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/* Copyright (C) 1999 Aladdin Enterprises.  All rights reserved.
2
 
3
  This software is provided AS-IS with no warranty, either express or
4
  implied.
5
 
6
  This software is distributed under license and may not be copied,
7
  modified or distributed except as expressly authorized under the terms
8
  of the license contained in the file LICENSE in this distribution.
9
 
10
  For more information about licensing, please refer to
11
  http://www.ghostscript.com/licensing/. For information on
12
  commercial licensing, go to http://www.artifex.com/licensing/ or
13
  contact Artifex Software, Inc., 101 Lucas Valley Road #110,
14
  San Rafael, CA  94903, U.S.A., +1(415)492-9861.
15
*/
16
 
17
/* $Id: gdevxcmp.c,v 1.9 2004/08/04 19:36:12 stefan Exp $ */
18
/* X Windows color mapping */
19
#include "math_.h"
20
#include "x_.h"
21
#include "gx.h"			/* for gx_bitmap; includes std.h */
22
#include "gserrors.h"
23
#include "gxdevice.h"
24
#include "gdevx.h"
25
 
26
/* ---------------- Utilities ---------------- */
27
 
28
private void
29
gs_x_free(gs_memory_t *mem, void *obj, client_name_t cname)
30
{
31
    gs_free(mem, obj, 0 /*ignored*/, 0 /*ignored*/, cname);
32
}
33
 
34
/* ---------------- Color mapping setup / cleanup ---------------- */
35
 
36
#if HaveStdCMap
37
 
38
/* Install a standard color map in the device. */
39
/* Sets std_cmap.* except for free_map. */
40
private bool
41
set_cmap_values(x11_cmap_values_t *values, int maxv, int mult)
42
{
43
    int i;
44
 
45
    if (maxv < 1 || maxv > 63 || (maxv & (maxv + 1)) ||
46
	(mult & (mult - 1))
47
	)
48
	return false;
49
    values->cv_shift = 16 - small_exact_log2(maxv + 1);
50
    for (i = 0; i <= maxv; ++i)
51
	values->nearest[i] = X_max_color_value * i / maxv;
52
    for (i = 0; mult != (1 << i); ++i)
53
	DO_NOTHING;
54
    values->pixel_shift = i;
55
    return true;
56
}
57
private void
58
set_std_cmap(gx_device_X *xdev, XStandardColormap *map)
59
{
60
    xdev->cman.std_cmap.map = map;
61
    xdev->cman.std_cmap.fast =
62
	set_cmap_values(&xdev->cman.std_cmap.red, map->red_max, map->red_mult) &&
63
	set_cmap_values(&xdev->cman.std_cmap.green, map->green_max, map->green_mult) &&
64
	set_cmap_values(&xdev->cman.std_cmap.blue, map->blue_max, map->blue_mult);
65
}
66
 
67
/* Get the Standard colormap if available. */
68
/* Uses: dpy, scr, cmap. */
69
private XStandardColormap *
70
x_get_std_cmap(gx_device_X * xdev, Atom prop)
71
{
72
    int i;
73
    XStandardColormap *scmap, *sp;
74
    int nitems;
75
 
76
    if (XGetRGBColormaps(xdev->dpy, RootWindowOfScreen(xdev->scr),
77
			 &scmap, &nitems, prop))
78
	for (i = 0, sp = scmap; i < nitems; i++, sp++)
79
	    if (xdev->cmap == sp->colormap)
80
		return sp;
81
 
82
    return NULL;
83
}
84
 
85
/* Create a Standard colormap for a TrueColor or StaticGray display. */
86
/* Return true if the allocation was successful. */
87
/* Uses: vinfo.  Sets: std_cmap.*. */
88
private bool
89
alloc_std_cmap(gx_device_X *xdev, bool colored)
90
{
91
    XStandardColormap *cmap = XAllocStandardColormap();
92
 
93
    if (cmap == 0)
94
	return false;		/* can't allocate */
95
    /*
96
     * Some buggy X servers (including XFree86) don't set any of the
97
     * _mask values for StaticGray visuals.  Compensate for that here.
98
     */
99
    if ((cmap->red_max = xdev->vinfo->red_mask) == 0) {
100
	cmap->red_max = (1 << xdev->vinfo->depth) - 1;
101
	cmap->red_mult = 1;
102
    } else {
103
	for (cmap->red_mult = 1; (cmap->red_max & 1) == 0;) {
104
	    cmap->red_max >>= 1;
105
	    cmap->red_mult <<= 1;
106
	}
107
    }
108
    if (colored) {
109
	for (cmap->green_max = xdev->vinfo->green_mask, cmap->green_mult = 1;
110
	     (cmap->green_max & 1) == 0;
111
	     ) {
112
	    cmap->green_max >>= 1;
113
	    cmap->green_mult <<= 1;
114
	}
115
	for (cmap->blue_max = xdev->vinfo->blue_mask, cmap->blue_mult = 1;
116
	     (cmap->blue_max & 1) == 0;
117
	     ) {
118
	    cmap->blue_max >>= 1;
119
	    cmap->blue_mult <<= 1;
120
	}
121
    } else {
122
        cmap->green_max = cmap->blue_max = cmap->red_max;
123
        cmap->green_mult = cmap->blue_mult = cmap->red_mult;
124
    }
125
    set_std_cmap(xdev, cmap);
126
    xdev->cman.std_cmap.free_map = true;
127
    return true;
128
}
129
 
130
#endif
131
 
132
/* Allocate the dynamic color table, if needed and possible. */
133
/* Uses: vinfo, cman.num_rgb.  Sets: cman.dynamic.*. */
134
private void
135
alloc_dynamic_colors(gx_device_X * xdev, int num_colors)
136
{
137
    if (num_colors > 0) {
138
	xdev->cman.dynamic.colors = (x11_color_t **)
139
	    gs_malloc(xdev->memory, sizeof(x11_color_t *), xdev->cman.num_rgb,
140
		      "x11 cman.dynamic.colors");
141
	if (xdev->cman.dynamic.colors) {
142
	    int i;
143
 
144
	    xdev->cman.dynamic.size = xdev->cman.num_rgb;
145
	    xdev->cman.dynamic.shift = 16 - xdev->vinfo->bits_per_rgb;
146
	    for (i = 0; i < xdev->cman.num_rgb; i++)
147
		xdev->cman.dynamic.colors[i] = NULL;
148
	    xdev->cman.dynamic.max_used = min(256, num_colors);
149
	    xdev->cman.dynamic.used = 0;
150
	}
151
    }
152
}
153
 
154
/* Allocate an X color, updating the reverse map. */
155
/* Return true if the allocation was successful. */
156
private bool
157
x_alloc_color(gx_device_X *xdev, XColor *xcolor)
158
{
159
    x11_rgb_t rgb;
160
 
161
    rgb.rgb[0] = xcolor->red;
162
    rgb.rgb[1] = xcolor->green;
163
    rgb.rgb[2] = xcolor->blue;
164
    if (!XAllocColor(xdev->dpy, xdev->cmap, xcolor))
165
	return false;
166
    if (xcolor->pixel < xdev->cman.color_to_rgb.size) {
167
	x11_rgb_t *pxrgb = &xdev->cman.color_to_rgb.values[xcolor->pixel];
168
 
169
	memcpy(pxrgb->rgb, rgb.rgb, sizeof(rgb.rgb));
170
	pxrgb->defined = true;
171
    }
172
    return true;
173
}
174
 
175
/* Free X colors, updating the reverse map. */
176
private void
177
x_free_colors(gx_device_X *xdev, x_pixel *pixels /*[count]*/, int count)
178
{
179
    int i;
180
    x_pixel pixel;
181
 
182
    XFreeColors(xdev->dpy, xdev->cmap, pixels, count, 0);
183
    for (i = 0; i < count; ++i)
184
	if ((pixel = pixels[i]) < xdev->cman.color_to_rgb.size)
185
	    xdev->cman.color_to_rgb.values[pixel].defined = false;
186
}
187
 
188
/* Free a partially filled color cube or ramp. */
189
/* Uses: dpy, cmap.  Uses and sets: cman.dither_ramp. */
190
private void
191
free_ramp(gx_device_X * xdev, int num_used, int size)
192
{
193
    if (num_used - 1 > 0)
194
	x_free_colors(xdev, xdev->cman.dither_ramp + 1, num_used - 1);
195
    gs_x_free(xdev->memory, xdev->cman.dither_ramp, "x11_setup_colors");
196
    xdev->cman.dither_ramp = NULL;
197
}
198
 
199
/* Allocate and fill in a color cube or ramp. */
200
/* Return true if the operation succeeded. */
201
/* Uses: dpy, cmap, foreground, background, cman.color_mask. */
202
/* Sets: cman.dither_ramp. */
203
private bool
204
setup_cube(gx_device_X * xdev, int ramp_size, bool colors)
205
{
206
    int step, num_entries;
207
    int max_rgb = ramp_size - 1;
208
    int index;
209
 
210
    if (colors) {
211
	num_entries = ramp_size * ramp_size * ramp_size;
212
	step = 1;		/* all colors */
213
    } else {
214
	num_entries = ramp_size;
215
	step = (ramp_size + 1) * ramp_size + 1;		/* gray only */
216
    }
217
 
218
    xdev->cman.dither_ramp =
219
	(x_pixel *) gs_malloc(xdev->memory, sizeof(x_pixel), num_entries,
220
			      "gdevx setup_cube");
221
    if (xdev->cman.dither_ramp == NULL)
222
	return false;
223
 
224
    xdev->cman.dither_ramp[0] = xdev->foreground;
225
    xdev->cman.dither_ramp[num_entries - 1] = xdev->background;
226
    for (index = 1; index < num_entries - 1; index++) {
227
	int rgb_index = index * step;
228
	int q = rgb_index / ramp_size,
229
	    r = q / ramp_size,
230
	    g = q % ramp_size,
231
	    b = rgb_index % ramp_size;
232
	XColor xc;
233
 
234
	xc.red = (X_max_color_value * r / max_rgb) & xdev->cman.color_mask.red;
235
	xc.green = (X_max_color_value * g / max_rgb) & xdev->cman.color_mask.green;
236
	xc.blue = (X_max_color_value * b / max_rgb) & xdev->cman.color_mask.blue;
237
	if (!x_alloc_color(xdev, &xc)) {
238
	    free_ramp(xdev, index, num_entries);
239
	    return false;
240
	}
241
	xdev->cman.dither_ramp[index] = xc.pixel;
242
    }
243
 
244
    return true;
245
}
246
 
247
/* Setup color mapping. */
248
int
249
gdev_x_setup_colors(gx_device_X * xdev)
250
{
251
    char palette =
252
	((xdev->vinfo->class != StaticGray) &&
253
	 (xdev->vinfo->class != GrayScale) ? 'C' :	/* Color */
254
	 (xdev->vinfo->colormap_size > 2) ? 'G' :		/* GrayScale */
255
	 'M');		/* MonoChrome */
256
 
257
    if (xdev->ghostview) {
258
	Atom gv_colors = XInternAtom(xdev->dpy, "GHOSTVIEW_COLORS", False);
259
	Atom type;
260
	int format;
261
	unsigned long nitems, bytes_after;
262
	char *buf;
263
 
264
	/* Delete property if explicit dest is given */
265
	if (XGetWindowProperty(xdev->dpy, xdev->win, gv_colors, 0,
266
			       256, (xdev->dest != 0), XA_STRING,
267
			       &type, &format, &nitems, &bytes_after,
268
			       (unsigned char **)&buf) == 0 &&
269
	    type == XA_STRING) {
270
	    nitems = sscanf(buf, "%*s %ld %ld", &(xdev->foreground),
271
			    &(xdev->background));
272
	    if (nitems != 2 || (*buf != 'M' && *buf != 'G' && *buf != 'C')) {
273
		eprintf("Malformed GHOSTVIEW_COLOR property.\n");
274
		return_error(gs_error_rangecheck);
275
	    }
276
	    palette = max(palette, *buf);
277
	}
278
    } else {
279
	if (xdev->palette[0] == 'c')
280
	    xdev->palette[0] = 'C';
281
	else if (xdev->palette[0] == 'g')
282
	    xdev->palette[0] = 'G';
283
	else if (xdev->palette[0] == 'm')
284
	    xdev->palette[0] = 'M';
285
	palette = max(palette, xdev->palette[0]);
286
    }
287
 
288
    /* set up color mappings here */
289
    xdev->cman.color_mask.red = xdev->cman.color_mask.green =
290
	xdev->cman.color_mask.blue = X_max_color_value -
291
	  (X_max_color_value >> xdev->vinfo->bits_per_rgb);
292
    xdev->cman.match_mask = xdev->cman.color_mask; /* default */
293
    xdev->cman.num_rgb = 1 << xdev->vinfo->bits_per_rgb;
294
 
295
#if HaveStdCMap
296
    xdev->cman.std_cmap.map = NULL;
297
    xdev->cman.std_cmap.free_map = false;
298
#endif
299
    xdev->cman.dither_ramp = NULL;
300
    xdev->cman.dynamic.colors = NULL;
301
    xdev->cman.dynamic.size = 0;
302
    xdev->cman.dynamic.used = 0;
303
    switch (xdev->vinfo->depth) {
304
    case 1: case 2: case 4: case 8: case 16: case 24: case 32:
305
	xdev->color_info.depth = xdev->vinfo->depth;
306
	break;
307
    case 15:
308
	xdev->color_info.depth = 16;
309
	break;
310
    default:
311
	eprintf1("Unsupported X visual depth: %d\n", xdev->vinfo->depth);
312
	return_error(gs_error_rangecheck);
313
    }
314
    {	/* Set up the reverse map from pixel values to RGB. */
315
	int count = 1 << min(xdev->color_info.depth, 8);
316
 
317
	xdev->cman.color_to_rgb.values =
318
	    (x11_rgb_t *)gs_malloc(xdev->memory, sizeof(x11_rgb_t), count,
319
				   "gdevx color_to_rgb");
320
	if (xdev->cman.color_to_rgb.values) {
321
	    int i;
322
 
323
	    for (i = 0; i < count; ++i)
324
		xdev->cman.color_to_rgb.values[i].defined = false;
325
	    xdev->cman.color_to_rgb.size = count;
326
	} else
327
	    xdev->cman.color_to_rgb.size = 0;
328
    }
329
    switch ((int)palette) {
330
    case 'C':
331
	xdev->color_info.num_components = 3;
332
	xdev->color_info.max_gray =
333
	    xdev->color_info.max_color = xdev->cman.num_rgb - 1;
334
#if HaveStdCMap
335
	/* Get a standard color map if available */
336
	if (xdev->vinfo->visual == DefaultVisualOfScreen(xdev->scr)) {
337
	    xdev->cman.std_cmap.map = x_get_std_cmap(xdev, XA_RGB_DEFAULT_MAP);
338
	} else {
339
	    xdev->cman.std_cmap.map = x_get_std_cmap(xdev, XA_RGB_BEST_MAP);
340
	}
341
	if (xdev->cman.std_cmap.map ||
342
	    (xdev->vinfo->class == TrueColor && alloc_std_cmap(xdev, true))
343
	    ) {
344
	    xdev->color_info.dither_grays = xdev->color_info.dither_colors =
345
		min(xdev->cman.std_cmap.map->red_max,
346
		    min(xdev->cman.std_cmap.map->green_max,
347
			xdev->cman.std_cmap.map->blue_max)) + 1;
348
	    if (xdev->cman.std_cmap.map)
349
		set_std_cmap(xdev, xdev->cman.std_cmap.map);
350
	} else
351
#endif
352
	    /* Otherwise set up a rgb cube of our own */
353
	    /* The color cube is limited to about 1/2 of the available */
354
	    /* colormap, the user specified maxRGBRamp (usually 5), */
355
	    /* or the number of representable colors */
356
#define CUBE(r) (r*r*r)
357
#define CBRT(r) pow(r, 1.0/3.0)
358
	{
359
	    int ramp_size =
360
		min((int)CBRT(xdev->vinfo->colormap_size / 2.0),
361
		    min(xdev->maxRGBRamp, xdev->cman.num_rgb));
362
 
363
	    while (!xdev->cman.dither_ramp && ramp_size >= 2) {
364
		xdev->color_info.dither_grays =
365
		    xdev->color_info.dither_colors = ramp_size;
366
		if (!setup_cube(xdev, ramp_size, true)) {
367
#ifdef DEBUG
368
		    eprintf3("Warning: failed to allocate %dx%dx%d RGB cube.\n",
369
			     ramp_size, ramp_size, ramp_size);
370
#endif
371
		    ramp_size--;
372
		    continue;
373
		}
374
	    }
375
 
376
	    if (!xdev->cman.dither_ramp) {
377
		goto grayscale;
378
	    }
379
	}
380
 
381
	/* Allocate the dynamic color table. */
382
	alloc_dynamic_colors(xdev, CUBE(xdev->cman.num_rgb) -
383
			     CUBE(xdev->color_info.dither_colors));
384
#undef CUBE
385
#undef CBRT
386
	break;
387
    case 'G':
388
grayscale:
389
	xdev->color_info.num_components = 1;
390
	xdev->color_info.max_gray = xdev->cman.num_rgb - 1;
391
#if HaveStdCMap
392
	/* Get a standard color map if available */
393
	xdev->cman.std_cmap.map = x_get_std_cmap(xdev, XA_RGB_GRAY_MAP);
394
	if (xdev->cman.std_cmap.map ||
395
	    (xdev->vinfo->class == StaticGray && alloc_std_cmap(xdev, false))
396
	    ) {
397
	    xdev->color_info.dither_grays =
398
		xdev->cman.std_cmap.map->red_max + 1;
399
	    if (xdev->cman.std_cmap.map)
400
		set_std_cmap(xdev, xdev->cman.std_cmap.map);
401
	} else
402
#endif
403
	    /* Otherwise set up a gray ramp of our own */
404
	    /* The gray ramp is limited to about 1/2 of the available */
405
	    /* colormap, the user specified maxGrayRamp (usually 128), */
406
	    /* or the number of representable grays */
407
	{
408
	    int ramp_size = min(xdev->vinfo->colormap_size / 2,
409
				min(xdev->maxGrayRamp, xdev->cman.num_rgb));
410
 
411
	    while (!xdev->cman.dither_ramp && ramp_size >= 3) {
412
		xdev->color_info.dither_grays = ramp_size;
413
		if (!setup_cube(xdev, ramp_size, false)) {
414
#ifdef DEBUG
415
		    eprintf1("Warning: failed to allocate %d level gray ramp.\n",
416
			     ramp_size);
417
#endif
418
		    ramp_size /= 2;
419
		    continue;
420
		}
421
	    }
422
	    if (!xdev->cman.dither_ramp) {
423
		goto monochrome;
424
	    }
425
	}
426
 
427
	/* Allocate the dynamic color table. */
428
	alloc_dynamic_colors(xdev, xdev->cman.num_rgb -
429
			     xdev->color_info.dither_grays);
430
	break;
431
    case 'M':
432
monochrome:
433
	xdev->color_info.num_components = 1;
434
	xdev->color_info.max_gray = 1;
435
	xdev->color_info.dither_grays = 2;
436
	break;
437
    default:
438
	eprintf1("Unknown palette: %s\n", xdev->palette);
439
	if (xdev->cman.color_to_rgb.values) {
440
	    gs_x_free(xdev->memory, xdev->cman.color_to_rgb.values, "gdevx color_to_rgb");
441
	    xdev->cman.color_to_rgb.values = 0;
442
	}
443
	return_error(gs_error_rangecheck);
444
    }
445
 
446
#if HaveStdCMap
447
    /*
448
     * When comparing colors, if not halftoning, we must only compare as
449
     * many bits as actually fit in a pixel, even if the hardware has more.
450
     */
451
    if (!gx_device_must_halftone(xdev)) {
452
	if (xdev->cman.std_cmap.map) {
453
	    xdev->cman.match_mask.red &=
454
		X_max_color_value << xdev->cman.std_cmap.red.cv_shift;
455
	    xdev->cman.match_mask.green &=
456
		X_max_color_value << xdev->cman.std_cmap.green.cv_shift;
457
	    xdev->cman.match_mask.blue &=
458
		X_max_color_value << xdev->cman.std_cmap.blue.cv_shift;
459
	}
460
    }
461
#endif
462
 
463
    return 0;
464
}
465
 
466
/* Free the dynamic colors when doing an erasepage. */
467
/* Uses: cman.dynamic.*.  Sets: cman.dynamic.used. */
468
void
469
gdev_x_free_dynamic_colors(gx_device_X *xdev)
470
{
471
    if (xdev->cman.dynamic.colors) {
472
	int i;
473
	x11_color_t *xcp;
474
	x11_color_t *next;
475
 
476
	for (i = 0; i < xdev->cman.dynamic.size; i++) {
477
	    for (xcp = xdev->cman.dynamic.colors[i]; xcp; xcp = next) {
478
		next = xcp->next;
479
		if (xcp->color.pad)
480
		    x_free_colors(xdev, &xcp->color.pixel, 1);
481
		gs_x_free(xdev->memory, xcp, "x11_dynamic_color");
482
	    }
483
	    xdev->cman.dynamic.colors[i] = NULL;
484
	}
485
	xdev->cman.dynamic.used = 0;
486
    }
487
}
488
 
489
/*
490
 * Free storage and color map entries when closing the device.
491
 * Uses and sets: cman.{std_cmap.map, dither_ramp, dynamic.colors,
492
 * color_to_rgb}.  Uses: cman.std_cmap.free_map.
493
 */
494
void
495
gdev_x_free_colors(gx_device_X *xdev)
496
{
497
    if (xdev->cman.std_cmap.free_map) {
498
	/* XFree is declared as taking a char *, not a void *! */
499
	XFree((void *)xdev->cman.std_cmap.map);
500
	xdev->cman.std_cmap.free_map = false;
501
    }
502
    xdev->cman.std_cmap.map = 0;
503
    if (xdev->cman.dither_ramp)
504
	gs_x_free(xdev->memory, xdev->cman.dither_ramp, "x11 dither_colors");
505
    if (xdev->cman.dynamic.colors) {
506
	gdev_x_free_dynamic_colors(xdev);
507
	gs_x_free(xdev->memory, xdev->cman.dynamic.colors, "x11 cman.dynamic.colors");
508
	xdev->cman.dynamic.colors = NULL;
509
    }
510
    if (xdev->cman.color_to_rgb.values) {
511
	gs_x_free(xdev->memory, xdev->cman.color_to_rgb.values, "x11 color_to_rgb");
512
	xdev->cman.color_to_rgb.values = NULL;
513
	xdev->cman.color_to_rgb.size = 0;
514
    }
515
}
516
 
517
/* ---------------- Driver color mapping calls ---------------- */
518
 
519
/* Define a table for computing N * X_max_color_value / D for 0 <= N <= D, */
520
/* 1 <= D <= 7. */
521
/* This requires a multiply and a divide otherwise; */
522
/* integer multiply and divide are slow on all platforms. */
523
#define CV_FRACTION(n, d) ((X_color_value)(X_max_color_value * (n) / (d)))
524
#define ND(n, d) CV_FRACTION(n, d)
525
private const X_color_value cv_tab1[] = {
526
    ND(0,1), ND(1,1)
527
};
528
private const X_color_value cv_tab2[] = {
529
    ND(0,2), ND(1,2), ND(2,2)
530
};
531
private const X_color_value cv_tab3[] = {
532
    ND(0,3), ND(1,3), ND(2,3), ND(3,3)
533
};
534
private const X_color_value cv_tab4[] = {
535
    ND(0,4), ND(1,4), ND(2,4), ND(3,4), ND(4,4)
536
};
537
private const X_color_value cv_tab5[] = {
538
    ND(0,5), ND(1,5), ND(2,5), ND(3,5), ND(4,5), ND(5,5)
539
};
540
private const X_color_value cv_tab6[] = {
541
    ND(0,6), ND(1,6), ND(2,6), ND(3,6), ND(4,6), ND(5,6), ND(6,6)
542
};
543
private const X_color_value cv_tab7[] = {
544
    ND(0,7), ND(1,7), ND(2,7), ND(3,7), ND(4,7), ND(5,7), ND(6,7), ND(7,7)
545
};
546
#undef ND
547
private const X_color_value *const cv_tables[] =
548
{
549
    0, cv_tab1, cv_tab2, cv_tab3, cv_tab4, cv_tab5, cv_tab6, cv_tab7
550
};
551
 
552
/* Some C compilers don't declare the abs function in math.h. */
553
/* Provide one of our own. */
554
private inline int
555
iabs(int x)
556
{
557
    return (x < 0 ? -x : x);
558
}
559
 
560
/* Map RGB values to a pixel value. */
561
gx_color_index
562
gdev_x_map_rgb_color(gx_device * dev, const gx_color_value cv[])
563
{
564
    gx_device_X *const xdev = (gx_device_X *) dev;
565
    gx_color_value r = cv[0];
566
    gx_color_value g = cv[1];
567
    gx_color_value b = cv[2];
568
 
569
    /* X and ghostscript both use shorts for color values. */
570
    /* Set drgb to the nearest color that the device can represent. */
571
    X_color_value dr = r & xdev->cman.color_mask.red;
572
    X_color_value dg = g & xdev->cman.color_mask.green;
573
    X_color_value db = b & xdev->cman.color_mask.blue;
574
 
575
    {
576
	/* Foreground and background get special treatment: */
577
	/* They may be mapped to other colors. */
578
	/* Set mrgb to the color to be used for match testing. */
579
	X_color_value mr = r & xdev->cman.match_mask.red;
580
	X_color_value mg = g & xdev->cman.match_mask.green;
581
	X_color_value mb = b & xdev->cman.match_mask.blue;
582
 
583
	if ((mr | mg | mb) == 0) {	/* i.e., all 0 */
584
	    if_debug4('C', "[cX]%u,%u,%u => foreground = %lu\n",
585
		      r, g, b, (ulong) xdev->foreground);
586
	    return xdev->foreground;
587
	}
588
	if (mr == xdev->cman.match_mask.red &&
589
	    mg == xdev->cman.match_mask.green &&
590
	    mb == xdev->cman.match_mask.blue
591
	    ) {
592
	    if_debug4('C', "[cX]%u,%u,%u => background = %lu\n",
593
		      r, g, b, (ulong) xdev->background);
594
	    return xdev->background;
595
	}
596
    }
597
 
598
#define CV_DENOM (gx_max_color_value + 1)
599
 
600
#if HaveStdCMap
601
    /* check the standard colormap first */
602
    if (xdev->cman.std_cmap.map) {
603
	const XStandardColormap *cmap = xdev->cman.std_cmap.map;
604
 
605
	if (gx_device_has_color(xdev)) {
606
	    uint cr, cg, cb;	/* rgb cube indices */
607
	    X_color_value cvr, cvg, cvb;	/* color value on cube */
608
 
609
	    if (xdev->cman.std_cmap.fast) {
610
		cr = r >> xdev->cman.std_cmap.red.cv_shift;
611
		cvr = xdev->cman.std_cmap.red.nearest[cr];
612
		cg = g >> xdev->cman.std_cmap.green.cv_shift;
613
		cvg = xdev->cman.std_cmap.green.nearest[cg];
614
		cb = b >> xdev->cman.std_cmap.blue.cv_shift;
615
		cvb = xdev->cman.std_cmap.blue.nearest[cb];
616
	    } else {
617
		cr = r * (cmap->red_max + 1) / CV_DENOM;
618
		cg = g * (cmap->green_max + 1) / CV_DENOM;
619
		cb = b * (cmap->blue_max + 1) / CV_DENOM;
620
		cvr = X_max_color_value * cr / cmap->red_max;
621
		cvg = X_max_color_value * cg / cmap->green_max;
622
		cvb = X_max_color_value * cb / cmap->blue_max;
623
	    }
624
	    if ((iabs((int)r - (int)cvr) & xdev->cman.match_mask.red) == 0 &&
625
		(iabs((int)g - (int)cvg) & xdev->cman.match_mask.green) == 0 &&
626
		(iabs((int)b - (int)cvb) & xdev->cman.match_mask.blue) == 0) {
627
		gx_color_index pixel =
628
		    (xdev->cman.std_cmap.fast ?
629
		     (cr << xdev->cman.std_cmap.red.pixel_shift) +
630
		     (cg << xdev->cman.std_cmap.green.pixel_shift) +
631
		     (cb << xdev->cman.std_cmap.blue.pixel_shift) :
632
		     cr * cmap->red_mult + cg * cmap->green_mult +
633
		     cb * cmap->blue_mult) + cmap->base_pixel;
634
 
635
		if_debug4('C', "[cX]%u,%u,%u (std cmap) => %lu\n",
636
			  r, g, b, pixel);
637
		return pixel;
638
	    }
639
	    if_debug3('C', "[cX]%u,%u,%u (std cmap fails)\n", r, g, b);
640
	} else {
641
	    uint cr;
642
	    X_color_value cvr;
643
 
644
	    cr = r * (cmap->red_max + 1) / CV_DENOM;
645
	    cvr = X_max_color_value * cr / cmap->red_max;
646
	    if ((iabs((int)r - (int)cvr) & xdev->cman.match_mask.red) == 0) {
647
		gx_color_index pixel = cr * cmap->red_mult + cmap->base_pixel;
648
 
649
		if_debug2('C', "[cX]%u (std cmap) => %lu\n", r, pixel);
650
		return pixel;
651
	    }
652
	    if_debug1('C', "[cX]%u (std cmap fails)\n", r);
653
	}
654
    } else
655
#endif
656
 
657
	/* If there is no standard colormap, check the dither cube/ramp */
658
    if (xdev->cman.dither_ramp) {
659
	if (gx_device_has_color(xdev)) {
660
	    uint cr, cg, cb;	/* rgb cube indices */
661
	    X_color_value cvr, cvg, cvb;	/* color value on cube */
662
	    int dither_rgb = xdev->color_info.dither_colors;
663
	    uint max_rgb = dither_rgb - 1;
664
 
665
	    cr = r * dither_rgb / CV_DENOM;
666
	    cg = g * dither_rgb / CV_DENOM;
667
	    cb = b * dither_rgb / CV_DENOM;
668
	    if (max_rgb < countof(cv_tables)) {
669
		const ushort *cv_tab = cv_tables[max_rgb];
670
 
671
		cvr = cv_tab[cr];
672
		cvg = cv_tab[cg];
673
		cvb = cv_tab[cb];
674
	    } else {
675
		cvr = CV_FRACTION(cr, max_rgb);
676
		cvg = CV_FRACTION(cg, max_rgb);
677
		cvb = CV_FRACTION(cb, max_rgb);
678
	    }
679
	    if ((iabs((int)r - (int)cvr) & xdev->cman.match_mask.red) == 0 &&
680
		(iabs((int)g - (int)cvg) & xdev->cman.match_mask.green) == 0 &&
681
		(iabs((int)b - (int)cvb) & xdev->cman.match_mask.blue) == 0) {
682
		gx_color_index pixel =
683
		    xdev->cman.dither_ramp[CUBE_INDEX(cr, cg, cb)];
684
 
685
		if_debug4('C', "[cX]%u,%u,%u (dither cube) => %lu\n",
686
			  r, g, b, pixel);
687
		return pixel;
688
	    }
689
	    if_debug3('C', "[cX]%u,%u,%u (dither cube fails)\n", r, g, b);
690
	} else {
691
	    uint cr;
692
	    X_color_value cvr;
693
	    int dither_grays = xdev->color_info.dither_grays;
694
	    uint max_gray = dither_grays - 1;
695
 
696
	    cr = r * dither_grays / CV_DENOM;
697
	    cvr = (X_max_color_value * cr / max_gray);
698
	    if ((iabs((int)r - (int)cvr) & xdev->cman.match_mask.red) == 0) {
699
		gx_color_index pixel = xdev->cman.dither_ramp[cr];
700
 
701
		if_debug2('C', "[cX]%u (dither ramp) => %lu\n", r, pixel);
702
		return pixel;
703
	    }
704
	    if_debug1('C', "[cX]%u (dither ramp fails)\n", r);
705
	}
706
    }
707
 
708
    /* Finally look through the list of dynamic colors */
709
    if (xdev->cman.dynamic.colors) {
710
	int i = (dr ^ dg ^ db) >> xdev->cman.dynamic.shift;
711
	x11_color_t *xcp = xdev->cman.dynamic.colors[i];
712
	x11_color_t *prev = NULL;
713
	XColor xc;
714
 
715
	for (; xcp; prev = xcp, xcp = xcp->next)
716
	    if (xcp->color.red == dr && xcp->color.green == dg &&
717
		xcp->color.blue == db) {
718
		/* Promote the found entry to the front of the list. */
719
		if (prev) {
720
		    prev->next = xcp->next;
721
		    xcp->next = xdev->cman.dynamic.colors[i];
722
		    xdev->cman.dynamic.colors[i] = xcp;
723
		}
724
		if (xcp->color.pad) {
725
		    if_debug4('C', "[cX]%u,%u,%u (dynamic) => %lu\n",
726
			      r, g, b, (ulong) xcp->color.pixel);
727
		    return xcp->color.pixel;
728
		} else {
729
		    if_debug3('C', "[cX]%u,%u,%u (dynamic) => missing\n",
730
			      r, g, b);
731
		    return gx_no_color_index;
732
		}
733
	    }
734
 
735
	/* If not in our list of dynamic colors, */
736
	/* ask the X server and add an entry. */
737
	/* First check if dynamic table is exhausted */
738
	if (xdev->cman.dynamic.used > xdev->cman.dynamic.max_used) {
739
	    if_debug3('C', "[cX]%u,%u,%u (dynamic) => full\n", r, g, b);
740
	    return gx_no_color_index;
741
	}
742
	xcp = (x11_color_t *)
743
	    gs_malloc(xdev->memory, sizeof(x11_color_t), 1, "x11_dynamic_color");
744
	if (!xcp)
745
	    return gx_no_color_index;
746
	xc.red = xcp->color.red = dr;
747
	xc.green = xcp->color.green = dg;
748
	xc.blue = xcp->color.blue = db;
749
	xcp->next = xdev->cman.dynamic.colors[i];
750
	xdev->cman.dynamic.colors[i] = xcp;
751
	xdev->cman.dynamic.used++;
752
	if (x_alloc_color(xdev, &xc)) {
753
	    xcp->color.pixel = xc.pixel;
754
	    xcp->color.pad = true;
755
	    if_debug5('c', "[cX]0x%x,0x%x,0x%x (dynamic) => added [%d]%lu\n",
756
		      dr, dg, db, xdev->cman.dynamic.used - 1,
757
		      (ulong)xc.pixel);
758
	    return xc.pixel;
759
	} else {
760
	    xcp->color.pad = false;
761
	    if_debug3('c', "[cX]0x%x,0x%x,0x%x (dynamic) => can't alloc\n",
762
		      dr, dg, db);
763
	    return gx_no_color_index;
764
	}
765
    }
766
    if_debug3('C', "[cX]%u,%u,%u fails\n", r, g, b);
767
    return gx_no_color_index;
768
#undef CV_DENOM
769
}
770
 
771
 
772
/* Map a pixel value back to r-g-b. */
773
int
774
gdev_x_map_color_rgb(gx_device * dev, gx_color_index color,
775
		     gx_color_value prgb[3])
776
{
777
    const gx_device_X *const xdev = (const gx_device_X *) dev;
778
#if HaveStdCMap
779
    const XStandardColormap *cmap = xdev->cman.std_cmap.map;
780
#endif
781
 
782
    if (color == xdev->foreground) {
783
	prgb[0] = prgb[1] = prgb[2] = 0;
784
	return 0;
785
    }
786
    if (color == xdev->background) {
787
	prgb[0] = prgb[1] = prgb[2] = gx_max_color_value;
788
	return 0;
789
    }
790
    if (color < xdev->cman.color_to_rgb.size) {
791
	const x11_rgb_t *pxrgb = &xdev->cman.color_to_rgb.values[color];
792
 
793
	if (pxrgb->defined) {
794
	    prgb[0] = pxrgb->rgb[0];
795
	    prgb[1] = pxrgb->rgb[1];
796
	    prgb[2] = pxrgb->rgb[2];
797
	    return 0;
798
	}
799
#if HaveStdCMap
800
    }
801
 
802
    /* Check the standard colormap. */
803
    if (cmap) {
804
	if (color >= cmap->base_pixel) {
805
	    x_pixel value = color - cmap->base_pixel;
806
	    uint r = (value / cmap->red_mult) % (cmap->red_max + 1);
807
	    uint g = (value / cmap->green_mult) % (cmap->green_max + 1);
808
	    uint b = (value / cmap->blue_mult) % (cmap->blue_max + 1);
809
 
810
	    if (value == r * cmap->red_mult + g * cmap->green_mult +
811
		b * cmap->blue_mult) {
812
		/* When mapping color buckets back to specific colors,
813
		 * we can choose to map them to the darkest shades
814
		 * (e.g., 0, 1/3, 2/3), to the lightest shades (e.g.,
815
		 * 1/3-epsilon, 2/3-epsilon, 1-epsilon), to the middle
816
		 * shades (e.g., 1/6, 1/2, 5/6), or for maximum range
817
		 * (e.g., 0, 1/2, 1).  The last of these matches the
818
		 * assumptions of the halftoning code, so that is what
819
		 * we choose.
820
		 */
821
		prgb[0] = r * gx_max_color_value / cmap->red_max;
822
		prgb[1] = g * gx_max_color_value / cmap->green_max;
823
		prgb[2] = b * gx_max_color_value / cmap->blue_max;
824
		return 0;
825
	    }
826
	}
827
    }
828
    if (color < xdev->cman.color_to_rgb.size) {
829
#endif
830
	/* Error -- undefined pixel value. */
831
	return_error(gs_error_unknownerror);
832
    }
833
    /*
834
     * Check the dither cube/ramp.  This is hardly ever used, since if
835
     * there are few enough colors to require dithering, the pixel values
836
     * are likely to be small enough to index color_to_rgb.
837
     */
838
    if (xdev->cman.dither_ramp) {
839
	if (gx_device_has_color(xdev)) {
840
	    int size = xdev->color_info.dither_colors;
841
	    int size3 = size * size * size;
842
	    int i;
843
 
844
	    for (i = 0; i < size3; ++i)
845
		if (xdev->cman.dither_ramp[i] == color) {
846
		    uint max_rgb = size - 1;
847
		    uint q = i / size,
848
			r = q / size,
849
			g = q % size,
850
			b = i % size;
851
 
852
		    /*
853
		     * See above regarding the choice of color mapping
854
		     * algorithm.
855
		     */
856
		    prgb[0] = r * gx_max_color_value / max_rgb;
857
		    prgb[1] = g * gx_max_color_value / max_rgb;
858
		    prgb[2] = b * gx_max_color_value / max_rgb;
859
		    return 0;
860
		}
861
	} else {
862
	    int size = xdev->color_info.dither_grays;
863
	    int i;
864
 
865
	    for (i = 0; i < size; ++i)
866
		if (xdev->cman.dither_ramp[i] == color) {
867
		    prgb[0] = prgb[1] = prgb[2] =
868
			i * gx_max_color_value / (size - 1);
869
		    return 0;
870
		}
871
	}
872
    }
873
 
874
    /* Finally, search the list of dynamic colors. */
875
    if (xdev->cman.dynamic.colors) {
876
	int i;
877
	const x11_color_t *xcp;
878
 
879
	for (i = xdev->cman.dynamic.size; --i >= 0;)
880
	    for (xcp = xdev->cman.dynamic.colors[i]; xcp; xcp = xcp->next)
881
		if (xcp->color.pixel == color && xcp->color.pad) {
882
		    prgb[0] = xcp->color.red;
883
		    prgb[1] = xcp->color.green;
884
		    prgb[2] = xcp->color.blue;
885
		    return 0;
886
		}
887
    }
888
 
889
    /* Not found -- not possible! */
890
    return_error(gs_error_unknownerror);
891
}