ite8181.c revision 1.7 1 1.7 uch /* $NetBSD: ite8181.c,v 1.7 2001/02/22 18:38:00 uch Exp $ */
2 1.1 sato
3 1.1 sato /*-
4 1.1 sato * Copyright (c) 2000 SATO Kazumi
5 1.1 sato * All rights reserved.
6 1.1 sato *
7 1.1 sato * Redistribution and use in source and binary forms, with or without
8 1.1 sato * modification, are permitted provided that the following conditions
9 1.1 sato * are met:
10 1.1 sato * 1. Redistributions of source code must retain the above copyright
11 1.1 sato * notice, this list of conditions and the following disclaimer.
12 1.1 sato * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 sato * notice, this list of conditions and the following disclaimer in the
14 1.1 sato * documentation and/or other materials provided with the distribution.
15 1.1 sato *
16 1.1 sato * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
17 1.1 sato * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
18 1.1 sato * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
19 1.1 sato * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
20 1.1 sato * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
21 1.1 sato * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
22 1.1 sato * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
23 1.1 sato * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
24 1.1 sato * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
25 1.1 sato * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
26 1.1 sato * SUCH DAMAGE.
27 1.1 sato *
28 1.1 sato */
29 1.1 sato
30 1.1 sato #include <sys/param.h>
31 1.1 sato #include <sys/kernel.h>
32 1.1 sato #include <sys/device.h>
33 1.1 sato #include <sys/systm.h>
34 1.1 sato #include <sys/boot_flag.h>
35 1.2 sato #include <sys/buf.h>
36 1.1 sato
37 1.1 sato #include <uvm/uvm_extern.h>
38 1.1 sato
39 1.1 sato #include <dev/wscons/wsconsio.h>
40 1.1 sato
41 1.1 sato #include <machine/bootinfo.h>
42 1.1 sato #include <machine/bus.h>
43 1.1 sato #include <machine/autoconf.h>
44 1.1 sato #include <machine/config_hook.h>
45 1.1 sato #include <machine/platid.h>
46 1.1 sato #include <machine/platid_mask.h>
47 1.1 sato
48 1.1 sato #include <hpcmips/dev/ite8181reg.h>
49 1.1 sato #include <hpcmips/dev/ite8181var.h>
50 1.1 sato #include "bivideo.h"
51 1.1 sato #if NBIVIDEO > 0
52 1.7 uch #include <dev/hpc/bivideovar.h>
53 1.1 sato #endif
54 1.7 uch #include <dev/hpc/hpccmapvar.h>
55 1.1 sato
56 1.1 sato #define ITE8181DEBUG
57 1.1 sato #ifdef ITE8181DEBUG
58 1.1 sato #ifndef ITE8181DEBUG_CONF
59 1.1 sato #define ITE8181DEBUG_CONF 0
60 1.1 sato #endif
61 1.1 sato int ite8181_debug = ITE8181DEBUG_CONF;
62 1.1 sato #define DPRINTF(arg) if (ite8181_debug) printf arg
63 1.1 sato #define DPRINTFN(n, arg) if (ite8181_debug > (n)) printf arg
64 1.1 sato #define VPRINTF(arg) if (bootverbose || ite8181_debug) printf arg
65 1.1 sato #define VPRINTFN(n, arg) if (bootverbose || ite8181_debug > (n)) printf arg
66 1.1 sato #else
67 1.1 sato #define DPRINTF(arg)
68 1.1 sato #define DPRINTFN(n, arg)
69 1.1 sato #define VPRINTF(arg) if (bootverbose) printf arg
70 1.1 sato #define VPRINTFN(n, arg) if (bootverbose) printf arg
71 1.1 sato #endif
72 1.1 sato
73 1.1 sato #ifndef ITE8181_LCD_CONTROL_ENABLE
74 1.1 sato int ite8181_lcd_control_disable = 1;
75 1.1 sato #else /* ITE8181_LCD_CONTROL_ENABLE */
76 1.1 sato int ite8181_lcd_control_disable = 0;
77 1.1 sato #endif /* ITE8181_LCD_CONTROL_ENABLE */
78 1.1 sato
79 1.2 sato #define ITE8181_WINCE_CMAP
80 1.2 sato
81 1.2 sato /*
82 1.2 sato * XXX:
83 1.2 sato * IBM WorkPad z50 power unit has too weak power.
84 1.2 sato * So we must wait too many times to access some device
85 1.2 sato * after LCD panel and BackLight on.
86 1.2 sato * Currently delay is not enough ??? FIXME
87 1.2 sato */
88 1.2 sato #ifndef ITE8181_LCD_ON_SELF_DELAY
89 1.3 sato #define ITE8181_LCD_ON_SELF_DELAY 1000
90 1.2 sato #endif /* ITE8181_LCD_ON__SELF_DELAY */
91 1.2 sato #ifndef ITE8181_LCD_ON_DELAY
92 1.2 sato #define ITE8181_LCD_ON_DELAY 2000
93 1.2 sato #endif /* ITE8181_LCD_ON_DELAY */
94 1.2 sato int ite8181_lcd_on_self_delay = ITE8181_LCD_ON_SELF_DELAY; /* msec */
95 1.2 sato int ite8181_lcd_on_delay = ITE8181_LCD_ON_DELAY; /* msec */
96 1.2 sato
97 1.1 sato #define MSEC 1000
98 1.1 sato /*
99 1.1 sato * function prototypes
100 1.1 sato */
101 1.1 sato static void ite8181_config_write_4 __P((bus_space_tag_t, bus_space_handle_t, int, int));
102 1.1 sato static int ite8181_config_read_4 __P((bus_space_tag_t, bus_space_handle_t, int));
103 1.1 sato
104 1.1 sato static void ite8181_gui_write_4 __P((struct ite8181_softc *, int, int));
105 1.1 sato static int ite8181_gui_read_4 __P((struct ite8181_softc *, int));
106 1.1 sato
107 1.1 sato static void ite8181_gui_write_1 __P((struct ite8181_softc *, int, int));
108 1.1 sato static int ite8181_gui_read_1 __P((struct ite8181_softc *, int));
109 1.1 sato
110 1.1 sato static void ite8181_graphics_write_1 __P((struct ite8181_softc *, int, int));
111 1.1 sato static int ite8181_graphics_read_1 __P((struct ite8181_softc *, int));
112 1.1 sato
113 1.1 sato static void ite8181_ema_write_1 __P((struct ite8181_softc *, int, int));
114 1.1 sato static int ite8181_ema_read_1 __P((struct ite8181_softc *, int));
115 1.1 sato
116 1.1 sato static void ite8181_power __P((int, void *));
117 1.1 sato static int ite8181_hardpower __P((void *, int, long, void *));
118 1.1 sato static int ite8181_fbinit __P((struct hpcfb_fbconf *));
119 1.1 sato static int ite8181_ioctl __P((void *, u_long, caddr_t, int, struct proc *));
120 1.1 sato static paddr_t ite8181_mmap __P((void *, off_t offset, int));
121 1.1 sato static void ite8181_erase_cursor __P((struct ite8181_softc *));
122 1.1 sato static int ite8181_lcd_power __P((struct ite8181_softc *, int));
123 1.1 sato /*
124 1.1 sato * static variables
125 1.1 sato */
126 1.1 sato struct hpcfb_accessops ite8181_ha = {
127 1.1 sato ite8181_ioctl, ite8181_mmap
128 1.1 sato };
129 1.1 sato
130 1.1 sato inline int
131 1.1 sato ite8181_config_read_4(iot, ioh, byteoffset)
132 1.1 sato bus_space_tag_t iot;
133 1.1 sato bus_space_handle_t ioh;
134 1.1 sato int byteoffset;
135 1.1 sato {
136 1.1 sato return bus_space_read_4(iot, ioh, ITE8181_CONF_OFFSET + byteoffset);
137 1.1 sato }
138 1.1 sato
139 1.1 sato inline void
140 1.1 sato ite8181_config_write_4(iot, ioh, byteoffset, data)
141 1.1 sato bus_space_tag_t iot;
142 1.1 sato bus_space_handle_t ioh;
143 1.1 sato int byteoffset;
144 1.1 sato int data;
145 1.1 sato {
146 1.1 sato bus_space_write_4(iot, ioh, ITE8181_CONF_OFFSET + byteoffset, data);
147 1.1 sato }
148 1.1 sato
149 1.1 sato inline int
150 1.1 sato ite8181_gui_read_4(sc, byteoffset)
151 1.1 sato struct ite8181_softc *sc;
152 1.1 sato int byteoffset;
153 1.1 sato {
154 1.1 sato return bus_space_read_4(sc->sc_iot, sc->sc_ioh,
155 1.1 sato sc->sc_gba + byteoffset);
156 1.1 sato }
157 1.1 sato
158 1.1 sato inline void
159 1.1 sato ite8181_gui_write_4(sc, byteoffset, data)
160 1.1 sato struct ite8181_softc *sc;
161 1.1 sato int byteoffset;
162 1.1 sato int data;
163 1.1 sato {
164 1.1 sato bus_space_write_4(sc->sc_iot, sc->sc_ioh, sc->sc_gba + byteoffset, data);
165 1.1 sato }
166 1.1 sato
167 1.1 sato inline int
168 1.1 sato ite8181_gui_read_1(sc, byteoffset)
169 1.1 sato struct ite8181_softc *sc;
170 1.1 sato int byteoffset;
171 1.1 sato {
172 1.1 sato return bus_space_read_1(sc->sc_iot, sc->sc_ioh,
173 1.1 sato sc->sc_gba + byteoffset);
174 1.1 sato }
175 1.1 sato
176 1.1 sato inline void
177 1.1 sato ite8181_gui_write_1(sc, byteoffset, data)
178 1.1 sato struct ite8181_softc *sc;
179 1.1 sato int byteoffset;
180 1.1 sato int data;
181 1.1 sato {
182 1.1 sato bus_space_write_1(sc->sc_iot, sc->sc_ioh, sc->sc_gba + byteoffset, data);
183 1.1 sato }
184 1.1 sato
185 1.1 sato inline int
186 1.1 sato ite8181_graphics_read_1(sc, byteoffset)
187 1.1 sato struct ite8181_softc *sc;
188 1.1 sato int byteoffset;
189 1.1 sato {
190 1.1 sato return bus_space_read_1(sc->sc_iot, sc->sc_ioh,
191 1.1 sato sc->sc_sba + byteoffset);
192 1.1 sato }
193 1.1 sato
194 1.1 sato inline void
195 1.1 sato ite8181_graphics_write_1(sc, byteoffset, data)
196 1.1 sato struct ite8181_softc *sc;
197 1.1 sato int byteoffset;
198 1.1 sato int data;
199 1.1 sato {
200 1.1 sato bus_space_write_1(sc->sc_iot, sc->sc_ioh, sc->sc_sba + byteoffset, data);
201 1.1 sato }
202 1.1 sato
203 1.1 sato inline int
204 1.1 sato ite8181_ema_read_1(sc, byteoffset)
205 1.1 sato struct ite8181_softc *sc;
206 1.1 sato int byteoffset;
207 1.1 sato {
208 1.1 sato ite8181_graphics_write_1(sc, ITE8181_EMA_EXAX, byteoffset);
209 1.1 sato return ite8181_graphics_read_1(sc, ITE8181_EMA_EXADATA);
210 1.1 sato }
211 1.1 sato
212 1.1 sato inline void
213 1.1 sato ite8181_ema_write_1(sc, byteoffset, data)
214 1.1 sato struct ite8181_softc *sc;
215 1.1 sato int byteoffset;
216 1.1 sato int data;
217 1.1 sato {
218 1.1 sato ite8181_graphics_write_1(sc, ITE8181_EMA_EXAX, byteoffset);
219 1.1 sato ite8181_graphics_write_1(sc, ITE8181_EMA_EXADATA, data);
220 1.1 sato }
221 1.1 sato
222 1.1 sato int
223 1.1 sato ite8181_probe(iot, ioh)
224 1.1 sato bus_space_tag_t iot;
225 1.1 sato bus_space_handle_t ioh;
226 1.1 sato {
227 1.1 sato unsigned long regval;
228 1.1 sato
229 1.1 sato #if NBIVIDEO > 0
230 1.1 sato if (bivideo_dont_attach) /* some video driver already attached */
231 1.1 sato return (0);
232 1.1 sato #endif /* NBIVIDEO > 0 */
233 1.1 sato
234 1.1 sato regval = ite8181_config_read_4(iot, ioh, ITE8181_ID);
235 1.1 sato VPRINTF(("ite8181_probe: vendor id=%04lx product id=%04lx\n",
236 1.1 sato regval & 0xffff, (regval >> 16) & 0xffff));
237 1.1 sato if (regval != ((ITE8181_PRODUCT_ID << 16) | ITE8181_VENDER_ID))
238 1.1 sato return (0);
239 1.1 sato
240 1.1 sato return (1);
241 1.1 sato }
242 1.1 sato
243 1.1 sato void
244 1.1 sato ite8181_attach(sc)
245 1.1 sato struct ite8181_softc *sc;
246 1.1 sato {
247 1.1 sato unsigned long regval;
248 1.1 sato struct hpcfb_attach_args ha;
249 1.1 sato int console = (bootinfo->bi_cnuse & BI_CNUSE_SERIAL) ? 0 : 1;
250 1.1 sato
251 1.6 sato printf(": ");
252 1.6 sato if (ite8181_fbinit(&sc->sc_fbconf) != 0) {
253 1.6 sato /* just return so that hpcfb will not be attached */
254 1.6 sato return;
255 1.6 sato }
256 1.6 sato
257 1.1 sato regval = ite8181_config_read_4(sc->sc_iot, sc->sc_ioh, ITE8181_CLASS);
258 1.6 sato printf("ITE8181 Rev.%02lx", regval & ITE8181_REV_MASK);
259 1.6 sato if (console) {
260 1.6 sato printf(", console");
261 1.6 sato }
262 1.6 sato printf("\n");
263 1.6 sato printf("%s: framebuffer address: 0x%08lx\n",
264 1.6 sato sc->sc_dev.dv_xname, (u_long)bootinfo->fb_addr);
265 1.1 sato
266 1.1 sato /* set base offsets */
267 1.1 sato sc->sc_mba = ite8181_config_read_4(sc->sc_iot, sc->sc_ioh, ITE8181_MBA);
268 1.1 sato DPRINTFN(1, ("ite8181: Memory base offset %08x\n", sc->sc_mba));
269 1.1 sato sc->sc_gba = ite8181_config_read_4(sc->sc_iot, sc->sc_ioh, ITE8181_GBA);
270 1.1 sato DPRINTFN(1, ("ite8181: GUI base offset %08x\n", sc->sc_gba));
271 1.1 sato sc->sc_sba = ite8181_config_read_4(sc->sc_iot, sc->sc_ioh, ITE8181_SBA);
272 1.1 sato DPRINTFN(1, ("ite8181: Graphics base offset %08x\n", sc->sc_sba));
273 1.1 sato
274 1.1 sato /* assume lcd is on */
275 1.1 sato sc->sc_lcd = 1;
276 1.1 sato
277 1.1 sato /* Add a power hook to power saving */
278 1.1 sato sc->sc_powerstate = ITE8181_POWERSTATE_D0;
279 1.1 sato sc->sc_powerhook = powerhook_establish(ite8181_power, sc);
280 1.1 sato if (sc->sc_powerhook == NULL)
281 1.1 sato printf("%s: WARNING: unable to establish power hook\n",
282 1.1 sato sc->sc_dev.dv_xname);
283 1.1 sato
284 1.1 sato /* Add a hard power hook to power saving */
285 1.1 sato sc->sc_hardpowerhook = config_hook(CONFIG_HOOK_PMEVENT,
286 1.1 sato CONFIG_HOOK_PMEVENT_HARDPOWER,
287 1.1 sato CONFIG_HOOK_SHARE,
288 1.1 sato ite8181_hardpower, sc);
289 1.1 sato if (sc->sc_hardpowerhook == NULL)
290 1.1 sato printf("%s: WARNING: unable to establish hard power hook\n",
291 1.1 sato sc->sc_dev.dv_xname);
292 1.1 sato
293 1.1 sato ite8181_erase_cursor(sc);
294 1.1 sato
295 1.1 sato if (console && hpcfb_cnattach(&sc->sc_fbconf) != 0) {
296 1.1 sato panic("ite8181_attach: can't init fb console");
297 1.1 sato }
298 1.1 sato
299 1.1 sato ha.ha_console = console;
300 1.1 sato ha.ha_accessops = &ite8181_ha;
301 1.1 sato ha.ha_accessctx = sc;
302 1.1 sato ha.ha_curfbconf = 0;
303 1.1 sato ha.ha_nfbconf = 1;
304 1.1 sato ha.ha_fbconflist = &sc->sc_fbconf;
305 1.1 sato ha.ha_curdspconf = 0;
306 1.1 sato ha.ha_ndspconf = 1;
307 1.1 sato ha.ha_dspconflist = &sc->sc_dspconf;
308 1.1 sato
309 1.1 sato config_found(&sc->sc_dev, &ha, hpcfbprint);
310 1.1 sato
311 1.1 sato #if NBIVIDEO > 0
312 1.1 sato /*
313 1.1 sato * bivideo is no longer need
314 1.1 sato */
315 1.1 sato bivideo_dont_attach = 1;
316 1.1 sato #endif /* NBIVIDEO > 0 */
317 1.1 sato }
318 1.1 sato
319 1.1 sato int ite8181_lcd_power(sc, on)
320 1.1 sato struct ite8181_softc *sc;
321 1.1 sato int on;
322 1.1 sato {
323 1.1 sato int lcd_p;
324 1.1 sato int lcd_s;
325 1.1 sato int lcd_seq;
326 1.1 sato int loop = 10;
327 1.1 sato
328 1.1 sato if (ite8181_lcd_control_disable) {
329 1.1 sato VPRINTF(("ite8171_lcd_control_disable!: %s\n", on?"on":"off"));
330 1.1 sato return 0;
331 1.1 sato }
332 1.1 sato
333 1.1 sato if (sc->sc_lcd != on) {
334 1.1 sato ite8181_ema_write_1(sc, ITE8181_EMA_ENABLEEMA,
335 1.1 sato ITE8181_EMA_ENABLEPASS);
336 1.1 sato lcd_p = ite8181_ema_read_1(sc, ITE8181_EMA_LCDPOWER);
337 1.1 sato lcd_s = ite8181_ema_read_1(sc, ITE8181_EMA_LCDPOWERSTAT);
338 1.1 sato lcd_seq = ite8181_ema_read_1(sc, ITE8181_EMA_LCDPOWERSEQ);
339 1.1 sato DPRINTFN(1,("ite8181_lcd_power(%d)< p=%x, s=%x, seq=%x\n",
340 1.1 sato on,
341 1.1 sato lcd_p, lcd_s, lcd_seq));
342 1.1 sato if (on) {
343 1.1 sato sc->sc_lcd = 1;
344 1.1 sato lcd_seq |= (ITE8181_PUP0|ITE8181_PUP1|ITE8181_PUP2);
345 1.1 sato ite8181_ema_write_1(sc, ITE8181_EMA_LCDPOWERSEQ, lcd_seq);
346 1.1 sato lcd_p &= ~ITE8181_LCDSTANDBY;
347 1.1 sato ite8181_ema_write_1(sc, ITE8181_EMA_LCDPOWER, lcd_p);
348 1.1 sato /*
349 1.1 sato * XXX:
350 1.1 sato * IBM WorkPad z50 power unit has too weak power.
351 1.1 sato * So we must wait too many times to access self device
352 1.1 sato * after LCD panel and BackLight on.
353 1.1 sato * Currently delay is not enough ??? FIXME
354 1.1 sato */
355 1.2 sato delay(ite8181_lcd_on_self_delay*MSEC);
356 1.1 sato while (loop--) {
357 1.1 sato lcd_p = ite8181_ema_read_1(sc, ITE8181_EMA_LCDPOWER);
358 1.1 sato lcd_s = ite8181_ema_read_1(sc, ITE8181_EMA_LCDPOWERSTAT);
359 1.1 sato lcd_seq = ite8181_ema_read_1(sc, ITE8181_EMA_LCDPOWERSEQ);
360 1.1 sato DPRINTFN(1,("ite8181_lcd_power(%d)%d| p=%x, s=%x, seq=%x\n",
361 1.1 sato on, loop,
362 1.1 sato lcd_p, lcd_s, lcd_seq));
363 1.1 sato /* XXX the states which are not described in manual.*/
364 1.1 sato if (!(lcd_s&ITE8181_LCDPSTANDBY) &&
365 1.1 sato !(lcd_s&ITE8181_LCDPUP) &&
366 1.1 sato (lcd_s&ITE8181_LCDPON))
367 1.1 sato break;
368 1.1 sato delay(100);
369 1.1 sato }
370 1.1 sato lcd_s |= ITE8181_PPTOBEON;
371 1.1 sato ite8181_ema_write_1(sc, ITE8181_EMA_LCDPOWERSTAT, lcd_s);
372 1.1 sato } else {
373 1.1 sato sc->sc_lcd = 0;
374 1.1 sato lcd_p |= ITE8181_LCDSTANDBY;
375 1.1 sato ite8181_ema_write_1(sc, ITE8181_EMA_LCDPOWER, lcd_p);
376 1.1 sato while (loop--) {
377 1.1 sato lcd_p = ite8181_ema_read_1(sc, ITE8181_EMA_LCDPOWER);
378 1.1 sato lcd_s = ite8181_ema_read_1(sc, ITE8181_EMA_LCDPOWERSTAT);
379 1.1 sato lcd_seq = ite8181_ema_read_1(sc, ITE8181_EMA_LCDPOWERSEQ);
380 1.1 sato DPRINTFN(1,("ite8181_lcd_power(%d)%d| p=%x, s=%x, seq=%x\n",
381 1.1 sato on, loop,
382 1.1 sato lcd_p, lcd_s, lcd_seq));
383 1.1 sato /* XXX the states which are not described in manual.*/
384 1.1 sato if ((lcd_s&ITE8181_LCDPSTANDBY) &&
385 1.1 sato !(lcd_s&ITE8181_LCDPDOWN) &&
386 1.1 sato !(lcd_s&ITE8181_LCDPON))
387 1.1 sato break;
388 1.1 sato delay(100);
389 1.1 sato }
390 1.1 sato lcd_s &= ~ITE8181_PPTOBEON;
391 1.1 sato ite8181_ema_write_1(sc, ITE8181_EMA_LCDPOWERSTAT, lcd_s);
392 1.1 sato }
393 1.1 sato DPRINTFN(1,("ite8181_lcd_power(%d)> p=%x, s=%x, seq=%x\n",
394 1.1 sato on,
395 1.1 sato ite8181_ema_read_1(sc, ITE8181_EMA_LCDPOWER),
396 1.1 sato ite8181_ema_read_1(sc, ITE8181_EMA_LCDPOWERSTAT),
397 1.1 sato ite8181_ema_read_1(sc, ITE8181_EMA_LCDPOWERSEQ)));
398 1.1 sato ite8181_ema_write_1(sc, ITE8181_EMA_ENABLEEMA,
399 1.1 sato ITE8181_EMA_DISABLEPASS);
400 1.1 sato }
401 1.1 sato return 0;
402 1.1 sato }
403 1.1 sato
404 1.1 sato static void
405 1.1 sato ite8181_erase_cursor(sc)
406 1.1 sato struct ite8181_softc *sc;
407 1.1 sato {
408 1.1 sato ite8181_gui_write_1(sc, ITE8181_GUI_C1C, 0); /* Cursor 1 Control Reg. */
409 1.1 sato /* other ? */
410 1.1 sato }
411 1.1 sato
412 1.1 sato static void
413 1.1 sato ite8181_power(why, arg)
414 1.1 sato int why;
415 1.1 sato void *arg;
416 1.1 sato {
417 1.1 sato }
418 1.1 sato
419 1.1 sato static int
420 1.1 sato ite8181_hardpower(ctx, type, id, msg)
421 1.1 sato void *ctx;
422 1.1 sato int type;
423 1.1 sato long id;
424 1.1 sato void *msg;
425 1.1 sato {
426 1.1 sato struct ite8181_softc *sc = ctx;
427 1.1 sato int why = (int)msg;
428 1.1 sato
429 1.1 sato switch (why) {
430 1.1 sato case PWR_STANDBY:
431 1.1 sato sc->sc_powerstate = ITE8181_POWERSTATE_D3;
432 1.1 sato /* ite8181_lcd_power(sc, 0); */
433 1.1 sato delay(MSEC);
434 1.1 sato break;
435 1.1 sato case PWR_SUSPEND:
436 1.1 sato sc->sc_powerstate = ITE8181_POWERSTATE_D2;
437 1.1 sato ite8181_lcd_power(sc, 0);
438 1.1 sato delay(MSEC);
439 1.1 sato break;
440 1.1 sato case PWR_RESUME:
441 1.1 sato delay(MSEC);
442 1.1 sato sc->sc_powerstate = ITE8181_POWERSTATE_D0;
443 1.1 sato ite8181_lcd_power(sc, 1);
444 1.1 sato /*
445 1.1 sato * XXX:
446 1.1 sato * IBM WorkPad z50 power unit has too weak power.
447 1.1 sato * So we must wait too many times to access other devices
448 1.1 sato * after LCD panel and BackLight on.
449 1.1 sato */
450 1.2 sato delay(ite8181_lcd_on_delay*MSEC);
451 1.1 sato break;
452 1.1 sato }
453 1.1 sato
454 1.1 sato /*
455 1.1 sato * you should wait until the
456 1.1 sato * power state transit sequence will end.
457 1.1 sato */
458 1.1 sato
459 1.1 sato return (0);
460 1.1 sato }
461 1.1 sato
462 1.1 sato
463 1.1 sato static int
464 1.1 sato ite8181_fbinit(fb)
465 1.1 sato struct hpcfb_fbconf *fb;
466 1.1 sato {
467 1.1 sato
468 1.1 sato /*
469 1.1 sato * get fb settings from bootinfo
470 1.1 sato */
471 1.1 sato if (bootinfo == NULL ||
472 1.1 sato bootinfo->fb_addr == 0 ||
473 1.1 sato bootinfo->fb_line_bytes == 0 ||
474 1.1 sato bootinfo->fb_width == 0 ||
475 1.1 sato bootinfo->fb_height == 0) {
476 1.1 sato printf("no frame buffer infomation.\n");
477 1.1 sato return (-1);
478 1.1 sato }
479 1.1 sato
480 1.1 sato /* zero fill */
481 1.1 sato bzero(fb, sizeof(*fb));
482 1.1 sato
483 1.1 sato fb->hf_conf_index = 0; /* configuration index */
484 1.1 sato fb->hf_nconfs = 1; /* how many configurations */
485 1.1 sato strcpy(fb->hf_name, "built-in video");
486 1.1 sato /* frame buffer name */
487 1.1 sato strcpy(fb->hf_conf_name, "default");
488 1.1 sato /* configuration name */
489 1.1 sato fb->hf_height = bootinfo->fb_height;
490 1.1 sato fb->hf_width = bootinfo->fb_width;
491 1.4 takemura fb->hf_baseaddr = (u_long)bootinfo->fb_addr;
492 1.4 takemura fb->hf_offset = (u_long)bootinfo->fb_addr -
493 1.4 takemura mips_ptob(mips_btop(bootinfo->fb_addr));
494 1.1 sato /* frame buffer start offset */
495 1.1 sato fb->hf_bytes_per_line = bootinfo->fb_line_bytes;
496 1.1 sato fb->hf_nplanes = 1;
497 1.1 sato fb->hf_bytes_per_plane = bootinfo->fb_height *
498 1.1 sato bootinfo->fb_line_bytes;
499 1.1 sato
500 1.1 sato fb->hf_access_flags |= HPCFB_ACCESS_BYTE;
501 1.1 sato fb->hf_access_flags |= HPCFB_ACCESS_WORD;
502 1.1 sato fb->hf_access_flags |= HPCFB_ACCESS_DWORD;
503 1.1 sato
504 1.1 sato switch (bootinfo->fb_type) {
505 1.1 sato /*
506 1.1 sato * gray scale
507 1.1 sato */
508 1.1 sato case BIFB_D2_M2L_3:
509 1.1 sato case BIFB_D2_M2L_3x2:
510 1.1 sato fb->hf_access_flags |= HPCFB_ACCESS_REVERSE;
511 1.1 sato /* fall through */
512 1.1 sato case BIFB_D2_M2L_0:
513 1.1 sato case BIFB_D2_M2L_0x2:
514 1.1 sato fb->hf_class = HPCFB_CLASS_GRAYSCALE;
515 1.1 sato fb->hf_access_flags |= HPCFB_ACCESS_STATIC;
516 1.1 sato fb->hf_pack_width = 8;
517 1.1 sato fb->hf_pixels_per_pack = 4;
518 1.1 sato fb->hf_pixel_width = 2;
519 1.5 sato fb->hf_class_data_length = sizeof(struct hf_gray_tag);
520 1.5 sato fb->hf_u.hf_gray.hf_flags = 0; /* reserved for future use */
521 1.5 sato break;
522 1.5 sato
523 1.5 sato case BIFB_D4_M2L_F:
524 1.5 sato case BIFB_D4_M2L_Fx2:
525 1.5 sato fb->hf_access_flags |= HPCFB_ACCESS_REVERSE;
526 1.5 sato /* fall through */
527 1.5 sato case BIFB_D4_M2L_0:
528 1.5 sato case BIFB_D4_M2L_0x2:
529 1.5 sato fb->hf_class = HPCFB_CLASS_GRAYSCALE;
530 1.5 sato fb->hf_access_flags |= HPCFB_ACCESS_STATIC;
531 1.5 sato fb->hf_pack_width = 8;
532 1.5 sato fb->hf_pixels_per_pack = 2;
533 1.5 sato fb->hf_pixel_width = 4;
534 1.1 sato fb->hf_class_data_length = sizeof(struct hf_gray_tag);
535 1.1 sato fb->hf_u.hf_gray.hf_flags = 0; /* reserved for future use */
536 1.1 sato break;
537 1.1 sato
538 1.1 sato /*
539 1.1 sato * indexed color
540 1.1 sato */
541 1.1 sato case BIFB_D8_FF:
542 1.1 sato fb->hf_access_flags |= HPCFB_ACCESS_REVERSE;
543 1.1 sato /* fall through */
544 1.1 sato case BIFB_D8_00:
545 1.1 sato fb->hf_class = HPCFB_CLASS_INDEXCOLOR;
546 1.1 sato fb->hf_access_flags |= HPCFB_ACCESS_STATIC;
547 1.1 sato fb->hf_pack_width = 8;
548 1.1 sato fb->hf_pixels_per_pack = 1;
549 1.1 sato fb->hf_pixel_width = 8;
550 1.1 sato fb->hf_class_data_length = sizeof(struct hf_indexed_tag);
551 1.1 sato fb->hf_u.hf_indexed.hf_flags = 0; /* reserved for future use */
552 1.1 sato break;
553 1.1 sato
554 1.1 sato /*
555 1.1 sato * RGB color
556 1.1 sato */
557 1.1 sato case BIFB_D16_FFFF:
558 1.1 sato fb->hf_access_flags |= HPCFB_ACCESS_REVERSE;
559 1.1 sato /* fall through */
560 1.1 sato case BIFB_D16_0000:
561 1.1 sato fb->hf_class = HPCFB_CLASS_RGBCOLOR;
562 1.1 sato fb->hf_access_flags |= HPCFB_ACCESS_STATIC;
563 1.1 sato #if BYTE_ORDER == LITTLE_ENDIAN
564 1.1 sato fb->hf_swap_flags = HPCFB_SWAP_BYTE;
565 1.1 sato #endif
566 1.1 sato fb->hf_pack_width = 16;
567 1.1 sato fb->hf_pixels_per_pack = 1;
568 1.1 sato fb->hf_pixel_width = 16;
569 1.1 sato
570 1.1 sato fb->hf_class_data_length = sizeof(struct hf_rgb_tag);
571 1.1 sato fb->hf_u.hf_rgb.hf_flags = 0; /* reserved for future use */
572 1.1 sato
573 1.1 sato fb->hf_u.hf_rgb.hf_red_width = 5;
574 1.1 sato fb->hf_u.hf_rgb.hf_red_shift = 11;
575 1.1 sato fb->hf_u.hf_rgb.hf_green_width = 6;
576 1.1 sato fb->hf_u.hf_rgb.hf_green_shift = 5;
577 1.1 sato fb->hf_u.hf_rgb.hf_blue_width = 5;
578 1.1 sato fb->hf_u.hf_rgb.hf_blue_shift = 0;
579 1.1 sato fb->hf_u.hf_rgb.hf_alpha_width = 0;
580 1.1 sato fb->hf_u.hf_rgb.hf_alpha_shift = 0;
581 1.1 sato break;
582 1.1 sato
583 1.1 sato default:
584 1.1 sato printf("unknown type (=%d).\n", bootinfo->fb_type);
585 1.1 sato return (-1);
586 1.1 sato break;
587 1.1 sato }
588 1.1 sato
589 1.1 sato return (0); /* no error */
590 1.1 sato }
591 1.1 sato
592 1.1 sato int
593 1.1 sato ite8181_ioctl(v, cmd, data, flag, p)
594 1.1 sato void *v;
595 1.1 sato u_long cmd;
596 1.1 sato caddr_t data;
597 1.1 sato int flag;
598 1.1 sato struct proc *p;
599 1.1 sato {
600 1.1 sato struct ite8181_softc *sc = (struct ite8181_softc *)v;
601 1.1 sato struct hpcfb_fbconf *fbconf;
602 1.1 sato struct hpcfb_dspconf *dspconf;
603 1.1 sato struct wsdisplay_cmap *cmap;
604 1.1 sato
605 1.1 sato switch (cmd) {
606 1.1 sato case WSDISPLAYIO_GETCMAP:
607 1.1 sato cmap = (struct wsdisplay_cmap*)data;
608 1.1 sato
609 1.1 sato if (sc->sc_fbconf.hf_class != HPCFB_CLASS_INDEXCOLOR ||
610 1.1 sato sc->sc_fbconf.hf_pack_width != 8 ||
611 1.1 sato 256 <= cmap->index ||
612 1.1 sato 256 < (cmap->index + cmap->count))
613 1.1 sato return (EINVAL);
614 1.1 sato
615 1.1 sato if (!uvm_useracc(cmap->red, cmap->count, B_WRITE) ||
616 1.1 sato !uvm_useracc(cmap->green, cmap->count, B_WRITE) ||
617 1.1 sato !uvm_useracc(cmap->blue, cmap->count, B_WRITE))
618 1.1 sato return (EFAULT);
619 1.1 sato
620 1.2 sato #ifdef ITE8181_WINCE_CMAP
621 1.1 sato copyout(&bivideo_cmap_r[cmap->index], cmap->red, cmap->count);
622 1.1 sato copyout(&bivideo_cmap_g[cmap->index], cmap->green,cmap->count);
623 1.1 sato copyout(&bivideo_cmap_b[cmap->index], cmap->blue, cmap->count);
624 1.1 sato return (0);
625 1.2 sato #else /* ITE8181_WINCE_CMAP */
626 1.2 sato return EINVAL;
627 1.2 sato #endif /* ITE8181_WINCE_CMAP */
628 1.1 sato
629 1.1 sato case WSDISPLAYIO_PUTCMAP:
630 1.1 sato /*
631 1.1 sato * This driver can't set color map.
632 1.1 sato */
633 1.1 sato return (EINVAL);
634 1.1 sato
635 1.1 sato case HPCFBIO_GCONF:
636 1.1 sato fbconf = (struct hpcfb_fbconf *)data;
637 1.1 sato if (fbconf->hf_conf_index != 0 &&
638 1.1 sato fbconf->hf_conf_index != HPCFB_CURRENT_CONFIG) {
639 1.1 sato return (EINVAL);
640 1.1 sato }
641 1.1 sato *fbconf = sc->sc_fbconf; /* structure assignment */
642 1.1 sato return (0);
643 1.1 sato case HPCFBIO_SCONF:
644 1.1 sato fbconf = (struct hpcfb_fbconf *)data;
645 1.1 sato if (fbconf->hf_conf_index != 0 &&
646 1.1 sato fbconf->hf_conf_index != HPCFB_CURRENT_CONFIG) {
647 1.1 sato return (EINVAL);
648 1.1 sato }
649 1.1 sato /*
650 1.1 sato * nothing to do because we have only one configration
651 1.1 sato */
652 1.1 sato return (0);
653 1.1 sato case HPCFBIO_GDSPCONF:
654 1.1 sato dspconf = (struct hpcfb_dspconf *)data;
655 1.1 sato if ((dspconf->hd_unit_index != 0 &&
656 1.1 sato dspconf->hd_unit_index != HPCFB_CURRENT_UNIT) ||
657 1.1 sato (dspconf->hd_conf_index != 0 &&
658 1.1 sato dspconf->hd_conf_index != HPCFB_CURRENT_CONFIG)) {
659 1.1 sato return (EINVAL);
660 1.1 sato }
661 1.1 sato *dspconf = sc->sc_dspconf; /* structure assignment */
662 1.1 sato return (0);
663 1.1 sato case HPCFBIO_SDSPCONF:
664 1.1 sato dspconf = (struct hpcfb_dspconf *)data;
665 1.1 sato if ((dspconf->hd_unit_index != 0 &&
666 1.1 sato dspconf->hd_unit_index != HPCFB_CURRENT_UNIT) ||
667 1.1 sato (dspconf->hd_conf_index != 0 &&
668 1.1 sato dspconf->hd_conf_index != HPCFB_CURRENT_CONFIG)) {
669 1.1 sato return (EINVAL);
670 1.1 sato }
671 1.1 sato /*
672 1.1 sato * nothing to do
673 1.1 sato * because we have only one unit and one configration
674 1.1 sato */
675 1.1 sato return (0);
676 1.1 sato case HPCFBIO_GOP:
677 1.1 sato case HPCFBIO_SOP:
678 1.1 sato /*
679 1.1 sato * curently not implemented...
680 1.1 sato */
681 1.1 sato return (EINVAL);
682 1.1 sato }
683 1.1 sato
684 1.1 sato return (ENOTTY);
685 1.1 sato }
686 1.1 sato
687 1.1 sato paddr_t
688 1.1 sato ite8181_mmap(ctx, offset, prot)
689 1.1 sato void *ctx;
690 1.1 sato off_t offset;
691 1.1 sato int prot;
692 1.1 sato {
693 1.1 sato struct ite8181_softc *sc = (struct ite8181_softc *)ctx;
694 1.1 sato
695 1.1 sato if (offset < 0 ||
696 1.1 sato (sc->sc_fbconf.hf_bytes_per_plane +
697 1.1 sato sc->sc_fbconf.hf_offset) < offset)
698 1.1 sato return -1;
699 1.1 sato
700 1.4 takemura return mips_btop((u_long)bootinfo->fb_addr + offset);
701 1.1 sato }
702