2 |
- |
1 |
/* Copyright (C) 1995-2003 artofcode LLC. 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: gdevcgm.c,v 1.10 2004/04/01 04:51:42 dan Exp $ */
|
|
|
18 |
/* CGM (Computer Graphics Metafile) driver */
|
|
|
19 |
#include "memory_.h"
|
|
|
20 |
#include "gx.h"
|
|
|
21 |
#include "gserrors.h"
|
|
|
22 |
#include "gxdevice.h"
|
|
|
23 |
#include "gp.h"
|
|
|
24 |
#include "gsparam.h"
|
|
|
25 |
#include "gdevcgml.h"
|
|
|
26 |
#include "gdevpccm.h"
|
|
|
27 |
|
|
|
28 |
/**************** Future optimizations:
|
|
|
29 |
Do tile_rectangle with pattern
|
|
|
30 |
Keep track of painted area,
|
|
|
31 |
do masked copy_mono with cell array if possible
|
|
|
32 |
****************/
|
|
|
33 |
|
|
|
34 |
typedef struct gx_device_cgm_s {
|
|
|
35 |
gx_device_common;
|
|
|
36 |
char fname[gp_file_name_sizeof];
|
|
|
37 |
FILE *file;
|
|
|
38 |
cgm_state *st;
|
|
|
39 |
bool in_picture;
|
|
|
40 |
} gx_device_cgm;
|
|
|
41 |
|
|
|
42 |
/* GC descriptor */
|
|
|
43 |
gs_private_st_suffix_add1_final(st_device_cgm, gx_device_cgm,
|
|
|
44 |
"gx_device_cgm", device_cgm_enum_ptrs, device_cgm_reloc_ptrs,
|
|
|
45 |
gx_device_finalize, st_device, st);
|
|
|
46 |
|
|
|
47 |
/* Device procedures */
|
|
|
48 |
private dev_proc_open_device(cgm_open);
|
|
|
49 |
private dev_proc_output_page(cgm_output_page);
|
|
|
50 |
private dev_proc_close_device(cgm_close);
|
|
|
51 |
private dev_proc_fill_rectangle(cgm_fill_rectangle);
|
|
|
52 |
|
|
|
53 |
#if 0
|
|
|
54 |
private dev_proc_tile_rectangle(cgm_tile_rectangle);
|
|
|
55 |
|
|
|
56 |
#else
|
|
|
57 |
#define cgm_tile_rectangle NULL
|
|
|
58 |
#endif
|
|
|
59 |
private dev_proc_copy_mono(cgm_copy_mono);
|
|
|
60 |
private dev_proc_copy_color(cgm_copy_color);
|
|
|
61 |
private dev_proc_get_params(cgm_get_params);
|
|
|
62 |
private dev_proc_put_params(cgm_put_params);
|
|
|
63 |
|
|
|
64 |
/* In principle, all the drawing operations should be polymorphic, */
|
|
|
65 |
/* but it's just as easy just to test the depth, since we're not */
|
|
|
66 |
/* very concerned about performance. */
|
|
|
67 |
#define cgm_device(dname, depth, max_value, dither, map_rgb_color, map_color_rgb)\
|
|
|
68 |
{ std_device_color_stype_body(gx_device_cgm, 0, dname, &st_device_cgm,\
|
|
|
69 |
850, 1100, 100, 100, depth, max_value, dither),\
|
|
|
70 |
{ cgm_open,\
|
|
|
71 |
NULL, /* get_initial_matrix */\
|
|
|
72 |
NULL, /* sync_output */\
|
|
|
73 |
cgm_output_page,\
|
|
|
74 |
cgm_close,\
|
|
|
75 |
map_rgb_color,\
|
|
|
76 |
map_color_rgb,\
|
|
|
77 |
cgm_fill_rectangle,\
|
|
|
78 |
cgm_tile_rectangle,\
|
|
|
79 |
cgm_copy_mono,\
|
|
|
80 |
cgm_copy_color,\
|
|
|
81 |
NULL, /* draw_line */\
|
|
|
82 |
NULL, /* get_bits */\
|
|
|
83 |
cgm_get_params,\
|
|
|
84 |
cgm_put_params\
|
|
|
85 |
},\
|
|
|
86 |
{ 0 }, /* fname */\
|
|
|
87 |
0, /* file */\
|
|
|
88 |
0, /* st */\
|
|
|
89 |
|
|
|
90 |
}
|
|
|
91 |
|
|
|
92 |
gx_device_cgm gs_cgmmono_device =
|
|
|
93 |
cgm_device("cgmmono", 1, 1, 2,
|
|
|
94 |
gx_default_map_rgb_color, gx_default_w_b_map_color_rgb);
|
|
|
95 |
|
|
|
96 |
gx_device_cgm gs_cgm8_device =
|
|
|
97 |
cgm_device("cgm8", 8, 5, 6,
|
|
|
98 |
pc_8bit_map_rgb_color, pc_8bit_map_color_rgb);
|
|
|
99 |
|
|
|
100 |
gx_device_cgm gs_cgm24_device =
|
|
|
101 |
cgm_device("cgm24", 24, 255, 255,
|
|
|
102 |
gx_default_rgb_map_rgb_color, gx_default_rgb_map_color_rgb);
|
|
|
103 |
|
|
|
104 |
/* Define allocator procedures for the CGM library. */
|
|
|
105 |
private void *
|
|
|
106 |
cgm_gs_alloc(void *private_data, uint size)
|
|
|
107 |
{
|
|
|
108 |
gx_device_cgm *cdev = private_data;
|
|
|
109 |
|
|
|
110 |
return gs_alloc_bytes(cdev->memory, size, "cgm_gs_alloc");
|
|
|
111 |
}
|
|
|
112 |
private void
|
|
|
113 |
cgm_gs_free(void *private_data, void *obj)
|
|
|
114 |
{
|
|
|
115 |
gx_device_cgm *cdev = private_data;
|
|
|
116 |
|
|
|
117 |
gs_free_object(cdev->memory, obj, "cgm_gs_free");
|
|
|
118 |
}
|
|
|
119 |
|
|
|
120 |
/* ---------------- Utilities ---------------- */
|
|
|
121 |
|
|
|
122 |
/* Convert a CGM result code to our error values. */
|
|
|
123 |
private int
|
|
|
124 |
cgm_error_code(cgm_result result)
|
|
|
125 |
{
|
|
|
126 |
switch (result) {
|
|
|
127 |
default:
|
|
|
128 |
case cgm_result_wrong_state:
|
|
|
129 |
return gs_error_unknownerror;
|
|
|
130 |
case cgm_result_out_of_range:
|
|
|
131 |
return gs_error_rangecheck;
|
|
|
132 |
case cgm_result_io_error:
|
|
|
133 |
return gs_error_ioerror;
|
|
|
134 |
}
|
|
|
135 |
}
|
|
|
136 |
#define check_result(result)\
|
|
|
137 |
if ( result != cgm_result_ok ) return_error(cgm_error_code(result))
|
|
|
138 |
|
|
|
139 |
/* ---------------- Device control ---------------- */
|
|
|
140 |
|
|
|
141 |
/* Open the device */
|
|
|
142 |
private int
|
|
|
143 |
cgm_open(gx_device * dev)
|
|
|
144 |
{
|
|
|
145 |
gx_device_cgm *cdev = (gx_device_cgm *) dev;
|
|
|
146 |
cgm_allocator cal;
|
|
|
147 |
static const int elements[] =
|
|
|
148 |
{-1, 1};
|
|
|
149 |
cgm_metafile_elements meta;
|
|
|
150 |
cgm_result result;
|
|
|
151 |
|
|
|
152 |
cdev->file = fopen(cdev->fname, "wb");
|
|
|
153 |
if (cdev->file == 0)
|
|
|
154 |
return_error(gs_error_ioerror);
|
|
|
155 |
cal.private_data = cdev;
|
|
|
156 |
cal.alloc = cgm_gs_alloc;
|
|
|
157 |
cal.free = cgm_gs_free;
|
|
|
158 |
cdev->st = cgm_initialize(cdev->file, &cal);
|
|
|
159 |
if (cdev->st == 0)
|
|
|
160 |
return_error(gs_error_VMerror);
|
|
|
161 |
result = cgm_BEGIN_METAFILE(cdev->st, "", 0);
|
|
|
162 |
check_result(result);
|
|
|
163 |
meta.metafile_version = 1;
|
|
|
164 |
meta.vdc_type = cgm_vdc_integer;
|
|
|
165 |
meta.integer_precision = sizeof(cgm_int) * 8;
|
|
|
166 |
meta.index_precision = sizeof(cgm_int) * 8;
|
|
|
167 |
meta.color_precision = 8;
|
|
|
168 |
/* If we use color indices at all, they are only 1 byte. */
|
|
|
169 |
meta.color_index_precision = 8;
|
|
|
170 |
meta.maximum_color_index = (1L << cdev->color_info.depth) - 1;
|
|
|
171 |
meta.metafile_element_list = elements,
|
|
|
172 |
meta.metafile_element_list_count = countof(elements) / 2;
|
|
|
173 |
result = cgm_set_metafile_elements(cdev->st, &meta,
|
|
|
174 |
cgm_set_METAFILE_VERSION |
|
|
|
175 |
cgm_set_VDC_TYPE |
|
|
|
176 |
cgm_set_INTEGER_PRECISION |
|
|
|
177 |
cgm_set_INDEX_PRECISION |
|
|
|
178 |
cgm_set_COLOR_PRECISION |
|
|
|
179 |
cgm_set_COLOR_INDEX_PRECISION |
|
|
|
180 |
cgm_set_MAXIMUM_COLOR_INDEX |
|
|
|
181 |
cgm_set_METAFILE_ELEMENT_LIST);
|
|
|
182 |
check_result(result);
|
|
|
183 |
cdev->in_picture = false;
|
|
|
184 |
return 0;
|
|
|
185 |
}
|
|
|
186 |
|
|
|
187 |
/* Output a page */
|
|
|
188 |
private int
|
|
|
189 |
cgm_output_page(gx_device * dev, int num_copies, int flush)
|
|
|
190 |
{
|
|
|
191 |
gx_device_cgm *cdev = (gx_device_cgm *) dev;
|
|
|
192 |
|
|
|
193 |
if (cdev->in_picture) {
|
|
|
194 |
cgm_result result = cgm_END_PICTURE(cdev->st);
|
|
|
195 |
|
|
|
196 |
check_result(result);
|
|
|
197 |
cdev->in_picture = false;
|
|
|
198 |
return gx_finish_output_page(dev, num_copies, flush);
|
|
|
199 |
}
|
|
|
200 |
return 0;
|
|
|
201 |
}
|
|
|
202 |
|
|
|
203 |
/* Close the device */
|
|
|
204 |
private int
|
|
|
205 |
cgm_close(gx_device * dev)
|
|
|
206 |
{
|
|
|
207 |
gx_device_cgm *cdev = (gx_device_cgm *) dev;
|
|
|
208 |
int code = cgm_output_page(dev, 1, 0);
|
|
|
209 |
cgm_result result;
|
|
|
210 |
|
|
|
211 |
if (code < 0)
|
|
|
212 |
return code;
|
|
|
213 |
result = cgm_END_METAFILE(cdev->st);
|
|
|
214 |
check_result(result);
|
|
|
215 |
result = cgm_terminate(cdev->st);
|
|
|
216 |
check_result(result);
|
|
|
217 |
cdev->st = 0;
|
|
|
218 |
fclose(cdev->file);
|
|
|
219 |
cdev->file = 0;
|
|
|
220 |
return 0;
|
|
|
221 |
}
|
|
|
222 |
|
|
|
223 |
/* Get parameters. CGM devices add OutputFile to the default set. */
|
|
|
224 |
private int
|
|
|
225 |
cgm_get_params(gx_device * dev, gs_param_list * plist)
|
|
|
226 |
{
|
|
|
227 |
gx_device_cgm *cdev = (gx_device_cgm *) dev;
|
|
|
228 |
int code = gx_default_get_params(dev, plist);
|
|
|
229 |
gs_param_string ofns;
|
|
|
230 |
|
|
|
231 |
if (code < 0)
|
|
|
232 |
return code;
|
|
|
233 |
ofns.data = (const byte *)cdev->fname,
|
|
|
234 |
ofns.size = strlen(cdev->fname),
|
|
|
235 |
ofns.persistent = false;
|
|
|
236 |
return param_write_string(plist, "OutputFile", &ofns);
|
|
|
237 |
}
|
|
|
238 |
|
|
|
239 |
/* Put parameters. */
|
|
|
240 |
private int
|
|
|
241 |
cgm_put_params(gx_device * dev, gs_param_list * plist)
|
|
|
242 |
{
|
|
|
243 |
gx_device_cgm *cdev = (gx_device_cgm *) dev;
|
|
|
244 |
int ecode = 0;
|
|
|
245 |
int code;
|
|
|
246 |
const char *param_name;
|
|
|
247 |
gs_param_string ofs;
|
|
|
248 |
|
|
|
249 |
switch (code = param_read_string(plist, (param_name = "OutputFile"), &ofs)) {
|
|
|
250 |
case 0:
|
|
|
251 |
if (dev->LockSafetyParams &&
|
|
|
252 |
bytes_compare(ofs.data, ofs.size,
|
|
|
253 |
(const byte *)cdev->fname, strlen(cdev->fname))) {
|
|
|
254 |
ecode = gs_note_error(gs_error_invalidaccess);
|
|
|
255 |
goto ofe;
|
|
|
256 |
}
|
|
|
257 |
if (ofs.size >= gp_file_name_sizeof)
|
|
|
258 |
ecode = gs_error_limitcheck;
|
|
|
259 |
else
|
|
|
260 |
break;
|
|
|
261 |
goto ofe;
|
|
|
262 |
default:
|
|
|
263 |
ecode = code;
|
|
|
264 |
ofe:param_signal_error(plist, param_name, ecode);
|
|
|
265 |
case 1:
|
|
|
266 |
ofs.data = 0;
|
|
|
267 |
break;
|
|
|
268 |
}
|
|
|
269 |
|
|
|
270 |
if (ecode < 0)
|
|
|
271 |
return ecode;
|
|
|
272 |
code = gx_default_put_params(dev, plist);
|
|
|
273 |
if (code < 0)
|
|
|
274 |
return code;
|
|
|
275 |
|
|
|
276 |
if (ofs.data != 0) { /* Close the file if it's open. */
|
|
|
277 |
if (cdev->file != 0) {
|
|
|
278 |
fclose(cdev->file);
|
|
|
279 |
cdev->file = 0;
|
|
|
280 |
}
|
|
|
281 |
memcpy(cdev->fname, ofs.data, ofs.size);
|
|
|
282 |
cdev->fname[ofs.size] = 0;
|
|
|
283 |
cdev->file = fopen(cdev->fname, "wb");
|
|
|
284 |
if (cdev->file == 0)
|
|
|
285 |
return_error(gs_error_ioerror);
|
|
|
286 |
}
|
|
|
287 |
return 0;
|
|
|
288 |
}
|
|
|
289 |
|
|
|
290 |
/* ---------------- Drawing ---------------- */
|
|
|
291 |
|
|
|
292 |
/* Set the corner points for a rectangle. It appears (although */
|
|
|
293 |
/* this is not obvious from the CGM specification) that rectangles */
|
|
|
294 |
/* are specified with closed, rather than half-open, intervals. */
|
|
|
295 |
#define cgm_set_rect(points, xo, yo, w, h)\
|
|
|
296 |
points[1].integer.x = (points[0].integer.x = xo) + (w) - 1,\
|
|
|
297 |
points[1].integer.y = (points[0].integer.y = yo) + (h) - 1
|
|
|
298 |
|
|
|
299 |
/* Set the points for a cell array. */
|
|
|
300 |
#define cgm_set_cell_points(pqr, xo, yo, w, h)\
|
|
|
301 |
pqr[0].integer.x = (xo),\
|
|
|
302 |
pqr[0].integer.y = (yo),\
|
|
|
303 |
pqr[1].integer.x = (xo) + (w),\
|
|
|
304 |
pqr[1].integer.y = (yo) + (h),\
|
|
|
305 |
pqr[2].integer.x = (xo) + (w),\
|
|
|
306 |
pqr[2].integer.y = (yo)
|
|
|
307 |
|
|
|
308 |
/* Begin a picture if necessary. */
|
|
|
309 |
#define begin_picture(cdev)\
|
|
|
310 |
if ( !cdev->in_picture ) cgm_begin_picture(cdev)
|
|
|
311 |
private int
|
|
|
312 |
cgm_begin_picture(gx_device_cgm * cdev)
|
|
|
313 |
{
|
|
|
314 |
cgm_picture_elements pic;
|
|
|
315 |
cgm_result result;
|
|
|
316 |
cgm_edge_width edge;
|
|
|
317 |
|
|
|
318 |
result = cgm_BEGIN_PICTURE(cdev->st, "", 0);
|
|
|
319 |
check_result(result);
|
|
|
320 |
pic.scaling_mode = cgm_scaling_abstract;
|
|
|
321 |
pic.color_selection_mode =
|
|
|
322 |
(cdev->color_info.depth <= 8 ?
|
|
|
323 |
cgm_color_selection_indexed :
|
|
|
324 |
cgm_color_selection_direct);
|
|
|
325 |
pic.line_width_specification_mode = cgm_line_marker_absolute;
|
|
|
326 |
pic.edge_width_specification_mode = cgm_line_marker_absolute;
|
|
|
327 |
cgm_set_rect(pic.vdc_extent, 0, 0, cdev->width, cdev->height);
|
|
|
328 |
result = cgm_set_picture_elements(cdev->st, &pic,
|
|
|
329 |
cgm_set_SCALING_MODE |
|
|
|
330 |
cgm_set_COLOR_SELECTION_MODE |
|
|
|
331 |
cgm_set_LINE_WIDTH_SPECIFICATION_MODE |
|
|
|
332 |
cgm_set_EDGE_WIDTH_SPECIFICATION_MODE |
|
|
|
333 |
cgm_set_VDC_EXTENT);
|
|
|
334 |
check_result(result);
|
|
|
335 |
result = cgm_BEGIN_PICTURE_BODY(cdev->st);
|
|
|
336 |
check_result(result);
|
|
|
337 |
result = cgm_VDC_INTEGER_PRECISION(cdev->st,
|
|
|
338 |
(cdev->width <= 0x7fff &&
|
|
|
339 |
cdev->height <= 0x7fff ?
|
|
|
340 |
16 : sizeof(cdev->width) * 8));
|
|
|
341 |
check_result(result);
|
|
|
342 |
edge.absolute.integer = 0;
|
|
|
343 |
result = cgm_EDGE_WIDTH(cdev->st, &edge);
|
|
|
344 |
check_result(result);
|
|
|
345 |
if (cdev->color_info.depth <= 8) {
|
|
|
346 |
cgm_color colors[256];
|
|
|
347 |
int i;
|
|
|
348 |
|
|
|
349 |
for (i = 0; i < (1 << cdev->color_info.depth); i++) {
|
|
|
350 |
gx_color_value rgb[3];
|
|
|
351 |
|
|
|
352 |
(*dev_proc(cdev, map_color_rgb)) ((gx_device *) cdev,
|
|
|
353 |
(gx_color_index) i, rgb);
|
|
|
354 |
colors[i].rgb.r =
|
|
|
355 |
rgb[0] >> (gx_color_value_bits - 8);
|
|
|
356 |
colors[i].rgb.g =
|
|
|
357 |
rgb[1] >> (gx_color_value_bits - 8);
|
|
|
358 |
colors[i].rgb.b =
|
|
|
359 |
rgb[2] >> (gx_color_value_bits - 8);
|
|
|
360 |
}
|
|
|
361 |
result = cgm_COLOR_TABLE(cdev->st, 0, colors,
|
|
|
362 |
1 << cdev->color_info.depth);
|
|
|
363 |
check_result(result);
|
|
|
364 |
}
|
|
|
365 |
cdev->in_picture = true;
|
|
|
366 |
return 0;
|
|
|
367 |
}
|
|
|
368 |
|
|
|
369 |
/* Convert a gx_color_index to a CGM color. */
|
|
|
370 |
private void
|
|
|
371 |
cgm_color_from_color_index(cgm_color * pcc, const gx_device_cgm * cdev,
|
|
|
372 |
gx_color_index color)
|
|
|
373 |
{
|
|
|
374 |
if (cdev->color_info.depth <= 8)
|
|
|
375 |
pcc->index = color;
|
|
|
376 |
else {
|
|
|
377 |
pcc->rgb.r = color >> 16;
|
|
|
378 |
pcc->rgb.g = (color >> 8) & 255;
|
|
|
379 |
pcc->rgb.b = color & 255;
|
|
|
380 |
}
|
|
|
381 |
}
|
|
|
382 |
|
|
|
383 |
/* Fill a rectangle. */
|
|
|
384 |
private int
|
|
|
385 |
cgm_fill_rectangle(gx_device * dev, int x, int y, int w, int h,
|
|
|
386 |
gx_color_index color)
|
|
|
387 |
{
|
|
|
388 |
gx_device_cgm *cdev = (gx_device_cgm *) dev;
|
|
|
389 |
cgm_color fill_color;
|
|
|
390 |
cgm_point points[2];
|
|
|
391 |
cgm_result result;
|
|
|
392 |
|
|
|
393 |
fit_fill(dev, x, y, w, h);
|
|
|
394 |
if (!cdev->in_picture) { /* Check for erasepage. */
|
|
|
395 |
gx_color_value blank[3] = {gx_max_color_value, gx_max_color_value,
|
|
|
396 |
gx_max_color_value};
|
|
|
397 |
if (color == (*dev_proc(dev, encode_color)) (dev, blank))
|
|
|
398 |
return 0;
|
|
|
399 |
cgm_begin_picture(cdev);
|
|
|
400 |
}
|
|
|
401 |
cgm_color_from_color_index(&fill_color, cdev, color);
|
|
|
402 |
result = cgm_FILL_COLOR(cdev->st, &fill_color);
|
|
|
403 |
check_result(result);
|
|
|
404 |
result = cgm_INTERIOR_STYLE(cdev->st, cgm_interior_style_solid);
|
|
|
405 |
check_result(result);
|
|
|
406 |
cgm_set_rect(points, x, y, w, h);
|
|
|
407 |
result = cgm_RECTANGLE(cdev->st, &points[0], &points[1]);
|
|
|
408 |
check_result(result);
|
|
|
409 |
return 0;
|
|
|
410 |
}
|
|
|
411 |
|
|
|
412 |
#if 0
|
|
|
413 |
/* Tile a rectangle. We should do this with a pattern if possible. */
|
|
|
414 |
private int
|
|
|
415 |
cgm_tile_rectangle(gx_device * dev, const gx_tile_bitmap * tile,
|
|
|
416 |
int x, int y, int w, int h, gx_color_index zero, gx_color_index one,
|
|
|
417 |
int px, int py)
|
|
|
418 |
{
|
|
|
419 |
}
|
|
|
420 |
#endif
|
|
|
421 |
|
|
|
422 |
/* Copy a monochrome bitmap. Unfortunately, CGM doesn't provide a */
|
|
|
423 |
/* masked fill operation; if one of the colors is transparent, */
|
|
|
424 |
/* we have to do the copy by filling lots of tiny little rectangles. */
|
|
|
425 |
/* A much better way to implement this would be to remember whether */
|
|
|
426 |
/* the destination region is still white; if so, we can use a cell array */
|
|
|
427 |
/* (or, even better, a pattern). However, we still need the slow method */
|
|
|
428 |
/* for the case where we don't know the background color or it isn't white. */
|
|
|
429 |
private int
|
|
|
430 |
cgm_copy_mono(gx_device * dev,
|
|
|
431 |
const byte * base, int sourcex, int raster, gx_bitmap_id id,
|
|
|
432 |
int x, int y, int w, int h, gx_color_index zero, gx_color_index one)
|
|
|
433 |
{
|
|
|
434 |
gx_device_cgm *cdev = (gx_device_cgm *) dev;
|
|
|
435 |
|
|
|
436 |
/* The current implementation is about as inefficient as */
|
|
|
437 |
/* one could possibly imagine! */
|
|
|
438 |
int ix, iy;
|
|
|
439 |
cgm_result result;
|
|
|
440 |
|
|
|
441 |
fit_copy(dev, base, sourcex, raster, id, x, y, w, h);
|
|
|
442 |
begin_picture(cdev);
|
|
|
443 |
if (zero == 0 && one == 1 && cdev->color_info.depth == 1) {
|
|
|
444 |
cgm_point pqr[3];
|
|
|
445 |
|
|
|
446 |
cgm_set_cell_points(pqr, x, y, w, h);
|
|
|
447 |
result = cgm_CELL_ARRAY(cdev->st, pqr, w, h, 1,
|
|
|
448 |
cgm_cell_mode_packed,
|
|
|
449 |
base, sourcex, raster);
|
|
|
450 |
check_result(result);
|
|
|
451 |
} else {
|
|
|
452 |
result = cgm_INTERIOR_STYLE(cdev->st, cgm_interior_style_solid);
|
|
|
453 |
check_result(result);
|
|
|
454 |
for (iy = 0; iy < h; iy++)
|
|
|
455 |
for (ix = 0; ix < w; ix++) {
|
|
|
456 |
int px = ix + sourcex;
|
|
|
457 |
const byte *pixel = &base[iy * raster + (px >> 3)];
|
|
|
458 |
byte mask = 0x80 >> (px & 7);
|
|
|
459 |
gx_color_index color = (*pixel & mask ? one : zero);
|
|
|
460 |
|
|
|
461 |
if (color != gx_no_color_index) {
|
|
|
462 |
cgm_color fill_color;
|
|
|
463 |
cgm_point points[2];
|
|
|
464 |
|
|
|
465 |
cgm_color_from_color_index(&fill_color, cdev, color);
|
|
|
466 |
cgm_set_rect(points, x, y, 1, 1);
|
|
|
467 |
result = cgm_RECTANGLE(cdev->st, &points[0], &points[1]);
|
|
|
468 |
check_result(result);
|
|
|
469 |
}
|
|
|
470 |
}
|
|
|
471 |
}
|
|
|
472 |
return 0;
|
|
|
473 |
}
|
|
|
474 |
|
|
|
475 |
/* Copy a color bitmap. */
|
|
|
476 |
private int
|
|
|
477 |
cgm_copy_color(gx_device * dev,
|
|
|
478 |
const byte * base, int sourcex, int raster, gx_bitmap_id id,
|
|
|
479 |
int x, int y, int w, int h)
|
|
|
480 |
{
|
|
|
481 |
gx_device_cgm *cdev = (gx_device_cgm *) dev;
|
|
|
482 |
int depth = cdev->color_info.depth;
|
|
|
483 |
uint source_bit = sourcex * depth;
|
|
|
484 |
cgm_point pqr[3];
|
|
|
485 |
cgm_result result;
|
|
|
486 |
|
|
|
487 |
if (depth == 1)
|
|
|
488 |
return cgm_copy_mono(dev, base, sourcex, raster, id,
|
|
|
489 |
x, y, w, h,
|
|
|
490 |
(gx_color_index) 0, (gx_color_index) 1);
|
|
|
491 |
fit_copy(dev, base, sourcex, raster, id, x, y, w, h);
|
|
|
492 |
begin_picture(cdev);
|
|
|
493 |
cgm_set_cell_points(pqr, x, y, w, h);
|
|
|
494 |
result = cgm_CELL_ARRAY(cdev->st, pqr, w, h, 0, cgm_cell_mode_packed,
|
|
|
495 |
base, source_bit, raster);
|
|
|
496 |
check_result(result);
|
|
|
497 |
return 0;
|
|
|
498 |
}
|