guiCanvas.h 16 KB

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  1. //-----------------------------------------------------------------------------
  2. // Copyright (c) 2012 GarageGames, LLC
  3. //
  4. // Permission is hereby granted, free of charge, to any person obtaining a copy
  5. // of this software and associated documentation files (the "Software"), to
  6. // deal in the Software without restriction, including without limitation the
  7. // rights to use, copy, modify, merge, publish, distribute, sublicense, and/or
  8. // sell copies of the Software, and to permit persons to whom the Software is
  9. // furnished to do so, subject to the following conditions:
  10. //
  11. // The above copyright notice and this permission notice shall be included in
  12. // all copies or substantial portions of the Software.
  13. //
  14. // THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
  15. // IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
  16. // FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
  17. // AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
  18. // LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
  19. // FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS
  20. // IN THE SOFTWARE.
  21. //-----------------------------------------------------------------------------
  22. #ifndef _GUICANVAS_H_
  23. #define _GUICANVAS_H_
  24. #ifndef _SIMBASE_H_
  25. #include "console/simBase.h"
  26. #endif
  27. #ifndef _GUICONTROL_H_
  28. #include "gui/core/guiControl.h"
  29. #endif
  30. #ifndef _PLATFORMINPUT_H_
  31. #include "platform/platformInput.h"
  32. #endif
  33. #ifndef _SIGNAL_H_
  34. #include "core/util/tSignal.h"
  35. #endif
  36. #include "platform/input/IProcessInput.h"
  37. #include "windowManager/platformWindowMgr.h"
  38. #include "gfx/gfxFence.h"
  39. /// A canvas on which rendering occurs.
  40. ///
  41. ///
  42. /// @section GuiCanvas_contents What a GUICanvas Can Contain...
  43. ///
  44. /// @subsection GuiCanvas_content_contentcontrol Content Control
  45. /// A content control is the top level GuiControl for a screen. This GuiControl
  46. /// will be the parent control for all other GuiControls on that particular
  47. /// screen.
  48. ///
  49. /// @subsection GuiCanvas_content_dialogs Dialogs
  50. ///
  51. /// A dialog is essentially another screen, only it gets overlaid on top of the
  52. /// current content control, and all input goes to the dialog. This is most akin
  53. /// to the "Open File" dialog box found in most operating systems. When you
  54. /// choose to open a file, and the "Open File" dialog pops up, you can no longer
  55. /// send input to the application, and must complete or cancel the open file
  56. /// request. Torque keeps track of layers of dialogs. The dialog with the highest
  57. /// layer is on top and will get all the input, unless the dialog is
  58. /// modeless, which is a profile option.
  59. ///
  60. /// @see GuiControlProfile
  61. ///
  62. /// @section GuiCanvas_dirty Dirty Rectangles
  63. ///
  64. /// The GuiCanvas is based on dirty regions.
  65. ///
  66. /// Every frame the canvas paints only the areas of the canvas that are 'dirty'
  67. /// or need updating. In most cases, this only is the area under the mouse cursor.
  68. /// This is why if you look in guiCanvas.cc the call to glClear is commented out.
  69. /// If you want a really good idea of what exactly dirty regions are and how they
  70. /// work, un-comment that glClear line in the renderFrame method of guiCanvas.cc
  71. ///
  72. /// What you will see is a black screen, except in the dirty regions, where the
  73. /// screen will be painted normally. If you are making an animated GuiControl
  74. /// you need to add your control to the dirty areas of the canvas.
  75. ///
  76. class guiCanvas;
  77. typedef Signal<void(GuiCanvas* canvas)> CanvasSizeChangeSignal;
  78. class GuiCanvas : public GuiControl, public IProcessInput
  79. {
  80. protected:
  81. typedef GuiControl Parent;
  82. /// @name Rendering
  83. /// @{
  84. RectI mOldUpdateRects[2];
  85. RectI mCurUpdateRect;
  86. U32 mLastRenderMs;
  87. /// @}
  88. /// @name Cursor Properties
  89. /// @{
  90. bool mCursorEnabled;
  91. bool mShowCursor;
  92. bool mRenderFront;
  93. Point2F mCursorPt; ///< Current cursor position in local coordinates.
  94. Point2I mLastCursorPt;
  95. GuiCursor *mDefaultCursor;
  96. GuiCursor *mLastCursor;
  97. bool mLastCursorEnabled;
  98. bool mForceMouseToGUI;
  99. bool mClampTorqueCursor;
  100. bool mAlwaysHandleMouseButtons;
  101. bool mDisplayWindow;
  102. /// @}
  103. /// @name Mouse Input
  104. /// @{
  105. SimObjectPtr<GuiControl> mMouseCapturedControl; ///< All mouse events will go to this ctrl only
  106. SimObjectPtr<GuiControl> mMouseControl; ///< the control the mouse was last seen in unless some other one captured it
  107. bool mMouseControlClicked; ///< whether the current ctrl has been clicked - used by helpctrl
  108. U32 mPrevMouseTime; ///< this determines how long the mouse has been in the same control
  109. bool mMouseButtonDown; ///< Flag to determine if the button is depressed
  110. bool mMouseRightButtonDown; ///< bool to determine if the right button is depressed
  111. bool mMouseMiddleButtonDown; ///< Middle button flag
  112. GuiEvent mLastEvent;
  113. U8 mLastMouseClickCount;
  114. S32 mLastMouseDownTime;
  115. bool mLeftMouseLast;
  116. bool mMiddleMouseLast;
  117. bool mRightMouseLast;
  118. Point2F mMouseDownPoint;
  119. /// Processes keyboard input events. Helper method for processInputEvent
  120. ///
  121. /// \param inputEvent Information on the input even to be processed.
  122. /// \return True if the event was handled or false if it was not.
  123. virtual bool processKeyboardEvent(InputEventInfo &inputEvent);
  124. /// Processes mouse input events. Helper method for processInputEvent
  125. ///
  126. /// \param inputEvent Information on the input even to be processed.
  127. /// \return True if the event was handled or false if it was not.
  128. virtual bool processMouseEvent(InputEventInfo &inputEvent);
  129. /// Processes gamepad input events. Helper method for processInputEvent
  130. ///
  131. /// \param inputEvent Information on the input even to be processed.
  132. /// \return True if the event was handled or false if it was not.
  133. virtual bool processGamepadEvent(InputEventInfo &inputEvent);
  134. virtual void findMouseControl(const GuiEvent &event);
  135. virtual void refreshMouseControl();
  136. /// @}
  137. /// @name Keyboard Input
  138. /// @{
  139. /// Accelerator key map
  140. struct AccKeyMap
  141. {
  142. GuiControl *ctrl;
  143. U32 index;
  144. U32 keyCode;
  145. U32 modifier;
  146. };
  147. Vector <AccKeyMap> mAcceleratorMap;
  148. //for tooltip rendering
  149. U32 mHoverControlStart;
  150. GuiControl* mHoverControl;
  151. Point2I mHoverPosition;
  152. bool mHoverPositionSet;
  153. U32 mHoverLeftControlTime;
  154. /// @}
  155. // Internal event handling callbacks for use with PlatformWindow.
  156. void handleResize (WindowId did, S32 width, S32 height);
  157. void handleAppEvent (WindowId did, S32 event);
  158. void handlePaintEvent (WindowId did);
  159. PlatformWindow *mPlatformWindow;
  160. GFXFence **mFences;
  161. S32 mNextFenceIdx;
  162. S32 mNumFences;
  163. static bool setProtectedNumFences( void *object, const char *index, const char *data );
  164. virtual void setupFences();
  165. void checkLockMouseMove( const GuiEvent& event );
  166. //Signal used to let others know this canvas has changed size.
  167. static CanvasSizeChangeSignal smCanvasSizeChangeSignal;
  168. GuiControl *mMenuBarCtrl;
  169. public:
  170. DECLARE_CONOBJECT(GuiCanvas);
  171. DECLARE_CATEGORY( "Gui Core" );
  172. GuiCanvas();
  173. virtual ~GuiCanvas();
  174. virtual bool onAdd();
  175. virtual void onRemove();
  176. void setMenuBar(SimObject *obj);
  177. static void initPersistFields();
  178. static CanvasSizeChangeSignal& getCanvasSizeChangeSignal() { return smCanvasSizeChangeSignal; }
  179. /// @name Rendering methods
  180. ///
  181. /// @{
  182. /// Repaints the dirty regions of the canvas
  183. /// @param preRenderOnly If set to true, only the onPreRender methods of all the GuiControls will be called
  184. /// @param bufferSwap If set to true, it will swap buffers at the end. This is to support canvas-subclassing.
  185. virtual void renderFrame(bool preRenderOnly, bool bufferSwap = true);
  186. /// Repaints the canvas by calling the platform window display event.
  187. virtual void paint();
  188. /// Repaints the canvas skipping rendering if the target time
  189. /// has not yet elapsed.
  190. /// @param elapsedMS The time since the last frame.
  191. virtual void repaint(U32 elapsedMS);
  192. /// This signal is triggered at the beginning and end of each render frame
  193. ///
  194. /// @param beginFrame true at the beginning of the frame, false at the end
  195. ///
  196. typedef Signal <void ( bool beginFrame )> GuiCanvasFrameSignal;
  197. static GuiCanvasFrameSignal& getGuiCanvasFrameSignal();
  198. /// Adds a dirty area to the canvas so it will be updated on the next frame
  199. /// @param pos Screen-coordinates of the upper-left hand corner of the dirty area
  200. /// @param ext Width/height of the dirty area
  201. virtual void addUpdateRegion(Point2I pos, Point2I ext);
  202. /// Resets the update regions so that the next call to renderFrame will
  203. /// repaint the whole canvas
  204. virtual void resetUpdateRegions();
  205. /// Resizes the content control to match the canvas size.
  206. void maintainSizing();
  207. /// This builds a rectangle which encompasses all of the dirty regions to be
  208. /// repainted
  209. /// @param updateUnion (out) Rectangle which surrounds all dirty areas
  210. virtual void buildUpdateUnion(RectI *updateUnion);
  211. /// This will swap the buffers at the end of renderFrame. It was added for canvas
  212. /// sub-classes in case they wanted to do some custom code before the buffer
  213. /// flip occured.
  214. virtual void swapBuffers();
  215. /// @}
  216. /// @name Canvas Content Management
  217. /// @{
  218. /// This returns the PlatformWindow owned by this Canvas
  219. virtual PlatformWindow *getPlatformWindow()
  220. {
  221. return mPlatformWindow;
  222. }
  223. /// This sets the content control to something different
  224. /// @param gui New content control
  225. virtual void setContentControl(GuiControl *gui);
  226. /// Returns the content control
  227. virtual GuiControl *getContentControl();
  228. /// Adds a dialog control onto the stack of dialogs
  229. /// @param gui Dialog to add
  230. /// @param layer Layer to put dialog on
  231. /// @param center Center dialog on canvas.
  232. virtual void pushDialogControl(GuiControl *gui, S32 layer = 0, bool center = false);
  233. /// Removes a specific layer of dialogs
  234. /// @param layer Layer to pop off from
  235. virtual void popDialogControl(S32 layer = 0);
  236. /// Removes a specific dialog control
  237. /// @param gui Dialog to remove from the dialog stack
  238. virtual void popDialogControl(GuiControl *gui);
  239. ///@}
  240. /// This turns on/off front-buffer rendering
  241. /// @param front True if all rendering should be done to the front buffer
  242. virtual void setRenderFront(bool front) { mRenderFront = front; }
  243. /// @name Cursor commands
  244. /// A cursor can be on, but not be shown. If a cursor is not on, than it does not
  245. /// process input.
  246. /// @{
  247. /// Sets the cursor for the canvas.
  248. /// @param cursor New cursor to use.
  249. virtual void setCursor(GuiCursor *cursor);
  250. S32 mCursorChanged;
  251. /// Returns true if the cursor is on.
  252. virtual bool isCursorON() { return mCursorEnabled; }
  253. /// Sets if mouse events should be passed to the GUI even if the cursor is off.
  254. /// @param onOff True if events should be passed to the GUI if the cursor is off
  255. virtual void setForceMouseToGUI(bool onOff);
  256. /// Sets if the Torque cursor should be clamped to the window.
  257. /// @param onOff True if the Torque cursor should be clamped against the window
  258. virtual void setClampTorqueCursor(bool onOff);
  259. /// Returns if the Torque cursor is clamped to the window
  260. virtual bool getClampTorqueCursor() { return mClampTorqueCursor; }
  261. /// Turns the cursor on or off.
  262. /// @param onOff True if the cursor should be on.
  263. virtual void setCursorON(bool onOff);
  264. /// Sets the position of the cursor
  265. /// @param pt Point, in screenspace for the cursor
  266. virtual void setCursorPos(const Point2I &pt);
  267. /// Returns the point, in screenspace, at which the cursor is located.
  268. virtual Point2I getCursorPos();
  269. /// Enable/disable rendering of the cursor.
  270. /// @param state True if we should render cursor
  271. virtual void showCursor(bool state);
  272. /// Returns true if the cursor is being rendered.
  273. virtual bool isCursorShown();
  274. void cursorClick(S32 buttonId, bool isDown);
  275. void cursorNudge(F32 x, F32 y);
  276. /// @}
  277. ///used by the tooltip resource
  278. Point2I getCursorExtent() { return mDefaultCursor->getExtent(); }
  279. /// @name Input Processing
  280. /// @{
  281. /// Processes an input event
  282. /// @see InputEvent
  283. /// @param event Input event to process
  284. virtual bool processInputEvent(InputEventInfo &inputEvent);
  285. /// @}
  286. /// @name Mouse Methods
  287. /// @{
  288. /// When a control gets the mouse lock this means that that control gets
  289. /// ALL mouse input and no other control receives any input.
  290. /// @param lockingControl Control to lock mouse to
  291. virtual void mouseLock(GuiControl *lockingControl);
  292. /// Unlocks the mouse from a control
  293. /// @param lockingControl Control to unlock from
  294. virtual void mouseUnlock(GuiControl *lockingControl);
  295. /// Returns the control which the mouse is over
  296. virtual GuiControl* getMouseControl() { return mMouseControl; }
  297. /// Returns the control which the mouse is locked to if any
  298. virtual GuiControl* getMouseLockedControl() { return mMouseCapturedControl; }
  299. /// Returns true if the left mouse button is down
  300. virtual bool mouseButtonDown(void) { return mMouseButtonDown; }
  301. /// Returns true if the right mouse button is down
  302. virtual bool mouseRightButtonDown(void) { return mMouseRightButtonDown; }
  303. /// @}
  304. /// @name Mouse input methods
  305. /// These events process the events before passing them down to the
  306. /// controls they effect. This allows for things such as the input
  307. /// locking and such.
  308. ///
  309. /// Each of these methods corresponds to the action in it's method name
  310. /// and processes the GuiEvent passed as a parameter
  311. /// @{
  312. virtual void rootMouseUp(const GuiEvent &event);
  313. virtual void rootMouseDown(const GuiEvent &event);
  314. virtual void rootMouseMove(const GuiEvent &event);
  315. virtual void rootMouseDragged(const GuiEvent &event);
  316. virtual void rootRightMouseDown(const GuiEvent &event);
  317. virtual void rootRightMouseUp(const GuiEvent &event);
  318. virtual void rootRightMouseDragged(const GuiEvent &event);
  319. virtual void rootMiddleMouseDown(const GuiEvent &event);
  320. virtual void rootMiddleMouseUp(const GuiEvent &event);
  321. virtual void rootMiddleMouseDragged(const GuiEvent &event);
  322. virtual bool rootMouseWheelUp(const GuiEvent &event);
  323. virtual bool rootMouseWheelDown(const GuiEvent &event);
  324. /// @}
  325. /// @name Keyboard input methods
  326. /// First responders
  327. ///
  328. /// A first responder is a the GuiControl which responds first to input events
  329. /// before passing them off for further processing.
  330. /// @{
  331. /// Moves the first responder to the next tabable controle
  332. virtual bool tabNext(void);
  333. /// Moves the first responder to the previous tabable control
  334. virtual bool tabPrev(void);
  335. /// Setups a keyboard accelerator which maps to a GuiControl.
  336. ///
  337. /// @param ctrl GuiControl to map to.
  338. /// @param index
  339. /// @param keyCode Key code.
  340. /// @param modifier Shift, ctrl, etc.
  341. virtual void addAcceleratorKey(GuiControl *ctrl, U32 index, U32 keyCode, U32 modifier);
  342. /// Sets the first responder.
  343. /// @param firstResponder Control to designate as first responder
  344. virtual void setFirstResponder(GuiControl *firstResponder);
  345. /// This is used to toggle processing of native OS accelerators, not
  346. /// to be confused with the Torque accelerator key system, to keep them
  347. /// from swallowing up keystrokes. Both GuiTextEditCtrl and GuiTextPadCtrl
  348. /// use this method.
  349. virtual void setNativeAcceleratorsEnabled( bool enabled );
  350. /// @}
  351. ///
  352. virtual Point2I getWindowSize();
  353. virtual void enableKeyboardTranslation();
  354. virtual void disableKeyboardTranslation();
  355. virtual void setWindowTitle(const char *newTitle);
  356. private:
  357. static const U32 MAX_GAMEPADS = 4; ///< The maximum number of supported gamepads
  358. };
  359. #endif