newport.c revision 1.7 1 1.7 jmmv /* $NetBSD: newport.c,v 1.7 2006/04/12 19:38:23 jmmv Exp $ */
2 1.1 lonewolf
3 1.1 lonewolf /*
4 1.1 lonewolf * Copyright (c) 2003 Ilpo Ruotsalainen
5 1.1 lonewolf * All rights reserved.
6 1.1 lonewolf *
7 1.1 lonewolf * Redistribution and use in source and binary forms, with or without
8 1.1 lonewolf * modification, are permitted provided that the following conditions
9 1.1 lonewolf * are met:
10 1.1 lonewolf * 1. Redistributions of source code must retain the above copyright
11 1.1 lonewolf * notice, this list of conditions and the following disclaimer.
12 1.1 lonewolf * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 lonewolf * notice, this list of conditions and the following disclaimer in the
14 1.1 lonewolf * documentation and/or other materials provided with the distribution.
15 1.1 lonewolf * 3. The name of the author may not be used to endorse or promote products
16 1.1 lonewolf * derived from this software without specific prior written permission.
17 1.1 lonewolf *
18 1.1 lonewolf * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
19 1.1 lonewolf * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
20 1.1 lonewolf * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
21 1.1 lonewolf * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
22 1.1 lonewolf * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
23 1.1 lonewolf * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
24 1.1 lonewolf * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
25 1.1 lonewolf * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
26 1.1 lonewolf * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
27 1.1 lonewolf * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
28 1.1 lonewolf *
29 1.1 lonewolf * <<Id: LICENSE_GC,v 1.1 2001/10/01 23:24:05 cgd Exp>>
30 1.1 lonewolf */
31 1.1 lonewolf
32 1.1 lonewolf #include <sys/cdefs.h>
33 1.7 jmmv __KERNEL_RCSID(0, "$NetBSD: newport.c,v 1.7 2006/04/12 19:38:23 jmmv Exp $");
34 1.1 lonewolf
35 1.1 lonewolf #include <sys/param.h>
36 1.1 lonewolf #include <sys/systm.h>
37 1.1 lonewolf #include <sys/device.h>
38 1.1 lonewolf #include <sys/malloc.h>
39 1.1 lonewolf
40 1.1 lonewolf #include <dev/wscons/wsconsio.h>
41 1.1 lonewolf #include <dev/wscons/wsdisplayvar.h>
42 1.1 lonewolf #include <dev/wsfont/wsfont.h>
43 1.1 lonewolf
44 1.1 lonewolf #include <sgimips/gio/giovar.h>
45 1.1 lonewolf #include <sgimips/gio/newportvar.h>
46 1.1 lonewolf #include <sgimips/gio/newportreg.h>
47 1.1 lonewolf
48 1.1 lonewolf struct newport_softc {
49 1.1 lonewolf struct device sc_dev;
50 1.1 lonewolf
51 1.1 lonewolf struct newport_devconfig *sc_dc;
52 1.1 lonewolf };
53 1.1 lonewolf
54 1.1 lonewolf struct newport_devconfig {
55 1.1 lonewolf uint32_t dc_addr;
56 1.1 lonewolf
57 1.1 lonewolf bus_space_tag_t dc_st;
58 1.1 lonewolf bus_space_handle_t dc_sh;
59 1.1 lonewolf
60 1.1 lonewolf int dc_boardrev;
61 1.5 sekiya int dc_vc2rev;
62 1.3 sekiya int dc_cmaprev;
63 1.3 sekiya int dc_xmaprev;
64 1.3 sekiya int dc_rexrev;
65 1.1 lonewolf int dc_xres;
66 1.1 lonewolf int dc_yres;
67 1.3 sekiya int dc_depth;
68 1.1 lonewolf
69 1.1 lonewolf int dc_font;
70 1.1 lonewolf struct wsdisplay_font *dc_fontdata;
71 1.1 lonewolf };
72 1.1 lonewolf
73 1.1 lonewolf static int newport_match(struct device *, struct cfdata *, void *);
74 1.1 lonewolf static void newport_attach(struct device *, struct device *, void *);
75 1.1 lonewolf
76 1.1 lonewolf CFATTACH_DECL(newport, sizeof(struct newport_softc),
77 1.1 lonewolf newport_match, newport_attach, NULL, NULL);
78 1.1 lonewolf
79 1.1 lonewolf /* textops */
80 1.1 lonewolf static void newport_cursor(void *, int, int, int);
81 1.1 lonewolf static int newport_mapchar(void *, int, unsigned int *);
82 1.1 lonewolf static void newport_putchar(void *, int, int, u_int, long);
83 1.1 lonewolf static void newport_copycols(void *, int, int, int, int);
84 1.1 lonewolf static void newport_erasecols(void *, int, int, int, long);
85 1.1 lonewolf static void newport_copyrows(void *, int, int, int);
86 1.1 lonewolf static void newport_eraserows(void *, int, int, long);
87 1.1 lonewolf static int newport_allocattr(void *, int, int, int, long *);
88 1.1 lonewolf
89 1.1 lonewolf /* accessops */
90 1.7 jmmv static int newport_ioctl(void *, void *, u_long, caddr_t, int,
91 1.7 jmmv struct lwp *);
92 1.7 jmmv static paddr_t newport_mmap(void *, void *, off_t, int);
93 1.1 lonewolf static int newport_alloc_screen(void *, const struct wsscreen_descr *,
94 1.1 lonewolf void **, int *, int *, long *);
95 1.1 lonewolf static void newport_free_screen(void *, void *);
96 1.1 lonewolf static int newport_show_screen(void *, void *, int,
97 1.1 lonewolf void (*)(void *, int, int), void *);
98 1.1 lonewolf
99 1.1 lonewolf static const struct wsdisplay_emulops newport_textops = {
100 1.1 lonewolf .cursor = newport_cursor,
101 1.1 lonewolf .mapchar = newport_mapchar,
102 1.1 lonewolf .putchar = newport_putchar,
103 1.1 lonewolf .copycols = newport_copycols,
104 1.1 lonewolf .erasecols = newport_erasecols,
105 1.1 lonewolf .copyrows = newport_copyrows,
106 1.1 lonewolf .eraserows = newport_eraserows,
107 1.1 lonewolf .allocattr = newport_allocattr
108 1.1 lonewolf };
109 1.1 lonewolf
110 1.1 lonewolf static const struct wsdisplay_accessops newport_accessops = {
111 1.1 lonewolf .ioctl = newport_ioctl,
112 1.1 lonewolf .mmap = newport_mmap,
113 1.1 lonewolf .alloc_screen = newport_alloc_screen,
114 1.1 lonewolf .free_screen = newport_free_screen,
115 1.1 lonewolf .show_screen = newport_show_screen,
116 1.1 lonewolf };
117 1.1 lonewolf
118 1.1 lonewolf static const struct wsscreen_descr newport_screen_1024x768 = {
119 1.1 lonewolf .name = "1024x768",
120 1.1 lonewolf .ncols = 128,
121 1.1 lonewolf .nrows = 48,
122 1.1 lonewolf .textops = &newport_textops,
123 1.1 lonewolf .fontwidth = 8,
124 1.1 lonewolf .fontheight = 16,
125 1.1 lonewolf .capabilities = WSSCREEN_WSCOLORS | WSSCREEN_HILIT | WSSCREEN_REVERSE
126 1.1 lonewolf };
127 1.1 lonewolf
128 1.1 lonewolf static const struct wsscreen_descr newport_screen_1280x1024 = {
129 1.1 lonewolf .name = "1280x1024",
130 1.1 lonewolf .ncols = 160,
131 1.1 lonewolf .nrows = 64,
132 1.1 lonewolf .textops = &newport_textops,
133 1.1 lonewolf .fontwidth = 8,
134 1.1 lonewolf .fontheight = 16,
135 1.1 lonewolf .capabilities = WSSCREEN_WSCOLORS | WSSCREEN_HILIT | WSSCREEN_REVERSE
136 1.1 lonewolf };
137 1.1 lonewolf
138 1.1 lonewolf static const struct wsscreen_descr *_newport_screenlist[] = {
139 1.1 lonewolf &newport_screen_1024x768,
140 1.1 lonewolf &newport_screen_1280x1024
141 1.1 lonewolf };
142 1.1 lonewolf
143 1.1 lonewolf static const struct wsscreen_list newport_screenlist = {
144 1.1 lonewolf sizeof(_newport_screenlist) / sizeof(struct wsscreen_descr *),
145 1.1 lonewolf _newport_screenlist
146 1.1 lonewolf };
147 1.1 lonewolf
148 1.1 lonewolf static struct newport_devconfig newport_console_dc;
149 1.1 lonewolf static int newport_is_console = 0;
150 1.1 lonewolf
151 1.1 lonewolf #define NEWPORT_ATTR_ENCODE(fg,bg) (((fg) << 8) | (bg))
152 1.1 lonewolf #define NEWPORT_ATTR_BG(a) ((a) & 0xff)
153 1.1 lonewolf #define NEWPORT_ATTR_FG(a) (((a) >> 8) & 0xff)
154 1.1 lonewolf
155 1.1 lonewolf static const uint16_t newport_cursor_data[128] = {
156 1.1 lonewolf /* Bit 0 */
157 1.1 lonewolf 0xff00, 0x0000,
158 1.1 lonewolf 0xff00, 0x0000,
159 1.1 lonewolf 0xff00, 0x0000,
160 1.1 lonewolf 0xff00, 0x0000,
161 1.1 lonewolf 0xff00, 0x0000,
162 1.1 lonewolf 0xff00, 0x0000,
163 1.1 lonewolf 0xff00, 0x0000,
164 1.1 lonewolf 0xff00, 0x0000,
165 1.1 lonewolf 0xff00, 0x0000,
166 1.1 lonewolf 0xff00, 0x0000,
167 1.1 lonewolf 0xff00, 0x0000,
168 1.1 lonewolf 0xff00, 0x0000,
169 1.1 lonewolf 0xff00, 0x0000,
170 1.1 lonewolf 0xff00, 0x0000,
171 1.1 lonewolf 0xff00, 0x0000,
172 1.1 lonewolf 0xff00, 0x0000,
173 1.1 lonewolf 0x0000, 0x0000,
174 1.1 lonewolf 0x0000, 0x0000,
175 1.1 lonewolf 0x0000, 0x0000,
176 1.1 lonewolf 0x0000, 0x0000,
177 1.1 lonewolf 0x0000, 0x0000,
178 1.1 lonewolf 0x0000, 0x0000,
179 1.1 lonewolf 0x0000, 0x0000,
180 1.1 lonewolf 0x0000, 0x0000,
181 1.1 lonewolf 0x0000, 0x0000,
182 1.1 lonewolf 0x0000, 0x0000,
183 1.1 lonewolf 0x0000, 0x0000,
184 1.1 lonewolf 0x0000, 0x0000,
185 1.1 lonewolf 0x0000, 0x0000,
186 1.1 lonewolf 0x0000, 0x0000,
187 1.1 lonewolf 0x0000, 0x0000,
188 1.1 lonewolf 0x0000, 0x0000,
189 1.1 lonewolf
190 1.1 lonewolf /* Bit 1 */
191 1.1 lonewolf 0x0000, 0x0000,
192 1.1 lonewolf 0x0000, 0x0000,
193 1.1 lonewolf 0x0000, 0x0000,
194 1.1 lonewolf 0x0000, 0x0000,
195 1.1 lonewolf 0x0000, 0x0000,
196 1.1 lonewolf 0x0000, 0x0000,
197 1.1 lonewolf 0x0000, 0x0000,
198 1.1 lonewolf 0x0000, 0x0000,
199 1.1 lonewolf 0x0000, 0x0000,
200 1.1 lonewolf 0x0000, 0x0000,
201 1.1 lonewolf 0x0000, 0x0000,
202 1.1 lonewolf 0x0000, 0x0000,
203 1.1 lonewolf 0x0000, 0x0000,
204 1.1 lonewolf 0x0000, 0x0000,
205 1.1 lonewolf 0x0000, 0x0000,
206 1.1 lonewolf 0x0000, 0x0000,
207 1.1 lonewolf 0x0000, 0x0000,
208 1.1 lonewolf 0x0000, 0x0000,
209 1.1 lonewolf 0x0000, 0x0000,
210 1.1 lonewolf 0x0000, 0x0000,
211 1.1 lonewolf 0x0000, 0x0000,
212 1.1 lonewolf 0x0000, 0x0000,
213 1.1 lonewolf 0x0000, 0x0000,
214 1.1 lonewolf 0x0000, 0x0000,
215 1.1 lonewolf 0x0000, 0x0000,
216 1.1 lonewolf 0x0000, 0x0000,
217 1.1 lonewolf 0x0000, 0x0000,
218 1.1 lonewolf 0x0000, 0x0000,
219 1.1 lonewolf 0x0000, 0x0000,
220 1.1 lonewolf 0x0000, 0x0000,
221 1.1 lonewolf 0x0000, 0x0000,
222 1.1 lonewolf 0x0000, 0x0000,
223 1.1 lonewolf };
224 1.1 lonewolf
225 1.1 lonewolf static const uint8_t newport_defcmap[16*3] = {
226 1.1 lonewolf /* Normal colors */
227 1.1 lonewolf 0x00, 0x00, 0x00, /* black */
228 1.1 lonewolf 0x7f, 0x00, 0x00, /* red */
229 1.1 lonewolf 0x00, 0x7f, 0x00, /* green */
230 1.1 lonewolf 0x7f, 0x7f, 0x00, /* brown */
231 1.1 lonewolf 0x00, 0x00, 0x7f, /* blue */
232 1.1 lonewolf 0x7f, 0x00, 0x7f, /* magenta */
233 1.1 lonewolf 0x00, 0x7f, 0x7f, /* cyan */
234 1.1 lonewolf 0xc7, 0xc7, 0xc7, /* white - XXX too dim? */
235 1.1 lonewolf
236 1.1 lonewolf /* Hilite colors */
237 1.1 lonewolf 0x7f, 0x7f, 0x7f, /* black */
238 1.1 lonewolf 0xff, 0x00, 0x00, /* red */
239 1.1 lonewolf 0x00, 0xff, 0x00, /* green */
240 1.1 lonewolf 0xff, 0xff, 0x00, /* brown */
241 1.1 lonewolf 0x00, 0x00, 0xff, /* blue */
242 1.1 lonewolf 0xff, 0x00, 0xff, /* magenta */
243 1.1 lonewolf 0x00, 0xff, 0xff, /* cyan */
244 1.1 lonewolf 0xff, 0xff, 0xff, /* white */
245 1.1 lonewolf };
246 1.1 lonewolf
247 1.1 lonewolf /**** Low-level hardware register groveling functions ****/
248 1.1 lonewolf static void
249 1.1 lonewolf rex3_write(struct newport_devconfig *dc, bus_size_t rexreg, uint32_t val)
250 1.1 lonewolf {
251 1.1 lonewolf bus_space_write_4(dc->dc_st, dc->dc_sh, NEWPORT_REX3_OFFSET + rexreg,
252 1.1 lonewolf val);
253 1.1 lonewolf }
254 1.1 lonewolf
255 1.1 lonewolf static void
256 1.1 lonewolf rex3_write_go(struct newport_devconfig *dc, bus_size_t rexreg, uint32_t val)
257 1.1 lonewolf {
258 1.1 lonewolf rex3_write(dc, rexreg + REX3_REG_GO, val);
259 1.1 lonewolf }
260 1.1 lonewolf
261 1.1 lonewolf static uint32_t
262 1.1 lonewolf rex3_read(struct newport_devconfig *dc, bus_size_t rexreg)
263 1.1 lonewolf {
264 1.1 lonewolf return bus_space_read_4(dc->dc_st, dc->dc_sh, NEWPORT_REX3_OFFSET +
265 1.1 lonewolf rexreg);
266 1.1 lonewolf }
267 1.1 lonewolf
268 1.1 lonewolf static void
269 1.1 lonewolf rex3_wait_gfifo(struct newport_devconfig *dc)
270 1.1 lonewolf {
271 1.1 lonewolf while (rex3_read(dc, REX3_REG_STATUS) & REX3_STATUS_GFXBUSY)
272 1.1 lonewolf ;
273 1.1 lonewolf }
274 1.1 lonewolf
275 1.1 lonewolf static void
276 1.1 lonewolf vc2_write_ireg(struct newport_devconfig *dc, uint8_t ireg, uint16_t val)
277 1.1 lonewolf {
278 1.1 lonewolf rex3_write(dc, REX3_REG_DCBMODE,
279 1.1 lonewolf REX3_DCBMODE_DW_3 |
280 1.1 lonewolf REX3_DCBMODE_ENCRSINC |
281 1.1 lonewolf (NEWPORT_DCBADDR_VC2 << REX3_DCBMODE_DCBADDR_SHIFT) |
282 1.1 lonewolf (VC2_DCBCRS_INDEX << REX3_DCBMODE_DCBCRS_SHIFT) |
283 1.1 lonewolf REX3_DCBMODE_ENASYNCACK |
284 1.1 lonewolf (1 << REX3_DCBMODE_CSSETUP_SHIFT));
285 1.1 lonewolf
286 1.1 lonewolf rex3_write(dc, REX3_REG_DCBDATA0, (ireg << 24) | (val << 8));
287 1.1 lonewolf }
288 1.1 lonewolf
289 1.1 lonewolf static uint16_t
290 1.1 lonewolf vc2_read_ireg(struct newport_devconfig *dc, uint8_t ireg)
291 1.1 lonewolf {
292 1.1 lonewolf rex3_write(dc, REX3_REG_DCBMODE,
293 1.1 lonewolf REX3_DCBMODE_DW_1 |
294 1.1 lonewolf REX3_DCBMODE_ENCRSINC |
295 1.1 lonewolf (NEWPORT_DCBADDR_VC2 << REX3_DCBMODE_DCBADDR_SHIFT) |
296 1.1 lonewolf (VC2_DCBCRS_INDEX << REX3_DCBMODE_DCBCRS_SHIFT) |
297 1.1 lonewolf REX3_DCBMODE_ENASYNCACK |
298 1.1 lonewolf (1 << REX3_DCBMODE_CSSETUP_SHIFT));
299 1.1 lonewolf
300 1.1 lonewolf rex3_write(dc, REX3_REG_DCBDATA0, ireg << 24);
301 1.1 lonewolf
302 1.1 lonewolf rex3_write(dc, REX3_REG_DCBMODE,
303 1.1 lonewolf REX3_DCBMODE_DW_2 |
304 1.1 lonewolf REX3_DCBMODE_ENCRSINC |
305 1.1 lonewolf (NEWPORT_DCBADDR_VC2 << REX3_DCBMODE_DCBADDR_SHIFT) |
306 1.1 lonewolf (VC2_DCBCRS_IREG << REX3_DCBMODE_DCBCRS_SHIFT) |
307 1.1 lonewolf REX3_DCBMODE_ENASYNCACK |
308 1.1 lonewolf (1 << REX3_DCBMODE_CSSETUP_SHIFT));
309 1.1 lonewolf
310 1.1 lonewolf return (uint16_t)(rex3_read(dc, REX3_REG_DCBDATA0) >> 16);
311 1.1 lonewolf }
312 1.1 lonewolf
313 1.1 lonewolf static uint16_t
314 1.1 lonewolf vc2_read_ram(struct newport_devconfig *dc, uint16_t addr)
315 1.1 lonewolf {
316 1.1 lonewolf vc2_write_ireg(dc, VC2_IREG_RAM_ADDRESS, addr);
317 1.1 lonewolf
318 1.1 lonewolf rex3_write(dc, REX3_REG_DCBMODE,
319 1.1 lonewolf REX3_DCBMODE_DW_2 |
320 1.1 lonewolf (NEWPORT_DCBADDR_VC2 << REX3_DCBMODE_DCBADDR_SHIFT) |
321 1.1 lonewolf (VC2_DCBCRS_RAM << REX3_DCBMODE_DCBCRS_SHIFT) |
322 1.1 lonewolf REX3_DCBMODE_ENASYNCACK |
323 1.1 lonewolf (1 << REX3_DCBMODE_CSSETUP_SHIFT));
324 1.1 lonewolf
325 1.1 lonewolf return (uint16_t)(rex3_read(dc, REX3_REG_DCBDATA0) >> 16);
326 1.1 lonewolf }
327 1.1 lonewolf
328 1.1 lonewolf static void
329 1.1 lonewolf vc2_write_ram(struct newport_devconfig *dc, uint16_t addr, uint16_t val)
330 1.1 lonewolf {
331 1.1 lonewolf vc2_write_ireg(dc, VC2_IREG_RAM_ADDRESS, addr);
332 1.1 lonewolf
333 1.1 lonewolf rex3_write(dc, REX3_REG_DCBMODE,
334 1.1 lonewolf REX3_DCBMODE_DW_2 |
335 1.1 lonewolf (NEWPORT_DCBADDR_VC2 << REX3_DCBMODE_DCBADDR_SHIFT) |
336 1.1 lonewolf (VC2_DCBCRS_RAM << REX3_DCBMODE_DCBCRS_SHIFT) |
337 1.1 lonewolf REX3_DCBMODE_ENASYNCACK |
338 1.1 lonewolf (1 << REX3_DCBMODE_CSSETUP_SHIFT));
339 1.1 lonewolf
340 1.1 lonewolf rex3_write(dc, REX3_REG_DCBDATA0, val << 16);
341 1.1 lonewolf }
342 1.1 lonewolf
343 1.3 sekiya static u_int32_t
344 1.3 sekiya xmap9_read(struct newport_devconfig *dc, int crs)
345 1.3 sekiya {
346 1.3 sekiya rex3_write(dc, REX3_REG_DCBMODE,
347 1.3 sekiya REX3_DCBMODE_DW_1 |
348 1.3 sekiya (NEWPORT_DCBADDR_XMAP_0 << REX3_DCBMODE_DCBADDR_SHIFT) |
349 1.3 sekiya (crs << REX3_DCBMODE_DCBCRS_SHIFT) |
350 1.3 sekiya (3 << REX3_DCBMODE_CSWIDTH_SHIFT) |
351 1.3 sekiya (2 << REX3_DCBMODE_CSHOLD_SHIFT) |
352 1.3 sekiya (1 << REX3_DCBMODE_CSSETUP_SHIFT));
353 1.3 sekiya return rex3_read(dc, REX3_REG_DCBDATA0);
354 1.3 sekiya }
355 1.3 sekiya
356 1.1 lonewolf static void
357 1.1 lonewolf xmap9_write(struct newport_devconfig *dc, int crs, uint8_t val)
358 1.1 lonewolf {
359 1.1 lonewolf rex3_write(dc, REX3_REG_DCBMODE,
360 1.1 lonewolf REX3_DCBMODE_DW_1 |
361 1.1 lonewolf (NEWPORT_DCBADDR_XMAP_BOTH << REX3_DCBMODE_DCBADDR_SHIFT) |
362 1.1 lonewolf (crs << REX3_DCBMODE_DCBCRS_SHIFT) |
363 1.1 lonewolf (3 << REX3_DCBMODE_CSWIDTH_SHIFT) |
364 1.1 lonewolf (2 << REX3_DCBMODE_CSHOLD_SHIFT) |
365 1.1 lonewolf (1 << REX3_DCBMODE_CSSETUP_SHIFT));
366 1.1 lonewolf
367 1.1 lonewolf rex3_write(dc, REX3_REG_DCBDATA0, val << 24);
368 1.1 lonewolf }
369 1.1 lonewolf
370 1.1 lonewolf static void
371 1.1 lonewolf xmap9_write_mode(struct newport_devconfig *dc, uint8_t index, uint32_t mode)
372 1.1 lonewolf {
373 1.1 lonewolf rex3_write(dc, REX3_REG_DCBMODE,
374 1.1 lonewolf REX3_DCBMODE_DW_4 |
375 1.1 lonewolf (NEWPORT_DCBADDR_XMAP_BOTH << REX3_DCBMODE_DCBADDR_SHIFT) |
376 1.1 lonewolf (XMAP9_DCBCRS_MODE_SETUP << REX3_DCBMODE_DCBCRS_SHIFT) |
377 1.1 lonewolf (3 << REX3_DCBMODE_CSWIDTH_SHIFT) |
378 1.1 lonewolf (2 << REX3_DCBMODE_CSHOLD_SHIFT) |
379 1.1 lonewolf (1 << REX3_DCBMODE_CSSETUP_SHIFT));
380 1.1 lonewolf
381 1.1 lonewolf rex3_write(dc, REX3_REG_DCBDATA0, (index << 24) | mode);
382 1.1 lonewolf }
383 1.1 lonewolf
384 1.1 lonewolf /**** Helper functions ****/
385 1.1 lonewolf static void
386 1.1 lonewolf newport_fill_rectangle(struct newport_devconfig *dc, int x1, int y1, int x2,
387 1.1 lonewolf int y2, uint8_t color)
388 1.1 lonewolf {
389 1.1 lonewolf rex3_wait_gfifo(dc);
390 1.1 lonewolf
391 1.1 lonewolf rex3_write(dc, REX3_REG_DRAWMODE0, REX3_DRAWMODE0_OPCODE_DRAW |
392 1.1 lonewolf REX3_DRAWMODE0_ADRMODE_BLOCK | REX3_DRAWMODE0_DOSETUP |
393 1.1 lonewolf REX3_DRAWMODE0_STOPONX | REX3_DRAWMODE0_STOPONY);
394 1.3 sekiya rex3_write(dc, REX3_REG_WRMASK, 0xffffffff);
395 1.1 lonewolf rex3_write(dc, REX3_REG_COLORI, color);
396 1.1 lonewolf rex3_write(dc, REX3_REG_XYSTARTI, (x1 << REX3_XYSTARTI_XSHIFT) | y1);
397 1.1 lonewolf
398 1.1 lonewolf rex3_write_go(dc, REX3_REG_XYENDI, (x2 << REX3_XYENDI_XSHIFT) | y2);
399 1.1 lonewolf }
400 1.1 lonewolf
401 1.1 lonewolf static void
402 1.1 lonewolf newport_copy_rectangle(struct newport_devconfig *dc, int x1, int y1, int x2,
403 1.1 lonewolf int y2, int dx, int dy)
404 1.1 lonewolf {
405 1.1 lonewolf uint32_t tmp;
406 1.1 lonewolf
407 1.1 lonewolf rex3_wait_gfifo(dc);
408 1.1 lonewolf
409 1.1 lonewolf rex3_write(dc, REX3_REG_DRAWMODE0, REX3_DRAWMODE0_OPCODE_SCR2SCR |
410 1.1 lonewolf REX3_DRAWMODE0_ADRMODE_BLOCK | REX3_DRAWMODE0_DOSETUP |
411 1.1 lonewolf REX3_DRAWMODE0_STOPONX | REX3_DRAWMODE0_STOPONY);
412 1.1 lonewolf rex3_write(dc, REX3_REG_XYSTARTI, (x1 << REX3_XYSTARTI_XSHIFT) | y1);
413 1.1 lonewolf rex3_write(dc, REX3_REG_XYENDI, (x2 << REX3_XYENDI_XSHIFT) | y2);
414 1.1 lonewolf
415 1.1 lonewolf tmp = (dy - y1) & 0xffff;
416 1.1 lonewolf tmp |= (dx - x1) << REX3_XYMOVE_XSHIFT;
417 1.1 lonewolf
418 1.1 lonewolf rex3_write_go(dc, REX3_REG_XYMOVE, tmp);
419 1.1 lonewolf }
420 1.1 lonewolf
421 1.1 lonewolf static void
422 1.1 lonewolf newport_cmap_setrgb(struct newport_devconfig *dc, int index, uint8_t r,
423 1.1 lonewolf uint8_t g, uint8_t b)
424 1.1 lonewolf {
425 1.1 lonewolf rex3_write(dc, REX3_REG_DCBMODE,
426 1.1 lonewolf REX3_DCBMODE_DW_2 |
427 1.1 lonewolf REX3_DCBMODE_ENCRSINC |
428 1.1 lonewolf (NEWPORT_DCBADDR_CMAP_BOTH << REX3_DCBMODE_DCBADDR_SHIFT) |
429 1.1 lonewolf (CMAP_DCBCRS_ADDRESS_LOW << REX3_DCBMODE_DCBCRS_SHIFT) |
430 1.1 lonewolf (1 << REX3_DCBMODE_CSWIDTH_SHIFT) |
431 1.1 lonewolf (1 << REX3_DCBMODE_CSHOLD_SHIFT) |
432 1.1 lonewolf (1 << REX3_DCBMODE_CSSETUP_SHIFT) |
433 1.1 lonewolf REX3_DCBMODE_SWAPENDIAN);
434 1.1 lonewolf
435 1.1 lonewolf rex3_write(dc, REX3_REG_DCBDATA0, index << 16);
436 1.1 lonewolf
437 1.1 lonewolf rex3_write(dc, REX3_REG_DCBMODE,
438 1.1 lonewolf REX3_DCBMODE_DW_3 |
439 1.1 lonewolf (NEWPORT_DCBADDR_CMAP_BOTH << REX3_DCBMODE_DCBADDR_SHIFT) |
440 1.1 lonewolf (CMAP_DCBCRS_PALETTE << REX3_DCBMODE_DCBCRS_SHIFT) |
441 1.1 lonewolf (1 << REX3_DCBMODE_CSWIDTH_SHIFT) |
442 1.1 lonewolf (1 << REX3_DCBMODE_CSHOLD_SHIFT) |
443 1.1 lonewolf (1 << REX3_DCBMODE_CSSETUP_SHIFT));
444 1.1 lonewolf
445 1.1 lonewolf rex3_write(dc, REX3_REG_DCBDATA0, (r << 24) + (g << 16) + (b << 8));
446 1.1 lonewolf }
447 1.1 lonewolf
448 1.1 lonewolf static void
449 1.1 lonewolf newport_get_resolution(struct newport_devconfig *dc)
450 1.1 lonewolf {
451 1.1 lonewolf uint16_t vep,lines;
452 1.1 lonewolf uint16_t linep,cols;
453 1.1 lonewolf uint16_t data;
454 1.1 lonewolf
455 1.1 lonewolf vep = vc2_read_ireg(dc, VC2_IREG_VIDEO_ENTRY);
456 1.1 lonewolf
457 1.1 lonewolf dc->dc_xres = 0;
458 1.1 lonewolf dc->dc_yres = 0;
459 1.1 lonewolf
460 1.1 lonewolf for (;;) {
461 1.1 lonewolf /* Iterate over runs in video timing table */
462 1.1 lonewolf
463 1.1 lonewolf cols = 0;
464 1.1 lonewolf
465 1.1 lonewolf linep = vc2_read_ram(dc, vep++);
466 1.1 lonewolf lines = vc2_read_ram(dc, vep++);
467 1.1 lonewolf
468 1.1 lonewolf if (lines == 0)
469 1.1 lonewolf break;
470 1.1 lonewolf
471 1.1 lonewolf do {
472 1.1 lonewolf /* Iterate over state runs in line sequence table */
473 1.1 lonewolf
474 1.1 lonewolf data = vc2_read_ram(dc, linep++);
475 1.1 lonewolf
476 1.1 lonewolf if ((data & 0x0001) == 0)
477 1.1 lonewolf cols += (data >> 7) & 0xfe;
478 1.1 lonewolf
479 1.1 lonewolf if ((data & 0x0080) == 0)
480 1.1 lonewolf data = vc2_read_ram(dc, linep++);
481 1.1 lonewolf } while ((data & 0x8000) == 0);
482 1.1 lonewolf
483 1.1 lonewolf if (cols != 0) {
484 1.1 lonewolf if (cols > dc->dc_xres)
485 1.1 lonewolf dc->dc_xres = cols;
486 1.1 lonewolf
487 1.1 lonewolf dc->dc_yres += lines;
488 1.1 lonewolf }
489 1.1 lonewolf }
490 1.1 lonewolf }
491 1.1 lonewolf
492 1.1 lonewolf static void
493 1.1 lonewolf newport_setup_hw(struct newport_devconfig *dc)
494 1.1 lonewolf {
495 1.1 lonewolf uint16_t curp,tmp;
496 1.1 lonewolf int i;
497 1.3 sekiya uint32_t scratch;
498 1.1 lonewolf
499 1.3 sekiya /* Get various revisions */
500 1.1 lonewolf rex3_write(dc, REX3_REG_DCBMODE,
501 1.1 lonewolf REX3_DCBMODE_DW_1 |
502 1.1 lonewolf (NEWPORT_DCBADDR_CMAP_0 << REX3_DCBMODE_DCBADDR_SHIFT) |
503 1.1 lonewolf (CMAP_DCBCRS_REVISION << REX3_DCBMODE_DCBCRS_SHIFT) |
504 1.1 lonewolf (1 << REX3_DCBMODE_CSWIDTH_SHIFT) |
505 1.1 lonewolf (1 << REX3_DCBMODE_CSHOLD_SHIFT) |
506 1.1 lonewolf (1 << REX3_DCBMODE_CSSETUP_SHIFT));
507 1.1 lonewolf
508 1.5 sekiya scratch = vc2_read_ireg(dc, VC2_IREG_CONFIG);
509 1.5 sekiya dc->dc_vc2rev = (scratch & VC2_IREG_CONFIG_REVISION) >> 5;
510 1.5 sekiya
511 1.3 sekiya scratch = rex3_read(dc, REX3_REG_DCBDATA0);
512 1.3 sekiya
513 1.3 sekiya dc->dc_boardrev = (scratch >> 28) & 0x07;
514 1.3 sekiya dc->dc_cmaprev = scratch & 0x07;
515 1.3 sekiya dc->dc_xmaprev = xmap9_read(dc, XMAP9_DCBCRS_REVISION) & 0x07;
516 1.5 sekiya dc->dc_depth = ( (dc->dc_boardrev > 1) && (scratch & 0x80)) ? 8 : 24;
517 1.1 lonewolf
518 1.1 lonewolf /* Setup cursor glyph */
519 1.1 lonewolf curp = vc2_read_ireg(dc, VC2_IREG_CURSOR_ENTRY);
520 1.1 lonewolf
521 1.1 lonewolf for (i=0; i<128; i++)
522 1.1 lonewolf vc2_write_ram(dc, curp + i, newport_cursor_data[i]);
523 1.1 lonewolf
524 1.1 lonewolf /* Setup VC2 to a known state */
525 1.1 lonewolf tmp = vc2_read_ireg(dc, VC2_IREG_CONTROL) & VC2_CONTROL_INTERLACE;
526 1.1 lonewolf vc2_write_ireg(dc, VC2_IREG_CONTROL, tmp |
527 1.1 lonewolf VC2_CONTROL_DISPLAY_ENABLE |
528 1.1 lonewolf VC2_CONTROL_VTIMING_ENABLE |
529 1.1 lonewolf VC2_CONTROL_DID_ENABLE |
530 1.1 lonewolf VC2_CONTROL_CURSORFUNC_ENABLE |
531 1.1 lonewolf VC2_CONTROL_CURSOR_ENABLE);
532 1.1 lonewolf
533 1.1 lonewolf /* Setup XMAP9s */
534 1.1 lonewolf xmap9_write(dc, XMAP9_DCBCRS_CONFIG,
535 1.1 lonewolf XMAP9_CONFIG_8BIT_SYSTEM | XMAP9_CONFIG_RGBMAP_CI);
536 1.1 lonewolf
537 1.1 lonewolf xmap9_write(dc, XMAP9_DCBCRS_CURSOR_CMAP, 0);
538 1.1 lonewolf
539 1.1 lonewolf xmap9_write_mode(dc, 0,
540 1.1 lonewolf XMAP9_MODE_GAMMA_BYPASS |
541 1.1 lonewolf XMAP9_MODE_PIXSIZE_8BPP);
542 1.1 lonewolf xmap9_write(dc, XMAP9_DCBCRS_MODE_SELECT, 0);
543 1.1 lonewolf
544 1.1 lonewolf /* Setup REX3 */
545 1.1 lonewolf rex3_write(dc, REX3_REG_DRAWMODE1,
546 1.1 lonewolf REX3_DRAWMODE1_PLANES_CI |
547 1.1 lonewolf REX3_DRAWMODE1_DD_DD8 |
548 1.1 lonewolf REX3_DRAWMODE1_RWPACKED |
549 1.1 lonewolf REX3_DRAWMODE1_HD_HD8 |
550 1.1 lonewolf REX3_DRAWMODE1_COMPARE_LT |
551 1.1 lonewolf REX3_DRAWMODE1_COMPARE_EQ |
552 1.1 lonewolf REX3_DRAWMODE1_COMPARE_GT |
553 1.1 lonewolf REX3_DRAWMODE1_LO_SRC);
554 1.1 lonewolf rex3_write(dc, REX3_REG_XYWIN, (4096 << 16) | 4096);
555 1.1 lonewolf rex3_write(dc, REX3_REG_TOPSCAN, 0x3ff); /* XXX Why? XXX */
556 1.1 lonewolf
557 1.1 lonewolf /* Setup CMAP */
558 1.1 lonewolf for (i=0; i<16; i++)
559 1.1 lonewolf newport_cmap_setrgb(dc, i, newport_defcmap[i*3],
560 1.1 lonewolf newport_defcmap[i*3 + 1], newport_defcmap[i*3 + 2]);
561 1.1 lonewolf }
562 1.1 lonewolf
563 1.1 lonewolf /**** Attach routines ****/
564 1.1 lonewolf static int
565 1.1 lonewolf newport_match(struct device *parent, struct cfdata *self, void *aux)
566 1.1 lonewolf {
567 1.1 lonewolf struct gio_attach_args *ga = aux;
568 1.1 lonewolf
569 1.1 lonewolf /* newport doesn't decode all addresses */
570 1.1 lonewolf if (ga->ga_addr != 0x1f000000 && ga->ga_addr != 0x1f400000 &&
571 1.1 lonewolf ga->ga_addr != 0x1f800000 && ga->ga_addr != 0x1fc00000)
572 1.1 lonewolf return 0;
573 1.1 lonewolf
574 1.1 lonewolf /* newport doesn't respond with correct product id, empirically
575 1.1 lonewolf * both empty slots and newports seem to yield this result */
576 1.1 lonewolf if (ga->ga_product != 0x04)
577 1.1 lonewolf return 0;
578 1.1 lonewolf
579 1.1 lonewolf /* Don't do the destructive probe if we're already attached */
580 1.1 lonewolf if (newport_is_console && ga->ga_addr == newport_console_dc.dc_addr)
581 1.1 lonewolf return 1;
582 1.1 lonewolf
583 1.1 lonewolf /* Ugly, this probe is destructive, blame SGI... */
584 1.1 lonewolf /* XXX Should be bus_space_peek/bus_space_poke XXX */
585 1.1 lonewolf bus_space_write_4(ga->ga_iot, ga->ga_ioh,
586 1.1 lonewolf NEWPORT_REX3_OFFSET + REX3_REG_XSTARTI, 0x12345678);
587 1.1 lonewolf if (bus_space_read_4(ga->ga_iot, ga->ga_ioh,
588 1.1 lonewolf NEWPORT_REX3_OFFSET + REX3_REG_XSTART)
589 1.1 lonewolf != ((0x12345678 & 0xffff) << 11))
590 1.1 lonewolf return 0;
591 1.1 lonewolf
592 1.1 lonewolf return 1;
593 1.1 lonewolf }
594 1.1 lonewolf
595 1.1 lonewolf static void
596 1.1 lonewolf newport_attach_common(struct newport_devconfig *dc, struct gio_attach_args *ga)
597 1.1 lonewolf {
598 1.1 lonewolf dc->dc_addr = ga->ga_addr;
599 1.1 lonewolf
600 1.1 lonewolf dc->dc_st = ga->ga_iot;
601 1.1 lonewolf dc->dc_sh = ga->ga_ioh;
602 1.1 lonewolf
603 1.1 lonewolf wsfont_init();
604 1.1 lonewolf
605 1.1 lonewolf dc->dc_font = wsfont_find(NULL, 8, 16, 0, WSDISPLAY_FONTORDER_L2R,
606 1.1 lonewolf WSDISPLAY_FONTORDER_L2R);
607 1.1 lonewolf if (dc->dc_font < 0)
608 1.1 lonewolf panic("newport_attach_common: no suitable fonts");
609 1.1 lonewolf
610 1.1 lonewolf if (wsfont_lock(dc->dc_font, &dc->dc_fontdata))
611 1.1 lonewolf panic("newport_attach_common: unable to lock font data");
612 1.1 lonewolf
613 1.1 lonewolf newport_setup_hw(dc);
614 1.1 lonewolf
615 1.1 lonewolf newport_get_resolution(dc);
616 1.1 lonewolf
617 1.1 lonewolf newport_fill_rectangle(dc, 0, 0, dc->dc_xres, dc->dc_yres, 0);
618 1.1 lonewolf }
619 1.1 lonewolf
620 1.1 lonewolf static void
621 1.1 lonewolf newport_attach(struct device *parent, struct device *self, void *aux)
622 1.1 lonewolf {
623 1.1 lonewolf struct gio_attach_args *ga = aux;
624 1.1 lonewolf struct newport_softc *sc = (void *)self;
625 1.1 lonewolf struct wsemuldisplaydev_attach_args wa;
626 1.1 lonewolf
627 1.1 lonewolf if (newport_is_console && ga->ga_addr == newport_console_dc.dc_addr) {
628 1.1 lonewolf wa.console = 1;
629 1.1 lonewolf sc->sc_dc = &newport_console_dc;
630 1.1 lonewolf } else {
631 1.1 lonewolf wa.console = 0;
632 1.1 lonewolf sc->sc_dc = malloc(sizeof(struct newport_devconfig),
633 1.1 lonewolf M_DEVBUF, M_WAITOK | M_ZERO);
634 1.1 lonewolf if (sc->sc_dc == NULL)
635 1.1 lonewolf panic("newport_attach: out of memory");
636 1.1 lonewolf
637 1.1 lonewolf newport_attach_common(sc->sc_dc, ga);
638 1.1 lonewolf }
639 1.1 lonewolf
640 1.1 lonewolf aprint_naive(": Display adapter\n");
641 1.1 lonewolf
642 1.5 sekiya aprint_normal(": SGI NG1 (board revision %d, cmap revision %d, xmap revision %d, vc2 revision %d), depth %d\n",
643 1.3 sekiya sc->sc_dc->dc_boardrev, sc->sc_dc->dc_cmaprev,
644 1.5 sekiya sc->sc_dc->dc_xmaprev, sc->sc_dc->dc_vc2rev, sc->sc_dc->dc_depth);
645 1.1 lonewolf
646 1.1 lonewolf wa.scrdata = &newport_screenlist;
647 1.1 lonewolf wa.accessops = &newport_accessops;
648 1.1 lonewolf wa.accesscookie = sc->sc_dc;
649 1.1 lonewolf
650 1.1 lonewolf config_found(&sc->sc_dev, &wa, wsemuldisplaydevprint);
651 1.1 lonewolf }
652 1.1 lonewolf
653 1.1 lonewolf int
654 1.1 lonewolf newport_cnattach(struct gio_attach_args *ga)
655 1.1 lonewolf {
656 1.1 lonewolf long defattr = NEWPORT_ATTR_ENCODE(WSCOL_WHITE, WSCOL_BLACK);
657 1.1 lonewolf const struct wsscreen_descr *screen;
658 1.1 lonewolf
659 1.1 lonewolf if (!newport_match(NULL, NULL, ga)) {
660 1.1 lonewolf return ENXIO;
661 1.1 lonewolf }
662 1.1 lonewolf
663 1.1 lonewolf newport_attach_common(&newport_console_dc, ga);
664 1.1 lonewolf
665 1.1 lonewolf if (newport_console_dc.dc_xres >= 1280 &&
666 1.1 lonewolf newport_console_dc.dc_yres >= 1024)
667 1.1 lonewolf screen = &newport_screen_1280x1024;
668 1.1 lonewolf else
669 1.1 lonewolf screen = &newport_screen_1024x768;
670 1.1 lonewolf
671 1.1 lonewolf wsdisplay_cnattach(screen, &newport_console_dc, 0, 0, defattr);
672 1.1 lonewolf
673 1.1 lonewolf newport_is_console = 1;
674 1.1 lonewolf
675 1.1 lonewolf return 0;
676 1.1 lonewolf }
677 1.1 lonewolf
678 1.1 lonewolf /**** wsdisplay textops ****/
679 1.1 lonewolf static void
680 1.1 lonewolf newport_cursor(void *c, int on, int row, int col)
681 1.1 lonewolf {
682 1.1 lonewolf struct newport_devconfig *dc = (void *)c;
683 1.1 lonewolf uint16_t control;
684 1.1 lonewolf int x_offset;
685 1.1 lonewolf
686 1.1 lonewolf control = vc2_read_ireg(dc, VC2_IREG_CONTROL);
687 1.1 lonewolf
688 1.1 lonewolf if (!on) {
689 1.1 lonewolf vc2_write_ireg(dc, VC2_IREG_CONTROL,
690 1.1 lonewolf control & ~VC2_CONTROL_CURSOR_ENABLE);
691 1.1 lonewolf } else {
692 1.1 lonewolf /* Work around bug in some board revisions */
693 1.1 lonewolf if (dc->dc_boardrev < 6)
694 1.1 lonewolf x_offset = 21;
695 1.5 sekiya else if (dc->dc_vc2rev == 0)
696 1.5 sekiya x_offset = 29;
697 1.1 lonewolf else
698 1.1 lonewolf x_offset = 31;
699 1.1 lonewolf
700 1.1 lonewolf vc2_write_ireg(dc, VC2_IREG_CURSOR_X,
701 1.1 lonewolf col * dc->dc_fontdata->fontwidth + x_offset);
702 1.1 lonewolf vc2_write_ireg(dc, VC2_IREG_CURSOR_Y,
703 1.1 lonewolf row * dc->dc_fontdata->fontheight + 31);
704 1.1 lonewolf
705 1.1 lonewolf vc2_write_ireg(dc, VC2_IREG_CONTROL,
706 1.1 lonewolf control | VC2_CONTROL_CURSOR_ENABLE);
707 1.1 lonewolf }
708 1.1 lonewolf }
709 1.1 lonewolf
710 1.1 lonewolf static int
711 1.1 lonewolf newport_mapchar(void *c, int ch, unsigned int *cp)
712 1.1 lonewolf {
713 1.1 lonewolf struct newport_devconfig *dc = (void *)c;
714 1.1 lonewolf
715 1.1 lonewolf if (dc->dc_fontdata->encoding != WSDISPLAY_FONTENC_ISO) {
716 1.1 lonewolf ch = wsfont_map_unichar(dc->dc_fontdata, ch);
717 1.1 lonewolf
718 1.1 lonewolf if (ch < 0)
719 1.1 lonewolf goto fail;
720 1.1 lonewolf }
721 1.1 lonewolf
722 1.1 lonewolf if (ch < dc->dc_fontdata->firstchar ||
723 1.1 lonewolf ch >= dc->dc_fontdata->firstchar + dc->dc_fontdata->numchars)
724 1.1 lonewolf goto fail;
725 1.1 lonewolf
726 1.1 lonewolf *cp = ch;
727 1.1 lonewolf return 5;
728 1.1 lonewolf
729 1.1 lonewolf fail:
730 1.1 lonewolf *cp = ' ';
731 1.1 lonewolf return 0;
732 1.1 lonewolf }
733 1.1 lonewolf
734 1.1 lonewolf static void
735 1.1 lonewolf newport_putchar(void *c, int row, int col, u_int ch, long attr)
736 1.1 lonewolf {
737 1.1 lonewolf struct newport_devconfig *dc = (void *)c;
738 1.1 lonewolf struct wsdisplay_font *font = dc->dc_fontdata;
739 1.1 lonewolf uint8_t *bitmap = (u_int8_t *)font->data + (ch - font->firstchar) *
740 1.1 lonewolf font->fontheight * font->stride;
741 1.1 lonewolf uint32_t pattern;
742 1.1 lonewolf int i;
743 1.1 lonewolf int x = col * font->fontwidth;
744 1.1 lonewolf int y = row * font->fontheight;
745 1.1 lonewolf
746 1.1 lonewolf rex3_wait_gfifo(dc);
747 1.1 lonewolf
748 1.1 lonewolf rex3_write(dc, REX3_REG_DRAWMODE0, REX3_DRAWMODE0_OPCODE_DRAW |
749 1.1 lonewolf REX3_DRAWMODE0_ADRMODE_BLOCK | REX3_DRAWMODE0_STOPONX |
750 1.1 lonewolf REX3_DRAWMODE0_ENZPATTERN | REX3_DRAWMODE0_ZPOPAQUE);
751 1.1 lonewolf
752 1.1 lonewolf rex3_write(dc, REX3_REG_XYSTARTI, (x << REX3_XYSTARTI_XSHIFT) | y);
753 1.1 lonewolf rex3_write(dc, REX3_REG_XYENDI,
754 1.1 lonewolf (x + font->fontwidth - 1) << REX3_XYENDI_XSHIFT);
755 1.1 lonewolf
756 1.1 lonewolf rex3_write(dc, REX3_REG_COLORI, NEWPORT_ATTR_FG(attr));
757 1.1 lonewolf rex3_write(dc, REX3_REG_COLORBACK, NEWPORT_ATTR_BG(attr));
758 1.1 lonewolf
759 1.3 sekiya rex3_write(dc, REX3_REG_WRMASK, 0xffffffff);
760 1.1 lonewolf
761 1.1 lonewolf for (i=0; i<font->fontheight; i++) {
762 1.1 lonewolf /* XXX Works only with font->fontwidth == 8 XXX */
763 1.1 lonewolf pattern = *bitmap << 24;
764 1.1 lonewolf
765 1.1 lonewolf rex3_write_go(dc, REX3_REG_ZPATTERN, pattern);
766 1.1 lonewolf
767 1.1 lonewolf bitmap += font->stride;
768 1.1 lonewolf }
769 1.1 lonewolf }
770 1.1 lonewolf
771 1.1 lonewolf static void
772 1.1 lonewolf newport_copycols(void *c, int row, int srccol, int dstcol, int ncols)
773 1.1 lonewolf {
774 1.1 lonewolf struct newport_devconfig *dc = (void *)c;
775 1.1 lonewolf struct wsdisplay_font *font = dc->dc_fontdata;
776 1.1 lonewolf
777 1.1 lonewolf newport_copy_rectangle(dc,
778 1.1 lonewolf srccol * font->fontwidth, /* x1 */
779 1.1 lonewolf row * font->fontheight, /* y1 */
780 1.1 lonewolf (srccol + ncols + 1) * font->fontwidth - 1, /* x2 */
781 1.1 lonewolf (row + 1) * font->fontheight - 1, /* y2 */
782 1.1 lonewolf dstcol * font->fontheight, /* dx */
783 1.1 lonewolf row * font->fontheight); /* dy */
784 1.1 lonewolf }
785 1.1 lonewolf
786 1.1 lonewolf static void
787 1.1 lonewolf newport_erasecols(void *c, int row, int startcol, int ncols,
788 1.1 lonewolf long attr)
789 1.1 lonewolf {
790 1.1 lonewolf struct newport_devconfig *dc = (void *)c;
791 1.1 lonewolf struct wsdisplay_font *font = dc->dc_fontdata;
792 1.1 lonewolf
793 1.1 lonewolf newport_fill_rectangle(dc,
794 1.1 lonewolf startcol * font->fontwidth, /* x1 */
795 1.1 lonewolf row * font->fontheight, /* y1 */
796 1.1 lonewolf (startcol + ncols + 1) * font->fontwidth - 1, /* x2 */
797 1.1 lonewolf (row + 1) * font->fontheight - 1, /* y2 */
798 1.1 lonewolf NEWPORT_ATTR_BG(attr));
799 1.1 lonewolf }
800 1.1 lonewolf
801 1.1 lonewolf static void
802 1.1 lonewolf newport_copyrows(void *c, int srcrow, int dstrow, int nrows)
803 1.1 lonewolf {
804 1.1 lonewolf struct newport_devconfig *dc = (void *)c;
805 1.1 lonewolf struct wsdisplay_font *font = dc->dc_fontdata;
806 1.1 lonewolf
807 1.1 lonewolf newport_copy_rectangle(dc,
808 1.1 lonewolf 0, /* x1 */
809 1.1 lonewolf srcrow * font->fontheight, /* y1 */
810 1.1 lonewolf dc->dc_xres, /* x2 */
811 1.1 lonewolf (srcrow + nrows + 1) * font->fontheight - 1, /* y2 */
812 1.1 lonewolf 0, /* dx */
813 1.1 lonewolf dstrow * font->fontheight); /* dy */
814 1.1 lonewolf }
815 1.1 lonewolf
816 1.1 lonewolf static void
817 1.1 lonewolf newport_eraserows(void *c, int startrow, int nrows, long attr)
818 1.1 lonewolf {
819 1.1 lonewolf struct newport_devconfig *dc = (void *)c;
820 1.1 lonewolf struct wsdisplay_font *font = dc->dc_fontdata;
821 1.1 lonewolf
822 1.1 lonewolf newport_fill_rectangle(dc,
823 1.1 lonewolf 0, /* x1 */
824 1.1 lonewolf startrow * font->fontheight, /* y1 */
825 1.1 lonewolf dc->dc_xres, /* x2 */
826 1.1 lonewolf (startrow + nrows + 1) * font->fontheight - 1, /* y2 */
827 1.1 lonewolf NEWPORT_ATTR_BG(attr));
828 1.1 lonewolf }
829 1.1 lonewolf
830 1.1 lonewolf static int
831 1.1 lonewolf newport_allocattr(void *c, int fg, int bg, int flags, long *attr)
832 1.1 lonewolf {
833 1.1 lonewolf if (flags & WSATTR_BLINK)
834 1.1 lonewolf return EINVAL;
835 1.1 lonewolf
836 1.1 lonewolf if ((flags & WSATTR_WSCOLORS) == 0) {
837 1.1 lonewolf fg = WSCOL_WHITE;
838 1.1 lonewolf bg = WSCOL_BLACK;
839 1.1 lonewolf }
840 1.1 lonewolf
841 1.1 lonewolf if (flags & WSATTR_HILIT)
842 1.1 lonewolf fg += 8;
843 1.1 lonewolf
844 1.1 lonewolf if (flags & WSATTR_REVERSE) {
845 1.1 lonewolf int tmp = fg;
846 1.1 lonewolf fg = bg;
847 1.1 lonewolf bg = tmp;
848 1.1 lonewolf }
849 1.1 lonewolf
850 1.1 lonewolf *attr = NEWPORT_ATTR_ENCODE(fg, bg);
851 1.1 lonewolf
852 1.1 lonewolf return 0;
853 1.1 lonewolf }
854 1.1 lonewolf
855 1.1 lonewolf /**** wsdisplay accessops ****/
856 1.1 lonewolf
857 1.1 lonewolf static int
858 1.7 jmmv newport_ioctl(void *c, void *vs, u_long cmd, caddr_t data, int flag,
859 1.7 jmmv struct lwp *l)
860 1.1 lonewolf {
861 1.3 sekiya struct newport_softc *sc = c;
862 1.3 sekiya
863 1.3 sekiya #define FBINFO (*(struct wsdisplay_fbinfo*)data)
864 1.3 sekiya
865 1.3 sekiya switch (cmd) {
866 1.3 sekiya case WSDISPLAYIO_GINFO:
867 1.3 sekiya FBINFO.width = sc->sc_dc->dc_xres;
868 1.3 sekiya FBINFO.height = sc->sc_dc->dc_yres;
869 1.3 sekiya FBINFO.depth = sc->sc_dc->dc_depth;
870 1.3 sekiya FBINFO.cmsize = 1 << FBINFO.depth;
871 1.3 sekiya return 0;
872 1.3 sekiya case WSDISPLAYIO_GTYPE:
873 1.3 sekiya *(u_int *)data = WSDISPLAY_TYPE_NEWPORT;
874 1.3 sekiya return 0;
875 1.3 sekiya }
876 1.1 lonewolf return EPASSTHROUGH;
877 1.1 lonewolf }
878 1.1 lonewolf
879 1.1 lonewolf static paddr_t
880 1.7 jmmv newport_mmap(void *c, void *vs, off_t offset, int prot)
881 1.1 lonewolf {
882 1.5 sekiya struct newport_devconfig *dc = c;
883 1.5 sekiya
884 1.5 sekiya if ( offset >= 0xfffff)
885 1.5 sekiya return -1;
886 1.5 sekiya
887 1.5 sekiya return mips_btop(dc->dc_addr + offset);
888 1.1 lonewolf }
889 1.1 lonewolf
890 1.1 lonewolf static int
891 1.1 lonewolf newport_alloc_screen(void *c, const struct wsscreen_descr *type, void **cookiep,
892 1.1 lonewolf int *cursxp, int *cursyp, long *attrp)
893 1.1 lonewolf {
894 1.1 lonewolf /* This won't get called for console screen and we don't support
895 1.1 lonewolf * virtual screens */
896 1.1 lonewolf
897 1.1 lonewolf return ENOMEM;
898 1.1 lonewolf }
899 1.1 lonewolf
900 1.1 lonewolf static void
901 1.1 lonewolf newport_free_screen(void *c, void *cookie)
902 1.1 lonewolf {
903 1.1 lonewolf panic("newport_free_screen");
904 1.1 lonewolf }
905 1.1 lonewolf static int
906 1.1 lonewolf newport_show_screen(void *c, void *cookie, int waitok,
907 1.1 lonewolf void (*cb)(void *, int, int), void *cbarg)
908 1.1 lonewolf {
909 1.1 lonewolf return 0;
910 1.1 lonewolf }
911