igsfb.c revision 1.41 1 1.41 cube /* $NetBSD: igsfb.c,v 1.41 2007/01/13 19:45:28 cube Exp $ */
2 1.1 uwe
3 1.1 uwe /*
4 1.8 uwe * Copyright (c) 2002, 2003 Valeriy E. Ushakov
5 1.1 uwe * All rights reserved.
6 1.1 uwe *
7 1.1 uwe * Redistribution and use in source and binary forms, with or without
8 1.1 uwe * modification, are permitted provided that the following conditions
9 1.1 uwe * are met:
10 1.1 uwe * 1. Redistributions of source code must retain the above copyright
11 1.1 uwe * notice, this list of conditions and the following disclaimer.
12 1.1 uwe * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 uwe * notice, this list of conditions and the following disclaimer in the
14 1.1 uwe * documentation and/or other materials provided with the distribution.
15 1.1 uwe * 3. The name of the author may not be used to endorse or promote products
16 1.1 uwe * derived from this software without specific prior written permission
17 1.1 uwe *
18 1.1 uwe * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
19 1.1 uwe * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
20 1.1 uwe * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
21 1.1 uwe * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
22 1.1 uwe * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
23 1.1 uwe * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
24 1.1 uwe * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
25 1.1 uwe * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
26 1.1 uwe * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
27 1.1 uwe * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
28 1.1 uwe */
29 1.1 uwe
30 1.1 uwe /*
31 1.4 uwe * Integraphics Systems IGA 168x and CyberPro series.
32 1.1 uwe */
33 1.1 uwe #include <sys/cdefs.h>
34 1.41 cube __KERNEL_RCSID(0, "$NetBSD: igsfb.c,v 1.41 2007/01/13 19:45:28 cube Exp $");
35 1.1 uwe
36 1.1 uwe #include <sys/param.h>
37 1.1 uwe #include <sys/systm.h>
38 1.1 uwe #include <sys/kernel.h>
39 1.1 uwe #include <sys/device.h>
40 1.1 uwe #include <sys/malloc.h>
41 1.2 uwe #include <sys/ioctl.h>
42 1.1 uwe
43 1.1 uwe #include <machine/bus.h>
44 1.1 uwe
45 1.1 uwe #include <dev/wscons/wsdisplayvar.h>
46 1.8 uwe #include <dev/wscons/wsconsio.h>
47 1.8 uwe #include <dev/wsfont/wsfont.h>
48 1.1 uwe #include <dev/rasops/rasops.h>
49 1.1 uwe
50 1.27 macallan #include <dev/wscons/wsdisplay_vconsvar.h>
51 1.27 macallan
52 1.1 uwe #include <dev/ic/igsfbreg.h>
53 1.1 uwe #include <dev/ic/igsfbvar.h>
54 1.1 uwe
55 1.1 uwe
56 1.8 uwe struct igsfb_devconfig igsfb_console_dc;
57 1.8 uwe
58 1.1 uwe /*
59 1.1 uwe * wsscreen
60 1.1 uwe */
61 1.1 uwe
62 1.33 uwe /* filled from rasops_info in igsfb_init_wsdisplay */
63 1.1 uwe static struct wsscreen_descr igsfb_stdscreen = {
64 1.33 uwe .name = "std",
65 1.1 uwe };
66 1.1 uwe
67 1.1 uwe static const struct wsscreen_descr *_igsfb_scrlist[] = {
68 1.1 uwe &igsfb_stdscreen,
69 1.1 uwe };
70 1.1 uwe
71 1.1 uwe static const struct wsscreen_list igsfb_screenlist = {
72 1.33 uwe .nscreens = sizeof(_igsfb_scrlist) / sizeof(_igsfb_scrlist[0]),
73 1.33 uwe .screens = _igsfb_scrlist,
74 1.1 uwe };
75 1.1 uwe
76 1.1 uwe
77 1.1 uwe /*
78 1.1 uwe * wsdisplay_accessops
79 1.1 uwe */
80 1.1 uwe
81 1.38 jmmv static int igsfb_ioctl(void *, void *, u_long, caddr_t, int, struct lwp *);
82 1.38 jmmv static paddr_t igsfb_mmap(void *, void *, off_t, int);
83 1.1 uwe
84 1.27 macallan static struct wsdisplay_accessops igsfb_accessops = {
85 1.33 uwe .ioctl = igsfb_ioctl,
86 1.33 uwe .mmap = igsfb_mmap,
87 1.1 uwe };
88 1.1 uwe
89 1.1 uwe
90 1.1 uwe /*
91 1.11 uwe * acceleration
92 1.11 uwe */
93 1.27 macallan static int igsfb_make_text_cursor(struct igsfb_devconfig *,
94 1.31 uwe struct vcons_screen *);
95 1.11 uwe static void igsfb_accel_cursor(void *, int, int, int);
96 1.11 uwe
97 1.12 uwe static int igsfb_accel_wait(struct igsfb_devconfig *);
98 1.12 uwe static void igsfb_accel_fill(struct igsfb_devconfig *,
99 1.19 uwe uint32_t, uint32_t, uint16_t, uint16_t);
100 1.12 uwe static void igsfb_accel_copy(struct igsfb_devconfig *,
101 1.19 uwe uint32_t, uint32_t, uint16_t, uint16_t);
102 1.12 uwe
103 1.12 uwe static void igsfb_accel_copycols(void *, int, int, int, int);
104 1.12 uwe static void igsfb_accel_erasecols(void *, int, int, int, long);
105 1.12 uwe static void igsfb_accel_copyrows(void *, int, int, int);
106 1.12 uwe static void igsfb_accel_eraserows(void *, int, int, long);
107 1.12 uwe static void igsfb_accel_putchar(void *, int, int, u_int, long);
108 1.12 uwe
109 1.11 uwe
110 1.11 uwe /*
111 1.1 uwe * internal functions
112 1.1 uwe */
113 1.8 uwe static int igsfb_init_video(struct igsfb_devconfig *);
114 1.8 uwe static void igsfb_init_cmap(struct igsfb_devconfig *);
115 1.19 uwe static uint16_t igsfb_spread_bits_8(uint8_t);
116 1.10 uwe static void igsfb_init_bit_table(struct igsfb_devconfig *);
117 1.27 macallan static void igsfb_init_wsdisplay(void *, struct vcons_screen *, int,
118 1.31 uwe long *);
119 1.27 macallan
120 1.8 uwe
121 1.8 uwe static void igsfb_blank_screen(struct igsfb_devconfig *, int);
122 1.8 uwe static int igsfb_get_cmap(struct igsfb_devconfig *,
123 1.8 uwe struct wsdisplay_cmap *);
124 1.8 uwe static int igsfb_set_cmap(struct igsfb_devconfig *,
125 1.9 uwe const struct wsdisplay_cmap *);
126 1.8 uwe static void igsfb_update_cmap(struct igsfb_devconfig *, u_int, u_int);
127 1.8 uwe static void igsfb_set_curpos(struct igsfb_devconfig *,
128 1.9 uwe const struct wsdisplay_curpos *);
129 1.8 uwe static void igsfb_update_curpos(struct igsfb_devconfig *);
130 1.8 uwe static int igsfb_get_cursor(struct igsfb_devconfig *,
131 1.1 uwe struct wsdisplay_cursor *);
132 1.8 uwe static int igsfb_set_cursor(struct igsfb_devconfig *,
133 1.9 uwe const struct wsdisplay_cursor *);
134 1.8 uwe static void igsfb_update_cursor(struct igsfb_devconfig *, u_int);
135 1.8 uwe static void igsfb_convert_cursor_data(struct igsfb_devconfig *,
136 1.8 uwe u_int, u_int);
137 1.8 uwe
138 1.8 uwe
139 1.8 uwe int
140 1.36 uwe igsfb_cnattach_subr(struct igsfb_devconfig *dc)
141 1.8 uwe {
142 1.8 uwe struct rasops_info *ri;
143 1.8 uwe long defattr;
144 1.1 uwe
145 1.8 uwe KASSERT(dc == &igsfb_console_dc);
146 1.8 uwe
147 1.8 uwe igsfb_init_video(dc);
148 1.27 macallan dc->dc_vd.active = NULL;
149 1.27 macallan igsfb_init_wsdisplay(dc, &dc->dc_console, 1, &defattr);
150 1.1 uwe
151 1.27 macallan ri = &dc->dc_console.scr_ri;
152 1.27 macallan ri->ri_hw = &dc->dc_console;
153 1.27 macallan dc->dc_console.scr_cookie = dc;
154 1.37 uwe
155 1.8 uwe (*ri->ri_ops.allocattr)(ri,
156 1.27 macallan WS_DEFAULT_FG, /* fg */
157 1.27 macallan WS_DEFAULT_BG, /* bg */
158 1.8 uwe 0, /* wsattrs */
159 1.8 uwe &defattr);
160 1.8 uwe
161 1.8 uwe wsdisplay_cnattach(&igsfb_stdscreen,
162 1.8 uwe ri, /* emulcookie */
163 1.8 uwe 0, 0, /* cursor position */
164 1.8 uwe defattr);
165 1.37 uwe return 0;
166 1.8 uwe }
167 1.1 uwe
168 1.1 uwe
169 1.1 uwe /*
170 1.1 uwe * Finish off the attach. Bus specific attach method should have
171 1.8 uwe * enabled io and memory accesses and mapped io (and cop?) registers.
172 1.1 uwe */
173 1.1 uwe void
174 1.36 uwe igsfb_attach_subr(struct igsfb_softc *sc, int isconsole)
175 1.1 uwe {
176 1.8 uwe struct igsfb_devconfig *dc = sc->sc_dc;
177 1.8 uwe struct wsemuldisplaydev_attach_args waa;
178 1.27 macallan struct rasops_info *ri;
179 1.27 macallan long defattr;
180 1.8 uwe
181 1.8 uwe KASSERT(dc != NULL);
182 1.8 uwe
183 1.8 uwe if (!isconsole) {
184 1.8 uwe igsfb_init_video(dc);
185 1.8 uwe }
186 1.8 uwe
187 1.27 macallan vcons_init(&dc->dc_vd, dc, &igsfb_stdscreen, &igsfb_accessops);
188 1.27 macallan dc->dc_vd.init_screen = igsfb_init_wsdisplay;
189 1.37 uwe
190 1.27 macallan vcons_init_screen(&dc->dc_vd, &dc->dc_console, 1, &defattr);
191 1.27 macallan dc->dc_console.scr_flags |= VCONS_SCREEN_IS_STATIC;
192 1.37 uwe
193 1.8 uwe printf("%s: %dMB, %s%dx%d, %dbpp\n",
194 1.8 uwe sc->sc_dev.dv_xname,
195 1.19 uwe (uint32_t)(dc->dc_vmemsz >> 20),
196 1.8 uwe (dc->dc_hwflags & IGSFB_HW_BSWAP)
197 1.8 uwe ? (dc->dc_hwflags & IGSFB_HW_BE_SELECT)
198 1.8 uwe ? "hardware bswap, " : "software bswap, "
199 1.8 uwe : "",
200 1.8 uwe dc->dc_width, dc->dc_height, dc->dc_depth);
201 1.8 uwe
202 1.27 macallan ri = &dc->dc_console.scr_ri;
203 1.27 macallan ri->ri_ops.eraserows(ri, 0, ri->ri_rows, defattr);
204 1.27 macallan
205 1.8 uwe /* attach wsdisplay */
206 1.8 uwe waa.console = isconsole;
207 1.8 uwe waa.scrdata = &igsfb_screenlist;
208 1.8 uwe waa.accessops = &igsfb_accessops;
209 1.27 macallan waa.accesscookie = &dc->dc_vd;
210 1.8 uwe
211 1.8 uwe config_found(&sc->sc_dev, &waa, wsemuldisplaydevprint);
212 1.8 uwe }
213 1.8 uwe
214 1.8 uwe
215 1.8 uwe static int
216 1.36 uwe igsfb_init_video(struct igsfb_devconfig *dc)
217 1.8 uwe {
218 1.4 uwe bus_space_handle_t tmph;
219 1.19 uwe uint8_t *p;
220 1.4 uwe int need_bswap;
221 1.8 uwe bus_addr_t fbaddr, craddr;
222 1.1 uwe off_t croffset;
223 1.19 uwe uint8_t busctl, curctl;
224 1.41 cube void *va;
225 1.1 uwe
226 1.8 uwe /* Total amount of video memory. */
227 1.8 uwe busctl = igs_ext_read(dc->dc_iot, dc->dc_ioh, IGS_EXT_BUS_CTL);
228 1.1 uwe if (busctl & 0x2)
229 1.8 uwe dc->dc_vmemsz = 4;
230 1.1 uwe else if (busctl & 0x1)
231 1.8 uwe dc->dc_vmemsz = 2;
232 1.1 uwe else
233 1.8 uwe dc->dc_vmemsz = 1;
234 1.8 uwe dc->dc_vmemsz <<= 20; /* megabytes -> bytes */
235 1.4 uwe
236 1.4 uwe /*
237 1.8 uwe * Check for endianness mismatch by writing a word at the end of
238 1.8 uwe * the video memory (off-screen) and reading it back byte-by-byte.
239 1.4 uwe */
240 1.8 uwe if (bus_space_map(dc->dc_memt,
241 1.19 uwe dc->dc_memaddr + dc->dc_vmemsz - sizeof(uint32_t),
242 1.19 uwe sizeof(uint32_t),
243 1.8 uwe dc->dc_memflags | BUS_SPACE_MAP_LINEAR,
244 1.4 uwe &tmph) != 0)
245 1.4 uwe {
246 1.4 uwe printf("unable to map video memory for endianness test\n");
247 1.37 uwe return 1;
248 1.4 uwe }
249 1.4 uwe
250 1.8 uwe p = bus_space_vaddr(dc->dc_memt, tmph);
251 1.4 uwe #if BYTE_ORDER == BIG_ENDIAN
252 1.19 uwe *((uint32_t *)p) = 0x12345678;
253 1.4 uwe #else
254 1.19 uwe *((uint32_t *)p) = 0x78563412;
255 1.4 uwe #endif
256 1.4 uwe if (p[0] == 0x12 && p[1] == 0x34 && p[2] == 0x56 && p[3] == 0x78)
257 1.4 uwe need_bswap = 0;
258 1.4 uwe else
259 1.4 uwe need_bswap = 1;
260 1.4 uwe
261 1.19 uwe bus_space_unmap(dc->dc_memt, tmph, sizeof(uint32_t));
262 1.4 uwe
263 1.4 uwe /*
264 1.4 uwe * On CyberPro we can use magic bswap bit in linear address.
265 1.4 uwe */
266 1.8 uwe fbaddr = dc->dc_memaddr;
267 1.8 uwe if (need_bswap) {
268 1.8 uwe dc->dc_hwflags |= IGSFB_HW_BSWAP;
269 1.8 uwe if (dc->dc_id >= 0x2000) {
270 1.8 uwe dc->dc_hwflags |= IGSFB_HW_BE_SELECT;
271 1.4 uwe fbaddr |= IGS_MEM_BE_SELECT;
272 1.4 uwe }
273 1.8 uwe }
274 1.8 uwe
275 1.8 uwe /*
276 1.8 uwe * XXX: TODO: make it possible to select the desired video mode.
277 1.8 uwe * For now - hardcode to 1024x768/8bpp. This is what Krups OFW uses.
278 1.8 uwe */
279 1.8 uwe igsfb_hw_setup(dc);
280 1.8 uwe
281 1.8 uwe dc->dc_width = 1024;
282 1.8 uwe dc->dc_height = 768;
283 1.8 uwe dc->dc_depth = 8;
284 1.35 uwe dc->dc_stride = dc->dc_width;
285 1.1 uwe
286 1.1 uwe /*
287 1.8 uwe * Don't map in all N megs, just the amount we need for the wsscreen.
288 1.1 uwe */
289 1.8 uwe dc->dc_fbsz = dc->dc_width * dc->dc_height; /* XXX: 8bpp specific */
290 1.8 uwe if (bus_space_map(dc->dc_memt, fbaddr, dc->dc_fbsz,
291 1.8 uwe dc->dc_memflags | BUS_SPACE_MAP_LINEAR,
292 1.8 uwe &dc->dc_fbh) != 0)
293 1.1 uwe {
294 1.8 uwe bus_space_unmap(dc->dc_iot, dc->dc_ioh, IGS_REG_SIZE);
295 1.1 uwe printf("unable to map framebuffer\n");
296 1.37 uwe return 1;
297 1.1 uwe }
298 1.1 uwe
299 1.8 uwe igsfb_init_cmap(dc);
300 1.8 uwe
301 1.1 uwe /*
302 1.8 uwe * 1KB for cursor sprite data at the very end of the video memory.
303 1.1 uwe */
304 1.8 uwe croffset = dc->dc_vmemsz - IGS_CURSOR_DATA_SIZE;
305 1.4 uwe craddr = fbaddr + croffset;
306 1.8 uwe if (bus_space_map(dc->dc_memt, craddr, IGS_CURSOR_DATA_SIZE,
307 1.8 uwe dc->dc_memflags | BUS_SPACE_MAP_LINEAR,
308 1.8 uwe &dc->dc_crh) != 0)
309 1.1 uwe {
310 1.8 uwe bus_space_unmap(dc->dc_iot, dc->dc_ioh, IGS_REG_SIZE);
311 1.8 uwe bus_space_unmap(dc->dc_memt, dc->dc_fbh, dc->dc_fbsz);
312 1.1 uwe printf("unable to map cursor sprite region\n");
313 1.37 uwe return 1;
314 1.1 uwe }
315 1.1 uwe
316 1.1 uwe /*
317 1.8 uwe * Tell the device where cursor sprite data are located in the
318 1.8 uwe * linear space (it takes data offset in 1KB units).
319 1.1 uwe */
320 1.8 uwe croffset >>= 10; /* bytes -> kilobytes */
321 1.8 uwe igs_ext_write(dc->dc_iot, dc->dc_ioh,
322 1.1 uwe IGS_EXT_SPRITE_DATA_LO, croffset & 0xff);
323 1.8 uwe igs_ext_write(dc->dc_iot, dc->dc_ioh,
324 1.1 uwe IGS_EXT_SPRITE_DATA_HI, (croffset >> 8) & 0xf);
325 1.1 uwe
326 1.10 uwe /* init the bit expansion table for cursor sprite data conversion */
327 1.10 uwe igsfb_init_bit_table(dc);
328 1.8 uwe
329 1.8 uwe /* XXX: fill dc_cursor and use igsfb_update_cursor() instead? */
330 1.8 uwe memset(&dc->dc_cursor, 0, sizeof(struct igs_hwcursor));
331 1.41 cube va = bus_space_vaddr(dc->dc_memt, dc->dc_crh);
332 1.41 cube memset(va, /* transparent */ 0xaa, IGS_CURSOR_DATA_SIZE);
333 1.1 uwe
334 1.8 uwe curctl = igs_ext_read(dc->dc_iot, dc->dc_ioh, IGS_EXT_SPRITE_CTL);
335 1.1 uwe curctl |= IGS_EXT_SPRITE_64x64;
336 1.1 uwe curctl &= ~IGS_EXT_SPRITE_VISIBLE;
337 1.8 uwe igs_ext_write(dc->dc_iot, dc->dc_ioh, IGS_EXT_SPRITE_CTL, curctl);
338 1.8 uwe dc->dc_curenb = 0;
339 1.1 uwe
340 1.12 uwe /*
341 1.18 uwe * Map and init graphic coprocessor for accelerated rasops.
342 1.12 uwe */
343 1.12 uwe if (dc->dc_id >= 0x2000) { /* XXX */
344 1.12 uwe if (bus_space_map(dc->dc_iot,
345 1.12 uwe dc->dc_iobase + IGS_COP_BASE_B, IGS_COP_SIZE,
346 1.12 uwe dc->dc_ioflags,
347 1.12 uwe &dc->dc_coph) != 0)
348 1.12 uwe {
349 1.12 uwe printf("unable to map COP registers\n");
350 1.37 uwe return 1;
351 1.12 uwe }
352 1.12 uwe
353 1.12 uwe /* XXX: hardcoded 8bpp */
354 1.12 uwe bus_space_write_2(dc->dc_iot, dc->dc_coph,
355 1.12 uwe IGS_COP_SRC_MAP_WIDTH_REG,
356 1.12 uwe dc->dc_width - 1);
357 1.12 uwe bus_space_write_2(dc->dc_iot, dc->dc_coph,
358 1.12 uwe IGS_COP_DST_MAP_WIDTH_REG,
359 1.12 uwe dc->dc_width - 1);
360 1.12 uwe
361 1.12 uwe bus_space_write_1(dc->dc_iot, dc->dc_coph,
362 1.12 uwe IGS_COP_MAP_FMT_REG,
363 1.12 uwe IGS_COP_MAP_8BPP);
364 1.12 uwe }
365 1.12 uwe
366 1.8 uwe /* make sure screen is not blanked */
367 1.8 uwe dc->dc_blanked = 0;
368 1.8 uwe igsfb_blank_screen(dc, dc->dc_blanked);
369 1.1 uwe
370 1.37 uwe return 0;
371 1.1 uwe }
372 1.1 uwe
373 1.1 uwe
374 1.8 uwe static void
375 1.36 uwe igsfb_init_cmap(struct igsfb_devconfig *dc)
376 1.4 uwe {
377 1.8 uwe bus_space_tag_t iot = dc->dc_iot;
378 1.8 uwe bus_space_handle_t ioh = dc->dc_ioh;
379 1.19 uwe const uint8_t *p;
380 1.8 uwe int i;
381 1.4 uwe
382 1.8 uwe p = rasops_cmap; /* "ANSI" color map */
383 1.4 uwe
384 1.8 uwe /* init software copy */
385 1.8 uwe for (i = 0; i < IGS_CMAP_SIZE; ++i, p += 3) {
386 1.8 uwe dc->dc_cmap.r[i] = p[0];
387 1.8 uwe dc->dc_cmap.g[i] = p[1];
388 1.8 uwe dc->dc_cmap.b[i] = p[2];
389 1.8 uwe }
390 1.4 uwe
391 1.8 uwe /* propagate to the device */
392 1.8 uwe igsfb_update_cmap(dc, 0, IGS_CMAP_SIZE);
393 1.1 uwe
394 1.11 uwe /* set overscan color (XXX: use defattr's background?) */
395 1.8 uwe igs_ext_write(iot, ioh, IGS_EXT_OVERSCAN_RED, 0);
396 1.8 uwe igs_ext_write(iot, ioh, IGS_EXT_OVERSCAN_GREEN, 0);
397 1.8 uwe igs_ext_write(iot, ioh, IGS_EXT_OVERSCAN_BLUE, 0);
398 1.1 uwe }
399 1.1 uwe
400 1.8 uwe
401 1.1 uwe static void
402 1.27 macallan igsfb_init_wsdisplay(void *cookie, struct vcons_screen *scr, int existing,
403 1.36 uwe long *defattr)
404 1.1 uwe {
405 1.27 macallan struct igsfb_devconfig *dc = cookie;
406 1.27 macallan struct rasops_info *ri = &scr->scr_ri;
407 1.1 uwe int wsfcookie;
408 1.1 uwe
409 1.27 macallan if ((scr == &dc->dc_console) && (dc->dc_vd.active != NULL))
410 1.27 macallan return;
411 1.27 macallan
412 1.1 uwe
413 1.28 macallan ri->ri_flg = RI_CENTER | RI_FULLCLEAR;
414 1.8 uwe if (IGSFB_HW_SOFT_BSWAP(dc))
415 1.31 uwe ri->ri_flg |= RI_BSWAP;
416 1.1 uwe
417 1.8 uwe ri->ri_depth = dc->dc_depth;
418 1.8 uwe ri->ri_width = dc->dc_width;
419 1.8 uwe ri->ri_height = dc->dc_height;
420 1.35 uwe ri->ri_stride = dc->dc_stride;
421 1.34 uwe ri->ri_bits = bus_space_vaddr(dc->dc_memt, dc->dc_fbh);
422 1.1 uwe
423 1.1 uwe /*
424 1.1 uwe * Initialize wsfont related stuff.
425 1.1 uwe */
426 1.1 uwe wsfont_init();
427 1.1 uwe
428 1.1 uwe /* prefer gallant that is identical to the one the prom uses */
429 1.1 uwe wsfcookie = wsfont_find("Gallant", 12, 22, 0,
430 1.1 uwe WSDISPLAY_FONTORDER_L2R,
431 1.1 uwe WSDISPLAY_FONTORDER_L2R);
432 1.1 uwe if (wsfcookie <= 0) {
433 1.1 uwe #ifdef DIAGNOSTIC
434 1.8 uwe printf("unable to find font Gallant 12x22\n");
435 1.1 uwe #endif
436 1.8 uwe wsfcookie = wsfont_find(NULL, 0, 0, 0, /* any font at all? */
437 1.1 uwe WSDISPLAY_FONTORDER_L2R,
438 1.1 uwe WSDISPLAY_FONTORDER_L2R);
439 1.1 uwe }
440 1.1 uwe
441 1.1 uwe if (wsfcookie <= 0) {
442 1.8 uwe printf("unable to find any fonts\n");
443 1.1 uwe return;
444 1.1 uwe }
445 1.1 uwe
446 1.1 uwe if (wsfont_lock(wsfcookie, &ri->ri_font) != 0) {
447 1.8 uwe printf("unable to lock font\n");
448 1.1 uwe return;
449 1.1 uwe }
450 1.1 uwe ri->ri_wsfcookie = wsfcookie;
451 1.1 uwe
452 1.1 uwe
453 1.11 uwe /* XXX: TODO: compute term size based on font dimensions? */
454 1.1 uwe rasops_init(ri, 34, 80);
455 1.22 macallan rasops_reconfig(ri, ri->ri_height / ri->ri_font->fontheight,
456 1.22 macallan ri->ri_width / ri->ri_font->fontwidth);
457 1.1 uwe
458 1.12 uwe
459 1.11 uwe /* use the sprite for the text mode cursor */
460 1.27 macallan igsfb_make_text_cursor(dc, scr);
461 1.11 uwe
462 1.11 uwe /* the cursor is "busy" while we are in the text mode */
463 1.11 uwe dc->dc_hwflags |= IGSFB_HW_TEXT_CURSOR;
464 1.11 uwe
465 1.11 uwe /* propagate sprite data to the device */
466 1.11 uwe igsfb_update_cursor(dc, WSDISPLAY_CURSOR_DOSHAPE);
467 1.11 uwe
468 1.12 uwe /* accelerated text cursor */
469 1.11 uwe ri->ri_ops.cursor = igsfb_accel_cursor;
470 1.11 uwe
471 1.14 uwe if (dc->dc_id >= 0x2000) { /* XXX */
472 1.31 uwe /* accelerated erase/copy */
473 1.31 uwe ri->ri_ops.copycols = igsfb_accel_copycols;
474 1.31 uwe ri->ri_ops.erasecols = igsfb_accel_erasecols;
475 1.31 uwe ri->ri_ops.copyrows = igsfb_accel_copyrows;
476 1.31 uwe ri->ri_ops.eraserows = igsfb_accel_eraserows;
477 1.31 uwe
478 1.31 uwe /* putchar hook to sync with the cop */
479 1.31 uwe dc->dc_ri_putchar = ri->ri_ops.putchar;
480 1.31 uwe ri->ri_ops.putchar = igsfb_accel_putchar;
481 1.14 uwe }
482 1.12 uwe
483 1.1 uwe igsfb_stdscreen.nrows = ri->ri_rows;
484 1.1 uwe igsfb_stdscreen.ncols = ri->ri_cols;
485 1.1 uwe igsfb_stdscreen.textops = &ri->ri_ops;
486 1.1 uwe igsfb_stdscreen.capabilities = ri->ri_caps;
487 1.1 uwe }
488 1.1 uwe
489 1.1 uwe
490 1.1 uwe /*
491 1.11 uwe * Init cursor data in dc_cursor for the accelerated text cursor.
492 1.11 uwe */
493 1.11 uwe static int
494 1.36 uwe igsfb_make_text_cursor(struct igsfb_devconfig *dc, struct vcons_screen *scr)
495 1.11 uwe {
496 1.27 macallan struct rasops_info *ri = &scr->scr_ri;
497 1.27 macallan struct wsdisplay_font *f = ri->ri_font;
498 1.19 uwe uint16_t cc_scan[8]; /* one sprite scanline */
499 1.19 uwe uint16_t s;
500 1.11 uwe int w, i;
501 1.11 uwe
502 1.11 uwe KASSERT(f->fontwidth <= IGS_CURSOR_MAX_SIZE);
503 1.11 uwe KASSERT(f->fontheight <= IGS_CURSOR_MAX_SIZE);
504 1.11 uwe
505 1.11 uwe w = f->fontwidth;
506 1.11 uwe for (i = 0; i < f->stride; ++i) {
507 1.11 uwe if (w >= 8) {
508 1.11 uwe s = 0xffff; /* all inverted */
509 1.11 uwe w -= 8;
510 1.11 uwe } else {
511 1.11 uwe /* first w pixels inverted, the rest is transparent */
512 1.11 uwe s = ~(0x5555 << (w * 2));
513 1.29 uwe s = htole16(s);
514 1.11 uwe w = 0;
515 1.11 uwe }
516 1.11 uwe cc_scan[i] = s;
517 1.11 uwe }
518 1.11 uwe
519 1.11 uwe dc->dc_cursor.cc_size.x = f->fontwidth;
520 1.11 uwe dc->dc_cursor.cc_size.y = f->fontheight;
521 1.11 uwe
522 1.11 uwe dc->dc_cursor.cc_hot.x = 0;
523 1.11 uwe dc->dc_cursor.cc_hot.y = 0;
524 1.11 uwe
525 1.11 uwe /* init sprite array to be all transparent */
526 1.11 uwe memset(dc->dc_cursor.cc_sprite, 0xaa, IGS_CURSOR_DATA_SIZE);
527 1.11 uwe
528 1.11 uwe for (i = 0; i < f->fontheight; ++i)
529 1.11 uwe memcpy(&dc->dc_cursor.cc_sprite[i * 8],
530 1.19 uwe cc_scan, f->stride * sizeof(uint16_t));
531 1.11 uwe
532 1.37 uwe return 0;
533 1.11 uwe }
534 1.11 uwe
535 1.11 uwe
536 1.11 uwe /*
537 1.8 uwe * Spread a byte (abcd.efgh) into two (0a0b.0c0d 0e0f.0g0h).
538 1.10 uwe * Helper function for igsfb_init_bit_table().
539 1.8 uwe */
540 1.19 uwe static uint16_t
541 1.36 uwe igsfb_spread_bits_8(uint8_t b)
542 1.8 uwe {
543 1.19 uwe uint16_t s = b;
544 1.8 uwe
545 1.8 uwe s = ((s & 0x00f0) << 4) | (s & 0x000f);
546 1.8 uwe s = ((s & 0x0c0c) << 2) | (s & 0x0303);
547 1.8 uwe s = ((s & 0x2222) << 1) | (s & 0x1111);
548 1.37 uwe return s;
549 1.8 uwe }
550 1.8 uwe
551 1.8 uwe
552 1.8 uwe /*
553 1.8 uwe * Cursor sprite data are in 2bpp. Incoming image/mask are in 1bpp.
554 1.18 uwe * Prebuild the table to expand 1bpp->2bpp, with bswapping if necessary.
555 1.8 uwe */
556 1.8 uwe static void
557 1.36 uwe igsfb_init_bit_table(struct igsfb_devconfig *dc)
558 1.8 uwe {
559 1.19 uwe uint16_t *expand = dc->dc_bexpand;
560 1.19 uwe uint16_t s;
561 1.8 uwe u_int i;
562 1.8 uwe
563 1.8 uwe for (i = 0; i < 256; ++i) {
564 1.10 uwe s = igsfb_spread_bits_8(i);
565 1.29 uwe expand[i] = htole16(s);
566 1.8 uwe }
567 1.8 uwe }
568 1.8 uwe
569 1.8 uwe
570 1.8 uwe /*
571 1.1 uwe * wsdisplay_accessops: mmap()
572 1.4 uwe * XXX: allow mmapping i/o mapped i/o regs if INSECURE???
573 1.1 uwe */
574 1.1 uwe static paddr_t
575 1.38 jmmv igsfb_mmap(void *v, void *vs, off_t offset, int prot)
576 1.1 uwe {
577 1.27 macallan struct vcons_data *vd = v;
578 1.27 macallan struct igsfb_devconfig *dc = vd->cookie;
579 1.1 uwe
580 1.8 uwe if (offset >= dc->dc_memsz || offset < 0)
581 1.37 uwe return -1;
582 1.1 uwe
583 1.37 uwe return bus_space_mmap(dc->dc_memt, dc->dc_memaddr, offset, prot,
584 1.37 uwe dc->dc_memflags | BUS_SPACE_MAP_LINEAR);
585 1.1 uwe }
586 1.1 uwe
587 1.1 uwe
588 1.1 uwe /*
589 1.1 uwe * wsdisplay_accessops: ioctl()
590 1.1 uwe */
591 1.1 uwe static int
592 1.38 jmmv igsfb_ioctl(void *v, void *vs, u_long cmd, caddr_t data, int flag,
593 1.38 jmmv struct lwp *l)
594 1.1 uwe {
595 1.27 macallan struct vcons_data *vd = v;
596 1.27 macallan struct igsfb_devconfig *dc = vd->cookie;
597 1.11 uwe int cursor_busy;
598 1.1 uwe int turnoff;
599 1.1 uwe
600 1.11 uwe /* don't permit cursor ioctls if we use sprite for text cursor */
601 1.11 uwe cursor_busy = !dc->dc_mapped
602 1.11 uwe && (dc->dc_hwflags & IGSFB_HW_TEXT_CURSOR);
603 1.11 uwe
604 1.1 uwe switch (cmd) {
605 1.1 uwe
606 1.1 uwe case WSDISPLAYIO_GTYPE:
607 1.1 uwe *(u_int *)data = WSDISPLAY_TYPE_PCIMISC;
608 1.37 uwe return 0;
609 1.1 uwe
610 1.1 uwe case WSDISPLAYIO_GINFO:
611 1.1 uwe #define wsd_fbip ((struct wsdisplay_fbinfo *)data)
612 1.35 uwe wsd_fbip->height = dc->dc_height;
613 1.35 uwe wsd_fbip->width = dc->dc_width;
614 1.35 uwe wsd_fbip->depth = dc->dc_depth;
615 1.1 uwe wsd_fbip->cmsize = IGS_CMAP_SIZE;
616 1.1 uwe #undef wsd_fbip
617 1.37 uwe return 0;
618 1.37 uwe
619 1.21 macallan case WSDISPLAYIO_LINEBYTES:
620 1.35 uwe *(int *)data = dc->dc_stride;
621 1.37 uwe return 0;
622 1.1 uwe
623 1.11 uwe case WSDISPLAYIO_SMODE:
624 1.11 uwe #define d (*(int *)data)
625 1.25 macallan if (d != WSDISPLAYIO_MODE_EMUL) {
626 1.11 uwe dc->dc_mapped = 1;
627 1.23 macallan /* turn off hardware cursor */
628 1.23 macallan if (dc->dc_hwflags & IGSFB_HW_TEXT_CURSOR) {
629 1.23 macallan dc->dc_curenb = 0;
630 1.23 macallan igsfb_update_cursor(dc,
631 1.23 macallan WSDISPLAY_CURSOR_DOCUR);
632 1.23 macallan }
633 1.25 macallan } else {
634 1.11 uwe dc->dc_mapped = 0;
635 1.11 uwe /* reinit sprite for text cursor */
636 1.11 uwe if (dc->dc_hwflags & IGSFB_HW_TEXT_CURSOR) {
637 1.27 macallan igsfb_make_text_cursor(dc, dc->dc_vd.active);
638 1.11 uwe dc->dc_curenb = 0;
639 1.11 uwe igsfb_update_cursor(dc,
640 1.11 uwe WSDISPLAY_CURSOR_DOSHAPE
641 1.11 uwe | WSDISPLAY_CURSOR_DOCUR);
642 1.11 uwe }
643 1.27 macallan vcons_redraw_screen(vd->active);
644 1.11 uwe }
645 1.37 uwe return 0;
646 1.11 uwe
647 1.1 uwe case WSDISPLAYIO_GVIDEO:
648 1.8 uwe *(u_int *)data = dc->dc_blanked ?
649 1.1 uwe WSDISPLAYIO_VIDEO_OFF : WSDISPLAYIO_VIDEO_ON;
650 1.37 uwe return 0;
651 1.1 uwe
652 1.1 uwe case WSDISPLAYIO_SVIDEO:
653 1.1 uwe turnoff = (*(u_int *)data == WSDISPLAYIO_VIDEO_OFF);
654 1.8 uwe if (dc->dc_blanked != turnoff) {
655 1.8 uwe dc->dc_blanked = turnoff;
656 1.8 uwe igsfb_blank_screen(dc, dc->dc_blanked);
657 1.1 uwe }
658 1.37 uwe return 0;
659 1.1 uwe
660 1.1 uwe case WSDISPLAYIO_GETCMAP:
661 1.37 uwe return igsfb_get_cmap(dc, (struct wsdisplay_cmap *)data);
662 1.1 uwe
663 1.1 uwe case WSDISPLAYIO_PUTCMAP:
664 1.37 uwe return igsfb_set_cmap(dc, (struct wsdisplay_cmap *)data);
665 1.1 uwe
666 1.1 uwe case WSDISPLAYIO_GCURMAX:
667 1.1 uwe ((struct wsdisplay_curpos *)data)->x = IGS_CURSOR_MAX_SIZE;
668 1.1 uwe ((struct wsdisplay_curpos *)data)->y = IGS_CURSOR_MAX_SIZE;
669 1.37 uwe return 0;
670 1.1 uwe
671 1.1 uwe case WSDISPLAYIO_GCURPOS:
672 1.11 uwe if (cursor_busy)
673 1.37 uwe return EBUSY;
674 1.8 uwe *(struct wsdisplay_curpos *)data = dc->dc_cursor.cc_pos;
675 1.37 uwe return 0;
676 1.1 uwe
677 1.1 uwe case WSDISPLAYIO_SCURPOS:
678 1.11 uwe if (cursor_busy)
679 1.37 uwe return EBUSY;
680 1.8 uwe igsfb_set_curpos(dc, (struct wsdisplay_curpos *)data);
681 1.37 uwe return 0;
682 1.1 uwe
683 1.1 uwe case WSDISPLAYIO_GCURSOR:
684 1.11 uwe if (cursor_busy)
685 1.37 uwe return EBUSY;
686 1.37 uwe return igsfb_get_cursor(dc, (struct wsdisplay_cursor *)data);
687 1.1 uwe
688 1.1 uwe case WSDISPLAYIO_SCURSOR:
689 1.24 uwe if (cursor_busy)
690 1.37 uwe return EBUSY;
691 1.37 uwe return igsfb_set_cursor(dc, (struct wsdisplay_cursor *)data);
692 1.1 uwe }
693 1.1 uwe
694 1.37 uwe return EPASSTHROUGH;
695 1.1 uwe }
696 1.1 uwe
697 1.1 uwe
698 1.1 uwe /*
699 1.1 uwe * wsdisplay_accessops: ioctl(WSDISPLAYIO_SVIDEO)
700 1.1 uwe */
701 1.1 uwe static void
702 1.36 uwe igsfb_blank_screen(struct igsfb_devconfig *dc, int blank)
703 1.1 uwe {
704 1.1 uwe
705 1.8 uwe igs_ext_write(dc->dc_iot, dc->dc_ioh,
706 1.1 uwe IGS_EXT_SYNC_CTL,
707 1.1 uwe blank ? IGS_EXT_SYNC_H0 | IGS_EXT_SYNC_V0
708 1.1 uwe : 0);
709 1.1 uwe }
710 1.1 uwe
711 1.1 uwe
712 1.1 uwe /*
713 1.1 uwe * wsdisplay_accessops: ioctl(WSDISPLAYIO_GETCMAP)
714 1.8 uwe * Served from the software cmap copy.
715 1.1 uwe */
716 1.1 uwe static int
717 1.36 uwe igsfb_get_cmap(struct igsfb_devconfig *dc, struct wsdisplay_cmap *p)
718 1.1 uwe {
719 1.11 uwe u_int index, count;
720 1.11 uwe int err;
721 1.11 uwe
722 1.11 uwe index = p->index;
723 1.11 uwe count = p->count;
724 1.1 uwe
725 1.5 itojun if (index >= IGS_CMAP_SIZE || count > IGS_CMAP_SIZE - index)
726 1.37 uwe return EINVAL;
727 1.1 uwe
728 1.11 uwe err = copyout(&dc->dc_cmap.r[index], p->red, count);
729 1.11 uwe if (err)
730 1.37 uwe return err;
731 1.11 uwe err = copyout(&dc->dc_cmap.g[index], p->green, count);
732 1.11 uwe if (err)
733 1.37 uwe return err;
734 1.11 uwe err = copyout(&dc->dc_cmap.b[index], p->blue, count);
735 1.11 uwe if (err)
736 1.37 uwe return err;
737 1.1 uwe
738 1.37 uwe return 0;
739 1.1 uwe }
740 1.1 uwe
741 1.1 uwe
742 1.1 uwe /*
743 1.15 uwe * wsdisplay_accessops: ioctl(WSDISPLAYIO_PUTCMAP)
744 1.8 uwe * Set the software cmap copy and propagate changed range to the device.
745 1.1 uwe */
746 1.1 uwe static int
747 1.36 uwe igsfb_set_cmap(struct igsfb_devconfig *dc, const struct wsdisplay_cmap *p)
748 1.1 uwe {
749 1.11 uwe u_int index, count;
750 1.17 chs uint8_t r[IGS_CMAP_SIZE];
751 1.17 chs uint8_t g[IGS_CMAP_SIZE];
752 1.17 chs uint8_t b[IGS_CMAP_SIZE];
753 1.17 chs int error;
754 1.11 uwe
755 1.11 uwe index = p->index;
756 1.11 uwe count = p->count;
757 1.5 itojun if (index >= IGS_CMAP_SIZE || count > IGS_CMAP_SIZE - index)
758 1.37 uwe return EINVAL;
759 1.17 chs error = copyin(p->red, &r[index], count);
760 1.17 chs if (error)
761 1.17 chs return error;
762 1.17 chs error = copyin(p->green, &g[index], count);
763 1.17 chs if (error)
764 1.17 chs return error;
765 1.17 chs error = copyin(p->blue, &b[index], count);
766 1.17 chs if (error)
767 1.17 chs return error;
768 1.17 chs
769 1.17 chs memcpy(&dc->dc_cmap.r[index], &r[index], count);
770 1.17 chs memcpy(&dc->dc_cmap.g[index], &g[index], count);
771 1.17 chs memcpy(&dc->dc_cmap.b[index], &b[index], count);
772 1.1 uwe
773 1.11 uwe /* propagate changes to the device */
774 1.11 uwe igsfb_update_cmap(dc, index, count);
775 1.37 uwe return 0;
776 1.1 uwe }
777 1.1 uwe
778 1.1 uwe
779 1.1 uwe /*
780 1.8 uwe * Propagate specified part of the software cmap copy to the device.
781 1.1 uwe */
782 1.1 uwe static void
783 1.36 uwe igsfb_update_cmap(struct igsfb_devconfig *dc, u_int index, u_int count)
784 1.1 uwe {
785 1.1 uwe bus_space_tag_t t;
786 1.1 uwe bus_space_handle_t h;
787 1.1 uwe u_int last, i;
788 1.1 uwe
789 1.1 uwe if (index >= IGS_CMAP_SIZE)
790 1.1 uwe return;
791 1.1 uwe
792 1.1 uwe last = index + count;
793 1.1 uwe if (last > IGS_CMAP_SIZE)
794 1.1 uwe last = IGS_CMAP_SIZE;
795 1.1 uwe
796 1.8 uwe t = dc->dc_iot;
797 1.8 uwe h = dc->dc_ioh;
798 1.1 uwe
799 1.1 uwe /* start palette writing, index is autoincremented by hardware */
800 1.1 uwe bus_space_write_1(t, h, IGS_DAC_PEL_WRITE_IDX, index);
801 1.1 uwe
802 1.1 uwe for (i = index; i < last; ++i) {
803 1.8 uwe bus_space_write_1(t, h, IGS_DAC_PEL_DATA, dc->dc_cmap.r[i]);
804 1.8 uwe bus_space_write_1(t, h, IGS_DAC_PEL_DATA, dc->dc_cmap.g[i]);
805 1.8 uwe bus_space_write_1(t, h, IGS_DAC_PEL_DATA, dc->dc_cmap.b[i]);
806 1.1 uwe }
807 1.1 uwe }
808 1.1 uwe
809 1.1 uwe
810 1.1 uwe /*
811 1.1 uwe * wsdisplay_accessops: ioctl(WSDISPLAYIO_SCURPOS)
812 1.1 uwe */
813 1.1 uwe static void
814 1.36 uwe igsfb_set_curpos(struct igsfb_devconfig *dc,
815 1.36 uwe const struct wsdisplay_curpos *curpos)
816 1.1 uwe {
817 1.27 macallan struct rasops_info *ri = &dc->dc_vd.active->scr_ri;
818 1.9 uwe u_int x = curpos->x, y = curpos->y;
819 1.9 uwe
820 1.9 uwe if (x >= ri->ri_width)
821 1.9 uwe x = ri->ri_width - 1;
822 1.9 uwe if (y >= ri->ri_height)
823 1.9 uwe y = ri->ri_height - 1;
824 1.1 uwe
825 1.8 uwe dc->dc_cursor.cc_pos.x = x;
826 1.8 uwe dc->dc_cursor.cc_pos.y = y;
827 1.1 uwe
828 1.11 uwe /* propagate changes to the device */
829 1.8 uwe igsfb_update_curpos(dc);
830 1.1 uwe }
831 1.1 uwe
832 1.1 uwe
833 1.1 uwe static void
834 1.36 uwe igsfb_update_curpos(struct igsfb_devconfig *dc)
835 1.1 uwe {
836 1.1 uwe bus_space_tag_t t;
837 1.1 uwe bus_space_handle_t h;
838 1.1 uwe int x, xoff, y, yoff;
839 1.1 uwe
840 1.1 uwe xoff = 0;
841 1.8 uwe x = dc->dc_cursor.cc_pos.x - dc->dc_cursor.cc_hot.x;
842 1.1 uwe if (x < 0) {
843 1.8 uwe xoff = -x;
844 1.1 uwe x = 0;
845 1.1 uwe }
846 1.1 uwe
847 1.1 uwe yoff = 0;
848 1.8 uwe y = dc->dc_cursor.cc_pos.y - dc->dc_cursor.cc_hot.y;
849 1.1 uwe if (y < 0) {
850 1.8 uwe yoff = -y;
851 1.1 uwe y = 0;
852 1.1 uwe }
853 1.1 uwe
854 1.8 uwe t = dc->dc_iot;
855 1.8 uwe h = dc->dc_ioh;
856 1.1 uwe
857 1.1 uwe igs_ext_write(t, h, IGS_EXT_SPRITE_HSTART_LO, x & 0xff);
858 1.1 uwe igs_ext_write(t, h, IGS_EXT_SPRITE_HSTART_HI, (x >> 8) & 0x07);
859 1.1 uwe igs_ext_write(t, h, IGS_EXT_SPRITE_HPRESET, xoff & 0x3f);
860 1.1 uwe
861 1.1 uwe igs_ext_write(t, h, IGS_EXT_SPRITE_VSTART_LO, y & 0xff);
862 1.1 uwe igs_ext_write(t, h, IGS_EXT_SPRITE_VSTART_HI, (y >> 8) & 0x07);
863 1.1 uwe igs_ext_write(t, h, IGS_EXT_SPRITE_VPRESET, yoff & 0x3f);
864 1.1 uwe }
865 1.1 uwe
866 1.1 uwe
867 1.1 uwe /*
868 1.1 uwe * wsdisplay_accessops: ioctl(WSDISPLAYIO_GCURSOR)
869 1.1 uwe */
870 1.1 uwe static int
871 1.36 uwe igsfb_get_cursor(struct igsfb_devconfig *dc, struct wsdisplay_cursor *p)
872 1.1 uwe {
873 1.1 uwe
874 1.1 uwe /* XXX: TODO */
875 1.37 uwe return 0;
876 1.1 uwe }
877 1.1 uwe
878 1.1 uwe
879 1.1 uwe /*
880 1.1 uwe * wsdisplay_accessops: ioctl(WSDISPLAYIO_SCURSOR)
881 1.1 uwe */
882 1.1 uwe static int
883 1.36 uwe igsfb_set_cursor(struct igsfb_devconfig *dc, const struct wsdisplay_cursor *p)
884 1.1 uwe {
885 1.1 uwe struct igs_hwcursor *cc;
886 1.9 uwe struct wsdisplay_curpos pos, hot;
887 1.1 uwe u_int v, index, count, icount, iwidth;
888 1.17 chs uint8_t r[2], g[2], b[2], image[512], mask[512];
889 1.17 chs int error;
890 1.1 uwe
891 1.8 uwe cc = &dc->dc_cursor;
892 1.1 uwe v = p->which;
893 1.17 chs index = count = icount = iwidth = 0; /* XXX: gcc */
894 1.39 mrg pos.x = pos.y = 0; /* XXX: gcc */
895 1.24 uwe
896 1.17 chs /* copy in the new cursor colormap */
897 1.1 uwe if (v & WSDISPLAY_CURSOR_DOCMAP) {
898 1.1 uwe index = p->cmap.index;
899 1.1 uwe count = p->cmap.count;
900 1.1 uwe if (index >= 2 || (index + count) > 2)
901 1.37 uwe return EINVAL;
902 1.17 chs error = copyin(p->cmap.red, &r[index], count);
903 1.17 chs if (error)
904 1.17 chs return error;
905 1.17 chs error = copyin(p->cmap.green, &g[index], count);
906 1.17 chs if (error)
907 1.17 chs return error;
908 1.17 chs error = copyin(p->cmap.blue, &b[index], count);
909 1.17 chs if (error)
910 1.17 chs return error;
911 1.1 uwe }
912 1.1 uwe
913 1.9 uwe /* verify that the new cursor data are valid */
914 1.1 uwe if (v & WSDISPLAY_CURSOR_DOSHAPE) {
915 1.1 uwe if (p->size.x > IGS_CURSOR_MAX_SIZE
916 1.1 uwe || p->size.y > IGS_CURSOR_MAX_SIZE)
917 1.37 uwe return EINVAL;
918 1.1 uwe
919 1.1 uwe iwidth = (p->size.x + 7) >> 3; /* bytes per scan line */
920 1.1 uwe icount = iwidth * p->size.y;
921 1.17 chs error = copyin(p->image, image, icount);
922 1.17 chs if (error)
923 1.17 chs return error;
924 1.17 chs error = copyin(p->mask, mask, icount);
925 1.17 chs if (error)
926 1.17 chs return error;
927 1.1 uwe }
928 1.1 uwe
929 1.9 uwe /* enforce that the position is within screen bounds */
930 1.9 uwe if (v & WSDISPLAY_CURSOR_DOPOS) {
931 1.27 macallan struct rasops_info *ri = &dc->dc_vd.active->scr_ri;
932 1.9 uwe
933 1.9 uwe pos = p->pos; /* local copy we can write to */
934 1.25 macallan if (pos.x >= ri->ri_width)
935 1.25 macallan pos.x = ri->ri_width - 1;
936 1.25 macallan if (pos.y >= ri->ri_height)
937 1.25 macallan pos.y = ri->ri_height - 1;
938 1.9 uwe }
939 1.9 uwe
940 1.9 uwe /* enforce that the hot spot is within sprite bounds */
941 1.9 uwe if (v & WSDISPLAY_CURSOR_DOHOT)
942 1.9 uwe hot = p->hot; /* local copy we can write to */
943 1.9 uwe
944 1.9 uwe if (v & (WSDISPLAY_CURSOR_DOHOT | WSDISPLAY_CURSOR_DOSHAPE)) {
945 1.9 uwe const struct wsdisplay_curpos *nsize;
946 1.9 uwe struct wsdisplay_curpos *nhot;
947 1.1 uwe
948 1.9 uwe nsize = (v & WSDISPLAY_CURSOR_DOSHAPE) ?
949 1.9 uwe &p->size : &cc->cc_size;
950 1.9 uwe nhot = (v & WSDISPLAY_CURSOR_DOHOT) ? &hot : &cc->cc_hot;
951 1.1 uwe
952 1.9 uwe if (nhot->x >= nsize->x)
953 1.9 uwe nhot->x = nsize->x - 1;
954 1.9 uwe if (nhot->y >= nsize->y)
955 1.9 uwe nhot->y = nsize->y - 1;
956 1.9 uwe }
957 1.9 uwe
958 1.17 chs /* copy data to the driver's cursor info */
959 1.1 uwe if (v & WSDISPLAY_CURSOR_DOCUR)
960 1.8 uwe dc->dc_curenb = p->enable;
961 1.1 uwe if (v & WSDISPLAY_CURSOR_DOPOS)
962 1.9 uwe cc->cc_pos = pos; /* local copy, possibly corrected */
963 1.1 uwe if (v & WSDISPLAY_CURSOR_DOHOT)
964 1.9 uwe cc->cc_hot = hot; /* local copy, possibly corrected */
965 1.1 uwe if (v & WSDISPLAY_CURSOR_DOCMAP) {
966 1.17 chs memcpy(&cc->cc_color[index], &r[index], count);
967 1.17 chs memcpy(&cc->cc_color[index + 2], &g[index], count);
968 1.17 chs memcpy(&cc->cc_color[index + 4], &b[index], count);
969 1.1 uwe }
970 1.1 uwe if (v & WSDISPLAY_CURSOR_DOSHAPE) {
971 1.1 uwe u_int trailing_bits;
972 1.1 uwe
973 1.17 chs memcpy(cc->cc_image, image, icount);
974 1.17 chs memcpy(cc->cc_mask, mask, icount);
975 1.1 uwe cc->cc_size = p->size;
976 1.1 uwe
977 1.1 uwe /* clear trailing bits in the "partial" mask bytes */
978 1.1 uwe trailing_bits = p->size.x & 0x07;
979 1.1 uwe if (trailing_bits != 0) {
980 1.1 uwe const u_int cutmask = ~((~0) << trailing_bits);
981 1.1 uwe u_char *mp;
982 1.1 uwe u_int i;
983 1.1 uwe
984 1.1 uwe mp = cc->cc_mask + iwidth - 1;
985 1.1 uwe for (i = 0; i < p->size.y; ++i) {
986 1.1 uwe *mp &= cutmask;
987 1.1 uwe mp += iwidth;
988 1.1 uwe }
989 1.1 uwe }
990 1.8 uwe igsfb_convert_cursor_data(dc, iwidth, p->size.y);
991 1.1 uwe }
992 1.1 uwe
993 1.9 uwe /* propagate changes to the device */
994 1.8 uwe igsfb_update_cursor(dc, v);
995 1.9 uwe
996 1.37 uwe return 0;
997 1.1 uwe }
998 1.1 uwe
999 1.4 uwe
1000 1.1 uwe /*
1001 1.1 uwe * Convert incoming 1bpp cursor image/mask into native 2bpp format.
1002 1.1 uwe */
1003 1.1 uwe static void
1004 1.36 uwe igsfb_convert_cursor_data(struct igsfb_devconfig *dc,
1005 1.36 uwe u_int width, u_int height)
1006 1.1 uwe {
1007 1.8 uwe struct igs_hwcursor *cc = &dc->dc_cursor;
1008 1.19 uwe uint16_t *expand = dc->dc_bexpand;
1009 1.19 uwe uint8_t *ip, *mp;
1010 1.19 uwe uint16_t is, ms, *dp;
1011 1.1 uwe u_int line, i;
1012 1.1 uwe
1013 1.1 uwe /* init sprite to be all transparent */
1014 1.1 uwe memset(cc->cc_sprite, 0xaa, IGS_CURSOR_DATA_SIZE);
1015 1.1 uwe
1016 1.1 uwe /* first scanline */
1017 1.1 uwe ip = cc->cc_image;
1018 1.1 uwe mp = cc->cc_mask;
1019 1.1 uwe dp = cc->cc_sprite;
1020 1.1 uwe
1021 1.10 uwe for (line = 0; line < height; ++line) {
1022 1.10 uwe for (i = 0; i < width; ++i) {
1023 1.10 uwe is = expand[ip[i]]; /* image: 0 -> 00, 1 -> 01 */
1024 1.10 uwe ms = expand[mp[i]]; /* mask: 0 -> 00, 1 -> 11 */
1025 1.8 uwe ms |= (ms << 1);
1026 1.1 uwe dp[i] = (0xaaaa & ~ms) | (is & ms);
1027 1.1 uwe }
1028 1.1 uwe
1029 1.1 uwe /* next scanline */
1030 1.10 uwe ip += width;
1031 1.10 uwe mp += width;
1032 1.10 uwe dp += 8; /* 64 pixels, 2bpp, 8 pixels per short = 8 shorts */
1033 1.1 uwe }
1034 1.1 uwe }
1035 1.1 uwe
1036 1.1 uwe
1037 1.1 uwe /*
1038 1.8 uwe * Propagate cursor changes to the device.
1039 1.8 uwe * "which" is composed of WSDISPLAY_CURSOR_DO* bits.
1040 1.1 uwe */
1041 1.1 uwe static void
1042 1.36 uwe igsfb_update_cursor(struct igsfb_devconfig *dc, u_int which)
1043 1.1 uwe {
1044 1.8 uwe bus_space_tag_t iot = dc->dc_iot;
1045 1.8 uwe bus_space_handle_t ioh = dc->dc_ioh;
1046 1.19 uwe uint8_t curctl;
1047 1.16 uwe
1048 1.16 uwe curctl = 0; /* XXX: gcc */
1049 1.1 uwe
1050 1.1 uwe /*
1051 1.1 uwe * We will need to tweak sprite control register for cursor
1052 1.18 uwe * visibility and cursor color map manipulation.
1053 1.1 uwe */
1054 1.1 uwe if (which & (WSDISPLAY_CURSOR_DOCUR | WSDISPLAY_CURSOR_DOCMAP)) {
1055 1.1 uwe curctl = igs_ext_read(iot, ioh, IGS_EXT_SPRITE_CTL);
1056 1.1 uwe }
1057 1.1 uwe
1058 1.1 uwe if (which & WSDISPLAY_CURSOR_DOSHAPE) {
1059 1.19 uwe uint8_t *dst = bus_space_vaddr(dc->dc_memt, dc->dc_crh);
1060 1.1 uwe
1061 1.1 uwe /*
1062 1.1 uwe * memcpy between spaces of different endianness would
1063 1.8 uwe * be ... special. We cannot be sure if memcpy gonna
1064 1.1 uwe * push data in 4-byte chunks, we can't pre-bswap it,
1065 1.1 uwe * so do it byte-by-byte to preserve byte ordering.
1066 1.1 uwe */
1067 1.8 uwe if (IGSFB_HW_SOFT_BSWAP(dc)) {
1068 1.19 uwe uint8_t *src = (uint8_t *)dc->dc_cursor.cc_sprite;
1069 1.1 uwe int i;
1070 1.1 uwe
1071 1.8 uwe for (i = 0; i < IGS_CURSOR_DATA_SIZE; ++i)
1072 1.1 uwe *dst++ = *src++;
1073 1.1 uwe } else {
1074 1.8 uwe memcpy(dst, dc->dc_cursor.cc_sprite,
1075 1.8 uwe IGS_CURSOR_DATA_SIZE);
1076 1.1 uwe }
1077 1.1 uwe }
1078 1.1 uwe
1079 1.1 uwe if (which & (WSDISPLAY_CURSOR_DOPOS | WSDISPLAY_CURSOR_DOHOT)) {
1080 1.1 uwe /* code shared with WSDISPLAYIO_SCURPOS */
1081 1.8 uwe igsfb_update_curpos(dc);
1082 1.1 uwe }
1083 1.1 uwe
1084 1.1 uwe if (which & WSDISPLAY_CURSOR_DOCMAP) {
1085 1.19 uwe uint8_t *p;
1086 1.1 uwe
1087 1.1 uwe /* tell DAC we want access to the cursor palette */
1088 1.1 uwe igs_ext_write(iot, ioh, IGS_EXT_SPRITE_CTL,
1089 1.4 uwe curctl | IGS_EXT_SPRITE_DAC_PEL);
1090 1.1 uwe
1091 1.8 uwe p = dc->dc_cursor.cc_color;
1092 1.1 uwe
1093 1.1 uwe bus_space_write_1(iot, ioh, IGS_DAC_PEL_WRITE_IDX, 0);
1094 1.1 uwe bus_space_write_1(iot, ioh, IGS_DAC_PEL_DATA, p[0]);
1095 1.1 uwe bus_space_write_1(iot, ioh, IGS_DAC_PEL_DATA, p[2]);
1096 1.1 uwe bus_space_write_1(iot, ioh, IGS_DAC_PEL_DATA, p[4]);
1097 1.1 uwe
1098 1.1 uwe bus_space_write_1(iot, ioh, IGS_DAC_PEL_WRITE_IDX, 1);
1099 1.1 uwe bus_space_write_1(iot, ioh, IGS_DAC_PEL_DATA, p[1]);
1100 1.1 uwe bus_space_write_1(iot, ioh, IGS_DAC_PEL_DATA, p[3]);
1101 1.1 uwe bus_space_write_1(iot, ioh, IGS_DAC_PEL_DATA, p[5]);
1102 1.1 uwe
1103 1.8 uwe /* restore access to the normal palette */
1104 1.1 uwe igs_ext_write(iot, ioh, IGS_EXT_SPRITE_CTL, curctl);
1105 1.1 uwe }
1106 1.1 uwe
1107 1.1 uwe if (which & WSDISPLAY_CURSOR_DOCUR) {
1108 1.1 uwe if ((curctl & IGS_EXT_SPRITE_VISIBLE) == 0
1109 1.8 uwe && dc->dc_curenb)
1110 1.1 uwe igs_ext_write(iot, ioh, IGS_EXT_SPRITE_CTL,
1111 1.1 uwe curctl | IGS_EXT_SPRITE_VISIBLE);
1112 1.1 uwe else if ((curctl & IGS_EXT_SPRITE_VISIBLE) != 0
1113 1.8 uwe && !dc->dc_curenb)
1114 1.1 uwe igs_ext_write(iot, ioh, IGS_EXT_SPRITE_CTL,
1115 1.1 uwe curctl & ~IGS_EXT_SPRITE_VISIBLE);
1116 1.1 uwe }
1117 1.1 uwe }
1118 1.1 uwe
1119 1.1 uwe
1120 1.1 uwe /*
1121 1.11 uwe * Accelerated text mode cursor that uses hardware sprite.
1122 1.11 uwe */
1123 1.11 uwe static void
1124 1.36 uwe igsfb_accel_cursor(void *cookie, int on, int row, int col)
1125 1.11 uwe {
1126 1.11 uwe struct rasops_info *ri = (struct rasops_info *)cookie;
1127 1.27 macallan struct vcons_screen *scr = ri->ri_hw;
1128 1.27 macallan struct igsfb_devconfig *dc = scr->scr_cookie;
1129 1.11 uwe struct igs_hwcursor *cc = &dc->dc_cursor;
1130 1.11 uwe u_int which;
1131 1.11 uwe
1132 1.11 uwe ri->ri_crow = row;
1133 1.11 uwe ri->ri_ccol = col;
1134 1.11 uwe
1135 1.11 uwe which = 0;
1136 1.11 uwe if (on) {
1137 1.11 uwe ri->ri_flg |= RI_CURSOR;
1138 1.11 uwe
1139 1.18 uwe /* only bother to move the cursor if it's visible */
1140 1.11 uwe cc->cc_pos.x = ri->ri_xorigin
1141 1.11 uwe + ri->ri_ccol * ri->ri_font->fontwidth;
1142 1.11 uwe cc->cc_pos.y = ri->ri_yorigin
1143 1.11 uwe + ri->ri_crow * ri->ri_font->fontheight;
1144 1.11 uwe which |= WSDISPLAY_CURSOR_DOPOS;
1145 1.11 uwe } else
1146 1.11 uwe ri->ri_flg &= ~RI_CURSOR;
1147 1.11 uwe
1148 1.11 uwe if (dc->dc_curenb != on) {
1149 1.11 uwe dc->dc_curenb = on;
1150 1.11 uwe which |= WSDISPLAY_CURSOR_DOCUR;
1151 1.11 uwe }
1152 1.11 uwe
1153 1.11 uwe /* propagate changes to the device */
1154 1.11 uwe igsfb_update_cursor(dc, which);
1155 1.12 uwe }
1156 1.12 uwe
1157 1.12 uwe
1158 1.12 uwe
1159 1.12 uwe /*
1160 1.12 uwe * Accelerated raster ops that use graphic coprocessor.
1161 1.12 uwe */
1162 1.12 uwe
1163 1.12 uwe static int
1164 1.36 uwe igsfb_accel_wait(struct igsfb_devconfig *dc)
1165 1.12 uwe {
1166 1.12 uwe bus_space_tag_t t = dc->dc_iot;
1167 1.12 uwe bus_space_handle_t h = dc->dc_coph;
1168 1.12 uwe int timo = 100000;
1169 1.19 uwe uint8_t reg;
1170 1.12 uwe
1171 1.12 uwe while (timo--) {
1172 1.12 uwe reg = bus_space_read_1(t, h, IGS_COP_CTL_REG);
1173 1.12 uwe if ((reg & IGS_COP_CTL_BUSY) == 0)
1174 1.37 uwe return 0;
1175 1.12 uwe }
1176 1.12 uwe
1177 1.37 uwe return 1;
1178 1.12 uwe }
1179 1.12 uwe
1180 1.12 uwe
1181 1.12 uwe static void
1182 1.36 uwe igsfb_accel_copy(struct igsfb_devconfig *dc, uint32_t src, uint32_t dst,
1183 1.36 uwe uint16_t width, uint16_t height)
1184 1.12 uwe {
1185 1.12 uwe bus_space_tag_t t = dc->dc_iot;
1186 1.12 uwe bus_space_handle_t h = dc->dc_coph;
1187 1.19 uwe uint32_t toend;
1188 1.19 uwe uint8_t drawcmd;
1189 1.12 uwe
1190 1.12 uwe drawcmd = IGS_COP_DRAW_ALL;
1191 1.12 uwe if (dst > src) {
1192 1.27 macallan toend = dc->dc_vd.active->scr_ri.ri_width * (height - 1) + (width - 1);
1193 1.12 uwe src += toend;
1194 1.12 uwe dst += toend;
1195 1.12 uwe drawcmd |= IGS_COP_OCTANT_X_NEG | IGS_COP_OCTANT_Y_NEG;
1196 1.12 uwe }
1197 1.12 uwe
1198 1.12 uwe igsfb_accel_wait(dc);
1199 1.12 uwe bus_space_write_1(t, h, IGS_COP_CTL_REG, 0);
1200 1.12 uwe
1201 1.12 uwe bus_space_write_1(t, h, IGS_COP_FG_MIX_REG, IGS_COP_MIX_S);
1202 1.12 uwe
1203 1.12 uwe bus_space_write_2(t, h, IGS_COP_WIDTH_REG, width - 1);
1204 1.12 uwe bus_space_write_2(t, h, IGS_COP_HEIGHT_REG, height - 1);
1205 1.12 uwe
1206 1.12 uwe bus_space_write_4(t, h, IGS_COP_SRC_START_REG, src);
1207 1.12 uwe bus_space_write_4(t, h, IGS_COP_DST_START_REG, dst);
1208 1.12 uwe
1209 1.12 uwe bus_space_write_1(t, h, IGS_COP_PIXEL_OP_0_REG, drawcmd);
1210 1.12 uwe bus_space_write_1(t, h, IGS_COP_PIXEL_OP_1_REG, IGS_COP_PPM_FIXED_FG);
1211 1.12 uwe bus_space_write_1(t, h, IGS_COP_PIXEL_OP_2_REG, 0);
1212 1.12 uwe bus_space_write_1(t, h, IGS_COP_PIXEL_OP_3_REG,
1213 1.12 uwe IGS_COP_OP_PXBLT | IGS_COP_OP_FG_FROM_SRC);
1214 1.12 uwe }
1215 1.12 uwe
1216 1.36 uwe
1217 1.12 uwe static void
1218 1.36 uwe igsfb_accel_fill(struct igsfb_devconfig *dc, uint32_t color, uint32_t dst,
1219 1.36 uwe uint16_t width, uint16_t height)
1220 1.12 uwe {
1221 1.12 uwe bus_space_tag_t t = dc->dc_iot;
1222 1.12 uwe bus_space_handle_t h = dc->dc_coph;
1223 1.12 uwe
1224 1.12 uwe igsfb_accel_wait(dc);
1225 1.12 uwe bus_space_write_1(t, h, IGS_COP_CTL_REG, 0);
1226 1.12 uwe
1227 1.12 uwe bus_space_write_1(t, h, IGS_COP_FG_MIX_REG, IGS_COP_MIX_S);
1228 1.12 uwe
1229 1.12 uwe bus_space_write_2(t, h, IGS_COP_WIDTH_REG, width - 1);
1230 1.12 uwe bus_space_write_2(t, h, IGS_COP_HEIGHT_REG, height - 1);
1231 1.12 uwe
1232 1.12 uwe bus_space_write_4(t, h, IGS_COP_DST_START_REG, dst);
1233 1.12 uwe bus_space_write_4(t, h, IGS_COP_FG_REG, color);
1234 1.12 uwe
1235 1.12 uwe bus_space_write_1(t, h, IGS_COP_PIXEL_OP_0_REG, IGS_COP_DRAW_ALL);
1236 1.12 uwe bus_space_write_1(t, h, IGS_COP_PIXEL_OP_1_REG, IGS_COP_PPM_FIXED_FG);
1237 1.12 uwe bus_space_write_1(t, h, IGS_COP_PIXEL_OP_2_REG, 0);
1238 1.12 uwe bus_space_write_1(t, h, IGS_COP_PIXEL_OP_3_REG, IGS_COP_OP_PXBLT);
1239 1.12 uwe }
1240 1.12 uwe
1241 1.12 uwe
1242 1.12 uwe static void
1243 1.36 uwe igsfb_accel_copyrows(void *cookie, int src, int dst, int num)
1244 1.12 uwe {
1245 1.12 uwe struct rasops_info *ri = (struct rasops_info *)cookie;
1246 1.27 macallan struct vcons_screen *scr = ri->ri_hw;
1247 1.27 macallan struct igsfb_devconfig *dc = (struct igsfb_devconfig *)scr->scr_cookie;
1248 1.19 uwe uint32_t srp, dsp;
1249 1.19 uwe uint16_t width, height;
1250 1.12 uwe
1251 1.12 uwe width = ri->ri_emuwidth;
1252 1.12 uwe height = num * ri->ri_font->fontheight;
1253 1.12 uwe
1254 1.12 uwe srp = ri->ri_xorigin
1255 1.12 uwe + ri->ri_width * (ri->ri_yorigin
1256 1.12 uwe + src * ri->ri_font->fontheight);
1257 1.12 uwe dsp = ri->ri_xorigin
1258 1.12 uwe + ri->ri_width * (ri->ri_yorigin
1259 1.12 uwe + dst * ri->ri_font->fontheight);
1260 1.12 uwe
1261 1.12 uwe igsfb_accel_copy(dc, srp, dsp, width, height);
1262 1.12 uwe }
1263 1.12 uwe
1264 1.12 uwe
1265 1.36 uwe static void
1266 1.36 uwe igsfb_accel_copycols(void *cookie, int row, int src, int dst, int num)
1267 1.12 uwe {
1268 1.12 uwe struct rasops_info *ri = (struct rasops_info *)cookie;
1269 1.27 macallan struct vcons_screen *scr = ri->ri_hw;
1270 1.27 macallan struct igsfb_devconfig *dc = (struct igsfb_devconfig *)scr->scr_cookie;
1271 1.19 uwe uint32_t rowp, srp, dsp;
1272 1.19 uwe uint16_t width, height;
1273 1.20 perry
1274 1.12 uwe width = num * ri->ri_font->fontwidth;
1275 1.12 uwe height = ri->ri_font->fontheight;
1276 1.12 uwe
1277 1.12 uwe rowp = ri->ri_xorigin
1278 1.12 uwe + ri->ri_width * (ri->ri_yorigin
1279 1.12 uwe + row * ri->ri_font->fontheight);
1280 1.12 uwe
1281 1.12 uwe srp = rowp + src * ri->ri_font->fontwidth;
1282 1.12 uwe dsp = rowp + dst * ri->ri_font->fontwidth;
1283 1.12 uwe
1284 1.20 perry igsfb_accel_copy(dc, srp, dsp, width, height);
1285 1.12 uwe }
1286 1.12 uwe
1287 1.12 uwe
1288 1.12 uwe static void
1289 1.36 uwe igsfb_accel_eraserows(void *cookie, int row, int num, long attr)
1290 1.12 uwe {
1291 1.12 uwe struct rasops_info *ri = (struct rasops_info *)cookie;
1292 1.27 macallan struct vcons_screen *scr = ri->ri_hw;
1293 1.27 macallan struct igsfb_devconfig *dc = (struct igsfb_devconfig *)scr->scr_cookie;
1294 1.19 uwe uint32_t color;
1295 1.19 uwe uint32_t dsp;
1296 1.19 uwe uint16_t width, height;
1297 1.12 uwe
1298 1.30 uwe if (num == ri->ri_rows && (ri->ri_flg & RI_FULLCLEAR) != 0) {
1299 1.30 uwe width = ri->ri_width;
1300 1.30 uwe height = ri->ri_height;
1301 1.30 uwe dsp = 0;
1302 1.30 uwe } else {
1303 1.30 uwe width = ri->ri_emuwidth;
1304 1.30 uwe height = num * ri->ri_font->fontheight;
1305 1.30 uwe
1306 1.30 uwe dsp = ri->ri_xorigin
1307 1.30 uwe + ri->ri_width * (ri->ri_yorigin
1308 1.30 uwe + row * ri->ri_font->fontheight);
1309 1.30 uwe }
1310 1.12 uwe
1311 1.12 uwe /* XXX: we "know" the encoding that rasops' allocattr uses */
1312 1.12 uwe color = (attr >> 16) & 0xff;
1313 1.12 uwe
1314 1.12 uwe igsfb_accel_fill(dc, color, dsp, width, height);
1315 1.12 uwe }
1316 1.12 uwe
1317 1.12 uwe
1318 1.36 uwe static void
1319 1.36 uwe igsfb_accel_erasecols(void *cookie, int row, int col, int num, long attr)
1320 1.12 uwe {
1321 1.12 uwe struct rasops_info *ri = (struct rasops_info *)cookie;
1322 1.27 macallan struct vcons_screen *scr = ri->ri_hw;
1323 1.27 macallan struct igsfb_devconfig *dc = (struct igsfb_devconfig *)scr->scr_cookie;
1324 1.19 uwe uint32_t color;
1325 1.19 uwe uint32_t rowp, dsp;
1326 1.19 uwe uint16_t width, height;
1327 1.12 uwe
1328 1.12 uwe width = num * ri->ri_font->fontwidth;
1329 1.12 uwe height = ri->ri_font->fontheight;
1330 1.12 uwe
1331 1.12 uwe rowp = ri->ri_xorigin
1332 1.12 uwe + ri->ri_width * (ri->ri_yorigin
1333 1.12 uwe + row * ri->ri_font->fontheight);
1334 1.12 uwe
1335 1.12 uwe dsp = rowp + col * ri->ri_font->fontwidth;
1336 1.12 uwe
1337 1.12 uwe /* XXX: we "know" the encoding that rasops' allocattr uses */
1338 1.12 uwe color = (attr >> 16) & 0xff;
1339 1.12 uwe
1340 1.12 uwe igsfb_accel_fill(dc, color, dsp, width, height);
1341 1.12 uwe }
1342 1.12 uwe
1343 1.12 uwe
1344 1.12 uwe /*
1345 1.12 uwe * Not really implemented here, but we need to hook into the one
1346 1.12 uwe * supplied by rasops so that we can synchronize with the COP.
1347 1.12 uwe */
1348 1.12 uwe static void
1349 1.36 uwe igsfb_accel_putchar(void *cookie, int row, int col, u_int uc, long attr)
1350 1.12 uwe {
1351 1.12 uwe struct rasops_info *ri = (struct rasops_info *)cookie;
1352 1.27 macallan struct vcons_screen *scr = ri->ri_hw;
1353 1.27 macallan struct igsfb_devconfig *dc = (struct igsfb_devconfig *)scr->scr_cookie;
1354 1.12 uwe
1355 1.12 uwe igsfb_accel_wait(dc);
1356 1.12 uwe (*dc->dc_ri_putchar)(cookie, row, col, uc, attr);
1357 1.1 uwe }
1358