error(SWT.ERROR_NOT_IMPLEMENTED);
}
NSThread nsthread = NSThread.currentThread();
if (!NSThread.isMainThread()) {
System.out.println ("***WARNING: Display must be created on main thread due to Cocoa restrictions."); //$NON-NLS-1$
error(SWT.ERROR_THREAD_INVALID_ACCESS);
}
NSMutableDictionary dictionary = nsthread.threadDictionary();
NSString key = NSString.stringWith("SWT_NSAutoreleasePool");
NSNumber id = new NSNumber(dictionary.objectForKey(key));
addPool(new NSAutoreleasePool(id.integerValue()));
application = NSApplication.sharedApplication();
isEmbedded = application.isRunning();
/*
* Feature in the Macintosh. On OS 10.2, it is necessary
* to explicitly check in with the Process Manager and set
* the current process to be the front process in order for
* windows to come to the front by default. The fix is call
* both GetCurrentProcess() and SetFrontProcess().
*
* NOTE: It is not actually necessary to use the process
* serial number returned by GetCurrentProcess() in the
* call to SetFrontProcess() (ie. kCurrentProcess can be
* used) but both functions must be called in order for
* windows to come to the front.
*/
int [] psn = new int [2];
if (OS.GetCurrentProcess (psn) == OS.noErr) {
int pid = OS.getpid ();
long /*int*/ ptr = getApplicationName().UTF8String();
if (ptr != 0) OS.CPSSetProcessName (psn, ptr);
if (!isBundled ()) {
OS.TransformProcessType (psn, OS.kProcessTransformToForegroundApplication);
OS.SetFrontProcess (psn);
}
ptr = OS.getenv (ascii ("APP_ICON_" + pid));
if (ptr != 0) {
NSString path = NSString.stringWithUTF8String (ptr);
NSImage image = (NSImage) new NSImage().alloc();
image = image.initByReferencingFile(path);
dockImage = image;
application.setApplicationIconImage(image);
}
}
String className = "SWTApplication";
long /*int*/ cls;
if ((cls = OS.objc_lookUpClass (className)) == 0) {
Class clazz = getClass();
applicationCallback2 = new Callback(clazz, "applicationProc", 2);
long /*int*/ proc2 = applicationCallback2.getAddress();
if (proc2 == 0) error (SWT.ERROR_NO_MORE_CALLBACKS);
applicationCallback3 = new Callback(clazz, "applicationProc", 3);
long /*int*/ proc3 = applicationCallback3.getAddress();
if (proc3 == 0) error (SWT.ERROR_NO_MORE_CALLBACKS);
applicationCallback4 = new Callback(clazz, "applicationProc", 4);
long /*int*/ proc4 = applicationCallback4.getAddress();
if (proc4 == 0) error (SWT.ERROR_NO_MORE_CALLBACKS);
applicationCallback6 = new Callback(clazz, "applicationProc", 6);
long /*int*/ proc6 = applicationCallback6.getAddress();
if (proc6 == 0) error (SWT.ERROR_NO_MORE_CALLBACKS);
cls = OS.objc_allocateClassPair(OS.object_getClass(application.id), className, 0);
OS.class_addMethod(cls, OS.sel_sendEvent_, proc3, "@:@");
OS.class_addMethod(cls, OS.sel_nextEventMatchingMask_untilDate_inMode_dequeue_, proc6, "@:i@@B");
OS.class_addMethod(cls, OS.sel_isRunning, proc2, "@:");
OS.class_addMethod(cls, OS.sel_finishLaunching, proc2, "@:");
OS.objc_registerClassPair(cls);
}
applicationClass = OS.object_setClass(application.id, cls);
className = "SWTApplicationDelegate";
if (OS.objc_lookUpClass (className) == 0) {
long /*int*/ appProc3 = applicationCallback3.getAddress();
if (appProc3 == 0) error (SWT.ERROR_NO_MORE_CALLBACKS);
cls = OS.objc_allocateClassPair(OS.class_NSObject, className, 0);
long /*int*/ appProc4 = applicationCallback4.getAddress();
if (appProc4 == 0) error (SWT.ERROR_NO_MORE_CALLBACKS);
cls = OS.objc_allocateClassPair(OS.class_NSObject, className, 0);
OS.class_addMethod(cls, OS.sel_applicationWillFinishLaunching_, appProc3, "@:@");
OS.class_addMethod(cls, OS.sel_terminate_, appProc3, "@:@");
OS.class_addMethod(cls, OS.sel_orderFrontStandardAboutPanel_, appProc3, "@:@");
OS.class_addMethod(cls, OS.sel_hideOtherApplications_, appProc3, "@:@");
OS.class_addMethod(cls, OS.sel_hide_, appProc3, "@:@");
OS.class_addMethod(cls, OS.sel_unhideAllApplications_, appProc3, "@:@");
OS.class_addMethod(cls, OS.sel_applicationDidBecomeActive_, appProc3, "@:@");
OS.class_addMethod(cls, OS.sel_applicationDidResignActive_, appProc3, "@:@");
OS.class_addMethod(cls, OS.sel_applicationDockMenu_, appProc3, "@:@");
OS.class_addMethod(cls, OS.sel_application_openFile_, appProc4, "@:@@");
OS.class_addMethod(cls, OS.sel_application_openFiles_, appProc4, "@:@@");
OS.class_addMethod(cls, OS.sel_applicationShouldHandleReopen_hasVisibleWindows_, appProc4, "@:@B");
OS.class_addMethod(cls, OS.sel_applicationShouldTerminate_, appProc3, "@:@");
OS.objc_registerClassPair(cls);
}
int[] bufferMode = new int[1], bufferOptions = new int[1];
OS.GetSystemUIMode(bufferMode, bufferOptions);
systemUIMode = bufferMode[0];
systemUIOptions = bufferOptions[0];
}
void createMainMenu () {
NSString appName = getApplicationName();
NSString emptyStr = NSString.string();
NSMenu mainMenu = (NSMenu)new NSMenu().alloc();
mainMenu.initWithTitle(emptyStr);
NSMenuItem menuItem;
NSMenu appleMenu;
NSString format = NSString.stringWith("%@ %@"), title;
NSMenuItem appItem = menuItem = mainMenu.addItemWithTitle(emptyStr, 0, emptyStr);
appleMenu = (NSMenu)new NSMenu().alloc();
appleMenu.initWithTitle(emptyStr);
OS.objc_msgSend(application.id, OS.sel_registerName("setAppleMenu:"), appleMenu.id);
title = new NSString(OS.objc_msgSend(OS.class_NSString, OS.sel_stringWithFormat_, format.id, NSString.stringWith(SWT.getMessage("About")).id, appName.id));
menuItem = appleMenu.addItemWithTitle(title, OS.sel_orderFrontStandardAboutPanel_, emptyStr);
menuItem.setTarget(applicationDelegate);
appleMenu.addItem(NSMenuItem.separatorItem());
title = NSString.stringWith(SWT.getMessage("Preferences..."));
menuItem = appleMenu.addItemWithTitle(title, 0, NSString.stringWith(","));
/*
* Through the magic of nib decompilation, the prefs item must have a tag of 42
* or else the AWT won't be able to find it.
*/
menuItem.setTag(42);
appleMenu.addItem(NSMenuItem.separatorItem());
title = NSString.stringWith(SWT.getMessage("Services"));
menuItem = appleMenu.addItemWithTitle(title, 0, emptyStr);
NSMenu servicesMenu = (NSMenu)new NSMenu().alloc();
servicesMenu.initWithTitle(emptyStr);
appleMenu.setSubmenu(servicesMenu, menuItem);
servicesMenu.release();
application.setServicesMenu(servicesMenu);
appleMenu.addItem(NSMenuItem.separatorItem());
title = new NSString(OS.objc_msgSend(OS.class_NSString, OS.sel_stringWithFormat_, format.id, NSString.stringWith(SWT.getMessage("Hide")).id, appName.id));
menuItem = appleMenu.addItemWithTitle(title, OS.sel_hide_, NSString.stringWith("h"));
menuItem.setTarget(applicationDelegate);
title = NSString.stringWith(SWT.getMessage("Hide Others"));
menuItem = appleMenu.addItemWithTitle(title, OS.sel_hideOtherApplications_, NSString.stringWith("h"));
menuItem.setKeyEquivalentModifierMask(OS.NSCommandKeyMask | OS.NSAlternateKeyMask);
menuItem.setTarget(applicationDelegate);
title = NSString.stringWith(SWT.getMessage("Show All"));
menuItem = appleMenu.addItemWithTitle(title, OS.sel_unhideAllApplications_, emptyStr);
menuItem.setTarget(applicationDelegate);
appleMenu.addItem(NSMenuItem.separatorItem());
title = new NSString(OS.objc_msgSend(OS.class_NSString, OS.sel_stringWithFormat_, format.id, NSString.stringWith(SWT.getMessage("Quit")).id, appName.id));
menuItem = appleMenu.addItemWithTitle(title, OS.sel_applicationShouldTerminate_, NSString.stringWith("q"));
menuItem.setTarget(applicationDelegate);
mainMenu.setSubmenu(appleMenu, appItem);
appleMenu.release();
application.setMainMenu(mainMenu);
mainMenu.release();
}
NSMutableArray currentTouches() {
synchronized (Device.class) {
if (currentTouches == null) {
currentTouches = (NSMutableArray) new NSMutableArray().alloc();
currentTouches = currentTouches.initWithCapacity(5);
}
}
return currentTouches;
}
long /*int*/ cursorSetProc (long /*int*/ id, long /*int*/ sel) {
if (lockCursor) {
if (currentControl != null) {
Cursor cursor = currentControl.findCursor ();
if (cursor != null && cursor.handle.id != id) return 0;
}
}
OS.call (oldCursorSetProc, id, sel);
return 0;
}
static void deregister (Display display) {
synchronized (Device.class) {
for (int i=0; i
* This method is called after release.
*
* @see Device#dispose
* @see #release
*/
protected void destroy () {
if (this == Default) Default = null;
deregister (this);
destroyDisplay ();
}
void destroyDisplay () {
application = null;
}
/**
* Causes the run() method of the runnable to
* be invoked by the user-interface thread just before the
* receiver is disposed. Specifying a null runnable
* is ignored.
*
* @param runnable code to run at dispose time.
*
* @exception SWTException
*
ERROR_THREAD_INVALID_ACCESS - if not called from the thread that created the receiver
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
*/
public void disposeExec (Runnable runnable) {
checkDevice ();
if (disposeList == null) disposeList = new Runnable [4];
for (int i=0; iWidget subclass which
* represents it in the currently running application, if
* such exists, or null if no matching widget can be found.
*
* IMPORTANT: This method should not be called from
* application code. The arguments are platform-specific.
*
*
* @param handle the handle for the widget
* @return the SWT widget that the handle represents
*
* @exception SWTException
*
ERROR_THREAD_INVALID_ACCESS - if not called from the thread that created the receiver
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
*
* @noreference This method is not intended to be referenced by clients.
*/
public Widget findWidget (long /*int*/ handle) {
checkDevice ();
return getWidget (handle);
}
/**
* Given the operating system handle for a widget,
* and widget-specific id, returns the instance of
* the Widget subclass which represents
* the handle/id pair in the currently running application,
* if such exists, or null if no matching widget can be found.
*
* IMPORTANT: This method should not be called from
* application code. The arguments are platform-specific.
*
*
* @param handle the handle for the widget
* @param id the id for the subwidget (usually an item)
* @return the SWT widget that the handle/id pair represents
*
* @exception SWTException
*
ERROR_THREAD_INVALID_ACCESS - if not called from the thread that created the receiver
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
*
* @noreference This method is not intended to be referenced by clients.
*
* @since 3.1
*/
public Widget findWidget (long /*int*/ handle, long /*int*/ id) {
checkDevice ();
return getWidget (handle);
}
/**
* Given a widget and a widget-specific id, returns the
* instance of the Widget subclass which represents
* the widget/id pair in the currently running application,
* if such exists, or null if no matching widget can be found.
*
* @param widget the widget
* @param id the id for the subwidget (usually an item)
* @return the SWT subwidget (usually an item) that the widget/id pair represents
*
* @exception SWTException
*
ERROR_THREAD_INVALID_ACCESS - if not called from the thread that created the receiver
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
*
* @noreference This method is not intended to be referenced by clients.
*
* @since 3.3
*/
public Widget findWidget (Widget widget, long /*int*/ id) {
checkDevice ();
return null;
}
/**
* Returns the display which the given thread is the
* user-interface thread for, or null if the given thread
* is not a user-interface thread for any display. Specifying
* null as the thread will return null
* for the display.
*
* @param thread the user-interface thread
* @return the display for the given thread
*/
public static Display findDisplay (Thread thread) {
synchronized (Device.class) {
for (int i=0; iShell, or null
* if no shell belonging to the currently running application
* is active.
*
* @return the active shell or null
*
* @exception SWTException
*
ERROR_THREAD_INVALID_ACCESS - if not called from the thread that created the receiver
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
*/
public Shell getActiveShell () {
checkDevice ();
NSWindow window = keyWindow != null ? keyWindow : application.keyWindow();
if (window != null) {
Widget widget = getWidget(window.contentView());
if (widget instanceof Shell) {
return (Shell)widget;
}
// Embedded shell test: If the NSWindow isn't an SWTWindow walk up the
// hierarchy from the hit view to see if some view maps to a Shell.
NSPoint windowLocation = window.mouseLocationOutsideOfEventStream();
NSView hitView = window.contentView().hitTest(windowLocation);
while (hitView != null) {
widget = getWidget(hitView.id);
if (widget instanceof Shell) {
break;
}
hitView = hitView.superview();
}
return (Shell)widget;
}
return null;
}
/**
* Returns a rectangle describing the receiver's size and location. Note that
* on multi-monitor systems the origin can be negative.
*
* @return the bounding rectangle
*
* @exception SWTException
*
ERROR_THREAD_INVALID_ACCESS - if not called from the thread that created the receiver
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
*/
public Rectangle getBounds () {
checkDevice ();
NSArray screens = NSScreen.screens();
return getBounds (screens);
}
Rectangle getBounds (NSArray screens) {
NSScreen screen = new NSScreen(screens.objectAtIndex(0));
NSRect primaryFrame = convertRect(screen, screen.frame());
double /*float*/ minX = Float.MAX_VALUE, maxX = Float.MIN_VALUE;
double /*float*/ minY = Float.MAX_VALUE, maxY = Float.MIN_VALUE;
long /*int*/ count = screens.count();
for (int i = 0; i < count; i++) {
screen = new NSScreen(screens.objectAtIndex(i));
NSRect frame = convertRect(screen, screen.frame());
double /*float*/ x1 = frame.x, x2 = frame.x + frame.width;
double /*float*/ y1 = primaryFrame.height - frame.y, y2 = primaryFrame.height - (frame.y + frame.height);
if (x1 < minX) minX = x1;
if (x2 < minX) minX = x2;
if (x1 > maxX) maxX = x1;
if (x2 > maxX) maxX = x2;
if (y1 < minY) minY = y1;
if (y2 < minY) minY = y2;
if (y1 > maxY) maxY = y1;
if (y2 > maxY) maxY = y2;
}
return new Rectangle ((int)minX, (int)minY, (int)(maxX - minX), (int)(maxY - minY));
}
/**
* Returns the display which the currently running thread is
* the user-interface thread for, or null if the currently
* running thread is not a user-interface thread for any display.
*
* @return the current display
*/
public static Display getCurrent () {
return findDisplay (Thread.currentThread ());
}
int getCaretBlinkTime () {
// checkDevice ();
return blinkTime;
}
/**
* Returns a rectangle which describes the area of the
* receiver which is capable of displaying data.
*
* @return the client area
*
* @exception SWTException
*
ERROR_THREAD_INVALID_ACCESS - if not called from the thread that created the receiver
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
*
* @see #getBounds
*/
public Rectangle getClientArea () {
checkDevice ();
NSArray screens = NSScreen.screens();
if (screens.count() != 1) return getBounds (screens);
NSScreen screen = new NSScreen(screens.objectAtIndex(0));
NSRect frame = convertRect(screen, screen.frame());;
NSRect visibleFrame = convertRect(screen, screen.visibleFrame());
double /*float*/ y = frame.height - (visibleFrame.y + visibleFrame.height);
return new Rectangle((int)visibleFrame.x, (int)y, (int)visibleFrame.width, (int)visibleFrame.height);
}
/**
* Returns the control which the on-screen pointer is currently
* over top of, or null if it is not currently over one of the
* controls built by the currently running application.
*
* @return the control under the cursor or null
*
* @exception SWTException
*
ERROR_THREAD_INVALID_ACCESS - if not called from the thread that created the receiver
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
*/
public Control getCursorControl () {
checkDevice();
return findControl(false);
}
/**
* Returns the location of the on-screen pointer relative
* to the top left corner of the screen.
*
* @return the cursor location
*
* @exception SWTException
*
ERROR_THREAD_INVALID_ACCESS - if not called from the thread that created the receiver
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
*/
public Point getCursorLocation () {
checkDevice ();
NSPoint location = NSEvent.mouseLocation();
NSRect primaryFrame = getPrimaryFrame();
return new Point ((int) location.x, (int) (primaryFrame.height - location.y));
}
/**
* Returns an array containing the recommended cursor sizes.
*
* @return the array of cursor sizes
*
* @exception SWTException
*
ERROR_THREAD_INVALID_ACCESS - if not called from the thread that created the receiver
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
*
* @since 3.0
*/
public Point [] getCursorSizes () {
checkDevice ();
return new Point [] {new Point (16, 16)};
}
/**
* Returns the default display. One is created (making the
* thread that invokes this method its user-interface thread)
* if it did not already exist.
*
* @return the default display
*/
public static Display getDefault () {
synchronized (Device.class) {
if (Default == null) Default = new Display ();
return Default;
}
}
/**
* Returns the application defined property of the receiver
* with the specified name, or null if it has not been set.
*
* Applications may have associated arbitrary objects with the
* receiver in this fashion. If the objects stored in the
* properties need to be notified when the display is disposed
* of, it is the application's responsibility to provide a
* disposeExec() handler which does so.
*
*
* @param key the name of the property
* @return the value of the property or null if it has not been set
*
* @exception IllegalArgumentException
*
ERROR_NULL_ARGUMENT - if the key is null
*
* @exception SWTException
*
ERROR_THREAD_INVALID_ACCESS - if not called from the thread that created the receiver
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
*
* @see #setData(String, Object)
* @see #disposeExec(Runnable)
*/
public Object getData (String key) {
checkDevice ();
if (key == null) error (SWT.ERROR_NULL_ARGUMENT);
if (keys == null) return null;
for (int i=0; idisplay specific data is a single,
* unnamed field that is stored with every display.
*
* Applications may put arbitrary objects in this field. If
* the object stored in the display specific data needs to
* be notified when the display is disposed of, it is the
* application's responsibility to provide a
* disposeExec() handler which does so.
*
*
* @return the display specific data
*
* @exception SWTException
*
ERROR_THREAD_INVALID_ACCESS - if not called from the thread that created the receiver
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
*
* @see #setData(Object)
* @see #disposeExec(Runnable)
*/
public Object getData () {
checkDevice ();
return data;
}
/**
* Returns the button dismissal alignment, one of LEFT or RIGHT.
* The button dismissal alignment is the ordering that should be used when positioning the
* default dismissal button for a dialog. For example, in a dialog that contains an OK and
* CANCEL button, on platforms where the button dismissal alignment is LEFT, the
* button ordering should be OK/CANCEL. When button dismissal alignment is RIGHT,
* the button ordering should be CANCEL/OK.
*
* @return the button dismissal order
*
* @exception SWTException
*
ERROR_THREAD_INVALID_ACCESS - if not called from the thread that created the receiver
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
*
* @since 2.1
*/
public int getDismissalAlignment () {
checkDevice ();
return SWT.RIGHT;
}
/**
* Returns the longest duration, in milliseconds, between
* two mouse button clicks that will be considered a
* double click by the underlying operating system.
*
* @return the double click time
*
* @exception SWTException
*
ERROR_THREAD_INVALID_ACCESS - if not called from the thread that created the receiver
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
*/
public int getDoubleClickTime () {
checkDevice ();
return OS.GetDblTime () * 1000 / 60;
}
/**
* Returns the control which currently has keyboard focus,
* or null if keyboard events are not currently going to
* any of the controls built by the currently running
* application.
*
* @return the focus control or null
*
* @exception SWTException
*
ERROR_THREAD_INVALID_ACCESS - if not called from the thread that created the receiver
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
*/
public Control getFocusControl () {
checkDevice ();
if (focusControl != null && !focusControl.isDisposed ()) {
return focusControl;
}
NSWindow window = keyWindow != null ? keyWindow : application.keyWindow();
return _getFocusControl(window);
}
Control _getFocusControl (NSWindow window) {
if (window != null) {
NSResponder responder = window.firstResponder();
if (responder != null && !responder.respondsToSelector(OS.sel_superview)) {
return null;
}
NSView view = new NSView(responder.id);
if (view != null) {
do {
Widget widget = GetWidget (view.id);
if (widget instanceof Control) {
return (Control)widget;
}
view = view.superview();
} while (view != null);
}
}
return null;
}
/**
* Returns true when the high contrast mode is enabled.
* Otherwise, false is returned.
*
* Note: This operation is a hint and is not supported on
* platforms that do not have this concept.
*
*
* @return the high contrast mode
*
* @exception SWTException
*
ERROR_THREAD_INVALID_ACCESS - if not called from the thread that created the receiver
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
*
* @since 3.0
*/
public boolean getHighContrast () {
checkDevice ();
return false;
}
/**
* Returns the maximum allowed depth of icons on this display, in bits per pixel.
* On some platforms, this may be different than the actual depth of the display.
*
* @return the maximum icon depth
*
* @exception SWTException
*
ERROR_THREAD_INVALID_ACCESS - if not called from the thread that created the receiver
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
*
* @see Device#getDepth
*/
public int getIconDepth () {
return getDepth ();
}
/**
* Returns an array containing the recommended icon sizes.
*
* @return the array of icon sizes
*
* @exception SWTException
*
ERROR_THREAD_INVALID_ACCESS - if not called from the thread that created the receiver
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
*
* @see Decorations#setImages(Image[])
*
* @since 3.0
*/
public Point [] getIconSizes () {
checkDevice ();
return new Point [] {
new Point (16, 16), new Point (32, 32),
new Point (64, 64), new Point (128, 128)};
}
int getLastEventTime () {
NSEvent event = application.currentEvent();
if (event == null) return 0;
double timestamp = event.timestamp() * 1000;
while (timestamp > 0x7FFFFFFF) {
timestamp -= 0x7FFFFFFF;
}
return (int)timestamp;
}
Menu [] getMenus (Decorations shell) {
if (menus == null) return new Menu [0];
int count = 0;
for (int i = 0; i < menus.length; i++) {
Menu menu = menus[i];
if (menu != null && menu.parent == shell) count++;
}
int index = 0;
Menu[] result = new Menu[count];
for (int i = 0; i < menus.length; i++) {
Menu menu = menus[i];
if (menu != null && menu.parent == shell) {
result[index++] = menu;
}
}
return result;
}
int getMessageCount () {
return synchronizer.getMessageCount ();
}
Dialog getModalDialog () {
return modalDialog;
}
NSPanel getModalPanel () {
return modalPanel;
}
/**
* Returns an array of monitors attached to the device.
*
* @return the array of monitors
*
* @since 3.0
*/
public Monitor [] getMonitors () {
checkDevice ();
NSArray screens = NSScreen.screens();
NSScreen screen = new NSScreen(screens.objectAtIndex(0));
NSRect primaryFrame = convertRect(screen, screen.frame());
int count = (int)/*64*/screens.count();
Monitor [] monitors = new Monitor [count];
for (int i=0; i
*
ERROR_THREAD_INVALID_ACCESS - if not called from the thread that created the receiver
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
*/
public Shell [] getShells () {
checkDevice ();
NSArray windows = application.windows();
int index = 0;
Shell [] result = new Shell [(int)/*64*/windows.count()];
for (int i = 0; i < result.length; i++) {
NSWindow window = new NSWindow(windows.objectAtIndex(i));
Widget widget = getWidget(window.contentView());
if (widget instanceof Shell) {
result[index++] = (Shell)widget;
}
}
if (index == result.length) return result;
Shell [] newResult = new Shell [index];
System.arraycopy (result, 0, newResult, 0, index);
return newResult;
}
static boolean getSheetEnabled () {
return !"false".equals(System.getProperty("org.eclipse.swt.sheet"));
}
/**
* Gets the synchronizer used by the display.
*
* @return the receiver's synchronizer
*
* @exception SWTException
*
ERROR_THREAD_INVALID_ACCESS - if not called from the thread that created the receiver
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
*
* @since 3.4
*/
public Synchronizer getSynchronizer () {
checkDevice ();
return synchronizer;
}
/**
* Returns the thread that has invoked syncExec
* or null if no such runnable is currently being invoked by
* the user-interface thread.
*
* Note: If a runnable invoked by asyncExec is currently
* running, this method will return null.
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
*/
public Thread getSyncThread () {
synchronized (Device.class) {
if (isDisposed ()) error (SWT.ERROR_DEVICE_DISPOSED);
return synchronizer.syncThread;
}
}
/**
* Returns the matching standard color for the given
* constant, which should be one of the color constants
* specified in class SWT. Any value other
* than one of the SWT color constants which is passed
* in will result in the color black. This color should
* not be free'd because it was allocated by the system,
* not the application.
*
* @param id the color constant
* @return the matching color
*
* @exception SWTException
*
ERROR_THREAD_INVALID_ACCESS - if not called from the thread that created the receiver
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
*
* @see SWT
*/
public Color getSystemColor (int id) {
checkDevice ();
Color color = getWidgetColor (id);
if (color != null) return color;
return super.getSystemColor (id);
}
Color getWidgetColor (int id) {
if (0 <= id && id < colors.length && colors [id] != null) {
return Color.cocoa_new (this, colors [id]);
}
return null;
}
double /*float*/ [] getWidgetColorRGB (int id) {
NSColor color = null;
switch (id) {
case SWT.COLOR_INFO_FOREGROUND: color = NSColor.blackColor (); break;
case SWT.COLOR_INFO_BACKGROUND: return new double /*float*/ [] {.984f, .988f, 0.773f, 1};
case SWT.COLOR_TITLE_FOREGROUND: color = NSColor.windowFrameTextColor(); break;
case SWT.COLOR_TITLE_BACKGROUND: color = NSColor.alternateSelectedControlColor(); break;
case SWT.COLOR_TITLE_BACKGROUND_GRADIENT: color = NSColor.selectedControlColor(); break;
case SWT.COLOR_TITLE_INACTIVE_FOREGROUND: color = NSColor.disabledControlTextColor(); break;
case SWT.COLOR_TITLE_INACTIVE_BACKGROUND: color = NSColor.secondarySelectedControlColor(); break;
case SWT.COLOR_TITLE_INACTIVE_BACKGROUND_GRADIENT: color = NSColor.secondarySelectedControlColor(); break;
case SWT.COLOR_WIDGET_DARK_SHADOW: color = NSColor.controlDarkShadowColor(); break;
case SWT.COLOR_WIDGET_NORMAL_SHADOW: color = NSColor.controlShadowColor(); break;
case SWT.COLOR_WIDGET_LIGHT_SHADOW: color = NSColor.controlHighlightColor(); break;
case SWT.COLOR_WIDGET_HIGHLIGHT_SHADOW: color = NSColor.controlLightHighlightColor(); break;
case SWT.COLOR_WIDGET_BACKGROUND: color = NSColor.controlHighlightColor(); break;
case SWT.COLOR_WIDGET_FOREGROUND: color = NSColor.controlTextColor(); break;
case SWT.COLOR_WIDGET_BORDER: color = NSColor.blackColor (); break;
case SWT.COLOR_LIST_FOREGROUND: color = NSColor.textColor(); break;
case SWT.COLOR_LIST_BACKGROUND: color = NSColor.textBackgroundColor(); break;
case SWT.COLOR_LIST_SELECTION_TEXT: color = NSColor.selectedTextColor(); break;
case SWT.COLOR_LIST_SELECTION: color = NSColor.selectedTextBackgroundColor(); break;
case SWT.COLOR_LINK_FOREGROUND:
NSTextView textView = (NSTextView)new NSTextView().alloc();
textView.init ();
NSDictionary dict = textView.linkTextAttributes();
color = new NSColor(dict.valueForKey(OS.NSForegroundColorAttributeName));
textView.release ();
break;
}
return getNSColorRGB (color);
}
double /*float*/ [] getNSColorRGB (NSColor color) {
if (color == null) return null;
NSColorSpace colorSpace = color.colorSpace();
if (colorSpace == null || colorSpace.colorSpaceModel() != OS.NSRGBColorSpaceModel) {
color = color.colorUsingColorSpaceName(OS.NSDeviceRGBColorSpace);
}
if (color == null) return null;
double /*float*/[] components = new double /*float*/[(int)/*64*/color.numberOfComponents()];
color.getComponents(components);
return new double /*float*/ []{components[0], components[1], components[2], components[3]};
}
/**
* Returns the matching standard platform cursor for the given
* constant, which should be one of the cursor constants
* specified in class SWT. This cursor should
* not be free'd because it was allocated by the system,
* not the application. A value of null will
* be returned if the supplied constant is not an SWT cursor
* constant.
*
* @param id the SWT cursor constant
* @return the corresponding cursor or null
*
* @exception SWTException
*
ERROR_THREAD_INVALID_ACCESS - if not called from the thread that created the receiver
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
*
* @see SWT#CURSOR_ARROW
* @see SWT#CURSOR_WAIT
* @see SWT#CURSOR_CROSS
* @see SWT#CURSOR_APPSTARTING
* @see SWT#CURSOR_HELP
* @see SWT#CURSOR_SIZEALL
* @see SWT#CURSOR_SIZENESW
* @see SWT#CURSOR_SIZENS
* @see SWT#CURSOR_SIZENWSE
* @see SWT#CURSOR_SIZEWE
* @see SWT#CURSOR_SIZEN
* @see SWT#CURSOR_SIZES
* @see SWT#CURSOR_SIZEE
* @see SWT#CURSOR_SIZEW
* @see SWT#CURSOR_SIZENE
* @see SWT#CURSOR_SIZESE
* @see SWT#CURSOR_SIZESW
* @see SWT#CURSOR_SIZENW
* @see SWT#CURSOR_UPARROW
* @see SWT#CURSOR_IBEAM
* @see SWT#CURSOR_NO
* @see SWT#CURSOR_HAND
*
* @since 3.0
*/
public Cursor getSystemCursor (int id) {
checkDevice ();
if (!(0 <= id && id < cursors.length)) return null;
if (cursors [id] == null) {
cursors [id] = new Cursor (this, id);
}
return cursors [id];
}
NSImage getSystemImageForID(int osType) {
long /*int*/ iconRef[] = new long /*int*/ [1];
OS.GetIconRefFromTypeInfo(OS.kSystemIconsCreator, osType, 0, 0, 0, iconRef);
NSImage nsImage = (NSImage)new NSImage().alloc();
nsImage = nsImage.initWithIconRef(iconRef[0]);
/*
* Feature in Cocoa. GetIconRefFromTypeInfo returns a huge icon that scales well. Resize
* it to 32x32, which is what NSWorkspace does.
*/
NSSize size = new NSSize();
size.width = size.height = 32.0f;
nsImage.setSize(size);
nsImage.setScalesWhenResized(true);
return nsImage;
}
/**
* Returns the matching standard platform image for the given
* constant, which should be one of the icon constants
* specified in class SWT. This image should
* not be free'd because it was allocated by the system,
* not the application. A value of null will
* be returned either if the supplied constant is not an
* SWT icon constant or if the platform does not define an
* image that corresponds to the constant.
*
* @param id the SWT icon constant
* @return the corresponding image or null
*
* @exception SWTException
*
ERROR_THREAD_INVALID_ACCESS - if not called from the thread that created the receiver
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
*
* @see SWT#ICON_ERROR
* @see SWT#ICON_INFORMATION
* @see SWT#ICON_QUESTION
* @see SWT#ICON_WARNING
* @see SWT#ICON_WORKING
*
* @since 3.0
*/
public Image getSystemImage (int id) {
checkDevice ();
switch(id) {
case SWT.ICON_ERROR: {
if (errorImage != null) return errorImage;
NSImage img = getSystemImageForID(OS.kAlertStopIcon);
return errorImage = Image.cocoa_new (this, SWT.ICON, img);
}
case SWT.ICON_INFORMATION:
case SWT.ICON_QUESTION:
case SWT.ICON_WORKING: {
if (infoImage != null) return infoImage;
NSImage img = getSystemImageForID(OS.kAlertNoteIcon);
return infoImage = Image.cocoa_new (this, SWT.ICON, img);
}
case SWT.ICON_WARNING: {
if (warningImage != null) return warningImage;
NSImage img = getSystemImageForID(OS.kAlertCautionIcon);
return warningImage = Image.cocoa_new (this, SWT.ICON, img);
}
}
return null;
}
/**
* Returns the single instance of the application menu bar, or
* null if there is no application menu bar for the platform.
*
* @return the application menu bar, or null
*
* @exception SWTException
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
*
* @since 3.7
*/
public Menu getMenuBar () {
checkDevice ();
if (appMenuBar != null) return appMenuBar;
appMenuBar = new Menu (this);
// the menubar will be updated when the Shell or the application activates.
return appMenuBar;
}
/**
* Returns the single instance of the system-provided menu for the application, or
* null on platforms where no menu is provided for the application.
*
* @return the system menu, or null
*
* @exception SWTException
*
ERROR_THREAD_INVALID_ACCESS - if not called from the thread that created the receiver
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
*
* @since 3.7
*/
public Menu getSystemMenu () {
checkDevice();
if (appMenu == null) {
NSMenu mainMenu = NSApplication.sharedApplication().mainMenu();
NSMenu nsAppMenu = mainMenu.itemAtIndex(0).submenu();
appMenu = new Menu(this, nsAppMenu);
// Create menu items that correspond to the NSMenuItems.
long /*int*/ nsCount = nsAppMenu.numberOfItems();
for (int j = 0; j < nsCount; j++) {
NSMenuItem currMenuItem = nsAppMenu.itemAtIndex(j);
new MenuItem(appMenu, currMenuItem);
}
}
return appMenu;
}
/**
* Returns the single instance of the system tray or null
* when there is no system tray available for the platform.
*
* @return the system tray or null
*
* @exception SWTException
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
*
* @since 3.0
*/
public Tray getSystemTray () {
checkDevice ();
if (tray != null) return tray;
return tray = new Tray (this, SWT.NONE);
}
/**
* Returns the single instance of the system taskBar or null
* when there is no system taskBar available for the platform.
*
* @return the system taskBar or null
*
* @exception SWTException
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
*
* @since 3.6
*/
public TaskBar getSystemTaskBar () {
checkDevice ();
if (taskBar != null) return taskBar;
taskBar = new TaskBar (this, SWT.NONE);
return taskBar;
}
/**
* Returns the user-interface thread for the receiver.
*
* @return the receiver's user-interface thread
*
* @exception SWTException
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
*/
public Thread getThread () {
synchronized (Device.class) {
if (isDisposed ()) error (SWT.ERROR_DEVICE_DISPOSED);
return thread;
}
}
/**
* Returns a boolean indicating whether a touch-aware input device is
* attached to the system and is ready for use.
*
* @return true if a touch-aware input device is detected, or false otherwise
*
* @exception SWTException
*
ERROR_THREAD_INVALID_ACCESS - if not called from the thread that created the receiver
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
*
* @since 3.7
*/
public boolean getTouchEnabled() {
checkDevice();
// Gestures are available on OS X 10.5.3 and later. Touch events are only available on 10.6 and later.
return (OS.VERSION > 0x1053);
}
int getToolTipTime () {
checkDevice ();
//TODO get OS value (NSTooltipManager?)
return 560;
}
Widget getWidget (long /*int*/ id) {
return GetWidget (id);
}
static Widget GetWidget (long /*int*/ id) {
if (id == 0) return null;
long /*int*/ [] jniRef = new long /*int*/ [1];
long /*int*/ iVar = OS.object_getInstanceVariable(id, SWT_OBJECT, jniRef);
if (iVar == 0) {
if (dynamicObjectMap != null) {
NSObject key = new NSObject(id);
LONG dynJNIRef = (LONG) dynamicObjectMap.get(key);
if (dynJNIRef != null) jniRef[0] = dynJNIRef.value;
}
}
if (jniRef[0] == 0) return null;
return (Widget)OS.JNIGetObject(jniRef[0]);
}
Widget getWidget (NSView view) {
if (view == null) return null;
return getWidget(view.id);
}
boolean hasDefaultButton () {
NSArray windows = application.windows();
long /*int*/ count = windows.count();
for (int i = 0; i < count; i++) {
NSWindow window = new NSWindow(windows.objectAtIndex(i));
if (window.defaultButtonCell() != null) {
return true;
}
}
return false;
}
/**
* Initializes any internal resources needed by the
* device.
*
* IMPORTANT: This method is not part of the public
* API for Display. It is marked public only so that it
* can be shared within the packages provided by SWT. It is not
* available on all platforms, and should never be called from
* application code.
*
*
* @param data the platform specific GC data
* @return the platform specific GC handle
*
* @exception SWTException
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
* @exception SWTError
*
ERROR_NO_HANDLES if a handle could not be obtained for gc creation
*
*
* @noreference This method is not intended to be referenced by clients.
*/
public long /*int*/ internal_new_GC (GCData data) {
if (isDisposed()) error(SWT.ERROR_DEVICE_DISPOSED);
if (screenWindow == null) {
NSWindow window = (NSWindow) new NSWindow ().alloc ();
NSRect rect = new NSRect();
window = window.initWithContentRect(rect, OS.NSBorderlessWindowMask, OS.NSBackingStoreBuffered, false);
window.setReleasedWhenClosed(false);
screenWindow = window;
}
NSGraphicsContext context = screenWindow.graphicsContext();
// NSAffineTransform transform = NSAffineTransform.transform();
// NSSize size = handle.size();
// transform.translateXBy(0, size.height);
// transform.scaleXBy(1, -1);
// transform.set();
if (data != null) {
int mask = SWT.LEFT_TO_RIGHT | SWT.RIGHT_TO_LEFT;
if ((data.style & mask) == 0) {
data.style |= SWT.LEFT_TO_RIGHT;
}
data.device = this;
data.background = getSystemColor(SWT.COLOR_WHITE).handle;
data.foreground = getSystemColor(SWT.COLOR_BLACK).handle;
data.font = getSystemFont();
}
return context.id;
}
/**
* Invokes platform specific functionality to dispose a GC handle.
*
* IMPORTANT: This method is not part of the public
* API for Display. It is marked public only so that it
* can be shared within the packages provided by SWT. It is not
* available on all platforms, and should never be called from
* application code.
*
*
* @param hDC the platform specific GC handle
* @param data the platform specific GC data
*
* @noreference This method is not intended to be referenced by clients.
*/
public void internal_dispose_GC (long /*int*/ hDC, GCData data) {
if (isDisposed()) error(SWT.ERROR_DEVICE_DISPOSED);
}
boolean isBundled () {
NSBundle mainBundle = NSBundle.mainBundle();
if (mainBundle != null) {
NSDictionary info = mainBundle.infoDictionary();
if (info != null) {
return NSString.stringWith("APPL").isEqual(info.objectForKey(NSString.stringWith("CFBundlePackageType"))); //$NON-NLS-1$ $NON-NLS-2$
}
}
return false;
}
static boolean isValidClass (Class clazz) {
String name = clazz.getName ();
int index = name.lastIndexOf ('.');
return name.substring (0, index + 1).equals (PACKAGE_PREFIX);
}
boolean isValidThread () {
return thread == Thread.currentThread ();
}
/**
* Generate a low level system event.
*
* post is used to generate low level keyboard
* and mouse events. The intent is to enable automated UI
* testing by simulating the input from the user. Most
* SWT applications should never need to call this method.
*
* Note that this operation can fail when the operating system
* fails to generate the event for any reason. For example,
* this can happen when there is no such key or mouse button
* or when the system event queue is full.
*
*
* Event Types:
*
KeyDown, KeyUp
*
The following fields in the Event apply:
*
*
(in) type KeyDown or KeyUp
*
Either one of:
*
(in) character a character that corresponds to a keyboard key
*
(in) keyCode the key code of the key that was typed,
* as defined by the key code constants in class SWT
*
*
MouseDown, MouseUp
*
The following fields in the Event apply:
*
*
(in) type MouseDown or MouseUp
*
(in) button the button that is pressed or released
*
*
MouseMove
*
The following fields in the Event apply:
*
*
(in) type MouseMove
*
(in) x the x coordinate to move the mouse pointer to in screen coordinates
*
(in) y the y coordinate to move the mouse pointer to in screen coordinates
*
*
MouseWheel
*
The following fields in the Event apply:
*
*
(in) type MouseWheel
*
(in) detail either SWT.SCROLL_LINE or SWT.SCROLL_PAGE
*
(in) count the number of lines or pages to scroll
*
*
*
* @param event the event to be generated
*
* @return true if the event was generated or false otherwise
*
* @exception IllegalArgumentException
*
ERROR_NULL_ARGUMENT - if the event is null
*
* @exception SWTException
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
*
* @since 3.0
*
*/
public boolean post(Event event) {
synchronized (Device.class) {
if (isDisposed ()) error (SWT.ERROR_DEVICE_DISPOSED);
if (event == null) error (SWT.ERROR_NULL_ARGUMENT);
long /*int*/ eventRef = 0;
long /*int*/ eventSource = OS.CGEventSourceCreate(OS.kCGEventSourceStateHIDSystemState);
if (eventSource == 0) return false;
boolean returnValue = false;
int deadKeyState[] = new int[1];
int type = event.type;
switch (type) {
case SWT.KeyDown:
case SWT.KeyUp: {
short vKey = (short)Display.untranslateKey (event.keyCode);
if (vKey == 0) {
long /*int*/ uchrPtr = 0;
long /*int*/ currentKbd = OS.TISCopyCurrentKeyboardInputSource();
long /*int*/ uchrCFData = OS.TISGetInputSourceProperty(currentKbd, OS.kTISPropertyUnicodeKeyLayoutData());
if (uchrCFData == 0) return false;
uchrPtr = OS.CFDataGetBytePtr(uchrCFData);
if (uchrPtr == 0) return false;
if (OS.CFDataGetLength(uchrCFData) == 0) return false;
int maxStringLength = 256;
vKey = -1;
char [] output = new char [maxStringLength];
int [] actualStringLength = new int [1];
for (short i = 0 ; i <= 0x7F ; i++) {
deadKeyState[0] = 0;
OS.UCKeyTranslate (uchrPtr, i, (short)(type == SWT.KeyDown ? OS.kUCKeyActionDown : OS.kUCKeyActionUp), 0, OS.LMGetKbdType(), 0, deadKeyState, maxStringLength, actualStringLength, output);
if (output[0] == event.character) {
vKey = i;
break;
}
}
if (vKey == -1) {
for (short i = 0 ; i <= 0x7F ; i++) {
deadKeyState[0] = 0;
OS.UCKeyTranslate (uchrPtr, i, (short)(type == SWT.KeyDown ? OS.kUCKeyActionDown : OS.kUCKeyActionUp), (OS.shiftKey >> 8) & 0xFF, OS.LMGetKbdType(), 0, deadKeyState, maxStringLength, actualStringLength, output);
if (output[0] == event.character) {
vKey = i;
break;
}
}
}
}
/**
* Bug(?) in UCKeyTranslate: If event.keyCode doesn't map to a valid SWT constant and event.characer is 0 we still need to post an event.
* In Carbon, KeyTranslate eventually found a key that generated 0 but UCKeyTranslate never generates 0.
* When that happens, post an event from key 127, which does nothing.
*/
if (vKey == -1 && event.character == 0) {
vKey = 127;
}
if (vKey != -1) {
if (OS.VERSION < 0x1060) {
returnValue = OS.CGPostKeyboardEvent((short)0, vKey, type == SWT.KeyDown) == OS.noErr;
} else {
eventRef = OS.CGEventCreateKeyboardEvent(eventSource, vKey, type == SWT.KeyDown);
}
}
break;
}
case SWT.MouseDown:
case SWT.MouseMove:
case SWT.MouseUp: {
CGPoint mouseCursorPosition = new CGPoint ();
if (type == SWT.MouseMove) {
mouseCursorPosition.x = event.x;
mouseCursorPosition.y = event.y;
eventRef = OS.CGEventCreateMouseEvent(eventSource, OS.kCGEventMouseMoved, mouseCursorPosition, 0);
} else {
NSPoint nsCursorPosition = NSEvent.mouseLocation();
NSRect primaryFrame = getPrimaryFrame();
mouseCursorPosition.x = nsCursorPosition.x;
mouseCursorPosition.y = (int) (primaryFrame.height - nsCursorPosition.y);
int eventType = 0;
// SWT buttons are 1-based: 1,2,3,4,5; CG buttons are 0 based: 0,2,1,3,4
int cgButton;
switch (event.button) {
case 1:
eventType = (event.type == SWT.MouseDown ? OS.kCGEventLeftMouseDown : OS.kCGEventLeftMouseUp);
cgButton = 0;
break;
case 2:
eventType = (event.type == SWT.MouseDown ? OS.kCGEventOtherMouseDown : OS.kCGEventOtherMouseUp);
cgButton = 2;
break;
case 3:
eventType = (event.type == SWT.MouseDown ? OS.kCGEventRightMouseDown : OS.kCGEventRightMouseUp);
cgButton = 1;
break;
default:
eventType = (event.type == SWT.MouseDown ? OS.kCGEventOtherMouseDown : OS.kCGEventOtherMouseUp);
cgButton = event.button - 1;
break;
}
if (cgButton >= 0) {
eventRef = OS.CGEventCreateMouseEvent(eventSource, eventType, mouseCursorPosition, cgButton);
}
}
break;
}
case SWT.MouseWheel: {
// CG does not support scrolling a page at a time. Technically that is a page up/down, but not a scroll-wheel event.
eventRef = OS.CGEventCreateScrollWheelEvent(eventSource, OS.kCGScrollEventUnitLine, 1, event.count);
break;
}
}
// returnValue is true if we called CGPostKeyboardEvent (10.5 only).
if (returnValue == false) {
if (eventRef != 0) {
OS.CGEventPost(OS.kCGHIDEventTap, eventRef);
OS.CFRelease(eventRef);
try {
Thread.sleep(1);
} catch (Exception e) {
}
returnValue = true;
}
}
if (eventSource != 0) OS.CFRelease(eventSource);
return returnValue;
}
}
void postEvent (Event event) {
/*
* Place the event at the end of the event queue.
* This code is always called in the Display's
* thread so it must be re-enterant but does not
* need to be synchronized.
*/
if (eventQueue == null) eventQueue = new Event [4];
int index = 0;
int length = eventQueue.length;
while (index < length) {
if (eventQueue [index] == null) break;
index++;
}
if (index == length) {
Event [] newQueue = new Event [length + 4];
System.arraycopy (eventQueue, 0, newQueue, 0, length);
eventQueue = newQueue;
}
eventQueue [index] = event;
}
/**
* Maps a point from one coordinate system to another.
* When the control is null, coordinates are mapped to
* the display.
*
* NOTE: On right-to-left platforms where the coordinate
* systems are mirrored, special care needs to be taken
* when mapping coordinates from one control to another
* to ensure the result is correctly mirrored.
*
* Mapping a point that is the origin of a rectangle and
* then adding the width and height is not equivalent to
* mapping the rectangle. When one control is mirrored
* and the other is not, adding the width and height to a
* point that was mapped causes the rectangle to extend
* in the wrong direction. Mapping the entire rectangle
* instead of just one point causes both the origin and
* the corner of the rectangle to be mapped.
*
*
* @param from the source Control or null
* @param to the destination Control or null
* @param point to be mapped
* @return point with mapped coordinates
*
* @exception IllegalArgumentException
*
ERROR_NULL_ARGUMENT - if the point is null
*
ERROR_INVALID_ARGUMENT - if the Control from or the Control to have been disposed
*
* @exception SWTException
*
ERROR_THREAD_INVALID_ACCESS - if not called from the thread that created the receiver
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
*
* @since 2.1.2
*/
public Point map (Control from, Control to, Point point) {
checkDevice ();
if (point == null) error (SWT.ERROR_NULL_ARGUMENT);
return map (from, to, point.x, point.y);
}
/**
* Maps a point from one coordinate system to another.
* When the control is null, coordinates are mapped to
* the display.
*
* NOTE: On right-to-left platforms where the coordinate
* systems are mirrored, special care needs to be taken
* when mapping coordinates from one control to another
* to ensure the result is correctly mirrored.
*
* Mapping a point that is the origin of a rectangle and
* then adding the width and height is not equivalent to
* mapping the rectangle. When one control is mirrored
* and the other is not, adding the width and height to a
* point that was mapped causes the rectangle to extend
* in the wrong direction. Mapping the entire rectangle
* instead of just one point causes both the origin and
* the corner of the rectangle to be mapped.
*
*
* @param from the source Control or null
* @param to the destination Control or null
* @param x coordinates to be mapped
* @param y coordinates to be mapped
* @return point with mapped coordinates
*
* @exception IllegalArgumentException
*
ERROR_INVALID_ARGUMENT - if the Control from or the Control to have been disposed
*
* @exception SWTException
*
ERROR_THREAD_INVALID_ACCESS - if not called from the thread that created the receiver
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
*
* @since 2.1.2
*/
public Point map (Control from, Control to, int x, int y) {
checkDevice ();
if (from != null && from.isDisposed()) error (SWT.ERROR_INVALID_ARGUMENT);
if (to != null && to.isDisposed()) error (SWT.ERROR_INVALID_ARGUMENT);
Point point = new Point (x, y);
if (from == to) return point;
NSPoint pt = new NSPoint();
pt.x = x;
pt.y = y;
NSWindow fromWindow = from != null ? from.view.window() : null;
NSWindow toWindow = to != null ? to.view.window() : null;
if (toWindow != null && fromWindow != null && toWindow.id == fromWindow.id) {
if (!from.view.isFlipped ()) {
pt.y = from.view.bounds().height - pt.y;
}
pt = from.view.convertPoint_toView_(pt, to.view);
if (!to.view.isFlipped ()) {
pt.y = to.view.bounds().height - pt.y;
}
} else {
NSRect primaryFrame = getPrimaryFrame();
if (from != null) {
NSView view = from.eventView ();
if (!view.isFlipped ()) {
pt.y = view.bounds().height - pt.y;
}
pt = view.convertPoint_toView_(pt, null);
pt = fromWindow.convertBaseToScreen(pt);
pt.y = primaryFrame.height - pt.y;
double /*float*/ scaleFactor = fromWindow.userSpaceScaleFactor();
pt.x /= scaleFactor;
pt.y /= scaleFactor;
}
if (to != null) {
NSView view = to.eventView ();
double /*float*/ scaleFactor = toWindow.userSpaceScaleFactor();
pt.x *= scaleFactor;
pt.y = primaryFrame.height - (pt.y * scaleFactor);
pt = toWindow.convertScreenToBase(pt);
pt = view.convertPoint_fromView_(pt, null);
if (!view.isFlipped ()) {
pt.y = view.bounds().height - pt.y;
}
}
}
point.x = (int)pt.x;
point.y = (int)pt.y;
return point;
}
/**
* Maps a point from one coordinate system to another.
* When the control is null, coordinates are mapped to
* the display.
*
* NOTE: On right-to-left platforms where the coordinate
* systems are mirrored, special care needs to be taken
* when mapping coordinates from one control to another
* to ensure the result is correctly mirrored.
*
* Mapping a point that is the origin of a rectangle and
* then adding the width and height is not equivalent to
* mapping the rectangle. When one control is mirrored
* and the other is not, adding the width and height to a
* point that was mapped causes the rectangle to extend
* in the wrong direction. Mapping the entire rectangle
* instead of just one point causes both the origin and
* the corner of the rectangle to be mapped.
*
*
* @param from the source Control or null
* @param to the destination Control or null
* @param rectangle to be mapped
* @return rectangle with mapped coordinates
*
* @exception IllegalArgumentException
*
ERROR_NULL_ARGUMENT - if the rectangle is null
*
ERROR_INVALID_ARGUMENT - if the Control from or the Control to have been disposed
*
* @exception SWTException
*
ERROR_THREAD_INVALID_ACCESS - if not called from the thread that created the receiver
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
*
* @since 2.1.2
*/
public Rectangle map (Control from, Control to, Rectangle rectangle) {
checkDevice ();
if (rectangle == null) error (SWT.ERROR_NULL_ARGUMENT);
return map (from, to, rectangle.x, rectangle.y, rectangle.width, rectangle.height);
}
/**
* Maps a point from one coordinate system to another.
* When the control is null, coordinates are mapped to
* the display.
*
* NOTE: On right-to-left platforms where the coordinate
* systems are mirrored, special care needs to be taken
* when mapping coordinates from one control to another
* to ensure the result is correctly mirrored.
*
* Mapping a point that is the origin of a rectangle and
* then adding the width and height is not equivalent to
* mapping the rectangle. When one control is mirrored
* and the other is not, adding the width and height to a
* point that was mapped causes the rectangle to extend
* in the wrong direction. Mapping the entire rectangle
* instead of just one point causes both the origin and
* the corner of the rectangle to be mapped.
*
*
* @param from the source Control or null
* @param to the destination Control or null
* @param x coordinates to be mapped
* @param y coordinates to be mapped
* @param width coordinates to be mapped
* @param height coordinates to be mapped
* @return rectangle with mapped coordinates
*
* @exception IllegalArgumentException
*
ERROR_INVALID_ARGUMENT - if the Control from or the Control to have been disposed
*
* @exception SWTException
*
ERROR_THREAD_INVALID_ACCESS - if not called from the thread that created the receiver
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
*
* @since 2.1.2
*/
public Rectangle map (Control from, Control to, int x, int y, int width, int height) {
checkDevice ();
if (from != null && from.isDisposed()) error (SWT.ERROR_INVALID_ARGUMENT);
if (to != null && to.isDisposed()) error (SWT.ERROR_INVALID_ARGUMENT);
Rectangle rectangle = new Rectangle (x, y, width, height);
if (from == to) return rectangle;
NSPoint pt = new NSPoint();
pt.x = x;
pt.y = y;
NSWindow fromWindow = from != null ? from.view.window() : null;
NSWindow toWindow = to != null ? to.view.window() : null;
if (toWindow != null && fromWindow != null && toWindow.id == fromWindow.id) {
if (!from.view.isFlipped ()) {
pt.y = from.view.bounds().height - pt.y;
}
pt = from.view.convertPoint_toView_(pt, to.view);
if (!to.view.isFlipped ()) {
pt.y = to.view.bounds().height - pt.y;
}
} else {
NSRect primaryFrame = getPrimaryFrame();
if (from != null) {
NSView view = from.eventView ();
if (!view.isFlipped ()) {
pt.y = view.bounds().height - pt.y;
}
pt = view.convertPoint_toView_(pt, null);
pt = fromWindow.convertBaseToScreen(pt);
pt.y = primaryFrame.height - pt.y;
double /*float*/ scaleFactor = fromWindow.userSpaceScaleFactor();
pt.x /= scaleFactor;
pt.y /= scaleFactor;
}
if (to != null) {
NSView view = to.eventView ();
double /*float*/ scaleFactor = toWindow.userSpaceScaleFactor();
pt.x *= scaleFactor;
pt.y = primaryFrame.height - (pt.y * scaleFactor);
pt = toWindow.convertScreenToBase(pt);
pt = view.convertPoint_fromView_(pt, null);
if (!view.isFlipped ()) {
pt.y = view.bounds().height - pt.y;
}
}
}
rectangle.x = (int)pt.x;
rectangle.y = (int)pt.y;
return rectangle;
}
long /*int*/ observerProc (long /*int*/ observer, long /*int*/ activity, long /*int*/ info) {
switch ((int)/*64*/activity) {
case OS.kCFRunLoopBeforeWaiting:
if (runAsyncMessages) {
if (runAsyncMessages (false)) wakeThread ();
}
break;
}
return 0;
}
boolean performKeyEquivalent(NSWindow window, NSEvent nsEvent) {
if (modalDialog == null) return false;
if (nsEvent.type() != OS.NSKeyDown) return false;
int stateMask = 0;
long /*int*/ selector = 0;
long /*int*/ modifierFlags = nsEvent.modifierFlags();
if ((modifierFlags & OS.NSAlternateKeyMask) != 0) stateMask |= SWT.ALT;
if ((modifierFlags & OS.NSShiftKeyMask) != 0) stateMask |= SWT.SHIFT;
if ((modifierFlags & OS.NSControlKeyMask) != 0) stateMask |= SWT.CONTROL;
if ((modifierFlags & OS.NSCommandKeyMask) != 0) stateMask |= SWT.COMMAND;
if (stateMask == SWT.COMMAND) {
short keyCode = nsEvent.keyCode ();
switch (keyCode) {
case 7: /* X */
selector = OS.sel_cut_;
break;
case 8: /* C */
selector = OS.sel_copy_;
break;
case 9: /* V */
selector = OS.sel_paste_;
break;
case 0: /* A */
selector = OS.sel_selectAll_;
break;
}
if (selector != 0) {
NSApplication.sharedApplication().sendAction(selector, null, NSApplication.sharedApplication());
return true;
}
}
return false;
}
/**
* Reads an event from the operating system's event queue,
* dispatches it appropriately, and returns true
* if there is potentially more work to do, or false
* if the caller can sleep until another event is placed on
* the event queue.
*
* In addition to checking the system event queue, this method also
* checks if any inter-thread messages (created by syncExec()
* or asyncExec()) are waiting to be processed, and if
* so handles them before returning.
*
*
* @return false if the caller can sleep upon return from this method
*
* @exception SWTException
*
ERROR_THREAD_INVALID_ACCESS - if not called from the thread that created the receiver
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
ERROR_FAILED_EXEC - if an exception occurred while running an inter-thread message
*
*
* @see #sleep
* @see #wake
*/
public boolean readAndDispatch () {
checkDevice ();
if (sendEventCount == 0 && loopCount == poolCount - 1 && Callback.getEntryCount () == 0) removePool ();
addPool ();
runSkin ();
runDeferredLayouts ();
loopCount++;
boolean events = false;
try {
events |= runSettings ();
events |= runTimers ();
events |= runContexts ();
events |= runPopups ();
NSEvent event = application.nextEventMatchingMask(0, null, OS.NSDefaultRunLoopMode, true);
if (event != null) {
events = true;
application.sendEvent(event);
}
events |= runPaint ();
events |= runDeferredEvents ();
if (!events) {
events = isDisposed () || runAsyncMessages (false);
}
} finally {
removePool ();
loopCount--;
if (sendEventCount == 0 && loopCount == poolCount && Callback.getEntryCount () == 0) addPool ();
}
return events;
}
static void register (Display display) {
synchronized (Device.class) {
for (int i=0; i
* Disposes all shells which are currently open on the display.
* After this method has been invoked, all related related shells
* will answer true when sent the message
* isDisposed().
*
* When a device is destroyed, resources that were acquired
* on behalf of the programmer need to be returned to the
* operating system. For example, if the device allocated a
* font to be used as the system font, this font would be
* freed in release. Also,to assist the garbage
* collector and minimize the amount of memory that is not
* reclaimed when the programmer keeps a reference to a
* disposed device, all fields except the handle are zero'd.
* The handle is needed by destroy.
*
* This method is called before destroy.
*
* @see Device#dispose
* @see #destroy
*/
protected void release () {
disposing = true;
sendEvent (SWT.Dispose, new Event ());
Shell [] shells = getShells ();
for (int i=0; i 1) {
menubar.removeItemAtIndex(count - 1);
count--;
}
}
if (dynamicObjectMap != null) {
dynamicObjectMap.clear();
dynamicObjectMap = null;
}
// The autorelease pool is cleaned up when we call NSApplication.terminate().
if (application != null && applicationClass != 0) {
OS.object_setClass (application.id, applicationClass);
}
application = null;
applicationClass = 0;
if (runLoopObserver != 0) {
OS.CFRunLoopObserverInvalidate (runLoopObserver);
OS.CFRelease (runLoopObserver);
}
runLoopObserver = 0;
if (observerCallback != null) observerCallback.dispose();
observerCallback = null;
}
void removeContext (GCData context) {
if (contexts == null) return;
int count = 0;
for (int i = 0; i < contexts.length; i++) {
if (contexts[i] != null) {
if (contexts [i] == context) {
contexts[i] = null;
} else {
count++;
}
}
}
if (count == 0) contexts = null;
}
/**
* Removes the listener from the collection of listeners who will
* be notified when an event of the given type occurs anywhere in
* a widget. The event type is one of the event constants defined
* in class SWT.
*
* @param eventType the type of event to listen for
* @param listener the listener which should no longer be notified when the event occurs
*
* @exception IllegalArgumentException
*
ERROR_NULL_ARGUMENT - if the listener is null
*
* @exception SWTException
*
ERROR_THREAD_INVALID_ACCESS - if not called from the thread that created the receiver
*
*
* @see Listener
* @see SWT
* @see #addFilter
* @see #addListener
*
* @since 3.0
*/
public void removeFilter (int eventType, Listener listener) {
checkDevice ();
if (listener == null) error (SWT.ERROR_NULL_ARGUMENT);
if (filterTable == null) return;
filterTable.unhook (eventType, listener);
if (filterTable.size () == 0) filterTable = null;
}
/**
* Removes the listener from the collection of listeners who will
* be notified when an event of the given type occurs. The event type
* is one of the event constants defined in class SWT.
*
* @param eventType the type of event to listen for
* @param listener the listener which should no longer be notified
*
* @exception IllegalArgumentException
*
ERROR_NULL_ARGUMENT - if the listener is null
*
* @exception SWTException
*
ERROR_THREAD_INVALID_ACCESS - if not called from the thread that created the receiver
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
*
* @see Listener
* @see SWT
* @see #addListener
*
* @since 2.0
*/
public void removeListener (int eventType, Listener listener) {
checkDevice ();
if (listener == null) error (SWT.ERROR_NULL_ARGUMENT);
if (eventTable == null) return;
eventTable.unhook (eventType, listener);
}
Widget removeWidget (NSObject view) {
if (view == null) return null;
long /*int*/ [] jniRef = new long /*int*/ [1];
long /*int*/ iVar = OS.object_getInstanceVariable(view.id, SWT_OBJECT, jniRef);
if (iVar == 0) {
if (dynamicObjectMap != null) {
LONG dynJNIRef = (LONG) dynamicObjectMap.get(view);
if (dynJNIRef != null) jniRef[0] = dynJNIRef.value;
dynamicObjectMap.remove(view);
}
}
if (jniRef[0] == 0) return null;
Widget widget = (Widget)OS.JNIGetObject(jniRef[0]);
OS.object_setInstanceVariable(view.id, SWT_OBJECT, 0);
return widget;
}
void removeMenu (Menu menu) {
if (menus == null) return;
for (int i = 0; i < menus.length; i++) {
if (menus [i] == menu) {
menus[i] = null;
break;
}
}
}
void removePool () {
NSAutoreleasePool pool = pools [poolCount - 1];
pools [--poolCount] = null;
if (poolCount == 0) {
NSMutableDictionary dictionary = NSThread.currentThread().threadDictionary();
dictionary.removeObjectForKey(NSString.stringWith("SWT_NSAutoreleasePool"));
}
pool.release ();
}
void removePopup (Menu menu) {
if (popups == null) return;
for (int i=0; i 0) {
Widget [] oldSkinWidgets = skinList;
int count = skinCount;
skinList = new Widget[GROW_SIZE];
skinCount = 0;
if (eventTable != null && eventTable.hooks(SWT.Skin)) {
for (int i = 0; i < count; i++) {
Widget widget = oldSkinWidgets[i];
if (widget != null && !widget.isDisposed()) {
widget.state &= ~Widget.SKIN_NEEDED;
oldSkinWidgets[i] = null;
Event event = new Event ();
event.widget = widget;
sendEvent (SWT.Skin, event);
}
}
}
return true;
}
return false;
}
boolean runTimers () {
if (timerList == null) return false;
boolean result = false;
for (int i=0; i
* The application name can be used in several ways,
* depending on the platform and tools being used.
* On Motif, for example, this can be used to set
* the name used for resource lookup. Accessibility
* tools may also ask for the application name.
*
* Specifying null for the name clears it.
*
*
* @param name the new app name or null
*/
public static void setAppName (String name) {
APP_NAME = name;
}
/**
* Sets the application version to the argument.
*
* @param version the new app version
*
* @since 3.6
*/
public static void setAppVersion (String version) {
APP_VERSION = version;
}
//TODO use custom timer instead of timerExec
NSPoint hoverLastLocation;
Runnable hoverTimer = new Runnable () {
public void run () {
if (currentControl != null && !currentControl.isDisposed()) {
currentControl.sendMouseEvent (null, SWT.MouseHover, trackingControl != null && !trackingControl.isDisposed());
}
}
};
//TODO - use custom timer instead of timerExec
Runnable caretTimer = new Runnable () {
public void run () {
if (currentCaret != null) {
if (currentCaret == null || currentCaret.isDisposed()) return;
if (currentCaret.blinkCaret ()) {
int blinkRate = currentCaret.blinkRate;
if (blinkRate != 0) timerExec (blinkRate, this);
} else {
currentCaret = null;
}
}
}
};
//TODO - use custom timer instead of timerExec
Runnable defaultButtonTimer = new Runnable() {
public void run() {
if (isDisposed ()) return;
Shell shell = getActiveShell();
if (shell != null && !shell.isDisposed()) {
Button defaultButton = shell.defaultButton;
if (defaultButton != null && !defaultButton.isDisposed()) {
NSView view = defaultButton.view;
view.display();
}
}
if (isDisposed ()) return;
if (hasDefaultButton()) timerExec(DEFAULT_BUTTON_INTERVAL, this);
}
};
void setCurrentCaret (Caret caret) {
currentCaret = caret;
int blinkRate = currentCaret != null ? currentCaret.blinkRate : -1;
timerExec (blinkRate, caretTimer);
}
void setCursor (Control control) {
Cursor cursor = null;
if (control != null && !control.isDisposed()) cursor = control.findCursor ();
if (cursor == null) {
NSWindow window = application.keyWindow();
if (window != null) {
if (window.areCursorRectsEnabled ()) {
window.disableCursorRects ();
window.enableCursorRects ();
}
return;
}
cursor = getSystemCursor (SWT.CURSOR_ARROW);
}
lockCursor = false;
cursor.handle.set ();
lockCursor = true;
}
/**
* Sets the location of the on-screen pointer relative to the top left corner
* of the screen. Note: It is typically considered bad practice for a
* program to move the on-screen pointer location.
*
* @param x the new x coordinate for the cursor
* @param y the new y coordinate for the cursor
*
* @exception SWTException
*
ERROR_THREAD_INVALID_ACCESS - if not called from the thread that created the receiver
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
*
* @since 2.1
*/
public void setCursorLocation (int x, int y) {
checkDevice ();
Event e = new Event();
e.type = SWT.MouseMove;
e.x = x;
e.y = y;
post(e);
}
/**
* Sets the location of the on-screen pointer relative to the top left corner
* of the screen. Note: It is typically considered bad practice for a
* program to move the on-screen pointer location.
*
* @param point new position
*
* @exception SWTException
*
ERROR_THREAD_INVALID_ACCESS - if not called from the thread that created the receiver
*
ERROR_NULL_ARGUMENT - if the point is null
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
*
* @since 2.0
*/
public void setCursorLocation (Point point) {
checkDevice ();
if (point == null) error (SWT.ERROR_NULL_ARGUMENT);
setCursorLocation (point.x, point.y);
}
/**
* Sets the application defined property of the receiver
* with the specified name to the given argument.
*
* Applications may have associated arbitrary objects with the
* receiver in this fashion. If the objects stored in the
* properties need to be notified when the display is disposed
* of, it is the application's responsibility provide a
* disposeExec() handler which does so.
*
*
* @param key the name of the property
* @param value the new value for the property
*
* @exception IllegalArgumentException
*
ERROR_NULL_ARGUMENT - if the key is null
*
* @exception SWTException
*
ERROR_THREAD_INVALID_ACCESS - if not called from the thread that created the receiver
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
*
* @see #getData(String)
* @see #disposeExec(Runnable)
*/
public void setData (String key, Object value) {
checkDevice ();
if (key == null) error (SWT.ERROR_NULL_ARGUMENT);
if (key.equals (ADD_WIDGET_KEY)) {
Object [] data = (Object [])value;
NSObject object = (NSObject)data [0];
Widget widget = (Widget)data [1];
if (widget == null) {
removeWidget (object);
} else {
addWidget (object, widget);
}
}
if (key.equals(SET_MODAL_DIALOG)) {
setModalDialog (value != null ? (Dialog) value : null);
}
if (key.equals (MOZILLA_RUNNING)) {
mozillaRunning = ((Boolean)value).booleanValue ();
}
/* Remove the key/value pair */
if (value == null) {
if (keys == null) return;
int index = 0;
while (index < keys.length && !keys [index].equals (key)) index++;
if (index == keys.length) return;
if (keys.length == 1) {
keys = null;
values = null;
} else {
String [] newKeys = new String [keys.length - 1];
Object [] newValues = new Object [values.length - 1];
System.arraycopy (keys, 0, newKeys, 0, index);
System.arraycopy (keys, index + 1, newKeys, index, newKeys.length - index);
System.arraycopy (values, 0, newValues, 0, index);
System.arraycopy (values, index + 1, newValues, index, newValues.length - index);
keys = newKeys;
values = newValues;
}
return;
}
/* Add the key/value pair */
if (keys == null) {
keys = new String [] {key};
values = new Object [] {value};
return;
}
for (int i=0; i 1) {
menubar.removeItemAtIndex(count - 1);
count--;
}
//set parent of each item to NULL and add them to menubar
if (menu != null) {
MenuItem[] items = menu.getItems();
for (int i = 0; i < items.length; i++) {
MenuItem item = items[i];
NSMenuItem nsItem = item.nsItem;
/*
* Bug in cocoa. Cocoa does not seem to detect the help
* menu for languages other than english. The fix is to detect
* it ourselves.
*/
NSMenu submenu = nsItem.submenu();
if (submenu != null && submenu.title().getString().equals(SWT.getMessage("SWT_Help"))) {
application.setHelpMenu(submenu);
}
nsItem.setMenu(null);
menubar.addItem(nsItem);
/*
* Bug in Cocoa: Calling NSMenuItem.setEnabled() for menu item of a menu bar only
* works when the menu bar is the current menu bar. The underline OS menu does get
* enabled/disable when that menu is set later on. The fix is to toggle the
* item enabled state to force the underline menu to be updated.
*/
boolean enabled = menu.getEnabled () && item.getEnabled ();
nsItem.setEnabled(!enabled);
nsItem.setEnabled(enabled);
}
}
}
void setModalDialog (Dialog modalDialog) {
setModalDialog(modalDialog, null);
}
void setModalDialog (Dialog modalDialog, NSPanel panel) {
this.modalDialog = modalDialog;
this.modalPanel = panel;
}
void setModalShell (Shell shell) {
if (modalShells == null) modalShells = new Shell [4];
int index = 0, length = modalShells.length;
while (index < length) {
if (modalShells [index] == shell) return;
if (modalShells [index] == null) break;
index++;
}
if (index == length) {
Shell [] newModalShells = new Shell [length + 4];
System.arraycopy (modalShells, 0, newModalShells, 0, length);
modalShells = newModalShells;
}
modalShells [index] = shell;
Shell [] shells = getShells ();
for (int i=0; idisplay specific data is a single,
* unnamed field that is stored with every display.
*
* Applications may put arbitrary objects in this field. If
* the object stored in the display specific data needs to
* be notified when the display is disposed of, it is the
* application's responsibility provide a
* disposeExec() handler which does so.
*
*
* @param data the new display specific data
*
* @exception SWTException
*
ERROR_THREAD_INVALID_ACCESS - if not called from the thread that created the receiver
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
*
* @see #getData()
* @see #disposeExec(Runnable)
*/
public void setData (Object data) {
checkDevice ();
this.data = data;
}
/**
* Sets the synchronizer used by the display to be
* the argument, which can not be null.
*
* @param synchronizer the new synchronizer for the display (must not be null)
*
* @exception IllegalArgumentException
*
ERROR_NULL_ARGUMENT - if the synchronizer is null
*
* @exception SWTException
*
ERROR_THREAD_INVALID_ACCESS - if not called from the thread that created the receiver
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
ERROR_FAILED_EXEC - if an exception occurred while running an inter-thread message
*
*/
public void setSynchronizer (Synchronizer synchronizer) {
checkDevice ();
if (synchronizer == null) error (SWT.ERROR_NULL_ARGUMENT);
if (synchronizer == this.synchronizer) return;
Synchronizer oldSynchronizer;
synchronized (Device.class) {
oldSynchronizer = this.synchronizer;
this.synchronizer = synchronizer;
}
if (oldSynchronizer != null) {
oldSynchronizer.runAsyncMessages(true);
}
}
/**
* Causes the user-interface thread to sleep (that is,
* to be put in a state where it does not consume CPU cycles)
* until an event is received or it is otherwise awakened.
*
* @return true if an event requiring dispatching was placed on the queue.
*
* @exception SWTException
*
ERROR_THREAD_INVALID_ACCESS - if not called from the thread that created the receiver
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
*
* @see #wake
*/
public boolean sleep () {
checkDevice ();
if (getMessageCount () != 0) return true;
try {
addPool();
allowTimers = runAsyncMessages = false;
NSRunLoop.currentRunLoop().runMode(OS.NSDefaultRunLoopMode, NSDate.distantFuture());
allowTimers = runAsyncMessages = true;
} finally {
removePool();
}
return true;
}
int sourceProc (int info) {
return 0;
}
/**
* Causes the run() method of the runnable to
* be invoked by the user-interface thread at the next
* reasonable opportunity. The thread which calls this method
* is suspended until the runnable completes. Specifying null
* as the runnable simply wakes the user-interface thread.
*
* Note that at the time the runnable is invoked, widgets
* that have the receiver as their display may have been
* disposed. Therefore, it is necessary to check for this
* case inside the runnable before accessing the widget.
*
*
* @param runnable code to run on the user-interface thread or null
*
* @exception SWTException
*
ERROR_FAILED_EXEC - if an exception occurred when executing the runnable
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
*
* @see #asyncExec
*/
public void syncExec (Runnable runnable) {
Synchronizer synchronizer;
synchronized (Device.class) {
if (isDisposed ()) error (SWT.ERROR_DEVICE_DISPOSED);
synchronizer = this.synchronizer;
}
synchronizer.syncExec (runnable);
}
/**
* Causes the run() method of the runnable to
* be invoked by the user-interface thread after the specified
* number of milliseconds have elapsed. If milliseconds is less
* than zero, the runnable is not executed.
*
* Note that at the time the runnable is invoked, widgets
* that have the receiver as their display may have been
* disposed. Therefore, it is necessary to check for this
* case inside the runnable before accessing the widget.
*
*
* @param milliseconds the delay before running the runnable
* @param runnable code to run on the user-interface thread
*
* @exception IllegalArgumentException
*
ERROR_NULL_ARGUMENT - if the runnable is null
*
* @exception SWTException
*
ERROR_THREAD_INVALID_ACCESS - if not called from the thread that created the receiver
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
*
* @see #asyncExec
*/
public void timerExec (int milliseconds, Runnable runnable) {
checkDevice ();
//TODO - remove a timer, reschedule a timer not tested
if (runnable == null) error (SWT.ERROR_NULL_ARGUMENT);
if (timerList == null) timerList = new Runnable [4];
if (nsTimers == null) nsTimers = new NSTimer [4];
int index = 0;
while (index < timerList.length) {
if (timerList [index] == runnable) break;
index++;
}
if (index != timerList.length) {
NSTimer timer = nsTimers [index];
if (timer == null) {
timerList [index] = null;
} else {
if (milliseconds < 0) {
timer.invalidate();
timer.release();
timerList [index] = null;
nsTimers [index] = null;
} else {
timer.setFireDate(NSDate.dateWithTimeIntervalSinceNow (milliseconds / 1000.0));
}
return;
}
}
if (milliseconds < 0) return;
index = 0;
while (index < timerList.length) {
if (timerList [index] == null) break;
index++;
}
if (index == timerList.length) {
Runnable [] newTimerList = new Runnable [timerList.length + 4];
System.arraycopy (timerList, 0, newTimerList, 0, timerList.length);
timerList = newTimerList;
NSTimer [] newTimerIds = new NSTimer [nsTimers.length + 4];
System.arraycopy (nsTimers, 0, newTimerIds, 0, nsTimers.length);
nsTimers = newTimerIds;
}
NSNumber userInfo = NSNumber.numberWithInt(index);
NSTimer timer = NSTimer.scheduledTimerWithTimeInterval(milliseconds / 1000.0, timerDelegate, OS.sel_timerProc_, userInfo, false);
NSRunLoop runLoop = NSRunLoop.currentRunLoop();
runLoop.addTimer(timer, OS.NSModalPanelRunLoopMode);
runLoop.addTimer(timer, OS.NSEventTrackingRunLoopMode);
timer.retain();
if (timer != null) {
nsTimers [index] = timer;
timerList [index] = runnable;
}
}
long /*int*/ timerProc (long /*int*/ id, long /*int*/ sel, long /*int*/ timerID) {
NSTimer timer = new NSTimer (timerID);
try {
NSNumber number = new NSNumber(timer.userInfo());
int index = number.intValue();
if (timerList == null) return 0;
if (0 <= index && index < timerList.length) {
if (allowTimers) {
Runnable runnable = timerList [index];
timerList [index] = null;
nsTimers [index] = null;
if (runnable != null) runnable.run ();
} else {
nsTimers [index] = null;
wakeThread ();
}
}
} finally {
timer.invalidate();
timer.release();
}
return 0;
}
/**
* Forces all outstanding paint requests for the display
* to be processed before this method returns.
*
* @exception SWTException
*
ERROR_THREAD_INVALID_ACCESS - if not called from the thread that created the receiver
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
*
* @see Control#update()
*/
public void update () {
checkDevice ();
Shell [] shells = getShells ();
for (int i=0; isleeping,
* causes it to be awakened and start running again. Note that this
* method may be called from any thread.
*
* @exception SWTException
*
ERROR_DEVICE_DISPOSED - if the receiver has been disposed
*
*
* @see #sleep
*/
public void wake () {
synchronized (Device.class) {
if (isDisposed ()) error (SWT.ERROR_DEVICE_DISPOSED);
if (thread == Thread.currentThread ()) return;
wakeThread ();
}
}
void wakeThread () {
//new pool?
NSObject object = new NSObject().alloc().init();
object.performSelectorOnMainThread(OS.sel_release, null, false);
}
Control findControl (boolean checkTrim) {
return findControl(checkTrim, null);
}
Control findControl (boolean checkTrim, NSView[] hitView) {
NSView view = null;
NSPoint screenLocation = NSEvent.mouseLocation();
long /*int*/ hitWindowNumber = 0;
if (OS.VERSION >= 0x1060) {
hitWindowNumber = NSWindow.windowNumberAtPoint(screenLocation, 0);
} else {
long /*int*/ outWindow[] = new long /*int*/ [1];
OS.FindWindow ((long /*int*/)screenLocation.x, (long /*int*/)(getPrimaryFrame().height - screenLocation.y), outWindow);
if (outWindow[0] != 0) {
hitWindowNumber = OS.HIWindowGetCGWindowID(outWindow[0]);
}
}
NSWindow window = application.windowWithWindowNumber(hitWindowNumber);
if (window != null) {
NSView contentView = window.contentView();
if (contentView != null) contentView = contentView.superview();
if (contentView != null) {
NSPoint location = window.convertScreenToBase(screenLocation);
view = contentView.hitTest (location);
if (view == null && !checkTrim) {
view = contentView;
}
}
}
Control control = null;
if (view != null) {
do {
Widget widget = getWidget (view);
if (widget instanceof Control) {
control = (Control)widget;
break;
}
view = view.superview();
} while (view != null);
}
if (checkTrim) {
if (control != null && control.isTrim (view)) control = null;
}
if (control != null && hitView != null) hitView[0] = view;
return control;
}
void finishLaunching (long /*int*/ id, long /*int*/ sel) {
/*
* [NSApplication finishLaunching] cannot run multiple times otherwise
* multiple main menus are added.
*/
if (launched) return;
launched = true;
objc_super super_struct = new objc_super();
super_struct.receiver = id;
super_struct.super_class = OS.objc_msgSend(id, OS.sel_superclass);
OS.objc_msgSendSuper(super_struct, sel);
}
void applicationDidBecomeActive (long /*int*/ id, long /*int*/ sel, long /*int*/ notification) {
NSWindow keyWindow = application.keyWindow();
if (keyWindow != null) {
keyWindow.orderFrontRegardless();
} else {
setMenuBar (menuBar);
}
checkFocus();
checkEnterExit(findControl(true), null, false);
}
void applicationDidResignActive (long /*int*/ id, long /*int*/ sel, long /*int*/ notification) {
checkFocus();
checkEnterExit(null, null, false);
}
long /*int*/ applicationNextEventMatchingMask (long /*int*/ id, long /*int*/ sel, long /*int*/ mask, long /*int*/ expiration, long /*int*/ mode, long /*int*/ dequeue) {
if (dequeue != 0 && trackingControl != null && !trackingControl.isDisposed()) runDeferredEvents();
objc_super super_struct = new objc_super();
super_struct.receiver = id;
super_struct.super_class = OS.objc_msgSend(id, OS.sel_superclass);
long /*int*/ result = OS.objc_msgSendSuper(super_struct, sel, mask, expiration, mode, dequeue != 0);
if (result != 0) {
/*
* Feature of Cocoa. When an NSComboBox's items list is visible it runs an event
* loop that will close the list in response to a processed NSApplicationDefined
* event.
*
* Mozilla-style Browsers are a common source of NSApplicationDefined events that
* will cause this to happen, which is not desirable in the context of SWT. The
* workaround is to detect this case and to not return the event that would trigger
* this to happen.
*/
if (dequeue != 0 && currentCombo != null && !currentCombo.isDisposed()) {
NSEvent nsEvent = new NSEvent(result);
if (mozillaRunning) {
if (nsEvent.type() == OS.NSApplicationDefined) {
return 0;
}
}
if (nsEvent.type() == OS.NSKeyDown) {
currentCombo.sendTrackingKeyEvent(nsEvent, SWT.KeyDown);
}
}
if (dequeue != 0 && trackingControl != null && !trackingControl.isDisposed()) {
applicationSendTrackingEvent(new NSEvent(result), trackingControl);
}
}
return result;
}
void applicationSendTrackingEvent (NSEvent nsEvent, Control trackingControl) {
int type = (int)/*64*/nsEvent.type();
boolean runEnterExit = false;
Control runEnterExitControl = null;
switch (type) {
case OS.NSLeftMouseDown:
case OS.NSRightMouseDown:
case OS.NSOtherMouseDown:
clickCount = (int)(clickCountButton == nsEvent.buttonNumber() ? nsEvent.clickCount() : 1);
clickCountButton = (int)nsEvent.buttonNumber();
trackingControl.sendMouseEvent (nsEvent, SWT.MouseDown, true);
break;
case OS.NSLeftMouseUp:
case OS.NSRightMouseUp:
case OS.NSOtherMouseUp:
runEnterExit = true;
runEnterExitControl = findControl(true);
Control control = trackingControl;
this.trackingControl = null;
if (clickCount == 2) {
control.sendMouseEvent (nsEvent, SWT.MouseDoubleClick, false);
}
if (!control.isDisposed()) control.sendMouseEvent (nsEvent, SWT.MouseUp, false);
break;
case OS.NSLeftMouseDragged:
case OS.NSRightMouseDragged:
case OS.NSOtherMouseDragged:
runEnterExit = true;
runEnterExitControl = trackingControl;
//FALL THROUGH
case OS.NSMouseMoved:
trackingControl.sendMouseEvent (nsEvent, SWT.MouseMove, true);
break;
}
if (runEnterExit) {
if (runEnterExitControl == null || !runEnterExitControl.isDisposed()) checkEnterExit (runEnterExitControl, nsEvent, false);
}
}
void applicationSendEvent (long /*int*/ id, long /*int*/ sel, long /*int*/ event) {
NSEvent nsEvent = new NSEvent(event);
NSWindow window = nsEvent.window ();
if (performKeyEquivalent(window, nsEvent)) return;
int type = (int)/*64*/nsEvent.type ();
boolean activate = false, down = false;
switch (type) {
case OS.NSLeftMouseDown:
case OS.NSRightMouseDown:
case OS.NSOtherMouseDown:
activate = down = true;
case OS.NSLeftMouseUp:
case OS.NSRightMouseUp:
case OS.NSOtherMouseUp:
activate = true;
case OS.NSLeftMouseDragged:
case OS.NSRightMouseDragged:
case OS.NSOtherMouseDragged:
case OS.NSMouseMoved:
case OS.NSMouseEntered:
case OS.NSMouseExited:
case OS.NSKeyDown:
case OS.NSKeyUp:
case OS.NSScrollWheel:
// TODO: Add touch detection here...
if (window != null) {
Shell shell = (Shell) getWidget (window.id);
if (shell != null) {
Shell modalShell = shell.getModalShell ();
if (modalShell != null) {
if (activate) {
if (application.isActive()) {
modalShell.window.orderFrontRegardless();
} else {
application.activateIgnoringOtherApps(true);
}
if (down) {
NSRect rect = window.contentView().frame();
NSPoint pt = window.convertBaseToScreen(nsEvent.locationInWindow());
if (OS.NSPointInRect(pt, rect)) beep ();
}
}
return;
}
}
}
break;
}
if (type != OS.NSAppKitDefined) sendEvent = true;
/*
* Feature in Cocoa. The help key triggers context-sensitive help but doesn't get forwarded to the window as a key event.
* If the event is destined for the key window, is the help key, and is an NSKeyDown, send it directly to the window first.
*/
if (window != null && window.isKeyWindow() && nsEvent.type() == OS.NSKeyDown && (nsEvent.modifierFlags() & OS.NSHelpKeyMask) != 0) {
window.sendEvent(nsEvent);
}
/*
* Feature in Cocoa. NSKeyUp events are not delivered to the window if the command key is down.
* If the event is destined for the key window, and it's a key up and the command key is down, send it directly to the window.
*/
if (window != null && window.isKeyWindow() && nsEvent.type() == OS.NSKeyUp && (nsEvent.modifierFlags() & OS.NSCommandKeyMask) != 0) {
window.sendEvent(nsEvent);
} else {
objc_super super_struct = new objc_super ();
super_struct.receiver = id;
super_struct.super_class = OS.objc_msgSend (id, OS.sel_superclass);
OS.objc_msgSendSuper (super_struct, sel, event);
}
if (type != OS.NSAppKitDefined) sendEvent = false;
}
void applicationWillFinishLaunching (long /*int*/ id, long /*int*/ sel, long /*int*/ notification) {
boolean loaded = false;
/*
* Bug in AWT: If the AWT starts up first when the VM was started on the first thread it assumes that
* a Carbon-based SWT will be used, so it calls NSApplicationLoad(). This causes the Carbon menu
* manager to create an application menu that isn't accessible via NSMenu. It is, however, accessible
* via the Carbon menu manager, so find and delete the menu items it added.
*
* Note that this code will continue to work if Apple does change this. GetIndMenuWithCommandID will
* return a non-zero value indicating failure, which we ignore.
*/
if (isEmbedded) {
long /*int*/ outMenu [] = new long /*int*/ [1];
short outIndex[] = new short[1];
int status = OS.GetIndMenuItemWithCommandID(0, OS.kHICommandHide, 1, outMenu, outIndex);
if (status == 0) OS.DeleteMenuItem(outMenu[0], outIndex[0]);
status = OS.GetIndMenuItemWithCommandID(0, OS.kHICommandHideOthers, 1, outMenu, outIndex);
if (status == 0) OS.DeleteMenuItem(outMenu[0], outIndex[0]);
status = OS.GetIndMenuItemWithCommandID(0, OS.kHICommandShowAll, 1, outMenu, outIndex);
if (status == 0) OS.DeleteMenuItem(outMenu[0], outIndex[0]);
status = OS.GetIndMenuItemWithCommandID(0, OS.kHICommandQuit, 1, outMenu, outIndex);
if (status == 0) OS.DeleteMenuItem(outMenu[0], outIndex[0]);
status = OS.GetIndMenuItemWithCommandID(0, OS.kHICommandServices, 1, outMenu, outIndex);
if (status == 0) OS.DeleteMenuItem(outMenu[0], outIndex[0]);
}
/*
* Get the default locale's language, and then the display name of the language. Some Mac OS X localizations use the
* display name of the language, but many use the ISO two-char abbreviation instead.
*/
Locale loc = Locale.getDefault();
String languageISOValue = loc.getLanguage();
NSLocale englishLocale = (NSLocale) new NSLocale().alloc();
englishLocale = new NSLocale(englishLocale.initWithLocaleIdentifier(NSString.stringWith("en_US")));
NSString languageDisplayName = englishLocale.displayNameForKey(OS.NSLocaleLanguageCode, NSString.stringWith(languageISOValue));
if (englishLocale != null) englishLocale.release();
/* To find the nib look for each of these paths, in order, until one is found:
* /System/Library/..../Resources/.lproj/DefaultApp.nib
* /System/Library/..../Resources/.lproj/DefaultApp.nib
* /System/Library/..../Resources/.lproj/DefaultApp.nib
* /System/Library/..../Resources/English.lproj/DefaultApp.nib.
*/
NSBundle bundle = NSBundle.bundleWithIdentifier(NSString.stringWith("com.apple.JavaVM"));
NSDictionary dict = NSDictionary.dictionaryWithObject(applicationDelegate, NSString.stringWith("NSOwner"));
NSString path = bundle.pathForResource(NSString.stringWith("DefaultApp"), NSString.stringWith("nib"), null, languageDisplayName);
if (path == null) path = bundle.pathForResource(NSString.stringWith("DefaultApp"), NSString.stringWith("nib"), null, NSString.stringWith(languageISOValue));
if (path == null) path = bundle.pathForResource(NSString.stringWith("DefaultApp"), NSString.stringWith("nib"));
if (!loaded) loaded = path != null && NSBundle.loadNibFile(path, dict, 0);
if (!loaded) {
NSString resourcePath = bundle.resourcePath();
path = resourcePath != null ? resourcePath.stringByAppendingString(NSString.stringWith("/English.lproj/DefaultApp.nib")) : null;
loaded = path != null && NSBundle.loadNibFile(path, dict, 0);
}
if (!loaded) {
path = NSString.stringWith(System.getProperty("java.home") + "/../Resources/English.lproj/DefaultApp.nib");
loaded = path != null && NSBundle.loadNibFile(path, dict, 0);
}
if (!loaded) {
createMainMenu();
}
//replace %@ with application name
NSMenu mainmenu = application.mainMenu();
NSMenuItem appitem = mainmenu.itemAtIndex(0);
if (appitem != null) {
NSString name = getApplicationName();
NSString match = NSString.stringWith("%@");
appitem.setTitle(name);
NSMenu sm = appitem.submenu();
NSArray ia = sm.itemArray();
for(int i = 0; i < ia.count(); i++) {
NSMenuItem ni = new NSMenuItem(ia.objectAtIndex(i));
NSString title = ni.title().stringByReplacingOccurrencesOfString(match, name);
ni.setTitle(title);
long /*int*/ newTag = 0;
switch(i) {
case 0:
newTag = SWT.ID_ABOUT;
break;
case 2:
newTag = SWT.ID_PREFERENCES;
break;
case 6:
newTag = SWT.ID_HIDE;
break;
case 7:
newTag = SWT.ID_HIDE_OTHERS;
break;
case 8:
newTag = SWT.ID_SHOW_ALL;
break;
case 10:
newTag = SWT.ID_QUIT;
break;
}
if (newTag != 0) ni.setTag(newTag);
}
long /*int*/ quitIndex = sm.indexOfItemWithTarget(applicationDelegate, OS.sel_terminate_);
if (quitIndex != -1) {
NSMenuItem quitItem = sm.itemAtIndex(quitIndex);
quitItem.setAction(OS.sel_applicationShouldTerminate_);
}
}
}
static long /*int*/ applicationProc(long /*int*/ id, long /*int*/ sel) {
//TODO optimize getting the display
Display display = getCurrent ();
if (display == null) {
objc_super super_struct = new objc_super ();
super_struct.receiver = id;
super_struct.super_class = OS.objc_msgSend (id, OS.sel_superclass);
return OS.objc_msgSendSuper (super_struct, sel);
}
if (sel == OS.sel_isRunning) {
// #245724: [NSApplication isRunning] must return true to allow the AWT to load correctly.
return display.isDisposed() ? 0 : 1;
}
if (sel == OS.sel_finishLaunching) {
display.finishLaunching (id, sel);
}
return 0;
}
static long /*int*/ applicationProc(long /*int*/ id, long /*int*/ sel, long /*int*/ arg0) {
//TODO optimize getting the display
Display display = getCurrent ();
if (display == null && id != applicationDelegate.id) {
objc_super super_struct = new objc_super ();
super_struct.receiver = id;
super_struct.super_class = OS.objc_msgSend (id, OS.sel_superclass);
return OS.objc_msgSendSuper (super_struct, sel, arg0);
}
if (currAppDelegate != null) {
if (currAppDelegate.respondsToSelector(sel)) OS.objc_msgSend(currAppDelegate.id, sel, arg0);
}
NSApplication application = display.application;
if (sel == OS.sel_sendEvent_) {
display.applicationSendEvent (id, sel, arg0);
} else if (sel == OS.sel_applicationWillFinishLaunching_) {
display.applicationWillFinishLaunching(id, sel, arg0);
} else if (sel == OS.sel_applicationShouldTerminate_) {
int returnVal = OS.NSTerminateCancel;
if (!display.disposing) {
Event event = new Event ();
display.sendEvent (SWT.Close, event);
if (event.doit) {
display.dispose();
returnVal = OS.NSTerminateNow;
}
}
return returnVal;
} else if (sel == OS.sel_orderFrontStandardAboutPanel_) {
// application.orderFrontStandardAboutPanel(application);
} else if (sel == OS.sel_hideOtherApplications_) {
application.hideOtherApplications(application);
} else if (sel == OS.sel_hide_) {
application.hide(application);
} else if (sel == OS.sel_unhideAllApplications_) {
application.unhideAllApplications(application);
} else if (sel == OS.sel_applicationDidBecomeActive_) {
display.applicationDidBecomeActive(id, sel, arg0);
} else if (sel == OS.sel_applicationDidResignActive_) {
display.applicationDidResignActive(id, sel, arg0);
} else if (sel == OS.sel_applicationDockMenu_) {
TaskBar taskbar = display.taskBar;
if (taskbar != null && taskbar.itemCount != 0) {
TaskItem item = taskbar.getItem(null);
if (item != null) {
Menu menu = item.getMenu();
if (menu != null && !menu.isDisposed()) {
return menu.nsMenu.id;
}
}
}
}
return 0;
}
static long /*int*/ applicationProc(long /*int*/ id, long /*int*/ sel, long /*int*/ arg0, long /*int*/ arg1) {
Display display = getCurrent();
if (display == null && id != applicationDelegate.id) {
objc_super super_struct = new objc_super ();
super_struct.receiver = id;
super_struct.super_class = OS.objc_msgSend (id, OS.sel_superclass);
return OS.objc_msgSendSuper (super_struct, sel, arg0, arg1);
}
// Forward to the AWT, if necessary.
if (currAppDelegate != null) {
if (currAppDelegate.respondsToSelector(sel)) OS.objc_msgSend(currAppDelegate.id, sel, arg0, arg1);
}
if (sel == OS.sel_application_openFile_) {
String file = new NSString(arg1).getString();
Event event = new Event();
event.text = file;
display.sendEvent(SWT.OpenDocument, event);
return 1;
} else if (sel == OS.sel_application_openFiles_) {
NSArray files = new NSArray(arg1);
long /*int*/ count = files.count();
for (int i=0; i