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Comparing rxvt-unicode/src/rxvtimg.C (file contents):
Revision 1.49 by root, Thu Jun 7 19:24:13 2012 UTC vs.
Revision 1.112 by root, Tue Sep 17 18:31:32 2019 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; 319
320 int byte_order = ecb_big_endian () ? MSBFirst : LSBFirst;
75 321
76 XImage xi; 322 XImage xi;
77 323
78 xi.width = width; 324 xi.width = width;
79 xi.height = height; 325 xi.height = height;
80 xi.xoffset = 0; 326 xi.xoffset = 0;
81 xi.format = ZPixmap; 327 xi.format = ZPixmap;
82 xi.byte_order = MSBFirst; // maybe go for host byte order, because servers are usually local? 328 xi.byte_order = ImageByteOrder (dpy);
83 xi.bitmap_unit = 32; 329 xi.bitmap_unit = 0; //XY only, unused
84 xi.bitmap_bit_order = MSBFirst; 330 xi.bitmap_bit_order = 0; //XY only, unused
85 xi.bitmap_pad = BitmapPad (dpy); 331 xi.bitmap_pad = BitmapPad (dpy);
86 xi.depth = depth; 332 xi.depth = 32;
87 xi.bytes_per_line = 0; 333 xi.bytes_per_line = 0;
88 xi.bits_per_pixel = 32; 334 xi.bits_per_pixel = 32; //Z only
89 xi.red_mask = 0x00ff0000; 335 xi.red_mask = 0x00000000; //Z only, unused
90 xi.green_mask = 0x0000ff00; 336 xi.green_mask = 0x00000000; //Z only, unused
91 xi.blue_mask = 0x000000ff; 337 xi.blue_mask = 0x00000000; //Z only, unused
338 xi.obdata = 0; // probably unused
339
340 bool byte_order_mismatch = byte_order != xi.byte_order;
92 341
93 if (!XInitImage (&xi)) 342 if (!XInitImage (&xi))
94 rxvt_fatal ("unable to initialise ximage, please report.\n"); 343 rxvt_fatal ("unable to initialise ximage, please report.\n");
95 344
96 if (height > INT_MAX / xi.bytes_per_line) 345 if (height > INT_MAX / xi.bytes_per_line)
97 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");
98 347
99 xi.data = (char *)rxvt_malloc (height * xi.bytes_per_line); 348 xi.data = (char *)rxvt_malloc (height * xi.bytes_per_line);
100 349
101 int rowstride = gdk_pixbuf_get_rowstride (pb); 350 int rowstride = gdk_pixbuf_get_rowstride (pb);
102 351 bool pb_has_alpha = gdk_pixbuf_get_has_alpha (pb);
103 assert (3 + (depth == 32) == gdk_pixbuf_get_n_channels (pb));
104 unsigned char *row = gdk_pixbuf_get_pixels (pb); 352 unsigned char *row = gdk_pixbuf_get_pixels (pb);
353
105 char *line = xi.data; 354 char *line = xi.data;
106 355
107 for (int y = 0; y < height; y++) 356 for (int y = 0; y < height; y++)
108 { 357 {
109 unsigned char r, g, b, a;
110 unsigned char *data = row; 358 unsigned char *src = row;
359 uint32_t *dst = (uint32_t *)line;
111 360
112 if (depth == 24)
113 for (int x = 0; x < width; x++) 361 for (int x = 0; x < width; x++)
114 { 362 {
115 r = *data++; 363 uint8_t r = *src++;
116 g = *data++; 364 uint8_t g = *src++;
117 b = *data++; 365 uint8_t b = *src++;
366 uint8_t a = *src;
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
376 uint32_t v = (a << 24) | (r << 16) | (g << 8) | b;
377
378 if (ecb_big_endian () ? !byte_order_mismatch : byte_order_mismatch)
379 v = ecb_bswap32 (v);
380
118 *line++ = 0; 381 *dst++ = v;
119 *line++ = r;
120 *line++ = g;
121 *line++ = b;
122 } 382 }
123 else
124 for (int x = 0; x < width; x++)
125 {
126 uint32_t v = *(uint32_t *)data; data += 4;
127 v = ecb_big_endian () ? ecb_rotr32 (v, 8) : ecb_rotl32 (v, 8);
128 *(uint32_t *)line = x; line += 4;
129 }
130 383
131 row += rowstride; 384 row += rowstride;
385 line += xi.bytes_per_line;
132 } 386 }
133 387
134 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);
135 img->alloc (); 389 img->alloc ();
136 390
137 GC gc = XCreateGC (dpy, img->pm, 0, 0); 391 GC gc = XCreateGC (dpy, img->pm, 0, 0);
138 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);
139 XFreeGC (dpy, gc); 393 XFreeGC (dpy, gc);
148{ 402{
149 GError *err = 0; 403 GError *err = 0;
150 GdkPixbuf *pb = gdk_pixbuf_new_from_file (filename, &err); 404 GdkPixbuf *pb = gdk_pixbuf_new_from_file (filename, &err);
151 405
152 if (!pb) 406 if (!pb)
407 try
408 {
153 rxvt_fatal ("rxvt_img::new_from_file: %s\n", err->message); 409 rxvt_fatal ("rxvt_img::new_from_file: %s\n", err->message);
410 }
411 catch (...)
412 {
413 g_error_free (err);
414 throw;
415 }
154 416
155 rxvt_img *img = new_from_pixbuf (s, pb); 417 rxvt_img *img = new_from_pixbuf (s, pb);
156 418
157 g_object_unref (pb); 419 g_object_unref (pb);
158 420
159 return img; 421 return img;
160} 422}
423
424# endif
161 425
162void 426void
163rxvt_img::destroy () 427rxvt_img::destroy ()
164{ 428{
165 if (--ref->cnt) 429 if (--ref->cnt)
166 return; 430 return;
167 431
168 if (pm && ref->ours) 432 if (pm && ref->ours)
169 XFreePixmap (s->display->dpy, pm); 433 XFreePixmap (d->dpy, pm);
170 434
171 delete ref; 435 delete ref;
172} 436}
173 437
174rxvt_img::~rxvt_img () 438rxvt_img::~rxvt_img ()
177} 441}
178 442
179void 443void
180rxvt_img::alloc () 444rxvt_img::alloc ()
181{ 445{
182 pm = XCreatePixmap (s->display->dpy, s->display->root, w, h, format->depth); 446 pm = XCreatePixmap (d->dpy, d->root, w, h, format->depth);
183 ref = new pixref (w, h); 447 ref = new pixref (w, h);
184} 448}
185 449
450rxvt_img *
451rxvt_img::new_empty ()
452{
453 rxvt_img *img = new rxvt_img (d, format, x, y, w, h, repeat);
454 img->alloc ();
455
456 return img;
457}
458
186Picture 459Picture
187rxvt_img::src_picture () 460rxvt_img::picture ()
188{ 461{
189 Display *dpy = s->display->dpy; 462 Display *dpy = d->dpy;
190 463
191 XRenderPictureAttributes pa; 464 XRenderPictureAttributes pa;
192 pa.repeat = repeat; 465 pa.repeat = repeat;
193 Picture pic = XRenderCreatePicture (dpy, pm, format, CPRepeat, &pa); 466 Picture pic = XRenderCreatePicture (dpy, pm, format, CPRepeat, &pa);
194 467
199rxvt_img::unshare () 472rxvt_img::unshare ()
200{ 473{
201 if (ref->cnt == 1 && ref->ours) 474 if (ref->cnt == 1 && ref->ours)
202 return; 475 return;
203 476
204 //TODO: maybe should reify instead
205 Pixmap pm2 = XCreatePixmap (s->display->dpy, s->display->root, ref->w, ref->h, format->depth); 477 Pixmap pm2 = XCreatePixmap (d->dpy, d->root, ref->w, ref->h, format->depth);
206 GC gc = XCreateGC (s->display->dpy, pm, 0, 0); 478 GC gc = XCreateGC (d->dpy, pm, 0, 0);
207 XCopyArea (s->display->dpy, pm, pm2, gc, 0, 0, ref->w, ref->h, 0, 0); 479 XCopyArea (d->dpy, pm, pm2, gc, 0, 0, ref->w, ref->h, 0, 0);
208 XFreeGC (s->display->dpy, gc); 480 XFreeGC (d->dpy, gc);
209 481
210 destroy (); 482 destroy ();
211 483
212 pm = pm2; 484 pm = pm2;
213 ref = new pixref (ref->w, ref->h); 485 ref = new pixref (ref->w, ref->h);
214} 486}
215 487
216void 488void
489rxvt_img::fill (const rgba &c, int x, int y, int w, int h)
490{
491 XRenderColor rc = { c.r, c.g, c.b, c.a };
492
493 Display *dpy = d->dpy;
494 Picture src = picture ();
495 XRenderFillRectangle (dpy, PictOpSrc, src, &rc, x, y, w, h);
496 XRenderFreePicture (dpy, src);
497}
498
499void
217rxvt_img::fill (const rxvt_color &c) 500rxvt_img::fill (const rgba &c)
218{ 501{
219 XGCValues gcv; 502 fill (c, 0, 0, w, h);
220 gcv.foreground = c; 503}
221 GC gc = XCreateGC (s->display->dpy, pm, GCForeground, &gcv); 504
222 XFillRectangle (s->display->dpy, pm, gc, 0, 0, w, h); 505void
223 XFreeGC (s->display->dpy, gc); 506rxvt_img::add_alpha ()
507{
508 if (format->direct.alphaMask)
509 return;
510
511 composer cc (this, new rxvt_img (d, find_alpha_format_for (d->dpy, format), x, y, w, h, repeat));
512
513 XRenderComposite (cc.dpy, PictOpSrc, cc.src, None, cc.dst, 0, 0, 0, 0, 0, 0, w, h);
514
515 rxvt_img *img = cc;
516
517 ::swap (img->ref, ref);
518 ::swap (img->pm , pm );
519
520 delete img;
224} 521}
225 522
226static void 523static void
227get_gaussian_kernel (int radius, int width, double *kernel, XFixed *params) 524get_gaussian_kernel (int radius, int width, nv *kernel, XFixed *params)
228{ 525{
229 double sigma = radius / 2.0; 526 nv sigma = radius / 2.0;
230 double scale = sqrt (2.0 * M_PI) * sigma; 527 nv scale = sqrt (2.0 * M_PI) * sigma;
231 double sum = 0.0; 528 nv sum = 0.0;
232 529
233 for (int i = 0; i < width; i++) 530 for (int i = 0; i < width; i++)
234 { 531 {
235 double x = i - width / 2; 532 nv x = i - width / 2;
236 kernel[i] = exp (-(x * x) / (2.0 * sigma * sigma)) / scale; 533 kernel[i] = exp (-(x * x) / (2.0 * sigma * sigma)) / scale;
237 sum += kernel[i]; 534 sum += kernel[i];
238 } 535 }
239 536
240 params[0] = XDoubleToFixed (width); 537 params[0] = XDoubleToFixed (width);
245} 542}
246 543
247rxvt_img * 544rxvt_img *
248rxvt_img::blur (int rh, int rv) 545rxvt_img::blur (int rh, int rv)
249{ 546{
250 if (!(s->display->flags & DISPLAY_HAS_RENDER_CONV)) 547 if (!(d->flags & DISPLAY_HAS_RENDER_CONV))
251 return clone (); 548 return clone ();
252 549
253 Display *dpy = s->display->dpy; 550 Display *dpy = d->dpy;
254 int size = max (rh, rv) * 2 + 1; 551 int size = max (rh, rv) * 2 + 1;
255 double *kernel = (double *)malloc (size * sizeof (double)); 552 nv *kernel = (nv *)malloc (size * sizeof (nv));
256 XFixed *params = (XFixed *)malloc ((size + 2) * sizeof (XFixed)); 553 XFixed *params = rxvt_temp_buf<XFixed> (size + 2);
257 rxvt_img *img = new rxvt_img (s, format, x, y, w, h, repeat); 554 rxvt_img *img = new_empty ();
258 img->alloc ();
259
260 Picture src = src_picture ();
261 555
262 XRenderPictureAttributes pa; 556 XRenderPictureAttributes pa;
263 pa.repeat = RepeatPad; 557 pa.repeat = RepeatPad;
264 Picture dst = XRenderCreatePicture (dpy, img->pm, format, CPRepeat, &pa); 558 Picture src = XRenderCreatePicture (dpy, pm, format, CPRepeat, &pa);
559 Picture dst = XRenderCreatePicture (dpy, img->pm, format, 0, 0);
265 560
266 Pixmap tmp_pm = XCreatePixmap (dpy, pm, w, h, format->depth); 561 Pixmap tmp_pm = XCreatePixmap (dpy, pm, w, h, format->depth);
267 Picture tmp = XRenderCreatePicture (dpy, tmp_pm , format, CPRepeat, &pa); 562 Picture tmp = XRenderCreatePicture (dpy, tmp_pm , format, CPRepeat, &pa);
268 XFreePixmap (dpy, tmp_pm); 563 XFreePixmap (dpy, tmp_pm);
269 564
285 580
286 size = rv * 2 + 1; 581 size = rv * 2 + 1;
287 get_gaussian_kernel (rv, size, kernel, params); 582 get_gaussian_kernel (rv, size, kernel, params);
288 ::swap (params[0], params[1]); 583 ::swap (params[0], params[1]);
289 584
290 XRenderSetPictureFilter (dpy, src, FilterConvolution, params, size+2); 585 XRenderSetPictureFilter (dpy, tmp, FilterConvolution, params, size+2);
291 XRenderComposite (dpy, 586 XRenderComposite (dpy,
292 PictOpSrc, 587 PictOpSrc,
293 tmp, 588 tmp,
294 None, 589 None,
295 dst, 590 dst,
298 0, 0, 593 0, 0,
299 w, h); 594 w, h);
300 } 595 }
301 596
302 free (kernel); 597 free (kernel);
303 free (params); 598
304 XRenderFreePicture (dpy, src); 599 XRenderFreePicture (dpy, src);
305 XRenderFreePicture (dpy, dst); 600 XRenderFreePicture (dpy, dst);
306 XRenderFreePicture (dpy, tmp); 601 XRenderFreePicture (dpy, tmp);
307 602
308 return img; 603 return img;
309} 604}
310 605
311static Picture 606rxvt_img *
312create_xrender_mask (Display *dpy, Drawable drawable, Bool argb) 607rxvt_img::muladd (nv mul, nv add)
313{ 608{
314 Pixmap pixmap = XCreatePixmap (dpy, drawable, 1, 1, argb ? 32 : 8); 609 // STEP 1: double the image width, fill all odd columns with white (==1)
315 610
316 XRenderPictFormat *format = XRenderFindStandardFormat (dpy, argb ? PictStandardARGB32 : PictStandardA8); 611 composer cc (this, new rxvt_img (d, format, 0, 0, w * 2, h, repeat));
317 XRenderPictureAttributes pa;
318 pa.repeat = True;
319 Picture mask = XRenderCreatePicture (dpy, pixmap, format, CPRepeat, &pa);
320 612
321 XFreePixmap (dpy, pixmap); 613 // why the hell does XRenderSetPictureTransform want a writable matrix :(
614 // that keeps us from just static const'ing this matrix.
615 XTransform h_double = {
616 0x08000, 0, 0,
617 0, 0x10000, 0,
618 0, 0, 0x10000
619 };
322 620
323 return mask; 621 XRenderSetPictureFilter (cc.dpy, cc.src, "nearest", 0, 0);
622 XRenderSetPictureTransform (cc.dpy, cc.src, &h_double);
623 XRenderComposite (cc.dpy, PictOpSrc, cc.src, None, cc.dst, 0, 0, 0, 0, 0, 0, w * 2, h);
624
625 cc.mask (false, 2, 1);
626
627 static const XRenderColor c0 = { 0, 0, 0, 0 };
628 XRenderFillRectangle (cc.dpy, PictOpSrc, cc.msk, &c0, 0, 0, 1, 1);
629 static const XRenderColor c1 = { 65535, 65535, 65535, 65535 };
630 XRenderFillRectangle (cc.dpy, PictOpSrc, cc.msk, &c1, 1, 0, 1, 1);
631
632 Picture white = XRenderCreateSolidFill (cc.dpy, &c1);
633
634 XRenderComposite (cc.dpy, PictOpOver, white, cc.msk, cc.dst, 0, 0, 0, 0, 0, 0, w * 2, h);
635
636 XRenderFreePicture (cc.dpy, white);
637
638 // STEP 2: convolve the image with a 3x1 filter
639 // a 2x1 filter would obviously suffice, but given the total lack of specification
640 // for xrender, I expect different xrender implementations to randomly diverge.
641 // we also halve the image, and hope for the best (again, for lack of specs).
642 composer cc2 (cc.dstimg);
643
644 XFixed kernel [] = {
645 XDoubleToFixed (3), XDoubleToFixed (1),
646 XDoubleToFixed (0), XDoubleToFixed (mul), XDoubleToFixed (add)
647 };
648
649 XTransform h_halve = {
650 0x20000, 0, 0,
651 0, 0x10000, 0,
652 0, 0, 0x10000
653 };
654
655 XRenderSetPictureFilter (cc.dpy, cc2.src, "nearest", 0, 0);
656 XRenderSetPictureTransform (cc.dpy, cc2.src, &h_halve);
657 XRenderSetPictureFilter (cc.dpy, cc2.src, FilterConvolution, kernel, ecb_array_length (kernel));
658
659 XRenderComposite (cc.dpy, PictOpSrc, cc2.src, None, cc2.dst, 0, 0, 0, 0, 0, 0, w * 2, h);
660
661 return cc2;
662}
663
664ecb_noinline static void
665extract (int32_t cl0, int32_t cl1, int32_t &c, unsigned short &xc)
666{
667 int32_t x = clamp (c, cl0, cl1);
668 c -= x;
669 xc = x;
670}
671
672ecb_noinline static bool
673extract (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)
674{
675 extract (cl0, cl1, r, xr);
676 extract (cl0, cl1, g, xg);
677 extract (cl0, cl1, b, xb);
678 extract (cl0, cl1, a, xa);
679
680 return xr | xg | xb | xa;
324} 681}
325 682
326void 683void
327rxvt_img::brightness (unsigned short r, unsigned short g, unsigned short b, unsigned short a) 684rxvt_img::brightness (int32_t r, int32_t g, int32_t b, int32_t a)
328{ 685{
686 unshare ();
687
329 Display *dpy = s->display->dpy; 688 Display *dpy = d->dpy;
330 Picture src = create_xrender_mask (dpy, pm, True);
331 Picture dst = XRenderCreatePicture (dpy, pm, format, 0, 0); 689 Picture dst = XRenderCreatePicture (dpy, pm, format, 0, 0);
332 690
691 // loop should not be needed for brightness, as only -1..1 makes sense
692 //while (r | g | b | a)
693 {
694 unsigned short xr, xg, xb, xa;
333 XRenderColor mask_c; 695 XRenderColor mask_c;
334 mask_c.red = r; 696
335 mask_c.green = g; 697 if (extract (0, 65535, r, g, b, a, mask_c.red, mask_c.green, mask_c.blue, mask_c.alpha))
336 mask_c.blue = b;
337 mask_c.alpha = a;
338 XRenderFillRectangle (dpy, PictOpSrc, src, &mask_c, 0, 0, 1, 1); 698 XRenderFillRectangle (dpy, PictOpAdd, dst, &mask_c, 0, 0, w, h);
339 699
340 XRenderComposite (dpy, PictOpAdd, src, None, dst, 0, 0, 0, 0, 0, 0, w, h); 700 if (extract (-65535, 0, r, g, b, a, mask_c.red, mask_c.green, mask_c.blue, mask_c.alpha))
701 {
702 XRenderColor mask_w = { 65535, 65535, 65535, 65535 };
703 XRenderFillRectangle (dpy, PictOpDifference, dst, &mask_w, 0, 0, w, h);
704 mask_c.red = -mask_c.red; //TODO: verify that doing clamp, assign, and negation does the right thing
705 mask_c.green = -mask_c.green;
706 mask_c.blue = -mask_c.blue;
707 mask_c.alpha = -mask_c.alpha;
708 XRenderFillRectangle (dpy, PictOpAdd, dst, &mask_c, 0, 0, w, h);
709 XRenderFillRectangle (dpy, PictOpDifference, dst, &mask_w, 0, 0, w, h);
710 }
711 }
341 712
342 XRenderFreePicture (dpy, src);
343 XRenderFreePicture (dpy, dst); 713 XRenderFreePicture (dpy, dst);
344} 714}
345 715
346void 716void
347rxvt_img::contrast (unsigned short r, unsigned short g, unsigned short b, unsigned short a) 717rxvt_img::contrast (int32_t r, int32_t g, int32_t b, int32_t a)
348{ 718{
349 if (!(s->display->flags & DISPLAY_HAS_RENDER_MUL)) 719 if (r < 0 || g < 0 || b < 0 || a < 0)
350 return; 720 rxvt_fatal ("rxvt_img::contrast does not support negative values.\n");
351 721
352 Display *dpy = s->display->dpy; 722 // premultiply (yeah, these are not exact, sue me or fix it)
353 Picture src = create_xrender_mask (dpy, pm, True); 723 r = (r * (a >> 8)) >> 8;
354 Picture dst = XRenderCreatePicture (dpy, pm, format, 0, 0); 724 g = (g * (a >> 8)) >> 8;
725 b = (b * (a >> 8)) >> 8;
355 726
727 composer cc (this);
728 rxvt_img *img = cc;
729 img->fill (rgba (0, 0, 0, 0));
730
731 cc.mask (true);
732
733 //TODO: this operator does not yet implement some useful contrast
734 while (r | g | b | a)
735 {
736 unsigned short xr, xg, xb, xa;
356 XRenderColor mask_c; 737 XRenderColor mask_c;
357 mask_c.red = r; 738
358 mask_c.green = g; 739 if (extract (0, 65535, r, g, b, a, mask_c.red, mask_c.green, mask_c.blue, mask_c.alpha))
359 mask_c.blue = b; 740 {
360 mask_c.alpha = a;
361 XRenderFillRectangle (dpy, PictOpSrc, src, &mask_c, 0, 0, 1, 1); 741 XRenderFillRectangle (cc.dpy, PictOpSrc, cc.msk, &mask_c, 0, 0, 1, 1);
362
363 XRenderComposite (dpy, PictOpMultiply, src, None, dst, 0, 0, 0, 0, 0, 0, w, h); 742 XRenderComposite (cc.dpy, PictOpAdd, cc.src, cc.msk, cc.dst, 0, 0, 0, 0, 0, 0, w, h);
743 }
744 }
364 745
365 XRenderFreePicture (dpy, src); 746 ::swap (img->ref, ref);
366 XRenderFreePicture (dpy, dst); 747 ::swap (img->pm , pm );
748
749 delete img;
750}
751
752void
753rxvt_img::draw (rxvt_img *img, int op, nv mask)
754{
755 unshare ();
756
757 composer cc (img, this);
758
759 if (mask != 1.)
760 cc.mask (rgba (0, 0, 0, float_to_component (mask)));
761
762 XRenderComposite (cc.dpy, op, cc.src, cc.msk, cc.dst, x - img->x, y - img->y, 0, 0, 0, 0, w, h);
367} 763}
368 764
369rxvt_img * 765rxvt_img *
370rxvt_img::clone () 766rxvt_img::clone ()
371{ 767{
372 return new rxvt_img (*this); 768 return new rxvt_img (*this);
373}
374
375static XRenderPictFormat *
376find_alpha_format_for (Display *dpy, XRenderPictFormat *format)
377{
378 if (format->direct.alphaMask)
379 return format; // already has alpha
380
381 // try to find a suitable alpha format, one bit alpha is enough for our purposes
382 if (format->type == PictTypeDirect)
383 for (int n = 0; XRenderPictFormat *f = XRenderFindFormat (dpy, 0, 0, n); ++n)
384 if (f->direct.alphaMask
385 && f->type == PictTypeDirect
386 && ecb_popcount32 (f->direct.redMask ) >= ecb_popcount32 (format->direct.redMask )
387 && ecb_popcount32 (f->direct.greenMask) >= ecb_popcount32 (format->direct.greenMask)
388 && ecb_popcount32 (f->direct.blueMask ) >= ecb_popcount32 (format->direct.blueMask ))
389 return f;
390
391 // should be a very good fallback
392 return XRenderFindStandardFormat (dpy, PictStandardARGB32);
393} 769}
394 770
395rxvt_img * 771rxvt_img *
396rxvt_img::reify () 772rxvt_img::reify ()
397{ 773{
398 if (x == 0 && y == 0 && w == ref->w && h == ref->h) 774 if (x == 0 && y == 0 && w == ref->w && h == ref->h)
399 return clone (); 775 return clone ();
400 776
401 Display *dpy = s->display->dpy; 777 // add an alpha channel if...
402
403 bool alpha = !format->direct.alphaMask 778 bool alpha = !format->direct.alphaMask // pixmap has none yet
404 && (x || y) 779 && (x || y) // we need one because of non-zero offset
405 && repeat == RepeatNone; 780 && repeat == RepeatNone; // and we have no good pixels to fill with
406 781
407 rxvt_img *img = new rxvt_img (s, alpha ? find_alpha_format_for (dpy, format) : format, 0, 0, w, h, repeat); 782 composer cc (this, new rxvt_img (d, alpha ? find_alpha_format_for (d->dpy, format) : format,
408 img->alloc (); 783 0, 0, w, h, repeat));
409 784
410 Picture src = src_picture (); 785 if (repeat == RepeatNone)
411 Picture dst = XRenderCreatePicture (dpy, img->pm, img->format, 0, 0);
412
413 if (alpha)
414 { 786 {
415 XRenderColor rc = { 0, 0, 0, 0 }; 787 XRenderColor rc = { 0, 0, 0, 0 };
416 XRenderFillRectangle (dpy, PictOpSrc, dst, &rc, 0, 0, w, h);//TODO: split into four fillrectangles 788 XRenderFillRectangle (cc.dpy, PictOpSrc, cc.dst, &rc, 0, 0, w, h);//TODO: split into four fillrectangles
417 XRenderComposite (dpy, PictOpSrc, src, None, dst, 0, 0, 0, 0, -x, -y, ref->w, ref->h); 789 XRenderComposite (cc.dpy, PictOpSrc, cc.src, None, cc.dst, 0, 0, 0, 0, x, y, ref->w, ref->h);
418 } 790 }
419 else 791 else
420 XRenderComposite (dpy, PictOpSrc, src, None, dst, x, y, 0, 0, 0, 0, w, h); 792 XRenderComposite (cc.dpy, PictOpSrc, cc.src, None, cc.dst, -x, -y, 0, 0, 0, 0, w, h);
421 793
422 XRenderFreePicture (dpy, src);
423 XRenderFreePicture (dpy, dst);
424
425 return img; 794 return cc;
426} 795}
427 796
428rxvt_img * 797rxvt_img *
429rxvt_img::sub_rect (int x, int y, int width, int height) 798rxvt_img::sub_rect (int x, int y, int width, int height)
430{ 799{
431 rxvt_img *img = clone (); 800 rxvt_img *img = clone ();
432 801
433 img->x += x; 802 img->x -= x;
434 img->y += y; 803 img->y -= y;
435 804
436 if (w != width || h != height) 805 if (w != width || h != height)
437 { 806 {
438 img->w = width; 807 img->w = width;
439 img->h = height; 808 img->h = height;
445 814
446 return img; 815 return img;
447} 816}
448 817
449rxvt_img * 818rxvt_img *
450rxvt_img::transform (int new_width, int new_height, double matrix[9]) 819rxvt_img::transform (const nv matrix[3][3])
451{ 820{
452 rxvt_img *img = new rxvt_img (s, format, 0, 0, new_width, new_height, repeat); 821 return transform (mat3x3 (&matrix[0][0]));
453 img->alloc (); 822}
454 823
455 Display *dpy = s->display->dpy; 824rxvt_img *
456 Picture src = src_picture (); 825rxvt_img::transform (const nv *matrix)
457 Picture dst = XRenderCreatePicture (dpy, img->pm, img->format, 0, 0); 826{
827 mat3x3 m (matrix);
828
829 // calculate new pixel bounding box coordinates
830 nv rmin[2], rmax[2];
831
832 for (int i = 0; i < 2; ++i)
833 {
834 nv v;
835
836 v = m.apply1 (i, 0+x, 0+y); rmin [i] = rmax [i] = v;
837 v = m.apply1 (i, w+x, 0+y); min_it (rmin [i], v); max_it (rmax [i], v);
838 v = m.apply1 (i, 0+x, h+y); min_it (rmin [i], v); max_it (rmax [i], v);
839 v = m.apply1 (i, w+x, h+y); min_it (rmin [i], v); max_it (rmax [i], v);
840 }
841
842 float sx = rmin [0] - x;
843 float sy = rmin [1] - y;
844
845 // TODO: adjust matrix for subpixel accuracy
846 int nx = floor (rmin [0]);
847 int ny = floor (rmin [1]);
848
849 int new_width = ceil (rmax [0] - rmin [0]);
850 int new_height = ceil (rmax [1] - rmin [1]);
851
852 mat3x3 inv = (mat3x3::translate (-x, -y) * m * mat3x3::translate (x, y)).inverse ();
853
854 composer cc (this, new rxvt_img (d, format, nx, ny, new_width, new_height, repeat));
458 855
459 XTransform xfrm; 856 XTransform xfrm;
460 857
461 for (int i = 0; i < 3; ++i) 858 for (int i = 0; i < 3; ++i)
462 for (int j = 0; j < 3; ++j) 859 for (int j = 0; j < 3; ++j)
463 xfrm.matrix [i][j] = XDoubleToFixed (matrix [i * 3 + j]); 860 xfrm.matrix [i][j] = XDoubleToFixed (inv [i][j]);
464 861
465#if 0
466 xfrm.matrix [0][2] -= XDoubleToFixed (x);//TODO
467 xfrm.matrix [1][2] -= XDoubleToFixed (y);
468#endif
469
470 XRenderSetPictureFilter (dpy, src, "good", 0, 0); 862 XRenderSetPictureFilter (cc.dpy, cc.src, "good", 0, 0);
471 XRenderSetPictureTransform (dpy, src, &xfrm); 863 XRenderSetPictureTransform (cc.dpy, cc.src, &xfrm);
472 XRenderComposite (dpy, PictOpSrc, src, None, dst, 0, 0, 0, 0, 0, 0, new_width, new_height); 864 XRenderComposite (cc.dpy, PictOpSrc, cc.src, None, cc.dst, sx, sy, 0, 0, 0, 0, new_width, new_height);
473 865
474 XRenderFreePicture (dpy, src);
475 XRenderFreePicture (dpy, dst);
476
477 return img; 866 return cc;
478} 867}
479 868
480rxvt_img * 869rxvt_img *
481rxvt_img::scale (int new_width, int new_height) 870rxvt_img::scale (int new_width, int new_height)
482{ 871{
483 if (w == new_width && h == new_height) 872 if (w == new_width && h == new_height)
484 return clone (); 873 return clone ();
485 874
486 double matrix[9] = {
487 w / (double)new_width, 0, 0,
488 0, h / (double)new_height, 0,
489 0, 0, 1
490 };
491
492 int old_repeat_mode = repeat; 875 int old_repeat_mode = repeat;
493 repeat = RepeatPad; // not right, but xrender can't proeprly scale it seems 876 repeat = RepeatPad; // not right, but xrender can't properly scale it seems
494 877
495 rxvt_img *img = transform (new_width, new_height, matrix); 878 rxvt_img *img = transform (mat3x3::scale (new_width / (nv)w, new_height / (nv)h));
496 879
497 repeat = old_repeat_mode; 880 repeat = old_repeat_mode;
498 img->repeat = repeat; 881 img->repeat = repeat;
499 882
500 return img; 883 return img;
501} 884}
502 885
503rxvt_img * 886rxvt_img *
504rxvt_img::rotate (int new_width, int new_height, int x, int y, double phi) 887rxvt_img::rotate (int cx, int cy, nv phi)
505{ 888{
506 double s = sin (phi); 889 move (-cx, -cy);
507 double c = cos (phi); 890 rxvt_img *img = transform (mat3x3::rotate (phi));
891 move ( cx, cy);
892 img->move (cx, cy);
508 893
509 double matrix[9] = { 894 return img;
510 c, -s, -c * x + s * y + x,
511 s, c, -s * x - c * y + y,
512 0, 0, 1
513 };
514
515 return transform (new_width, new_height, matrix);
516} 895}
517 896
518rxvt_img * 897rxvt_img *
519rxvt_img::convert_format (XRenderPictFormat *new_format, const rxvt_color &bg) 898rxvt_img::convert_format (XRenderPictFormat *new_format, const rgba &bg)
520{ 899{
521 if (new_format == format) 900 if (new_format == format)
522 return clone (); 901 return clone ();
523 902
524 rxvt_img *img = new rxvt_img (s, new_format, x, y, w, h, repeat); 903 composer cc (this, new rxvt_img (d, new_format, x, y, w, h, repeat));
525 img->alloc ();
526 904
527 Display *dpy = s->display->dpy;
528 Picture src = src_picture ();
529 Picture dst = XRenderCreatePicture (dpy, img->pm, new_format, 0, 0);
530 int op = PictOpSrc; 905 int op = PictOpSrc;
531 906
532 if (format->direct.alphaMask && !new_format->direct.alphaMask) 907 if (format->direct.alphaMask && !new_format->direct.alphaMask)
533 { 908 {
534 // does it have to be that complicated 909 // does it have to be that complicated
535 rgba c;
536 bg.get (c);
537
538 XRenderColor rc = { c.r, c.g, c.b, 0xffff }; 910 XRenderColor rc = { bg.r, bg.g, bg.b, bg.a };
539 XRenderFillRectangle (dpy, PictOpSrc, dst, &rc, 0, 0, w, h); 911 XRenderFillRectangle (cc.dpy, PictOpSrc, cc.dst, &rc, 0, 0, w, h);
540 912
541 op = PictOpOver; 913 op = PictOpOver;
542 } 914 }
543 915
544 XRenderComposite (dpy, op, src, None, dst, 0, 0, 0, 0, 0, 0, w, h); 916 XRenderComposite (cc.dpy, op, cc.src, None, cc.dst, 0, 0, 0, 0, 0, 0, w, h);
545 917
546 XRenderFreePicture (dpy, src); 918 return cc;
547 XRenderFreePicture (dpy, dst); 919}
920
921rxvt_img *
922rxvt_img::tint (const rgba &c)
923{
924 composer cc (this);
925 cc.mask (true);
926 cc.fill (c);
927
928 XRenderComposite (cc.dpy, PictOpSrc, cc.src, cc.msk, cc.dst, 0, 0, 0, 0, 0, 0, w, h);
929
930 return cc;
931}
932
933rxvt_img *
934rxvt_img::shade (nv factor, rgba c)
935{
936 clamp_it (factor, -1., 1.);
937 factor++;
938
939 if (factor > 1)
940 {
941 c.r = c.r * (2 - factor);
942 c.g = c.g * (2 - factor);
943 c.b = c.b * (2 - factor);
944 }
945 else
946 {
947 c.r = c.r * factor;
948 c.g = c.g * factor;
949 c.b = c.b * factor;
950 }
951
952 rxvt_img *img = this->tint (c);
953
954 if (factor > 1)
955 {
956 c.a = 0xffff;
957 c.r =
958 c.g =
959 c.b = 0xffff * (factor - 1);
960
961 img->brightness (c.r, c.g, c.b, c.a);
962 }
548 963
549 return img; 964 return img;
550} 965}
551 966
552rxvt_img * 967rxvt_img *
553rxvt_img::blend (rxvt_img *img, double factor) 968rxvt_img::filter (const char *name, int nparams, nv *params)
554{ 969{
555 rxvt_img *img2 = clone (); 970 composer cc (this);
556 Display *dpy = s->display->dpy;
557 Picture src = img->src_picture ();
558 Picture dst = XRenderCreatePicture (dpy, img2->pm, img2->format, 0, 0);
559 Picture mask = create_xrender_mask (dpy, img->pm, False);
560 971
561 XRenderColor mask_c; 972 XFixed *xparams = rxvt_temp_buf<XFixed> (nparams);
562 973
563 mask_c.alpha = float_to_component (factor); 974 for (int i = 0; i < nparams; ++i)
564 mask_c.red = 975 xparams [i] = XDoubleToFixed (params [i]);
565 mask_c.green =
566 mask_c.blue = 0;
567 XRenderFillRectangle (dpy, PictOpSrc, mask, &mask_c, 0, 0, 1, 1);
568 976
977 XRenderSetPictureFilter (cc.dpy, cc.src, name, xparams, nparams);
978
569 XRenderComposite (dpy, PictOpOver, src, mask, dst, 0, 0, 0, 0, 0, 0, w, h); 979 XRenderComposite (cc.dpy, PictOpSrc, cc.src, 0, cc.dst, 0, 0, 0, 0, 0, 0, w, h);
570 980
571 XRenderFreePicture (dpy, src);
572 XRenderFreePicture (dpy, dst);
573 XRenderFreePicture (dpy, mask);
574
575 return img2; 981 return cc;
576} 982}
577 983
578#endif 984#endif
579 985

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