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Comparing rxvt-unicode/src/rxvtimg.C (file contents):
Revision 1.56 by root, Thu Jun 7 20:31:26 2012 UTC vs.
Revision 1.109 by sf-exg, Sat Jul 15 08:16:31 2017 UTC

1/*----------------------------------------------------------------------*
2 * File: rxvtimg.C
3 *----------------------------------------------------------------------*
4 *
5 * All portions of code are copyright by their respective author/s.
6 * Copyright (c) 2012 Marc Lehmann <schmorp@schmorp.de>
7 * Copyright (c) 2012 Emanuele Giaquinta <e.giaquinta@glauco.it>
8 *
9 * This program is free software; you can redistribute it and/or modify
10 * it under the terms of the GNU General Public License as published by
11 * the Free Software Foundation; either version 3 of the License, or
12 * (at your option) any later version.
13 *
14 * This program is distributed in the hope that it will be useful,
15 * but WITHOUT ANY WARRANTY; without even the implied warranty of
16 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
17 * GNU General Public License for more details.
18 *
19 * You should have received a copy of the GNU General Public License
20 * along with this program; if not, write to the Free Software
21 * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
22 *---------------------------------------------------------------------*/
23
24#include <string.h>
1#include <math.h> 25#include <math.h>
2#include "../config.h" 26#include "../config.h"
3#include "rxvt.h" 27#include "rxvt.h"
4 28
5#if HAVE_IMG 29#if HAVE_IMG
6 30
31typedef rxvt_img::nv nv;
32
33namespace
34{
35 struct mat3x3
36 {
37 nv v[3][3];
38
39 mat3x3 ()
40 {
41 }
42
43 mat3x3 (const nv *matrix)
44 {
45 memcpy (v, matrix, sizeof (v));
46 }
47
48 mat3x3 (nv v11, nv v12, nv v13, nv v21, nv v22, nv v23, nv v31, nv v32, nv v33)
49 {
50 v[0][0] = v11; v[0][1] = v12; v[0][2] = v13;
51 v[1][0] = v21; v[1][1] = v22; v[1][2] = v23;
52 v[2][0] = v31; v[2][1] = v32; v[2][2] = v33;
53 }
54
55 mat3x3 inverse ();
56
57 nv *operator [](int i) { return &v[i][0]; }
58 const nv *operator [](int i) const { return &v[i][0]; }
59
60 operator const nv * () const { return &v[0][0]; }
61 operator nv * () { return &v[0][0]; }
62
63 // quite inefficient, hopefully gcc pulls the w calc out of any loops
64 nv apply1 (int i, nv x, nv y)
65 {
66 mat3x3 &m = *this;
67
68 nv v = m[i][0] * x + m[i][1] * y + m[i][2];
69 nv w = m[2][0] * x + m[2][1] * y + m[2][2];
70
71 return v * (1. / w);
72 }
73
74 static mat3x3 translate (nv x, nv y);
75 static mat3x3 scale (nv s, nv t);
76 static mat3x3 rotate (nv phi);
77 };
78
79 mat3x3
80 mat3x3::inverse ()
81 {
82 mat3x3 &m = *this;
83 mat3x3 inv;
84
85 nv s0 = m[2][2] * m[1][1] - m[2][1] * m[1][2];
86 nv s1 = m[2][1] * m[0][2] - m[2][2] * m[0][1];
87 nv s2 = m[1][2] * m[0][1] - m[1][1] * m[0][2];
88
89 nv invdet = 1. / (m[0][0] * s0 + m[1][0] * s1 + m[2][0] * s2);
90
91 inv[0][0] = invdet * s0;
92 inv[0][1] = invdet * s1;
93 inv[0][2] = invdet * s2;
94
95 inv[1][0] = invdet * (m[2][0] * m[1][2] - m[2][2] * m[1][0]);
96 inv[1][1] = invdet * (m[2][2] * m[0][0] - m[2][0] * m[0][2]);
97 inv[1][2] = invdet * (m[1][0] * m[0][2] - m[1][2] * m[0][0]);
98
99 inv[2][0] = invdet * (m[2][1] * m[1][0] - m[2][0] * m[1][1]);
100 inv[2][1] = invdet * (m[2][0] * m[0][1] - m[2][1] * m[0][0]);
101 inv[2][2] = invdet * (m[1][1] * m[0][0] - m[1][0] * m[0][1]);
102
103 return inv;
104 }
105
106 static mat3x3
107 operator *(const mat3x3 &a, const mat3x3 &b)
108 {
109 mat3x3 r;
110
111 for (int i = 0; i < 3; ++i)
112 for (int j = 0; j < 3; ++j)
113 r[i][j] = a[i][0] * b[0][j]
114 + a[i][1] * b[1][j]
115 + a[i][2] * b[2][j];
116
117 return r;
118 }
119
120 mat3x3
121 mat3x3::translate (nv x, nv y)
122 {
123 return mat3x3 (
124 1, 0, x,
125 0, 1, y,
126 0, 0, 1
127 );
128 }
129
130 mat3x3
131 mat3x3::scale (nv s, nv t)
132 {
133 return mat3x3 (
134 s, 0, 0,
135 0, t, 0,
136 0, 0, 1
137 );
138 }
139
140 // clockwise
141 mat3x3
142 mat3x3::rotate (nv phi)
143 {
144 nv s = sin (phi);
145 nv c = cos (phi);
146
147 return mat3x3 (
148 c, -s, 0,
149 s, c, 0,
150 0, 0, 1
151 );
152 }
153
154 struct composer
155 {
156 rxvt_img *srcimg, *dstimg;
157 Picture src, dst, msk;
158 Display *dpy;
159
160 ecb_noinline
161 composer (rxvt_img *srcimg, rxvt_img *dstimg = 0)
162 : srcimg (srcimg), dstimg (dstimg), msk (0)
163 {
164 if (!this->dstimg)
165 this->dstimg = srcimg->new_empty ();
166 else if (!this->dstimg->pm) // somewhat unsatisfying
167 this->dstimg->alloc ();
168
169 dpy = srcimg->d->dpy;
170 src = srcimg->picture ();
171 dst = this->dstimg->picture ();
172 }
173
174 ecb_noinline
175 void mask (bool rgb = true, int w = 1, int h = 1)
176 {
177 Pixmap pixmap = XCreatePixmap (dpy, srcimg->pm, w, h, rgb ? 32 : 8);
178
179 XRenderPictFormat *format = XRenderFindStandardFormat (dpy, rgb ? PictStandardARGB32 : PictStandardA8);
180 XRenderPictureAttributes pa;
181 pa.repeat = RepeatNormal;
182 pa.component_alpha = rgb;
183 msk = XRenderCreatePicture (dpy, pixmap, format, CPRepeat | CPComponentAlpha, &pa);
184
185 XFreePixmap (dpy, pixmap);
186
187 ecb_assume (msk);
188 }
189
190 // CreateSolidFill creates a very very very weird picture
191 void mask (const rgba &c)
192 {
193 // the casts are needed in C++11 (see 8.5.1)
194 XRenderColor rc = {
195 (unsigned short)(c.r * c.a / 65535),
196 (unsigned short)(c.g * c.a / 65535),
197 (unsigned short)(c.b * c.a / 65535),
198 c.a
199 };
200 msk = XRenderCreateSolidFill (dpy, &rc);
201 ecb_assume (msk);
202 }
203
204 void fill (const rgba &c)
205 {
206 XRenderColor rc = {
207 (unsigned short)(c.r * c.a / 65535),
208 (unsigned short)(c.g * c.a / 65535),
209 (unsigned short)(c.b * c.a / 65535),
210 c.a
211 };
212
213 XRenderFillRectangle (dpy, PictOpSrc, msk, &rc, 0, 0, 1, 1);
214 }
215
216 operator rxvt_img *()
217 {
218 return dstimg;
219 }
220
221 ecb_noinline
222 ~composer ()
223 {
224 XRenderFreePicture (dpy, src);
225 XRenderFreePicture (dpy, dst);
226 if (msk) XRenderFreePicture (dpy, msk);
227 }
228 };
229}
230
231static XRenderPictFormat *
232find_alpha_format_for (Display *dpy, XRenderPictFormat *format)
233{
234 if (format->direct.alphaMask)
235 return format; // already has alpha
236
237 // try to find a suitable alpha format, one bit alpha is enough for our purposes
238 if (format->type == PictTypeDirect)
239 for (int n = 0; XRenderPictFormat *f = XRenderFindFormat (dpy, 0, 0, n); ++n)
240 if (f->direct.alphaMask
241 && f->type == PictTypeDirect
242 && ecb_popcount32 (f->direct.redMask ) >= ecb_popcount32 (format->direct.redMask )
243 && ecb_popcount32 (f->direct.greenMask) >= ecb_popcount32 (format->direct.greenMask)
244 && ecb_popcount32 (f->direct.blueMask ) >= ecb_popcount32 (format->direct.blueMask ))
245 return f;
246
247 // should be a very good fallback
248 return XRenderFindStandardFormat (dpy, PictStandardARGB32);
249}
250
7rxvt_img::rxvt_img (rxvt_screen *screen, XRenderPictFormat *format, int x, int y, int width, int height, int repeat) 251rxvt_img::rxvt_img (rxvt_screen *screen, XRenderPictFormat *format, int x, int y, int width, int height, int repeat)
8: s(screen), x(x), y(y), w(width), h(height), format(format), repeat(repeat), 252: d(screen->display), x(x), y(y), w(width), h(height), format(format), repeat(repeat),
9 pm(0), ref(0) 253 pm(0), ref(0)
10{ 254{
11} 255}
12 256
257rxvt_img::rxvt_img (rxvt_display *display, XRenderPictFormat *format, int x, int y, int width, int height, int repeat)
258: d(display), x(x), y(y), w(width), h(height), format(format), repeat(repeat),
259 pm(0), ref(0)
260{
261}
262
13rxvt_img::rxvt_img (const rxvt_img &img) 263rxvt_img::rxvt_img (const rxvt_img &img)
14: s(img.s), x(img.x), y(img.y), w(img.w), h(img.h), format(img.format), repeat(img.repeat), pm(img.pm), ref(img.ref) 264: d(img.d), x(img.x), y(img.y), w(img.w), h(img.h), format(img.format), repeat(img.repeat), pm(img.pm), ref(img.ref)
15{ 265{
16 ++ref->cnt; 266 ++ref->cnt;
17} 267}
18 268
19#if 0
20rxvt_img::rxvt_img (rxvt_screen *screen, XRenderPictFormat *format, int width, int height, Pixmap pixmap)
21: s(screen), x(0), y(0), w(width), h(height), format(format), repeat(RepeatNormal), shared(false), pm(pixmap)
22{
23}
24#endif
25
26rxvt_img * 269rxvt_img *
27rxvt_img::new_from_root (rxvt_screen *s) 270rxvt_img::new_from_root (rxvt_screen *s)
28{ 271{
29 Display *dpy = s->display->dpy; 272 Display *dpy = s->dpy;
30 unsigned int root_pm_w, root_pm_h; 273 unsigned int root_pm_w, root_pm_h;
31 Pixmap root_pixmap = s->display->get_pixmap_property (s->display->xa[XA_XROOTPMAP_ID]); 274 Pixmap root_pixmap = s->display->get_pixmap_property (s->display->xa [XA_XROOTPMAP_ID]);
32 if (root_pixmap == None) 275 if (root_pixmap == None)
33 root_pixmap = s->display->get_pixmap_property (s->display->xa[XA_ESETROOT_PMAP_ID]); 276 root_pixmap = s->display->get_pixmap_property (s->display->xa [XA_ESETROOT_PMAP_ID]);
34 277
35 if (root_pixmap == None) 278 if (root_pixmap == None)
36 return 0; 279 return 0;
37 280
38 Window wdummy; 281 Window wdummy;
56 img->ref->ours = false; 299 img->ref->ours = false;
57 300
58 return img; 301 return img;
59} 302}
60 303
304# if HAVE_PIXBUF
305
61rxvt_img * 306rxvt_img *
62rxvt_img::new_from_pixbuf (rxvt_screen *s, GdkPixbuf *pb) 307rxvt_img::new_from_pixbuf (rxvt_screen *s, GdkPixbuf *pb)
63{ 308{
64 Display *dpy = s->display->dpy; 309 Display *dpy = s->dpy;
65 310
66 int width = gdk_pixbuf_get_width (pb); 311 int width = gdk_pixbuf_get_width (pb);
67 int height = gdk_pixbuf_get_height (pb); 312 int height = gdk_pixbuf_get_height (pb);
68 313
69 if (width > 32767 || height > 32767) // well, we *could* upload in chunks 314 if (width > 32767 || height > 32767) // well, we *could* upload in chunks
70 rxvt_fatal ("rxvt_img::new_from_pixbuf: image too big (maximum size 32768x32768).\n"); 315 rxvt_fatal ("rxvt_img::new_from_pixbuf: image too big (maximum size 32768x32768).\n");
71 316
72 // since we require rgb24/argb32 formats from xrender we assume 317 // since we require rgb24/argb32 formats from xrender we assume
73 // that both 24 and 32 bpp MUST be supported by any screen that supports xrender 318 // that both 24 and 32 bpp MUST be supported by any screen that supports xrender
74 int depth = gdk_pixbuf_get_has_alpha (pb) ? 32 : 24;
75 319
76 int byte_order = ecb_big_endian () ? MSBFirst : LSBFirst; 320 int byte_order = ecb_big_endian () ? MSBFirst : LSBFirst;
77 321
78 XImage xi; 322 XImage xi;
79 323
83 xi.format = ZPixmap; 327 xi.format = ZPixmap;
84 xi.byte_order = ImageByteOrder (dpy); 328 xi.byte_order = ImageByteOrder (dpy);
85 xi.bitmap_unit = 0; //XY only, unused 329 xi.bitmap_unit = 0; //XY only, unused
86 xi.bitmap_bit_order = 0; //XY only, unused 330 xi.bitmap_bit_order = 0; //XY only, unused
87 xi.bitmap_pad = BitmapPad (dpy); 331 xi.bitmap_pad = BitmapPad (dpy);
88 xi.depth = depth; 332 xi.depth = 32;
89 xi.bytes_per_line = 0; 333 xi.bytes_per_line = 0;
90 xi.bits_per_pixel = 32; //Z only 334 xi.bits_per_pixel = 32; //Z only
91 xi.red_mask = 0x00000000; //Z only, unused 335 xi.red_mask = 0x00000000; //Z only, unused
92 xi.green_mask = 0x00000000; //Z only, unused 336 xi.green_mask = 0x00000000; //Z only, unused
93 xi.blue_mask = 0x00000000; //Z only, unused 337 xi.blue_mask = 0x00000000; //Z only, unused
102 rxvt_fatal ("rxvt_img::new_from_pixbuf: image too big for Xlib.\n"); 346 rxvt_fatal ("rxvt_img::new_from_pixbuf: image too big for Xlib.\n");
103 347
104 xi.data = (char *)rxvt_malloc (height * xi.bytes_per_line); 348 xi.data = (char *)rxvt_malloc (height * xi.bytes_per_line);
105 349
106 int rowstride = gdk_pixbuf_get_rowstride (pb); 350 int rowstride = gdk_pixbuf_get_rowstride (pb);
107 351 bool pb_has_alpha = gdk_pixbuf_get_has_alpha (pb);
108 assert (3 + (depth == 32) == gdk_pixbuf_get_n_channels (pb));
109 unsigned char *row = gdk_pixbuf_get_pixels (pb); 352 unsigned char *row = gdk_pixbuf_get_pixels (pb);
353
110 char *line = xi.data; 354 char *line = xi.data;
111 355
112 for (int y = 0; y < height; y++) 356 for (int y = 0; y < height; y++)
113 { 357 {
114 unsigned char *src = row; 358 unsigned char *src = row;
115 uint32_t *dst = (uint32_t *)line; 359 uint32_t *dst = (uint32_t *)line;
116 360
117 if (depth == 24)
118 for (int x = 0; x < width; x++) 361 for (int x = 0; x < width; x++)
119 { 362 {
120 uint8_t r = *src++; 363 uint8_t r = *src++;
121 uint8_t g = *src++; 364 uint8_t g = *src++;
122 uint8_t b = *src++; 365 uint8_t b = *src++;
366 uint8_t a = *src;
123 367
368 // this is done so it can be jump-free, but newer gcc's clone inner the loop
369 a = pb_has_alpha ? a : 255;
370 src += pb_has_alpha;
371
372 r = (r * a + 127) / 255;
373 g = (g * a + 127) / 255;
374 b = (b * a + 127) / 255;
375
124 uint32_t v = (r << 16) | (g << 8) | b; 376 uint32_t v = (a << 24) | (r << 16) | (g << 8) | b;
125 377
126 if (ecb_big_endian () ? !byte_order_mismatch : byte_order_mismatch) 378 if (ecb_big_endian () ? !byte_order_mismatch : byte_order_mismatch)
127 v = ecb_bswap32 (v); 379 v = ecb_bswap32 (v);
128 380
129 *dst++ = v; 381 *dst++ = v;
130 } 382 }
131 else
132 for (int x = 0; x < width; x++)
133 {
134 uint32_t v = *(uint32_t *)src; src += 4;
135
136 if (ecb_little_endian ())
137 v = ecb_bswap32 (v);
138
139 v = ecb_rotr32 (v, 8);
140
141 if (byte_order_mismatch)
142 v = ecb_bswap32 (v);
143
144 *dst++ = v;
145 }
146 383
147 row += rowstride; 384 row += rowstride;
148 line += xi.bytes_per_line; 385 line += xi.bytes_per_line;
149 } 386 }
150 387
151 rxvt_img *img = new rxvt_img (s, XRenderFindStandardFormat (dpy, depth == 24 ? PictStandardRGB24 : PictStandardARGB32), 0, 0, width, height); 388 rxvt_img *img = new rxvt_img (s, XRenderFindStandardFormat (dpy, PictStandardARGB32), 0, 0, width, height);
152 img->alloc (); 389 img->alloc ();
153 390
154 GC gc = XCreateGC (dpy, img->pm, 0, 0); 391 GC gc = XCreateGC (dpy, img->pm, 0, 0);
155 XPutImage (dpy, img->pm, gc, &xi, 0, 0, 0, 0, width, height); 392 XPutImage (dpy, img->pm, gc, &xi, 0, 0, 0, 0, width, height);
156 XFreeGC (dpy, gc); 393 XFreeGC (dpy, gc);
174 g_object_unref (pb); 411 g_object_unref (pb);
175 412
176 return img; 413 return img;
177} 414}
178 415
416# endif
417
179void 418void
180rxvt_img::destroy () 419rxvt_img::destroy ()
181{ 420{
182 if (--ref->cnt) 421 if (--ref->cnt)
183 return; 422 return;
184 423
185 if (pm && ref->ours) 424 if (pm && ref->ours)
186 XFreePixmap (s->display->dpy, pm); 425 XFreePixmap (d->dpy, pm);
187 426
188 delete ref; 427 delete ref;
189} 428}
190 429
191rxvt_img::~rxvt_img () 430rxvt_img::~rxvt_img ()
194} 433}
195 434
196void 435void
197rxvt_img::alloc () 436rxvt_img::alloc ()
198{ 437{
199 pm = XCreatePixmap (s->display->dpy, s->display->root, w, h, format->depth); 438 pm = XCreatePixmap (d->dpy, d->root, w, h, format->depth);
200 ref = new pixref (w, h); 439 ref = new pixref (w, h);
201} 440}
202 441
442rxvt_img *
443rxvt_img::new_empty ()
444{
445 rxvt_img *img = new rxvt_img (d, format, x, y, w, h, repeat);
446 img->alloc ();
447
448 return img;
449}
450
203Picture 451Picture
204rxvt_img::src_picture () 452rxvt_img::picture ()
205{ 453{
206 Display *dpy = s->display->dpy; 454 Display *dpy = d->dpy;
207 455
208 XRenderPictureAttributes pa; 456 XRenderPictureAttributes pa;
209 pa.repeat = repeat; 457 pa.repeat = repeat;
210 Picture pic = XRenderCreatePicture (dpy, pm, format, CPRepeat, &pa); 458 Picture pic = XRenderCreatePicture (dpy, pm, format, CPRepeat, &pa);
211 459
216rxvt_img::unshare () 464rxvt_img::unshare ()
217{ 465{
218 if (ref->cnt == 1 && ref->ours) 466 if (ref->cnt == 1 && ref->ours)
219 return; 467 return;
220 468
221 //TODO: maybe should reify instead
222 Pixmap pm2 = XCreatePixmap (s->display->dpy, s->display->root, ref->w, ref->h, format->depth); 469 Pixmap pm2 = XCreatePixmap (d->dpy, d->root, ref->w, ref->h, format->depth);
223 GC gc = XCreateGC (s->display->dpy, pm, 0, 0); 470 GC gc = XCreateGC (d->dpy, pm, 0, 0);
224 XCopyArea (s->display->dpy, pm, pm2, gc, 0, 0, ref->w, ref->h, 0, 0); 471 XCopyArea (d->dpy, pm, pm2, gc, 0, 0, ref->w, ref->h, 0, 0);
225 XFreeGC (s->display->dpy, gc); 472 XFreeGC (d->dpy, gc);
226 473
227 destroy (); 474 destroy ();
228 475
229 pm = pm2; 476 pm = pm2;
230 ref = new pixref (ref->w, ref->h); 477 ref = new pixref (ref->w, ref->h);
231} 478}
232 479
233void 480void
481rxvt_img::fill (const rgba &c, int x, int y, int w, int h)
482{
483 XRenderColor rc = { c.r, c.g, c.b, c.a };
484
485 Display *dpy = d->dpy;
486 Picture src = picture ();
487 XRenderFillRectangle (dpy, PictOpSrc, src, &rc, x, y, w, h);
488 XRenderFreePicture (dpy, src);
489}
490
491void
234rxvt_img::fill (const rxvt_color &c) 492rxvt_img::fill (const rgba &c)
235{ 493{
236 XGCValues gcv; 494 fill (c, 0, 0, w, h);
237 gcv.foreground = c; 495}
238 GC gc = XCreateGC (s->display->dpy, pm, GCForeground, &gcv); 496
239 XFillRectangle (s->display->dpy, pm, gc, 0, 0, w, h); 497void
240 XFreeGC (s->display->dpy, gc); 498rxvt_img::add_alpha ()
499{
500 if (format->direct.alphaMask)
501 return;
502
503 composer cc (this, new rxvt_img (d, find_alpha_format_for (d->dpy, format), x, y, w, h, repeat));
504
505 XRenderComposite (cc.dpy, PictOpSrc, cc.src, None, cc.dst, 0, 0, 0, 0, 0, 0, w, h);
506
507 rxvt_img *img = cc;
508
509 ::swap (img->ref, ref);
510 ::swap (img->pm , pm );
511
512 delete img;
241} 513}
242 514
243static void 515static void
244get_gaussian_kernel (int radius, int width, double *kernel, XFixed *params) 516get_gaussian_kernel (int radius, int width, nv *kernel, XFixed *params)
245{ 517{
246 double sigma = radius / 2.0; 518 nv sigma = radius / 2.0;
247 double scale = sqrt (2.0 * M_PI) * sigma; 519 nv scale = sqrt (2.0 * M_PI) * sigma;
248 double sum = 0.0; 520 nv sum = 0.0;
249 521
250 for (int i = 0; i < width; i++) 522 for (int i = 0; i < width; i++)
251 { 523 {
252 double x = i - width / 2; 524 nv x = i - width / 2;
253 kernel[i] = exp (-(x * x) / (2.0 * sigma * sigma)) / scale; 525 kernel[i] = exp (-(x * x) / (2.0 * sigma * sigma)) / scale;
254 sum += kernel[i]; 526 sum += kernel[i];
255 } 527 }
256 528
257 params[0] = XDoubleToFixed (width); 529 params[0] = XDoubleToFixed (width);
262} 534}
263 535
264rxvt_img * 536rxvt_img *
265rxvt_img::blur (int rh, int rv) 537rxvt_img::blur (int rh, int rv)
266{ 538{
267 if (!(s->display->flags & DISPLAY_HAS_RENDER_CONV)) 539 if (!(d->flags & DISPLAY_HAS_RENDER_CONV))
268 return clone (); 540 return clone ();
269 541
270 Display *dpy = s->display->dpy; 542 Display *dpy = d->dpy;
271 int size = max (rh, rv) * 2 + 1; 543 int size = max (rh, rv) * 2 + 1;
272 double *kernel = (double *)malloc (size * sizeof (double)); 544 nv *kernel = (nv *)malloc (size * sizeof (nv));
273 XFixed *params = (XFixed *)malloc ((size + 2) * sizeof (XFixed)); 545 XFixed *params = rxvt_temp_buf<XFixed> (size + 2);
274 rxvt_img *img = new rxvt_img (s, format, x, y, w, h, repeat); 546 rxvt_img *img = new_empty ();
275 img->alloc ();
276
277 Picture src = src_picture ();
278 547
279 XRenderPictureAttributes pa; 548 XRenderPictureAttributes pa;
280 pa.repeat = RepeatPad; 549 pa.repeat = RepeatPad;
281 Picture dst = XRenderCreatePicture (dpy, img->pm, format, CPRepeat, &pa); 550 Picture src = XRenderCreatePicture (dpy, pm, format, CPRepeat, &pa);
551 Picture dst = XRenderCreatePicture (dpy, img->pm, format, 0, 0);
282 552
283 Pixmap tmp_pm = XCreatePixmap (dpy, pm, w, h, format->depth); 553 Pixmap tmp_pm = XCreatePixmap (dpy, pm, w, h, format->depth);
284 Picture tmp = XRenderCreatePicture (dpy, tmp_pm , format, CPRepeat, &pa); 554 Picture tmp = XRenderCreatePicture (dpy, tmp_pm , format, CPRepeat, &pa);
285 XFreePixmap (dpy, tmp_pm); 555 XFreePixmap (dpy, tmp_pm);
286 556
302 572
303 size = rv * 2 + 1; 573 size = rv * 2 + 1;
304 get_gaussian_kernel (rv, size, kernel, params); 574 get_gaussian_kernel (rv, size, kernel, params);
305 ::swap (params[0], params[1]); 575 ::swap (params[0], params[1]);
306 576
307 XRenderSetPictureFilter (dpy, src, FilterConvolution, params, size+2); 577 XRenderSetPictureFilter (dpy, tmp, FilterConvolution, params, size+2);
308 XRenderComposite (dpy, 578 XRenderComposite (dpy,
309 PictOpSrc, 579 PictOpSrc,
310 tmp, 580 tmp,
311 None, 581 None,
312 dst, 582 dst,
315 0, 0, 585 0, 0,
316 w, h); 586 w, h);
317 } 587 }
318 588
319 free (kernel); 589 free (kernel);
320 free (params); 590
321 XRenderFreePicture (dpy, src); 591 XRenderFreePicture (dpy, src);
322 XRenderFreePicture (dpy, dst); 592 XRenderFreePicture (dpy, dst);
323 XRenderFreePicture (dpy, tmp); 593 XRenderFreePicture (dpy, tmp);
324 594
325 return img; 595 return img;
326} 596}
327 597
328static Picture 598rxvt_img *
329create_xrender_mask (Display *dpy, Drawable drawable, Bool argb) 599rxvt_img::muladd (nv mul, nv add)
330{ 600{
331 Pixmap pixmap = XCreatePixmap (dpy, drawable, 1, 1, argb ? 32 : 8); 601 // STEP 1: double the image width, fill all odd columns with white (==1)
332 602
333 XRenderPictFormat *format = XRenderFindStandardFormat (dpy, argb ? PictStandardARGB32 : PictStandardA8); 603 composer cc (this, new rxvt_img (d, format, 0, 0, w * 2, h, repeat));
334 XRenderPictureAttributes pa;
335 pa.repeat = True;
336 Picture mask = XRenderCreatePicture (dpy, pixmap, format, CPRepeat, &pa);
337 604
338 XFreePixmap (dpy, pixmap); 605 // why the hell does XRenderSetPictureTransform want a writable matrix :(
606 // that keeps us from just static const'ing this matrix.
607 XTransform h_double = {
608 0x08000, 0, 0,
609 0, 0x10000, 0,
610 0, 0, 0x10000
611 };
339 612
340 return mask; 613 XRenderSetPictureFilter (cc.dpy, cc.src, "nearest", 0, 0);
614 XRenderSetPictureTransform (cc.dpy, cc.src, &h_double);
615 XRenderComposite (cc.dpy, PictOpSrc, cc.src, None, cc.dst, 0, 0, 0, 0, 0, 0, w * 2, h);
616
617 cc.mask (false, 2, 1);
618
619 static const XRenderColor c0 = { 0, 0, 0, 0 };
620 XRenderFillRectangle (cc.dpy, PictOpSrc, cc.msk, &c0, 0, 0, 1, 1);
621 static const XRenderColor c1 = { 65535, 65535, 65535, 65535 };
622 XRenderFillRectangle (cc.dpy, PictOpSrc, cc.msk, &c1, 1, 0, 1, 1);
623
624 Picture white = XRenderCreateSolidFill (cc.dpy, &c1);
625
626 XRenderComposite (cc.dpy, PictOpOver, white, cc.msk, cc.dst, 0, 0, 0, 0, 0, 0, w * 2, h);
627
628 XRenderFreePicture (cc.dpy, white);
629
630 // STEP 2: convolve the image with a 3x1 filter
631 // a 2x1 filter would obviously suffice, but given the total lack of specification
632 // for xrender, I expect different xrender implementations to randomly diverge.
633 // we also halve the image, and hope for the best (again, for lack of specs).
634 composer cc2 (cc.dstimg);
635
636 XFixed kernel [] = {
637 XDoubleToFixed (3), XDoubleToFixed (1),
638 XDoubleToFixed (0), XDoubleToFixed (mul), XDoubleToFixed (add)
639 };
640
641 XTransform h_halve = {
642 0x20000, 0, 0,
643 0, 0x10000, 0,
644 0, 0, 0x10000
645 };
646
647 XRenderSetPictureFilter (cc.dpy, cc2.src, "nearest", 0, 0);
648 XRenderSetPictureTransform (cc.dpy, cc2.src, &h_halve);
649 XRenderSetPictureFilter (cc.dpy, cc2.src, FilterConvolution, kernel, ecb_array_length (kernel));
650
651 XRenderComposite (cc.dpy, PictOpSrc, cc2.src, None, cc2.dst, 0, 0, 0, 0, 0, 0, w * 2, h);
652
653 return cc2;
654}
655
656ecb_noinline static void
657extract (int32_t cl0, int32_t cl1, int32_t &c, unsigned short &xc)
658{
659 int32_t x = clamp (c, cl0, cl1);
660 c -= x;
661 xc = x;
662}
663
664ecb_noinline static bool
665extract (int32_t cl0, int32_t cl1, int32_t &r, int32_t &g, int32_t &b, int32_t &a, unsigned short &xr, unsigned short &xg, unsigned short &xb, unsigned short &xa)
666{
667 extract (cl0, cl1, r, xr);
668 extract (cl0, cl1, g, xg);
669 extract (cl0, cl1, b, xb);
670 extract (cl0, cl1, a, xa);
671
672 return xr | xg | xb | xa;
341} 673}
342 674
343void 675void
344rxvt_img::brightness (unsigned short r, unsigned short g, unsigned short b, unsigned short a) 676rxvt_img::brightness (int32_t r, int32_t g, int32_t b, int32_t a)
345{ 677{
678 unshare ();
679
346 Display *dpy = s->display->dpy; 680 Display *dpy = d->dpy;
347 Picture src = create_xrender_mask (dpy, pm, True);
348 Picture dst = XRenderCreatePicture (dpy, pm, format, 0, 0); 681 Picture dst = XRenderCreatePicture (dpy, pm, format, 0, 0);
349 682
683 // loop should not be needed for brightness, as only -1..1 makes sense
684 //while (r | g | b | a)
685 {
686 unsigned short xr, xg, xb, xa;
350 XRenderColor mask_c; 687 XRenderColor mask_c;
351 mask_c.red = r; 688
352 mask_c.green = g; 689 if (extract (0, 65535, r, g, b, a, mask_c.red, mask_c.green, mask_c.blue, mask_c.alpha))
353 mask_c.blue = b;
354 mask_c.alpha = a;
355 XRenderFillRectangle (dpy, PictOpSrc, src, &mask_c, 0, 0, 1, 1); 690 XRenderFillRectangle (dpy, PictOpAdd, dst, &mask_c, 0, 0, w, h);
356 691
357 XRenderComposite (dpy, PictOpAdd, src, None, dst, 0, 0, 0, 0, 0, 0, w, h); 692 if (extract (-65535, 0, r, g, b, a, mask_c.red, mask_c.green, mask_c.blue, mask_c.alpha))
693 {
694 XRenderColor mask_w = { 65535, 65535, 65535, 65535 };
695 XRenderFillRectangle (dpy, PictOpDifference, dst, &mask_w, 0, 0, w, h);
696 mask_c.red = -mask_c.red; //TODO: verify that doing clamp, assign, and negation does the right thing
697 mask_c.green = -mask_c.green;
698 mask_c.blue = -mask_c.blue;
699 mask_c.alpha = -mask_c.alpha;
700 XRenderFillRectangle (dpy, PictOpAdd, dst, &mask_c, 0, 0, w, h);
701 XRenderFillRectangle (dpy, PictOpDifference, dst, &mask_w, 0, 0, w, h);
702 }
703 }
358 704
359 XRenderFreePicture (dpy, src);
360 XRenderFreePicture (dpy, dst); 705 XRenderFreePicture (dpy, dst);
361} 706}
362 707
363void 708void
364rxvt_img::contrast (unsigned short r, unsigned short g, unsigned short b, unsigned short a) 709rxvt_img::contrast (int32_t r, int32_t g, int32_t b, int32_t a)
365{ 710{
366 if (!(s->display->flags & DISPLAY_HAS_RENDER_MUL)) 711 if (r < 0 || g < 0 || b < 0 || a < 0)
367 return; 712 rxvt_fatal ("rxvt_img::contrast does not support negative values.\n");
368 713
369 Display *dpy = s->display->dpy; 714 // premultiply (yeah, these are not exact, sue me or fix it)
370 Picture src = create_xrender_mask (dpy, pm, True); 715 r = (r * (a >> 8)) >> 8;
371 Picture dst = XRenderCreatePicture (dpy, pm, format, 0, 0); 716 g = (g * (a >> 8)) >> 8;
717 b = (b * (a >> 8)) >> 8;
372 718
719 composer cc (this);
720 rxvt_img *img = cc;
721 img->fill (rgba (0, 0, 0, 0));
722
723 cc.mask (true);
724
725 //TODO: this operator does not yet implement some useful contrast
726 while (r | g | b | a)
727 {
728 unsigned short xr, xg, xb, xa;
373 XRenderColor mask_c; 729 XRenderColor mask_c;
374 mask_c.red = r; 730
375 mask_c.green = g; 731 if (extract (0, 65535, r, g, b, a, mask_c.red, mask_c.green, mask_c.blue, mask_c.alpha))
376 mask_c.blue = b; 732 {
377 mask_c.alpha = a;
378 XRenderFillRectangle (dpy, PictOpSrc, src, &mask_c, 0, 0, 1, 1); 733 XRenderFillRectangle (cc.dpy, PictOpSrc, cc.msk, &mask_c, 0, 0, 1, 1);
379
380 XRenderComposite (dpy, PictOpMultiply, src, None, dst, 0, 0, 0, 0, 0, 0, w, h); 734 XRenderComposite (cc.dpy, PictOpAdd, cc.src, cc.msk, cc.dst, 0, 0, 0, 0, 0, 0, w, h);
735 }
736 }
381 737
382 XRenderFreePicture (dpy, src); 738 ::swap (img->ref, ref);
383 XRenderFreePicture (dpy, dst); 739 ::swap (img->pm , pm );
740
741 delete img;
742}
743
744void
745rxvt_img::draw (rxvt_img *img, int op, nv mask)
746{
747 unshare ();
748
749 composer cc (img, this);
750
751 if (mask != 1.)
752 cc.mask (rgba (0, 0, 0, float_to_component (mask)));
753
754 XRenderComposite (cc.dpy, op, cc.src, cc.msk, cc.dst, x - img->x, y - img->y, 0, 0, 0, 0, w, h);
384} 755}
385 756
386rxvt_img * 757rxvt_img *
387rxvt_img::clone () 758rxvt_img::clone ()
388{ 759{
389 return new rxvt_img (*this); 760 return new rxvt_img (*this);
390}
391
392static XRenderPictFormat *
393find_alpha_format_for (Display *dpy, XRenderPictFormat *format)
394{
395 if (format->direct.alphaMask)
396 return format; // already has alpha
397
398 // try to find a suitable alpha format, one bit alpha is enough for our purposes
399 if (format->type == PictTypeDirect)
400 for (int n = 0; XRenderPictFormat *f = XRenderFindFormat (dpy, 0, 0, n); ++n)
401 if (f->direct.alphaMask
402 && f->type == PictTypeDirect
403 && ecb_popcount32 (f->direct.redMask ) >= ecb_popcount32 (format->direct.redMask )
404 && ecb_popcount32 (f->direct.greenMask) >= ecb_popcount32 (format->direct.greenMask)
405 && ecb_popcount32 (f->direct.blueMask ) >= ecb_popcount32 (format->direct.blueMask ))
406 return f;
407
408 // should be a very good fallback
409 return XRenderFindStandardFormat (dpy, PictStandardARGB32);
410} 761}
411 762
412rxvt_img * 763rxvt_img *
413rxvt_img::reify () 764rxvt_img::reify ()
414{ 765{
415 if (x == 0 && y == 0 && w == ref->w && h == ref->h) 766 if (x == 0 && y == 0 && w == ref->w && h == ref->h)
416 return clone (); 767 return clone ();
417 768
418 Display *dpy = s->display->dpy; 769 // add an alpha channel if...
419
420 bool alpha = !format->direct.alphaMask 770 bool alpha = !format->direct.alphaMask // pixmap has none yet
421 && (x || y) 771 && (x || y) // we need one because of non-zero offset
422 && repeat == RepeatNone; 772 && repeat == RepeatNone; // and we have no good pixels to fill with
423 773
424 rxvt_img *img = new rxvt_img (s, alpha ? find_alpha_format_for (dpy, format) : format, 0, 0, w, h, repeat); 774 composer cc (this, new rxvt_img (d, alpha ? find_alpha_format_for (d->dpy, format) : format,
425 img->alloc (); 775 0, 0, w, h, repeat));
426 776
427 Picture src = src_picture (); 777 if (repeat == RepeatNone)
428 Picture dst = XRenderCreatePicture (dpy, img->pm, img->format, 0, 0);
429
430 if (alpha)
431 { 778 {
432 XRenderColor rc = { 0, 0, 0, 0 }; 779 XRenderColor rc = { 0, 0, 0, 0 };
433 XRenderFillRectangle (dpy, PictOpSrc, dst, &rc, 0, 0, w, h);//TODO: split into four fillrectangles 780 XRenderFillRectangle (cc.dpy, PictOpSrc, cc.dst, &rc, 0, 0, w, h);//TODO: split into four fillrectangles
434 XRenderComposite (dpy, PictOpSrc, src, None, dst, 0, 0, 0, 0, -x, -y, ref->w, ref->h); 781 XRenderComposite (cc.dpy, PictOpSrc, cc.src, None, cc.dst, 0, 0, 0, 0, x, y, ref->w, ref->h);
435 } 782 }
436 else 783 else
437 XRenderComposite (dpy, PictOpSrc, src, None, dst, x, y, 0, 0, 0, 0, w, h); 784 XRenderComposite (cc.dpy, PictOpSrc, cc.src, None, cc.dst, -x, -y, 0, 0, 0, 0, w, h);
438 785
439 XRenderFreePicture (dpy, src);
440 XRenderFreePicture (dpy, dst);
441
442 return img; 786 return cc;
443} 787}
444 788
445rxvt_img * 789rxvt_img *
446rxvt_img::sub_rect (int x, int y, int width, int height) 790rxvt_img::sub_rect (int x, int y, int width, int height)
447{ 791{
448 rxvt_img *img = clone (); 792 rxvt_img *img = clone ();
449 793
450 img->x += x; 794 img->x -= x;
451 img->y += y; 795 img->y -= y;
452 796
453 if (w != width || h != height) 797 if (w != width || h != height)
454 { 798 {
455 img->w = width; 799 img->w = width;
456 img->h = height; 800 img->h = height;
462 806
463 return img; 807 return img;
464} 808}
465 809
466rxvt_img * 810rxvt_img *
467rxvt_img::transform (int new_width, int new_height, double matrix[9]) 811rxvt_img::transform (const nv matrix[3][3])
468{ 812{
469 rxvt_img *img = new rxvt_img (s, format, 0, 0, new_width, new_height, repeat); 813 return transform (mat3x3 (&matrix[0][0]));
470 img->alloc (); 814}
471 815
472 Display *dpy = s->display->dpy; 816rxvt_img *
473 Picture src = src_picture (); 817rxvt_img::transform (const nv *matrix)
474 Picture dst = XRenderCreatePicture (dpy, img->pm, img->format, 0, 0); 818{
819 mat3x3 m (matrix);
820
821 // calculate new pixel bounding box coordinates
822 nv rmin[2], rmax[2];
823
824 for (int i = 0; i < 2; ++i)
825 {
826 nv v;
827
828 v = m.apply1 (i, 0+x, 0+y); rmin [i] = rmax [i] = v;
829 v = m.apply1 (i, w+x, 0+y); min_it (rmin [i], v); max_it (rmax [i], v);
830 v = m.apply1 (i, 0+x, h+y); min_it (rmin [i], v); max_it (rmax [i], v);
831 v = m.apply1 (i, w+x, h+y); min_it (rmin [i], v); max_it (rmax [i], v);
832 }
833
834 float sx = rmin [0] - x;
835 float sy = rmin [1] - y;
836
837 // TODO: adjust matrix for subpixel accuracy
838 int nx = floor (rmin [0]);
839 int ny = floor (rmin [1]);
840
841 int new_width = ceil (rmax [0] - rmin [0]);
842 int new_height = ceil (rmax [1] - rmin [1]);
843
844 mat3x3 inv = (mat3x3::translate (-x, -y) * m * mat3x3::translate (x, y)).inverse ();
845
846 composer cc (this, new rxvt_img (d, format, nx, ny, new_width, new_height, repeat));
475 847
476 XTransform xfrm; 848 XTransform xfrm;
477 849
478 for (int i = 0; i < 3; ++i) 850 for (int i = 0; i < 3; ++i)
479 for (int j = 0; j < 3; ++j) 851 for (int j = 0; j < 3; ++j)
480 xfrm.matrix [i][j] = XDoubleToFixed (matrix [i * 3 + j]); 852 xfrm.matrix [i][j] = XDoubleToFixed (inv [i][j]);
481 853
482#if 0
483 xfrm.matrix [0][2] -= XDoubleToFixed (x);//TODO
484 xfrm.matrix [1][2] -= XDoubleToFixed (y);
485#endif
486
487 XRenderSetPictureFilter (dpy, src, "good", 0, 0); 854 XRenderSetPictureFilter (cc.dpy, cc.src, "good", 0, 0);
488 XRenderSetPictureTransform (dpy, src, &xfrm); 855 XRenderSetPictureTransform (cc.dpy, cc.src, &xfrm);
489 XRenderComposite (dpy, PictOpSrc, src, None, dst, 0, 0, 0, 0, 0, 0, new_width, new_height); 856 XRenderComposite (cc.dpy, PictOpSrc, cc.src, None, cc.dst, sx, sy, 0, 0, 0, 0, new_width, new_height);
490 857
491 XRenderFreePicture (dpy, src);
492 XRenderFreePicture (dpy, dst);
493
494 return img; 858 return cc;
495} 859}
496 860
497rxvt_img * 861rxvt_img *
498rxvt_img::scale (int new_width, int new_height) 862rxvt_img::scale (int new_width, int new_height)
499{ 863{
500 if (w == new_width && h == new_height) 864 if (w == new_width && h == new_height)
501 return clone (); 865 return clone ();
502 866
503 double matrix[9] = {
504 w / (double)new_width, 0, 0,
505 0, h / (double)new_height, 0,
506 0, 0, 1
507 };
508
509 int old_repeat_mode = repeat; 867 int old_repeat_mode = repeat;
510 repeat = RepeatPad; // not right, but xrender can't proeprly scale it seems 868 repeat = RepeatPad; // not right, but xrender can't properly scale it seems
511 869
512 rxvt_img *img = transform (new_width, new_height, matrix); 870 rxvt_img *img = transform (mat3x3::scale (new_width / (nv)w, new_height / (nv)h));
513 871
514 repeat = old_repeat_mode; 872 repeat = old_repeat_mode;
515 img->repeat = repeat; 873 img->repeat = repeat;
516 874
517 return img; 875 return img;
518} 876}
519 877
520rxvt_img * 878rxvt_img *
521rxvt_img::rotate (int new_width, int new_height, int x, int y, double phi) 879rxvt_img::rotate (int cx, int cy, nv phi)
522{ 880{
523 double s = sin (phi); 881 move (-cx, -cy);
524 double c = cos (phi); 882 rxvt_img *img = transform (mat3x3::rotate (phi));
883 move ( cx, cy);
884 img->move (cx, cy);
525 885
526 double matrix[9] = { 886 return img;
527 c, -s, -c * x + s * y + x,
528 s, c, -s * x - c * y + y,
529 0, 0, 1
530 };
531
532 return transform (new_width, new_height, matrix);
533} 887}
534 888
535rxvt_img * 889rxvt_img *
536rxvt_img::convert_format (XRenderPictFormat *new_format, const rxvt_color &bg) 890rxvt_img::convert_format (XRenderPictFormat *new_format, const rgba &bg)
537{ 891{
538 if (new_format == format) 892 if (new_format == format)
539 return clone (); 893 return clone ();
540 894
541 rxvt_img *img = new rxvt_img (s, new_format, x, y, w, h, repeat); 895 composer cc (this, new rxvt_img (d, new_format, x, y, w, h, repeat));
542 img->alloc ();
543 896
544 Display *dpy = s->display->dpy;
545 Picture src = src_picture ();
546 Picture dst = XRenderCreatePicture (dpy, img->pm, new_format, 0, 0);
547 int op = PictOpSrc; 897 int op = PictOpSrc;
548 898
549 if (format->direct.alphaMask && !new_format->direct.alphaMask) 899 if (format->direct.alphaMask && !new_format->direct.alphaMask)
550 { 900 {
551 // does it have to be that complicated 901 // does it have to be that complicated
552 rgba c;
553 bg.get (c);
554
555 XRenderColor rc = { c.r, c.g, c.b, 0xffff }; 902 XRenderColor rc = { bg.r, bg.g, bg.b, bg.a };
556 XRenderFillRectangle (dpy, PictOpSrc, dst, &rc, 0, 0, w, h); 903 XRenderFillRectangle (cc.dpy, PictOpSrc, cc.dst, &rc, 0, 0, w, h);
557 904
558 op = PictOpOver; 905 op = PictOpOver;
559 } 906 }
560 907
561 XRenderComposite (dpy, op, src, None, dst, 0, 0, 0, 0, 0, 0, w, h); 908 XRenderComposite (cc.dpy, op, cc.src, None, cc.dst, 0, 0, 0, 0, 0, 0, w, h);
562 909
563 XRenderFreePicture (dpy, src); 910 return cc;
564 XRenderFreePicture (dpy, dst); 911}
912
913rxvt_img *
914rxvt_img::tint (const rgba &c)
915{
916 composer cc (this);
917 cc.mask (true);
918 cc.fill (c);
919
920 XRenderComposite (cc.dpy, PictOpSrc, cc.src, cc.msk, cc.dst, 0, 0, 0, 0, 0, 0, w, h);
921
922 return cc;
923}
924
925rxvt_img *
926rxvt_img::shade (nv factor, rgba c)
927{
928 clamp_it (factor, -1., 1.);
929 factor++;
930
931 if (factor > 1)
932 {
933 c.r = c.r * (2 - factor);
934 c.g = c.g * (2 - factor);
935 c.b = c.b * (2 - factor);
936 }
937 else
938 {
939 c.r = c.r * factor;
940 c.g = c.g * factor;
941 c.b = c.b * factor;
942 }
943
944 rxvt_img *img = this->tint (c);
945
946 if (factor > 1)
947 {
948 c.a = 0xffff;
949 c.r =
950 c.g =
951 c.b = 0xffff * (factor - 1);
952
953 img->brightness (c.r, c.g, c.b, c.a);
954 }
565 955
566 return img; 956 return img;
567} 957}
568 958
569rxvt_img * 959rxvt_img *
570rxvt_img::blend (rxvt_img *img, double factor) 960rxvt_img::filter (const char *name, int nparams, nv *params)
571{ 961{
572 rxvt_img *img2 = clone (); 962 composer cc (this);
573 Display *dpy = s->display->dpy;
574 Picture src = img->src_picture ();
575 Picture dst = XRenderCreatePicture (dpy, img2->pm, img2->format, 0, 0);
576 Picture mask = create_xrender_mask (dpy, img->pm, False);
577 963
578 XRenderColor mask_c; 964 XFixed *xparams = rxvt_temp_buf<XFixed> (nparams);
579 965
580 mask_c.alpha = float_to_component (factor); 966 for (int i = 0; i < nparams; ++i)
581 mask_c.red = 967 xparams [i] = XDoubleToFixed (params [i]);
582 mask_c.green =
583 mask_c.blue = 0;
584 XRenderFillRectangle (dpy, PictOpSrc, mask, &mask_c, 0, 0, 1, 1);
585 968
969 XRenderSetPictureFilter (cc.dpy, cc.src, name, xparams, nparams);
970
586 XRenderComposite (dpy, PictOpOver, src, mask, dst, 0, 0, 0, 0, 0, 0, w, h); 971 XRenderComposite (cc.dpy, PictOpSrc, cc.src, 0, cc.dst, 0, 0, 0, 0, 0, 0, w, h);
587 972
588 XRenderFreePicture (dpy, src);
589 XRenderFreePicture (dpy, dst);
590 XRenderFreePicture (dpy, mask);
591
592 return img2; 973 return cc;
593} 974}
594 975
595#endif 976#endif
596 977

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