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/* Copyright (C) 1999 Aladdin Enterprises. All rights reserved.
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This software is provided AS-IS with no warranty, either express or
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implied.
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This software is distributed under license and may not be copied,
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modified or distributed except as expressly authorized under the terms
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of the license contained in the file LICENSE in this distribution.
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For more information about licensing, please refer to
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http://www.ghostscript.com/licensing/. For information on
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commercial licensing, go to http://www.artifex.com/licensing/ or
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contact Artifex Software, Inc., 101 Lucas Valley Road #110,
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San Rafael, CA 94903, U.S.A., +1(415)492-9861.
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*/
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/* $Id: gdevxcmp.c,v 1.9 2004/08/04 19:36:12 stefan Exp $ */
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/* X Windows color mapping */
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#include "math_.h"
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#include "x_.h"
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#include "gx.h" /* for gx_bitmap; includes std.h */
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#include "gserrors.h"
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#include "gxdevice.h"
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#include "gdevx.h"
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/* ---------------- Utilities ---------------- */
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private void
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gs_x_free(gs_memory_t *mem, void *obj, client_name_t cname)
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{
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gs_free(mem, obj, 0 /*ignored*/, 0 /*ignored*/, cname);
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}
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/* ---------------- Color mapping setup / cleanup ---------------- */
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#if HaveStdCMap
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/* Install a standard color map in the device. */
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/* Sets std_cmap.* except for free_map. */
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private bool
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set_cmap_values(x11_cmap_values_t *values, int maxv, int mult)
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{
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int i;
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if (maxv < 1 || maxv > 63 || (maxv & (maxv + 1)) ||
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(mult & (mult - 1))
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)
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return false;
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values->cv_shift = 16 - small_exact_log2(maxv + 1);
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for (i = 0; i <= maxv; ++i)
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values->nearest[i] = X_max_color_value * i / maxv;
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for (i = 0; mult != (1 << i); ++i)
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DO_NOTHING;
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values->pixel_shift = i;
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return true;
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}
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private void
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set_std_cmap(gx_device_X *xdev, XStandardColormap *map)
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{
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xdev->cman.std_cmap.map = map;
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xdev->cman.std_cmap.fast =
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set_cmap_values(&xdev->cman.std_cmap.red, map->red_max, map->red_mult) &&
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set_cmap_values(&xdev->cman.std_cmap.green, map->green_max, map->green_mult) &&
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set_cmap_values(&xdev->cman.std_cmap.blue, map->blue_max, map->blue_mult);
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}
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/* Get the Standard colormap if available. */
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/* Uses: dpy, scr, cmap. */
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private XStandardColormap *
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x_get_std_cmap(gx_device_X * xdev, Atom prop)
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{
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int i;
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XStandardColormap *scmap, *sp;
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int nitems;
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if (XGetRGBColormaps(xdev->dpy, RootWindowOfScreen(xdev->scr),
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&scmap, &nitems, prop))
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for (i = 0, sp = scmap; i < nitems; i++, sp++)
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if (xdev->cmap == sp->colormap)
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return sp;
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return NULL;
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}
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/* Create a Standard colormap for a TrueColor or StaticGray display. */
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/* Return true if the allocation was successful. */
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/* Uses: vinfo. Sets: std_cmap.*. */
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private bool
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alloc_std_cmap(gx_device_X *xdev, bool colored)
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{
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XStandardColormap *cmap = XAllocStandardColormap();
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if (cmap == 0)
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return false; /* can't allocate */
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/*
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* Some buggy X servers (including XFree86) don't set any of the
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* _mask values for StaticGray visuals. Compensate for that here.
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*/
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if ((cmap->red_max = xdev->vinfo->red_mask) == 0) {
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cmap->red_max = (1 << xdev->vinfo->depth) - 1;
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cmap->red_mult = 1;
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} else {
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for (cmap->red_mult = 1; (cmap->red_max & 1) == 0;) {
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cmap->red_max >>= 1;
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cmap->red_mult <<= 1;
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}
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}
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if (colored) {
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for (cmap->green_max = xdev->vinfo->green_mask, cmap->green_mult = 1;
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(cmap->green_max & 1) == 0;
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) {
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cmap->green_max >>= 1;
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cmap->green_mult <<= 1;
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}
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for (cmap->blue_max = xdev->vinfo->blue_mask, cmap->blue_mult = 1;
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(cmap->blue_max & 1) == 0;
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) {
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cmap->blue_max >>= 1;
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cmap->blue_mult <<= 1;
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}
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} else {
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cmap->green_max = cmap->blue_max = cmap->red_max;
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cmap->green_mult = cmap->blue_mult = cmap->red_mult;
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}
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set_std_cmap(xdev, cmap);
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xdev->cman.std_cmap.free_map = true;
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return true;
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}
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#endif
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/* Allocate the dynamic color table, if needed and possible. */
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/* Uses: vinfo, cman.num_rgb. Sets: cman.dynamic.*. */
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private void
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alloc_dynamic_colors(gx_device_X * xdev, int num_colors)
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{
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if (num_colors > 0) {
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xdev->cman.dynamic.colors = (x11_color_t **)
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gs_malloc(xdev->memory, sizeof(x11_color_t *), xdev->cman.num_rgb,
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"x11 cman.dynamic.colors");
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if (xdev->cman.dynamic.colors) {
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int i;
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xdev->cman.dynamic.size = xdev->cman.num_rgb;
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xdev->cman.dynamic.shift = 16 - xdev->vinfo->bits_per_rgb;
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for (i = 0; i < xdev->cman.num_rgb; i++)
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xdev->cman.dynamic.colors[i] = NULL;
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xdev->cman.dynamic.max_used = min(256, num_colors);
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xdev->cman.dynamic.used = 0;
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}
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}
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}
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/* Allocate an X color, updating the reverse map. */
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/* Return true if the allocation was successful. */
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private bool
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x_alloc_color(gx_device_X *xdev, XColor *xcolor)
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{
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x11_rgb_t rgb;
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rgb.rgb[0] = xcolor->red;
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rgb.rgb[1] = xcolor->green;
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rgb.rgb[2] = xcolor->blue;
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if (!XAllocColor(xdev->dpy, xdev->cmap, xcolor))
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return false;
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if (xcolor->pixel < xdev->cman.color_to_rgb.size) {
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x11_rgb_t *pxrgb = &xdev->cman.color_to_rgb.values[xcolor->pixel];
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memcpy(pxrgb->rgb, rgb.rgb, sizeof(rgb.rgb));
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pxrgb->defined = true;
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}
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return true;
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}
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/* Free X colors, updating the reverse map. */
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private void
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x_free_colors(gx_device_X *xdev, x_pixel *pixels /*[count]*/, int count)
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{
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int i;
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x_pixel pixel;
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XFreeColors(xdev->dpy, xdev->cmap, pixels, count, 0);
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for (i = 0; i < count; ++i)
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if ((pixel = pixels[i]) < xdev->cman.color_to_rgb.size)
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xdev->cman.color_to_rgb.values[pixel].defined = false;
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}
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/* Free a partially filled color cube or ramp. */
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/* Uses: dpy, cmap. Uses and sets: cman.dither_ramp. */
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private void
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free_ramp(gx_device_X * xdev, int num_used, int size)
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{
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if (num_used - 1 > 0)
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x_free_colors(xdev, xdev->cman.dither_ramp + 1, num_used - 1);
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gs_x_free(xdev->memory, xdev->cman.dither_ramp, "x11_setup_colors");
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xdev->cman.dither_ramp = NULL;
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}
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/* Allocate and fill in a color cube or ramp. */
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/* Return true if the operation succeeded. */
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/* Uses: dpy, cmap, foreground, background, cman.color_mask. */
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/* Sets: cman.dither_ramp. */
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private bool
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setup_cube(gx_device_X * xdev, int ramp_size, bool colors)
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{
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int step, num_entries;
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int max_rgb = ramp_size - 1;
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int index;
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if (colors) {
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num_entries = ramp_size * ramp_size * ramp_size;
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step = 1; /* all colors */
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} else {
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num_entries = ramp_size;
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step = (ramp_size + 1) * ramp_size + 1; /* gray only */
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}
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xdev->cman.dither_ramp =
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(x_pixel *) gs_malloc(xdev->memory, sizeof(x_pixel), num_entries,
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"gdevx setup_cube");
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if (xdev->cman.dither_ramp == NULL)
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return false;
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xdev->cman.dither_ramp[0] = xdev->foreground;
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xdev->cman.dither_ramp[num_entries - 1] = xdev->background;
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for (index = 1; index < num_entries - 1; index++) {
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int rgb_index = index * step;
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int q = rgb_index / ramp_size,
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r = q / ramp_size,
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g = q % ramp_size,
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b = rgb_index % ramp_size;
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XColor xc;
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xc.red = (X_max_color_value * r / max_rgb) & xdev->cman.color_mask.red;
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xc.green = (X_max_color_value * g / max_rgb) & xdev->cman.color_mask.green;
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xc.blue = (X_max_color_value * b / max_rgb) & xdev->cman.color_mask.blue;
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if (!x_alloc_color(xdev, &xc)) {
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free_ramp(xdev, index, num_entries);
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return false;
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}
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xdev->cman.dither_ramp[index] = xc.pixel;
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}
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return true;
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}
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/* Setup color mapping. */
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int
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gdev_x_setup_colors(gx_device_X * xdev)
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{
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char palette =
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((xdev->vinfo->class != StaticGray) &&
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(xdev->vinfo->class != GrayScale) ? 'C' : /* Color */
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(xdev->vinfo->colormap_size > 2) ? 'G' : /* GrayScale */
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'M'); /* MonoChrome */
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if (xdev->ghostview) {
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Atom gv_colors = XInternAtom(xdev->dpy, "GHOSTVIEW_COLORS", False);
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Atom type;
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int format;
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unsigned long nitems, bytes_after;
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char *buf;
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/* Delete property if explicit dest is given */
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if (XGetWindowProperty(xdev->dpy, xdev->win, gv_colors, 0,
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256, (xdev->dest != 0), XA_STRING,
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&type, &format, &nitems, &bytes_after,
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(unsigned char **)&buf) == 0 &&
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type == XA_STRING) {
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nitems = sscanf(buf, "%*s %ld %ld", &(xdev->foreground),
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&(xdev->background));
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if (nitems != 2 || (*buf != 'M' && *buf != 'G' && *buf != 'C')) {
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eprintf("Malformed GHOSTVIEW_COLOR property.\n");
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return_error(gs_error_rangecheck);
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}
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palette = max(palette, *buf);
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}
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} else {
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if (xdev->palette[0] == 'c')
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xdev->palette[0] = 'C';
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else if (xdev->palette[0] == 'g')
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xdev->palette[0] = 'G';
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else if (xdev->palette[0] == 'm')
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xdev->palette[0] = 'M';
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palette = max(palette, xdev->palette[0]);
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}
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/* set up color mappings here */
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xdev->cman.color_mask.red = xdev->cman.color_mask.green =
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xdev->cman.color_mask.blue = X_max_color_value -
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(X_max_color_value >> xdev->vinfo->bits_per_rgb);
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xdev->cman.match_mask = xdev->cman.color_mask; /* default */
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xdev->cman.num_rgb = 1 << xdev->vinfo->bits_per_rgb;
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#if HaveStdCMap
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xdev->cman.std_cmap.map = NULL;
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xdev->cman.std_cmap.free_map = false;
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#endif
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xdev->cman.dither_ramp = NULL;
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xdev->cman.dynamic.colors = NULL;
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xdev->cman.dynamic.size = 0;
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xdev->cman.dynamic.used = 0;
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switch (xdev->vinfo->depth) {
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case 1: case 2: case 4: case 8: case 16: case 24: case 32:
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xdev->color_info.depth = xdev->vinfo->depth;
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break;
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case 15:
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xdev->color_info.depth = 16;
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break;
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default:
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eprintf1("Unsupported X visual depth: %d\n", xdev->vinfo->depth);
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return_error(gs_error_rangecheck);
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}
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{ /* Set up the reverse map from pixel values to RGB. */
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int count = 1 << min(xdev->color_info.depth, 8);
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xdev->cman.color_to_rgb.values =
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(x11_rgb_t *)gs_malloc(xdev->memory, sizeof(x11_rgb_t), count,
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"gdevx color_to_rgb");
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if (xdev->cman.color_to_rgb.values) {
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int i;
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for (i = 0; i < count; ++i)
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xdev->cman.color_to_rgb.values[i].defined = false;
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|
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 |
}
|