xref: /openbmc/linux/drivers/gpu/drm/omapdrm/dss/dss.c (revision 23c2b932)
1 /*
2  * linux/drivers/video/omap2/dss/dss.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 "DSS"
24 
25 #include <linux/kernel.h>
26 #include <linux/module.h>
27 #include <linux/io.h>
28 #include <linux/export.h>
29 #include <linux/err.h>
30 #include <linux/delay.h>
31 #include <linux/seq_file.h>
32 #include <linux/clk.h>
33 #include <linux/pinctrl/consumer.h>
34 #include <linux/platform_device.h>
35 #include <linux/pm_runtime.h>
36 #include <linux/gfp.h>
37 #include <linux/sizes.h>
38 #include <linux/mfd/syscon.h>
39 #include <linux/regmap.h>
40 #include <linux/of.h>
41 #include <linux/regulator/consumer.h>
42 #include <linux/suspend.h>
43 #include <linux/component.h>
44 
45 #include <video/omapdss.h>
46 
47 #include "dss.h"
48 #include "dss_features.h"
49 
50 #define DSS_SZ_REGS			SZ_512
51 
52 struct dss_reg {
53 	u16 idx;
54 };
55 
56 #define DSS_REG(idx)			((const struct dss_reg) { idx })
57 
58 #define DSS_REVISION			DSS_REG(0x0000)
59 #define DSS_SYSCONFIG			DSS_REG(0x0010)
60 #define DSS_SYSSTATUS			DSS_REG(0x0014)
61 #define DSS_CONTROL			DSS_REG(0x0040)
62 #define DSS_SDI_CONTROL			DSS_REG(0x0044)
63 #define DSS_PLL_CONTROL			DSS_REG(0x0048)
64 #define DSS_SDI_STATUS			DSS_REG(0x005C)
65 
66 #define REG_GET(idx, start, end) \
67 	FLD_GET(dss_read_reg(idx), start, end)
68 
69 #define REG_FLD_MOD(idx, val, start, end) \
70 	dss_write_reg(idx, FLD_MOD(dss_read_reg(idx), val, start, end))
71 
72 struct dss_features {
73 	u8 fck_div_max;
74 	u8 dss_fck_multiplier;
75 	const char *parent_clk_name;
76 	const enum omap_display_type *ports;
77 	int num_ports;
78 	int (*dpi_select_source)(int port, enum omap_channel channel);
79 };
80 
81 static struct {
82 	struct platform_device *pdev;
83 	void __iomem    *base;
84 	struct regmap	*syscon_pll_ctrl;
85 	u32		syscon_pll_ctrl_offset;
86 
87 	struct clk	*parent_clk;
88 	struct clk	*dss_clk;
89 	unsigned long	dss_clk_rate;
90 
91 	unsigned long	cache_req_pck;
92 	unsigned long	cache_prate;
93 	struct dispc_clock_info cache_dispc_cinfo;
94 
95 	enum omap_dss_clk_source dsi_clk_source[MAX_NUM_DSI];
96 	enum omap_dss_clk_source dispc_clk_source;
97 	enum omap_dss_clk_source lcd_clk_source[MAX_DSS_LCD_MANAGERS];
98 
99 	bool		ctx_valid;
100 	u32		ctx[DSS_SZ_REGS / sizeof(u32)];
101 
102 	const struct dss_features *feat;
103 
104 	struct dss_pll	*video1_pll;
105 	struct dss_pll	*video2_pll;
106 } dss;
107 
108 static const char * const dss_generic_clk_source_names[] = {
109 	[OMAP_DSS_CLK_SRC_DSI_PLL_HSDIV_DISPC]	= "DSI_PLL_HSDIV_DISPC",
110 	[OMAP_DSS_CLK_SRC_DSI_PLL_HSDIV_DSI]	= "DSI_PLL_HSDIV_DSI",
111 	[OMAP_DSS_CLK_SRC_FCK]			= "DSS_FCK",
112 	[OMAP_DSS_CLK_SRC_DSI2_PLL_HSDIV_DISPC]	= "DSI_PLL2_HSDIV_DISPC",
113 	[OMAP_DSS_CLK_SRC_DSI2_PLL_HSDIV_DSI]	= "DSI_PLL2_HSDIV_DSI",
114 };
115 
116 static bool dss_initialized;
117 
118 bool omapdss_is_initialized(void)
119 {
120 	return dss_initialized;
121 }
122 EXPORT_SYMBOL(omapdss_is_initialized);
123 
124 static inline void dss_write_reg(const struct dss_reg idx, u32 val)
125 {
126 	__raw_writel(val, dss.base + idx.idx);
127 }
128 
129 static inline u32 dss_read_reg(const struct dss_reg idx)
130 {
131 	return __raw_readl(dss.base + idx.idx);
132 }
133 
134 #define SR(reg) \
135 	dss.ctx[(DSS_##reg).idx / sizeof(u32)] = dss_read_reg(DSS_##reg)
136 #define RR(reg) \
137 	dss_write_reg(DSS_##reg, dss.ctx[(DSS_##reg).idx / sizeof(u32)])
138 
139 static void dss_save_context(void)
140 {
141 	DSSDBG("dss_save_context\n");
142 
143 	SR(CONTROL);
144 
145 	if (dss_feat_get_supported_displays(OMAP_DSS_CHANNEL_LCD) &
146 			OMAP_DISPLAY_TYPE_SDI) {
147 		SR(SDI_CONTROL);
148 		SR(PLL_CONTROL);
149 	}
150 
151 	dss.ctx_valid = true;
152 
153 	DSSDBG("context saved\n");
154 }
155 
156 static void dss_restore_context(void)
157 {
158 	DSSDBG("dss_restore_context\n");
159 
160 	if (!dss.ctx_valid)
161 		return;
162 
163 	RR(CONTROL);
164 
165 	if (dss_feat_get_supported_displays(OMAP_DSS_CHANNEL_LCD) &
166 			OMAP_DISPLAY_TYPE_SDI) {
167 		RR(SDI_CONTROL);
168 		RR(PLL_CONTROL);
169 	}
170 
171 	DSSDBG("context restored\n");
172 }
173 
174 #undef SR
175 #undef RR
176 
177 void dss_ctrl_pll_enable(enum dss_pll_id pll_id, bool enable)
178 {
179 	unsigned shift;
180 	unsigned val;
181 
182 	if (!dss.syscon_pll_ctrl)
183 		return;
184 
185 	val = !enable;
186 
187 	switch (pll_id) {
188 	case DSS_PLL_VIDEO1:
189 		shift = 0;
190 		break;
191 	case DSS_PLL_VIDEO2:
192 		shift = 1;
193 		break;
194 	case DSS_PLL_HDMI:
195 		shift = 2;
196 		break;
197 	default:
198 		DSSERR("illegal DSS PLL ID %d\n", pll_id);
199 		return;
200 	}
201 
202 	regmap_update_bits(dss.syscon_pll_ctrl, dss.syscon_pll_ctrl_offset,
203 		1 << shift, val << shift);
204 }
205 
206 void dss_ctrl_pll_set_control_mux(enum dss_pll_id pll_id,
207 	enum omap_channel channel)
208 {
209 	unsigned shift, val;
210 
211 	if (!dss.syscon_pll_ctrl)
212 		return;
213 
214 	switch (channel) {
215 	case OMAP_DSS_CHANNEL_LCD:
216 		shift = 3;
217 
218 		switch (pll_id) {
219 		case DSS_PLL_VIDEO1:
220 			val = 0; break;
221 		case DSS_PLL_HDMI:
222 			val = 1; break;
223 		default:
224 			DSSERR("error in PLL mux config for LCD\n");
225 			return;
226 		}
227 
228 		break;
229 	case OMAP_DSS_CHANNEL_LCD2:
230 		shift = 5;
231 
232 		switch (pll_id) {
233 		case DSS_PLL_VIDEO1:
234 			val = 0; break;
235 		case DSS_PLL_VIDEO2:
236 			val = 1; break;
237 		case DSS_PLL_HDMI:
238 			val = 2; break;
239 		default:
240 			DSSERR("error in PLL mux config for LCD2\n");
241 			return;
242 		}
243 
244 		break;
245 	case OMAP_DSS_CHANNEL_LCD3:
246 		shift = 7;
247 
248 		switch (pll_id) {
249 		case DSS_PLL_VIDEO1:
250 			val = 1; break;
251 		case DSS_PLL_VIDEO2:
252 			val = 0; break;
253 		case DSS_PLL_HDMI:
254 			val = 2; break;
255 		default:
256 			DSSERR("error in PLL mux config for LCD3\n");
257 			return;
258 		}
259 
260 		break;
261 	default:
262 		DSSERR("error in PLL mux config\n");
263 		return;
264 	}
265 
266 	regmap_update_bits(dss.syscon_pll_ctrl, dss.syscon_pll_ctrl_offset,
267 		0x3 << shift, val << shift);
268 }
269 
270 void dss_sdi_init(int datapairs)
271 {
272 	u32 l;
273 
274 	BUG_ON(datapairs > 3 || datapairs < 1);
275 
276 	l = dss_read_reg(DSS_SDI_CONTROL);
277 	l = FLD_MOD(l, 0xf, 19, 15);		/* SDI_PDIV */
278 	l = FLD_MOD(l, datapairs-1, 3, 2);	/* SDI_PRSEL */
279 	l = FLD_MOD(l, 2, 1, 0);		/* SDI_BWSEL */
280 	dss_write_reg(DSS_SDI_CONTROL, l);
281 
282 	l = dss_read_reg(DSS_PLL_CONTROL);
283 	l = FLD_MOD(l, 0x7, 25, 22);	/* SDI_PLL_FREQSEL */
284 	l = FLD_MOD(l, 0xb, 16, 11);	/* SDI_PLL_REGN */
285 	l = FLD_MOD(l, 0xb4, 10, 1);	/* SDI_PLL_REGM */
286 	dss_write_reg(DSS_PLL_CONTROL, l);
287 }
288 
289 int dss_sdi_enable(void)
290 {
291 	unsigned long timeout;
292 
293 	dispc_pck_free_enable(1);
294 
295 	/* Reset SDI PLL */
296 	REG_FLD_MOD(DSS_PLL_CONTROL, 1, 18, 18); /* SDI_PLL_SYSRESET */
297 	udelay(1);	/* wait 2x PCLK */
298 
299 	/* Lock SDI PLL */
300 	REG_FLD_MOD(DSS_PLL_CONTROL, 1, 28, 28); /* SDI_PLL_GOBIT */
301 
302 	/* Waiting for PLL lock request to complete */
303 	timeout = jiffies + msecs_to_jiffies(500);
304 	while (dss_read_reg(DSS_SDI_STATUS) & (1 << 6)) {
305 		if (time_after_eq(jiffies, timeout)) {
306 			DSSERR("PLL lock request timed out\n");
307 			goto err1;
308 		}
309 	}
310 
311 	/* Clearing PLL_GO bit */
312 	REG_FLD_MOD(DSS_PLL_CONTROL, 0, 28, 28);
313 
314 	/* Waiting for PLL to lock */
315 	timeout = jiffies + msecs_to_jiffies(500);
316 	while (!(dss_read_reg(DSS_SDI_STATUS) & (1 << 5))) {
317 		if (time_after_eq(jiffies, timeout)) {
318 			DSSERR("PLL lock timed out\n");
319 			goto err1;
320 		}
321 	}
322 
323 	dispc_lcd_enable_signal(1);
324 
325 	/* Waiting for SDI reset to complete */
326 	timeout = jiffies + msecs_to_jiffies(500);
327 	while (!(dss_read_reg(DSS_SDI_STATUS) & (1 << 2))) {
328 		if (time_after_eq(jiffies, timeout)) {
329 			DSSERR("SDI reset timed out\n");
330 			goto err2;
331 		}
332 	}
333 
334 	return 0;
335 
336  err2:
337 	dispc_lcd_enable_signal(0);
338  err1:
339 	/* Reset SDI PLL */
340 	REG_FLD_MOD(DSS_PLL_CONTROL, 0, 18, 18); /* SDI_PLL_SYSRESET */
341 
342 	dispc_pck_free_enable(0);
343 
344 	return -ETIMEDOUT;
345 }
346 
347 void dss_sdi_disable(void)
348 {
349 	dispc_lcd_enable_signal(0);
350 
351 	dispc_pck_free_enable(0);
352 
353 	/* Reset SDI PLL */
354 	REG_FLD_MOD(DSS_PLL_CONTROL, 0, 18, 18); /* SDI_PLL_SYSRESET */
355 }
356 
357 const char *dss_get_generic_clk_source_name(enum omap_dss_clk_source clk_src)
358 {
359 	return dss_generic_clk_source_names[clk_src];
360 }
361 
362 void dss_dump_clocks(struct seq_file *s)
363 {
364 	const char *fclk_name, *fclk_real_name;
365 	unsigned long fclk_rate;
366 
367 	if (dss_runtime_get())
368 		return;
369 
370 	seq_printf(s, "- DSS -\n");
371 
372 	fclk_name = dss_get_generic_clk_source_name(OMAP_DSS_CLK_SRC_FCK);
373 	fclk_real_name = dss_feat_get_clk_source_name(OMAP_DSS_CLK_SRC_FCK);
374 	fclk_rate = clk_get_rate(dss.dss_clk);
375 
376 	seq_printf(s, "%s (%s) = %lu\n",
377 			fclk_name, fclk_real_name,
378 			fclk_rate);
379 
380 	dss_runtime_put();
381 }
382 
383 static void dss_dump_regs(struct seq_file *s)
384 {
385 #define DUMPREG(r) seq_printf(s, "%-35s %08x\n", #r, dss_read_reg(r))
386 
387 	if (dss_runtime_get())
388 		return;
389 
390 	DUMPREG(DSS_REVISION);
391 	DUMPREG(DSS_SYSCONFIG);
392 	DUMPREG(DSS_SYSSTATUS);
393 	DUMPREG(DSS_CONTROL);
394 
395 	if (dss_feat_get_supported_displays(OMAP_DSS_CHANNEL_LCD) &
396 			OMAP_DISPLAY_TYPE_SDI) {
397 		DUMPREG(DSS_SDI_CONTROL);
398 		DUMPREG(DSS_PLL_CONTROL);
399 		DUMPREG(DSS_SDI_STATUS);
400 	}
401 
402 	dss_runtime_put();
403 #undef DUMPREG
404 }
405 
406 static void dss_select_dispc_clk_source(enum omap_dss_clk_source clk_src)
407 {
408 	int b;
409 	u8 start, end;
410 
411 	switch (clk_src) {
412 	case OMAP_DSS_CLK_SRC_FCK:
413 		b = 0;
414 		break;
415 	case OMAP_DSS_CLK_SRC_DSI_PLL_HSDIV_DISPC:
416 		b = 1;
417 		break;
418 	case OMAP_DSS_CLK_SRC_DSI2_PLL_HSDIV_DISPC:
419 		b = 2;
420 		break;
421 	default:
422 		BUG();
423 		return;
424 	}
425 
426 	dss_feat_get_reg_field(FEAT_REG_DISPC_CLK_SWITCH, &start, &end);
427 
428 	REG_FLD_MOD(DSS_CONTROL, b, start, end);	/* DISPC_CLK_SWITCH */
429 
430 	dss.dispc_clk_source = clk_src;
431 }
432 
433 void dss_select_dsi_clk_source(int dsi_module,
434 		enum omap_dss_clk_source clk_src)
435 {
436 	int b, pos;
437 
438 	switch (clk_src) {
439 	case OMAP_DSS_CLK_SRC_FCK:
440 		b = 0;
441 		break;
442 	case OMAP_DSS_CLK_SRC_DSI_PLL_HSDIV_DSI:
443 		BUG_ON(dsi_module != 0);
444 		b = 1;
445 		break;
446 	case OMAP_DSS_CLK_SRC_DSI2_PLL_HSDIV_DSI:
447 		BUG_ON(dsi_module != 1);
448 		b = 1;
449 		break;
450 	default:
451 		BUG();
452 		return;
453 	}
454 
455 	pos = dsi_module == 0 ? 1 : 10;
456 	REG_FLD_MOD(DSS_CONTROL, b, pos, pos);	/* DSIx_CLK_SWITCH */
457 
458 	dss.dsi_clk_source[dsi_module] = clk_src;
459 }
460 
461 void dss_select_lcd_clk_source(enum omap_channel channel,
462 		enum omap_dss_clk_source clk_src)
463 {
464 	int b, ix, pos;
465 
466 	if (!dss_has_feature(FEAT_LCD_CLK_SRC)) {
467 		dss_select_dispc_clk_source(clk_src);
468 		return;
469 	}
470 
471 	switch (clk_src) {
472 	case OMAP_DSS_CLK_SRC_FCK:
473 		b = 0;
474 		break;
475 	case OMAP_DSS_CLK_SRC_DSI_PLL_HSDIV_DISPC:
476 		BUG_ON(channel != OMAP_DSS_CHANNEL_LCD);
477 		b = 1;
478 		break;
479 	case OMAP_DSS_CLK_SRC_DSI2_PLL_HSDIV_DISPC:
480 		BUG_ON(channel != OMAP_DSS_CHANNEL_LCD2 &&
481 		       channel != OMAP_DSS_CHANNEL_LCD3);
482 		b = 1;
483 		break;
484 	default:
485 		BUG();
486 		return;
487 	}
488 
489 	pos = channel == OMAP_DSS_CHANNEL_LCD ? 0 :
490 	     (channel == OMAP_DSS_CHANNEL_LCD2 ? 12 : 19);
491 	REG_FLD_MOD(DSS_CONTROL, b, pos, pos);	/* LCDx_CLK_SWITCH */
492 
493 	ix = channel == OMAP_DSS_CHANNEL_LCD ? 0 :
494 	    (channel == OMAP_DSS_CHANNEL_LCD2 ? 1 : 2);
495 	dss.lcd_clk_source[ix] = clk_src;
496 }
497 
498 enum omap_dss_clk_source dss_get_dispc_clk_source(void)
499 {
500 	return dss.dispc_clk_source;
501 }
502 
503 enum omap_dss_clk_source dss_get_dsi_clk_source(int dsi_module)
504 {
505 	return dss.dsi_clk_source[dsi_module];
506 }
507 
508 enum omap_dss_clk_source dss_get_lcd_clk_source(enum omap_channel channel)
509 {
510 	if (dss_has_feature(FEAT_LCD_CLK_SRC)) {
511 		int ix = channel == OMAP_DSS_CHANNEL_LCD ? 0 :
512 			(channel == OMAP_DSS_CHANNEL_LCD2 ? 1 : 2);
513 		return dss.lcd_clk_source[ix];
514 	} else {
515 		/* LCD_CLK source is the same as DISPC_FCLK source for
516 		 * OMAP2 and OMAP3 */
517 		return dss.dispc_clk_source;
518 	}
519 }
520 
521 bool dss_div_calc(unsigned long pck, unsigned long fck_min,
522 		dss_div_calc_func func, void *data)
523 {
524 	int fckd, fckd_start, fckd_stop;
525 	unsigned long fck;
526 	unsigned long fck_hw_max;
527 	unsigned long fckd_hw_max;
528 	unsigned long prate;
529 	unsigned m;
530 
531 	fck_hw_max = dss_feat_get_param_max(FEAT_PARAM_DSS_FCK);
532 
533 	if (dss.parent_clk == NULL) {
534 		unsigned pckd;
535 
536 		pckd = fck_hw_max / pck;
537 
538 		fck = pck * pckd;
539 
540 		fck = clk_round_rate(dss.dss_clk, fck);
541 
542 		return func(fck, data);
543 	}
544 
545 	fckd_hw_max = dss.feat->fck_div_max;
546 
547 	m = dss.feat->dss_fck_multiplier;
548 	prate = clk_get_rate(dss.parent_clk);
549 
550 	fck_min = fck_min ? fck_min : 1;
551 
552 	fckd_start = min(prate * m / fck_min, fckd_hw_max);
553 	fckd_stop = max(DIV_ROUND_UP(prate * m, fck_hw_max), 1ul);
554 
555 	for (fckd = fckd_start; fckd >= fckd_stop; --fckd) {
556 		fck = DIV_ROUND_UP(prate, fckd) * m;
557 
558 		if (func(fck, data))
559 			return true;
560 	}
561 
562 	return false;
563 }
564 
565 int dss_set_fck_rate(unsigned long rate)
566 {
567 	int r;
568 
569 	DSSDBG("set fck to %lu\n", rate);
570 
571 	r = clk_set_rate(dss.dss_clk, rate);
572 	if (r)
573 		return r;
574 
575 	dss.dss_clk_rate = clk_get_rate(dss.dss_clk);
576 
577 	WARN_ONCE(dss.dss_clk_rate != rate,
578 			"clk rate mismatch: %lu != %lu", dss.dss_clk_rate,
579 			rate);
580 
581 	return 0;
582 }
583 
584 unsigned long dss_get_dispc_clk_rate(void)
585 {
586 	return dss.dss_clk_rate;
587 }
588 
589 static int dss_setup_default_clock(void)
590 {
591 	unsigned long max_dss_fck, prate;
592 	unsigned long fck;
593 	unsigned fck_div;
594 	int r;
595 
596 	max_dss_fck = dss_feat_get_param_max(FEAT_PARAM_DSS_FCK);
597 
598 	if (dss.parent_clk == NULL) {
599 		fck = clk_round_rate(dss.dss_clk, max_dss_fck);
600 	} else {
601 		prate = clk_get_rate(dss.parent_clk);
602 
603 		fck_div = DIV_ROUND_UP(prate * dss.feat->dss_fck_multiplier,
604 				max_dss_fck);
605 		fck = DIV_ROUND_UP(prate, fck_div) * dss.feat->dss_fck_multiplier;
606 	}
607 
608 	r = dss_set_fck_rate(fck);
609 	if (r)
610 		return r;
611 
612 	return 0;
613 }
614 
615 void dss_set_venc_output(enum omap_dss_venc_type type)
616 {
617 	int l = 0;
618 
619 	if (type == OMAP_DSS_VENC_TYPE_COMPOSITE)
620 		l = 0;
621 	else if (type == OMAP_DSS_VENC_TYPE_SVIDEO)
622 		l = 1;
623 	else
624 		BUG();
625 
626 	/* venc out selection. 0 = comp, 1 = svideo */
627 	REG_FLD_MOD(DSS_CONTROL, l, 6, 6);
628 }
629 
630 void dss_set_dac_pwrdn_bgz(bool enable)
631 {
632 	REG_FLD_MOD(DSS_CONTROL, enable, 5, 5);	/* DAC Power-Down Control */
633 }
634 
635 void dss_select_hdmi_venc_clk_source(enum dss_hdmi_venc_clk_source_select src)
636 {
637 	enum omap_display_type dp;
638 	dp = dss_feat_get_supported_displays(OMAP_DSS_CHANNEL_DIGIT);
639 
640 	/* Complain about invalid selections */
641 	WARN_ON((src == DSS_VENC_TV_CLK) && !(dp & OMAP_DISPLAY_TYPE_VENC));
642 	WARN_ON((src == DSS_HDMI_M_PCLK) && !(dp & OMAP_DISPLAY_TYPE_HDMI));
643 
644 	/* Select only if we have options */
645 	if ((dp & OMAP_DISPLAY_TYPE_VENC) && (dp & OMAP_DISPLAY_TYPE_HDMI))
646 		REG_FLD_MOD(DSS_CONTROL, src, 15, 15);	/* VENC_HDMI_SWITCH */
647 }
648 
649 enum dss_hdmi_venc_clk_source_select dss_get_hdmi_venc_clk_source(void)
650 {
651 	enum omap_display_type displays;
652 
653 	displays = dss_feat_get_supported_displays(OMAP_DSS_CHANNEL_DIGIT);
654 	if ((displays & OMAP_DISPLAY_TYPE_HDMI) == 0)
655 		return DSS_VENC_TV_CLK;
656 
657 	if ((displays & OMAP_DISPLAY_TYPE_VENC) == 0)
658 		return DSS_HDMI_M_PCLK;
659 
660 	return REG_GET(DSS_CONTROL, 15, 15);
661 }
662 
663 static int dss_dpi_select_source_omap2_omap3(int port, enum omap_channel channel)
664 {
665 	if (channel != OMAP_DSS_CHANNEL_LCD)
666 		return -EINVAL;
667 
668 	return 0;
669 }
670 
671 static int dss_dpi_select_source_omap4(int port, enum omap_channel channel)
672 {
673 	int val;
674 
675 	switch (channel) {
676 	case OMAP_DSS_CHANNEL_LCD2:
677 		val = 0;
678 		break;
679 	case OMAP_DSS_CHANNEL_DIGIT:
680 		val = 1;
681 		break;
682 	default:
683 		return -EINVAL;
684 	}
685 
686 	REG_FLD_MOD(DSS_CONTROL, val, 17, 17);
687 
688 	return 0;
689 }
690 
691 static int dss_dpi_select_source_omap5(int port, enum omap_channel channel)
692 {
693 	int val;
694 
695 	switch (channel) {
696 	case OMAP_DSS_CHANNEL_LCD:
697 		val = 1;
698 		break;
699 	case OMAP_DSS_CHANNEL_LCD2:
700 		val = 2;
701 		break;
702 	case OMAP_DSS_CHANNEL_LCD3:
703 		val = 3;
704 		break;
705 	case OMAP_DSS_CHANNEL_DIGIT:
706 		val = 0;
707 		break;
708 	default:
709 		return -EINVAL;
710 	}
711 
712 	REG_FLD_MOD(DSS_CONTROL, val, 17, 16);
713 
714 	return 0;
715 }
716 
717 static int dss_dpi_select_source_dra7xx(int port, enum omap_channel channel)
718 {
719 	switch (port) {
720 	case 0:
721 		return dss_dpi_select_source_omap5(port, channel);
722 	case 1:
723 		if (channel != OMAP_DSS_CHANNEL_LCD2)
724 			return -EINVAL;
725 		break;
726 	case 2:
727 		if (channel != OMAP_DSS_CHANNEL_LCD3)
728 			return -EINVAL;
729 		break;
730 	default:
731 		return -EINVAL;
732 	}
733 
734 	return 0;
735 }
736 
737 int dss_dpi_select_source(int port, enum omap_channel channel)
738 {
739 	return dss.feat->dpi_select_source(port, channel);
740 }
741 
742 static int dss_get_clocks(void)
743 {
744 	struct clk *clk;
745 
746 	clk = devm_clk_get(&dss.pdev->dev, "fck");
747 	if (IS_ERR(clk)) {
748 		DSSERR("can't get clock fck\n");
749 		return PTR_ERR(clk);
750 	}
751 
752 	dss.dss_clk = clk;
753 
754 	if (dss.feat->parent_clk_name) {
755 		clk = clk_get(NULL, dss.feat->parent_clk_name);
756 		if (IS_ERR(clk)) {
757 			DSSERR("Failed to get %s\n", dss.feat->parent_clk_name);
758 			return PTR_ERR(clk);
759 		}
760 	} else {
761 		clk = NULL;
762 	}
763 
764 	dss.parent_clk = clk;
765 
766 	return 0;
767 }
768 
769 static void dss_put_clocks(void)
770 {
771 	if (dss.parent_clk)
772 		clk_put(dss.parent_clk);
773 }
774 
775 int dss_runtime_get(void)
776 {
777 	int r;
778 
779 	DSSDBG("dss_runtime_get\n");
780 
781 	r = pm_runtime_get_sync(&dss.pdev->dev);
782 	WARN_ON(r < 0);
783 	return r < 0 ? r : 0;
784 }
785 
786 void dss_runtime_put(void)
787 {
788 	int r;
789 
790 	DSSDBG("dss_runtime_put\n");
791 
792 	r = pm_runtime_put_sync(&dss.pdev->dev);
793 	WARN_ON(r < 0 && r != -ENOSYS && r != -EBUSY);
794 }
795 
796 /* DEBUGFS */
797 #if defined(CONFIG_OMAP2_DSS_DEBUGFS)
798 void dss_debug_dump_clocks(struct seq_file *s)
799 {
800 	dss_dump_clocks(s);
801 	dispc_dump_clocks(s);
802 #ifdef CONFIG_OMAP2_DSS_DSI
803 	dsi_dump_clocks(s);
804 #endif
805 }
806 #endif
807 
808 
809 static const enum omap_display_type omap2plus_ports[] = {
810 	OMAP_DISPLAY_TYPE_DPI,
811 };
812 
813 static const enum omap_display_type omap34xx_ports[] = {
814 	OMAP_DISPLAY_TYPE_DPI,
815 	OMAP_DISPLAY_TYPE_SDI,
816 };
817 
818 static const enum omap_display_type dra7xx_ports[] = {
819 	OMAP_DISPLAY_TYPE_DPI,
820 	OMAP_DISPLAY_TYPE_DPI,
821 	OMAP_DISPLAY_TYPE_DPI,
822 };
823 
824 static const struct dss_features omap24xx_dss_feats = {
825 	/*
826 	 * fck div max is really 16, but the divider range has gaps. The range
827 	 * from 1 to 6 has no gaps, so let's use that as a max.
828 	 */
829 	.fck_div_max		=	6,
830 	.dss_fck_multiplier	=	2,
831 	.parent_clk_name	=	"core_ck",
832 	.dpi_select_source	=	&dss_dpi_select_source_omap2_omap3,
833 	.ports			=	omap2plus_ports,
834 	.num_ports		=	ARRAY_SIZE(omap2plus_ports),
835 };
836 
837 static const struct dss_features omap34xx_dss_feats = {
838 	.fck_div_max		=	16,
839 	.dss_fck_multiplier	=	2,
840 	.parent_clk_name	=	"dpll4_ck",
841 	.dpi_select_source	=	&dss_dpi_select_source_omap2_omap3,
842 	.ports			=	omap34xx_ports,
843 	.num_ports		=	ARRAY_SIZE(omap34xx_ports),
844 };
845 
846 static const struct dss_features omap3630_dss_feats = {
847 	.fck_div_max		=	32,
848 	.dss_fck_multiplier	=	1,
849 	.parent_clk_name	=	"dpll4_ck",
850 	.dpi_select_source	=	&dss_dpi_select_source_omap2_omap3,
851 	.ports			=	omap2plus_ports,
852 	.num_ports		=	ARRAY_SIZE(omap2plus_ports),
853 };
854 
855 static const struct dss_features omap44xx_dss_feats = {
856 	.fck_div_max		=	32,
857 	.dss_fck_multiplier	=	1,
858 	.parent_clk_name	=	"dpll_per_x2_ck",
859 	.dpi_select_source	=	&dss_dpi_select_source_omap4,
860 	.ports			=	omap2plus_ports,
861 	.num_ports		=	ARRAY_SIZE(omap2plus_ports),
862 };
863 
864 static const struct dss_features omap54xx_dss_feats = {
865 	.fck_div_max		=	64,
866 	.dss_fck_multiplier	=	1,
867 	.parent_clk_name	=	"dpll_per_x2_ck",
868 	.dpi_select_source	=	&dss_dpi_select_source_omap5,
869 	.ports			=	omap2plus_ports,
870 	.num_ports		=	ARRAY_SIZE(omap2plus_ports),
871 };
872 
873 static const struct dss_features am43xx_dss_feats = {
874 	.fck_div_max		=	0,
875 	.dss_fck_multiplier	=	0,
876 	.parent_clk_name	=	NULL,
877 	.dpi_select_source	=	&dss_dpi_select_source_omap2_omap3,
878 	.ports			=	omap2plus_ports,
879 	.num_ports		=	ARRAY_SIZE(omap2plus_ports),
880 };
881 
882 static const struct dss_features dra7xx_dss_feats = {
883 	.fck_div_max		=	64,
884 	.dss_fck_multiplier	=	1,
885 	.parent_clk_name	=	"dpll_per_x2_ck",
886 	.dpi_select_source	=	&dss_dpi_select_source_dra7xx,
887 	.ports			=	dra7xx_ports,
888 	.num_ports		=	ARRAY_SIZE(dra7xx_ports),
889 };
890 
891 static int dss_init_features(struct platform_device *pdev)
892 {
893 	const struct dss_features *src;
894 	struct dss_features *dst;
895 
896 	dst = devm_kzalloc(&pdev->dev, sizeof(*dst), GFP_KERNEL);
897 	if (!dst) {
898 		dev_err(&pdev->dev, "Failed to allocate local DSS Features\n");
899 		return -ENOMEM;
900 	}
901 
902 	switch (omapdss_get_version()) {
903 	case OMAPDSS_VER_OMAP24xx:
904 		src = &omap24xx_dss_feats;
905 		break;
906 
907 	case OMAPDSS_VER_OMAP34xx_ES1:
908 	case OMAPDSS_VER_OMAP34xx_ES3:
909 	case OMAPDSS_VER_AM35xx:
910 		src = &omap34xx_dss_feats;
911 		break;
912 
913 	case OMAPDSS_VER_OMAP3630:
914 		src = &omap3630_dss_feats;
915 		break;
916 
917 	case OMAPDSS_VER_OMAP4430_ES1:
918 	case OMAPDSS_VER_OMAP4430_ES2:
919 	case OMAPDSS_VER_OMAP4:
920 		src = &omap44xx_dss_feats;
921 		break;
922 
923 	case OMAPDSS_VER_OMAP5:
924 		src = &omap54xx_dss_feats;
925 		break;
926 
927 	case OMAPDSS_VER_AM43xx:
928 		src = &am43xx_dss_feats;
929 		break;
930 
931 	case OMAPDSS_VER_DRA7xx:
932 		src = &dra7xx_dss_feats;
933 		break;
934 
935 	default:
936 		return -ENODEV;
937 	}
938 
939 	memcpy(dst, src, sizeof(*dst));
940 	dss.feat = dst;
941 
942 	return 0;
943 }
944 
945 static int dss_init_ports(struct platform_device *pdev)
946 {
947 	struct device_node *parent = pdev->dev.of_node;
948 	struct device_node *port;
949 	int r;
950 
951 	if (parent == NULL)
952 		return 0;
953 
954 	port = omapdss_of_get_next_port(parent, NULL);
955 	if (!port)
956 		return 0;
957 
958 	if (dss.feat->num_ports == 0)
959 		return 0;
960 
961 	do {
962 		enum omap_display_type port_type;
963 		u32 reg;
964 
965 		r = of_property_read_u32(port, "reg", &reg);
966 		if (r)
967 			reg = 0;
968 
969 		if (reg >= dss.feat->num_ports)
970 			continue;
971 
972 		port_type = dss.feat->ports[reg];
973 
974 		switch (port_type) {
975 		case OMAP_DISPLAY_TYPE_DPI:
976 			dpi_init_port(pdev, port);
977 			break;
978 		case OMAP_DISPLAY_TYPE_SDI:
979 			sdi_init_port(pdev, port);
980 			break;
981 		default:
982 			break;
983 		}
984 	} while ((port = omapdss_of_get_next_port(parent, port)) != NULL);
985 
986 	return 0;
987 }
988 
989 static void dss_uninit_ports(struct platform_device *pdev)
990 {
991 	struct device_node *parent = pdev->dev.of_node;
992 	struct device_node *port;
993 
994 	if (parent == NULL)
995 		return;
996 
997 	port = omapdss_of_get_next_port(parent, NULL);
998 	if (!port)
999 		return;
1000 
1001 	if (dss.feat->num_ports == 0)
1002 		return;
1003 
1004 	do {
1005 		enum omap_display_type port_type;
1006 		u32 reg;
1007 		int r;
1008 
1009 		r = of_property_read_u32(port, "reg", &reg);
1010 		if (r)
1011 			reg = 0;
1012 
1013 		if (reg >= dss.feat->num_ports)
1014 			continue;
1015 
1016 		port_type = dss.feat->ports[reg];
1017 
1018 		switch (port_type) {
1019 		case OMAP_DISPLAY_TYPE_DPI:
1020 			dpi_uninit_port(port);
1021 			break;
1022 		case OMAP_DISPLAY_TYPE_SDI:
1023 			sdi_uninit_port(port);
1024 			break;
1025 		default:
1026 			break;
1027 		}
1028 	} while ((port = omapdss_of_get_next_port(parent, port)) != NULL);
1029 }
1030 
1031 static int dss_video_pll_probe(struct platform_device *pdev)
1032 {
1033 	struct device_node *np = pdev->dev.of_node;
1034 	struct regulator *pll_regulator;
1035 	int r;
1036 
1037 	if (!np)
1038 		return 0;
1039 
1040 	if (of_property_read_bool(np, "syscon-pll-ctrl")) {
1041 		dss.syscon_pll_ctrl = syscon_regmap_lookup_by_phandle(np,
1042 			"syscon-pll-ctrl");
1043 		if (IS_ERR(dss.syscon_pll_ctrl)) {
1044 			dev_err(&pdev->dev,
1045 				"failed to get syscon-pll-ctrl regmap\n");
1046 			return PTR_ERR(dss.syscon_pll_ctrl);
1047 		}
1048 
1049 		if (of_property_read_u32_index(np, "syscon-pll-ctrl", 1,
1050 				&dss.syscon_pll_ctrl_offset)) {
1051 			dev_err(&pdev->dev,
1052 				"failed to get syscon-pll-ctrl offset\n");
1053 			return -EINVAL;
1054 		}
1055 	}
1056 
1057 	pll_regulator = devm_regulator_get(&pdev->dev, "vdda_video");
1058 	if (IS_ERR(pll_regulator)) {
1059 		r = PTR_ERR(pll_regulator);
1060 
1061 		switch (r) {
1062 		case -ENOENT:
1063 			pll_regulator = NULL;
1064 			break;
1065 
1066 		case -EPROBE_DEFER:
1067 			return -EPROBE_DEFER;
1068 
1069 		default:
1070 			DSSERR("can't get DPLL VDDA regulator\n");
1071 			return r;
1072 		}
1073 	}
1074 
1075 	if (of_property_match_string(np, "reg-names", "pll1") >= 0) {
1076 		dss.video1_pll = dss_video_pll_init(pdev, 0, pll_regulator);
1077 		if (IS_ERR(dss.video1_pll))
1078 			return PTR_ERR(dss.video1_pll);
1079 	}
1080 
1081 	if (of_property_match_string(np, "reg-names", "pll2") >= 0) {
1082 		dss.video2_pll = dss_video_pll_init(pdev, 1, pll_regulator);
1083 		if (IS_ERR(dss.video2_pll)) {
1084 			dss_video_pll_uninit(dss.video1_pll);
1085 			return PTR_ERR(dss.video2_pll);
1086 		}
1087 	}
1088 
1089 	return 0;
1090 }
1091 
1092 /* DSS HW IP initialisation */
1093 static int dss_bind(struct device *dev)
1094 {
1095 	struct platform_device *pdev = to_platform_device(dev);
1096 	struct resource *dss_mem;
1097 	u32 rev;
1098 	int r;
1099 
1100 	dss.pdev = pdev;
1101 
1102 	r = dss_init_features(dss.pdev);
1103 	if (r)
1104 		return r;
1105 
1106 	dss_mem = platform_get_resource(dss.pdev, IORESOURCE_MEM, 0);
1107 	if (!dss_mem) {
1108 		DSSERR("can't get IORESOURCE_MEM DSS\n");
1109 		return -EINVAL;
1110 	}
1111 
1112 	dss.base = devm_ioremap(&pdev->dev, dss_mem->start,
1113 				resource_size(dss_mem));
1114 	if (!dss.base) {
1115 		DSSERR("can't ioremap DSS\n");
1116 		return -ENOMEM;
1117 	}
1118 
1119 	r = dss_get_clocks();
1120 	if (r)
1121 		return r;
1122 
1123 	r = dss_setup_default_clock();
1124 	if (r)
1125 		goto err_setup_clocks;
1126 
1127 	r = dss_video_pll_probe(pdev);
1128 	if (r)
1129 		goto err_pll_init;
1130 
1131 	r = dss_init_ports(pdev);
1132 	if (r)
1133 		goto err_init_ports;
1134 
1135 	pm_runtime_enable(&pdev->dev);
1136 
1137 	r = dss_runtime_get();
1138 	if (r)
1139 		goto err_runtime_get;
1140 
1141 	dss.dss_clk_rate = clk_get_rate(dss.dss_clk);
1142 
1143 	/* Select DPLL */
1144 	REG_FLD_MOD(DSS_CONTROL, 0, 0, 0);
1145 
1146 	dss_select_dispc_clk_source(OMAP_DSS_CLK_SRC_FCK);
1147 
1148 #ifdef CONFIG_OMAP2_DSS_VENC
1149 	REG_FLD_MOD(DSS_CONTROL, 1, 4, 4);	/* venc dac demen */
1150 	REG_FLD_MOD(DSS_CONTROL, 1, 3, 3);	/* venc clock 4x enable */
1151 	REG_FLD_MOD(DSS_CONTROL, 0, 2, 2);	/* venc clock mode = normal */
1152 #endif
1153 	dss.dsi_clk_source[0] = OMAP_DSS_CLK_SRC_FCK;
1154 	dss.dsi_clk_source[1] = OMAP_DSS_CLK_SRC_FCK;
1155 	dss.dispc_clk_source = OMAP_DSS_CLK_SRC_FCK;
1156 	dss.lcd_clk_source[0] = OMAP_DSS_CLK_SRC_FCK;
1157 	dss.lcd_clk_source[1] = OMAP_DSS_CLK_SRC_FCK;
1158 
1159 	rev = dss_read_reg(DSS_REVISION);
1160 	printk(KERN_INFO "OMAP DSS rev %d.%d\n",
1161 			FLD_GET(rev, 7, 4), FLD_GET(rev, 3, 0));
1162 
1163 	dss_runtime_put();
1164 
1165 	r = component_bind_all(&pdev->dev, NULL);
1166 	if (r)
1167 		goto err_component;
1168 
1169 	dss_debugfs_create_file("dss", dss_dump_regs);
1170 
1171 	pm_set_vt_switch(0);
1172 
1173 	dss_initialized = true;
1174 
1175 	return 0;
1176 
1177 err_component:
1178 err_runtime_get:
1179 	pm_runtime_disable(&pdev->dev);
1180 	dss_uninit_ports(pdev);
1181 err_init_ports:
1182 	if (dss.video1_pll)
1183 		dss_video_pll_uninit(dss.video1_pll);
1184 
1185 	if (dss.video2_pll)
1186 		dss_video_pll_uninit(dss.video2_pll);
1187 err_pll_init:
1188 err_setup_clocks:
1189 	dss_put_clocks();
1190 	return r;
1191 }
1192 
1193 static void dss_unbind(struct device *dev)
1194 {
1195 	struct platform_device *pdev = to_platform_device(dev);
1196 
1197 	dss_initialized = false;
1198 
1199 	component_unbind_all(&pdev->dev, NULL);
1200 
1201 	if (dss.video1_pll)
1202 		dss_video_pll_uninit(dss.video1_pll);
1203 
1204 	if (dss.video2_pll)
1205 		dss_video_pll_uninit(dss.video2_pll);
1206 
1207 	dss_uninit_ports(pdev);
1208 
1209 	pm_runtime_disable(&pdev->dev);
1210 
1211 	dss_put_clocks();
1212 }
1213 
1214 static const struct component_master_ops dss_component_ops = {
1215 	.bind = dss_bind,
1216 	.unbind = dss_unbind,
1217 };
1218 
1219 static int dss_component_compare(struct device *dev, void *data)
1220 {
1221 	struct device *child = data;
1222 	return dev == child;
1223 }
1224 
1225 static int dss_add_child_component(struct device *dev, void *data)
1226 {
1227 	struct component_match **match = data;
1228 
1229 	/*
1230 	 * HACK
1231 	 * We don't have a working driver for rfbi, so skip it here always.
1232 	 * Otherwise dss will never get probed successfully, as it will wait
1233 	 * for rfbi to get probed.
1234 	 */
1235 	if (strstr(dev_name(dev), "rfbi"))
1236 		return 0;
1237 
1238 	component_match_add(dev->parent, match, dss_component_compare, dev);
1239 
1240 	return 0;
1241 }
1242 
1243 static int dss_probe(struct platform_device *pdev)
1244 {
1245 	struct component_match *match = NULL;
1246 	int r;
1247 
1248 	/* add all the child devices as components */
1249 	device_for_each_child(&pdev->dev, &match, dss_add_child_component);
1250 
1251 	r = component_master_add_with_match(&pdev->dev, &dss_component_ops, match);
1252 	if (r)
1253 		return r;
1254 
1255 	return 0;
1256 }
1257 
1258 static int dss_remove(struct platform_device *pdev)
1259 {
1260 	component_master_del(&pdev->dev, &dss_component_ops);
1261 	return 0;
1262 }
1263 
1264 static int dss_runtime_suspend(struct device *dev)
1265 {
1266 	dss_save_context();
1267 	dss_set_min_bus_tput(dev, 0);
1268 
1269 	pinctrl_pm_select_sleep_state(dev);
1270 
1271 	return 0;
1272 }
1273 
1274 static int dss_runtime_resume(struct device *dev)
1275 {
1276 	int r;
1277 
1278 	pinctrl_pm_select_default_state(dev);
1279 
1280 	/*
1281 	 * Set an arbitrarily high tput request to ensure OPP100.
1282 	 * What we should really do is to make a request to stay in OPP100,
1283 	 * without any tput requirements, but that is not currently possible
1284 	 * via the PM layer.
1285 	 */
1286 
1287 	r = dss_set_min_bus_tput(dev, 1000000000);
1288 	if (r)
1289 		return r;
1290 
1291 	dss_restore_context();
1292 	return 0;
1293 }
1294 
1295 static const struct dev_pm_ops dss_pm_ops = {
1296 	.runtime_suspend = dss_runtime_suspend,
1297 	.runtime_resume = dss_runtime_resume,
1298 };
1299 
1300 static const struct of_device_id dss_of_match[] = {
1301 	{ .compatible = "ti,omap2-dss", },
1302 	{ .compatible = "ti,omap3-dss", },
1303 	{ .compatible = "ti,omap4-dss", },
1304 	{ .compatible = "ti,omap5-dss", },
1305 	{ .compatible = "ti,dra7-dss", },
1306 	{},
1307 };
1308 
1309 MODULE_DEVICE_TABLE(of, dss_of_match);
1310 
1311 static struct platform_driver omap_dsshw_driver = {
1312 	.probe		= dss_probe,
1313 	.remove		= dss_remove,
1314 	.driver         = {
1315 		.name   = "omapdss_dss",
1316 		.pm	= &dss_pm_ops,
1317 		.of_match_table = dss_of_match,
1318 		.suppress_bind_attrs = true,
1319 	},
1320 };
1321 
1322 int __init dss_init_platform_driver(void)
1323 {
1324 	return platform_driver_register(&omap_dsshw_driver);
1325 }
1326 
1327 void dss_uninit_platform_driver(void)
1328 {
1329 	platform_driver_unregister(&omap_dsshw_driver);
1330 }
1331