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Constantin Kaplinskya2adc8d2006-05-25 05:01:55 +00001/* Copyright (C) 2000-2003 Constantin Kaplinsky. All Rights Reserved.
DRCcd2c5d42011-08-11 11:18:34 +00002 * Copyright (C) 2011 D. R. Commander. All Rights Reserved.
Constantin Kaplinskya2adc8d2006-05-25 05:01:55 +00003 *
4 * This is free software; you can redistribute it and/or modify
5 * it under the terms of the GNU General Public License as published by
6 * the Free Software Foundation; either version 2 of the License, or
7 * (at your option) any later version.
8 *
9 * This software is distributed in the hope that it will be useful,
10 * but WITHOUT ANY WARRANTY; without even the implied warranty of
11 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
12 * GNU General Public License for more details.
13 *
14 * You should have received a copy of the GNU General Public License
15 * along with this software; if not, write to the Free Software
16 * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307,
17 * USA.
18 */
19#include <rdr/OutStream.h>
Pierre Ossman456b2c22014-01-15 13:22:03 +010020#include <rfb/TransImageGetter.h>
Constantin Kaplinskya2adc8d2006-05-25 05:01:55 +000021#include <rfb/encodings.h>
22#include <rfb/ConnParams.h>
23#include <rfb/SMsgWriter.h>
24#include <rfb/TightEncoder.h>
25
26using namespace rfb;
27
28// Minimum amount of data to be compressed. This value should not be
29// changed, doing so will break compatibility with existing clients.
30#define TIGHT_MIN_TO_COMPRESS 12
31
32// Adjustable parameters.
33// FIXME: Get rid of #defines
DRCcd2c5d42011-08-11 11:18:34 +000034#define TIGHT_MAX_SPLIT_TILE_SIZE 16
35#define TIGHT_MIN_SPLIT_RECT_SIZE 4096
36#define TIGHT_MIN_SOLID_SUBRECT_SIZE 2048
Constantin Kaplinskya2adc8d2006-05-25 05:01:55 +000037
38//
39// Compression level stuff. The following array contains various
40// encoder parameters for each of 10 compression levels (0..9).
41// Last three parameters correspond to JPEG quality levels (0..9).
42//
DRCcd2c5d42011-08-11 11:18:34 +000043// NOTE: The parameters used in this encoder are the result of painstaking
44// research by The VirtualGL Project using RFB session captures from a variety
45// of both 2D and 3D applications. See http://www.VirtualGL.org for the full
46// reports.
Constantin Kaplinskya2adc8d2006-05-25 05:01:55 +000047
DRC773cf3c2009-03-12 19:26:44 +000048// NOTE: The JPEG quality and subsampling levels below were obtained
49// experimentally by the VirtualGL Project. They represent the approximate
50// average compression ratios listed below, as measured across the set of
51// every 10th frame in the SPECviewperf 9 benchmark suite.
52//
53// 9 = JPEG quality 100, no subsampling (ratio ~= 10:1)
54// [this should be lossless, except for round-off error]
55// 8 = JPEG quality 92, no subsampling (ratio ~= 20:1)
56// [this should be perceptually lossless, based on current research]
57// 7 = JPEG quality 86, no subsampling (ratio ~= 25:1)
58// 6 = JPEG quality 79, no subsampling (ratio ~= 30:1)
59// 5 = JPEG quality 77, 4:2:2 subsampling (ratio ~= 40:1)
60// 4 = JPEG quality 62, 4:2:2 subsampling (ratio ~= 50:1)
61// 3 = JPEG quality 42, 4:2:2 subsampling (ratio ~= 60:1)
62// 2 = JPEG quality 41, 4:2:0 subsampling (ratio ~= 70:1)
63// 1 = JPEG quality 29, 4:2:0 subsampling (ratio ~= 80:1)
64// 0 = JPEG quality 15, 4:2:0 subsampling (ratio ~= 100:1)
65
Constantin Kaplinskya2adc8d2006-05-25 05:01:55 +000066const TIGHT_CONF TightEncoder::conf[10] = {
Pierre Ossmanb948a912014-01-15 13:23:43 +010067 { 65536, 2048, 6, 0, 0, 0, 4, 24, 15, subsample4X }, // 0
68 { 65536, 2048, 6, 1, 1, 1, 8, 24, 29, subsample4X }, // 1
69 { 65536, 2048, 8, 3, 3, 2, 24, 96, 41, subsample4X }, // 2
70 { 65536, 2048, 12, 5, 5, 2, 32, 96, 42, subsample2X }, // 3
71 { 65536, 2048, 12, 6, 7, 3, 32, 96, 62, subsample2X }, // 4
72 { 65536, 2048, 12, 7, 8, 4, 32, 96, 77, subsample2X }, // 5
73 { 65536, 2048, 16, 7, 8, 5, 32, 96, 79, subsampleNone }, // 6
74 { 65536, 2048, 16, 8, 9, 6, 64, 96, 86, subsampleNone }, // 7
75 { 65536, 2048, 24, 9, 9, 7, 64, 96, 92, subsampleNone }, // 8
76 { 65536, 2048, 32, 9, 9, 9, 96, 96,100, subsampleNone } // 9
Constantin Kaplinskya2adc8d2006-05-25 05:01:55 +000077};
Pierre Ossman701ad682011-11-20 15:39:17 +000078
79const int TightEncoder::defaultCompressLevel = 2;
Constantin Kaplinskya2adc8d2006-05-25 05:01:55 +000080
Constantin Kaplinskya2adc8d2006-05-25 05:01:55 +000081//
82// Including BPP-dependent implementation of the encoder.
83//
84
Constantin Kaplinskya2adc8d2006-05-25 05:01:55 +000085#define BPP 8
86#include <rfb/tightEncode.h>
87#undef BPP
88#define BPP 16
89#include <rfb/tightEncode.h>
90#undef BPP
91#define BPP 32
92#include <rfb/tightEncode.h>
93#undef BPP
94
Constantin Kaplinskya2adc8d2006-05-25 05:01:55 +000095TightEncoder::TightEncoder(SMsgWriter* writer_) : writer(writer_)
96{
97 setCompressLevel(defaultCompressLevel);
98 setQualityLevel(-1);
99}
100
101TightEncoder::~TightEncoder()
102{
103}
104
105void TightEncoder::setCompressLevel(int level)
106{
107 if (level >= 0 && level <= 9) {
108 pconf = &conf[level];
109 } else {
110 pconf = &conf[defaultCompressLevel];
111 }
112}
113
114void TightEncoder::setQualityLevel(int level)
115{
116 if (level >= 0 && level <= 9) {
DRCb4a83232011-08-19 04:57:18 +0000117 jpegQuality = conf[level].jpegQuality;
118 jpegSubsampling = conf[level].jpegSubsampling;
Constantin Kaplinskya2adc8d2006-05-25 05:01:55 +0000119 } else {
DRCb4a83232011-08-19 04:57:18 +0000120 jpegQuality = -1;
Pierre Ossmanb948a912014-01-15 13:23:43 +0100121 jpegSubsampling = subsampleUndefined;
DRCb4a83232011-08-19 04:57:18 +0000122 }
123}
124
Pierre Ossmanb948a912014-01-15 13:23:43 +0100125void TightEncoder::setFineQualityLevel(int quality, int subsampling)
DRCb4a83232011-08-19 04:57:18 +0000126{
Pierre Ossmanb948a912014-01-15 13:23:43 +0100127 jpegQuality = quality;
128 jpegSubsampling = subsampling;
Constantin Kaplinskya2adc8d2006-05-25 05:01:55 +0000129}
130
DRCffe09d62011-08-17 02:27:59 +0000131bool TightEncoder::checkSolidTile(Rect& r, rdr::U32* colorPtr,
DRCcd2c5d42011-08-11 11:18:34 +0000132 bool needSameColor)
133{
DRCffe09d62011-08-17 02:27:59 +0000134 switch (serverpf.bpp) {
DRCcd2c5d42011-08-11 11:18:34 +0000135 case 32:
DRCffe09d62011-08-17 02:27:59 +0000136 return checkSolidTile32(r, colorPtr, needSameColor);
DRCcd2c5d42011-08-11 11:18:34 +0000137 case 16:
DRCffe09d62011-08-17 02:27:59 +0000138 return checkSolidTile16(r, colorPtr, needSameColor);
DRCcd2c5d42011-08-11 11:18:34 +0000139 default:
DRCffe09d62011-08-17 02:27:59 +0000140 return checkSolidTile8(r, colorPtr, needSameColor);
DRCcd2c5d42011-08-11 11:18:34 +0000141 }
142}
143
DRCffe09d62011-08-17 02:27:59 +0000144void TightEncoder::findBestSolidArea(Rect& r, rdr::U32 colorValue, Rect& bestr)
DRCcd2c5d42011-08-11 11:18:34 +0000145{
146 int dx, dy, dw, dh;
147 int w_prev;
148 Rect sr;
149 int w_best = 0, h_best = 0;
150
151 bestr.tl.x = bestr.br.x = r.tl.x;
152 bestr.tl.y = bestr.br.y = r.tl.y;
153
154 w_prev = r.width();
155
156 for (dy = r.tl.y; dy < r.br.y; dy += TIGHT_MAX_SPLIT_TILE_SIZE) {
157
158 dh = (dy + TIGHT_MAX_SPLIT_TILE_SIZE <= r.br.y) ?
159 TIGHT_MAX_SPLIT_TILE_SIZE : (r.br.y - dy);
160 dw = (w_prev > TIGHT_MAX_SPLIT_TILE_SIZE) ?
161 TIGHT_MAX_SPLIT_TILE_SIZE : w_prev;
162
163 sr.setXYWH(r.tl.x, dy, dw, dh);
DRCffe09d62011-08-17 02:27:59 +0000164 if (!checkSolidTile(sr, &colorValue, true))
DRCcd2c5d42011-08-11 11:18:34 +0000165 break;
166
167 for (dx = r.tl.x + dw; dx < r.tl.x + w_prev;) {
168 dw = (dx + TIGHT_MAX_SPLIT_TILE_SIZE <= r.tl.x + w_prev) ?
169 TIGHT_MAX_SPLIT_TILE_SIZE : (r.tl.x + w_prev - dx);
170 sr.setXYWH(dx, dy, dw, dh);
DRCffe09d62011-08-17 02:27:59 +0000171 if (!checkSolidTile(sr, &colorValue, true))
DRCcd2c5d42011-08-11 11:18:34 +0000172 break;
DRCffe09d62011-08-17 02:27:59 +0000173 dx += dw;
DRCcd2c5d42011-08-11 11:18:34 +0000174 }
175
176 w_prev = dx - r.tl.x;
177 if (w_prev * (dy + dh - r.tl.y) > w_best * h_best) {
178 w_best = w_prev;
179 h_best = dy + dh - r.tl.y;
180 }
181 }
182
183 bestr.br.x = bestr.tl.x + w_best;
184 bestr.br.y = bestr.tl.y + h_best;
185}
186
DRCffe09d62011-08-17 02:27:59 +0000187void TightEncoder::extendSolidArea(const Rect& r, rdr::U32 colorValue,
188 Rect& er)
DRCcd2c5d42011-08-11 11:18:34 +0000189{
190 int cx, cy;
191 Rect sr;
192
193 // Try to extend the area upwards.
194 for (cy = er.tl.y - 1; ; cy--) {
195 sr.setXYWH(er.tl.x, cy, er.width(), 1);
DRCffe09d62011-08-17 02:27:59 +0000196 if (cy < r.tl.y || !checkSolidTile(sr, &colorValue, true))
DRCcd2c5d42011-08-11 11:18:34 +0000197 break;
198 }
199 er.tl.y = cy + 1;
200
201 // ... downwards.
202 for (cy = er.br.y; ; cy++) {
203 sr.setXYWH(er.tl.x, cy, er.width(), 1);
DRCffe09d62011-08-17 02:27:59 +0000204 if (cy >= r.br.y || !checkSolidTile(sr, &colorValue, true))
DRCcd2c5d42011-08-11 11:18:34 +0000205 break;
206 }
207 er.br.y = cy;
208
209 // ... to the left.
210 for (cx = er.tl.x - 1; ; cx--) {
211 sr.setXYWH(cx, er.tl.y, 1, er.height());
DRCffe09d62011-08-17 02:27:59 +0000212 if (cx < r.tl.x || !checkSolidTile(sr, &colorValue, true))
DRCcd2c5d42011-08-11 11:18:34 +0000213 break;
214 }
215 er.tl.x = cx + 1;
216
217 // ... to the right.
218 for (cx = er.br.x; ; cx++) {
219 sr.setXYWH(cx, er.tl.y, 1, er.height());
DRCffe09d62011-08-17 02:27:59 +0000220 if (cx >= r.br.x || !checkSolidTile(sr, &colorValue, true))
DRCcd2c5d42011-08-11 11:18:34 +0000221 break;
222 }
223 er.br.x = cx;
224}
225
Constantin Kaplinskya2adc8d2006-05-25 05:01:55 +0000226int TightEncoder::getNumRects(const Rect &r)
227{
DRCcd2c5d42011-08-11 11:18:34 +0000228 ConnParams* cp = writer->getConnParams();
Constantin Kaplinskya2adc8d2006-05-25 05:01:55 +0000229 const unsigned int w = r.width();
230 const unsigned int h = r.height();
231
DRCcd2c5d42011-08-11 11:18:34 +0000232 // If last rect. encoding is enabled, we can use the higher-performance
233 // code that pre-computes solid rectangles. In that case, we don't care
234 // about the rectangle count.
235 if (cp->supportsLastRect && w * h >= TIGHT_MIN_SPLIT_RECT_SIZE)
236 return 0;
237
Constantin Kaplinskya2adc8d2006-05-25 05:01:55 +0000238 // Will this rectangle split into subrects?
239 bool rectTooBig = w > pconf->maxRectWidth || w * h > pconf->maxRectSize;
240 if (!rectTooBig)
241 return 1;
242
243 // Compute max sub-rectangle size.
244 const unsigned int subrectMaxWidth =
245 (w > pconf->maxRectWidth) ? pconf->maxRectWidth : w;
246 const unsigned int subrectMaxHeight =
247 pconf->maxRectSize / subrectMaxWidth;
248
249 // Return the number of subrects.
250 return (((w - 1) / pconf->maxRectWidth + 1) *
251 ((h - 1) / subrectMaxHeight + 1));
252}
253
DRCffe09d62011-08-17 02:27:59 +0000254void TightEncoder::sendRectSimple(const Rect& r)
Constantin Kaplinskya2adc8d2006-05-25 05:01:55 +0000255{
256 // Shortcuts to rectangle coordinates and dimensions.
257 const int x = r.tl.x;
258 const int y = r.tl.y;
259 const unsigned int w = r.width();
260 const unsigned int h = r.height();
261
Constantin Kaplinskya2adc8d2006-05-25 05:01:55 +0000262 // Encode small rects as is.
263 bool rectTooBig = w > pconf->maxRectWidth || w * h > pconf->maxRectSize;
264 if (!rectTooBig) {
DRCffe09d62011-08-17 02:27:59 +0000265 writeSubrect(r);
DRCcd2c5d42011-08-11 11:18:34 +0000266 return;
Constantin Kaplinskya2adc8d2006-05-25 05:01:55 +0000267 }
268
269 // Compute max sub-rectangle size.
270 const unsigned int subrectMaxWidth =
271 (w > pconf->maxRectWidth) ? pconf->maxRectWidth : w;
272 const unsigned int subrectMaxHeight =
273 pconf->maxRectSize / subrectMaxWidth;
274
275 // Split big rects into separately encoded subrects.
276 Rect sr;
277 unsigned int dx, dy, sw, sh;
278 for (dy = 0; dy < h; dy += subrectMaxHeight) {
279 for (dx = 0; dx < w; dx += pconf->maxRectWidth) {
280 sw = (dx + pconf->maxRectWidth < w) ? pconf->maxRectWidth : w - dx;
281 sh = (dy + subrectMaxHeight < h) ? subrectMaxHeight : h - dy;
282 sr.setXYWH(x + dx, y + dy, sw, sh);
DRCffe09d62011-08-17 02:27:59 +0000283 writeSubrect(sr);
Constantin Kaplinskya2adc8d2006-05-25 05:01:55 +0000284 }
285 }
DRCcd2c5d42011-08-11 11:18:34 +0000286}
287
DRCffe09d62011-08-17 02:27:59 +0000288bool TightEncoder::writeRect(const Rect& _r, TransImageGetter* _ig,
289 Rect* actual)
DRCcd2c5d42011-08-11 11:18:34 +0000290{
DRCffe09d62011-08-17 02:27:59 +0000291 ig = _ig;
292 serverpf = ig->getPixelBuffer()->getPF();
DRCcd2c5d42011-08-11 11:18:34 +0000293 ConnParams* cp = writer->getConnParams();
DRCffe09d62011-08-17 02:27:59 +0000294 clientpf = cp->pf();
DRCcd2c5d42011-08-11 11:18:34 +0000295
296 // Shortcuts to rectangle coordinates and dimensions.
297 Rect r = _r;
298 int x = r.tl.x;
299 int y = r.tl.y;
DRCe3ffcf72011-08-19 03:11:32 +0000300 int w = r.width();
301 int h = r.height();
DRCcd2c5d42011-08-11 11:18:34 +0000302
DRCcd2c5d42011-08-11 11:18:34 +0000303 // Encode small rects as is.
304 if (!cp->supportsLastRect || w * h < TIGHT_MIN_SPLIT_RECT_SIZE) {
DRCffe09d62011-08-17 02:27:59 +0000305 sendRectSimple(r);
DRCcd2c5d42011-08-11 11:18:34 +0000306 return true;
307 }
308
309 // Split big rects into separately encoded subrects.
310 Rect sr, bestr;
DRCe3ffcf72011-08-19 03:11:32 +0000311 int dx, dy, dw, dh;
DRCcd2c5d42011-08-11 11:18:34 +0000312 rdr::U32 colorValue;
DRCffe09d62011-08-17 02:27:59 +0000313 int maxRectWidth = pconf->maxRectWidth;
DRCcd2c5d42011-08-11 11:18:34 +0000314 int nMaxWidth = (w > maxRectWidth) ? maxRectWidth : w;
DRCffe09d62011-08-17 02:27:59 +0000315 int nMaxRows = pconf->maxRectSize / nMaxWidth;
DRCcd2c5d42011-08-11 11:18:34 +0000316
317 // Try to find large solid-color areas and send them separately.
318 for (dy = y; dy < y + h; dy += TIGHT_MAX_SPLIT_TILE_SIZE) {
319
320 // If a rectangle becomes too large, send its upper part now.
321 if (dy - y >= nMaxRows) {
322 sr.setXYWH(x, y, w, nMaxRows);
DRCffe09d62011-08-17 02:27:59 +0000323 sendRectSimple(sr);
DRCcd2c5d42011-08-11 11:18:34 +0000324 r.tl.y += nMaxRows;
325 y = r.tl.y;
326 h = r.height();
327 }
328
329 dh = (dy + TIGHT_MAX_SPLIT_TILE_SIZE <= y + h) ?
330 TIGHT_MAX_SPLIT_TILE_SIZE : (y + h - dy);
331
332 for (dx = x; dx < x + w; dx += TIGHT_MAX_SPLIT_TILE_SIZE) {
333
334 dw = (dx + TIGHT_MAX_SPLIT_TILE_SIZE <= x + w) ?
335 TIGHT_MAX_SPLIT_TILE_SIZE : (x + w - dx);
336
337 sr.setXYWH(dx, dy, dw, dh);
DRCffe09d62011-08-17 02:27:59 +0000338 if (checkSolidTile(sr, &colorValue, false)) {
DRCcd2c5d42011-08-11 11:18:34 +0000339
Pierre Ossmanb948a912014-01-15 13:23:43 +0100340 if (jpegSubsampling == subsampleGray && jpegQuality != -1) {
DRCb4a83232011-08-19 04:57:18 +0000341 Colour rgb;
342 serverpf.rgbFromPixel(colorValue, NULL, &rgb);
343 rdr::U32 lum = ((257 * rgb.r) + (504 * rgb.g) + (98 * rgb.b)
344 + 16500) / 1000;
345 colorValue = lum + (lum << 8) + (lum << 16);
346 }
347
DRCcd2c5d42011-08-11 11:18:34 +0000348 // Get dimensions of solid-color area.
349 sr.setXYWH(dx, dy, r.br.x - dx, r.br.y - dy);
DRCffe09d62011-08-17 02:27:59 +0000350 findBestSolidArea(sr, colorValue, bestr);
DRCcd2c5d42011-08-11 11:18:34 +0000351
352 // Make sure a solid rectangle is large enough
353 // (or the whole rectangle is of the same color).
354 if (bestr.area() != r.area()
355 && bestr.area() < TIGHT_MIN_SOLID_SUBRECT_SIZE)
356 continue;
357
358 // Try to extend solid rectangle to maximum size.
DRCffe09d62011-08-17 02:27:59 +0000359 extendSolidArea(r, colorValue, bestr);
DRCcd2c5d42011-08-11 11:18:34 +0000360
361 // Send rectangles at top and left to solid-color area.
362 if (bestr.tl.y != y) {
363 sr.setXYWH(x, y, w, bestr.tl.y - y);
DRCffe09d62011-08-17 02:27:59 +0000364 sendRectSimple(sr);
DRCcd2c5d42011-08-11 11:18:34 +0000365 }
366 if (bestr.tl.x != x) {
367 sr.setXYWH(x, bestr.tl.y, bestr.tl.x - x, bestr.height());
DRCffe09d62011-08-17 02:27:59 +0000368 writeRect(sr, _ig, NULL);
DRCcd2c5d42011-08-11 11:18:34 +0000369 }
370
371 // Send solid-color rectangle.
DRCffe09d62011-08-17 02:27:59 +0000372 writeSubrect(bestr, true);
DRCcd2c5d42011-08-11 11:18:34 +0000373
374 // Send remaining rectangles (at right and bottom).
375 if (bestr.br.x != r.br.x) {
376 sr.setXYWH(bestr.br.x, bestr.tl.y, r.br.x - bestr.br.x,
377 bestr.height());
DRCffe09d62011-08-17 02:27:59 +0000378 writeRect(sr, _ig, NULL);
DRCcd2c5d42011-08-11 11:18:34 +0000379 }
380 if (bestr.br.y != r.br.y) {
381 sr.setXYWH(x, bestr.br.y, w, r.br.y - bestr.br.y);
DRCffe09d62011-08-17 02:27:59 +0000382 writeRect(sr, _ig, NULL);
DRCcd2c5d42011-08-11 11:18:34 +0000383 }
384
385 return true;
386 }
387 }
388 }
389
390 // No suitable solid-color rectangles found.
DRCffe09d62011-08-17 02:27:59 +0000391 sendRectSimple(r);
Constantin Kaplinskya2adc8d2006-05-25 05:01:55 +0000392 return true;
393}
394
DRCffe09d62011-08-17 02:27:59 +0000395void TightEncoder::writeSubrect(const Rect& r, bool forceSolid)
Constantin Kaplinskya2adc8d2006-05-25 05:01:55 +0000396{
Constantin Kaplinskya2adc8d2006-05-25 05:01:55 +0000397 mos.clear();
398
DRCffe09d62011-08-17 02:27:59 +0000399 switch (clientpf.bpp) {
Constantin Kaplinskya2adc8d2006-05-25 05:01:55 +0000400 case 8:
DRCffe09d62011-08-17 02:27:59 +0000401 tightEncode8(r, &mos, forceSolid); break;
Constantin Kaplinskya2adc8d2006-05-25 05:01:55 +0000402 case 16:
DRCffe09d62011-08-17 02:27:59 +0000403 tightEncode16(r, &mos, forceSolid); break;
Constantin Kaplinskya2adc8d2006-05-25 05:01:55 +0000404 case 32:
DRCffe09d62011-08-17 02:27:59 +0000405 tightEncode32(r, &mos, forceSolid); break;
Constantin Kaplinskya2adc8d2006-05-25 05:01:55 +0000406 }
407
408 writer->startRect(r, encodingTight);
409 rdr::OutStream* os = writer->getOutStream();
410 os->writeBytes(mos.data(), mos.length());
411 writer->endRect();
412}