xref: /plan9/sys/src/cmd/gs/src/gxi12bit.c (revision 593dc095aefb2a85c828727bbfa9da139a49bdf4)
1 /* Copyright (C) 1994, 1995, 1996, 1997, 1998, 1999 Aladdin Enterprises.  All rights reserved.
2 
3   This software is provided AS-IS with no warranty, either express or
4   implied.
5 
6   This software is distributed under license and may not be copied,
7   modified or distributed except as expressly authorized under the terms
8   of the license contained in the file LICENSE in this distribution.
9 
10   For more information about licensing, please refer to
11   http://www.ghostscript.com/licensing/. For information on
12   commercial licensing, go to http://www.artifex.com/licensing/ or
13   contact Artifex Software, Inc., 101 Lucas Valley Road #110,
14   San Rafael, CA  94903, U.S.A., +1(415)492-9861.
15 */
16 
17 /* $Id: gxi12bit.c,v 1.7 2005/06/08 14:00:32 igor Exp $ */
18 /* 12-bit image procedures */
19 #include "gx.h"
20 #include "memory_.h"
21 #include "gpcheck.h"
22 #include "gserrors.h"
23 #include "gxfixed.h"
24 #include "gxfrac.h"
25 #include "gxarith.h"
26 #include "gxmatrix.h"
27 #include "gsccolor.h"
28 #include "gspaint.h"
29 #include "gxdevice.h"
30 #include "gxcmap.h"
31 #include "gxdcolor.h"
32 #include "gxistate.h"
33 #include "gxdevmem.h"
34 #include "gxcpath.h"
35 #include "gximage.h"
36 
37 /* ---------------- Unpacking procedures ---------------- */
38 
39 private const byte *
sample_unpack_12(byte * bptr,int * pdata_x,const byte * data,int data_x,uint dsize,const sample_map * ignore_smap,int spread,int ignore_num_components_per_plane)40 sample_unpack_12(byte * bptr, int *pdata_x, const byte * data,
41 		 int data_x, uint dsize, const sample_map *ignore_smap, int spread,
42 		 int ignore_num_components_per_plane)
43 {
44     /* Assuming an identity map for all components. */
45     register frac *bufp = (frac *) bptr;
46     uint dskip = (data_x >> 1) * 3;
47     const byte *psrc = data + dskip;
48 #define inc_bufp(bp, n) bp = (frac *)((byte *)(bp) + (n))
49     uint sample;
50     int left = dsize - dskip;
51 
52     if ((data_x & 1) && left > 0)
53 	switch (left) {
54 	    default:
55 		sample = ((uint) (psrc[1] & 0xf) << 8) + psrc[2];
56 		*bufp = bits2frac(sample, 12);
57 		inc_bufp(bufp, spread);
58 		psrc += 3;
59 		left -= 3;
60 		break;
61 	    case 2:		/* xxxxxxxx xxxxdddd */
62 		*bufp = (psrc[1] & 0xf) * (frac_1 / 15);
63 	    case 1:		/* xxxxxxxx */
64 		left = 0;
65 	}
66     while (left >= 3) {
67 	sample = ((uint) * psrc << 4) + (psrc[1] >> 4);
68 	*bufp = bits2frac(sample, 12);
69 	inc_bufp(bufp, spread);
70 	sample = ((uint) (psrc[1] & 0xf) << 8) + psrc[2];
71 	*bufp = bits2frac(sample, 12);
72 	inc_bufp(bufp, spread);
73 	psrc += 3;
74 	left -= 3;
75     }
76     /* Handle trailing bytes. */
77     switch (left) {
78 	case 2:		/* dddddddd ddddxxxx */
79 	    sample = ((uint) * psrc << 4) + (psrc[1] >> 4);
80 	    *bufp = bits2frac(sample, 12);
81 	    inc_bufp(bufp, spread);
82 	    *bufp = (psrc[1] & 0xf) * (frac_1 / 15);
83 	    break;
84 	case 1:		/* dddddddd */
85 	    sample = (uint) * psrc << 4;
86 	    *bufp = bits2frac(sample, 12);
87 	    break;
88 	case 0:		/* Nothing more to do. */
89 	    ;
90     }
91     *pdata_x = 0;
92     return bptr;
93 }
94 
95 const sample_unpack_proc_t sample_unpack_12_proc = sample_unpack_12;
96 
97 /* ------ Strategy procedure ------ */
98 
99 /* Check the prototype. */
100 iclass_proc(gs_image_class_2_fracs);
101 
102 /* Use special (slow) logic for 12-bit source values. */
103 private irender_proc(image_render_frac);
104 irender_proc_t
gs_image_class_2_fracs(gx_image_enum * penum)105 gs_image_class_2_fracs(gx_image_enum * penum)
106 {
107     if (penum->bps > 8) {
108 	if (penum->use_mask_color) {
109 	    /* Convert color mask values to fracs. */
110 	    int i;
111 
112 	    for (i = 0; i < penum->spp * 2; ++i)
113 		penum->mask_color.values[i] =
114 		    bits2frac(penum->mask_color.values[i], 12);
115 	}
116 	if_debug0('b', "[b]render=frac\n");
117 	return &image_render_frac;
118     }
119     return 0;
120 }
121 
122 /* ---------------- Rendering procedures ---------------- */
123 
124 /* ------ Rendering for 12-bit samples ------ */
125 
126 #define FRACS_PER_LONG (arch_sizeof_long / arch_sizeof_frac)
127 typedef union {
128     frac v[GS_IMAGE_MAX_COLOR_COMPONENTS];
129 #define LONGS_PER_COLOR_FRACS\
130   ((GS_IMAGE_MAX_COLOR_COMPONENTS + FRACS_PER_LONG - 1) / FRACS_PER_LONG)
131     long all[LONGS_PER_COLOR_FRACS];	/* for fast comparison */
132 } color_fracs;
133 
134 #define LONGS_PER_4_FRACS ((FRACS_PER_LONG + 3) / 4)
135 #if LONGS_PER_4_FRACS == 1
136 #  define COLOR_FRACS_4_EQ(f1, f2)\
137      ((f1).all[0] == (f2).all[0])
138 #else
139 #if LONGS_PER_4_FRACS == 2
140 #  define COLOR_FRACS_4_EQ(f1, f2)\
141      ((f1).all[0] == (f2).all[0] && (f1).all[1] == (f2).all[1])
142 #endif
143 #endif
144 
145 /* Test whether a color is transparent. */
146 private bool
mask_color12_matches(const frac * v,const gx_image_enum * penum,int num_components)147 mask_color12_matches(const frac *v, const gx_image_enum *penum,
148 		   int num_components)
149 {
150     int i;
151 
152     for (i = num_components * 2, v += num_components - 1; (i -= 2) >= 0; --v)
153 	if (*v < penum->mask_color.values[i] ||
154 	    *v > penum->mask_color.values[i + 1]
155 	    )
156 	    return false;
157     return true;
158 }
159 
160 /* Render an image with more than 8 bits per sample. */
161 /* The samples have been expanded into fracs. */
162 private int
image_render_frac(gx_image_enum * penum,const byte * buffer,int data_x,uint w,int h,gx_device * dev)163 image_render_frac(gx_image_enum * penum, const byte * buffer, int data_x,
164 		  uint w, int h, gx_device * dev)
165 {
166     const gs_imager_state *pis = penum->pis;
167     gs_logical_operation_t lop = penum->log_op;
168     gx_dda_fixed_point pnext;
169     image_posture posture = penum->posture;
170     fixed xl, ytf;
171     fixed pdyx, pdyy;		/* edge of parallelogram */
172     int yt = penum->yci, iht = penum->hci;
173     const gs_color_space *pcs = penum->pcs;
174     cs_proc_remap_color((*remap_color)) = pcs->type->remap_color;
175     gs_client_color cc;
176     bool device_color = penum->device_color;
177     const gx_color_map_procs *cmap_procs = gx_get_cmap_procs(pis, dev);
178     cmap_proc_rgb((*map_rgb)) = cmap_procs->map_rgb;
179     cmap_proc_cmyk((*map_cmyk)) = cmap_procs->map_cmyk;
180     bool use_mask_color = penum->use_mask_color;
181     gx_device_color devc1, devc2;
182     gx_device_color *pdevc = &devc1;
183     gx_device_color *pdevc_next = &devc2;
184     int spp = penum->spp;
185     const frac *psrc_initial = (const frac *)buffer + data_x * spp;
186     const frac *psrc = psrc_initial;
187     const frac *rsrc = psrc + spp; /* psrc + spp at start of run */
188     fixed xrun;			/* x at start of run */
189     int irun;			/* int xrun */
190     fixed yrun;			/* y ditto */
191     color_fracs run;		/* run value */
192     color_fracs next;		/* next sample value */
193     const frac *bufend = psrc + w;
194     int code = 0, mcode = 0;
195 
196     if (h == 0)
197 	return 0;
198     pnext = penum->dda.pixel0;
199     xrun = xl = dda_current(pnext.x);
200     irun = fixed2int_var_rounded(xrun);
201     yrun = ytf = dda_current(pnext.y);
202     pdyx = dda_current(penum->dda.row.x) - penum->cur.x;
203     pdyy = dda_current(penum->dda.row.y) - penum->cur.y;
204     if_debug5('b', "[b]y=%d data_x=%d w=%d xt=%f yt=%f\n",
205 	      penum->y, data_x, w, fixed2float(xl), fixed2float(ytf));
206     memset(&run, 0, sizeof(run));
207     memset(&next, 0, sizeof(next));
208     /* Ensure that we don't get any false dev_color_eq hits. */
209     set_nonclient_dev_color(&devc1, gx_no_color_index);
210     set_nonclient_dev_color(&devc2, gx_no_color_index);
211     cs_full_init_color(&cc, pcs);
212     run.v[0] = ~psrc[0];	/* force remap */
213 
214     while (psrc < bufend) {
215 	next.v[0] = psrc[0];
216 	switch (spp) {
217 	    case 4:		/* may be CMYK */
218 		next.v[1] = psrc[1];
219 		next.v[2] = psrc[2];
220 		next.v[3] = psrc[3];
221 		psrc += 4;
222 		if (COLOR_FRACS_4_EQ(next, run))
223 		    goto inc;
224 		if (use_mask_color && mask_color12_matches(next.v, penum, 4)) {
225 		    color_set_null(pdevc_next);
226 		    goto f;
227 		}
228 		if (device_color) {
229 		    (*map_cmyk) (next.v[0], next.v[1],
230 				 next.v[2], next.v[3],
231 				 pdevc_next, pis, dev,
232 				 gs_color_select_source);
233 		    goto f;
234 		}
235 		decode_frac(next.v[0], cc, 0);
236 		decode_frac(next.v[1], cc, 1);
237 		decode_frac(next.v[2], cc, 2);
238 		decode_frac(next.v[3], cc, 3);
239 		if_debug4('B', "[B]cc[0..3]=%g,%g,%g,%g\n",
240 			  cc.paint.values[0], cc.paint.values[1],
241 			  cc.paint.values[2], cc.paint.values[3]);
242 		if_debug1('B', "[B]cc[3]=%g\n",
243 			  cc.paint.values[3]);
244 		break;
245 	    case 3:		/* may be RGB */
246 		next.v[1] = psrc[1];
247 		next.v[2] = psrc[2];
248 		psrc += 3;
249 		if (COLOR_FRACS_4_EQ(next, run))
250 		    goto inc;
251 		if (use_mask_color && mask_color12_matches(next.v, penum, 3)) {
252 		    color_set_null(pdevc_next);
253 		    goto f;
254 		}
255 		if (device_color) {
256 		    (*map_rgb) (next.v[0], next.v[1],
257 				next.v[2], pdevc_next, pis, dev,
258 				gs_color_select_source);
259 		    goto f;
260 		}
261 		decode_frac(next.v[0], cc, 0);
262 		decode_frac(next.v[1], cc, 1);
263 		decode_frac(next.v[2], cc, 2);
264 		if_debug3('B', "[B]cc[0..2]=%g,%g,%g\n",
265 			  cc.paint.values[0], cc.paint.values[1],
266 			  cc.paint.values[2]);
267 		break;
268 	    case 1:		/* may be Gray */
269 		psrc++;
270 		if (next.v[0] == run.v[0])
271 		    goto inc;
272 		if (use_mask_color && mask_color12_matches(next.v, penum, 1)) {
273 		    color_set_null(pdevc_next);
274 		    goto f;
275 		}
276 		if (device_color) {
277 		    (*map_rgb) (next.v[0], next.v[0],
278 				next.v[0], pdevc_next, pis, dev,
279 				gs_color_select_source);
280 		    goto f;
281 		}
282 		decode_frac(next.v[0], cc, 0);
283 		if_debug1('B', "[B]cc[0]=%g\n",
284 			  cc.paint.values[0]);
285 		break;
286 	    default:		/* DeviceN */
287 		{
288 		    int i;
289 
290 		    for (i = 1; i < spp; ++i)
291 			next.v[i] = psrc[i];
292 		    psrc += spp;
293 		    if (!memcmp(next.v, run.v, spp * sizeof(next.v[0])))
294 			goto inc;
295 		    if (use_mask_color &&
296 			mask_color12_matches(next.v, penum, spp)
297 			) {
298 			color_set_null(pdevc_next);
299 			goto f;
300 		    }
301 		    for (i = 0; i < spp; ++i)
302 			decode_frac(next.v[i], cc, i);
303 #ifdef DEBUG
304 		    if (gs_debug_c('B')) {
305 			dprintf2("[B]cc[0..%d]=%g", spp - 1,
306 				 cc.paint.values[0]);
307 			for (i = 1; i < spp; ++i)
308 			    dprintf1(",%g", cc.paint.values[i]);
309 			dputs("\n");
310 		    }
311 #endif
312 		}
313 		break;
314 	}
315 	mcode = remap_color(&cc, pcs, pdevc_next, pis, dev,
316 			   gs_color_select_source);
317 	if (mcode < 0)
318 	    goto fill;
319 f:
320 	if_debug7('B', "[B]0x%x,0x%x,0x%x,0x%x -> %ld,%ld,0x%lx\n",
321 		  next.v[0], next.v[1], next.v[2], next.v[3],
322 		  pdevc_next->colors.binary.color[0],
323 		  pdevc_next->colors.binary.color[1],
324 		  (ulong) pdevc_next->type);
325 	/* Even though the supplied colors don't match, */
326 	/* the device colors might. */
327 	if (!dev_color_eq(devc1, devc2)) {
328 	    /* Fill the region between xrun/irun and xl */
329 	    gx_device_color *ptemp;
330 
331 fill:
332 	    if (posture != image_portrait) {	/* Parallelogram */
333 		code = (*dev_proc(dev, fill_parallelogram))
334 		    (dev, xrun, yrun,
335 		     xl - xrun, ytf - yrun, pdyx, pdyy,
336 		     pdevc, lop);
337 	    } else {		/* Rectangle */
338 		int xi = irun;
339 		int wi = (irun = fixed2int_var_rounded(xl)) - xi;
340 
341 		if (wi < 0)
342 		    xi += wi, wi = -wi;
343 		code = gx_fill_rectangle_device_rop(xi, yt,
344 						  wi, iht, pdevc, dev, lop);
345 	    }
346 	    if (code < 0)
347 		goto err;
348 	    rsrc = psrc;
349 	    if ((code = mcode) < 0)
350 		goto err;
351 	    ptemp = pdevc;
352 	    pdevc = pdevc_next;
353 	    pdevc_next = ptemp;
354 	    xrun = xl;
355 	    yrun = ytf;
356 	}
357 	run = next;
358 inc:
359 	xl = dda_next(pnext.x);
360 	ytf = dda_next(pnext.y);
361     }
362     /* Fill the final run. */
363     code = (*dev_proc(dev, fill_parallelogram))
364 	(dev, xrun, yrun, xl - xrun, ytf - yrun, pdyx, pdyy, pdevc, lop);
365     return (code < 0 ? code : 1);
366 
367     /* Save position if error, in case we resume. */
368 err:
369     penum->used.x = (rsrc - spp - psrc_initial) / spp;
370     penum->used.y = 0;
371     return code;
372 }
373