blob: 155caf02bcada44a5177e762a7c25d26d57ed141 [file] [log] [blame]
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +03001/*
2 * linux/drivers/video/omap2/dss/rfbi.c
3 *
4 * Copyright (C) 2009 Nokia Corporation
5 * Author: Tomi Valkeinen <tomi.valkeinen@nokia.com>
6 *
7 * Some code and ideas taken from drivers/video/omap/ driver
8 * by Imre Deak.
9 *
10 * This program is free software; you can redistribute it and/or modify it
11 * under the terms of the GNU General Public License version 2 as published by
12 * the Free Software Foundation.
13 *
14 * This program is distributed in the hope that it will be useful, but WITHOUT
15 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
16 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
17 * more details.
18 *
19 * You should have received a copy of the GNU General Public License along with
20 * this program. If not, see <http://www.gnu.org/licenses/>.
21 */
22
23#define DSS_SUBSYS_NAME "RFBI"
24
25#include <linux/kernel.h>
26#include <linux/dma-mapping.h>
27#include <linux/vmalloc.h>
28#include <linux/clk.h>
29#include <linux/io.h>
30#include <linux/delay.h>
31#include <linux/kfifo.h>
32#include <linux/ktime.h>
33#include <linux/hrtimer.h>
34#include <linux/seq_file.h>
Tomi Valkeinen773139f2011-04-21 19:50:31 +030035#include <linux/semaphore.h>
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +030036
Tomi Valkeinena0b38cc2011-05-11 14:05:07 +030037#include <video/omapdss.h>
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +030038#include "dss.h"
39
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +030040struct rfbi_reg { u16 idx; };
41
42#define RFBI_REG(idx) ((const struct rfbi_reg) { idx })
43
44#define RFBI_REVISION RFBI_REG(0x0000)
45#define RFBI_SYSCONFIG RFBI_REG(0x0010)
46#define RFBI_SYSSTATUS RFBI_REG(0x0014)
47#define RFBI_CONTROL RFBI_REG(0x0040)
48#define RFBI_PIXEL_CNT RFBI_REG(0x0044)
49#define RFBI_LINE_NUMBER RFBI_REG(0x0048)
50#define RFBI_CMD RFBI_REG(0x004c)
51#define RFBI_PARAM RFBI_REG(0x0050)
52#define RFBI_DATA RFBI_REG(0x0054)
53#define RFBI_READ RFBI_REG(0x0058)
54#define RFBI_STATUS RFBI_REG(0x005c)
55
56#define RFBI_CONFIG(n) RFBI_REG(0x0060 + (n)*0x18)
57#define RFBI_ONOFF_TIME(n) RFBI_REG(0x0064 + (n)*0x18)
58#define RFBI_CYCLE_TIME(n) RFBI_REG(0x0068 + (n)*0x18)
59#define RFBI_DATA_CYCLE1(n) RFBI_REG(0x006c + (n)*0x18)
60#define RFBI_DATA_CYCLE2(n) RFBI_REG(0x0070 + (n)*0x18)
61#define RFBI_DATA_CYCLE3(n) RFBI_REG(0x0074 + (n)*0x18)
62
63#define RFBI_VSYNC_WIDTH RFBI_REG(0x0090)
64#define RFBI_HSYNC_WIDTH RFBI_REG(0x0094)
65
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +030066#define REG_FLD_MOD(idx, val, start, end) \
67 rfbi_write_reg(idx, FLD_MOD(rfbi_read_reg(idx), val, start, end))
68
69/* To work around an RFBI transfer rate limitation */
70#define OMAP_RFBI_RATE_LIMIT 1
71
72enum omap_rfbi_cycleformat {
73 OMAP_DSS_RFBI_CYCLEFORMAT_1_1 = 0,
74 OMAP_DSS_RFBI_CYCLEFORMAT_2_1 = 1,
75 OMAP_DSS_RFBI_CYCLEFORMAT_3_1 = 2,
76 OMAP_DSS_RFBI_CYCLEFORMAT_3_2 = 3,
77};
78
79enum omap_rfbi_datatype {
80 OMAP_DSS_RFBI_DATATYPE_12 = 0,
81 OMAP_DSS_RFBI_DATATYPE_16 = 1,
82 OMAP_DSS_RFBI_DATATYPE_18 = 2,
83 OMAP_DSS_RFBI_DATATYPE_24 = 3,
84};
85
86enum omap_rfbi_parallelmode {
87 OMAP_DSS_RFBI_PARALLELMODE_8 = 0,
88 OMAP_DSS_RFBI_PARALLELMODE_9 = 1,
89 OMAP_DSS_RFBI_PARALLELMODE_12 = 2,
90 OMAP_DSS_RFBI_PARALLELMODE_16 = 3,
91};
92
93enum update_cmd {
94 RFBI_CMD_UPDATE = 0,
95 RFBI_CMD_SYNC = 1,
96};
97
98static int rfbi_convert_timings(struct rfbi_timings *t);
99static void rfbi_get_clk_info(u32 *clk_period, u32 *max_clk_div);
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300100
101static struct {
Senthilvadivu Guruswamy3448d502011-01-24 06:21:59 +0000102 struct platform_device *pdev;
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300103 void __iomem *base;
104
105 unsigned long l4_khz;
106
107 enum omap_rfbi_datatype datatype;
108 enum omap_rfbi_parallelmode parallelmode;
109
110 enum omap_rfbi_te_mode te_mode;
111 int te_enabled;
112
113 void (*framedone_callback)(void *data);
114 void *framedone_callback_data;
115
116 struct omap_dss_device *dssdev[2];
117
Tomi Valkeinenfc248a42010-01-04 15:23:50 +0200118 struct kfifo cmd_fifo;
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300119 spinlock_t cmd_lock;
120 struct completion cmd_done;
121 atomic_t cmd_fifo_full;
122 atomic_t cmd_pending;
Tomi Valkeinen773139f2011-04-21 19:50:31 +0300123
124 struct semaphore bus_lock;
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300125} rfbi;
126
127struct update_region {
128 u16 x;
129 u16 y;
130 u16 w;
131 u16 h;
132};
133
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300134static inline void rfbi_write_reg(const struct rfbi_reg idx, u32 val)
135{
136 __raw_writel(val, rfbi.base + idx.idx);
137}
138
139static inline u32 rfbi_read_reg(const struct rfbi_reg idx)
140{
141 return __raw_readl(rfbi.base + idx.idx);
142}
143
144static void rfbi_enable_clocks(bool enable)
145{
146 if (enable)
Archit Taneja6af9cd12011-01-31 16:27:44 +0000147 dss_clk_enable(DSS_CLK_ICK | DSS_CLK_FCK);
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300148 else
Archit Taneja6af9cd12011-01-31 16:27:44 +0000149 dss_clk_disable(DSS_CLK_ICK | DSS_CLK_FCK);
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300150}
151
Tomi Valkeinen773139f2011-04-21 19:50:31 +0300152void rfbi_bus_lock(void)
153{
154 down(&rfbi.bus_lock);
155}
156EXPORT_SYMBOL(rfbi_bus_lock);
157
158void rfbi_bus_unlock(void)
159{
160 up(&rfbi.bus_lock);
161}
162EXPORT_SYMBOL(rfbi_bus_unlock);
163
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300164void omap_rfbi_write_command(const void *buf, u32 len)
165{
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300166 switch (rfbi.parallelmode) {
167 case OMAP_DSS_RFBI_PARALLELMODE_8:
168 {
169 const u8 *b = buf;
170 for (; len; len--)
171 rfbi_write_reg(RFBI_CMD, *b++);
172 break;
173 }
174
175 case OMAP_DSS_RFBI_PARALLELMODE_16:
176 {
177 const u16 *w = buf;
178 BUG_ON(len & 1);
179 for (; len; len -= 2)
180 rfbi_write_reg(RFBI_CMD, *w++);
181 break;
182 }
183
184 case OMAP_DSS_RFBI_PARALLELMODE_9:
185 case OMAP_DSS_RFBI_PARALLELMODE_12:
186 default:
187 BUG();
188 }
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300189}
190EXPORT_SYMBOL(omap_rfbi_write_command);
191
192void omap_rfbi_read_data(void *buf, u32 len)
193{
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300194 switch (rfbi.parallelmode) {
195 case OMAP_DSS_RFBI_PARALLELMODE_8:
196 {
197 u8 *b = buf;
198 for (; len; len--) {
199 rfbi_write_reg(RFBI_READ, 0);
200 *b++ = rfbi_read_reg(RFBI_READ);
201 }
202 break;
203 }
204
205 case OMAP_DSS_RFBI_PARALLELMODE_16:
206 {
207 u16 *w = buf;
208 BUG_ON(len & ~1);
209 for (; len; len -= 2) {
210 rfbi_write_reg(RFBI_READ, 0);
211 *w++ = rfbi_read_reg(RFBI_READ);
212 }
213 break;
214 }
215
216 case OMAP_DSS_RFBI_PARALLELMODE_9:
217 case OMAP_DSS_RFBI_PARALLELMODE_12:
218 default:
219 BUG();
220 }
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300221}
222EXPORT_SYMBOL(omap_rfbi_read_data);
223
224void omap_rfbi_write_data(const void *buf, u32 len)
225{
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300226 switch (rfbi.parallelmode) {
227 case OMAP_DSS_RFBI_PARALLELMODE_8:
228 {
229 const u8 *b = buf;
230 for (; len; len--)
231 rfbi_write_reg(RFBI_PARAM, *b++);
232 break;
233 }
234
235 case OMAP_DSS_RFBI_PARALLELMODE_16:
236 {
237 const u16 *w = buf;
238 BUG_ON(len & 1);
239 for (; len; len -= 2)
240 rfbi_write_reg(RFBI_PARAM, *w++);
241 break;
242 }
243
244 case OMAP_DSS_RFBI_PARALLELMODE_9:
245 case OMAP_DSS_RFBI_PARALLELMODE_12:
246 default:
247 BUG();
248
249 }
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300250}
251EXPORT_SYMBOL(omap_rfbi_write_data);
252
253void omap_rfbi_write_pixels(const void __iomem *buf, int scr_width,
254 u16 x, u16 y,
255 u16 w, u16 h)
256{
257 int start_offset = scr_width * y + x;
258 int horiz_offset = scr_width - w;
259 int i;
260
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300261 if (rfbi.datatype == OMAP_DSS_RFBI_DATATYPE_16 &&
262 rfbi.parallelmode == OMAP_DSS_RFBI_PARALLELMODE_8) {
263 const u16 __iomem *pd = buf;
264 pd += start_offset;
265
266 for (; h; --h) {
267 for (i = 0; i < w; ++i) {
268 const u8 __iomem *b = (const u8 __iomem *)pd;
269 rfbi_write_reg(RFBI_PARAM, __raw_readb(b+1));
270 rfbi_write_reg(RFBI_PARAM, __raw_readb(b+0));
271 ++pd;
272 }
273 pd += horiz_offset;
274 }
275 } else if (rfbi.datatype == OMAP_DSS_RFBI_DATATYPE_24 &&
276 rfbi.parallelmode == OMAP_DSS_RFBI_PARALLELMODE_8) {
277 const u32 __iomem *pd = buf;
278 pd += start_offset;
279
280 for (; h; --h) {
281 for (i = 0; i < w; ++i) {
282 const u8 __iomem *b = (const u8 __iomem *)pd;
283 rfbi_write_reg(RFBI_PARAM, __raw_readb(b+2));
284 rfbi_write_reg(RFBI_PARAM, __raw_readb(b+1));
285 rfbi_write_reg(RFBI_PARAM, __raw_readb(b+0));
286 ++pd;
287 }
288 pd += horiz_offset;
289 }
290 } else if (rfbi.datatype == OMAP_DSS_RFBI_DATATYPE_16 &&
291 rfbi.parallelmode == OMAP_DSS_RFBI_PARALLELMODE_16) {
292 const u16 __iomem *pd = buf;
293 pd += start_offset;
294
295 for (; h; --h) {
296 for (i = 0; i < w; ++i) {
297 rfbi_write_reg(RFBI_PARAM, __raw_readw(pd));
298 ++pd;
299 }
300 pd += horiz_offset;
301 }
302 } else {
303 BUG();
304 }
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300305}
306EXPORT_SYMBOL(omap_rfbi_write_pixels);
307
Sumit Semwal64ba4f72010-12-02 11:27:10 +0000308void rfbi_transfer_area(struct omap_dss_device *dssdev, u16 width,
309 u16 height, void (*callback)(void *data), void *data)
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300310{
311 u32 l;
312
313 /*BUG_ON(callback == 0);*/
314 BUG_ON(rfbi.framedone_callback != NULL);
315
316 DSSDBG("rfbi_transfer_area %dx%d\n", width, height);
317
Sumit Semwal64ba4f72010-12-02 11:27:10 +0000318 dispc_set_lcd_size(dssdev->manager->id, width, height);
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300319
Sumit Semwal64ba4f72010-12-02 11:27:10 +0000320 dispc_enable_channel(dssdev->manager->id, true);
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300321
322 rfbi.framedone_callback = callback;
323 rfbi.framedone_callback_data = data;
324
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300325 rfbi_write_reg(RFBI_PIXEL_CNT, width * height);
326
327 l = rfbi_read_reg(RFBI_CONTROL);
328 l = FLD_MOD(l, 1, 0, 0); /* enable */
329 if (!rfbi.te_enabled)
330 l = FLD_MOD(l, 1, 4, 4); /* ITE */
331
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300332 rfbi_write_reg(RFBI_CONTROL, l);
333}
334
335static void framedone_callback(void *data, u32 mask)
336{
337 void (*callback)(void *data);
338
339 DSSDBG("FRAMEDONE\n");
340
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300341 REG_FLD_MOD(RFBI_CONTROL, 0, 0, 0);
342
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300343 callback = rfbi.framedone_callback;
344 rfbi.framedone_callback = NULL;
345
Tomi Valkeinen18946f62010-01-12 14:16:41 +0200346 if (callback != NULL)
347 callback(rfbi.framedone_callback_data);
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300348
349 atomic_set(&rfbi.cmd_pending, 0);
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300350}
351
352#if 1 /* VERBOSE */
353static void rfbi_print_timings(void)
354{
355 u32 l;
356 u32 time;
357
358 l = rfbi_read_reg(RFBI_CONFIG(0));
359 time = 1000000000 / rfbi.l4_khz;
360 if (l & (1 << 4))
361 time *= 2;
362
363 DSSDBG("Tick time %u ps\n", time);
364 l = rfbi_read_reg(RFBI_ONOFF_TIME(0));
365 DSSDBG("CSONTIME %d, CSOFFTIME %d, WEONTIME %d, WEOFFTIME %d, "
366 "REONTIME %d, REOFFTIME %d\n",
367 l & 0x0f, (l >> 4) & 0x3f, (l >> 10) & 0x0f, (l >> 14) & 0x3f,
368 (l >> 20) & 0x0f, (l >> 24) & 0x3f);
369
370 l = rfbi_read_reg(RFBI_CYCLE_TIME(0));
371 DSSDBG("WECYCLETIME %d, RECYCLETIME %d, CSPULSEWIDTH %d, "
372 "ACCESSTIME %d\n",
373 (l & 0x3f), (l >> 6) & 0x3f, (l >> 12) & 0x3f,
374 (l >> 22) & 0x3f);
375}
376#else
377static void rfbi_print_timings(void) {}
378#endif
379
380
381
382
383static u32 extif_clk_period;
384
385static inline unsigned long round_to_extif_ticks(unsigned long ps, int div)
386{
387 int bus_tick = extif_clk_period * div;
388 return (ps + bus_tick - 1) / bus_tick * bus_tick;
389}
390
391static int calc_reg_timing(struct rfbi_timings *t, int div)
392{
393 t->clk_div = div;
394
395 t->cs_on_time = round_to_extif_ticks(t->cs_on_time, div);
396
397 t->we_on_time = round_to_extif_ticks(t->we_on_time, div);
398 t->we_off_time = round_to_extif_ticks(t->we_off_time, div);
399 t->we_cycle_time = round_to_extif_ticks(t->we_cycle_time, div);
400
401 t->re_on_time = round_to_extif_ticks(t->re_on_time, div);
402 t->re_off_time = round_to_extif_ticks(t->re_off_time, div);
403 t->re_cycle_time = round_to_extif_ticks(t->re_cycle_time, div);
404
405 t->access_time = round_to_extif_ticks(t->access_time, div);
406 t->cs_off_time = round_to_extif_ticks(t->cs_off_time, div);
407 t->cs_pulse_width = round_to_extif_ticks(t->cs_pulse_width, div);
408
409 DSSDBG("[reg]cson %d csoff %d reon %d reoff %d\n",
410 t->cs_on_time, t->cs_off_time, t->re_on_time, t->re_off_time);
411 DSSDBG("[reg]weon %d weoff %d recyc %d wecyc %d\n",
412 t->we_on_time, t->we_off_time, t->re_cycle_time,
413 t->we_cycle_time);
414 DSSDBG("[reg]rdaccess %d cspulse %d\n",
415 t->access_time, t->cs_pulse_width);
416
417 return rfbi_convert_timings(t);
418}
419
420static int calc_extif_timings(struct rfbi_timings *t)
421{
422 u32 max_clk_div;
423 int div;
424
425 rfbi_get_clk_info(&extif_clk_period, &max_clk_div);
426 for (div = 1; div <= max_clk_div; div++) {
427 if (calc_reg_timing(t, div) == 0)
428 break;
429 }
430
431 if (div <= max_clk_div)
432 return 0;
433
434 DSSERR("can't setup timings\n");
435 return -1;
436}
437
438
439void rfbi_set_timings(int rfbi_module, struct rfbi_timings *t)
440{
441 int r;
442
443 if (!t->converted) {
444 r = calc_extif_timings(t);
445 if (r < 0)
446 DSSERR("Failed to calc timings\n");
447 }
448
449 BUG_ON(!t->converted);
450
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300451 rfbi_write_reg(RFBI_ONOFF_TIME(rfbi_module), t->tim[0]);
452 rfbi_write_reg(RFBI_CYCLE_TIME(rfbi_module), t->tim[1]);
453
454 /* TIMEGRANULARITY */
455 REG_FLD_MOD(RFBI_CONFIG(rfbi_module),
456 (t->tim[2] ? 1 : 0), 4, 4);
457
458 rfbi_print_timings();
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300459}
460
461static int ps_to_rfbi_ticks(int time, int div)
462{
463 unsigned long tick_ps;
464 int ret;
465
466 /* Calculate in picosecs to yield more exact results */
467 tick_ps = 1000000000 / (rfbi.l4_khz) * div;
468
469 ret = (time + tick_ps - 1) / tick_ps;
470
471 return ret;
472}
473
474#ifdef OMAP_RFBI_RATE_LIMIT
475unsigned long rfbi_get_max_tx_rate(void)
476{
477 unsigned long l4_rate, dss1_rate;
478 int min_l4_ticks = 0;
479 int i;
480
481 /* According to TI this can't be calculated so make the
482 * adjustments for a couple of known frequencies and warn for
483 * others.
484 */
485 static const struct {
486 unsigned long l4_clk; /* HZ */
487 unsigned long dss1_clk; /* HZ */
488 unsigned long min_l4_ticks;
489 } ftab[] = {
490 { 55, 132, 7, }, /* 7.86 MPix/s */
491 { 110, 110, 12, }, /* 9.16 MPix/s */
492 { 110, 132, 10, }, /* 11 Mpix/s */
493 { 120, 120, 10, }, /* 12 Mpix/s */
494 { 133, 133, 10, }, /* 13.3 Mpix/s */
495 };
496
497 l4_rate = rfbi.l4_khz / 1000;
Archit Taneja6af9cd12011-01-31 16:27:44 +0000498 dss1_rate = dss_clk_get_rate(DSS_CLK_FCK) / 1000000;
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300499
500 for (i = 0; i < ARRAY_SIZE(ftab); i++) {
501 /* Use a window instead of an exact match, to account
502 * for different DPLL multiplier / divider pairs.
503 */
504 if (abs(ftab[i].l4_clk - l4_rate) < 3 &&
505 abs(ftab[i].dss1_clk - dss1_rate) < 3) {
506 min_l4_ticks = ftab[i].min_l4_ticks;
507 break;
508 }
509 }
510 if (i == ARRAY_SIZE(ftab)) {
511 /* Can't be sure, return anyway the maximum not
512 * rate-limited. This might cause a problem only for the
513 * tearing synchronisation.
514 */
515 DSSERR("can't determine maximum RFBI transfer rate\n");
516 return rfbi.l4_khz * 1000;
517 }
518 return rfbi.l4_khz * 1000 / min_l4_ticks;
519}
520#else
521int rfbi_get_max_tx_rate(void)
522{
523 return rfbi.l4_khz * 1000;
524}
525#endif
526
527static void rfbi_get_clk_info(u32 *clk_period, u32 *max_clk_div)
528{
529 *clk_period = 1000000000 / rfbi.l4_khz;
530 *max_clk_div = 2;
531}
532
533static int rfbi_convert_timings(struct rfbi_timings *t)
534{
535 u32 l;
536 int reon, reoff, weon, weoff, cson, csoff, cs_pulse;
537 int actim, recyc, wecyc;
538 int div = t->clk_div;
539
540 if (div <= 0 || div > 2)
541 return -1;
542
543 /* Make sure that after conversion it still holds that:
544 * weoff > weon, reoff > reon, recyc >= reoff, wecyc >= weoff,
545 * csoff > cson, csoff >= max(weoff, reoff), actim > reon
546 */
547 weon = ps_to_rfbi_ticks(t->we_on_time, div);
548 weoff = ps_to_rfbi_ticks(t->we_off_time, div);
549 if (weoff <= weon)
550 weoff = weon + 1;
551 if (weon > 0x0f)
552 return -1;
553 if (weoff > 0x3f)
554 return -1;
555
556 reon = ps_to_rfbi_ticks(t->re_on_time, div);
557 reoff = ps_to_rfbi_ticks(t->re_off_time, div);
558 if (reoff <= reon)
559 reoff = reon + 1;
560 if (reon > 0x0f)
561 return -1;
562 if (reoff > 0x3f)
563 return -1;
564
565 cson = ps_to_rfbi_ticks(t->cs_on_time, div);
566 csoff = ps_to_rfbi_ticks(t->cs_off_time, div);
567 if (csoff <= cson)
568 csoff = cson + 1;
569 if (csoff < max(weoff, reoff))
570 csoff = max(weoff, reoff);
571 if (cson > 0x0f)
572 return -1;
573 if (csoff > 0x3f)
574 return -1;
575
576 l = cson;
577 l |= csoff << 4;
578 l |= weon << 10;
579 l |= weoff << 14;
580 l |= reon << 20;
581 l |= reoff << 24;
582
583 t->tim[0] = l;
584
585 actim = ps_to_rfbi_ticks(t->access_time, div);
586 if (actim <= reon)
587 actim = reon + 1;
588 if (actim > 0x3f)
589 return -1;
590
591 wecyc = ps_to_rfbi_ticks(t->we_cycle_time, div);
592 if (wecyc < weoff)
593 wecyc = weoff;
594 if (wecyc > 0x3f)
595 return -1;
596
597 recyc = ps_to_rfbi_ticks(t->re_cycle_time, div);
598 if (recyc < reoff)
599 recyc = reoff;
600 if (recyc > 0x3f)
601 return -1;
602
603 cs_pulse = ps_to_rfbi_ticks(t->cs_pulse_width, div);
604 if (cs_pulse > 0x3f)
605 return -1;
606
607 l = wecyc;
608 l |= recyc << 6;
609 l |= cs_pulse << 12;
610 l |= actim << 22;
611
612 t->tim[1] = l;
613
614 t->tim[2] = div - 1;
615
616 t->converted = 1;
617
618 return 0;
619}
620
621/* xxx FIX module selection missing */
622int omap_rfbi_setup_te(enum omap_rfbi_te_mode mode,
623 unsigned hs_pulse_time, unsigned vs_pulse_time,
624 int hs_pol_inv, int vs_pol_inv, int extif_div)
625{
626 int hs, vs;
627 int min;
628 u32 l;
629
630 hs = ps_to_rfbi_ticks(hs_pulse_time, 1);
631 vs = ps_to_rfbi_ticks(vs_pulse_time, 1);
632 if (hs < 2)
633 return -EDOM;
634 if (mode == OMAP_DSS_RFBI_TE_MODE_2)
635 min = 2;
636 else /* OMAP_DSS_RFBI_TE_MODE_1 */
637 min = 4;
638 if (vs < min)
639 return -EDOM;
640 if (vs == hs)
641 return -EINVAL;
642 rfbi.te_mode = mode;
643 DSSDBG("setup_te: mode %d hs %d vs %d hs_inv %d vs_inv %d\n",
644 mode, hs, vs, hs_pol_inv, vs_pol_inv);
645
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300646 rfbi_write_reg(RFBI_HSYNC_WIDTH, hs);
647 rfbi_write_reg(RFBI_VSYNC_WIDTH, vs);
648
649 l = rfbi_read_reg(RFBI_CONFIG(0));
650 if (hs_pol_inv)
651 l &= ~(1 << 21);
652 else
653 l |= 1 << 21;
654 if (vs_pol_inv)
655 l &= ~(1 << 20);
656 else
657 l |= 1 << 20;
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300658
659 return 0;
660}
661EXPORT_SYMBOL(omap_rfbi_setup_te);
662
663/* xxx FIX module selection missing */
664int omap_rfbi_enable_te(bool enable, unsigned line)
665{
666 u32 l;
667
668 DSSDBG("te %d line %d mode %d\n", enable, line, rfbi.te_mode);
669 if (line > (1 << 11) - 1)
670 return -EINVAL;
671
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300672 l = rfbi_read_reg(RFBI_CONFIG(0));
673 l &= ~(0x3 << 2);
674 if (enable) {
675 rfbi.te_enabled = 1;
676 l |= rfbi.te_mode << 2;
677 } else
678 rfbi.te_enabled = 0;
679 rfbi_write_reg(RFBI_CONFIG(0), l);
680 rfbi_write_reg(RFBI_LINE_NUMBER, line);
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300681
682 return 0;
683}
684EXPORT_SYMBOL(omap_rfbi_enable_te);
685
686#if 0
687static void rfbi_enable_config(int enable1, int enable2)
688{
689 u32 l;
690 int cs = 0;
691
692 if (enable1)
693 cs |= 1<<0;
694 if (enable2)
695 cs |= 1<<1;
696
697 rfbi_enable_clocks(1);
698
699 l = rfbi_read_reg(RFBI_CONTROL);
700
701 l = FLD_MOD(l, cs, 3, 2);
702 l = FLD_MOD(l, 0, 1, 1);
703
704 rfbi_write_reg(RFBI_CONTROL, l);
705
706
707 l = rfbi_read_reg(RFBI_CONFIG(0));
708 l = FLD_MOD(l, 0, 3, 2); /* TRIGGERMODE: ITE */
709 /*l |= FLD_VAL(2, 8, 7); */ /* L4FORMAT, 2pix/L4 */
710 /*l |= FLD_VAL(0, 8, 7); */ /* L4FORMAT, 1pix/L4 */
711
712 l = FLD_MOD(l, 0, 16, 16); /* A0POLARITY */
713 l = FLD_MOD(l, 1, 20, 20); /* TE_VSYNC_POLARITY */
714 l = FLD_MOD(l, 1, 21, 21); /* HSYNCPOLARITY */
715
716 l = FLD_MOD(l, OMAP_DSS_RFBI_PARALLELMODE_8, 1, 0);
717 rfbi_write_reg(RFBI_CONFIG(0), l);
718
719 rfbi_enable_clocks(0);
720}
721#endif
722
723int rfbi_configure(int rfbi_module, int bpp, int lines)
724{
725 u32 l;
726 int cycle1 = 0, cycle2 = 0, cycle3 = 0;
727 enum omap_rfbi_cycleformat cycleformat;
728 enum omap_rfbi_datatype datatype;
729 enum omap_rfbi_parallelmode parallelmode;
730
731 switch (bpp) {
732 case 12:
733 datatype = OMAP_DSS_RFBI_DATATYPE_12;
734 break;
735 case 16:
736 datatype = OMAP_DSS_RFBI_DATATYPE_16;
737 break;
738 case 18:
739 datatype = OMAP_DSS_RFBI_DATATYPE_18;
740 break;
741 case 24:
742 datatype = OMAP_DSS_RFBI_DATATYPE_24;
743 break;
744 default:
745 BUG();
746 return 1;
747 }
748 rfbi.datatype = datatype;
749
750 switch (lines) {
751 case 8:
752 parallelmode = OMAP_DSS_RFBI_PARALLELMODE_8;
753 break;
754 case 9:
755 parallelmode = OMAP_DSS_RFBI_PARALLELMODE_9;
756 break;
757 case 12:
758 parallelmode = OMAP_DSS_RFBI_PARALLELMODE_12;
759 break;
760 case 16:
761 parallelmode = OMAP_DSS_RFBI_PARALLELMODE_16;
762 break;
763 default:
764 BUG();
765 return 1;
766 }
767 rfbi.parallelmode = parallelmode;
768
769 if ((bpp % lines) == 0) {
770 switch (bpp / lines) {
771 case 1:
772 cycleformat = OMAP_DSS_RFBI_CYCLEFORMAT_1_1;
773 break;
774 case 2:
775 cycleformat = OMAP_DSS_RFBI_CYCLEFORMAT_2_1;
776 break;
777 case 3:
778 cycleformat = OMAP_DSS_RFBI_CYCLEFORMAT_3_1;
779 break;
780 default:
781 BUG();
782 return 1;
783 }
784 } else if ((2 * bpp % lines) == 0) {
785 if ((2 * bpp / lines) == 3)
786 cycleformat = OMAP_DSS_RFBI_CYCLEFORMAT_3_2;
787 else {
788 BUG();
789 return 1;
790 }
791 } else {
792 BUG();
793 return 1;
794 }
795
796 switch (cycleformat) {
797 case OMAP_DSS_RFBI_CYCLEFORMAT_1_1:
798 cycle1 = lines;
799 break;
800
801 case OMAP_DSS_RFBI_CYCLEFORMAT_2_1:
802 cycle1 = lines;
803 cycle2 = lines;
804 break;
805
806 case OMAP_DSS_RFBI_CYCLEFORMAT_3_1:
807 cycle1 = lines;
808 cycle2 = lines;
809 cycle3 = lines;
810 break;
811
812 case OMAP_DSS_RFBI_CYCLEFORMAT_3_2:
813 cycle1 = lines;
814 cycle2 = (lines / 2) | ((lines / 2) << 16);
815 cycle3 = (lines << 16);
816 break;
817 }
818
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300819 REG_FLD_MOD(RFBI_CONTROL, 0, 3, 2); /* clear CS */
820
821 l = 0;
822 l |= FLD_VAL(parallelmode, 1, 0);
823 l |= FLD_VAL(0, 3, 2); /* TRIGGERMODE: ITE */
824 l |= FLD_VAL(0, 4, 4); /* TIMEGRANULARITY */
825 l |= FLD_VAL(datatype, 6, 5);
826 /* l |= FLD_VAL(2, 8, 7); */ /* L4FORMAT, 2pix/L4 */
827 l |= FLD_VAL(0, 8, 7); /* L4FORMAT, 1pix/L4 */
828 l |= FLD_VAL(cycleformat, 10, 9);
829 l |= FLD_VAL(0, 12, 11); /* UNUSEDBITS */
830 l |= FLD_VAL(0, 16, 16); /* A0POLARITY */
831 l |= FLD_VAL(0, 17, 17); /* REPOLARITY */
832 l |= FLD_VAL(0, 18, 18); /* WEPOLARITY */
833 l |= FLD_VAL(0, 19, 19); /* CSPOLARITY */
834 l |= FLD_VAL(1, 20, 20); /* TE_VSYNC_POLARITY */
835 l |= FLD_VAL(1, 21, 21); /* HSYNCPOLARITY */
836 rfbi_write_reg(RFBI_CONFIG(rfbi_module), l);
837
838 rfbi_write_reg(RFBI_DATA_CYCLE1(rfbi_module), cycle1);
839 rfbi_write_reg(RFBI_DATA_CYCLE2(rfbi_module), cycle2);
840 rfbi_write_reg(RFBI_DATA_CYCLE3(rfbi_module), cycle3);
841
842
843 l = rfbi_read_reg(RFBI_CONTROL);
844 l = FLD_MOD(l, rfbi_module+1, 3, 2); /* Select CSx */
845 l = FLD_MOD(l, 0, 1, 1); /* clear bypass */
846 rfbi_write_reg(RFBI_CONTROL, l);
847
848
849 DSSDBG("RFBI config: bpp %d, lines %d, cycles: 0x%x 0x%x 0x%x\n",
850 bpp, lines, cycle1, cycle2, cycle3);
851
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300852 return 0;
853}
Tomi Valkeinen1d5952a2011-04-29 15:57:01 +0300854
855int omap_rfbi_configure(struct omap_dss_device *dssdev, int pixel_size,
856 int data_lines)
857{
858 return rfbi_configure(dssdev->phy.rfbi.channel, pixel_size, data_lines);
859}
860EXPORT_SYMBOL(omap_rfbi_configure);
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300861
Tomi Valkeinen18946f62010-01-12 14:16:41 +0200862int omap_rfbi_prepare_update(struct omap_dss_device *dssdev,
863 u16 *x, u16 *y, u16 *w, u16 *h)
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300864{
Tomi Valkeinen18946f62010-01-12 14:16:41 +0200865 u16 dw, dh;
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300866
Tomi Valkeinen18946f62010-01-12 14:16:41 +0200867 dssdev->driver->get_resolution(dssdev, &dw, &dh);
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300868
Tomi Valkeinen18946f62010-01-12 14:16:41 +0200869 if (*x > dw || *y > dh)
870 return -EINVAL;
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300871
Tomi Valkeinen18946f62010-01-12 14:16:41 +0200872 if (*x + *w > dw)
873 return -EINVAL;
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300874
Tomi Valkeinen18946f62010-01-12 14:16:41 +0200875 if (*y + *h > dh)
876 return -EINVAL;
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300877
Tomi Valkeinen18946f62010-01-12 14:16:41 +0200878 if (*w == 1)
879 return -EINVAL;
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300880
Tomi Valkeinen18946f62010-01-12 14:16:41 +0200881 if (*w == 0 || *h == 0)
882 return -EINVAL;
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300883
884 if (dssdev->manager->caps & OMAP_DSS_OVL_MGR_CAP_DISPC) {
Tomi Valkeinen26a8c252010-06-09 15:31:34 +0300885 dss_setup_partial_planes(dssdev, x, y, w, h, true);
Sumit Semwal64ba4f72010-12-02 11:27:10 +0000886 dispc_set_lcd_size(dssdev->manager->id, *w, *h);
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300887 }
888
Tomi Valkeinen18946f62010-01-12 14:16:41 +0200889 return 0;
890}
891EXPORT_SYMBOL(omap_rfbi_prepare_update);
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300892
Tomi Valkeinen18946f62010-01-12 14:16:41 +0200893int omap_rfbi_update(struct omap_dss_device *dssdev,
894 u16 x, u16 y, u16 w, u16 h,
895 void (*callback)(void *), void *data)
896{
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300897 if (dssdev->manager->caps & OMAP_DSS_OVL_MGR_CAP_DISPC) {
Sumit Semwal64ba4f72010-12-02 11:27:10 +0000898 rfbi_transfer_area(dssdev, w, h, callback, data);
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300899 } else {
900 struct omap_overlay *ovl;
901 void __iomem *addr;
902 int scr_width;
903
904 ovl = dssdev->manager->overlays[0];
905 scr_width = ovl->info.screen_width;
906 addr = ovl->info.vaddr;
907
908 omap_rfbi_write_pixels(addr, scr_width, x, y, w, h);
909
Tomi Valkeinen18946f62010-01-12 14:16:41 +0200910 callback(data);
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300911 }
912
Tomi Valkeinen18946f62010-01-12 14:16:41 +0200913 return 0;
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300914}
Tomi Valkeinen18946f62010-01-12 14:16:41 +0200915EXPORT_SYMBOL(omap_rfbi_update);
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300916
917void rfbi_dump_regs(struct seq_file *s)
918{
919#define DUMPREG(r) seq_printf(s, "%-35s %08x\n", #r, rfbi_read_reg(r))
920
Archit Taneja6af9cd12011-01-31 16:27:44 +0000921 dss_clk_enable(DSS_CLK_ICK | DSS_CLK_FCK);
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300922
923 DUMPREG(RFBI_REVISION);
924 DUMPREG(RFBI_SYSCONFIG);
925 DUMPREG(RFBI_SYSSTATUS);
926 DUMPREG(RFBI_CONTROL);
927 DUMPREG(RFBI_PIXEL_CNT);
928 DUMPREG(RFBI_LINE_NUMBER);
929 DUMPREG(RFBI_CMD);
930 DUMPREG(RFBI_PARAM);
931 DUMPREG(RFBI_DATA);
932 DUMPREG(RFBI_READ);
933 DUMPREG(RFBI_STATUS);
934
935 DUMPREG(RFBI_CONFIG(0));
936 DUMPREG(RFBI_ONOFF_TIME(0));
937 DUMPREG(RFBI_CYCLE_TIME(0));
938 DUMPREG(RFBI_DATA_CYCLE1(0));
939 DUMPREG(RFBI_DATA_CYCLE2(0));
940 DUMPREG(RFBI_DATA_CYCLE3(0));
941
942 DUMPREG(RFBI_CONFIG(1));
943 DUMPREG(RFBI_ONOFF_TIME(1));
944 DUMPREG(RFBI_CYCLE_TIME(1));
945 DUMPREG(RFBI_DATA_CYCLE1(1));
946 DUMPREG(RFBI_DATA_CYCLE2(1));
947 DUMPREG(RFBI_DATA_CYCLE3(1));
948
949 DUMPREG(RFBI_VSYNC_WIDTH);
950 DUMPREG(RFBI_HSYNC_WIDTH);
951
Archit Taneja6af9cd12011-01-31 16:27:44 +0000952 dss_clk_disable(DSS_CLK_ICK | DSS_CLK_FCK);
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300953#undef DUMPREG
954}
955
Tomi Valkeinen37ac60e2010-01-12 15:12:07 +0200956int omapdss_rfbi_display_enable(struct omap_dss_device *dssdev)
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300957{
958 int r;
959
Tomi Valkeinen5be685f2011-04-21 19:53:25 +0300960 rfbi_enable_clocks(1);
961
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300962 r = omap_dss_start_device(dssdev);
963 if (r) {
964 DSSERR("failed to start device\n");
965 goto err0;
966 }
967
968 r = omap_dispc_register_isr(framedone_callback, NULL,
969 DISPC_IRQ_FRAMEDONE);
970 if (r) {
971 DSSERR("can't get FRAMEDONE irq\n");
972 goto err1;
973 }
974
Sumit Semwal64ba4f72010-12-02 11:27:10 +0000975 dispc_set_lcd_display_type(dssdev->manager->id,
976 OMAP_DSS_LCD_DISPLAY_TFT);
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300977
Sumit Semwal64ba4f72010-12-02 11:27:10 +0000978 dispc_set_parallel_interface_mode(dssdev->manager->id,
979 OMAP_DSS_PARALLELMODE_RFBI);
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300980
Sumit Semwal64ba4f72010-12-02 11:27:10 +0000981 dispc_set_tft_data_lines(dssdev->manager->id, dssdev->ctrl.pixel_size);
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300982
983 rfbi_configure(dssdev->phy.rfbi.channel,
984 dssdev->ctrl.pixel_size,
985 dssdev->phy.rfbi.data_lines);
986
987 rfbi_set_timings(dssdev->phy.rfbi.channel,
988 &dssdev->ctrl.rfbi_timings);
989
990
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300991 return 0;
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300992err1:
993 omap_dss_stop_device(dssdev);
994err0:
995 return r;
996}
Tomi Valkeinen37ac60e2010-01-12 15:12:07 +0200997EXPORT_SYMBOL(omapdss_rfbi_display_enable);
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +0300998
Tomi Valkeinen37ac60e2010-01-12 15:12:07 +0200999void omapdss_rfbi_display_disable(struct omap_dss_device *dssdev)
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +03001000{
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +03001001 omap_dispc_unregister_isr(framedone_callback, NULL,
1002 DISPC_IRQ_FRAMEDONE);
1003 omap_dss_stop_device(dssdev);
Tomi Valkeinen5be685f2011-04-21 19:53:25 +03001004
1005 rfbi_enable_clocks(0);
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +03001006}
Tomi Valkeinen37ac60e2010-01-12 15:12:07 +02001007EXPORT_SYMBOL(omapdss_rfbi_display_disable);
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +03001008
1009int rfbi_init_display(struct omap_dss_device *dssdev)
1010{
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +03001011 rfbi.dssdev[dssdev->phy.rfbi.channel] = dssdev;
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +03001012 dssdev->caps = OMAP_DSS_DISPLAY_CAP_MANUAL_UPDATE;
Tomi Valkeinen5c18adb2009-08-05 16:18:31 +03001013 return 0;
1014}
Senthilvadivu Guruswamy3448d502011-01-24 06:21:59 +00001015
1016/* RFBI HW IP initialisation */
1017static int omap_rfbihw_probe(struct platform_device *pdev)
1018{
1019 u32 rev;
1020 u32 l;
Senthilvadivu Guruswamyea9da362011-01-24 06:22:04 +00001021 struct resource *rfbi_mem;
Senthilvadivu Guruswamy3448d502011-01-24 06:21:59 +00001022
1023 rfbi.pdev = pdev;
1024
1025 spin_lock_init(&rfbi.cmd_lock);
Tomi Valkeinen773139f2011-04-21 19:50:31 +03001026 sema_init(&rfbi.bus_lock, 1);
Senthilvadivu Guruswamy3448d502011-01-24 06:21:59 +00001027
1028 init_completion(&rfbi.cmd_done);
1029 atomic_set(&rfbi.cmd_fifo_full, 0);
1030 atomic_set(&rfbi.cmd_pending, 0);
1031
Senthilvadivu Guruswamyea9da362011-01-24 06:22:04 +00001032 rfbi_mem = platform_get_resource(rfbi.pdev, IORESOURCE_MEM, 0);
1033 if (!rfbi_mem) {
1034 DSSERR("can't get IORESOURCE_MEM RFBI\n");
1035 return -EINVAL;
1036 }
1037 rfbi.base = ioremap(rfbi_mem->start, resource_size(rfbi_mem));
Senthilvadivu Guruswamy3448d502011-01-24 06:21:59 +00001038 if (!rfbi.base) {
1039 DSSERR("can't ioremap RFBI\n");
1040 return -ENOMEM;
1041 }
1042
1043 rfbi_enable_clocks(1);
1044
1045 msleep(10);
1046
1047 rfbi.l4_khz = dss_clk_get_rate(DSS_CLK_ICK) / 1000;
1048
1049 /* Enable autoidle and smart-idle */
1050 l = rfbi_read_reg(RFBI_SYSCONFIG);
1051 l |= (1 << 0) | (2 << 3);
1052 rfbi_write_reg(RFBI_SYSCONFIG, l);
1053
1054 rev = rfbi_read_reg(RFBI_REVISION);
Sumit Semwala06b62f2011-01-24 06:22:03 +00001055 dev_dbg(&pdev->dev, "OMAP RFBI rev %d.%d\n",
Senthilvadivu Guruswamy3448d502011-01-24 06:21:59 +00001056 FLD_GET(rev, 7, 4), FLD_GET(rev, 3, 0));
1057
1058 rfbi_enable_clocks(0);
1059
1060 return 0;
1061}
1062
1063static int omap_rfbihw_remove(struct platform_device *pdev)
1064{
1065 iounmap(rfbi.base);
1066 return 0;
1067}
1068
1069static struct platform_driver omap_rfbihw_driver = {
1070 .probe = omap_rfbihw_probe,
1071 .remove = omap_rfbihw_remove,
1072 .driver = {
1073 .name = "omapdss_rfbi",
1074 .owner = THIS_MODULE,
1075 },
1076};
1077
1078int rfbi_init_platform_driver(void)
1079{
1080 return platform_driver_register(&omap_rfbihw_driver);
1081}
1082
1083void rfbi_uninit_platform_driver(void)
1084{
1085 return platform_driver_unregister(&omap_rfbihw_driver);
1086}