pxa2x0_lcd.c revision 1.22 1 1.22 nonaka /* $NetBSD: pxa2x0_lcd.c,v 1.22 2007/06/28 14:47:47 nonaka Exp $ */
2 1.1 bsh
3 1.1 bsh /*
4 1.1 bsh * Copyright (c) 2002 Genetec Corporation. All rights reserved.
5 1.1 bsh * Written by Hiroyuki Bessho for Genetec Corporation.
6 1.1 bsh *
7 1.1 bsh * Redistribution and use in source and binary forms, with or without
8 1.1 bsh * modification, are permitted provided that the following conditions
9 1.1 bsh * are met:
10 1.1 bsh * 1. Redistributions of source code must retain the above copyright
11 1.1 bsh * notice, this list of conditions and the following disclaimer.
12 1.1 bsh * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 bsh * notice, this list of conditions and the following disclaimer in the
14 1.1 bsh * documentation and/or other materials provided with the distribution.
15 1.1 bsh * 3. All advertising materials mentioning features or use of this software
16 1.1 bsh * must display the following acknowledgement:
17 1.1 bsh * This product includes software developed for the NetBSD Project by
18 1.1 bsh * Genetec Corporation.
19 1.1 bsh * 4. The name of Genetec Corporation may not be used to endorse or
20 1.1 bsh * promote products derived from this software without specific prior
21 1.1 bsh * written permission.
22 1.1 bsh *
23 1.1 bsh * THIS SOFTWARE IS PROVIDED BY GENETEC CORPORATION ``AS IS'' AND
24 1.1 bsh * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
25 1.1 bsh * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
26 1.1 bsh * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL GENETEC CORPORATION
27 1.1 bsh * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
28 1.1 bsh * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
29 1.1 bsh * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
30 1.1 bsh * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
31 1.1 bsh * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
32 1.1 bsh * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
33 1.1 bsh * POSSIBILITY OF SUCH DAMAGE.
34 1.1 bsh */
35 1.1 bsh
36 1.1 bsh /*
37 1.1 bsh * Support PXA2[15]0's integrated LCD controller.
38 1.1 bsh */
39 1.6 lukem
40 1.6 lukem #include <sys/cdefs.h>
41 1.22 nonaka __KERNEL_RCSID(0, "$NetBSD: pxa2x0_lcd.c,v 1.22 2007/06/28 14:47:47 nonaka Exp $");
42 1.6 lukem
43 1.1 bsh #include <sys/param.h>
44 1.1 bsh #include <sys/systm.h>
45 1.1 bsh #include <sys/conf.h>
46 1.1 bsh #include <sys/uio.h>
47 1.1 bsh #include <sys/malloc.h>
48 1.1 bsh #include <sys/kernel.h> /* for cold */
49 1.1 bsh
50 1.2 thorpej #include <uvm/uvm_extern.h>
51 1.2 thorpej
52 1.1 bsh #include <dev/cons.h>
53 1.1 bsh #include <dev/wscons/wsconsio.h>
54 1.1 bsh #include <dev/wscons/wsdisplayvar.h>
55 1.1 bsh #include <dev/wscons/wscons_callbacks.h>
56 1.1 bsh #include <dev/rasops/rasops.h>
57 1.1 bsh #include <dev/wsfont/wsfont.h>
58 1.1 bsh
59 1.1 bsh #include <machine/bus.h>
60 1.1 bsh #include <machine/cpu.h>
61 1.1 bsh #include <arm/cpufunc.h>
62 1.1 bsh
63 1.10 bsh #include <arm/xscale/pxa2x0cpu.h>
64 1.1 bsh #include <arm/xscale/pxa2x0var.h>
65 1.1 bsh #include <arm/xscale/pxa2x0reg.h>
66 1.1 bsh #include <arm/xscale/pxa2x0_lcd.h>
67 1.5 bsh #include <arm/xscale/pxa2x0_gpio.h>
68 1.1 bsh
69 1.1 bsh #include "wsdisplay.h"
70 1.1 bsh
71 1.16 nonaka /*
72 1.16 nonaka * Console variables. These are necessary since console is setup very early,
73 1.16 nonaka * before devices get attached.
74 1.16 nonaka */
75 1.16 nonaka struct {
76 1.16 nonaka int is_console;
77 1.16 nonaka struct pxa2x0_wsscreen_descr *descr;
78 1.16 nonaka const struct lcd_panel_geometry *geom;
79 1.16 nonaka } pxa2x0_lcd_console;
80 1.16 nonaka
81 1.15 peter int lcdintr(void *);
82 1.15 peter
83 1.15 peter static void pxa2x0_lcd_initialize(struct pxa2x0_lcd_softc *,
84 1.15 peter const struct lcd_panel_geometry *);
85 1.15 peter static void pxa2x0_lcd_setup_rasops(struct pxa2x0_lcd_softc *,
86 1.15 peter struct rasops_info *, struct pxa2x0_wsscreen_descr *,
87 1.15 peter const struct lcd_panel_geometry *);
88 1.1 bsh
89 1.1 bsh void
90 1.4 bsh pxa2x0_lcd_geometry(struct pxa2x0_lcd_softc *sc,
91 1.4 bsh const struct lcd_panel_geometry *info)
92 1.1 bsh {
93 1.14 ober bus_space_tag_t iot;
94 1.14 ober bus_space_handle_t ioh;
95 1.14 ober uint32_t ccr0;
96 1.1 bsh int lines;
97 1.1 bsh
98 1.15 peter iot = sc->iot;
99 1.15 peter ioh = sc->ioh;
100 1.15 peter sc->geometry = info;
101 1.1 bsh
102 1.1 bsh ccr0 = LCCR0_IMASK;
103 1.22 nonaka if (CPU_IS_PXA270)
104 1.22 nonaka ccr0 |= LCCR0_CMDIM|LCCR0_RDSTM;
105 1.4 bsh if (info->panel_info & LCDPANEL_ACTIVE)
106 1.4 bsh ccr0 |= LCCR0_PAS; /* active mode */
107 1.4 bsh if ((info->panel_info & (LCDPANEL_DUAL|LCDPANEL_ACTIVE))
108 1.4 bsh == LCDPANEL_DUAL)
109 1.1 bsh ccr0 |= LCCR0_SDS; /* dual panel */
110 1.4 bsh if (info->panel_info & LCDPANEL_MONOCHROME)
111 1.1 bsh ccr0 |= LCCR0_CMS;
112 1.4 bsh bus_space_write_4(iot, ioh, LCDC_LCCR0, ccr0);
113 1.1 bsh
114 1.4 bsh bus_space_write_4(iot, ioh, LCDC_LCCR1,
115 1.1 bsh (info->panel_width-1)
116 1.1 bsh | ((info->hsync_pulse_width-1)<<10)
117 1.1 bsh | ((info->end_line_wait-1)<<16)
118 1.4 bsh | ((info->beg_line_wait-1)<<24));
119 1.1 bsh
120 1.4 bsh if (info->panel_info & LCDPANEL_DUAL)
121 1.1 bsh lines = info->panel_height/2 + info->extra_lines;
122 1.1 bsh else
123 1.1 bsh lines = info->panel_height + info->extra_lines;
124 1.1 bsh
125 1.4 bsh bus_space_write_4(iot, ioh, LCDC_LCCR2,
126 1.1 bsh (lines-1)
127 1.1 bsh | (info->vsync_pulse_width<<10)
128 1.1 bsh | (info->end_frame_wait<<16)
129 1.4 bsh | (info->beg_frame_wait<<24));
130 1.1 bsh
131 1.4 bsh bus_space_write_4(iot, ioh, LCDC_LCCR3,
132 1.1 bsh (info->pixel_clock_div<<0)
133 1.1 bsh | (info->ac_bias << 8)
134 1.1 bsh | ((info->panel_info &
135 1.1 bsh (LCDPANEL_VSP|LCDPANEL_HSP|LCDPANEL_PCP|LCDPANEL_OEP))
136 1.1 bsh <<20)
137 1.4 bsh | (4 << 24) /* 16bpp */
138 1.1 bsh | ((info->panel_info & LCDPANEL_DPC) ? (1<<27) : 0)
139 1.1 bsh );
140 1.1 bsh }
141 1.1 bsh
142 1.14 ober /*
143 1.14 ober * Initialize the LCD controller.
144 1.14 ober */
145 1.1 bsh void
146 1.14 ober pxa2x0_lcd_initialize(struct pxa2x0_lcd_softc *sc,
147 1.14 ober const struct lcd_panel_geometry *geom)
148 1.1 bsh {
149 1.14 ober bus_space_tag_t iot;
150 1.1 bsh bus_space_handle_t ioh;
151 1.14 ober uint32_t lccr0, lscr;
152 1.14 ober int nldd;
153 1.1 bsh
154 1.15 peter iot = sc->iot;
155 1.15 peter ioh = sc->ioh;
156 1.1 bsh
157 1.14 ober /* Check if LCD is enabled before programming, it should not
158 1.14 ober * be enabled while it is being reprogrammed, therefore disable
159 1.14 ober * it first.
160 1.14 ober */
161 1.14 ober lccr0 = bus_space_read_4(iot, ioh, LCDC_LCCR0);
162 1.14 ober if (lccr0 & LCCR0_ENB) {
163 1.14 ober lccr0 |= LCCR0_LDM;
164 1.14 ober bus_space_write_4(iot, ioh, LCDC_LCCR0, lccr0);
165 1.14 ober lccr0 = bus_space_read_4(iot, ioh, LCDC_LCCR0); /* paranoia */
166 1.14 ober lccr0 |= LCCR0_DIS;
167 1.14 ober bus_space_write_4(iot, ioh, LCDC_LCCR0, lccr0);
168 1.14 ober do {
169 1.14 ober lscr = bus_space_read_4(iot, ioh, LCDC_LCSR);
170 1.14 ober } while (!(lscr & LCSR_LDD));
171 1.1 bsh }
172 1.1 bsh
173 1.1 bsh /* enable clock */
174 1.5 bsh pxa2x0_clkman_config(CKEN_LCD, 1);
175 1.1 bsh
176 1.22 nonaka lccr0 = LCCR0_IMASK;
177 1.22 nonaka if (CPU_IS_PXA270)
178 1.22 nonaka lccr0 |= LCCR0_CMDIM|LCCR0_RDSTM;
179 1.22 nonaka bus_space_write_4(iot, ioh, LCDC_LCCR0, lccr0);
180 1.1 bsh
181 1.1 bsh /*
182 1.1 bsh * setup GP[77:58] for LCD
183 1.1 bsh */
184 1.3 scw /* Always use [FLP]CLK, ACBIAS */
185 1.3 scw pxa2x0_gpio_set_function(74, GPIO_ALT_FN_2_OUT);
186 1.3 scw pxa2x0_gpio_set_function(75, GPIO_ALT_FN_2_OUT);
187 1.3 scw pxa2x0_gpio_set_function(76, GPIO_ALT_FN_2_OUT);
188 1.3 scw pxa2x0_gpio_set_function(77, GPIO_ALT_FN_2_OUT);
189 1.3 scw
190 1.3 scw if ((geom->panel_info & LCDPANEL_ACTIVE) ||
191 1.3 scw ((geom->panel_info & (LCDPANEL_MONOCHROME|LCDPANEL_DUAL)) ==
192 1.3 scw LCDPANEL_DUAL)) {
193 1.3 scw /* active and color dual panel need L_DD[15:0] */
194 1.3 scw nldd = 16;
195 1.14 ober } else if ((geom->panel_info & LCDPANEL_DUAL) ||
196 1.3 scw !(geom->panel_info & LCDPANEL_MONOCHROME)) {
197 1.3 scw /* dual or color need L_DD[7:0] */
198 1.3 scw nldd = 8;
199 1.3 scw } else {
200 1.3 scw /* Otherwise just L_DD[3:0] */
201 1.3 scw nldd = 4;
202 1.1 bsh }
203 1.1 bsh
204 1.3 scw while (nldd--)
205 1.3 scw pxa2x0_gpio_set_function(58 + nldd, GPIO_ALT_FN_2_OUT);
206 1.1 bsh
207 1.4 bsh pxa2x0_lcd_geometry(sc, geom);
208 1.1 bsh }
209 1.1 bsh
210 1.14 ober /*
211 1.14 ober * Common driver attachment code.
212 1.14 ober */
213 1.14 ober void
214 1.14 ober pxa2x0_lcd_attach_sub(struct pxa2x0_lcd_softc *sc,
215 1.16 nonaka struct pxaip_attach_args *pxa, const struct lcd_panel_geometry *geom)
216 1.14 ober {
217 1.14 ober bus_space_tag_t iot = pxa->pxa_iot;
218 1.14 ober bus_space_handle_t ioh;
219 1.14 ober int error;
220 1.14 ober
221 1.14 ober sc->n_screens = 0;
222 1.14 ober LIST_INIT(&sc->screens);
223 1.1 bsh
224 1.14 ober /* map controller registers */
225 1.15 peter error = bus_space_map(iot, PXA2X0_LCDC_BASE,
226 1.15 peter PXA2X0_LCDC_SIZE, 0, &ioh);
227 1.15 peter if (error) {
228 1.15 peter printf(": failed to map registers (errno=%d)\n", error);
229 1.15 peter return;
230 1.15 peter }
231 1.15 peter
232 1.15 peter sc->iot = iot;
233 1.15 peter sc->ioh = ioh;
234 1.15 peter sc->dma_tag = &pxa2x0_bus_dma_tag;
235 1.15 peter
236 1.15 peter sc->ih = pxa2x0_intr_establish(PXA2X0_INT_LCD, IPL_BIO, lcdintr, sc);
237 1.15 peter if (sc->ih == NULL) {
238 1.15 peter printf(": unable to establish interrupt at irq %d\n",
239 1.15 peter PXA2X0_INT_LCD);
240 1.15 peter return;
241 1.15 peter }
242 1.15 peter
243 1.15 peter printf(": PXA2x0 LCD controller\n");
244 1.15 peter
245 1.15 peter pxa2x0_lcd_initialize(sc, geom);
246 1.15 peter
247 1.16 nonaka if (pxa2x0_lcd_console.is_console) {
248 1.16 nonaka struct pxa2x0_wsscreen_descr *descr = pxa2x0_lcd_console.descr;
249 1.15 peter struct pxa2x0_lcd_screen *scr;
250 1.15 peter struct rasops_info *ri;
251 1.15 peter long defattr;
252 1.15 peter
253 1.15 peter error = pxa2x0_lcd_new_screen(sc, descr->depth, &scr);
254 1.14 ober if (error) {
255 1.15 peter printf("%s: unable to create new screen (errno=%d)",
256 1.15 peter sc->dev.dv_xname, error);
257 1.14 ober return;
258 1.14 ober }
259 1.14 ober
260 1.15 peter ri = &scr->rinfo;
261 1.15 peter ri->ri_hw = (void *)scr;
262 1.15 peter ri->ri_bits = scr->buf_va;
263 1.15 peter pxa2x0_lcd_setup_rasops(sc, ri, descr, geom);
264 1.15 peter
265 1.15 peter /* assumes 16 bpp */
266 1.15 peter (*ri->ri_ops.allocattr)(ri, 0, 0, 0, &defattr);
267 1.15 peter
268 1.15 peter pxa2x0_lcd_start_dma(sc, scr);
269 1.15 peter sc->active = scr;
270 1.15 peter
271 1.15 peter wsdisplay_cnattach(&descr->c, ri, ri->ri_ccol, ri->ri_crow,
272 1.15 peter defattr);
273 1.14 ober
274 1.15 peter printf("%s: console\n", sc->dev.dv_xname);
275 1.16 nonaka }
276 1.16 nonaka }
277 1.16 nonaka
278 1.16 nonaka int
279 1.16 nonaka pxa2x0_lcd_cnattach(struct pxa2x0_wsscreen_descr *descr,
280 1.16 nonaka const struct lcd_panel_geometry *geom)
281 1.16 nonaka {
282 1.16 nonaka
283 1.16 nonaka pxa2x0_lcd_console.descr = descr;
284 1.16 nonaka pxa2x0_lcd_console.geom = geom;
285 1.16 nonaka pxa2x0_lcd_console.is_console = 1;
286 1.14 ober
287 1.16 nonaka return 0;
288 1.14 ober }
289 1.14 ober
290 1.14 ober /*
291 1.14 ober * Interrupt handler.
292 1.14 ober */
293 1.1 bsh int
294 1.1 bsh lcdintr(void *arg)
295 1.1 bsh {
296 1.15 peter struct pxa2x0_lcd_softc *sc = (struct pxa2x0_lcd_softc *)arg;
297 1.1 bsh bus_space_tag_t iot = sc->iot;
298 1.1 bsh bus_space_handle_t ioh = sc->ioh;
299 1.15 peter uint32_t status;
300 1.1 bsh
301 1.4 bsh status = bus_space_read_4(iot, ioh, LCDC_LCSR);
302 1.1 bsh /* Clear stickey status bits */
303 1.4 bsh bus_space_write_4(iot, ioh, LCDC_LCSR, status);
304 1.1 bsh
305 1.1 bsh return 1;
306 1.1 bsh }
307 1.1 bsh
308 1.14 ober /*
309 1.14 ober * Enable DMA to cause the display to be refreshed periodically.
310 1.14 ober * This brings the screen to life...
311 1.14 ober */
312 1.1 bsh void
313 1.4 bsh pxa2x0_lcd_start_dma(struct pxa2x0_lcd_softc *sc,
314 1.4 bsh struct pxa2x0_lcd_screen *scr)
315 1.1 bsh {
316 1.14 ober bus_space_tag_t iot;
317 1.14 ober bus_space_handle_t ioh;
318 1.1 bsh uint32_t tmp;
319 1.1 bsh int val, save;
320 1.1 bsh
321 1.15 peter iot = sc->iot;
322 1.15 peter ioh = sc->ioh;
323 1.14 ober
324 1.4 bsh save = disable_interrupts(I32_bit);
325 1.1 bsh
326 1.4 bsh switch (scr->depth) {
327 1.1 bsh case 1: val = 0; break;
328 1.1 bsh case 2: val = 1; break;
329 1.1 bsh case 4: val = 2; break;
330 1.1 bsh case 8: val = 3; break;
331 1.10 bsh case 16: val = 4; break;
332 1.10 bsh case 18: val = 5; break;
333 1.10 bsh case 24: val = 33; break;
334 1.1 bsh default:
335 1.1 bsh val = 4; break;
336 1.1 bsh }
337 1.1 bsh
338 1.4 bsh tmp = bus_space_read_4(iot, ioh, LCDC_LCCR3);
339 1.15 peter if (CPU_IS_PXA270) {
340 1.10 bsh bus_space_write_4(iot, ioh, LCDC_LCCR3,
341 1.10 bsh (tmp & ~(LCCR3_BPP|(1<<29))) | (val << LCCR3_BPP_SHIFT));
342 1.15 peter } else {
343 1.10 bsh bus_space_write_4(iot, ioh, LCDC_LCCR3,
344 1.10 bsh (tmp & ~LCCR3_BPP) | (val << LCCR3_BPP_SHIFT));
345 1.15 peter }
346 1.1 bsh
347 1.4 bsh bus_space_write_4(iot, ioh, LCDC_FDADR0,
348 1.10 bsh scr->depth >= 16 ? scr->dma_desc_pa :
349 1.4 bsh scr->dma_desc_pa + 2 * sizeof (struct lcd_dma_descriptor));
350 1.4 bsh bus_space_write_4(iot, ioh, LCDC_FDADR1,
351 1.4 bsh scr->dma_desc_pa + 1 * sizeof (struct lcd_dma_descriptor));
352 1.1 bsh
353 1.1 bsh /* clear status */
354 1.4 bsh bus_space_write_4(iot, ioh, LCDC_LCSR, 0);
355 1.1 bsh
356 1.1 bsh delay(1000); /* ??? */
357 1.1 bsh
358 1.1 bsh /* Enable LCDC */
359 1.4 bsh tmp = bus_space_read_4(iot, ioh, LCDC_LCCR0);
360 1.1 bsh /*tmp &= ~LCCR0_SFM;*/
361 1.4 bsh bus_space_write_4(iot, ioh, LCDC_LCCR0, tmp | LCCR0_ENB);
362 1.1 bsh
363 1.4 bsh restore_interrupts(save);
364 1.1 bsh }
365 1.1 bsh
366 1.5 bsh #if NWSDISPLAY > 0
367 1.14 ober /*
368 1.14 ober * Disable screen refresh.
369 1.14 ober */
370 1.1 bsh static void
371 1.4 bsh pxa2x0_lcd_stop_dma(struct pxa2x0_lcd_softc *sc)
372 1.1 bsh {
373 1.15 peter
374 1.1 bsh /* Stop LCD DMA after current frame */
375 1.4 bsh bus_space_write_4(sc->iot, sc->ioh, LCDC_LCCR0,
376 1.1 bsh LCCR0_DIS |
377 1.4 bsh bus_space_read_4(sc->iot, sc->ioh, LCDC_LCCR0));
378 1.1 bsh
379 1.1 bsh /* wait for disabling done.
380 1.1 bsh XXX: use interrupt. */
381 1.4 bsh while (LCCR0_ENB &
382 1.4 bsh bus_space_read_4(sc->iot, sc->ioh, LCDC_LCCR0))
383 1.15 peter continue;
384 1.1 bsh
385 1.4 bsh bus_space_write_4(sc->iot, sc->ioh, LCDC_LCCR0,
386 1.1 bsh ~LCCR0_DIS &
387 1.4 bsh bus_space_read_4(sc->iot, sc->ioh, LCDC_LCCR0));
388 1.1 bsh }
389 1.5 bsh #endif
390 1.1 bsh
391 1.1 bsh #define _rgb(r,g,b) (((r)<<11) | ((g)<<5) | b)
392 1.1 bsh #define rgb(r,g,b) _rgb((r)>>1,g,(b)>>1)
393 1.1 bsh
394 1.1 bsh #define L 0x1f /* low intensity */
395 1.1 bsh #define H 0x3f /* hight intensity */
396 1.1 bsh
397 1.1 bsh static uint16_t basic_color_map[] = {
398 1.1 bsh rgb( 0, 0, 0), /* black */
399 1.1 bsh rgb( L, 0, 0), /* red */
400 1.1 bsh rgb( 0, L, 0), /* green */
401 1.1 bsh rgb( L, L, 0), /* brown */
402 1.1 bsh rgb( 0, 0, L), /* blue */
403 1.1 bsh rgb( L, 0, L), /* magenta */
404 1.1 bsh rgb( 0, L, L), /* cyan */
405 1.1 bsh _rgb(0x1c,0x38,0x1c), /* white */
406 1.1 bsh
407 1.1 bsh rgb( L, L, L), /* black */
408 1.1 bsh rgb( H, 0, 0), /* red */
409 1.1 bsh rgb( 0, H, 0), /* green */
410 1.1 bsh rgb( H, H, 0), /* brown */
411 1.1 bsh rgb( 0, 0, H), /* blue */
412 1.1 bsh rgb( H, 0, H), /* magenta */
413 1.1 bsh rgb( 0, H, H), /* cyan */
414 1.1 bsh rgb( H, H, H)
415 1.1 bsh };
416 1.1 bsh
417 1.1 bsh #undef H
418 1.1 bsh #undef L
419 1.1 bsh
420 1.1 bsh static void
421 1.4 bsh init_pallet(uint16_t *buf, int depth)
422 1.1 bsh {
423 1.1 bsh int i;
424 1.1 bsh
425 1.1 bsh /* convert RGB332 to RGB565 */
426 1.4 bsh switch (depth) {
427 1.1 bsh case 8:
428 1.1 bsh case 4:
429 1.1 bsh #if 0
430 1.4 bsh for (i=0; i <= 255; ++i) {
431 1.1 bsh buf[i] = ((9 * ((i>>5) & 0x07)) <<11) |
432 1.1 bsh ((9 * ((i>>2) & 0x07)) << 5) |
433 1.4 bsh ((21 * (i & 0x03))/2);
434 1.1 bsh }
435 1.1 bsh #else
436 1.4 bsh memcpy(buf, basic_color_map, sizeof basic_color_map);
437 1.4 bsh for (i=16; i < (1<<depth); ++i)
438 1.1 bsh buf[i] = 0xffff;
439 1.1 bsh #endif
440 1.1 bsh break;
441 1.8 bsh case 16:
442 1.8 bsh /* pallet is not needed */
443 1.8 bsh break;
444 1.1 bsh default:
445 1.8 bsh /* other depths are not supported */
446 1.8 bsh break;
447 1.1 bsh }
448 1.1 bsh }
449 1.1 bsh
450 1.14 ober /*
451 1.14 ober * Create and initialize a new screen buffer.
452 1.14 ober */
453 1.14 ober int
454 1.15 peter pxa2x0_lcd_new_screen(struct pxa2x0_lcd_softc *sc, int depth,
455 1.15 peter struct pxa2x0_lcd_screen **scrpp)
456 1.1 bsh {
457 1.14 ober bus_space_tag_t iot;
458 1.14 ober bus_space_handle_t ioh;
459 1.14 ober bus_dma_tag_t dma_tag;
460 1.14 ober const struct lcd_panel_geometry *geometry;
461 1.15 peter struct pxa2x0_lcd_screen *scr = NULL;
462 1.1 bsh int width, height;
463 1.1 bsh bus_size_t size;
464 1.12 simonb int error, pallet_size;
465 1.1 bsh int busdma_flag = (cold ? BUS_DMA_NOWAIT : BUS_DMA_WAITOK);
466 1.1 bsh struct lcd_dma_descriptor *desc;
467 1.1 bsh paddr_t buf_pa, desc_pa;
468 1.1 bsh
469 1.15 peter iot = sc->iot;
470 1.15 peter ioh = sc->ioh;
471 1.15 peter dma_tag = sc->dma_tag;
472 1.15 peter geometry = sc->geometry;
473 1.14 ober
474 1.14 ober width = geometry->panel_width;
475 1.14 ober height = geometry->panel_height;
476 1.1 bsh pallet_size = 0;
477 1.1 bsh
478 1.4 bsh switch (depth) {
479 1.1 bsh case 1:
480 1.1 bsh case 2:
481 1.1 bsh case 4:
482 1.1 bsh case 8:
483 1.1 bsh pallet_size = (1<<depth) * sizeof (uint16_t);
484 1.1 bsh /* FALLTHROUGH */
485 1.1 bsh case 16:
486 1.1 bsh size = roundup(width,4)*depth/8 * height;
487 1.1 bsh break;
488 1.10 bsh case 18:
489 1.10 bsh case 24:
490 1.10 bsh size = roundup(width,4) * 4 * height;
491 1.10 bsh break;
492 1.10 bsh case 19:
493 1.10 bsh case 25:
494 1.14 ober printf("%s: Not supported depth (%d)\n",
495 1.15 peter sc->dev.dv_xname, depth);
496 1.14 ober return EINVAL;
497 1.1 bsh default:
498 1.14 ober printf("%s: Unknown depth (%d)\n",
499 1.15 peter sc->dev.dv_xname, depth);
500 1.14 ober return EINVAL;
501 1.1 bsh }
502 1.1 bsh
503 1.15 peter scr = malloc(sizeof(*scr), M_DEVBUF, M_NOWAIT);
504 1.15 peter if (scr == NULL)
505 1.15 peter return ENOMEM;
506 1.15 peter
507 1.14 ober memset(scr, 0, sizeof(*scr));
508 1.1 bsh
509 1.1 bsh scr->nsegs = 0;
510 1.1 bsh scr->depth = depth;
511 1.1 bsh scr->buf_size = size;
512 1.1 bsh scr->buf_va = NULL;
513 1.1 bsh size = roundup(size,16) + 3 * sizeof (struct lcd_dma_descriptor)
514 1.1 bsh + pallet_size;
515 1.1 bsh
516 1.15 peter error = bus_dmamem_alloc(dma_tag, size, 16, 0, scr->segs, 1,
517 1.15 peter &scr->nsegs, busdma_flag);
518 1.1 bsh
519 1.12 simonb if (error || scr->nsegs != 1) {
520 1.12 simonb /* XXX:
521 1.12 simonb * Actually we can handle nsegs>1 case by means
522 1.12 simonb * of multiple DMA descriptors for a panel. It
523 1.12 simonb * will make code here a bit hairly.
524 1.12 simonb */
525 1.14 ober if (error == 0)
526 1.14 ober error = E2BIG;
527 1.1 bsh goto bad;
528 1.12 simonb }
529 1.1 bsh
530 1.15 peter error = bus_dmamem_map(dma_tag, scr->segs, scr->nsegs, size,
531 1.17 christos (void **)&scr->buf_va, busdma_flag | BUS_DMA_COHERENT);
532 1.4 bsh if (error)
533 1.1 bsh goto bad;
534 1.1 bsh
535 1.15 peter memset(scr->buf_va, 0, scr->buf_size);
536 1.1 bsh
537 1.1 bsh /* map memory for DMA */
538 1.15 peter error = bus_dmamap_create(dma_tag, 1024*1024*2, 1, 1024*1024*2, 0,
539 1.15 peter busdma_flag, &scr->dma);
540 1.15 peter if (error)
541 1.1 bsh goto bad;
542 1.15 peter
543 1.15 peter error = bus_dmamap_load(dma_tag, scr->dma, scr->buf_va, size,
544 1.15 peter NULL, busdma_flag);
545 1.15 peter if (error)
546 1.1 bsh goto bad;
547 1.1 bsh
548 1.1 bsh buf_pa = scr->segs[0].ds_addr;
549 1.2 thorpej desc_pa = buf_pa + roundup(size, PAGE_SIZE) - 3*sizeof *desc;
550 1.1 bsh
551 1.1 bsh /* make descriptors at the top of mapped memory */
552 1.1 bsh desc = (struct lcd_dma_descriptor *)(
553 1.18 nonaka (char *)(scr->buf_va) + roundup(size, PAGE_SIZE) -
554 1.2 thorpej 3*sizeof *desc);
555 1.1 bsh
556 1.1 bsh desc[0].fdadr = desc_pa;
557 1.1 bsh desc[0].fsadr = buf_pa;
558 1.1 bsh desc[0].ldcmd = scr->buf_size;
559 1.1 bsh
560 1.4 bsh if (pallet_size) {
561 1.4 bsh init_pallet((uint16_t *)((char *)desc - pallet_size), depth);
562 1.1 bsh
563 1.1 bsh desc[2].fdadr = desc_pa; /* chain to panel 0 */
564 1.1 bsh desc[2].fsadr = desc_pa - pallet_size;
565 1.1 bsh desc[2].ldcmd = pallet_size | LDCMD_PAL;
566 1.1 bsh }
567 1.1 bsh
568 1.15 peter if (geometry->panel_info & LCDPANEL_DUAL) {
569 1.1 bsh /* Dual panel */
570 1.1 bsh desc[1].fdadr = desc_pa + sizeof *desc;
571 1.1 bsh desc[1].fsadr = buf_pa + scr->buf_size/2;
572 1.1 bsh desc[0].ldcmd = desc[1].ldcmd = scr->buf_size/2;
573 1.1 bsh
574 1.1 bsh }
575 1.1 bsh
576 1.1 bsh #if 0
577 1.1 bsh desc[0].ldcmd |= LDCMD_SOFINT;
578 1.1 bsh desc[1].ldcmd |= LDCMD_SOFINT;
579 1.1 bsh #endif
580 1.1 bsh
581 1.1 bsh scr->dma_desc = desc;
582 1.1 bsh scr->dma_desc_pa = desc_pa;
583 1.1 bsh scr->map_size = size; /* used when unmap this. */
584 1.1 bsh
585 1.15 peter LIST_INSERT_HEAD(&sc->screens, scr, link);
586 1.1 bsh sc->n_screens++;
587 1.1 bsh
588 1.15 peter *scrpp = scr;
589 1.15 peter
590 1.14 ober return 0;
591 1.1 bsh
592 1.1 bsh bad:
593 1.4 bsh if (scr) {
594 1.4 bsh if (scr->buf_va)
595 1.15 peter bus_dmamem_unmap(dma_tag, scr->buf_va, size);
596 1.4 bsh if (scr->nsegs)
597 1.15 peter bus_dmamem_free(dma_tag, scr->segs, scr->nsegs);
598 1.15 peter free(scr, M_DEVBUF);
599 1.1 bsh }
600 1.15 peter *scrpp = NULL;
601 1.14 ober return error;
602 1.14 ober }
603 1.14 ober
604 1.14 ober /*
605 1.14 ober * Initialize rasops for a screen, as well as struct wsscreen_descr if this
606 1.14 ober * is the first screen creation.
607 1.14 ober */
608 1.15 peter static void
609 1.15 peter pxa2x0_lcd_setup_rasops(struct pxa2x0_lcd_softc *sc, struct rasops_info *rinfo,
610 1.14 ober struct pxa2x0_wsscreen_descr *descr,
611 1.14 ober const struct lcd_panel_geometry *geom)
612 1.14 ober {
613 1.14 ober
614 1.14 ober rinfo->ri_flg = descr->flags;
615 1.14 ober rinfo->ri_depth = descr->depth;
616 1.14 ober rinfo->ri_width = geom->panel_width;
617 1.14 ober rinfo->ri_height = geom->panel_height;
618 1.14 ober rinfo->ri_stride = rinfo->ri_width * rinfo->ri_depth / 8;
619 1.14 ober #ifdef notyet
620 1.14 ober rinfo->ri_wsfcookie = -1; /* XXX */
621 1.14 ober #endif
622 1.14 ober
623 1.14 ober /* swap B and R */
624 1.14 ober if (descr->depth == 16) {
625 1.14 ober rinfo->ri_rnum = 5;
626 1.14 ober rinfo->ri_rpos = 11;
627 1.14 ober rinfo->ri_gnum = 6;
628 1.14 ober rinfo->ri_gpos = 5;
629 1.14 ober rinfo->ri_bnum = 5;
630 1.14 ober rinfo->ri_bpos = 0;
631 1.14 ober }
632 1.14 ober
633 1.14 ober if (descr->c.nrows == 0) {
634 1.14 ober /* get rasops to compute screen size the first time */
635 1.14 ober rasops_init(rinfo, 100, 100);
636 1.15 peter } else {
637 1.14 ober rasops_init(rinfo, descr->c.nrows, descr->c.ncols);
638 1.15 peter }
639 1.14 ober
640 1.14 ober descr->c.nrows = rinfo->ri_rows;
641 1.14 ober descr->c.ncols = rinfo->ri_cols;
642 1.14 ober descr->c.capabilities = rinfo->ri_caps;
643 1.14 ober descr->c.textops = &rinfo->ri_ops;
644 1.14 ober }
645 1.14 ober
646 1.14 ober /*
647 1.14 ober * Power management
648 1.14 ober */
649 1.14 ober void
650 1.14 ober pxa2x0_lcd_suspend(struct pxa2x0_lcd_softc *sc)
651 1.14 ober {
652 1.14 ober
653 1.15 peter if (sc->active) {
654 1.14 ober pxa2x0_lcd_stop_dma(sc);
655 1.14 ober pxa2x0_clkman_config(CKEN_LCD, 0);
656 1.14 ober }
657 1.14 ober }
658 1.14 ober
659 1.14 ober void
660 1.14 ober pxa2x0_lcd_resume(struct pxa2x0_lcd_softc *sc)
661 1.14 ober {
662 1.14 ober
663 1.15 peter if (sc->active) {
664 1.14 ober pxa2x0_lcd_initialize(sc, sc->geometry);
665 1.14 ober pxa2x0_lcd_start_dma(sc, sc->active);
666 1.14 ober }
667 1.1 bsh }
668 1.1 bsh
669 1.14 ober void
670 1.14 ober pxa2x0_lcd_power(int why, void *v)
671 1.14 ober {
672 1.14 ober struct pxa2x0_lcd_softc *sc = v;
673 1.14 ober
674 1.14 ober switch (why) {
675 1.14 ober case PWR_SUSPEND:
676 1.14 ober case PWR_STANDBY:
677 1.14 ober pxa2x0_lcd_suspend(sc);
678 1.14 ober break;
679 1.14 ober
680 1.14 ober case PWR_RESUME:
681 1.14 ober pxa2x0_lcd_resume(sc);
682 1.14 ober break;
683 1.14 ober }
684 1.14 ober }
685 1.1 bsh
686 1.1 bsh #if NWSDISPLAY > 0
687 1.1 bsh /*
688 1.1 bsh * Initialize struct wsscreen_descr based on values calculated by
689 1.1 bsh * raster operation subsystem.
690 1.1 bsh */
691 1.1 bsh int
692 1.1 bsh pxa2x0_lcd_setup_wsscreen(struct pxa2x0_wsscreen_descr *descr,
693 1.1 bsh const struct lcd_panel_geometry *geom,
694 1.4 bsh const char *fontname)
695 1.1 bsh {
696 1.1 bsh int width = geom->panel_width;
697 1.1 bsh int height = geom->panel_height;
698 1.1 bsh int cookie = -1;
699 1.1 bsh struct rasops_info rinfo;
700 1.1 bsh
701 1.4 bsh memset(&rinfo, 0, sizeof rinfo);
702 1.1 bsh
703 1.4 bsh if (fontname) {
704 1.1 bsh wsfont_init();
705 1.9 he cookie = wsfont_find(fontname, 0, 0, 0,
706 1.4 bsh WSDISPLAY_FONTORDER_L2R, WSDISPLAY_FONTORDER_L2R);
707 1.4 bsh if (cookie < 0 ||
708 1.4 bsh wsfont_lock(cookie, &rinfo.ri_font))
709 1.1 bsh return -1;
710 1.1 bsh }
711 1.1 bsh else {
712 1.1 bsh /* let rasops_init() choose any font */
713 1.1 bsh }
714 1.1 bsh
715 1.1 bsh /* let rasops_init calculate # of cols and rows in character */
716 1.1 bsh rinfo.ri_flg = 0;
717 1.1 bsh rinfo.ri_depth = descr->depth;
718 1.1 bsh rinfo.ri_bits = NULL;
719 1.1 bsh rinfo.ri_width = width;
720 1.1 bsh rinfo.ri_height = height;
721 1.1 bsh rinfo.ri_stride = width * rinfo.ri_depth / 8;
722 1.10 bsh #ifdef CPU_XSCALE_PXA270
723 1.15 peter if (rinfo.ri_depth > 16)
724 1.15 peter rinfo.ri_stride = width * 4;
725 1.10 bsh #endif
726 1.1 bsh rinfo.ri_wsfcookie = cookie;
727 1.1 bsh
728 1.4 bsh rasops_init(&rinfo, 100, 100);
729 1.1 bsh
730 1.1 bsh descr->c.nrows = rinfo.ri_rows;
731 1.1 bsh descr->c.ncols = rinfo.ri_cols;
732 1.1 bsh descr->c.capabilities = rinfo.ri_caps;
733 1.1 bsh
734 1.1 bsh return cookie;
735 1.1 bsh }
736 1.1 bsh
737 1.1 bsh int
738 1.1 bsh pxa2x0_lcd_show_screen(void *v, void *cookie, int waitok,
739 1.1 bsh void (*cb)(void *, int, int), void *cbarg)
740 1.1 bsh {
741 1.1 bsh struct pxa2x0_lcd_softc *sc = v;
742 1.1 bsh struct pxa2x0_lcd_screen *scr = cookie, *old;
743 1.1 bsh
744 1.1 bsh old = sc->active;
745 1.4 bsh if (old == scr)
746 1.1 bsh return 0;
747 1.1 bsh
748 1.4 bsh if (old)
749 1.4 bsh pxa2x0_lcd_stop_dma(sc);
750 1.1 bsh
751 1.4 bsh pxa2x0_lcd_start_dma(sc, scr);
752 1.1 bsh
753 1.1 bsh sc->active = scr;
754 1.1 bsh return 0;
755 1.1 bsh }
756 1.1 bsh
757 1.1 bsh int
758 1.1 bsh pxa2x0_lcd_alloc_screen(void *v, const struct wsscreen_descr *_type,
759 1.1 bsh void **cookiep, int *curxp, int *curyp, long *attrp)
760 1.1 bsh {
761 1.1 bsh struct pxa2x0_lcd_softc *sc = v;
762 1.1 bsh struct pxa2x0_lcd_screen *scr;
763 1.9 he const struct pxa2x0_wsscreen_descr *type =
764 1.9 he (const struct pxa2x0_wsscreen_descr *)_type;
765 1.14 ober int error;
766 1.1 bsh
767 1.15 peter error = pxa2x0_lcd_new_screen(sc, type->depth, &scr);
768 1.15 peter if (error)
769 1.15 peter return error;
770 1.14 ober
771 1.1 bsh /*
772 1.1 bsh * initialize raster operation for this screen.
773 1.1 bsh */
774 1.1 bsh scr->rinfo.ri_flg = 0;
775 1.1 bsh scr->rinfo.ri_depth = type->depth;
776 1.1 bsh scr->rinfo.ri_bits = scr->buf_va;
777 1.1 bsh scr->rinfo.ri_width = sc->geometry->panel_width;
778 1.1 bsh scr->rinfo.ri_height = sc->geometry->panel_height;
779 1.1 bsh scr->rinfo.ri_stride = scr->rinfo.ri_width * scr->rinfo.ri_depth / 8;
780 1.10 bsh #ifdef CPU_XSCALE_PXA270
781 1.10 bsh if (scr->rinfo.ri_depth > 16)
782 1.10 bsh scr->rinfo.ri_stride = scr->rinfo.ri_width * 4;
783 1.10 bsh #endif
784 1.1 bsh scr->rinfo.ri_wsfcookie = -1; /* XXX */
785 1.1 bsh
786 1.4 bsh rasops_init(&scr->rinfo, type->c.nrows, type->c.ncols);
787 1.1 bsh
788 1.4 bsh (* scr->rinfo.ri_ops.allocattr)(&scr->rinfo, 0, 0, 0, attrp);
789 1.1 bsh
790 1.1 bsh *cookiep = scr;
791 1.1 bsh *curxp = 0;
792 1.1 bsh *curyp = 0;
793 1.1 bsh
794 1.1 bsh return 0;
795 1.1 bsh }
796 1.1 bsh
797 1.1 bsh void
798 1.1 bsh pxa2x0_lcd_free_screen(void *v, void *cookie)
799 1.1 bsh {
800 1.1 bsh struct pxa2x0_lcd_softc *sc = v;
801 1.1 bsh struct pxa2x0_lcd_screen *scr = cookie;
802 1.1 bsh
803 1.4 bsh LIST_REMOVE(scr, link);
804 1.1 bsh sc->n_screens--;
805 1.4 bsh if (scr == sc->active) {
806 1.1 bsh /* at first, we need to stop LCD DMA */
807 1.1 bsh sc->active = NULL;
808 1.1 bsh
809 1.4 bsh printf("lcd_free on active screen\n");
810 1.1 bsh
811 1.1 bsh pxa2x0_lcd_stop_dma(sc);
812 1.1 bsh }
813 1.1 bsh
814 1.4 bsh if (scr->buf_va)
815 1.4 bsh bus_dmamem_unmap(sc->dma_tag, scr->buf_va, scr->map_size);
816 1.4 bsh if (scr->nsegs > 0)
817 1.4 bsh bus_dmamem_free(sc->dma_tag, scr->segs, scr->nsegs);
818 1.4 bsh free(scr, M_DEVBUF);
819 1.1 bsh }
820 1.1 bsh
821 1.1 bsh int
822 1.17 christos pxa2x0_lcd_ioctl(void *v, void *vs, u_long cmd, void *data, int flag,
823 1.13 jmmv struct lwp *l)
824 1.1 bsh {
825 1.1 bsh struct pxa2x0_lcd_softc *sc = v;
826 1.21 nonaka struct pxa2x0_lcd_screen *scr = sc->active; /* ??? */
827 1.1 bsh struct wsdisplay_fbinfo *wsdisp_info;
828 1.1 bsh uint32_t ccr0;
829 1.1 bsh
830 1.1 bsh switch (cmd) {
831 1.1 bsh case WSDISPLAYIO_GTYPE:
832 1.15 peter *(int *)data = WSDISPLAY_TYPE_UNKNOWN; /* XXX */
833 1.1 bsh return 0;
834 1.1 bsh
835 1.1 bsh case WSDISPLAYIO_GINFO:
836 1.1 bsh wsdisp_info = (struct wsdisplay_fbinfo *)data;
837 1.1 bsh wsdisp_info->height = sc->geometry->panel_height;
838 1.1 bsh wsdisp_info->width = sc->geometry->panel_width;
839 1.21 nonaka wsdisp_info->depth = scr->depth;
840 1.1 bsh wsdisp_info->cmsize = 0;
841 1.1 bsh return 0;
842 1.1 bsh
843 1.21 nonaka case WSDISPLAYIO_LINEBYTES:
844 1.21 nonaka *(u_int *)data = scr->rinfo.ri_stride;
845 1.21 nonaka return 0;
846 1.21 nonaka
847 1.1 bsh case WSDISPLAYIO_GETCMAP:
848 1.1 bsh case WSDISPLAYIO_PUTCMAP:
849 1.1 bsh return EPASSTHROUGH; /* XXX Colormap */
850 1.1 bsh
851 1.1 bsh case WSDISPLAYIO_SVIDEO:
852 1.4 bsh if (*(int *)data == WSDISPLAYIO_VIDEO_ON) {
853 1.1 bsh /* turn it on */
854 1.1 bsh }
855 1.1 bsh else {
856 1.1 bsh /* start LCD shutdown */
857 1.1 bsh /* sleep until interrupt */
858 1.1 bsh }
859 1.1 bsh return 0;
860 1.1 bsh
861 1.1 bsh case WSDISPLAYIO_GVIDEO:
862 1.4 bsh ccr0 = bus_space_read_4(sc->iot, sc->ioh, LCDC_LCCR0);
863 1.1 bsh *(u_int *)data = (ccr0 & (LCCR0_ENB|LCCR0_DIS)) == LCCR0_ENB ?
864 1.1 bsh WSDISPLAYIO_VIDEO_ON : WSDISPLAYIO_VIDEO_OFF;
865 1.1 bsh return 0;
866 1.1 bsh
867 1.1 bsh case WSDISPLAYIO_GCURPOS:
868 1.1 bsh case WSDISPLAYIO_SCURPOS:
869 1.1 bsh case WSDISPLAYIO_GCURMAX:
870 1.1 bsh case WSDISPLAYIO_GCURSOR:
871 1.1 bsh case WSDISPLAYIO_SCURSOR:
872 1.1 bsh return EPASSTHROUGH; /* XXX */
873 1.1 bsh }
874 1.1 bsh
875 1.1 bsh return EPASSTHROUGH;
876 1.1 bsh }
877 1.1 bsh
878 1.1 bsh paddr_t
879 1.13 jmmv pxa2x0_lcd_mmap(void *v, void *vs, off_t offset, int prot)
880 1.1 bsh {
881 1.1 bsh struct pxa2x0_lcd_softc *sc = v;
882 1.20 nonaka struct pxa2x0_lcd_screen *scr = sc->active; /* ??? */
883 1.1 bsh
884 1.20 nonaka if (scr == NULL)
885 1.20 nonaka return -1;
886 1.20 nonaka
887 1.20 nonaka if (offset < 0 ||
888 1.20 nonaka offset >= scr->rinfo.ri_stride * scr->rinfo.ri_height)
889 1.1 bsh return -1;
890 1.1 bsh
891 1.20 nonaka return bus_dmamem_mmap(sc->dma_tag, scr->segs, scr->nsegs,
892 1.4 bsh offset, prot, BUS_DMA_WAITOK|BUS_DMA_COHERENT);
893 1.1 bsh }
894 1.1 bsh
895 1.1 bsh
896 1.1 bsh static void
897 1.4 bsh pxa2x0_lcd_cursor(void *cookie, int on, int row, int col)
898 1.1 bsh {
899 1.1 bsh struct pxa2x0_lcd_screen *scr = cookie;
900 1.1 bsh
901 1.15 peter (*scr->rinfo.ri_ops.cursor)(&scr->rinfo, on, row, col);
902 1.1 bsh }
903 1.1 bsh
904 1.1 bsh static int
905 1.4 bsh pxa2x0_lcd_mapchar(void *cookie, int c, unsigned int *cp)
906 1.1 bsh {
907 1.1 bsh struct pxa2x0_lcd_screen *scr = cookie;
908 1.1 bsh
909 1.15 peter return (*scr->rinfo.ri_ops.mapchar)(&scr->rinfo, c, cp);
910 1.1 bsh }
911 1.1 bsh
912 1.1 bsh static void
913 1.4 bsh pxa2x0_lcd_putchar(void *cookie, int row, int col, u_int uc, long attr)
914 1.1 bsh {
915 1.1 bsh struct pxa2x0_lcd_screen *scr = cookie;
916 1.1 bsh
917 1.15 peter (*scr->rinfo.ri_ops.putchar)(&scr->rinfo, row, col, uc, attr);
918 1.1 bsh }
919 1.1 bsh
920 1.1 bsh static void
921 1.4 bsh pxa2x0_lcd_copycols(void *cookie, int row, int src, int dst, int num)
922 1.1 bsh {
923 1.1 bsh struct pxa2x0_lcd_screen *scr = cookie;
924 1.1 bsh
925 1.15 peter (*scr->rinfo.ri_ops.copycols)(&scr->rinfo, row, src, dst, num);
926 1.1 bsh }
927 1.1 bsh
928 1.1 bsh static void
929 1.4 bsh pxa2x0_lcd_erasecols(void *cookie, int row, int col, int num, long attr)
930 1.1 bsh {
931 1.1 bsh struct pxa2x0_lcd_screen *scr = cookie;
932 1.1 bsh
933 1.15 peter (*scr->rinfo.ri_ops.erasecols)(&scr->rinfo, row, col, num, attr);
934 1.1 bsh }
935 1.1 bsh
936 1.1 bsh static void
937 1.4 bsh pxa2x0_lcd_copyrows(void *cookie, int src, int dst, int num)
938 1.1 bsh {
939 1.1 bsh struct pxa2x0_lcd_screen *scr = cookie;
940 1.1 bsh
941 1.15 peter (*scr->rinfo.ri_ops.copyrows)(&scr->rinfo, src, dst, num);
942 1.1 bsh }
943 1.1 bsh
944 1.1 bsh static void
945 1.4 bsh pxa2x0_lcd_eraserows(void *cookie, int row, int num, long attr)
946 1.1 bsh {
947 1.1 bsh struct pxa2x0_lcd_screen *scr = cookie;
948 1.1 bsh
949 1.15 peter (*scr->rinfo.ri_ops.eraserows)(&scr->rinfo, row, num, attr);
950 1.1 bsh }
951 1.1 bsh
952 1.1 bsh static int
953 1.4 bsh pxa2x0_lcd_alloc_attr(void *cookie, int fg, int bg, int flg, long *attr)
954 1.1 bsh {
955 1.1 bsh struct pxa2x0_lcd_screen *scr = cookie;
956 1.1 bsh
957 1.15 peter return (*scr->rinfo.ri_ops.allocattr)(&scr->rinfo, fg, bg, flg, attr);
958 1.1 bsh }
959 1.1 bsh
960 1.1 bsh const struct wsdisplay_emulops pxa2x0_lcd_emulops = {
961 1.1 bsh pxa2x0_lcd_cursor,
962 1.1 bsh pxa2x0_lcd_mapchar,
963 1.1 bsh pxa2x0_lcd_putchar,
964 1.1 bsh pxa2x0_lcd_copycols,
965 1.1 bsh pxa2x0_lcd_erasecols,
966 1.1 bsh pxa2x0_lcd_copyrows,
967 1.1 bsh pxa2x0_lcd_eraserows,
968 1.1 bsh pxa2x0_lcd_alloc_attr
969 1.1 bsh };
970 1.1 bsh
971 1.1 bsh #endif /* NWSDISPLAY > 0 */
972