create.c revision c378da89
1a966c04fSmrg/*
2a966c04fSmrg * Copyright (C) 1989-95 GROUPE BULL
3a966c04fSmrg *
4a966c04fSmrg * Permission is hereby granted, free of charge, to any person obtaining a copy
5a966c04fSmrg * of this software and associated documentation files (the "Software"), to
6a966c04fSmrg * deal in the Software without restriction, including without limitation the
7a966c04fSmrg * rights to use, copy, modify, merge, publish, distribute, sublicense, and/or
8a966c04fSmrg * sell copies of the Software, and to permit persons to whom the Software is
9a966c04fSmrg * furnished to do so, subject to the following conditions:
10a966c04fSmrg *
11a966c04fSmrg * The above copyright notice and this permission notice shall be included in
12a966c04fSmrg * all copies or substantial portions of the Software.
13a966c04fSmrg *
14a966c04fSmrg * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
15a966c04fSmrg * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
16a966c04fSmrg * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
17a966c04fSmrg * GROUPE BULL BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN
18a966c04fSmrg * AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
19a966c04fSmrg * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
20a966c04fSmrg *
21a966c04fSmrg * Except as contained in this notice, the name of GROUPE BULL shall not be
22a966c04fSmrg * used in advertising or otherwise to promote the sale, use or other dealings
23a966c04fSmrg * in this Software without prior written authorization from GROUPE BULL.
24a966c04fSmrg */
25a966c04fSmrg
26a966c04fSmrg/*****************************************************************************\
27a966c04fSmrg* create.c:                                                                   *
28a966c04fSmrg*                                                                             *
29a966c04fSmrg*  XPM library                                                                *
30a966c04fSmrg*  Create an X image and possibly its related shape mask                      *
31a966c04fSmrg*  from the given XpmImage.                                                   *
32a966c04fSmrg*                                                                             *
33a966c04fSmrg*  Developed by Arnaud Le Hors                                                *
34a966c04fSmrg\*****************************************************************************/
35a966c04fSmrg
36a966c04fSmrg/*
37a966c04fSmrg * The code related to FOR_MSW has been added by
38a966c04fSmrg * HeDu (hedu@cul-ipn.uni-kiel.de) 4/94
39a966c04fSmrg */
40a966c04fSmrg
41a966c04fSmrg/*
42a966c04fSmrg * The code related to AMIGA has been added by
43a966c04fSmrg * Lorens Younes (d93-hyo@nada.kth.se) 4/96
44a966c04fSmrg */
45a966c04fSmrg
46a966c04fSmrg/* October 2004, source code review by Thomas Biege <thomas@suse.de> */
47a966c04fSmrg
48a966c04fSmrg#ifdef HAVE_CONFIG_H
49a966c04fSmrg#include <config.h>
50a966c04fSmrg#endif
51a966c04fSmrg#include "XpmI.h"
52a966c04fSmrg#include <ctype.h>
53a966c04fSmrg
54a966c04fSmrgLFUNC(xpmVisualType, int, (Visual *visual));
55a966c04fSmrg
56a966c04fSmrgLFUNC(AllocColor, int, (Display *display, Colormap colormap,
57a966c04fSmrg			char *colorname, XColor *xcolor, void *closure));
58a966c04fSmrgLFUNC(FreeColors, int, (Display *display, Colormap colormap,
59a966c04fSmrg			Pixel *pixels, int n, void *closure));
60a966c04fSmrg
61a966c04fSmrg#ifndef FOR_MSW
62a966c04fSmrgLFUNC(SetCloseColor, int, (Display *display, Colormap colormap,
63a966c04fSmrg			   Visual *visual, XColor *col,
64a966c04fSmrg			   Pixel *image_pixel, Pixel *mask_pixel,
65a966c04fSmrg			   Pixel *alloc_pixels, unsigned int *nalloc_pixels,
66a966c04fSmrg			   XpmAttributes *attributes, XColor *cols, int ncols,
67a966c04fSmrg			   XpmAllocColorFunc allocColor, void *closure));
68a966c04fSmrg#else
69a966c04fSmrg/* let the window system take care of close colors */
70a966c04fSmrg#endif
71a966c04fSmrg
72a966c04fSmrgLFUNC(SetColor, int, (Display *display, Colormap colormap, Visual *visual,
73a966c04fSmrg		      char *colorname, unsigned int color_index,
74a966c04fSmrg		      Pixel *image_pixel, Pixel *mask_pixel,
75a966c04fSmrg		      unsigned int *mask_pixel_index,
76a966c04fSmrg		      Pixel *alloc_pixels, unsigned int *nalloc_pixels,
77a966c04fSmrg		      Pixel *used_pixels, unsigned int *nused_pixels,
78a966c04fSmrg		      XpmAttributes *attributes, XColor *cols, int ncols,
79a966c04fSmrg		      XpmAllocColorFunc allocColor, void *closure));
80a966c04fSmrg
81a966c04fSmrgLFUNC(CreateXImage, int, (Display *display, Visual *visual,
82a966c04fSmrg			  unsigned int depth, int format, unsigned int width,
83a966c04fSmrg                          unsigned int height, XImage **image_return));
84a966c04fSmrg
85a966c04fSmrgLFUNC(CreateColors, int, (Display *display, XpmAttributes *attributes,
86a966c04fSmrg                          XpmColor *colors, unsigned int ncolors,
87a966c04fSmrg                          Pixel *image_pixels, Pixel *mask_pixels,
88a966c04fSmrg                          unsigned int *mask_pixel_index,
89a966c04fSmrg                          Pixel *alloc_pixels, unsigned int *nalloc_pixels,
90a966c04fSmrg                          Pixel *used_pixels, unsigned int *nused_pixels));
91a966c04fSmrg
92a966c04fSmrg#ifndef FOR_MSW
93a966c04fSmrgLFUNC(ParseAndPutPixels, int, (xpmData *data, unsigned int width,
94a966c04fSmrg			       unsigned int height, unsigned int ncolors,
95a966c04fSmrg			       unsigned int cpp, XpmColor *colorTable,
96a966c04fSmrg			       xpmHashTable *hashtable,
97a966c04fSmrg			       XImage *image, Pixel *image_pixels,
98a966c04fSmrg			       XImage *mask, Pixel *mask_pixels));
99a966c04fSmrg#else  /* FOR_MSW */
100a966c04fSmrgLFUNC(ParseAndPutPixels, int, (Display *dc, xpmData *data, unsigned int width,
101a966c04fSmrg			       unsigned int height, unsigned int ncolors,
102a966c04fSmrg			       unsigned int cpp, XpmColor *colorTable,
103a966c04fSmrg			       xpmHashTable *hashtable,
104a966c04fSmrg			       XImage *image, Pixel *image_pixels,
105a966c04fSmrg			       XImage *mask, Pixel *mask_pixels));
106a966c04fSmrg#endif
107a966c04fSmrg
108a966c04fSmrg#ifndef FOR_MSW
109a966c04fSmrg# ifndef AMIGA
110a966c04fSmrg/* XImage pixel routines */
111a966c04fSmrgLFUNC(PutImagePixels, void, (XImage *image, unsigned int width,
112a966c04fSmrg			     unsigned int height, unsigned int *pixelindex,
113a966c04fSmrg			     Pixel *pixels));
114a966c04fSmrg
115a966c04fSmrgLFUNC(PutImagePixels32, void, (XImage *image, unsigned int width,
116a966c04fSmrg			       unsigned int height, unsigned int *pixelindex,
117a966c04fSmrg			       Pixel *pixels));
118a966c04fSmrg
119a966c04fSmrgLFUNC(PutImagePixels16, void, (XImage *image, unsigned int width,
120a966c04fSmrg			       unsigned int height, unsigned int *pixelindex,
121a966c04fSmrg			       Pixel *pixels));
122a966c04fSmrg
123a966c04fSmrgLFUNC(PutImagePixels8, void, (XImage *image, unsigned int width,
124a966c04fSmrg			      unsigned int height, unsigned int *pixelindex,
125a966c04fSmrg			      Pixel *pixels));
126a966c04fSmrg
127a966c04fSmrgLFUNC(PutImagePixels1, void, (XImage *image, unsigned int width,
128a966c04fSmrg			      unsigned int height, unsigned int *pixelindex,
129a966c04fSmrg			      Pixel *pixels));
130a966c04fSmrg
131a966c04fSmrgLFUNC(PutPixel1, int, (XImage *ximage, int x, int y, unsigned long pixel));
132a966c04fSmrgLFUNC(PutPixel, int, (XImage *ximage, int x, int y, unsigned long pixel));
133a966c04fSmrg#if !defined(WORD64) && !defined(LONG64)
134a966c04fSmrgLFUNC(PutPixel32, int, (XImage *ximage, int x, int y, unsigned long pixel));
135a966c04fSmrg#endif
136a966c04fSmrgLFUNC(PutPixel32MSB, int, (XImage *ximage, int x, int y, unsigned long pixel));
137a966c04fSmrgLFUNC(PutPixel32LSB, int, (XImage *ximage, int x, int y, unsigned long pixel));
138a966c04fSmrgLFUNC(PutPixel16MSB, int, (XImage *ximage, int x, int y, unsigned long pixel));
139a966c04fSmrgLFUNC(PutPixel16LSB, int, (XImage *ximage, int x, int y, unsigned long pixel));
140a966c04fSmrgLFUNC(PutPixel8, int, (XImage *ximage, int x, int y, unsigned long pixel));
141a966c04fSmrgLFUNC(PutPixel1MSB, int, (XImage *ximage, int x, int y, unsigned long pixel));
142a966c04fSmrgLFUNC(PutPixel1LSB, int, (XImage *ximage, int x, int y, unsigned long pixel));
143a966c04fSmrg
144a966c04fSmrg# else /* AMIGA */
145a966c04fSmrgLFUNC(APutImagePixels, void, (XImage *ximage, unsigned int width,
146a966c04fSmrg			      unsigned int height, unsigned int *pixelindex,
147a966c04fSmrg			      Pixel *pixels));
148a966c04fSmrg# endif/* AMIGA */
149a966c04fSmrg#else  /* FOR_MSW */
150a966c04fSmrg/* FOR_MSW pixel routine */
151a966c04fSmrgLFUNC(MSWPutImagePixels, void, (Display *dc, XImage *image,
152a966c04fSmrg				unsigned int width, unsigned int height,
153a966c04fSmrg				unsigned int *pixelindex, Pixel *pixels));
154a966c04fSmrg#endif /* FOR_MSW */
155a966c04fSmrg
156a966c04fSmrg#ifdef NEED_STRCASECMP
157a966c04fSmrgFUNC(xpmstrcasecmp, int, (char *s1, char *s2));
158a966c04fSmrg
159a966c04fSmrg/*
160a966c04fSmrg * in case strcasecmp is not provided by the system here is one
161a966c04fSmrg * which does the trick
162a966c04fSmrg */
163a966c04fSmrgint
1642e2dd055Smrgxpmstrcasecmp(
1652e2dd055Smrg    register char	*s1,
1662e2dd055Smrg    register char	*s2)
167a966c04fSmrg{
168a966c04fSmrg    register int c1, c2;
169a966c04fSmrg
170a966c04fSmrg    while (*s1 && *s2) {
171a966c04fSmrg	c1 = tolower(*s1);
172a966c04fSmrg	c2 = tolower(*s2);
173a966c04fSmrg	if (c1 != c2)
174a966c04fSmrg	    return (c1 - c2);
175a966c04fSmrg	s1++;
176a966c04fSmrg	s2++;
177a966c04fSmrg    }
178a966c04fSmrg    return (int) (*s1 - *s2);
179a966c04fSmrg}
180a966c04fSmrg
181a966c04fSmrg#endif
182a966c04fSmrg
183a966c04fSmrg/*
184a966c04fSmrg * return the default color key related to the given visual
185a966c04fSmrg */
186a966c04fSmrgstatic int
1872e2dd055SmrgxpmVisualType(Visual *visual)
188a966c04fSmrg{
189a966c04fSmrg#ifndef FOR_MSW
190a966c04fSmrg# ifndef AMIGA
191a966c04fSmrg    switch (visual->class) {
192a966c04fSmrg    case StaticGray:
193a966c04fSmrg    case GrayScale:
194a966c04fSmrg	switch (visual->map_entries) {
195a966c04fSmrg	case 2:
196a966c04fSmrg	    return (XPM_MONO);
197a966c04fSmrg	case 4:
198a966c04fSmrg	    return (XPM_GRAY4);
199a966c04fSmrg	default:
200a966c04fSmrg	    return (XPM_GRAY);
201a966c04fSmrg	}
202a966c04fSmrg    default:
203a966c04fSmrg	return (XPM_COLOR);
204a966c04fSmrg    }
205a966c04fSmrg# else
206a966c04fSmrg    /* set the key explicitly in the XpmAttributes to override this */
207a966c04fSmrg    return (XPM_COLOR);
208a966c04fSmrg# endif
209a966c04fSmrg#else
210a966c04fSmrg    /* there should be a similar switch for MSW */
211a966c04fSmrg    return (XPM_COLOR);
212a966c04fSmrg#endif
213a966c04fSmrg}
214a966c04fSmrg
215a966c04fSmrg
216a966c04fSmrgtypedef struct {
217a966c04fSmrg    int cols_index;
218a966c04fSmrg    long closeness;
219a966c04fSmrg}      CloseColor;
220a966c04fSmrg
221a966c04fSmrgstatic int
22297cf2ee2Smrgcloseness_cmp(const void *a, const void *b)
223a966c04fSmrg{
22497cf2ee2Smrg    const CloseColor *x = (const CloseColor *) a, *y = (const CloseColor *) b;
225a966c04fSmrg
226a966c04fSmrg    /* cast to int as qsort requires */
227a966c04fSmrg    return (int) (x->closeness - y->closeness);
228a966c04fSmrg}
229a966c04fSmrg
230a966c04fSmrg
231a966c04fSmrg/* default AllocColor function:
232a966c04fSmrg *   call XParseColor if colorname is given, return negative value if failure
233a966c04fSmrg *   call XAllocColor and return 0 if failure, positive otherwise
234a966c04fSmrg */
235a966c04fSmrgstatic int
2362e2dd055SmrgAllocColor(
2372e2dd055Smrg    Display	*display,
2382e2dd055Smrg    Colormap	 colormap,
2392e2dd055Smrg    char	*colorname,
2402e2dd055Smrg    XColor	*xcolor,
2412e2dd055Smrg    void	*closure)		/* not used */
242a966c04fSmrg{
243a966c04fSmrg    int status;
244a966c04fSmrg    if (colorname)
245a966c04fSmrg	if (!XParseColor(display, colormap, colorname, xcolor))
246a966c04fSmrg	    return -1;
247a966c04fSmrg    status = XAllocColor(display, colormap, xcolor);
248a966c04fSmrg    return status != 0 ? 1 : 0;
249a966c04fSmrg}
250a966c04fSmrg
251a966c04fSmrg
252a966c04fSmrg#ifndef FOR_MSW
253a966c04fSmrg/*
254a966c04fSmrg * set a close color in case the exact one can't be set
255a966c04fSmrg * return 0 if success, 1 otherwise.
256a966c04fSmrg */
257a966c04fSmrg
258a966c04fSmrgstatic int
2592e2dd055SmrgSetCloseColor(
2602e2dd055Smrg    Display		*display,
2612e2dd055Smrg    Colormap		 colormap,
2622e2dd055Smrg    Visual		*visual,
2632e2dd055Smrg    XColor		*col,
2642e2dd055Smrg    Pixel		*image_pixel,
2652e2dd055Smrg    Pixel		*mask_pixel,
2662e2dd055Smrg    Pixel		*alloc_pixels,
2672e2dd055Smrg    unsigned int	*nalloc_pixels,
2682e2dd055Smrg    XpmAttributes	*attributes,
2692e2dd055Smrg    XColor		*cols,
2702e2dd055Smrg    int			 ncols,
2712e2dd055Smrg    XpmAllocColorFunc	 allocColor,
2722e2dd055Smrg    void		*closure)
273a966c04fSmrg{
274a966c04fSmrg
275a966c04fSmrg    /*
276a966c04fSmrg     * Allocation failed, so try close colors. To get here the visual must
277a966c04fSmrg     * be GreyScale, PseudoColor or DirectColor (or perhaps StaticColor?
278a966c04fSmrg     * What about sharing systems like QDSS?). Beware: we have to treat
279a966c04fSmrg     * DirectColor differently.
280a966c04fSmrg     */
281a966c04fSmrg
282a966c04fSmrg
283a966c04fSmrg    long int red_closeness, green_closeness, blue_closeness;
284a966c04fSmrg    int n;
285a966c04fSmrg    Bool alloc_color;
286a966c04fSmrg
287a966c04fSmrg    if (attributes && (attributes->valuemask & XpmCloseness))
288a966c04fSmrg	red_closeness = green_closeness = blue_closeness =
289a966c04fSmrg	    attributes->closeness;
290a966c04fSmrg    else {
291a966c04fSmrg	red_closeness = attributes->red_closeness;
292a966c04fSmrg	green_closeness = attributes->green_closeness;
293a966c04fSmrg	blue_closeness = attributes->blue_closeness;
294a966c04fSmrg    }
295a966c04fSmrg    if (attributes && (attributes->valuemask & XpmAllocCloseColors))
296a966c04fSmrg	alloc_color = attributes->alloc_close_colors;
297a966c04fSmrg    else
298a966c04fSmrg	alloc_color = True;
299a966c04fSmrg
300a966c04fSmrg    /*
301a966c04fSmrg     * We sort the colormap by closeness and try to allocate the color
302a966c04fSmrg     * closest to the target. If the allocation of this close color fails,
303a966c04fSmrg     * which almost never happens, then one of two scenarios is possible.
304a966c04fSmrg     * Either the colormap must have changed (since the last close color
305a966c04fSmrg     * allocation or possibly while we were sorting the colormap), or the
306a966c04fSmrg     * color is allocated as Read/Write by some other client. (Note: X
307a966c04fSmrg     * _should_ allow clients to check if a particular color is Read/Write,
308a966c04fSmrg     * but it doesn't! :-( ). We cannot determine which of these scenarios
309a966c04fSmrg     * occurred, so we try the next closest color, and so on, until no more
310a966c04fSmrg     * colors are within closeness of the target. If we knew that the
311a966c04fSmrg     * colormap had changed, we could skip this sequence.
31297cf2ee2Smrg     *
313a966c04fSmrg     * If _none_ of the colors within closeness of the target can be allocated,
314a966c04fSmrg     * then we can finally be pretty sure that the colormap has actually
315a966c04fSmrg     * changed. In this case we try to allocate the original color (again),
316a966c04fSmrg     * then try the closecolor stuff (again)...
31797cf2ee2Smrg     *
318a966c04fSmrg     * In theory it would be possible for an infinite loop to occur if another
319a966c04fSmrg     * process kept changing the colormap every time we sorted it, so we set
320a966c04fSmrg     * a maximum on the number of iterations. After this many tries, we use
321a966c04fSmrg     * XGrabServer() to ensure that the colormap remains unchanged.
32297cf2ee2Smrg     *
323a966c04fSmrg     * This approach gives particularly bad worst case performance - as many as
324a966c04fSmrg     * <MaximumIterations> colormap reads and sorts may be needed, and as
325a966c04fSmrg     * many as <MaximumIterations> * <ColormapSize> attempted allocations
326a966c04fSmrg     * may fail. On an 8-bit system, this means as many as 3 colormap reads,
327a966c04fSmrg     * 3 sorts and 768 failed allocations per execution of this code!
328a966c04fSmrg     * Luckily, my experiments show that in general use in a typical 8-bit
329a966c04fSmrg     * color environment only about 1 in every 10000 allocations fails to
330a966c04fSmrg     * succeed in the fastest possible time. So virtually every time what
331a966c04fSmrg     * actually happens is a single sort followed by a successful allocate.
332a966c04fSmrg     * The very first allocation also costs a colormap read, but no further
333a966c04fSmrg     * reads are usually necessary.
334a966c04fSmrg     */
335a966c04fSmrg
336a966c04fSmrg#define ITERATIONS 2			/* more than one is almost never
337a966c04fSmrg					 * necessary */
338a966c04fSmrg
339a966c04fSmrg    for (n = 0; n <= ITERATIONS; ++n) {
340a966c04fSmrg	CloseColor *closenesses =
341a966c04fSmrg	    (CloseColor *) XpmCalloc(ncols, sizeof(CloseColor));
342a966c04fSmrg	int i, c;
343a966c04fSmrg
344a966c04fSmrg	for (i = 0; i < ncols; ++i) {	/* build & sort closenesses table */
345a966c04fSmrg#define COLOR_FACTOR       3
346a966c04fSmrg#define BRIGHTNESS_FACTOR  1
347a966c04fSmrg
348a966c04fSmrg	    closenesses[i].cols_index = i;
349a966c04fSmrg	    closenesses[i].closeness =
3502f9f5fecSjoerg		COLOR_FACTOR * (labs((long) col->red - (long) cols[i].red)
3512f9f5fecSjoerg				+ labs((long) col->green - (long) cols[i].green)
3522f9f5fecSjoerg				+ labs((long) col->blue - (long) cols[i].blue))
3532f9f5fecSjoerg		+ BRIGHTNESS_FACTOR * labs(((long) col->red +
354a966c04fSmrg					   (long) col->green +
355a966c04fSmrg					   (long) col->blue)
356a966c04fSmrg					   - ((long) cols[i].red +
357a966c04fSmrg					      (long) cols[i].green +
358a966c04fSmrg					      (long) cols[i].blue));
359a966c04fSmrg	}
360a966c04fSmrg	qsort(closenesses, ncols, sizeof(CloseColor), closeness_cmp);
361a966c04fSmrg
362a966c04fSmrg	i = 0;
363a966c04fSmrg	c = closenesses[i].cols_index;
364a966c04fSmrg	while ((long) cols[c].red >= (long) col->red - red_closeness &&
365a966c04fSmrg	       (long) cols[c].red <= (long) col->red + red_closeness &&
366a966c04fSmrg	       (long) cols[c].green >= (long) col->green - green_closeness &&
367a966c04fSmrg	       (long) cols[c].green <= (long) col->green + green_closeness &&
368a966c04fSmrg	       (long) cols[c].blue >= (long) col->blue - blue_closeness &&
369a966c04fSmrg	       (long) cols[c].blue <= (long) col->blue + blue_closeness) {
370a966c04fSmrg	    if (alloc_color) {
371a966c04fSmrg		if ((*allocColor)(display, colormap, NULL, &cols[c], closure)){
372a966c04fSmrg		    if (n == ITERATIONS)
373a966c04fSmrg			XUngrabServer(display);
374a966c04fSmrg		    XpmFree(closenesses);
375a966c04fSmrg		    *image_pixel = cols[c].pixel;
376a966c04fSmrg		    *mask_pixel = 1;
377a966c04fSmrg		    alloc_pixels[(*nalloc_pixels)++] = cols[c].pixel;
378a966c04fSmrg		    return (0);
379a966c04fSmrg		} else {
380a966c04fSmrg		    ++i;
381a966c04fSmrg		    if (i == ncols)
382a966c04fSmrg			break;
383a966c04fSmrg		    c = closenesses[i].cols_index;
384a966c04fSmrg		}
385a966c04fSmrg	    } else {
386a966c04fSmrg		if (n == ITERATIONS)
387a966c04fSmrg		    XUngrabServer(display);
388a966c04fSmrg		XpmFree(closenesses);
389a966c04fSmrg		*image_pixel = cols[c].pixel;
390a966c04fSmrg		*mask_pixel = 1;
391a966c04fSmrg		return (0);
392a966c04fSmrg	    }
393a966c04fSmrg	}
394a966c04fSmrg
395a966c04fSmrg	/* Couldn't allocate _any_ of the close colors! */
396a966c04fSmrg
397a966c04fSmrg	if (n == ITERATIONS)
398a966c04fSmrg	    XUngrabServer(display);
399a966c04fSmrg	XpmFree(closenesses);
400a966c04fSmrg
401a966c04fSmrg	if (i == 0 || i == ncols)	/* no color close enough or cannot */
402a966c04fSmrg	    return (1);			/* alloc any color (full of r/w's) */
403a966c04fSmrg
404a966c04fSmrg	if ((*allocColor)(display, colormap, NULL, col, closure)) {
405a966c04fSmrg	    *image_pixel = col->pixel;
406a966c04fSmrg	    *mask_pixel = 1;
407a966c04fSmrg	    alloc_pixels[(*nalloc_pixels)++] = col->pixel;
408a966c04fSmrg	    return (0);
409a966c04fSmrg	} else {			/* colormap has probably changed, so
410a966c04fSmrg					 * re-read... */
411a966c04fSmrg	    if (n == ITERATIONS - 1)
412a966c04fSmrg		XGrabServer(display);
413a966c04fSmrg
414a966c04fSmrg#if 0
415a966c04fSmrg	    if (visual->class == DirectColor) {
416a966c04fSmrg		/* TODO */
417a966c04fSmrg	    } else
418a966c04fSmrg#endif
419a966c04fSmrg		XQueryColors(display, colormap, cols, ncols);
420a966c04fSmrg	}
421a966c04fSmrg    }
422a966c04fSmrg    return (1);
423a966c04fSmrg}
424a966c04fSmrg
425a966c04fSmrg#define USE_CLOSECOLOR attributes && \
426a966c04fSmrg(((attributes->valuemask & XpmCloseness) && attributes->closeness != 0) \
427a966c04fSmrg || ((attributes->valuemask & XpmRGBCloseness) && \
428a966c04fSmrg     (attributes->red_closeness != 0 \
429a966c04fSmrg      || attributes->green_closeness != 0 \
430a966c04fSmrg      || attributes->blue_closeness != 0)))
431a966c04fSmrg
432a966c04fSmrg#else
433a966c04fSmrg    /* FOR_MSW part */
434a966c04fSmrg    /* nothing to do here, the window system does it */
435a966c04fSmrg#endif
436a966c04fSmrg
437a966c04fSmrg/*
438a966c04fSmrg * set the color pixel related to the given colorname,
439a966c04fSmrg * return 0 if success, 1 otherwise.
440a966c04fSmrg */
441a966c04fSmrg
442a966c04fSmrgstatic int
4432e2dd055SmrgSetColor(
4442e2dd055Smrg    Display		*display,
4452e2dd055Smrg    Colormap		 colormap,
4462e2dd055Smrg    Visual		*visual,
4472e2dd055Smrg    char		*colorname,
4482e2dd055Smrg    unsigned int	 color_index,
4492e2dd055Smrg    Pixel		*image_pixel,
4502e2dd055Smrg    Pixel		*mask_pixel,
4512e2dd055Smrg    unsigned int	*mask_pixel_index,
4522e2dd055Smrg    Pixel		*alloc_pixels,
4532e2dd055Smrg    unsigned int	*nalloc_pixels,
4542e2dd055Smrg    Pixel		*used_pixels,
4552e2dd055Smrg    unsigned int	*nused_pixels,
4562e2dd055Smrg    XpmAttributes	*attributes,
4572e2dd055Smrg    XColor		*cols,
4582e2dd055Smrg    int			 ncols,
4592e2dd055Smrg    XpmAllocColorFunc	 allocColor,
4602e2dd055Smrg    void		*closure)
461a966c04fSmrg{
462a966c04fSmrg    XColor xcolor;
463a966c04fSmrg    int status;
464a966c04fSmrg
465a966c04fSmrg    if (xpmstrcasecmp(colorname, TRANSPARENT_COLOR)) {
466a966c04fSmrg	status = (*allocColor)(display, colormap, colorname, &xcolor, closure);
467a966c04fSmrg	if (status < 0)		/* parse color failed */
468a966c04fSmrg	    return (1);
469a966c04fSmrg
470a966c04fSmrg	if (status == 0) {
471a966c04fSmrg#ifndef FOR_MSW
472a966c04fSmrg	    if (USE_CLOSECOLOR)
473a966c04fSmrg		return (SetCloseColor(display, colormap, visual, &xcolor,
474a966c04fSmrg				      image_pixel, mask_pixel,
475a966c04fSmrg				      alloc_pixels, nalloc_pixels,
476a966c04fSmrg				      attributes, cols, ncols,
477a966c04fSmrg				      allocColor, closure));
478a966c04fSmrg	    else
479a966c04fSmrg#endif /* ndef FOR_MSW */
480a966c04fSmrg		return (1);
481a966c04fSmrg	} else
482a966c04fSmrg	    alloc_pixels[(*nalloc_pixels)++] = xcolor.pixel;
483a966c04fSmrg	*image_pixel = xcolor.pixel;
484a966c04fSmrg#ifndef FOR_MSW
485a966c04fSmrg	*mask_pixel = 1;
486a966c04fSmrg#else
487a966c04fSmrg	*mask_pixel = RGB(0,0,0);
488a966c04fSmrg#endif
489a966c04fSmrg	used_pixels[(*nused_pixels)++] = xcolor.pixel;
490a966c04fSmrg    } else {
491a966c04fSmrg	*image_pixel = 0;
492a966c04fSmrg#ifndef FOR_MSW
493a966c04fSmrg	*mask_pixel = 0;
494a966c04fSmrg#else
495a966c04fSmrg  	*mask_pixel = RGB(255,255,255);
496a966c04fSmrg#endif
497a966c04fSmrg	/* store the color table index */
498a966c04fSmrg	*mask_pixel_index = color_index;
499a966c04fSmrg    }
500a966c04fSmrg    return (0);
501a966c04fSmrg}
502a966c04fSmrg
503a966c04fSmrg
504a966c04fSmrgstatic int
5052e2dd055SmrgCreateColors(
5062e2dd055Smrg    Display		*display,
5072e2dd055Smrg    XpmAttributes	*attributes,
5082e2dd055Smrg    XpmColor		*colors,
5092e2dd055Smrg    unsigned int	 ncolors,
5102e2dd055Smrg    Pixel		*image_pixels,
5112e2dd055Smrg    Pixel		*mask_pixels,
5122e2dd055Smrg    unsigned int	*mask_pixel_index,
5132e2dd055Smrg    Pixel		*alloc_pixels,
5142e2dd055Smrg    unsigned int	*nalloc_pixels,
5152e2dd055Smrg    Pixel		*used_pixels,
5162e2dd055Smrg    unsigned int	*nused_pixels)
517a966c04fSmrg{
518a966c04fSmrg    /* variables stored in the XpmAttributes structure */
519a966c04fSmrg    Visual *visual;
520a966c04fSmrg    Colormap colormap;
521a966c04fSmrg    XpmColorSymbol *colorsymbols = NULL;
522a966c04fSmrg    unsigned int numsymbols;
523a966c04fSmrg    XpmAllocColorFunc allocColor;
524a966c04fSmrg    void *closure;
525a966c04fSmrg
526a966c04fSmrg    char *colorname;
527a966c04fSmrg    unsigned int color, key;
528a966c04fSmrg    Bool pixel_defined;
529a966c04fSmrg    XpmColorSymbol *symbol = NULL;
530a966c04fSmrg    char **defaults;
531a966c04fSmrg    int ErrorStatus = XpmSuccess;
532a966c04fSmrg    char *s;
533a966c04fSmrg    int default_index;
534a966c04fSmrg
535a966c04fSmrg    XColor *cols = NULL;
536a966c04fSmrg    unsigned int ncols = 0;
537a966c04fSmrg
538a966c04fSmrg    /*
539a966c04fSmrg     * retrieve information from the XpmAttributes
540a966c04fSmrg     */
541a966c04fSmrg    if (attributes && attributes->valuemask & XpmColorSymbols) {
542a966c04fSmrg	colorsymbols = attributes->colorsymbols;
543a966c04fSmrg	numsymbols = attributes->numsymbols;
544a966c04fSmrg    } else
545a966c04fSmrg	numsymbols = 0;
546a966c04fSmrg
547a966c04fSmrg    if (attributes && attributes->valuemask & XpmVisual)
548a966c04fSmrg	visual = attributes->visual;
549a966c04fSmrg    else
550a966c04fSmrg	visual = XDefaultVisual(display, XDefaultScreen(display));
551a966c04fSmrg
552a966c04fSmrg    if (attributes && (attributes->valuemask & XpmColormap))
553a966c04fSmrg	colormap = attributes->colormap;
554a966c04fSmrg    else
555a966c04fSmrg	colormap = XDefaultColormap(display, XDefaultScreen(display));
556a966c04fSmrg
557a966c04fSmrg    if (attributes && (attributes->valuemask & XpmColorKey))
558a966c04fSmrg	key = attributes->color_key;
559a966c04fSmrg    else
560a966c04fSmrg	key = xpmVisualType(visual);
561a966c04fSmrg
562a966c04fSmrg    if (attributes && (attributes->valuemask & XpmAllocColor))
563a966c04fSmrg	allocColor = attributes->alloc_color;
564a966c04fSmrg    else
565a966c04fSmrg	allocColor = AllocColor;
566a966c04fSmrg    if (attributes && (attributes->valuemask & XpmColorClosure))
567a966c04fSmrg	closure = attributes->color_closure;
568a966c04fSmrg    else
569a966c04fSmrg	closure = NULL;
570a966c04fSmrg
571a966c04fSmrg#ifndef FOR_MSW
572a966c04fSmrg    if (USE_CLOSECOLOR) {
573a966c04fSmrg	/* originally from SetCloseColor */
574a966c04fSmrg#if 0
575a966c04fSmrg	if (visual->class == DirectColor) {
576a966c04fSmrg
577a966c04fSmrg	    /*
578a966c04fSmrg	     * TODO: Implement close colors for DirectColor visuals. This is
579a966c04fSmrg	     * difficult situation. Chances are that we will never get here,
580a966c04fSmrg	     * because any machine that supports DirectColor will probably
581a966c04fSmrg	     * also support TrueColor (and probably PseudoColor). Also,
582a966c04fSmrg	     * DirectColor colormaps can be very large, so looking for close
583a966c04fSmrg	     * colors may be too slow.
584a966c04fSmrg	     */
585a966c04fSmrg	} else {
586a966c04fSmrg#endif
587a966c04fSmrg	    unsigned int i;
588a966c04fSmrg
589a966c04fSmrg#ifndef AMIGA
590a966c04fSmrg	    ncols = visual->map_entries;
591a966c04fSmrg#else
592a966c04fSmrg	    ncols = colormap->Count;
593a966c04fSmrg#endif
594a966c04fSmrg	    cols = (XColor *) XpmCalloc(ncols, sizeof(XColor));
595a966c04fSmrg	    for (i = 0; i < ncols; ++i)
596a966c04fSmrg		cols[i].pixel = i;
597a966c04fSmrg	    XQueryColors(display, colormap, cols, ncols);
598a966c04fSmrg#if 0
599a966c04fSmrg	}
600a966c04fSmrg#endif
601a966c04fSmrg    }
602a966c04fSmrg#endif /* ndef FOR_MSW */
603a966c04fSmrg
604a966c04fSmrg    switch (key) {
605a966c04fSmrg    case XPM_MONO:
606a966c04fSmrg	default_index = 2;
607a966c04fSmrg	break;
608a966c04fSmrg    case XPM_GRAY4:
609a966c04fSmrg	default_index = 3;
610a966c04fSmrg	break;
611a966c04fSmrg    case XPM_GRAY:
612a966c04fSmrg	default_index = 4;
613a966c04fSmrg	break;
614a966c04fSmrg    case XPM_COLOR:
615a966c04fSmrg    default:
616a966c04fSmrg	default_index = 5;
617a966c04fSmrg	break;
618a966c04fSmrg    }
619a966c04fSmrg
620a966c04fSmrg    for (color = 0; color < ncolors; color++, colors++,
621a966c04fSmrg					 image_pixels++, mask_pixels++) {
622a966c04fSmrg	colorname = NULL;
623a966c04fSmrg	pixel_defined = False;
624a966c04fSmrg	defaults = (char **) colors;
625a966c04fSmrg
626a966c04fSmrg	/*
627a966c04fSmrg	 * look for a defined symbol
628a966c04fSmrg	 */
629a966c04fSmrg	if (numsymbols) {
630a966c04fSmrg
631a966c04fSmrg	    unsigned int n;
632a966c04fSmrg
633a966c04fSmrg	    s = defaults[1];
634a966c04fSmrg	    for (n = 0, symbol = colorsymbols; n < numsymbols; n++, symbol++) {
635a966c04fSmrg		if (symbol->name && s && !strcmp(symbol->name, s))
636a966c04fSmrg		    /* override name */
637a966c04fSmrg		    break;
638a966c04fSmrg		if (!symbol->name && symbol->value) {	/* override value */
639a966c04fSmrg		    int def_index = default_index;
640a966c04fSmrg
641a966c04fSmrg		    while (defaults[def_index] == NULL)	/* find defined
642a966c04fSmrg							 * colorname */
643a966c04fSmrg			--def_index;
644a966c04fSmrg		    if (def_index < 2) {/* nothing towards mono, so try
645a966c04fSmrg					 * towards color */
646a966c04fSmrg			def_index = default_index + 1;
647a966c04fSmrg			while (def_index <= 5 && defaults[def_index] == NULL)
648a966c04fSmrg			    ++def_index;
649a966c04fSmrg		    }
650d678aadfSmrg		    if (def_index >= 2 && def_index <= 5 &&
651d678aadfSmrg			defaults[def_index] != NULL &&
652a966c04fSmrg			!xpmstrcasecmp(symbol->value, defaults[def_index]))
653a966c04fSmrg			break;
654a966c04fSmrg		}
655a966c04fSmrg	    }
656a966c04fSmrg	    if (n != numsymbols) {
657a966c04fSmrg		if (symbol->name && symbol->value)
658a966c04fSmrg		    colorname = symbol->value;
659a966c04fSmrg		else
660a966c04fSmrg		    pixel_defined = True;
661a966c04fSmrg	    }
662a966c04fSmrg	}
663a966c04fSmrg	if (!pixel_defined) {		/* pixel not given as symbol value */
664a966c04fSmrg
665a966c04fSmrg	    unsigned int k;
666a966c04fSmrg
667a966c04fSmrg	    if (colorname) {		/* colorname given as symbol value */
668a966c04fSmrg		if (!SetColor(display, colormap, visual, colorname, color,
669a966c04fSmrg			      image_pixels, mask_pixels, mask_pixel_index,
670a966c04fSmrg			      alloc_pixels, nalloc_pixels, used_pixels,
671a966c04fSmrg			      nused_pixels, attributes, cols, ncols,
672a966c04fSmrg			      allocColor, closure))
673a966c04fSmrg		    pixel_defined = True;
674a966c04fSmrg		else
675a966c04fSmrg		    ErrorStatus = XpmColorError;
676a966c04fSmrg	    }
677a966c04fSmrg	    k = key;
678a966c04fSmrg	    while (!pixel_defined && k > 1) {
679a966c04fSmrg		if (defaults[k]) {
680a966c04fSmrg		    if (!SetColor(display, colormap, visual, defaults[k],
681a966c04fSmrg				  color, image_pixels, mask_pixels,
682a966c04fSmrg				  mask_pixel_index, alloc_pixels,
683a966c04fSmrg				  nalloc_pixels, used_pixels, nused_pixels,
684a966c04fSmrg				  attributes, cols, ncols,
685a966c04fSmrg				  allocColor, closure)) {
686a966c04fSmrg			pixel_defined = True;
687a966c04fSmrg			break;
688a966c04fSmrg		    } else
689a966c04fSmrg			ErrorStatus = XpmColorError;
690a966c04fSmrg		}
691a966c04fSmrg		k--;
692a966c04fSmrg	    }
693a966c04fSmrg	    k = key + 1;
694a966c04fSmrg	    while (!pixel_defined && k < NKEYS + 1) {
695a966c04fSmrg		if (defaults[k]) {
696a966c04fSmrg		    if (!SetColor(display, colormap, visual, defaults[k],
697a966c04fSmrg				  color, image_pixels, mask_pixels,
698a966c04fSmrg				  mask_pixel_index, alloc_pixels,
699a966c04fSmrg				  nalloc_pixels, used_pixels, nused_pixels,
700a966c04fSmrg				  attributes, cols, ncols,
701a966c04fSmrg				  allocColor, closure)) {
702a966c04fSmrg			pixel_defined = True;
703a966c04fSmrg			break;
704a966c04fSmrg		    } else
705a966c04fSmrg			ErrorStatus = XpmColorError;
706a966c04fSmrg		}
707a966c04fSmrg		k++;
708a966c04fSmrg	    }
709a966c04fSmrg	    if (!pixel_defined) {
710a966c04fSmrg		if (cols)
711a966c04fSmrg		    XpmFree(cols);
712a966c04fSmrg		return (XpmColorFailed);
713a966c04fSmrg	    }
714a966c04fSmrg	} else {
715a966c04fSmrg	    /* simply use the given pixel */
716a966c04fSmrg	    *image_pixels = symbol->pixel;
717a966c04fSmrg	    /* the following makes the mask to be built even if none
718a966c04fSmrg	       is given a particular pixel */
719a966c04fSmrg	    if (symbol->value
720a966c04fSmrg		&& !xpmstrcasecmp(symbol->value, TRANSPARENT_COLOR)) {
721a966c04fSmrg		*mask_pixels = 0;
722a966c04fSmrg		*mask_pixel_index = color;
723a966c04fSmrg	    } else
724a966c04fSmrg		*mask_pixels = 1;
725a966c04fSmrg	    used_pixels[(*nused_pixels)++] = *image_pixels;
726a966c04fSmrg	}
727a966c04fSmrg    }
728a966c04fSmrg    if (cols)
729a966c04fSmrg	XpmFree(cols);
730a966c04fSmrg    return (ErrorStatus);
731a966c04fSmrg}
732a966c04fSmrg
733a966c04fSmrg
734a966c04fSmrg/* default FreeColors function, simply call XFreeColors */
735a966c04fSmrgstatic int
7362e2dd055SmrgFreeColors(
7372e2dd055Smrg    Display	*display,
7382e2dd055Smrg    Colormap	 colormap,
7392e2dd055Smrg    Pixel	*pixels,
7402e2dd055Smrg    int		 n,
7412e2dd055Smrg    void	*closure)		/* not used */
742a966c04fSmrg{
743a966c04fSmrg    return XFreeColors(display, colormap, pixels, n, 0);
744a966c04fSmrg}
745a966c04fSmrg
746a966c04fSmrg
747a966c04fSmrg/* function call in case of error */
748a966c04fSmrg
749a966c04fSmrg#undef RETURN
750a966c04fSmrg#define RETURN(status) \
751a966c04fSmrgdo \
752a966c04fSmrg{ \
753a966c04fSmrg      ErrorStatus = status; \
754a966c04fSmrg      goto error; \
755a966c04fSmrg} while(0)
756a966c04fSmrg
757a966c04fSmrgint
7582e2dd055SmrgXpmCreateImageFromXpmImage(
7592e2dd055Smrg    Display		 *display,
7602e2dd055Smrg    XpmImage		 *image,
7612e2dd055Smrg    XImage		**image_return,
7622e2dd055Smrg    XImage		**shapeimage_return,
7632e2dd055Smrg    XpmAttributes	 *attributes)
764a966c04fSmrg{
765a966c04fSmrg    /* variables stored in the XpmAttributes structure */
766a966c04fSmrg    Visual *visual;
767a966c04fSmrg    Colormap colormap;
768a966c04fSmrg    unsigned int depth;
769a966c04fSmrg    int bitmap_format;
770a966c04fSmrg    XpmFreeColorsFunc freeColors;
771a966c04fSmrg
772a966c04fSmrg    /* variables to return */
773a966c04fSmrg    XImage *ximage = NULL;
774a966c04fSmrg    XImage *shapeimage = NULL;
775a966c04fSmrg    unsigned int mask_pixel_index = XpmUndefPixel;
776a966c04fSmrg    int ErrorStatus;
777a966c04fSmrg
778a966c04fSmrg    /* calculation variables */
779a966c04fSmrg    Pixel *image_pixels = NULL;
780a966c04fSmrg    Pixel *mask_pixels = NULL;
781a966c04fSmrg    Pixel *alloc_pixels = NULL;
782a966c04fSmrg    Pixel *used_pixels = NULL;
783a966c04fSmrg    unsigned int nalloc_pixels = 0;
784a966c04fSmrg    unsigned int nused_pixels = 0;
785a966c04fSmrg
786a966c04fSmrg    /* initialize return values */
787a966c04fSmrg    if (image_return)
788a966c04fSmrg	*image_return = NULL;
789a966c04fSmrg    if (shapeimage_return)
790a966c04fSmrg	*shapeimage_return = NULL;
791a966c04fSmrg
792a966c04fSmrg    /* retrieve information from the XpmAttributes */
793a966c04fSmrg    if (attributes && (attributes->valuemask & XpmVisual))
794a966c04fSmrg	visual = attributes->visual;
795a966c04fSmrg    else
796a966c04fSmrg	visual = XDefaultVisual(display, XDefaultScreen(display));
797a966c04fSmrg
798a966c04fSmrg    if (attributes && (attributes->valuemask & XpmColormap))
799a966c04fSmrg	colormap = attributes->colormap;
800a966c04fSmrg    else
801a966c04fSmrg	colormap = XDefaultColormap(display, XDefaultScreen(display));
802a966c04fSmrg
803a966c04fSmrg    if (attributes && (attributes->valuemask & XpmDepth))
804a966c04fSmrg	depth = attributes->depth;
805a966c04fSmrg    else
806a966c04fSmrg	depth = XDefaultDepth(display, XDefaultScreen(display));
807a966c04fSmrg
808a966c04fSmrg    if (attributes && (attributes->valuemask & XpmBitmapFormat))
809a966c04fSmrg	bitmap_format = attributes->bitmap_format;
810a966c04fSmrg    else
811a966c04fSmrg	bitmap_format = ZPixmap;
812a966c04fSmrg
813a966c04fSmrg    if (attributes && (attributes->valuemask & XpmFreeColors))
814a966c04fSmrg	freeColors = attributes->free_colors;
815a966c04fSmrg    else
816a966c04fSmrg	freeColors = FreeColors;
817a966c04fSmrg
818a966c04fSmrg    ErrorStatus = XpmSuccess;
819a966c04fSmrg
82097cf2ee2Smrg    if (image->ncolors >= UINT_MAX / sizeof(Pixel))
821a966c04fSmrg	return (XpmNoMemory);
822a966c04fSmrg
823a966c04fSmrg    /* malloc pixels index tables */
824a966c04fSmrg    image_pixels = (Pixel *) XpmMalloc(sizeof(Pixel) * image->ncolors);
825a966c04fSmrg    if (!image_pixels)
826a966c04fSmrg	return (XpmNoMemory);
827a966c04fSmrg
828a966c04fSmrg    mask_pixels = (Pixel *) XpmMalloc(sizeof(Pixel) * image->ncolors);
829a966c04fSmrg    if (!mask_pixels)
830a966c04fSmrg	RETURN(XpmNoMemory);
831a966c04fSmrg
832a966c04fSmrg    /* maximum of allocated pixels will be the number of colors */
833a966c04fSmrg    alloc_pixels = (Pixel *) XpmMalloc(sizeof(Pixel) * image->ncolors);
834a966c04fSmrg    if (!alloc_pixels)
835a966c04fSmrg	RETURN(XpmNoMemory);
836a966c04fSmrg
837a966c04fSmrg    /* maximum of allocated pixels will be the number of colors */
838a966c04fSmrg    used_pixels = (Pixel *) XpmMalloc(sizeof(Pixel) * image->ncolors);
839a966c04fSmrg    if (!used_pixels)
840a966c04fSmrg	RETURN(XpmNoMemory);
841a966c04fSmrg
842a966c04fSmrg    /* get pixel colors, store them in index tables */
843a966c04fSmrg    ErrorStatus = CreateColors(display, attributes, image->colorTable,
844a966c04fSmrg			       image->ncolors, image_pixels, mask_pixels,
845a966c04fSmrg			       &mask_pixel_index, alloc_pixels, &nalloc_pixels,
846a966c04fSmrg			       used_pixels, &nused_pixels);
847a966c04fSmrg
848a966c04fSmrg    if (ErrorStatus != XpmSuccess
849a966c04fSmrg	&& (ErrorStatus < 0 || (attributes
850a966c04fSmrg				&& (attributes->valuemask & XpmExactColors)
851a966c04fSmrg				&& attributes->exactColors)))
852a966c04fSmrg	RETURN(ErrorStatus);
853a966c04fSmrg
854a966c04fSmrg    /* create the ximage */
855a966c04fSmrg    if (image_return) {
856a966c04fSmrg	ErrorStatus = CreateXImage(display, visual, depth,
857a966c04fSmrg				   (depth == 1 ? bitmap_format : ZPixmap),
858a966c04fSmrg				   image->width, image->height, &ximage);
859a966c04fSmrg	if (ErrorStatus != XpmSuccess)
860a966c04fSmrg	    RETURN(ErrorStatus);
861a966c04fSmrg
862a966c04fSmrg#ifndef FOR_MSW
863a966c04fSmrg# ifndef AMIGA
864a966c04fSmrg
865a966c04fSmrg	/*
866a966c04fSmrg	 * set the ximage data using optimized functions for ZPixmap
867a966c04fSmrg	 */
868a966c04fSmrg
869a966c04fSmrg	if (ximage->bits_per_pixel == 8)
870a966c04fSmrg	    PutImagePixels8(ximage, image->width, image->height,
871a966c04fSmrg			    image->data, image_pixels);
872a966c04fSmrg	else if (((ximage->bits_per_pixel | ximage->depth) == 1) &&
873a966c04fSmrg		 (ximage->byte_order == ximage->bitmap_bit_order))
874a966c04fSmrg	    PutImagePixels1(ximage, image->width, image->height,
875a966c04fSmrg			    image->data, image_pixels);
876a966c04fSmrg	else if (ximage->bits_per_pixel == 16)
877a966c04fSmrg	    PutImagePixels16(ximage, image->width, image->height,
878a966c04fSmrg			     image->data, image_pixels);
879a966c04fSmrg	else if (ximage->bits_per_pixel == 32)
880a966c04fSmrg	    PutImagePixels32(ximage, image->width, image->height,
881a966c04fSmrg			     image->data, image_pixels);
882a966c04fSmrg	else
883a966c04fSmrg	    PutImagePixels(ximage, image->width, image->height,
884a966c04fSmrg			   image->data, image_pixels);
885a966c04fSmrg# else /* AMIGA */
886a966c04fSmrg	APutImagePixels(ximage, image->width, image->height,
887a966c04fSmrg			image->data, image_pixels);
888a966c04fSmrg# endif
889a966c04fSmrg#else  /* FOR_MSW */
890a966c04fSmrg	MSWPutImagePixels(display, ximage, image->width, image->height,
891a966c04fSmrg			  image->data, image_pixels);
892a966c04fSmrg#endif
893a966c04fSmrg    }
894a966c04fSmrg    /* create the shape mask image */
895a966c04fSmrg    if (mask_pixel_index != XpmUndefPixel && shapeimage_return) {
896a966c04fSmrg	ErrorStatus = CreateXImage(display, visual, 1, bitmap_format,
897a966c04fSmrg				   image->width, image->height, &shapeimage);
898a966c04fSmrg	if (ErrorStatus != XpmSuccess)
899a966c04fSmrg	    RETURN(ErrorStatus);
900a966c04fSmrg
901a966c04fSmrg#ifndef FOR_MSW
902a966c04fSmrg# ifndef AMIGA
903a966c04fSmrg	PutImagePixels1(shapeimage, image->width, image->height,
904a966c04fSmrg			image->data, mask_pixels);
905a966c04fSmrg# else /* AMIGA */
906a966c04fSmrg	APutImagePixels(shapeimage, image->width, image->height,
907a966c04fSmrg			image->data, mask_pixels);
908a966c04fSmrg# endif
909a966c04fSmrg#else  /* FOR_MSW */
910a966c04fSmrg	MSWPutImagePixels(display, shapeimage, image->width, image->height,
911a966c04fSmrg			  image->data, mask_pixels);
912a966c04fSmrg#endif
913a966c04fSmrg
914a966c04fSmrg    }
915a966c04fSmrg    XpmFree(image_pixels);
916a966c04fSmrg    XpmFree(mask_pixels);
917a966c04fSmrg
918a966c04fSmrg    /* if requested return used pixels in the XpmAttributes structure */
919a966c04fSmrg    if (attributes && (attributes->valuemask & XpmReturnPixels ||
920a966c04fSmrg/* 3.2 backward compatibility code */
921a966c04fSmrg	attributes->valuemask & XpmReturnInfos)) {
922a966c04fSmrg/* end 3.2 bc */
923a966c04fSmrg	attributes->pixels = used_pixels;
924a966c04fSmrg	attributes->npixels = nused_pixels;
925a966c04fSmrg	attributes->mask_pixel = mask_pixel_index;
926a966c04fSmrg    } else
927a966c04fSmrg	XpmFree(used_pixels);
928a966c04fSmrg
929a966c04fSmrg    /* if requested return alloc'ed pixels in the XpmAttributes structure */
930a966c04fSmrg    if (attributes && (attributes->valuemask & XpmReturnAllocPixels)) {
931a966c04fSmrg	attributes->alloc_pixels = alloc_pixels;
932a966c04fSmrg	attributes->nalloc_pixels = nalloc_pixels;
933a966c04fSmrg    } else
934a966c04fSmrg	XpmFree(alloc_pixels);
935a966c04fSmrg
936a966c04fSmrg    /* return created images */
937a966c04fSmrg    if (image_return)
938a966c04fSmrg	*image_return = ximage;
939a966c04fSmrg    if (shapeimage_return)
940a966c04fSmrg	*shapeimage_return = shapeimage;
941a966c04fSmrg
942a966c04fSmrg    return (ErrorStatus);
943a966c04fSmrg
944a966c04fSmrg/* exit point in case of error, free only locally allocated variables */
945a966c04fSmrgerror:
946a966c04fSmrg    if (ximage)
947a966c04fSmrg	XDestroyImage(ximage);
948a966c04fSmrg    if (shapeimage)
949a966c04fSmrg	XDestroyImage(shapeimage);
950a966c04fSmrg    if (image_pixels)
951a966c04fSmrg	XpmFree(image_pixels);
952a966c04fSmrg    if (mask_pixels)
953a966c04fSmrg	XpmFree(mask_pixels);
954a966c04fSmrg    if (nalloc_pixels)
955a966c04fSmrg	(*freeColors)(display, colormap, alloc_pixels, nalloc_pixels, NULL);
956a966c04fSmrg    if (alloc_pixels)
957a966c04fSmrg	XpmFree(alloc_pixels);
958a966c04fSmrg    if (used_pixels)
959a966c04fSmrg	XpmFree(used_pixels);
960a966c04fSmrg
961a966c04fSmrg    return (ErrorStatus);
962a966c04fSmrg}
963a966c04fSmrg
964a966c04fSmrg
965a966c04fSmrg/*
966a966c04fSmrg * Create an XImage with its data
967a966c04fSmrg */
968a966c04fSmrgstatic int
9692e2dd055SmrgCreateXImage(
9702e2dd055Smrg    Display	 *display,
9712e2dd055Smrg    Visual	 *visual,
9722e2dd055Smrg    unsigned int  depth,
9732e2dd055Smrg    int		  format,
9742e2dd055Smrg    unsigned int  width,
9752e2dd055Smrg    unsigned int  height,
9762e2dd055Smrg    XImage	**image_return)
977a966c04fSmrg{
978a966c04fSmrg    int bitmap_pad;
979a966c04fSmrg
980a966c04fSmrg    /* first get bitmap_pad */
981a966c04fSmrg    if (depth > 16)
982a966c04fSmrg	bitmap_pad = 32;
983a966c04fSmrg    else if (depth > 8)
984a966c04fSmrg	bitmap_pad = 16;
985a966c04fSmrg    else
986a966c04fSmrg	bitmap_pad = 8;
987a966c04fSmrg
988a966c04fSmrg    /* then create the XImage with data = NULL and bytes_per_line = 0 */
989a966c04fSmrg    *image_return = XCreateImage(display, visual, depth, format, 0, 0,
990a966c04fSmrg				 width, height, bitmap_pad, 0);
991a966c04fSmrg    if (!*image_return)
992a966c04fSmrg	return (XpmNoMemory);
993a966c04fSmrg
994a966c04fSmrg#if !defined(FOR_MSW) && !defined(AMIGA)
995a966c04fSmrg    if (height != 0 && (*image_return)->bytes_per_line >= INT_MAX / height) {
996a966c04fSmrg	XDestroyImage(*image_return);
997c378da89Smrg	*image_return = NULL;
998a966c04fSmrg	return XpmNoMemory;
999a966c04fSmrg    }
1000a966c04fSmrg    /* now that bytes_per_line must have been set properly alloc data */
1001c378da89Smrg    if((*image_return)->bytes_per_line == 0 ||  height == 0) {
1002c378da89Smrg	XDestroyImage(*image_return);
1003c378da89Smrg	*image_return = NULL;
1004a966c04fSmrg    	return XpmNoMemory;
1005c378da89Smrg    }
1006a966c04fSmrg    (*image_return)->data =
1007a966c04fSmrg	(char *) XpmMalloc((*image_return)->bytes_per_line * height);
1008a966c04fSmrg
1009a966c04fSmrg    if (!(*image_return)->data) {
1010a966c04fSmrg	XDestroyImage(*image_return);
1011a966c04fSmrg	*image_return = NULL;
1012a966c04fSmrg	return (XpmNoMemory);
1013a966c04fSmrg    }
1014a966c04fSmrg#else
1015a966c04fSmrg    /* under FOR_MSW and AMIGA XCreateImage has done it all */
1016a966c04fSmrg#endif
1017a966c04fSmrg    return (XpmSuccess);
1018a966c04fSmrg}
1019a966c04fSmrg
1020a966c04fSmrg#ifndef FOR_MSW
1021a966c04fSmrg# ifndef AMIGA
1022a966c04fSmrg/*
1023a966c04fSmrg * The functions below are written from X11R5 MIT's code (XImUtil.c)
1024a966c04fSmrg *
1025a966c04fSmrg * The idea is to have faster functions than the standard XPutPixel function
1026a966c04fSmrg * to build the image data. Indeed we can speed up things by suppressing tests
1027a966c04fSmrg * performed for each pixel. We do the same tests but at the image level.
1028a966c04fSmrg * We also assume that we use only ZPixmap images with null offsets.
1029a966c04fSmrg */
1030a966c04fSmrg
1031a966c04fSmrgLFUNC(_putbits, void, (register char *src, int dstoffset,
1032a966c04fSmrg		       register int numbits, register char *dst));
1033a966c04fSmrg
1034a966c04fSmrgLFUNC(_XReverse_Bytes, int, (register unsigned char *bpt, register unsigned int nb));
1035a966c04fSmrg
103697cf2ee2Smrgstatic unsigned char const _reverse_byte[0x100] = {
1037a966c04fSmrg    0x00, 0x80, 0x40, 0xc0, 0x20, 0xa0, 0x60, 0xe0,
1038a966c04fSmrg    0x10, 0x90, 0x50, 0xd0, 0x30, 0xb0, 0x70, 0xf0,
1039a966c04fSmrg    0x08, 0x88, 0x48, 0xc8, 0x28, 0xa8, 0x68, 0xe8,
1040a966c04fSmrg    0x18, 0x98, 0x58, 0xd8, 0x38, 0xb8, 0x78, 0xf8,
1041a966c04fSmrg    0x04, 0x84, 0x44, 0xc4, 0x24, 0xa4, 0x64, 0xe4,
1042a966c04fSmrg    0x14, 0x94, 0x54, 0xd4, 0x34, 0xb4, 0x74, 0xf4,
1043a966c04fSmrg    0x0c, 0x8c, 0x4c, 0xcc, 0x2c, 0xac, 0x6c, 0xec,
1044a966c04fSmrg    0x1c, 0x9c, 0x5c, 0xdc, 0x3c, 0xbc, 0x7c, 0xfc,
1045a966c04fSmrg    0x02, 0x82, 0x42, 0xc2, 0x22, 0xa2, 0x62, 0xe2,
1046a966c04fSmrg    0x12, 0x92, 0x52, 0xd2, 0x32, 0xb2, 0x72, 0xf2,
1047a966c04fSmrg    0x0a, 0x8a, 0x4a, 0xca, 0x2a, 0xaa, 0x6a, 0xea,
1048a966c04fSmrg    0x1a, 0x9a, 0x5a, 0xda, 0x3a, 0xba, 0x7a, 0xfa,
1049a966c04fSmrg    0x06, 0x86, 0x46, 0xc6, 0x26, 0xa6, 0x66, 0xe6,
1050a966c04fSmrg    0x16, 0x96, 0x56, 0xd6, 0x36, 0xb6, 0x76, 0xf6,
1051a966c04fSmrg    0x0e, 0x8e, 0x4e, 0xce, 0x2e, 0xae, 0x6e, 0xee,
1052a966c04fSmrg    0x1e, 0x9e, 0x5e, 0xde, 0x3e, 0xbe, 0x7e, 0xfe,
1053a966c04fSmrg    0x01, 0x81, 0x41, 0xc1, 0x21, 0xa1, 0x61, 0xe1,
1054a966c04fSmrg    0x11, 0x91, 0x51, 0xd1, 0x31, 0xb1, 0x71, 0xf1,
1055a966c04fSmrg    0x09, 0x89, 0x49, 0xc9, 0x29, 0xa9, 0x69, 0xe9,
1056a966c04fSmrg    0x19, 0x99, 0x59, 0xd9, 0x39, 0xb9, 0x79, 0xf9,
1057a966c04fSmrg    0x05, 0x85, 0x45, 0xc5, 0x25, 0xa5, 0x65, 0xe5,
1058a966c04fSmrg    0x15, 0x95, 0x55, 0xd5, 0x35, 0xb5, 0x75, 0xf5,
1059a966c04fSmrg    0x0d, 0x8d, 0x4d, 0xcd, 0x2d, 0xad, 0x6d, 0xed,
1060a966c04fSmrg    0x1d, 0x9d, 0x5d, 0xdd, 0x3d, 0xbd, 0x7d, 0xfd,
1061a966c04fSmrg    0x03, 0x83, 0x43, 0xc3, 0x23, 0xa3, 0x63, 0xe3,
1062a966c04fSmrg    0x13, 0x93, 0x53, 0xd3, 0x33, 0xb3, 0x73, 0xf3,
1063a966c04fSmrg    0x0b, 0x8b, 0x4b, 0xcb, 0x2b, 0xab, 0x6b, 0xeb,
1064a966c04fSmrg    0x1b, 0x9b, 0x5b, 0xdb, 0x3b, 0xbb, 0x7b, 0xfb,
1065a966c04fSmrg    0x07, 0x87, 0x47, 0xc7, 0x27, 0xa7, 0x67, 0xe7,
1066a966c04fSmrg    0x17, 0x97, 0x57, 0xd7, 0x37, 0xb7, 0x77, 0xf7,
1067a966c04fSmrg    0x0f, 0x8f, 0x4f, 0xcf, 0x2f, 0xaf, 0x6f, 0xef,
1068a966c04fSmrg    0x1f, 0x9f, 0x5f, 0xdf, 0x3f, 0xbf, 0x7f, 0xff
1069a966c04fSmrg};
1070a966c04fSmrg
1071a966c04fSmrgstatic int
10722e2dd055Smrg_XReverse_Bytes(
10732e2dd055Smrg    register unsigned char	*bpt,
10742e2dd055Smrg    register unsigned int	 nb)
1075a966c04fSmrg{
1076a966c04fSmrg    do {
1077a966c04fSmrg	*bpt = _reverse_byte[*bpt];
1078a966c04fSmrg	bpt++;
1079a966c04fSmrg    } while (--nb > 0); /* is nb user-controled? */
1080a966c04fSmrg    return 0;
1081a966c04fSmrg}
1082a966c04fSmrg
1083a966c04fSmrg
1084a966c04fSmrgvoid
10852e2dd055Smrgxpm_xynormalizeimagebits(
10862e2dd055Smrg    register unsigned char	*bp,
10872e2dd055Smrg    register XImage		*img)
1088a966c04fSmrg{
1089a966c04fSmrg    register unsigned char c;
1090a966c04fSmrg
1091a966c04fSmrg    if (img->byte_order != img->bitmap_bit_order) {
1092a966c04fSmrg	switch (img->bitmap_unit) {
1093a966c04fSmrg
1094a966c04fSmrg	case 16:
1095a966c04fSmrg	    c = *bp;
1096a966c04fSmrg	    *bp = *(bp + 1);
1097a966c04fSmrg	    *(bp + 1) = c;
1098a966c04fSmrg	    break;
1099a966c04fSmrg
1100a966c04fSmrg	case 32:
1101a966c04fSmrg	    c = *(bp + 3);
1102a966c04fSmrg	    *(bp + 3) = *bp;
1103a966c04fSmrg	    *bp = c;
1104a966c04fSmrg	    c = *(bp + 2);
1105a966c04fSmrg	    *(bp + 2) = *(bp + 1);
1106a966c04fSmrg	    *(bp + 1) = c;
1107a966c04fSmrg	    break;
1108a966c04fSmrg	}
1109a966c04fSmrg    }
1110a966c04fSmrg    if (img->bitmap_bit_order == MSBFirst)
1111a966c04fSmrg	_XReverse_Bytes(bp, img->bitmap_unit >> 3);
1112a966c04fSmrg}
1113a966c04fSmrg
1114a966c04fSmrgvoid
11152e2dd055Smrgxpm_znormalizeimagebits(
11162e2dd055Smrg    register unsigned char	*bp,
11172e2dd055Smrg    register XImage		*img)
1118a966c04fSmrg{
1119a966c04fSmrg    register unsigned char c;
1120a966c04fSmrg
1121a966c04fSmrg    switch (img->bits_per_pixel) {
1122a966c04fSmrg
1123a966c04fSmrg    case 2:
1124a966c04fSmrg	_XReverse_Bytes(bp, 1);
1125a966c04fSmrg	break;
1126a966c04fSmrg
1127a966c04fSmrg    case 4:
1128a966c04fSmrg	*bp = ((*bp >> 4) & 0xF) | ((*bp << 4) & ~0xF);
1129a966c04fSmrg	break;
1130a966c04fSmrg
1131a966c04fSmrg    case 16:
1132a966c04fSmrg	c = *bp;
1133a966c04fSmrg	*bp = *(bp + 1);
1134a966c04fSmrg	*(bp + 1) = c;
1135a966c04fSmrg	break;
1136a966c04fSmrg
1137a966c04fSmrg    case 24:
1138a966c04fSmrg	c = *(bp + 2);
1139a966c04fSmrg	*(bp + 2) = *bp;
1140a966c04fSmrg	*bp = c;
1141a966c04fSmrg	break;
1142a966c04fSmrg
1143a966c04fSmrg    case 32:
1144a966c04fSmrg	c = *(bp + 3);
1145a966c04fSmrg	*(bp + 3) = *bp;
1146a966c04fSmrg	*bp = c;
1147a966c04fSmrg	c = *(bp + 2);
1148a966c04fSmrg	*(bp + 2) = *(bp + 1);
1149a966c04fSmrg	*(bp + 1) = c;
1150a966c04fSmrg	break;
1151a966c04fSmrg    }
1152a966c04fSmrg}
1153a966c04fSmrg
115497cf2ee2Smrgstatic unsigned char const _lomask[0x09] = {
1155a966c04fSmrg0x00, 0x01, 0x03, 0x07, 0x0f, 0x1f, 0x3f, 0x7f, 0xff};
115697cf2ee2Smrgstatic unsigned char const _himask[0x09] = {
1157a966c04fSmrg0xff, 0xfe, 0xfc, 0xf8, 0xf0, 0xe0, 0xc0, 0x80, 0x00};
1158a966c04fSmrg
1159a966c04fSmrgstatic void
11602e2dd055Smrg_putbits(
11612e2dd055Smrg    register char	*src,		/* address of source bit string */
11622e2dd055Smrg    int			 dstoffset,	/* bit offset into destination;
1163a966c04fSmrg					 * range is 0-31 */
11642e2dd055Smrg    register int	 numbits,	/* number of bits to copy to
1165a966c04fSmrg					 * destination */
11662e2dd055Smrg    register char	*dst)		/* address of destination bit string */
1167a966c04fSmrg{
1168a966c04fSmrg    register unsigned char chlo, chhi;
1169a966c04fSmrg    int hibits;
1170a966c04fSmrg
1171a966c04fSmrg    dst = dst + (dstoffset >> 3);
1172a966c04fSmrg    dstoffset = dstoffset & 7;
1173a966c04fSmrg    hibits = 8 - dstoffset;
1174a966c04fSmrg    chlo = *dst & _lomask[dstoffset];
1175a966c04fSmrg    for (;;) {
1176a966c04fSmrg	chhi = (*src << dstoffset) & _himask[dstoffset];
1177a966c04fSmrg	if (numbits <= hibits) {
1178a966c04fSmrg	    chhi = chhi & _lomask[dstoffset + numbits];
1179a966c04fSmrg	    *dst = (*dst & _himask[dstoffset + numbits]) | chlo | chhi;
1180a966c04fSmrg	    break;
1181a966c04fSmrg	}
1182a966c04fSmrg	*dst = chhi | chlo;
1183a966c04fSmrg	dst++;
1184a966c04fSmrg	numbits = numbits - hibits;
1185a966c04fSmrg	chlo = (unsigned char) (*src & _himask[hibits]) >> hibits;
1186a966c04fSmrg	src++;
1187a966c04fSmrg	if (numbits <= dstoffset) {
1188a966c04fSmrg	    chlo = chlo & _lomask[numbits];
1189a966c04fSmrg	    *dst = (*dst & _himask[numbits]) | chlo;
1190a966c04fSmrg	    break;
1191a966c04fSmrg	}
1192a966c04fSmrg	numbits = numbits - dstoffset;
1193a966c04fSmrg    }
1194a966c04fSmrg}
1195a966c04fSmrg
1196a966c04fSmrg/*
1197a966c04fSmrg * Default method to write pixels into a Z image data structure.
1198a966c04fSmrg * The algorithm used is:
1199a966c04fSmrg *
1200a966c04fSmrg *	copy the destination bitmap_unit or Zpixel to temp
1201a966c04fSmrg *	normalize temp if needed
1202a966c04fSmrg *	copy the pixel bits into the temp
1203a966c04fSmrg *	renormalize temp if needed
1204a966c04fSmrg *	copy the temp back into the destination image data
1205a966c04fSmrg */
1206a966c04fSmrg
1207a966c04fSmrgstatic void
12082e2dd055SmrgPutImagePixels(
12092e2dd055Smrg    XImage		*image,
12102e2dd055Smrg    unsigned int	 width,
12112e2dd055Smrg    unsigned int	 height,
12122e2dd055Smrg    unsigned int	*pixelindex,
12132e2dd055Smrg    Pixel		*pixels)
1214a966c04fSmrg{
1215a966c04fSmrg    register char *src;
1216a966c04fSmrg    register char *dst;
1217a966c04fSmrg    register unsigned int *iptr;
1218a966c04fSmrg    register unsigned int x, y;
1219a966c04fSmrg    register char *data;
1220a966c04fSmrg    Pixel pixel, px;
1221a966c04fSmrg    int nbytes, depth, ibu, ibpp, i;
1222a966c04fSmrg
1223a966c04fSmrg    data = image->data;
1224a966c04fSmrg    iptr = pixelindex;
1225a966c04fSmrg    depth = image->depth;
1226a966c04fSmrg    if (depth == 1) {
1227a966c04fSmrg	ibu = image->bitmap_unit;
1228a966c04fSmrg	for (y = 0; y < height; y++) /* how can we trust height */
1229a966c04fSmrg	    for (x = 0; x < width; x++, iptr++) { /* how can we trust width */
1230a966c04fSmrg		pixel = pixels[*iptr];
1231a966c04fSmrg		for (i = 0, px = pixel; i < sizeof(unsigned long);
1232a966c04fSmrg		     i++, px >>= 8)
1233a966c04fSmrg		    ((unsigned char *) &pixel)[i] = px;
1234a966c04fSmrg		src = &data[XYINDEX(x, y, image)];
1235a966c04fSmrg		dst = (char *) &px;
1236a966c04fSmrg		px = 0;
1237a966c04fSmrg		nbytes = ibu >> 3;
1238a966c04fSmrg		for (i = nbytes; --i >= 0;)
1239a966c04fSmrg		    *dst++ = *src++;
1240a966c04fSmrg		XYNORMALIZE(&px, image);
1241a966c04fSmrg		_putbits((char *) &pixel, (x % ibu), 1, (char *) &px);
1242a966c04fSmrg		XYNORMALIZE(&px, image);
1243a966c04fSmrg		src = (char *) &px;
1244a966c04fSmrg		dst = &data[XYINDEX(x, y, image)];
1245a966c04fSmrg		for (i = nbytes; --i >= 0;)
1246a966c04fSmrg		    *dst++ = *src++;
1247a966c04fSmrg	    }
1248a966c04fSmrg    } else {
1249a966c04fSmrg	ibpp = image->bits_per_pixel;
1250a966c04fSmrg	for (y = 0; y < height; y++)
1251a966c04fSmrg	    for (x = 0; x < width; x++, iptr++) {
1252a966c04fSmrg		pixel = pixels[*iptr];
1253a966c04fSmrg		if (depth == 4)
1254a966c04fSmrg		    pixel &= 0xf;
1255a966c04fSmrg		for (i = 0, px = pixel; i < sizeof(unsigned long); i++,
1256a966c04fSmrg		     px >>= 8)
1257a966c04fSmrg		    ((unsigned char *) &pixel)[i] = px;
1258a966c04fSmrg		src = &data[ZINDEX(x, y, image)];
1259a966c04fSmrg		dst = (char *) &px;
1260a966c04fSmrg		px = 0;
1261a966c04fSmrg		nbytes = (ibpp + 7) >> 3;
1262a966c04fSmrg		for (i = nbytes; --i >= 0;)
1263a966c04fSmrg		    *dst++ = *src++;
1264a966c04fSmrg		ZNORMALIZE(&px, image);
1265a966c04fSmrg		_putbits((char *) &pixel, (x * ibpp) & 7, ibpp, (char *) &px);
1266a966c04fSmrg		ZNORMALIZE(&px, image);
1267a966c04fSmrg		src = (char *) &px;
1268a966c04fSmrg		dst = &data[ZINDEX(x, y, image)];
1269a966c04fSmrg		for (i = nbytes; --i >= 0;)
1270a966c04fSmrg		    *dst++ = *src++;
1271a966c04fSmrg	    }
1272a966c04fSmrg    }
1273a966c04fSmrg}
1274a966c04fSmrg
1275a966c04fSmrg/*
1276a966c04fSmrg * write pixels into a 32-bits Z image data structure
1277a966c04fSmrg */
1278a966c04fSmrg
1279a966c04fSmrg#if !defined(WORD64) && !defined(LONG64)
1280a966c04fSmrg/* this item is static but deterministic so let it slide; doesn't
1281a966c04fSmrg * hurt re-entrancy of this library. Note if it is actually const then would
1282a966c04fSmrg * be OK under rules of ANSI-C but probably not C++ which may not
1283a966c04fSmrg * want to allocate space for it.
1284a966c04fSmrg */
1285a966c04fSmrgstatic unsigned long byteorderpixel = MSBFirst << 24;
1286a966c04fSmrg
1287a966c04fSmrg#endif
1288a966c04fSmrg
1289a966c04fSmrg/*
1290a966c04fSmrg   WITHOUT_SPEEDUPS is a flag to be turned on if you wish to use the original
1291a966c04fSmrg   3.2e code - by default you get the speeded-up version.
1292a966c04fSmrg*/
1293a966c04fSmrg
1294a966c04fSmrgstatic void
12952e2dd055SmrgPutImagePixels32(
12962e2dd055Smrg    XImage		*image,
12972e2dd055Smrg    unsigned int	 width,
12982e2dd055Smrg    unsigned int	 height,
12992e2dd055Smrg    unsigned int	*pixelindex,
13002e2dd055Smrg    Pixel		*pixels)
1301a966c04fSmrg{
1302a966c04fSmrg    unsigned char *data;
1303a966c04fSmrg    unsigned int *iptr;
1304a966c04fSmrg    unsigned int y;
1305a966c04fSmrg    Pixel pixel;
1306a966c04fSmrg
1307a966c04fSmrg#ifdef WITHOUT_SPEEDUPS
1308a966c04fSmrg
1309a966c04fSmrg    unsigned int x;
1310a966c04fSmrg    unsigned char *addr;
1311a966c04fSmrg
1312a966c04fSmrg    data = (unsigned char *) image->data;
1313a966c04fSmrg    iptr = pixelindex;
1314a966c04fSmrg#if !defined(WORD64) && !defined(LONG64)
1315a966c04fSmrg    if (*((char *) &byteorderpixel) == image->byte_order) {
1316a966c04fSmrg	for (y = 0; y < height; y++)
1317a966c04fSmrg	    for (x = 0; x < width; x++, iptr++) {
1318a966c04fSmrg		addr = &data[ZINDEX32(x, y, image)];
1319a966c04fSmrg		*((unsigned long *) addr) = pixels[*iptr];
1320a966c04fSmrg	    }
1321a966c04fSmrg    } else
1322a966c04fSmrg#endif
1323a966c04fSmrg    if (image->byte_order == MSBFirst)
1324a966c04fSmrg	for (y = 0; y < height; y++)
1325a966c04fSmrg	    for (x = 0; x < width; x++, iptr++) {
1326a966c04fSmrg		addr = &data[ZINDEX32(x, y, image)];
1327a966c04fSmrg		pixel = pixels[*iptr];
1328a966c04fSmrg		addr[0] = pixel >> 24;
1329a966c04fSmrg		addr[1] = pixel >> 16;
1330a966c04fSmrg		addr[2] = pixel >> 8;
1331a966c04fSmrg		addr[3] = pixel;
1332a966c04fSmrg	    }
1333a966c04fSmrg    else
1334a966c04fSmrg	for (y = 0; y < height; y++)
1335a966c04fSmrg	    for (x = 0; x < width; x++, iptr++) {
1336a966c04fSmrg		addr = &data[ZINDEX32(x, y, image)];
1337a966c04fSmrg		pixel = pixels[*iptr];
1338a966c04fSmrg		addr[0] = pixel;
1339a966c04fSmrg		addr[1] = pixel >> 8;
1340a966c04fSmrg		addr[2] = pixel >> 16;
1341a966c04fSmrg		addr[3] = pixel >> 24;
1342a966c04fSmrg	    }
1343a966c04fSmrg
1344a966c04fSmrg#else  /* WITHOUT_SPEEDUPS */
1345a966c04fSmrg
1346a966c04fSmrg    unsigned int bpl = image->bytes_per_line;
1347a966c04fSmrg    unsigned char *data_ptr, *max_data;
1348a966c04fSmrg
1349a966c04fSmrg    data = (unsigned char *) image->data;
1350a966c04fSmrg    iptr = pixelindex;
1351a966c04fSmrg#if !defined(WORD64) && !defined(LONG64)
1352a966c04fSmrg    if (*((char *) &byteorderpixel) == image->byte_order) {
1353a966c04fSmrg	for (y = 0; y < height; y++) {
1354a966c04fSmrg	    data_ptr = data;
1355a966c04fSmrg	    max_data = data_ptr + (width << 2);
1356a966c04fSmrg
1357a966c04fSmrg	    while (data_ptr < max_data) {
1358a966c04fSmrg		*((unsigned long *) data_ptr) = pixels[*(iptr++)];
1359a966c04fSmrg		data_ptr += (1 << 2);
1360a966c04fSmrg	    }
1361a966c04fSmrg	    data += bpl;
1362a966c04fSmrg	}
1363a966c04fSmrg    } else
1364a966c04fSmrg#endif
1365a966c04fSmrg    if (image->byte_order == MSBFirst)
1366a966c04fSmrg	for (y = 0; y < height; y++) {
1367a966c04fSmrg	    data_ptr = data;
1368a966c04fSmrg	    max_data = data_ptr + (width << 2);
1369a966c04fSmrg
1370a966c04fSmrg	    while (data_ptr < max_data) {
1371a966c04fSmrg		pixel = pixels[*(iptr++)];
1372a966c04fSmrg
1373a966c04fSmrg		*data_ptr++ = pixel >> 24;
1374a966c04fSmrg		*data_ptr++ = pixel >> 16;
1375a966c04fSmrg		*data_ptr++ = pixel >> 8;
1376a966c04fSmrg		*data_ptr++ = pixel;
1377a966c04fSmrg
1378a966c04fSmrg	    }
1379a966c04fSmrg	    data += bpl;
1380a966c04fSmrg	}
1381a966c04fSmrg    else
1382a966c04fSmrg	for (y = 0; y < height; y++) {
1383a966c04fSmrg	    data_ptr = data;
1384a966c04fSmrg	    max_data = data_ptr + (width << 2);
1385a966c04fSmrg
1386a966c04fSmrg	    while (data_ptr < max_data) {
1387a966c04fSmrg		pixel = pixels[*(iptr++)];
1388a966c04fSmrg
1389a966c04fSmrg		*data_ptr++ = pixel;
1390a966c04fSmrg		*data_ptr++ = pixel >> 8;
1391a966c04fSmrg		*data_ptr++ = pixel >> 16;
1392a966c04fSmrg		*data_ptr++ = pixel >> 24;
1393a966c04fSmrg	    }
1394a966c04fSmrg	    data += bpl;
1395a966c04fSmrg	}
1396a966c04fSmrg
1397a966c04fSmrg#endif /* WITHOUT_SPEEDUPS */
1398a966c04fSmrg}
1399a966c04fSmrg
1400a966c04fSmrg/*
1401a966c04fSmrg * write pixels into a 16-bits Z image data structure
1402a966c04fSmrg */
1403a966c04fSmrg
1404a966c04fSmrgstatic void
14052e2dd055SmrgPutImagePixels16(
14062e2dd055Smrg    XImage		*image,
14072e2dd055Smrg    unsigned int	 width,
14082e2dd055Smrg    unsigned int	 height,
14092e2dd055Smrg    unsigned int	*pixelindex,
14102e2dd055Smrg    Pixel		*pixels)
1411a966c04fSmrg{
1412a966c04fSmrg    unsigned char *data;
1413a966c04fSmrg    unsigned int *iptr;
1414a966c04fSmrg    unsigned int y;
1415a966c04fSmrg
1416a966c04fSmrg#ifdef WITHOUT_SPEEDUPS
1417a966c04fSmrg
1418a966c04fSmrg    unsigned int x;
1419a966c04fSmrg    unsigned char *addr;
1420a966c04fSmrg
1421a966c04fSmrg    data = (unsigned char *) image->data;
1422a966c04fSmrg    iptr = pixelindex;
1423a966c04fSmrg    if (image->byte_order == MSBFirst)
1424a966c04fSmrg	for (y = 0; y < height; y++)
1425a966c04fSmrg	    for (x = 0; x < width; x++, iptr++) {
1426a966c04fSmrg		addr = &data[ZINDEX16(x, y, image)];
1427a966c04fSmrg		addr[0] = pixels[*iptr] >> 8;
1428a966c04fSmrg		addr[1] = pixels[*iptr];
1429a966c04fSmrg	    }
1430a966c04fSmrg    else
1431a966c04fSmrg	for (y = 0; y < height; y++)
1432a966c04fSmrg	    for (x = 0; x < width; x++, iptr++) {
1433a966c04fSmrg		addr = &data[ZINDEX16(x, y, image)];
1434a966c04fSmrg		addr[0] = pixels[*iptr];
1435a966c04fSmrg		addr[1] = pixels[*iptr] >> 8;
1436a966c04fSmrg	    }
1437a966c04fSmrg
1438a966c04fSmrg#else  /* WITHOUT_SPEEDUPS */
1439a966c04fSmrg
1440a966c04fSmrg    Pixel pixel;
1441a966c04fSmrg
1442a966c04fSmrg    unsigned int bpl = image->bytes_per_line;
1443a966c04fSmrg    unsigned char *data_ptr, *max_data;
1444a966c04fSmrg
1445a966c04fSmrg    data = (unsigned char *) image->data;
1446a966c04fSmrg    iptr = pixelindex;
1447a966c04fSmrg    if (image->byte_order == MSBFirst)
1448a966c04fSmrg	for (y = 0; y < height; y++) {
1449a966c04fSmrg	    data_ptr = data;
1450a966c04fSmrg	    max_data = data_ptr + (width << 1);
1451a966c04fSmrg
1452a966c04fSmrg	    while (data_ptr < max_data) {
1453a966c04fSmrg		pixel = pixels[*(iptr++)];
1454a966c04fSmrg
1455a966c04fSmrg		data_ptr[0] = pixel >> 8;
1456a966c04fSmrg		data_ptr[1] = pixel;
1457a966c04fSmrg
1458a966c04fSmrg		data_ptr += (1 << 1);
1459a966c04fSmrg	    }
1460a966c04fSmrg	    data += bpl;
1461a966c04fSmrg	}
1462a966c04fSmrg    else
1463a966c04fSmrg	for (y = 0; y < height; y++) {
1464a966c04fSmrg	    data_ptr = data;
1465a966c04fSmrg	    max_data = data_ptr + (width << 1);
1466a966c04fSmrg
1467a966c04fSmrg	    while (data_ptr < max_data) {
1468a966c04fSmrg		pixel = pixels[*(iptr++)];
1469a966c04fSmrg
1470a966c04fSmrg		data_ptr[0] = pixel;
1471a966c04fSmrg		data_ptr[1] = pixel >> 8;
1472a966c04fSmrg
1473a966c04fSmrg		data_ptr += (1 << 1);
1474a966c04fSmrg	    }
1475a966c04fSmrg	    data += bpl;
1476a966c04fSmrg	}
1477a966c04fSmrg
1478a966c04fSmrg#endif /* WITHOUT_SPEEDUPS */
1479a966c04fSmrg}
1480a966c04fSmrg
1481a966c04fSmrg/*
1482a966c04fSmrg * write pixels into a 8-bits Z image data structure
1483a966c04fSmrg */
1484a966c04fSmrg
1485a966c04fSmrgstatic void
14862e2dd055SmrgPutImagePixels8(
14872e2dd055Smrg    XImage		*image,
14882e2dd055Smrg    unsigned int	 width,
14892e2dd055Smrg    unsigned int	 height,
14902e2dd055Smrg    unsigned int	*pixelindex,
14912e2dd055Smrg    Pixel		*pixels)
1492a966c04fSmrg{
1493a966c04fSmrg    char *data;
1494a966c04fSmrg    unsigned int *iptr;
1495a966c04fSmrg    unsigned int y;
1496a966c04fSmrg
1497a966c04fSmrg#ifdef WITHOUT_SPEEDUPS
1498a966c04fSmrg
1499a966c04fSmrg    unsigned int x;
1500a966c04fSmrg
1501a966c04fSmrg    data = image->data;
1502a966c04fSmrg    iptr = pixelindex;
1503a966c04fSmrg    for (y = 0; y < height; y++)
1504a966c04fSmrg	for (x = 0; x < width; x++, iptr++)
1505a966c04fSmrg	    data[ZINDEX8(x, y, image)] = pixels[*iptr];
1506a966c04fSmrg
1507a966c04fSmrg#else  /* WITHOUT_SPEEDUPS */
1508a966c04fSmrg
1509a966c04fSmrg    unsigned int bpl = image->bytes_per_line;
1510a966c04fSmrg    char *data_ptr, *max_data;
1511a966c04fSmrg
1512a966c04fSmrg    data = image->data;
1513a966c04fSmrg    iptr = pixelindex;
1514a966c04fSmrg
1515a966c04fSmrg    for (y = 0; y < height; y++) {
1516a966c04fSmrg	data_ptr = data;
1517a966c04fSmrg	max_data = data_ptr + width;
1518a966c04fSmrg
1519a966c04fSmrg	while (data_ptr < max_data)
1520a966c04fSmrg	    *(data_ptr++) = pixels[*(iptr++)];
1521a966c04fSmrg
1522a966c04fSmrg	data += bpl;
1523a966c04fSmrg    }
1524a966c04fSmrg
1525a966c04fSmrg#endif /* WITHOUT_SPEEDUPS */
1526a966c04fSmrg}
1527a966c04fSmrg
1528a966c04fSmrg/*
1529a966c04fSmrg * write pixels into a 1-bit depth image data structure and **offset null**
1530a966c04fSmrg */
1531a966c04fSmrg
1532a966c04fSmrgstatic void
15332e2dd055SmrgPutImagePixels1(
15342e2dd055Smrg    XImage		*image,
15352e2dd055Smrg    unsigned int	 width,
15362e2dd055Smrg    unsigned int	 height,
15372e2dd055Smrg    unsigned int	*pixelindex,
15382e2dd055Smrg    Pixel		*pixels)
1539a966c04fSmrg{
1540a966c04fSmrg    if (image->byte_order != image->bitmap_bit_order)
1541a966c04fSmrg	PutImagePixels(image, width, height, pixelindex, pixels);
1542a966c04fSmrg    else {
1543a966c04fSmrg	unsigned int *iptr;
1544a966c04fSmrg	unsigned int y;
1545a966c04fSmrg	char *data;
1546a966c04fSmrg
1547a966c04fSmrg#ifdef WITHOUT_SPEEDUPS
1548a966c04fSmrg
1549a966c04fSmrg	unsigned int x;
1550a966c04fSmrg
1551a966c04fSmrg	data = image->data;
1552a966c04fSmrg	iptr = pixelindex;
1553a966c04fSmrg	if (image->bitmap_bit_order == MSBFirst)
1554a966c04fSmrg	    for (y = 0; y < height; y++)
1555a966c04fSmrg		for (x = 0; x < width; x++, iptr++) {
1556a966c04fSmrg		    if (pixels[*iptr] & 1)
1557a966c04fSmrg			data[ZINDEX1(x, y, image)] |= 0x80 >> (x & 7);
1558a966c04fSmrg		    else
1559a966c04fSmrg			data[ZINDEX1(x, y, image)] &= ~(0x80 >> (x & 7));
1560a966c04fSmrg		}
1561a966c04fSmrg	else
1562a966c04fSmrg	    for (y = 0; y < height; y++)
1563a966c04fSmrg		for (x = 0; x < width; x++, iptr++) {
1564a966c04fSmrg		    if (pixels[*iptr] & 1)
1565a966c04fSmrg			data[ZINDEX1(x, y, image)] |= 1 << (x & 7);
1566a966c04fSmrg		    else
1567a966c04fSmrg			data[ZINDEX1(x, y, image)] &= ~(1 << (x & 7));
1568a966c04fSmrg		}
1569a966c04fSmrg
1570a966c04fSmrg#else  /* WITHOUT_SPEEDUPS */
1571a966c04fSmrg
1572a966c04fSmrg	char value;
1573a966c04fSmrg	char *data_ptr, *max_data;
1574a966c04fSmrg	int bpl = image->bytes_per_line;
1575a966c04fSmrg	int diff, count;
1576a966c04fSmrg
1577a966c04fSmrg	data = image->data;
1578a966c04fSmrg	iptr = pixelindex;
1579a966c04fSmrg
1580a966c04fSmrg	diff = width & 7;
1581a966c04fSmrg	width >>= 3;
1582a966c04fSmrg
1583a966c04fSmrg	if (image->bitmap_bit_order == MSBFirst)
1584a966c04fSmrg	    for (y = 0; y < height; y++) {
1585a966c04fSmrg		data_ptr = data;
1586a966c04fSmrg		max_data = data_ptr + width;
1587a966c04fSmrg		while (data_ptr < max_data) {
1588a966c04fSmrg		    value = 0;
1589a966c04fSmrg
1590a966c04fSmrg		    value = (value << 1) | (pixels[*(iptr++)] & 1);
1591a966c04fSmrg		    value = (value << 1) | (pixels[*(iptr++)] & 1);
1592a966c04fSmrg		    value = (value << 1) | (pixels[*(iptr++)] & 1);
1593a966c04fSmrg		    value = (value << 1) | (pixels[*(iptr++)] & 1);
1594a966c04fSmrg		    value = (value << 1) | (pixels[*(iptr++)] & 1);
1595a966c04fSmrg		    value = (value << 1) | (pixels[*(iptr++)] & 1);
1596a966c04fSmrg		    value = (value << 1) | (pixels[*(iptr++)] & 1);
1597a966c04fSmrg		    value = (value << 1) | (pixels[*(iptr++)] & 1);
1598a966c04fSmrg
1599a966c04fSmrg		    *(data_ptr++) = value;
1600a966c04fSmrg		}
1601a966c04fSmrg		if (diff) {
1602a966c04fSmrg		    value = 0;
1603a966c04fSmrg		    for (count = 0; count < diff; count++) {
1604a966c04fSmrg			if (pixels[*(iptr++)] & 1)
1605a966c04fSmrg			    value |= (0x80 >> count);
1606a966c04fSmrg		    }
1607a966c04fSmrg		    *(data_ptr) = value;
1608a966c04fSmrg		}
1609a966c04fSmrg		data += bpl;
1610a966c04fSmrg	    }
1611a966c04fSmrg	else
1612a966c04fSmrg	    for (y = 0; y < height; y++) {
1613a966c04fSmrg		data_ptr = data;
1614a966c04fSmrg		max_data = data_ptr + width;
1615a966c04fSmrg		while (data_ptr < max_data) {
1616a966c04fSmrg		    value = 0;
1617a966c04fSmrg		    iptr += 8;
1618a966c04fSmrg
1619a966c04fSmrg		    value = (value << 1) | (pixels[*(--iptr)] & 1);
1620a966c04fSmrg		    value = (value << 1) | (pixels[*(--iptr)] & 1);
1621a966c04fSmrg		    value = (value << 1) | (pixels[*(--iptr)] & 1);
1622a966c04fSmrg		    value = (value << 1) | (pixels[*(--iptr)] & 1);
1623a966c04fSmrg		    value = (value << 1) | (pixels[*(--iptr)] & 1);
1624a966c04fSmrg		    value = (value << 1) | (pixels[*(--iptr)] & 1);
1625a966c04fSmrg		    value = (value << 1) | (pixels[*(--iptr)] & 1);
1626a966c04fSmrg		    value = (value << 1) | (pixels[*(--iptr)] & 1);
1627a966c04fSmrg
1628a966c04fSmrg		    iptr += 8;
1629a966c04fSmrg		    *(data_ptr++) = value;
1630a966c04fSmrg		}
1631a966c04fSmrg		if (diff) {
1632a966c04fSmrg		    value = 0;
1633a966c04fSmrg		    for (count = 0; count < diff; count++) {
1634a966c04fSmrg			if (pixels[*(iptr++)] & 1)
1635a966c04fSmrg			    value |= (1 << count);
1636a966c04fSmrg		    }
1637a966c04fSmrg		    *(data_ptr) = value;
1638a966c04fSmrg		}
1639a966c04fSmrg		data += bpl;
1640a966c04fSmrg	    }
1641a966c04fSmrg
1642a966c04fSmrg#endif /* WITHOUT_SPEEDUPS */
1643a966c04fSmrg    }
1644a966c04fSmrg}
1645a966c04fSmrg
1646a966c04fSmrgint
16472e2dd055SmrgXpmCreatePixmapFromXpmImage(
16482e2dd055Smrg    Display		*display,
16492e2dd055Smrg    Drawable		 d,
16502e2dd055Smrg    XpmImage		*image,
16512e2dd055Smrg    Pixmap		*pixmap_return,
16522e2dd055Smrg    Pixmap		*shapemask_return,
16532e2dd055Smrg    XpmAttributes	*attributes)
1654a966c04fSmrg{
1655a966c04fSmrg    XImage *ximage, *shapeimage;
1656a966c04fSmrg    int ErrorStatus;
1657a966c04fSmrg
1658a966c04fSmrg    /* initialize return values */
1659a966c04fSmrg    if (pixmap_return)
1660a966c04fSmrg	*pixmap_return = 0;
1661a966c04fSmrg    if (shapemask_return)
1662a966c04fSmrg	*shapemask_return = 0;
1663a966c04fSmrg
1664a966c04fSmrg    /* create the ximages */
1665a966c04fSmrg    ErrorStatus = XpmCreateImageFromXpmImage(display, image,
1666a966c04fSmrg					     (pixmap_return ? &ximage : NULL),
1667a966c04fSmrg					     (shapemask_return ?
1668a966c04fSmrg					      &shapeimage : NULL),
1669a966c04fSmrg					     attributes);
1670a966c04fSmrg    if (ErrorStatus < 0)
1671a966c04fSmrg	return (ErrorStatus);
1672a966c04fSmrg
1673a966c04fSmrg    /* create the pixmaps and destroy images */
1674a966c04fSmrg    if (pixmap_return && ximage) {
1675a966c04fSmrg	xpmCreatePixmapFromImage(display, d, ximage, pixmap_return);
1676a966c04fSmrg	XDestroyImage(ximage);
1677a966c04fSmrg    }
1678a966c04fSmrg    if (shapemask_return && shapeimage) {
1679a966c04fSmrg	xpmCreatePixmapFromImage(display, d, shapeimage, shapemask_return);
1680a966c04fSmrg	XDestroyImage(shapeimage);
1681a966c04fSmrg    }
1682a966c04fSmrg    return (ErrorStatus);
1683a966c04fSmrg}
1684a966c04fSmrg
1685a966c04fSmrg# else /* AMIGA */
1686a966c04fSmrg
1687a966c04fSmrgstatic void
1688a966c04fSmrgAPutImagePixels (
1689a966c04fSmrg    XImage        *image,
1690a966c04fSmrg    unsigned int   width,
1691a966c04fSmrg    unsigned int   height,
1692a966c04fSmrg    unsigned int  *pixelindex,
1693a966c04fSmrg    Pixel         *pixels)
1694a966c04fSmrg{
1695a966c04fSmrg    unsigned int   *data = pixelindex;
1696a966c04fSmrg    unsigned int    x, y;
1697a966c04fSmrg    unsigned char  *array;
1698a966c04fSmrg    XImage         *tmp_img;
1699a966c04fSmrg    BOOL            success = FALSE;
170097cf2ee2Smrg
1701a966c04fSmrg    array = XpmMalloc ((((width+15)>>4)<<4)*sizeof (*array));
1702a966c04fSmrg    if (array != NULL)
1703a966c04fSmrg    {
1704a966c04fSmrg	tmp_img = AllocXImage ((((width+15)>>4)<<4), 1,
1705a966c04fSmrg			       image->rp->BitMap->Depth);
1706a966c04fSmrg	if (tmp_img != NULL)
1707a966c04fSmrg	{
1708a966c04fSmrg	    for (y = 0; y < height; ++y)
1709a966c04fSmrg	    {
1710a966c04fSmrg		for (x = 0; x < width; ++x)
1711a966c04fSmrg		    array[x] = pixels[*(data++)];
1712a966c04fSmrg		WritePixelLine8 (image->rp, 0, y, width, array, tmp_img->rp);
1713a966c04fSmrg	    }
1714a966c04fSmrg	    FreeXImage (tmp_img);
1715a966c04fSmrg	    success = TRUE;
1716a966c04fSmrg	}
1717a966c04fSmrg	XpmFree (array);
1718a966c04fSmrg    }
171997cf2ee2Smrg
1720a966c04fSmrg    if (!success)
1721a966c04fSmrg    {
1722a966c04fSmrg	for (y = 0; y < height; ++y)
1723a966c04fSmrg	    for (x = 0; x < width; ++x)
1724a966c04fSmrg		XPutPixel (image, x, y, pixels[*(data++)]);
1725a966c04fSmrg    }
1726a966c04fSmrg}
1727a966c04fSmrg
1728a966c04fSmrg# endif/* AMIGA */
1729a966c04fSmrg#else  /* FOR_MSW part follows */
1730a966c04fSmrgstatic void
17312e2dd055SmrgMSWPutImagePixels(
17322e2dd055Smrg    Display		*dc,
17332e2dd055Smrg    XImage		*image,
17342e2dd055Smrg    unsigned int	 width,
17352e2dd055Smrg    unsigned int	 height,
17362e2dd055Smrg    unsigned int	*pixelindex,
17372e2dd055Smrg    Pixel		*pixels)
1738a966c04fSmrg{
1739a966c04fSmrg    unsigned int *data = pixelindex;
1740a966c04fSmrg    unsigned int x, y;
1741a966c04fSmrg    HBITMAP obm;
1742a966c04fSmrg
1743a966c04fSmrg    obm = SelectObject(*dc, image->bitmap);
1744a966c04fSmrg    for (y = 0; y < height; y++) {
1745a966c04fSmrg	for (x = 0; x < width; x++) {
1746a966c04fSmrg	    SetPixel(*dc, x, y, pixels[*(data++)]); /* data is [x+y*width] */
1747a966c04fSmrg	}
1748a966c04fSmrg    }
1749a966c04fSmrg    SelectObject(*dc, obm);
1750a966c04fSmrg}
1751a966c04fSmrg
1752a966c04fSmrg#endif /* FOR_MSW */
1753a966c04fSmrg
1754a966c04fSmrg
1755a966c04fSmrg
1756a966c04fSmrg#if !defined(FOR_MSW) && !defined(AMIGA)
1757a966c04fSmrg
1758a966c04fSmrgstatic int
17592e2dd055SmrgPutPixel1(
17602e2dd055Smrg    register XImage	*ximage,
17612e2dd055Smrg    int			 x,
17622e2dd055Smrg    int			 y,
17632e2dd055Smrg    unsigned long	 pixel)
1764a966c04fSmrg{
1765a966c04fSmrg    register char *src;
1766a966c04fSmrg    register char *dst;
1767a966c04fSmrg    register int i;
1768a966c04fSmrg    Pixel px;
1769a966c04fSmrg    int nbytes;
1770a966c04fSmrg
1771a966c04fSmrg    if(x < 0 || y < 0)
1772a966c04fSmrg    	return 0;
1773a966c04fSmrg
1774a966c04fSmrg    for (i=0, px=pixel; i<sizeof(unsigned long); i++, px>>=8)
1775a966c04fSmrg	((unsigned char *)&pixel)[i] = px;
1776a966c04fSmrg    src = &ximage->data[XYINDEX(x, y, ximage)];
1777a966c04fSmrg    dst = (char *)&px;
1778a966c04fSmrg    px = 0;
1779a966c04fSmrg    nbytes = ximage->bitmap_unit >> 3;
1780a966c04fSmrg    for (i = nbytes; --i >= 0; ) *dst++ = *src++;
1781a966c04fSmrg    XYNORMALIZE(&px, ximage);
1782a966c04fSmrg    i = ((x + ximage->xoffset) % ximage->bitmap_unit);
1783a966c04fSmrg    _putbits ((char *)&pixel, i, 1, (char *)&px);
1784a966c04fSmrg    XYNORMALIZE(&px, ximage);
1785a966c04fSmrg    src = (char *) &px;
1786a966c04fSmrg    dst = &ximage->data[XYINDEX(x, y, ximage)];
1787a966c04fSmrg    for (i = nbytes; --i >= 0; )
1788a966c04fSmrg	*dst++ = *src++;
1789a966c04fSmrg
1790a966c04fSmrg    return 1;
1791a966c04fSmrg}
1792a966c04fSmrg
1793a966c04fSmrgstatic int
17942e2dd055SmrgPutPixel(
17952e2dd055Smrg    register XImage	*ximage,
17962e2dd055Smrg    int			 x,
17972e2dd055Smrg    int			 y,
17982e2dd055Smrg    unsigned long	 pixel)
1799a966c04fSmrg{
1800a966c04fSmrg    register char *src;
1801a966c04fSmrg    register char *dst;
1802a966c04fSmrg    register int i;
1803a966c04fSmrg    Pixel px;
1804a966c04fSmrg    unsigned int nbytes, ibpp;
1805a966c04fSmrg
1806a966c04fSmrg    if(x < 0 || y < 0)
1807a966c04fSmrg    	return 0;
1808a966c04fSmrg
1809a966c04fSmrg    ibpp = ximage->bits_per_pixel;
1810a966c04fSmrg    if (ximage->depth == 4)
1811a966c04fSmrg	pixel &= 0xf;
1812a966c04fSmrg    for (i = 0, px = pixel; i < sizeof(unsigned long); i++, px >>= 8)
1813a966c04fSmrg	((unsigned char *) &pixel)[i] = px;
1814a966c04fSmrg    src = &ximage->data[ZINDEX(x, y, ximage)];
1815a966c04fSmrg    dst = (char *) &px;
1816a966c04fSmrg    px = 0;
1817a966c04fSmrg    nbytes = (ibpp + 7) >> 3;
1818a966c04fSmrg    for (i = nbytes; --i >= 0;)
1819a966c04fSmrg	*dst++ = *src++;
1820a966c04fSmrg    ZNORMALIZE(&px, ximage);
1821a966c04fSmrg    _putbits((char *) &pixel, (x * ibpp) & 7, ibpp, (char *) &px);
1822a966c04fSmrg    ZNORMALIZE(&px, ximage);
1823a966c04fSmrg    src = (char *) &px;
1824a966c04fSmrg    dst = &ximage->data[ZINDEX(x, y, ximage)];
1825a966c04fSmrg    for (i = nbytes; --i >= 0;)
1826a966c04fSmrg	*dst++ = *src++;
1827a966c04fSmrg
1828a966c04fSmrg    return 1;
1829a966c04fSmrg}
1830a966c04fSmrg
1831a966c04fSmrg#if !defined(WORD64) && !defined(LONG64)
1832a966c04fSmrgstatic int
18332e2dd055SmrgPutPixel32(
18342e2dd055Smrg    register XImage	*ximage,
18352e2dd055Smrg    int			 x,
18362e2dd055Smrg    int			 y,
18372e2dd055Smrg    unsigned long	 pixel)
1838a966c04fSmrg{
1839a966c04fSmrg    unsigned char *addr;
1840a966c04fSmrg
1841a966c04fSmrg    if(x < 0 || y < 0)
1842a966c04fSmrg    	return 0;
1843a966c04fSmrg
1844a966c04fSmrg    addr = &((unsigned char *)ximage->data) [ZINDEX32(x, y, ximage)];
1845a966c04fSmrg    *((unsigned long *)addr) = pixel;
1846a966c04fSmrg    return 1;
1847a966c04fSmrg}
1848a966c04fSmrg#endif
1849a966c04fSmrg
1850a966c04fSmrgstatic int
18512e2dd055SmrgPutPixel32MSB(
18522e2dd055Smrg    register XImage	*ximage,
18532e2dd055Smrg    int			 x,
18542e2dd055Smrg    int			 y,
18552e2dd055Smrg    unsigned long	 pixel)
1856a966c04fSmrg{
1857a966c04fSmrg    unsigned char *addr;
1858a966c04fSmrg
1859a966c04fSmrg    if(x < 0 || y < 0)
1860a966c04fSmrg    	return 0;
1861a966c04fSmrg
1862a966c04fSmrg    addr = &((unsigned char *)ximage->data) [ZINDEX32(x, y, ximage)];
1863a966c04fSmrg    addr[0] = pixel >> 24;
1864a966c04fSmrg    addr[1] = pixel >> 16;
1865a966c04fSmrg    addr[2] = pixel >> 8;
1866a966c04fSmrg    addr[3] = pixel;
1867a966c04fSmrg    return 1;
1868a966c04fSmrg}
1869a966c04fSmrg
1870a966c04fSmrgstatic int
18712e2dd055SmrgPutPixel32LSB(
18722e2dd055Smrg    register XImage	*ximage,
18732e2dd055Smrg    int			 x,
18742e2dd055Smrg    int			 y,
18752e2dd055Smrg    unsigned long	 pixel)
1876a966c04fSmrg{
1877a966c04fSmrg    unsigned char *addr;
1878a966c04fSmrg
1879a966c04fSmrg    if(x < 0 || y < 0)
1880a966c04fSmrg    	return 0;
1881a966c04fSmrg
1882a966c04fSmrg    addr = &((unsigned char *)ximage->data) [ZINDEX32(x, y, ximage)];
1883a966c04fSmrg    addr[3] = pixel >> 24;
1884a966c04fSmrg    addr[2] = pixel >> 16;
1885a966c04fSmrg    addr[1] = pixel >> 8;
1886a966c04fSmrg    addr[0] = pixel;
1887a966c04fSmrg    return 1;
1888a966c04fSmrg}
1889a966c04fSmrg
1890a966c04fSmrgstatic int
18912e2dd055SmrgPutPixel16MSB(
18922e2dd055Smrg    register XImage	*ximage,
18932e2dd055Smrg    int			 x,
18942e2dd055Smrg    int			 y,
18952e2dd055Smrg    unsigned long	 pixel)
1896a966c04fSmrg{
1897a966c04fSmrg    unsigned char *addr;
189897cf2ee2Smrg
1899a966c04fSmrg    if(x < 0 || y < 0)
1900a966c04fSmrg    	return 0;
1901a966c04fSmrg
1902a966c04fSmrg    addr = &((unsigned char *)ximage->data) [ZINDEX16(x, y, ximage)];
1903a966c04fSmrg    addr[0] = pixel >> 8;
1904a966c04fSmrg    addr[1] = pixel;
1905a966c04fSmrg    return 1;
1906a966c04fSmrg}
1907a966c04fSmrg
1908a966c04fSmrgstatic int
19092e2dd055SmrgPutPixel16LSB(
19102e2dd055Smrg    register XImage	*ximage,
19112e2dd055Smrg    int			 x,
19122e2dd055Smrg    int			 y,
19132e2dd055Smrg    unsigned long	 pixel)
1914a966c04fSmrg{
1915a966c04fSmrg    unsigned char *addr;
191697cf2ee2Smrg
1917a966c04fSmrg    if(x < 0 || y < 0)
1918a966c04fSmrg    	return 0;
1919a966c04fSmrg
1920a966c04fSmrg    addr = &((unsigned char *)ximage->data) [ZINDEX16(x, y, ximage)];
1921a966c04fSmrg    addr[1] = pixel >> 8;
1922a966c04fSmrg    addr[0] = pixel;
1923a966c04fSmrg    return 1;
1924a966c04fSmrg}
1925a966c04fSmrg
1926a966c04fSmrgstatic int
19272e2dd055SmrgPutPixel8(
19282e2dd055Smrg    register XImage	*ximage,
19292e2dd055Smrg    int			 x,
19302e2dd055Smrg    int			 y,
19312e2dd055Smrg    unsigned long	 pixel)
1932a966c04fSmrg{
1933a966c04fSmrg    if(x < 0 || y < 0)
1934a966c04fSmrg    	return 0;
1935a966c04fSmrg
1936a966c04fSmrg    ximage->data[ZINDEX8(x, y, ximage)] = pixel;
1937a966c04fSmrg    return 1;
1938a966c04fSmrg}
1939a966c04fSmrg
1940a966c04fSmrgstatic int
19412e2dd055SmrgPutPixel1MSB(
19422e2dd055Smrg    register XImage	*ximage,
19432e2dd055Smrg    int			 x,
19442e2dd055Smrg    int			 y,
19452e2dd055Smrg    unsigned long	 pixel)
1946a966c04fSmrg{
1947a966c04fSmrg    if(x < 0 || y < 0)
1948a966c04fSmrg    	return 0;
1949a966c04fSmrg
1950a966c04fSmrg    if (pixel & 1)
1951a966c04fSmrg	ximage->data[ZINDEX1(x, y, ximage)] |= 0x80 >> (x & 7);
1952a966c04fSmrg    else
1953a966c04fSmrg	ximage->data[ZINDEX1(x, y, ximage)] &= ~(0x80 >> (x & 7));
1954a966c04fSmrg    return 1;
1955a966c04fSmrg}
1956a966c04fSmrg
1957a966c04fSmrgstatic int
19582e2dd055SmrgPutPixel1LSB(
19592e2dd055Smrg    register XImage	*ximage,
19602e2dd055Smrg    int			 x,
19612e2dd055Smrg    int			 y,
19622e2dd055Smrg    unsigned long	 pixel)
1963a966c04fSmrg{
1964a966c04fSmrg    if(x < 0 || y < 0)
1965a966c04fSmrg    	return 0;
1966a966c04fSmrg
1967a966c04fSmrg    if (pixel & 1)
1968a966c04fSmrg	ximage->data[ZINDEX1(x, y, ximage)] |= 1 << (x & 7);
1969a966c04fSmrg    else
1970a966c04fSmrg	ximage->data[ZINDEX1(x, y, ximage)] &= ~(1 << (x & 7));
1971a966c04fSmrg    return 1;
1972a966c04fSmrg}
1973a966c04fSmrg
1974a966c04fSmrg#endif /* not FOR_MSW && not AMIGA */
1975a966c04fSmrg
1976a966c04fSmrg/*
1977a966c04fSmrg * This function parses an Xpm file or data and directly create an XImage
1978a966c04fSmrg */
1979a966c04fSmrgint
19802e2dd055SmrgxpmParseDataAndCreate(
19812e2dd055Smrg    Display		 *display,
19822e2dd055Smrg    xpmData		 *data,
19832e2dd055Smrg    XImage		**image_return,
19842e2dd055Smrg    XImage		**shapeimage_return,
19852e2dd055Smrg    XpmImage		 *image,
19862e2dd055Smrg    XpmInfo		 *info,
19872e2dd055Smrg    XpmAttributes	 *attributes)
1988a966c04fSmrg{
1989a966c04fSmrg    /* variables stored in the XpmAttributes structure */
1990a966c04fSmrg    Visual *visual;
1991a966c04fSmrg    Colormap colormap;
1992a966c04fSmrg    unsigned int depth;
1993a966c04fSmrg    int bitmap_format;
1994a966c04fSmrg    XpmFreeColorsFunc freeColors;
1995a966c04fSmrg
1996a966c04fSmrg    /* variables to return */
1997a966c04fSmrg    XImage *ximage = NULL;
1998a966c04fSmrg    XImage *shapeimage = NULL;
1999a966c04fSmrg    unsigned int mask_pixel_index = XpmUndefPixel;
2000a966c04fSmrg
2001a966c04fSmrg    /* calculation variables */
2002a966c04fSmrg    Pixel *image_pixels = NULL;
2003a966c04fSmrg    Pixel *mask_pixels = NULL;
2004a966c04fSmrg    Pixel *alloc_pixels = NULL;
2005a966c04fSmrg    Pixel *used_pixels = NULL;
2006a966c04fSmrg    unsigned int nalloc_pixels = 0;
2007a966c04fSmrg    unsigned int nused_pixels = 0;
2008a966c04fSmrg    unsigned int width, height, ncolors, cpp;
2009a966c04fSmrg    unsigned int x_hotspot, y_hotspot, hotspot = 0, extensions = 0;
2010a966c04fSmrg    XpmColor *colorTable = NULL;
2011a966c04fSmrg    char *hints_cmt = NULL;
2012a966c04fSmrg    char *colors_cmt = NULL;
2013a966c04fSmrg    char *pixels_cmt = NULL;
2014a966c04fSmrg
2015a966c04fSmrg    unsigned int cmts;
2016a966c04fSmrg    int ErrorStatus;
2017a966c04fSmrg    xpmHashTable hashtable;
2018a966c04fSmrg
2019a966c04fSmrg
2020a966c04fSmrg    /* initialize return values */
2021a966c04fSmrg    if (image_return)
2022a966c04fSmrg	*image_return = NULL;
2023a966c04fSmrg    if (shapeimage_return)
2024a966c04fSmrg	*shapeimage_return = NULL;
2025a966c04fSmrg
2026a966c04fSmrg
2027a966c04fSmrg    /* retrieve information from the XpmAttributes */
2028a966c04fSmrg    if (attributes && (attributes->valuemask & XpmVisual))
2029a966c04fSmrg	visual = attributes->visual;
2030a966c04fSmrg    else
2031a966c04fSmrg	visual = XDefaultVisual(display, XDefaultScreen(display));
2032a966c04fSmrg
2033a966c04fSmrg    if (attributes && (attributes->valuemask & XpmColormap))
2034a966c04fSmrg	colormap = attributes->colormap;
2035a966c04fSmrg    else
2036a966c04fSmrg	colormap = XDefaultColormap(display, XDefaultScreen(display));
2037a966c04fSmrg
2038a966c04fSmrg    if (attributes && (attributes->valuemask & XpmDepth))
2039a966c04fSmrg	depth = attributes->depth;
2040a966c04fSmrg    else
2041a966c04fSmrg	depth = XDefaultDepth(display, XDefaultScreen(display));
2042a966c04fSmrg
2043a966c04fSmrg    if (attributes && (attributes->valuemask & XpmBitmapFormat))
2044a966c04fSmrg	bitmap_format = attributes->bitmap_format;
2045a966c04fSmrg    else
2046a966c04fSmrg	bitmap_format = ZPixmap;
2047a966c04fSmrg
2048a966c04fSmrg    if (attributes && (attributes->valuemask & XpmFreeColors))
2049a966c04fSmrg	freeColors = attributes->free_colors;
2050a966c04fSmrg    else
2051a966c04fSmrg	freeColors = FreeColors;
2052a966c04fSmrg
2053a966c04fSmrg    cmts = info && (info->valuemask & XpmReturnComments);
2054a966c04fSmrg
2055a966c04fSmrg    /*
2056a966c04fSmrg     * parse the header
2057a966c04fSmrg     */
2058a966c04fSmrg    ErrorStatus = xpmParseHeader(data);
2059a966c04fSmrg    if (ErrorStatus != XpmSuccess)
2060a966c04fSmrg	return (ErrorStatus);
2061a966c04fSmrg
2062a966c04fSmrg    /*
2063a966c04fSmrg     * read values
2064a966c04fSmrg     */
2065a966c04fSmrg    ErrorStatus = xpmParseValues(data, &width, &height, &ncolors, &cpp,
2066a966c04fSmrg				 &x_hotspot, &y_hotspot, &hotspot,
2067a966c04fSmrg				 &extensions);
2068a966c04fSmrg    if (ErrorStatus != XpmSuccess)
2069a966c04fSmrg	return (ErrorStatus);
2070a966c04fSmrg
2071a966c04fSmrg    /*
2072a966c04fSmrg     * store the hints comment line
2073a966c04fSmrg     */
2074a966c04fSmrg    if (cmts)
2075a966c04fSmrg	xpmGetCmt(data, &hints_cmt);
2076a966c04fSmrg
2077a966c04fSmrg    /*
2078a966c04fSmrg     * init the hashtable
2079a966c04fSmrg     */
2080a966c04fSmrg    if (USE_HASHTABLE) {
2081a966c04fSmrg	ErrorStatus = xpmHashTableInit(&hashtable);
2082a966c04fSmrg	if (ErrorStatus != XpmSuccess)
2083a966c04fSmrg	    RETURN(ErrorStatus);
2084a966c04fSmrg    }
2085a966c04fSmrg
2086a966c04fSmrg    /*
2087a966c04fSmrg     * read colors
2088a966c04fSmrg     */
2089a966c04fSmrg    ErrorStatus = xpmParseColors(data, ncolors, cpp, &colorTable, &hashtable);
2090a966c04fSmrg    if (ErrorStatus != XpmSuccess)
2091a966c04fSmrg	RETURN(ErrorStatus);
2092a966c04fSmrg
2093a966c04fSmrg    /*
2094a966c04fSmrg     * store the colors comment line
2095a966c04fSmrg     */
2096a966c04fSmrg    if (cmts)
2097a966c04fSmrg	xpmGetCmt(data, &colors_cmt);
2098a966c04fSmrg
2099a966c04fSmrg    /* malloc pixels index tables */
210097cf2ee2Smrg    if (ncolors >= UINT_MAX / sizeof(Pixel))
2101a966c04fSmrg	RETURN(XpmNoMemory);
2102a966c04fSmrg
2103a966c04fSmrg    image_pixels = (Pixel *) XpmMalloc(sizeof(Pixel) * ncolors);
2104a966c04fSmrg    if (!image_pixels)
2105a966c04fSmrg	RETURN(XpmNoMemory);
2106a966c04fSmrg
2107a966c04fSmrg    mask_pixels = (Pixel *) XpmMalloc(sizeof(Pixel) * ncolors);
2108a966c04fSmrg    if (!mask_pixels)
2109a966c04fSmrg	RETURN(XpmNoMemory);
2110a966c04fSmrg
2111a966c04fSmrg    /* maximum of allocated pixels will be the number of colors */
2112a966c04fSmrg    alloc_pixels = (Pixel *) XpmMalloc(sizeof(Pixel) * ncolors);
2113a966c04fSmrg    if (!alloc_pixels)
2114a966c04fSmrg	RETURN(XpmNoMemory);
2115a966c04fSmrg
2116a966c04fSmrg    /* maximum of allocated pixels will be the number of colors */
2117a966c04fSmrg    used_pixels = (Pixel *) XpmMalloc(sizeof(Pixel) * ncolors);
2118a966c04fSmrg    if (!used_pixels)
2119a966c04fSmrg	RETURN(XpmNoMemory);
2120a966c04fSmrg
2121a966c04fSmrg    /* get pixel colors, store them in index tables */
2122a966c04fSmrg    ErrorStatus = CreateColors(display, attributes, colorTable, ncolors,
2123a966c04fSmrg			       image_pixels, mask_pixels, &mask_pixel_index,
2124a966c04fSmrg			       alloc_pixels, &nalloc_pixels, used_pixels,
2125a966c04fSmrg			       &nused_pixels);
2126a966c04fSmrg
2127a966c04fSmrg    if (ErrorStatus != XpmSuccess
2128a966c04fSmrg	&& (ErrorStatus < 0 || (attributes
2129a966c04fSmrg				&& (attributes->valuemask & XpmExactColors)
2130a966c04fSmrg				&& attributes->exactColors)))
2131a966c04fSmrg	RETURN(ErrorStatus);
2132a966c04fSmrg
2133a966c04fSmrg    /* now create the ximage */
2134a966c04fSmrg    if (image_return) {
2135a966c04fSmrg	ErrorStatus = CreateXImage(display, visual, depth,
2136a966c04fSmrg				   (depth == 1 ? bitmap_format : ZPixmap),
2137a966c04fSmrg				   width, height, &ximage);
2138a966c04fSmrg	if (ErrorStatus != XpmSuccess)
2139a966c04fSmrg	    RETURN(ErrorStatus);
2140a966c04fSmrg
2141a966c04fSmrg#if !defined(FOR_MSW) && !defined(AMIGA)
2142a966c04fSmrg
2143a966c04fSmrg	/*
2144a966c04fSmrg	 * set the XImage pointer function, to be used with XPutPixel,
2145a966c04fSmrg	 * to an internal optimized function
2146a966c04fSmrg	 */
2147a966c04fSmrg
2148a966c04fSmrg	if (ximage->bits_per_pixel == 8)
2149a966c04fSmrg	    ximage->f.put_pixel = PutPixel8;
2150a966c04fSmrg	else if (((ximage->bits_per_pixel | ximage->depth) == 1) &&
2151a966c04fSmrg		 (ximage->byte_order == ximage->bitmap_bit_order))
2152a966c04fSmrg	    if (ximage->bitmap_bit_order == MSBFirst)
2153a966c04fSmrg		ximage->f.put_pixel = PutPixel1MSB;
2154a966c04fSmrg	    else
2155a966c04fSmrg		ximage->f.put_pixel = PutPixel1LSB;
2156a966c04fSmrg	else if (ximage->bits_per_pixel == 16)
2157a966c04fSmrg	    if (ximage->bitmap_bit_order == MSBFirst)
2158a966c04fSmrg		ximage->f.put_pixel = PutPixel16MSB;
2159a966c04fSmrg	    else
2160a966c04fSmrg		ximage->f.put_pixel = PutPixel16LSB;
2161a966c04fSmrg	else if (ximage->bits_per_pixel == 32)
2162a966c04fSmrg#if !defined(WORD64) && !defined(LONG64)
2163a966c04fSmrg	    if (*((char *)&byteorderpixel) == ximage->byte_order)
2164a966c04fSmrg		ximage->f.put_pixel = PutPixel32;
2165a966c04fSmrg	    else
2166a966c04fSmrg#endif
2167a966c04fSmrg		if (ximage->bitmap_bit_order == MSBFirst)
2168a966c04fSmrg		    ximage->f.put_pixel = PutPixel32MSB;
2169a966c04fSmrg		else
2170a966c04fSmrg		    ximage->f.put_pixel = PutPixel32LSB;
2171a966c04fSmrg	else if ((ximage->bits_per_pixel | ximage->depth) == 1)
2172a966c04fSmrg	    ximage->f.put_pixel = PutPixel1;
2173a966c04fSmrg	else
2174a966c04fSmrg	    ximage->f.put_pixel = PutPixel;
2175a966c04fSmrg#endif /* not FOR_MSW && not AMIGA */
2176a966c04fSmrg    }
2177a966c04fSmrg
2178a966c04fSmrg    /* create the shape mask image */
2179a966c04fSmrg    if (mask_pixel_index != XpmUndefPixel && shapeimage_return) {
2180a966c04fSmrg	ErrorStatus = CreateXImage(display, visual, 1, bitmap_format,
2181a966c04fSmrg				   width, height, &shapeimage);
2182a966c04fSmrg	if (ErrorStatus != XpmSuccess)
2183a966c04fSmrg	    RETURN(ErrorStatus);
2184a966c04fSmrg
2185a966c04fSmrg#if !defined(FOR_MSW) && !defined(AMIGA)
2186a966c04fSmrg	if (shapeimage->bitmap_bit_order == MSBFirst)
2187a966c04fSmrg	    shapeimage->f.put_pixel = PutPixel1MSB;
2188a966c04fSmrg	else
2189a966c04fSmrg	    shapeimage->f.put_pixel = PutPixel1LSB;
2190a966c04fSmrg#endif
2191a966c04fSmrg    }
2192a966c04fSmrg
2193a966c04fSmrg    /*
2194a966c04fSmrg     * read pixels and put them in the XImage
2195a966c04fSmrg     */
2196a966c04fSmrg    ErrorStatus = ParseAndPutPixels(
2197a966c04fSmrg#ifdef FOR_MSW
2198a966c04fSmrg				    display,
2199a966c04fSmrg#endif
2200a966c04fSmrg				    data, width, height, ncolors, cpp,
2201a966c04fSmrg				    colorTable, &hashtable,
2202a966c04fSmrg				    ximage, image_pixels,
2203a966c04fSmrg				    shapeimage, mask_pixels);
2204a966c04fSmrg    XpmFree(image_pixels);
2205a966c04fSmrg    image_pixels = NULL;
2206a966c04fSmrg    XpmFree(mask_pixels);
2207a966c04fSmrg    mask_pixels = NULL;
2208a966c04fSmrg
2209a966c04fSmrg    /*
2210a966c04fSmrg     * free the hastable
2211a966c04fSmrg     */
2212a966c04fSmrg    if (ErrorStatus != XpmSuccess)
2213a966c04fSmrg	RETURN(ErrorStatus);
2214a966c04fSmrg    else if (USE_HASHTABLE)
2215a966c04fSmrg	xpmHashTableFree(&hashtable);
2216a966c04fSmrg
2217a966c04fSmrg    /*
2218a966c04fSmrg     * store the pixels comment line
2219a966c04fSmrg     */
2220a966c04fSmrg    if (cmts)
2221a966c04fSmrg	xpmGetCmt(data, &pixels_cmt);
2222a966c04fSmrg
2223a966c04fSmrg    /*
2224a966c04fSmrg     * parse extensions
2225a966c04fSmrg     */
2226a966c04fSmrg    if (info && (info->valuemask & XpmReturnExtensions)) {
2227a966c04fSmrg	if (extensions) {
2228a966c04fSmrg	    ErrorStatus = xpmParseExtensions(data, &info->extensions,
2229a966c04fSmrg					     &info->nextensions);
2230a966c04fSmrg	    if (ErrorStatus != XpmSuccess)
2231a966c04fSmrg		RETURN(ErrorStatus);
2232a966c04fSmrg	} else {
2233a966c04fSmrg	    info->extensions = NULL;
2234a966c04fSmrg	    info->nextensions = 0;
2235a966c04fSmrg	}
2236a966c04fSmrg    }
2237a966c04fSmrg    /*
22388b1f82e3Smrg     * store found information in the XpmImage structure
2239a966c04fSmrg     */
2240a966c04fSmrg    image->width = width;
2241a966c04fSmrg    image->height = height;
2242a966c04fSmrg    image->cpp = cpp;
2243a966c04fSmrg    image->ncolors = ncolors;
2244a966c04fSmrg    image->colorTable = colorTable;
2245a966c04fSmrg    image->data = NULL;
2246a966c04fSmrg
2247a966c04fSmrg    if (info) {
2248a966c04fSmrg	if (cmts) {
2249a966c04fSmrg	    info->hints_cmt = hints_cmt;
2250a966c04fSmrg	    info->colors_cmt = colors_cmt;
2251a966c04fSmrg	    info->pixels_cmt = pixels_cmt;
2252a966c04fSmrg	}
2253a966c04fSmrg	if (hotspot) {
2254a966c04fSmrg	    info->x_hotspot = x_hotspot;
2255a966c04fSmrg	    info->y_hotspot = y_hotspot;
2256a966c04fSmrg	    info->valuemask |= XpmHotspot;
2257a966c04fSmrg	}
2258a966c04fSmrg    }
2259a966c04fSmrg    /* if requested return used pixels in the XpmAttributes structure */
2260a966c04fSmrg    if (attributes && (attributes->valuemask & XpmReturnPixels ||
2261a966c04fSmrg/* 3.2 backward compatibility code */
2262a966c04fSmrg	attributes->valuemask & XpmReturnInfos)) {
2263a966c04fSmrg/* end 3.2 bc */
2264a966c04fSmrg	attributes->pixels = used_pixels;
2265a966c04fSmrg	attributes->npixels = nused_pixels;
2266a966c04fSmrg	attributes->mask_pixel = mask_pixel_index;
2267a966c04fSmrg    } else
2268a966c04fSmrg	XpmFree(used_pixels);
2269a966c04fSmrg
2270a966c04fSmrg    /* if requested return alloc'ed pixels in the XpmAttributes structure */
2271a966c04fSmrg    if (attributes && (attributes->valuemask & XpmReturnAllocPixels)) {
2272a966c04fSmrg	attributes->alloc_pixels = alloc_pixels;
2273a966c04fSmrg	attributes->nalloc_pixels = nalloc_pixels;
2274a966c04fSmrg    } else
2275a966c04fSmrg	XpmFree(alloc_pixels);
2276a966c04fSmrg
2277a966c04fSmrg    /* return created images */
2278a966c04fSmrg    if (image_return)
2279a966c04fSmrg	*image_return = ximage;
2280a966c04fSmrg    if (shapeimage_return)
2281a966c04fSmrg	*shapeimage_return = shapeimage;
2282a966c04fSmrg
2283a966c04fSmrg    return (XpmSuccess);
2284a966c04fSmrg
2285a966c04fSmrg/* exit point in case of error, free only locally allocated variables */
2286a966c04fSmrgerror:
2287a966c04fSmrg    if (USE_HASHTABLE)
2288a966c04fSmrg	xpmHashTableFree(&hashtable);
2289a966c04fSmrg    if (colorTable)
2290a966c04fSmrg	xpmFreeColorTable(colorTable, ncolors);
2291a966c04fSmrg    if (hints_cmt)
2292a966c04fSmrg	XpmFree(hints_cmt);
2293a966c04fSmrg    if (colors_cmt)
2294a966c04fSmrg	XpmFree(colors_cmt);
2295a966c04fSmrg    if (pixels_cmt)
2296a966c04fSmrg	XpmFree(pixels_cmt);
2297a966c04fSmrg    if (ximage)
2298a966c04fSmrg	XDestroyImage(ximage);
2299a966c04fSmrg    if (shapeimage)
2300a966c04fSmrg	XDestroyImage(shapeimage);
2301a966c04fSmrg    if (image_pixels)
2302a966c04fSmrg	XpmFree(image_pixels);
2303a966c04fSmrg    if (mask_pixels)
2304a966c04fSmrg	XpmFree(mask_pixels);
2305a966c04fSmrg    if (nalloc_pixels)
2306a966c04fSmrg	(*freeColors)(display, colormap, alloc_pixels, nalloc_pixels, NULL);
2307a966c04fSmrg    if (alloc_pixels)
2308a966c04fSmrg	XpmFree(alloc_pixels);
2309a966c04fSmrg    if (used_pixels)
2310a966c04fSmrg	XpmFree(used_pixels);
2311a966c04fSmrg
2312a966c04fSmrg    return (ErrorStatus);
2313a966c04fSmrg}
2314a966c04fSmrg
2315a966c04fSmrgstatic int
2316a966c04fSmrgParseAndPutPixels(
2317a966c04fSmrg#ifdef FOR_MSW
23182e2dd055Smrg    Display		*dc,
2319a966c04fSmrg#endif
23202e2dd055Smrg    xpmData		*data,
23212e2dd055Smrg    unsigned int	 width,
23222e2dd055Smrg    unsigned int	 height,
23232e2dd055Smrg    unsigned int	 ncolors,
23242e2dd055Smrg    unsigned int	 cpp,
23252e2dd055Smrg    XpmColor		*colorTable,
23262e2dd055Smrg    xpmHashTable	*hashtable,
23272e2dd055Smrg    XImage		*image,
23282e2dd055Smrg    Pixel		*image_pixels,
23292e2dd055Smrg    XImage		*shapeimage,
23302e2dd055Smrg    Pixel		*shape_pixels)
2331a966c04fSmrg{
2332a966c04fSmrg    unsigned int a, x, y;
2333a966c04fSmrg
2334a966c04fSmrg    switch (cpp) {
2335a966c04fSmrg
2336a966c04fSmrg    case (1):				/* Optimize for single character
2337a966c04fSmrg					 * colors */
2338a966c04fSmrg	{
2339a966c04fSmrg	    unsigned short colidx[256];
2340a966c04fSmrg#ifdef FOR_MSW
2341a966c04fSmrg	    HDC shapedc;
2342a966c04fSmrg	    HBITMAP obm, sobm;
2343a966c04fSmrg
2344a966c04fSmrg	    if ( shapeimage ) {
2345a966c04fSmrg		shapedc = CreateCompatibleDC(*dc);
2346a966c04fSmrg		sobm = SelectObject(shapedc, shapeimage->bitmap);
2347a966c04fSmrg	    } else {
2348a966c04fSmrg	        shapedc = NULL;
2349a966c04fSmrg	    }
2350a966c04fSmrg	    obm = SelectObject(*dc, image->bitmap);
2351a966c04fSmrg#endif
2352a966c04fSmrg	    if (ncolors > 256)
2353a966c04fSmrg		return (XpmFileInvalid);
2354a966c04fSmrg
2355a966c04fSmrg	    bzero((char *)colidx, 256 * sizeof(short));
2356a966c04fSmrg	    for (a = 0; a < ncolors; a++)
2357a966c04fSmrg		colidx[(unsigned char)colorTable[a].string[0]] = a + 1;
2358a966c04fSmrg
2359a966c04fSmrg	    for (y = 0; y < height; y++) {
2360a966c04fSmrg		xpmNextString(data);
2361a966c04fSmrg		for (x = 0; x < width; x++) {
2362a966c04fSmrg		    int c = xpmGetC(data);
2363a966c04fSmrg
2364a966c04fSmrg		    if (c > 0 && c < 256 && colidx[c] != 0) {
2365a966c04fSmrg#ifndef FOR_MSW
2366a966c04fSmrg			XPutPixel(image, x, y, image_pixels[colidx[c] - 1]);
2367a966c04fSmrg			if (shapeimage)
2368a966c04fSmrg			    XPutPixel(shapeimage, x, y,
2369a966c04fSmrg				      shape_pixels[colidx[c] - 1]);
2370a966c04fSmrg#else
2371a966c04fSmrg			SetPixel(*dc, x, y, image_pixels[colidx[c] - 1]);
2372a966c04fSmrg			if (shapedc) {
2373a966c04fSmrg			    SetPixel(shapedc, x, y, shape_pixels[colidx[c] - 1]);
2374a966c04fSmrg			}
2375a966c04fSmrg#endif
2376a966c04fSmrg		    } else
2377a966c04fSmrg			return (XpmFileInvalid);
2378a966c04fSmrg		}
2379a966c04fSmrg	    }
2380a966c04fSmrg#ifdef FOR_MSW
2381a966c04fSmrg	    if ( shapedc ) {
2382a966c04fSmrg	        SelectObject(shapedc, sobm);
2383a966c04fSmrg		DeleteDC(shapedc);
2384a966c04fSmrg	    }
2385a966c04fSmrg	    SelectObject(*dc, obm);
2386a966c04fSmrg#endif
2387a966c04fSmrg	}
2388a966c04fSmrg	break;
2389a966c04fSmrg
2390a966c04fSmrg    case (2):				/* Optimize for double character
2391a966c04fSmrg					 * colors */
2392a966c04fSmrg	{
2393a966c04fSmrg
2394a966c04fSmrg/* free all allocated pointers at all exits */
2395a966c04fSmrg#define FREE_CIDX {int f; for (f = 0; f < 256; f++) \
2396a966c04fSmrgif (cidx[f]) XpmFree(cidx[f]);}
2397a966c04fSmrg
2398a966c04fSmrg	    /* array of pointers malloced by need */
2399a966c04fSmrg	    unsigned short *cidx[256];
2400a966c04fSmrg	    unsigned int char1;
2401a966c04fSmrg
2402a966c04fSmrg	    bzero((char *)cidx, 256 * sizeof(unsigned short *)); /* init */
2403a966c04fSmrg	    for (a = 0; a < ncolors; a++) {
2404a966c04fSmrg		char1 = (unsigned char) colorTable[a].string[0];
2405a966c04fSmrg		if (cidx[char1] == NULL) { /* get new memory */
2406a966c04fSmrg		    cidx[char1] = (unsigned short *)
2407a966c04fSmrg			XpmCalloc(256, sizeof(unsigned short));
2408a966c04fSmrg		    if (cidx[char1] == NULL) { /* new block failed */
2409a966c04fSmrg			FREE_CIDX;
2410a966c04fSmrg			return (XpmNoMemory);
2411a966c04fSmrg		    }
2412a966c04fSmrg		}
2413a966c04fSmrg		cidx[char1][(unsigned char)colorTable[a].string[1]] = a + 1;
2414a966c04fSmrg	    }
2415a966c04fSmrg
2416a966c04fSmrg	    for (y = 0; y < height; y++) {
2417a966c04fSmrg		xpmNextString(data);
2418a966c04fSmrg		for (x = 0; x < width; x++) {
2419a966c04fSmrg		    int cc1 = xpmGetC(data);
2420a966c04fSmrg		    if (cc1 > 0 && cc1 < 256) {
2421a966c04fSmrg			int cc2 = xpmGetC(data);
2422a966c04fSmrg			if (cc2 > 0 && cc2 < 256 &&
2423a966c04fSmrg			    cidx[cc1] && cidx[cc1][cc2] != 0) {
2424a966c04fSmrg#ifndef FOR_MSW
2425a966c04fSmrg			    XPutPixel(image, x, y,
2426a966c04fSmrg				      image_pixels[cidx[cc1][cc2] - 1]);
2427a966c04fSmrg			    if (shapeimage)
2428a966c04fSmrg				XPutPixel(shapeimage, x, y,
2429a966c04fSmrg					  shape_pixels[cidx[cc1][cc2] - 1]);
2430a966c04fSmrg#else
2431a966c04fSmrg			SelectObject(*dc, image->bitmap);
2432a966c04fSmrg			SetPixel(*dc, x, y, image_pixels[cidx[cc1][cc2] - 1]);
2433a966c04fSmrg			if (shapeimage) {
2434a966c04fSmrg			    SelectObject(*dc, shapeimage->bitmap);
2435a966c04fSmrg			    SetPixel(*dc, x, y,
2436a966c04fSmrg				     shape_pixels[cidx[cc1][cc2] - 1]);
2437a966c04fSmrg			}
2438a966c04fSmrg#endif
2439a966c04fSmrg			} else {
2440a966c04fSmrg			    FREE_CIDX;
2441a966c04fSmrg			    return (XpmFileInvalid);
2442a966c04fSmrg			}
2443a966c04fSmrg		    } else {
2444a966c04fSmrg			FREE_CIDX;
2445a966c04fSmrg			return (XpmFileInvalid);
2446a966c04fSmrg		    }
2447a966c04fSmrg		}
2448a966c04fSmrg	    }
2449a966c04fSmrg	    FREE_CIDX;
2450a966c04fSmrg	}
2451a966c04fSmrg	break;
2452a966c04fSmrg
2453a966c04fSmrg    default:				/* Non-optimized case of long color
2454a966c04fSmrg					 * names */
2455a966c04fSmrg	{
2456a966c04fSmrg	    char *s;
2457a966c04fSmrg	    char buf[BUFSIZ];
2458a966c04fSmrg
2459a966c04fSmrg	    if (cpp >= sizeof(buf))
2460a966c04fSmrg		return (XpmFileInvalid);
2461a966c04fSmrg
2462a966c04fSmrg	    buf[cpp] = '\0';
2463a966c04fSmrg	    if (USE_HASHTABLE) {
2464a966c04fSmrg		xpmHashAtom *slot;
2465a966c04fSmrg
2466a966c04fSmrg		for (y = 0; y < height; y++) {
2467a966c04fSmrg		    xpmNextString(data);
2468a966c04fSmrg		    for (x = 0; x < width; x++) {
2469a966c04fSmrg			for (a = 0, s = buf; a < cpp; a++, s++)
2470a966c04fSmrg			    *s = xpmGetC(data);
2471a966c04fSmrg			slot = xpmHashSlot(hashtable, buf);
2472a966c04fSmrg			if (!*slot)	/* no color matches */
2473a966c04fSmrg			    return (XpmFileInvalid);
2474a966c04fSmrg#ifndef FOR_MSW
2475a966c04fSmrg			XPutPixel(image, x, y,
2476a966c04fSmrg				  image_pixels[HashColorIndex(slot)]);
2477a966c04fSmrg			if (shapeimage)
2478a966c04fSmrg			    XPutPixel(shapeimage, x, y,
2479a966c04fSmrg				      shape_pixels[HashColorIndex(slot)]);
2480a966c04fSmrg#else
2481a966c04fSmrg			SelectObject(*dc, image->bitmap);
2482a966c04fSmrg			SetPixel(*dc, x, y,
2483a966c04fSmrg				 image_pixels[HashColorIndex(slot)]);
2484a966c04fSmrg			if (shapeimage) {
2485a966c04fSmrg			    SelectObject(*dc, shapeimage->bitmap);
2486a966c04fSmrg			    SetPixel(*dc, x, y,
2487a966c04fSmrg				     shape_pixels[HashColorIndex(slot)]);
2488a966c04fSmrg			}
2489a966c04fSmrg#endif
2490a966c04fSmrg		    }
2491a966c04fSmrg		}
2492a966c04fSmrg	    } else {
2493a966c04fSmrg		for (y = 0; y < height; y++) {
2494a966c04fSmrg		    xpmNextString(data);
2495a966c04fSmrg		    for (x = 0; x < width; x++) {
2496a966c04fSmrg			for (a = 0, s = buf; a < cpp; a++, s++)
2497a966c04fSmrg			    *s = xpmGetC(data);
2498a966c04fSmrg			for (a = 0; a < ncolors; a++)
2499a966c04fSmrg			    if (!strcmp(colorTable[a].string, buf))
2500a966c04fSmrg				break;
2501a966c04fSmrg			if (a == ncolors)	/* no color matches */
2502a966c04fSmrg			    return (XpmFileInvalid);
2503a966c04fSmrg#ifndef FOR_MSW
2504a966c04fSmrg			XPutPixel(image, x, y, image_pixels[a]);
2505a966c04fSmrg			if (shapeimage)
2506a966c04fSmrg			    XPutPixel(shapeimage, x, y, shape_pixels[a]);
2507a966c04fSmrg#else
2508a966c04fSmrg			SelectObject(*dc, image->bitmap);
2509a966c04fSmrg			SetPixel(*dc, x, y, image_pixels[a]);
2510a966c04fSmrg			if (shapeimage) {
2511a966c04fSmrg			    SelectObject(*dc, shapeimage->bitmap);
2512a966c04fSmrg			    SetPixel(*dc, x, y, shape_pixels[a]);
2513a966c04fSmrg			}
2514a966c04fSmrg#endif
2515a966c04fSmrg		    }
2516a966c04fSmrg		}
2517a966c04fSmrg	    }
2518a966c04fSmrg	}
2519a966c04fSmrg	break;
2520a966c04fSmrg    }
2521a966c04fSmrg    return (XpmSuccess);
2522a966c04fSmrg}
2523