blob: 750c847231dc304968d5d444f7e5271cca6d2fce [file] [log] [blame]
Constantin Kaplinsky1215b992008-04-18 09:51:44 +00001//
2// Copyright (C) 2001,2002 HorizonLive.com, Inc. All Rights Reserved.
3// Copyright (C) 2001 Constantin Kaplinsky. All Rights Reserved.
4// Copyright (C) 2000 Tridia Corporation. All Rights Reserved.
5// Copyright (C) 1999 AT&T Laboratories Cambridge. All Rights Reserved.
6//
7// This is free software; you can redistribute it and/or modify
8// it under the terms of the GNU General Public License as published by
9// the Free Software Foundation; either version 2 of the License, or
10// (at your option) any later version.
11//
12// This software is distributed in the hope that it will be useful,
13// but WITHOUT ANY WARRANTY; without even the implied warranty of
14// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15// GNU General Public License for more details.
16//
17// You should have received a copy of the GNU General Public License
18// along with this software; if not, write to the Free Software
19// Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307,
20// USA.
21//
22
23import java.awt.*;
24import java.awt.event.*;
25import java.awt.image.*;
26import java.io.*;
27import java.lang.*;
28import java.util.zip.*;
29
30
31//
32// VncCanvas is a subclass of Canvas which draws a VNC desktop on it.
33//
34
Constantin Kaplinsky903009e2002-05-20 10:55:47 +000035class VncCanvas extends Canvas {
Constantin Kaplinsky1215b992008-04-18 09:51:44 +000036
Constantin Kaplinsky903009e2002-05-20 10:55:47 +000037 RfbPlayer player;
Constantin Kaplinsky1215b992008-04-18 09:51:44 +000038 RfbProto rfb;
Constantin Kaplinsky903009e2002-05-20 10:55:47 +000039 ColorModel cm24;
Constantin Kaplinsky1215b992008-04-18 09:51:44 +000040
41 Image memImage;
42 Graphics memGraphics;
43
44 Image rawPixelsImage;
45 MemoryImageSource pixelsSource;
Constantin Kaplinsky1215b992008-04-18 09:51:44 +000046 int[] pixels24;
47
48 // Zlib encoder's data.
49 byte[] zlibBuf;
50 int zlibBufLen = 0;
51 Inflater zlibInflater;
52
53 // Tight encoder's data.
54 final static int tightZlibBufferSize = 512;
55 Inflater[] tightInflaters;
56
57 // Since JPEG images are loaded asynchronously, we have to remember
58 // their position in the framebuffer. Also, this jpegRect object is
59 // used for synchronization between the rfbThread and a JVM's thread
60 // which decodes and loads JPEG images.
61 Rectangle jpegRect;
62
Constantin Kaplinsky1215b992008-04-18 09:51:44 +000063 //
64 // The constructor.
65 //
66
Constantin Kaplinsky903009e2002-05-20 10:55:47 +000067 VncCanvas(RfbPlayer player) throws IOException {
68 this.player = player;
69 rfb = player.rfb;
Constantin Kaplinsky1215b992008-04-18 09:51:44 +000070
Constantin Kaplinsky1215b992008-04-18 09:51:44 +000071 cm24 = new DirectColorModel(24, 0xFF0000, 0x00FF00, 0x0000FF);
72
Constantin Kaplinsky903009e2002-05-20 10:55:47 +000073 updateFramebufferSize();
Constantin Kaplinsky1215b992008-04-18 09:51:44 +000074 }
75
76 //
77 // Callback methods to determine geometry of our Component.
78 //
79
80 public Dimension getPreferredSize() {
81 return new Dimension(rfb.framebufferWidth, rfb.framebufferHeight);
82 }
83
84 public Dimension getMinimumSize() {
85 return new Dimension(rfb.framebufferWidth, rfb.framebufferHeight);
86 }
87
88 public Dimension getMaximumSize() {
89 return new Dimension(rfb.framebufferWidth, rfb.framebufferHeight);
90 }
91
92 //
93 // All painting is performed here.
94 //
95
96 public void update(Graphics g) {
97 paint(g);
98 }
99
100 public void paint(Graphics g) {
101 synchronized(memImage) {
102 g.drawImage(memImage, 0, 0, null);
103 }
Constantin Kaplinsky1215b992008-04-18 09:51:44 +0000104 }
105
106 //
107 // Override the ImageObserver interface method to handle drawing of
108 // JPEG-encoded data.
109 //
110
111 public boolean imageUpdate(Image img, int infoflags,
112 int x, int y, int width, int height) {
113 if ((infoflags & (ALLBITS | ABORT)) == 0) {
114 return true; // We need more image data.
115 } else {
116 // If the whole image is available, draw it now.
117 if ((infoflags & ALLBITS) != 0) {
118 if (jpegRect != null) {
119 synchronized(jpegRect) {
120 memGraphics.drawImage(img, jpegRect.x, jpegRect.y, null);
121 scheduleRepaint(jpegRect.x, jpegRect.y,
122 jpegRect.width, jpegRect.height);
123 jpegRect.notify();
124 }
125 }
126 }
127 return false; // All image data was processed.
128 }
129 }
130
Constantin Kaplinsky1215b992008-04-18 09:51:44 +0000131 void updateFramebufferSize() {
132
133 // Useful shortcuts.
134 int fbWidth = rfb.framebufferWidth;
135 int fbHeight = rfb.framebufferHeight;
136
137 // Create new off-screen image either if it does not exist, or if
138 // its geometry should be changed. It's not necessary to replace
139 // existing image if only pixel format should be changed.
140 if (memImage == null) {
Constantin Kaplinsky903009e2002-05-20 10:55:47 +0000141 memImage = player.createImage(fbWidth, fbHeight);
Constantin Kaplinsky1215b992008-04-18 09:51:44 +0000142 memGraphics = memImage.getGraphics();
143 } else if (memImage.getWidth(null) != fbWidth ||
144 memImage.getHeight(null) != fbHeight) {
145 synchronized(memImage) {
Constantin Kaplinsky903009e2002-05-20 10:55:47 +0000146 memImage = player.createImage(fbWidth, fbHeight);
Constantin Kaplinsky1215b992008-04-18 09:51:44 +0000147 memGraphics = memImage.getGraphics();
148 }
149 }
150
151 // Images with raw pixels should be re-allocated on every change
152 // of geometry or pixel format.
Constantin Kaplinsky903009e2002-05-20 10:55:47 +0000153 pixels24 = new int[fbWidth * fbHeight];
154 pixelsSource =
155 new MemoryImageSource(fbWidth, fbHeight, cm24, pixels24, 0, fbWidth);
Constantin Kaplinsky1215b992008-04-18 09:51:44 +0000156 pixelsSource.setAnimated(true);
157 rawPixelsImage = createImage(pixelsSource);
158
159 // Update the size of desktop containers.
Constantin Kaplinsky903009e2002-05-20 10:55:47 +0000160 if (player.inSeparateFrame) {
161 if (player.desktopScrollPane != null)
Constantin Kaplinsky1215b992008-04-18 09:51:44 +0000162 resizeDesktopFrame();
163 } else {
164 setSize(fbWidth, fbHeight);
165 }
166 }
167
168 void resizeDesktopFrame() {
169 setSize(rfb.framebufferWidth, rfb.framebufferHeight);
170
171 // FIXME: Find a better way to determine correct size of a
172 // ScrollPane. -- const
Constantin Kaplinsky903009e2002-05-20 10:55:47 +0000173 Insets insets = player.desktopScrollPane.getInsets();
174 player.desktopScrollPane.setSize(rfb.framebufferWidth +
Constantin Kaplinsky1215b992008-04-18 09:51:44 +0000175 2 * Math.min(insets.left, insets.right),
176 rfb.framebufferHeight +
177 2 * Math.min(insets.top, insets.bottom));
178
Constantin Kaplinsky903009e2002-05-20 10:55:47 +0000179 player.vncFrame.pack();
Constantin Kaplinsky1215b992008-04-18 09:51:44 +0000180
181 // Try to limit the frame size to the screen size.
Constantin Kaplinsky903009e2002-05-20 10:55:47 +0000182 Dimension screenSize = player.vncFrame.getToolkit().getScreenSize();
183 Dimension frameSize = player.vncFrame.getSize();
Constantin Kaplinsky1215b992008-04-18 09:51:44 +0000184 Dimension newSize = frameSize;
185 boolean needToResizeFrame = false;
186 if (frameSize.height > screenSize.height) {
187 newSize.height = screenSize.height;
188 needToResizeFrame = true;
189 }
190 if (frameSize.width > screenSize.width) {
191 newSize.width = screenSize.width;
192 needToResizeFrame = true;
193 }
194 if (needToResizeFrame) {
Constantin Kaplinsky903009e2002-05-20 10:55:47 +0000195 player.vncFrame.setSize(newSize);
Constantin Kaplinsky1215b992008-04-18 09:51:44 +0000196 }
197
Constantin Kaplinsky903009e2002-05-20 10:55:47 +0000198 player.desktopScrollPane.doLayout();
Constantin Kaplinsky1215b992008-04-18 09:51:44 +0000199 }
200
201 //
202 // processNormalProtocol() - executed by the rfbThread to deal with the
203 // RFB socket.
204 //
205
206 public void processNormalProtocol() throws IOException {
207
Constantin Kaplinsky903009e2002-05-20 10:55:47 +0000208 zlibInflater = new Inflater();
209 tightInflaters = new Inflater[4];
Constantin Kaplinsky1215b992008-04-18 09:51:44 +0000210
Constantin Kaplinsky903009e2002-05-20 10:55:47 +0000211 // Main dispatch loop.
Constantin Kaplinsky1215b992008-04-18 09:51:44 +0000212
213 while (true) {
Constantin Kaplinsky903009e2002-05-20 10:55:47 +0000214
215 while (player.getMode() != player.MODE_PLAYBACK) {
216 synchronized(this) {
217 try {
218 wait();
219 } catch (InterruptedException e) {
220 }
221 }
222 if (player.getMode() == player.MODE_STOPPED) {
223 throw new EOFException("Playback stopped");
224 }
225 if (player.getMode() == player.MODE_PLAYBACK) {
226 player.fbsStream.resumeReading();
227 }
228 }
229
Constantin Kaplinsky1215b992008-04-18 09:51:44 +0000230 int msgType = rfb.readServerMessageType();
231
232 switch (msgType) {
233 case RfbProto.FramebufferUpdate:
234 rfb.readFramebufferUpdate();
235
236 for (int i = 0; i < rfb.updateNRects; i++) {
237 rfb.readFramebufferUpdateRectHdr();
238
239 if (rfb.updateRectEncoding == rfb.EncodingLastRect)
240 break;
241
242 if (rfb.updateRectEncoding == rfb.EncodingNewFBSize) {
243 rfb.setFramebufferSize(rfb.updateRectW, rfb.updateRectH);
244 updateFramebufferSize();
245 break;
246 }
247
248 if (rfb.updateRectEncoding == rfb.EncodingXCursor ||
249 rfb.updateRectEncoding == rfb.EncodingRichCursor) {
Constantin Kaplinsky903009e2002-05-20 10:55:47 +0000250 throw new IOException("Sorry, no support for" +
251 " cursor shape updates yet");
Constantin Kaplinsky1215b992008-04-18 09:51:44 +0000252 }
253
254 switch (rfb.updateRectEncoding) {
255
256 case RfbProto.EncodingRaw:
257 {
258 handleRawRect(rfb.updateRectX, rfb.updateRectY,
259 rfb.updateRectW, rfb.updateRectH);
260 break;
261 }
262
263 case RfbProto.EncodingCopyRect:
264 {
265 rfb.readCopyRect();
266
267 int sx = rfb.copyRectSrcX, sy = rfb.copyRectSrcY;
268 int rx = rfb.updateRectX, ry = rfb.updateRectY;
269 int rw = rfb.updateRectW, rh = rfb.updateRectH;
270
271 memGraphics.copyArea(sx, sy, rw, rh, rx - sx, ry - sy);
272
273 scheduleRepaint(rx, ry, rw, rh);
274 break;
275 }
276
277 case RfbProto.EncodingRRE:
278 {
279 int rx = rfb.updateRectX, ry = rfb.updateRectY;
280 int rw = rfb.updateRectW, rh = rfb.updateRectH;
281 int nSubrects = rfb.is.readInt();
282 int x, y, w, h;
283 Color pixel;
284
Constantin Kaplinsky903009e2002-05-20 10:55:47 +0000285 pixel = new Color(0xFF000000 | rfb.is.readInt());
286 memGraphics.setColor(pixel);
287 memGraphics.fillRect(rx, ry, rw, rh);
Constantin Kaplinsky1215b992008-04-18 09:51:44 +0000288
Constantin Kaplinsky903009e2002-05-20 10:55:47 +0000289 for (int j = 0; j < nSubrects; j++) {
Constantin Kaplinsky1215b992008-04-18 09:51:44 +0000290 pixel = new Color(0xFF000000 | rfb.is.readInt());
Constantin Kaplinsky903009e2002-05-20 10:55:47 +0000291 x = rx + rfb.is.readUnsignedShort();
292 y = ry + rfb.is.readUnsignedShort();
293 w = rfb.is.readUnsignedShort();
294 h = rfb.is.readUnsignedShort();
295
Constantin Kaplinsky1215b992008-04-18 09:51:44 +0000296 memGraphics.setColor(pixel);
Constantin Kaplinsky903009e2002-05-20 10:55:47 +0000297 memGraphics.fillRect(x, y, w, h);
Constantin Kaplinsky1215b992008-04-18 09:51:44 +0000298 }
299
300 scheduleRepaint(rx, ry, rw, rh);
301 break;
302 }
303
304 case RfbProto.EncodingCoRRE:
305 {
306 int rx = rfb.updateRectX, ry = rfb.updateRectY;
307 int rw = rfb.updateRectW, rh = rfb.updateRectH;
308 int nSubrects = rfb.is.readInt();
309 int x, y, w, h;
310 Color pixel;
311
Constantin Kaplinsky903009e2002-05-20 10:55:47 +0000312 pixel = new Color(0xFF000000 | rfb.is.readInt());
313 memGraphics.setColor(pixel);
314 memGraphics.fillRect(rx, ry, rw, rh);
Constantin Kaplinsky1215b992008-04-18 09:51:44 +0000315
Constantin Kaplinsky903009e2002-05-20 10:55:47 +0000316 for (int j = 0; j < nSubrects; j++) {
Constantin Kaplinsky1215b992008-04-18 09:51:44 +0000317 pixel = new Color(0xFF000000 | rfb.is.readInt());
Constantin Kaplinsky903009e2002-05-20 10:55:47 +0000318 x = rx + rfb.is.readUnsignedByte();
319 y = ry + rfb.is.readUnsignedByte();
320 w = rfb.is.readUnsignedByte();
321 h = rfb.is.readUnsignedByte();
322
Constantin Kaplinsky1215b992008-04-18 09:51:44 +0000323 memGraphics.setColor(pixel);
Constantin Kaplinsky903009e2002-05-20 10:55:47 +0000324 memGraphics.fillRect(x, y, w, h);
Constantin Kaplinsky1215b992008-04-18 09:51:44 +0000325 }
326
327 scheduleRepaint(rx, ry, rw, rh);
328 break;
329 }
330
331 case RfbProto.EncodingHextile:
332 {
333 int rx = rfb.updateRectX, ry = rfb.updateRectY;
334 int rw = rfb.updateRectW, rh = rfb.updateRectH;
335 Color bg = new Color(0), fg = new Color(0);
336
337 for (int ty = ry; ty < ry + rh; ty += 16) {
338
339 int th = 16;
340 if (ry + rh - ty < 16)
341 th = ry + rh - ty;
342
343 for (int tx = rx; tx < rx + rw; tx += 16) {
344
345 int tw = 16;
346 if (rx + rw - tx < 16)
347 tw = rx + rw - tx;
348
349 int subencoding = rfb.is.readUnsignedByte();
350
351 // Is it a raw-encoded sub-rectangle?
352 if ((subencoding & rfb.HextileRaw) != 0) {
Constantin Kaplinsky903009e2002-05-20 10:55:47 +0000353 byte[] buf = new byte[tw * 4];
354 int count, offset;
355 for (int j = ty; j < ty + th; j++) {
356 rfb.is.readFully(buf);
357 offset = j * rfb.framebufferWidth + tx;
358 for (count = 0; count < tw; count++) {
359 pixels24[offset + count] =
360 (buf[count * 4 + 1] & 0xFF) << 16 |
361 (buf[count * 4 + 2] & 0xFF) << 8 |
362 (buf[count * 4 + 3] & 0xFF);
Constantin Kaplinsky1215b992008-04-18 09:51:44 +0000363 }
364 }
365 handleUpdatedPixels(tx, ty, tw, th);
366 continue;
367 }
368
369 // Read and draw the background if specified.
370 if ((subencoding & rfb.HextileBackgroundSpecified) != 0) {
Constantin Kaplinsky903009e2002-05-20 10:55:47 +0000371 bg = new Color(0xFF000000 | rfb.is.readInt());
Constantin Kaplinsky1215b992008-04-18 09:51:44 +0000372 }
373 memGraphics.setColor(bg);
374 memGraphics.fillRect(tx, ty, tw, th);
375
376 // Read the foreground color if specified.
377 if ((subencoding & rfb.HextileForegroundSpecified) != 0) {
Constantin Kaplinsky903009e2002-05-20 10:55:47 +0000378 fg = new Color(0xFF000000 | rfb.is.readInt());
Constantin Kaplinsky1215b992008-04-18 09:51:44 +0000379 }
380
381 // Done with this tile if there is no sub-rectangles.
382 if ((subencoding & rfb.HextileAnySubrects) == 0)
383 continue;
384
385 int nSubrects = rfb.is.readUnsignedByte();
386
387 int b1, b2, sx, sy, sw, sh;
Constantin Kaplinsky903009e2002-05-20 10:55:47 +0000388 if ((subencoding & rfb.HextileSubrectsColoured) != 0) {
389 for (int j = 0; j < nSubrects; j++) {
390 fg = new Color(0xFF000000 | rfb.is.readInt());
391 b1 = rfb.is.readUnsignedByte();
392 b2 = rfb.is.readUnsignedByte();
393 sx = tx + (b1 >> 4);
394 sy = ty + (b1 & 0xf);
395 sw = (b2 >> 4) + 1;
396 sh = (b2 & 0xf) + 1;
Constantin Kaplinsky1215b992008-04-18 09:51:44 +0000397 memGraphics.setColor(fg);
Constantin Kaplinsky903009e2002-05-20 10:55:47 +0000398 memGraphics.fillRect(sx, sy, sw, sh);
Constantin Kaplinsky1215b992008-04-18 09:51:44 +0000399 }
Constantin Kaplinsky1215b992008-04-18 09:51:44 +0000400 } else {
Constantin Kaplinsky903009e2002-05-20 10:55:47 +0000401 memGraphics.setColor(fg);
402 for (int j = 0; j < nSubrects; j++) {
403 b1 = rfb.is.readUnsignedByte();
404 b2 = rfb.is.readUnsignedByte();
405 sx = tx + (b1 >> 4);
406 sy = ty + (b1 & 0xf);
407 sw = (b2 >> 4) + 1;
408 sh = (b2 & 0xf) + 1;
409 memGraphics.fillRect(sx, sy, sw, sh);
Constantin Kaplinsky1215b992008-04-18 09:51:44 +0000410 }
Constantin Kaplinsky1215b992008-04-18 09:51:44 +0000411 }
412
413 }
414 // Finished with a row of tiles, now let's show it.
415 scheduleRepaint(rx, ty, rw, th);
416 }
417 break;
418 }
419
420 case RfbProto.EncodingZlib:
421 {
422 int nBytes = rfb.is.readInt();
423
424 if (zlibBuf == null || zlibBufLen < nBytes) {
425 zlibBufLen = nBytes * 2;
426 zlibBuf = new byte[zlibBufLen];
427 }
428
429 rfb.is.readFully(zlibBuf, 0, nBytes);
Constantin Kaplinsky1215b992008-04-18 09:51:44 +0000430 zlibInflater.setInput(zlibBuf, 0, nBytes);
431
432 handleZlibRect(rfb.updateRectX, rfb.updateRectY,
433 rfb.updateRectW, rfb.updateRectH);
434
435 break;
436 }
437
438 case RfbProto.EncodingTight:
439 {
440 handleTightRect(rfb.updateRectX, rfb.updateRectY,
441 rfb.updateRectW, rfb.updateRectH);
442
443 break;
444 }
445
446 default:
447 throw new IOException("Unknown RFB rectangle encoding " +
448 rfb.updateRectEncoding);
449 }
450
451 }
Constantin Kaplinsky1215b992008-04-18 09:51:44 +0000452 break;
453
454 case RfbProto.SetColourMapEntries:
455 throw new IOException("Can't handle SetColourMapEntries message");
456
457 case RfbProto.Bell:
458 Toolkit.getDefaultToolkit().beep();
459 break;
460
461 case RfbProto.ServerCutText:
462 String s = rfb.readServerCutText();
Constantin Kaplinsky1215b992008-04-18 09:51:44 +0000463 break;
464
465 default:
466 throw new IOException("Unknown RFB message type " + msgType);
467 }
Constantin Kaplinsky903009e2002-05-20 10:55:47 +0000468
469 if (player.getMode() == player.MODE_STOPPED) {
470 throw new EOFException("Playback stopped");
471 }
Constantin Kaplinsky1215b992008-04-18 09:51:44 +0000472 }
473 }
474
475
476 //
477 // Handle a raw rectangle.
478 //
479
480 void handleRawRect(int x, int y, int w, int h) throws IOException {
481
Constantin Kaplinsky903009e2002-05-20 10:55:47 +0000482 byte[] buf = new byte[w * 4];
483 int i, offset;
484 for (int dy = y; dy < y + h; dy++) {
485 rfb.is.readFully(buf);
486 offset = dy * rfb.framebufferWidth + x;
487 for (i = 0; i < w; i++) {
488 pixels24[offset + i] =
489 (buf[i * 4 + 1] & 0xFF) << 16 |
490 (buf[i * 4 + 2] & 0xFF) << 8 |
491 (buf[i * 4 + 3] & 0xFF);
Constantin Kaplinsky1215b992008-04-18 09:51:44 +0000492 }
493 }
494
495 handleUpdatedPixels(x, y, w, h);
496 scheduleRepaint(x, y, w, h);
497 }
498
499
500 //
501 // Handle a Zlib-encoded rectangle.
502 //
503
504 void handleZlibRect(int x, int y, int w, int h)
505 throws IOException {
506
507 try {
Constantin Kaplinsky903009e2002-05-20 10:55:47 +0000508 byte[] buf = new byte[w * 4];
509 int i, offset;
510 for (int dy = y; dy < y + h; dy++) {
511 zlibInflater.inflate(buf);
512 offset = dy * rfb.framebufferWidth + x;
513 for (i = 0; i < w; i++) {
514 pixels24[offset + i] =
515 (buf[i * 4 + 1] & 0xFF) << 16 |
516 (buf[i * 4 + 2] & 0xFF) << 8 |
517 (buf[i * 4 + 3] & 0xFF);
Constantin Kaplinsky1215b992008-04-18 09:51:44 +0000518 }
519 }
520 }
521 catch (DataFormatException dfe) {
522 throw new IOException(dfe.toString());
523 }
524
525 handleUpdatedPixels(x, y, w, h);
526 scheduleRepaint(x, y, w, h);
527 }
528
529
530 //
531 // Handle a tight rectangle.
532 //
533
534 void handleTightRect(int x, int y, int w, int h) throws IOException {
535
536 int comp_ctl = rfb.is.readUnsignedByte();
537
538 // Flush zlib streams if we are told by the server to do so.
539 for (int stream_id = 0; stream_id < 4; stream_id++) {
540 if ((comp_ctl & 1) != 0 && tightInflaters[stream_id] != null) {
541 tightInflaters[stream_id] = null;
542 }
543 comp_ctl >>= 1;
544 }
545
546 // Check correctness of subencoding value.
547 if (comp_ctl > rfb.TightMaxSubencoding) {
548 throw new IOException("Incorrect tight subencoding: " + comp_ctl);
549 }
550
551 // Handle solid-color rectangles.
552 if (comp_ctl == rfb.TightFill) {
Constantin Kaplinsky903009e2002-05-20 10:55:47 +0000553 byte[] buf = new byte[3];
554 rfb.is.readFully(buf);
555 Color bg = new Color(0xFF000000 | (buf[0] & 0xFF) << 16 |
556 (buf[1] & 0xFF) << 8 | (buf[2] & 0xFF));
557 memGraphics.setColor(bg);
Constantin Kaplinsky1215b992008-04-18 09:51:44 +0000558 memGraphics.fillRect(x, y, w, h);
559 scheduleRepaint(x, y, w, h);
560 return;
561 }
562
563 if (comp_ctl == rfb.TightJpeg) {
564
565 // Read JPEG data.
566 byte[] jpegData = new byte[rfb.readCompactLen()];
567 rfb.is.readFully(jpegData);
568
569 // Create an Image object from the JPEG data.
570 Image jpegImage = Toolkit.getDefaultToolkit().createImage(jpegData);
571
572 // Remember the rectangle where the image should be drawn.
573 jpegRect = new Rectangle(x, y, w, h);
574
575 // Let the imageUpdate() method do the actual drawing, here just
576 // wait until the image is fully loaded and drawn.
577 synchronized(jpegRect) {
578 Toolkit.getDefaultToolkit().prepareImage(jpegImage, -1, -1, this);
579 try {
580 // Wait no longer than three seconds.
581 jpegRect.wait(3000);
582 } catch (InterruptedException e) {
583 throw new IOException("Interrupted while decoding JPEG image");
584 }
585 }
586
587 // Done, jpegRect is not needed any more.
588 jpegRect = null;
589 return;
590
591 }
592
593 // Read filter id and parameters.
594 int numColors = 0, rowSize = w;
595 byte[] palette8 = new byte[2];
596 int[] palette24 = new int[256];
597 boolean useGradient = false;
598 if ((comp_ctl & rfb.TightExplicitFilter) != 0) {
599 int filter_id = rfb.is.readUnsignedByte();
600 if (filter_id == rfb.TightFilterPalette) {
601 numColors = rfb.is.readUnsignedByte() + 1;
Constantin Kaplinsky903009e2002-05-20 10:55:47 +0000602 byte[] buf = new byte[numColors * 3];
603 rfb.is.readFully(buf);
604 for (int i = 0; i < numColors; i++) {
605 palette24[i] = ((buf[i * 3] & 0xFF) << 16 |
606 (buf[i * 3 + 1] & 0xFF) << 8 |
607 (buf[i * 3 + 2] & 0xFF));
Constantin Kaplinsky1215b992008-04-18 09:51:44 +0000608 }
609 if (numColors == 2)
610 rowSize = (w + 7) / 8;
611 } else if (filter_id == rfb.TightFilterGradient) {
612 useGradient = true;
613 } else if (filter_id != rfb.TightFilterCopy) {
614 throw new IOException("Incorrect tight filter id: " + filter_id);
615 }
616 }
Constantin Kaplinsky903009e2002-05-20 10:55:47 +0000617 if (numColors == 0)
Constantin Kaplinsky1215b992008-04-18 09:51:44 +0000618 rowSize *= 3;
619
620 // Read, optionally uncompress and decode data.
621 int dataSize = h * rowSize;
622 if (dataSize < rfb.TightMinToCompress) {
623 // Data size is small - not compressed with zlib.
624 if (numColors != 0) {
625 // Indexed colors.
626 byte[] indexedData = new byte[dataSize];
627 rfb.is.readFully(indexedData);
628 if (numColors == 2) {
629 // Two colors.
Constantin Kaplinsky903009e2002-05-20 10:55:47 +0000630 decodeMonoData(x, y, w, h, indexedData, palette24);
Constantin Kaplinsky1215b992008-04-18 09:51:44 +0000631 } else {
Constantin Kaplinsky903009e2002-05-20 10:55:47 +0000632 // 3..255 colors.
Constantin Kaplinsky1215b992008-04-18 09:51:44 +0000633 int i = 0;
634 for (int dy = y; dy < y + h; dy++) {
635 for (int dx = x; dx < x + w; dx++) {
636 pixels24[dy * rfb.framebufferWidth + dx] =
637 palette24[indexedData[i++] & 0xFF];
638 }
639 }
640 }
641 } else if (useGradient) {
642 // "Gradient"-processed data
643 byte[] buf = new byte[w * h * 3];
644 rfb.is.readFully(buf);
645 decodeGradientData(x, y, w, h, buf);
646 } else {
647 // Raw truecolor data.
Constantin Kaplinsky903009e2002-05-20 10:55:47 +0000648 byte[] buf = new byte[w * 3];
649 int i, offset;
650 for (int dy = y; dy < y + h; dy++) {
651 rfb.is.readFully(buf);
652 offset = dy * rfb.framebufferWidth + x;
653 for (i = 0; i < w; i++) {
654 pixels24[offset + i] =
655 (buf[i * 3] & 0xFF) << 16 |
656 (buf[i * 3 + 1] & 0xFF) << 8 |
657 (buf[i * 3 + 2] & 0xFF);
Constantin Kaplinsky1215b992008-04-18 09:51:44 +0000658 }
659 }
660 }
661 } else {
662 // Data was compressed with zlib.
663 int zlibDataLen = rfb.readCompactLen();
664 byte[] zlibData = new byte[zlibDataLen];
665 rfb.is.readFully(zlibData);
666 int stream_id = comp_ctl & 0x03;
667 if (tightInflaters[stream_id] == null) {
668 tightInflaters[stream_id] = new Inflater();
669 }
670 Inflater myInflater = tightInflaters[stream_id];
671 myInflater.setInput(zlibData);
672 try {
673 if (numColors != 0) {
674 // Indexed colors.
675 byte[] indexedData = new byte[dataSize];
676 myInflater.inflate(indexedData);
677 if (numColors == 2) {
678 // Two colors.
Constantin Kaplinsky903009e2002-05-20 10:55:47 +0000679 decodeMonoData(x, y, w, h, indexedData, palette24);
Constantin Kaplinsky1215b992008-04-18 09:51:44 +0000680 } else {
Constantin Kaplinsky903009e2002-05-20 10:55:47 +0000681 // More than two colors.
Constantin Kaplinsky1215b992008-04-18 09:51:44 +0000682 int i = 0;
683 for (int dy = y; dy < y + h; dy++) {
684 for (int dx = x; dx < x + w; dx++) {
685 pixels24[dy * rfb.framebufferWidth + dx] =
686 palette24[indexedData[i++] & 0xFF];
687 }
688 }
689 }
690 } else if (useGradient) {
Constantin Kaplinsky903009e2002-05-20 10:55:47 +0000691 // Compressed "Gradient"-filtered data.
Constantin Kaplinsky1215b992008-04-18 09:51:44 +0000692 byte[] buf = new byte[w * h * 3];
693 myInflater.inflate(buf);
694 decodeGradientData(x, y, w, h, buf);
695 } else {
696 // Compressed truecolor data.
Constantin Kaplinsky903009e2002-05-20 10:55:47 +0000697 byte[] buf = new byte[w * 3];
698 int i, offset;
699 for (int dy = y; dy < y + h; dy++) {
700 myInflater.inflate(buf);
701 offset = dy * rfb.framebufferWidth + x;
702 for (i = 0; i < w; i++) {
703 pixels24[offset + i] =
704 (buf[i * 3] & 0xFF) << 16 |
705 (buf[i * 3 + 1] & 0xFF) << 8 |
706 (buf[i * 3 + 2] & 0xFF);
Constantin Kaplinsky1215b992008-04-18 09:51:44 +0000707 }
708 }
709 }
710 }
711 catch(DataFormatException dfe) {
712 throw new IOException(dfe.toString());
713 }
714 }
715
716 handleUpdatedPixels(x, y, w, h);
717 scheduleRepaint(x, y, w, h);
718 }
719
720 //
Constantin Kaplinsky903009e2002-05-20 10:55:47 +0000721 // Decode 1bpp-encoded bi-color rectangle.
Constantin Kaplinsky1215b992008-04-18 09:51:44 +0000722 //
723
Constantin Kaplinsky1215b992008-04-18 09:51:44 +0000724 void decodeMonoData(int x, int y, int w, int h, byte[] src, int[] palette)
725 throws IOException {
726
727 int dx, dy, n;
728 int i = y * rfb.framebufferWidth + x;
729 int rowBytes = (w + 7) / 8;
730 byte b;
731
732 for (dy = 0; dy < h; dy++) {
733 for (dx = 0; dx < w / 8; dx++) {
734 b = src[dy*rowBytes+dx];
735 for (n = 7; n >= 0; n--)
736 pixels24[i++] = palette[b >> n & 1];
737 }
738 for (n = 7; n >= 8 - w % 8; n--) {
739 pixels24[i++] = palette[src[dy*rowBytes+dx] >> n & 1];
740 }
741 i += (rfb.framebufferWidth - w);
742 }
743 }
744
745 //
746 // Decode data processed with the "Gradient" filter.
747 //
748
749 void decodeGradientData (int x, int y, int w, int h, byte[] buf)
750 throws IOException {
751
752 int dx, dy, c;
753 byte[] prevRow = new byte[w * 3];
754 byte[] thisRow = new byte[w * 3];
755 byte[] pix = new byte[3];
756 int[] est = new int[3];
757
758 int offset = y * rfb.framebufferWidth + x;
759
760 for (dy = 0; dy < h; dy++) {
761
762 /* First pixel in a row */
763 for (c = 0; c < 3; c++) {
764 pix[c] = (byte)(prevRow[c] + buf[dy * w * 3 + c]);
765 thisRow[c] = pix[c];
766 }
767 pixels24[offset++] =
768 (pix[0] & 0xFF) << 16 | (pix[1] & 0xFF) << 8 | (pix[2] & 0xFF);
769
770 /* Remaining pixels of a row */
771 for (dx = 1; dx < w; dx++) {
772 for (c = 0; c < 3; c++) {
773 est[c] = ((prevRow[dx * 3 + c] & 0xFF) + (pix[c] & 0xFF) -
774 (prevRow[(dx-1) * 3 + c] & 0xFF));
775 if (est[c] > 0xFF) {
776 est[c] = 0xFF;
777 } else if (est[c] < 0x00) {
778 est[c] = 0x00;
779 }
780 pix[c] = (byte)(est[c] + buf[(dy * w + dx) * 3 + c]);
781 thisRow[dx * 3 + c] = pix[c];
782 }
783 pixels24[offset++] =
784 (pix[0] & 0xFF) << 16 | (pix[1] & 0xFF) << 8 | (pix[2] & 0xFF);
785 }
786
787 System.arraycopy(thisRow, 0, prevRow, 0, w * 3);
788 offset += (rfb.framebufferWidth - w);
789 }
790 }
791
792
793 //
794 // Display newly updated area of pixels.
795 //
796
797 void handleUpdatedPixels(int x, int y, int w, int h) {
798
799 // Draw updated pixels of the off-screen image.
Constantin Kaplinsky903009e2002-05-20 10:55:47 +0000800
Constantin Kaplinsky1215b992008-04-18 09:51:44 +0000801 pixelsSource.newPixels(x, y, w, h);
802 memGraphics.setClip(x, y, w, h);
803 memGraphics.drawImage(rawPixelsImage, 0, 0, null);
804 memGraphics.setClip(0, 0, rfb.framebufferWidth, rfb.framebufferHeight);
805 }
806
807 //
808 // Tell JVM to repaint specified desktop area.
809 //
810
811 void scheduleRepaint(int x, int y, int w, int h) {
812 // Request repaint, deferred if necessary.
Constantin Kaplinsky903009e2002-05-20 10:55:47 +0000813 repaint(player.deferScreenUpdates, x, y, w, h);
Constantin Kaplinsky1215b992008-04-18 09:51:44 +0000814 }
815
Constantin Kaplinsky1215b992008-04-18 09:51:44 +0000816}