xref: /openbmc/linux/drivers/bus/ti-sysc.c (revision 8e8e69d6)
1 /*
2  * ti-sysc.c - Texas Instruments sysc interconnect target driver
3  *
4  * This program is free software; you can redistribute it and/or modify
5  * it under the terms of the GNU General Public License version 2 as
6  * published by the Free Software Foundation.
7  *
8  * This program is distributed "as is" WITHOUT ANY WARRANTY of any
9  * kind, whether express or implied; without even the implied warranty
10  * of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
11  * GNU General Public License for more details.
12  */
13 
14 #include <linux/io.h>
15 #include <linux/clk.h>
16 #include <linux/clkdev.h>
17 #include <linux/delay.h>
18 #include <linux/module.h>
19 #include <linux/platform_device.h>
20 #include <linux/pm_domain.h>
21 #include <linux/pm_runtime.h>
22 #include <linux/reset.h>
23 #include <linux/of_address.h>
24 #include <linux/of_platform.h>
25 #include <linux/slab.h>
26 #include <linux/iopoll.h>
27 
28 #include <linux/platform_data/ti-sysc.h>
29 
30 #include <dt-bindings/bus/ti-sysc.h>
31 
32 #define MAX_MODULE_SOFTRESET_WAIT		10000
33 
34 static const char * const reg_names[] = { "rev", "sysc", "syss", };
35 
36 enum sysc_clocks {
37 	SYSC_FCK,
38 	SYSC_ICK,
39 	SYSC_OPTFCK0,
40 	SYSC_OPTFCK1,
41 	SYSC_OPTFCK2,
42 	SYSC_OPTFCK3,
43 	SYSC_OPTFCK4,
44 	SYSC_OPTFCK5,
45 	SYSC_OPTFCK6,
46 	SYSC_OPTFCK7,
47 	SYSC_MAX_CLOCKS,
48 };
49 
50 static const char * const clock_names[SYSC_MAX_CLOCKS] = {
51 	"fck", "ick", "opt0", "opt1", "opt2", "opt3", "opt4",
52 	"opt5", "opt6", "opt7",
53 };
54 
55 #define SYSC_IDLEMODE_MASK		3
56 #define SYSC_CLOCKACTIVITY_MASK		3
57 
58 /**
59  * struct sysc - TI sysc interconnect target module registers and capabilities
60  * @dev: struct device pointer
61  * @module_pa: physical address of the interconnect target module
62  * @module_size: size of the interconnect target module
63  * @module_va: virtual address of the interconnect target module
64  * @offsets: register offsets from module base
65  * @clocks: clocks used by the interconnect target module
66  * @clock_roles: clock role names for the found clocks
67  * @nr_clocks: number of clocks used by the interconnect target module
68  * @legacy_mode: configured for legacy mode if set
69  * @cap: interconnect target module capabilities
70  * @cfg: interconnect target module configuration
71  * @name: name if available
72  * @revision: interconnect target module revision
73  * @needs_resume: runtime resume needed on resume from suspend
74  */
75 struct sysc {
76 	struct device *dev;
77 	u64 module_pa;
78 	u32 module_size;
79 	void __iomem *module_va;
80 	int offsets[SYSC_MAX_REGS];
81 	struct ti_sysc_module_data *mdata;
82 	struct clk **clocks;
83 	const char **clock_roles;
84 	int nr_clocks;
85 	struct reset_control *rsts;
86 	const char *legacy_mode;
87 	const struct sysc_capabilities *cap;
88 	struct sysc_config cfg;
89 	struct ti_sysc_cookie cookie;
90 	const char *name;
91 	u32 revision;
92 	bool enabled;
93 	bool needs_resume;
94 	bool child_needs_resume;
95 	struct delayed_work idle_work;
96 };
97 
98 static void sysc_parse_dts_quirks(struct sysc *ddata, struct device_node *np,
99 				  bool is_child);
100 
101 static void sysc_write(struct sysc *ddata, int offset, u32 value)
102 {
103 	writel_relaxed(value, ddata->module_va + offset);
104 }
105 
106 static u32 sysc_read(struct sysc *ddata, int offset)
107 {
108 	if (ddata->cfg.quirks & SYSC_QUIRK_16BIT) {
109 		u32 val;
110 
111 		val = readw_relaxed(ddata->module_va + offset);
112 		val |= (readw_relaxed(ddata->module_va + offset + 4) << 16);
113 
114 		return val;
115 	}
116 
117 	return readl_relaxed(ddata->module_va + offset);
118 }
119 
120 static bool sysc_opt_clks_needed(struct sysc *ddata)
121 {
122 	return !!(ddata->cfg.quirks & SYSC_QUIRK_OPT_CLKS_NEEDED);
123 }
124 
125 static u32 sysc_read_revision(struct sysc *ddata)
126 {
127 	int offset = ddata->offsets[SYSC_REVISION];
128 
129 	if (offset < 0)
130 		return 0;
131 
132 	return sysc_read(ddata, offset);
133 }
134 
135 static int sysc_add_named_clock_from_child(struct sysc *ddata,
136 					   const char *name,
137 					   const char *optfck_name)
138 {
139 	struct device_node *np = ddata->dev->of_node;
140 	struct device_node *child;
141 	struct clk_lookup *cl;
142 	struct clk *clock;
143 	const char *n;
144 
145 	if (name)
146 		n = name;
147 	else
148 		n = optfck_name;
149 
150 	/* Does the clock alias already exist? */
151 	clock = of_clk_get_by_name(np, n);
152 	if (!IS_ERR(clock)) {
153 		clk_put(clock);
154 
155 		return 0;
156 	}
157 
158 	child = of_get_next_available_child(np, NULL);
159 	if (!child)
160 		return -ENODEV;
161 
162 	clock = devm_get_clk_from_child(ddata->dev, child, name);
163 	if (IS_ERR(clock))
164 		return PTR_ERR(clock);
165 
166 	/*
167 	 * Use clkdev_add() instead of clkdev_alloc() to avoid the MAX_DEV_ID
168 	 * limit for clk_get(). If cl ever needs to be freed, it should be done
169 	 * with clkdev_drop().
170 	 */
171 	cl = kcalloc(1, sizeof(*cl), GFP_KERNEL);
172 	if (!cl)
173 		return -ENOMEM;
174 
175 	cl->con_id = n;
176 	cl->dev_id = dev_name(ddata->dev);
177 	cl->clk = clock;
178 	clkdev_add(cl);
179 
180 	clk_put(clock);
181 
182 	return 0;
183 }
184 
185 static int sysc_init_ext_opt_clock(struct sysc *ddata, const char *name)
186 {
187 	const char *optfck_name;
188 	int error, index;
189 
190 	if (ddata->nr_clocks < SYSC_OPTFCK0)
191 		index = SYSC_OPTFCK0;
192 	else
193 		index = ddata->nr_clocks;
194 
195 	if (name)
196 		optfck_name = name;
197 	else
198 		optfck_name = clock_names[index];
199 
200 	error = sysc_add_named_clock_from_child(ddata, name, optfck_name);
201 	if (error)
202 		return error;
203 
204 	ddata->clock_roles[index] = optfck_name;
205 	ddata->nr_clocks++;
206 
207 	return 0;
208 }
209 
210 static int sysc_get_one_clock(struct sysc *ddata, const char *name)
211 {
212 	int error, i, index = -ENODEV;
213 
214 	if (!strncmp(clock_names[SYSC_FCK], name, 3))
215 		index = SYSC_FCK;
216 	else if (!strncmp(clock_names[SYSC_ICK], name, 3))
217 		index = SYSC_ICK;
218 
219 	if (index < 0) {
220 		for (i = SYSC_OPTFCK0; i < SYSC_MAX_CLOCKS; i++) {
221 			if (!ddata->clocks[i]) {
222 				index = i;
223 				break;
224 			}
225 		}
226 	}
227 
228 	if (index < 0) {
229 		dev_err(ddata->dev, "clock %s not added\n", name);
230 		return index;
231 	}
232 
233 	ddata->clocks[index] = devm_clk_get(ddata->dev, name);
234 	if (IS_ERR(ddata->clocks[index])) {
235 		if (PTR_ERR(ddata->clocks[index]) == -ENOENT)
236 			return 0;
237 
238 		dev_err(ddata->dev, "clock get error for %s: %li\n",
239 			name, PTR_ERR(ddata->clocks[index]));
240 
241 		return PTR_ERR(ddata->clocks[index]);
242 	}
243 
244 	error = clk_prepare(ddata->clocks[index]);
245 	if (error) {
246 		dev_err(ddata->dev, "clock prepare error for %s: %i\n",
247 			name, error);
248 
249 		return error;
250 	}
251 
252 	return 0;
253 }
254 
255 static int sysc_get_clocks(struct sysc *ddata)
256 {
257 	struct device_node *np = ddata->dev->of_node;
258 	struct property *prop;
259 	const char *name;
260 	int nr_fck = 0, nr_ick = 0, i, error = 0;
261 
262 	ddata->clock_roles = devm_kcalloc(ddata->dev,
263 					  SYSC_MAX_CLOCKS,
264 					  sizeof(*ddata->clock_roles),
265 					  GFP_KERNEL);
266 	if (!ddata->clock_roles)
267 		return -ENOMEM;
268 
269 	of_property_for_each_string(np, "clock-names", prop, name) {
270 		if (!strncmp(clock_names[SYSC_FCK], name, 3))
271 			nr_fck++;
272 		if (!strncmp(clock_names[SYSC_ICK], name, 3))
273 			nr_ick++;
274 		ddata->clock_roles[ddata->nr_clocks] = name;
275 		ddata->nr_clocks++;
276 	}
277 
278 	if (ddata->nr_clocks < 1)
279 		return 0;
280 
281 	if ((ddata->cfg.quirks & SYSC_QUIRK_EXT_OPT_CLOCK)) {
282 		error = sysc_init_ext_opt_clock(ddata, NULL);
283 		if (error)
284 			return error;
285 	}
286 
287 	if (ddata->nr_clocks > SYSC_MAX_CLOCKS) {
288 		dev_err(ddata->dev, "too many clocks for %pOF\n", np);
289 
290 		return -EINVAL;
291 	}
292 
293 	if (nr_fck > 1 || nr_ick > 1) {
294 		dev_err(ddata->dev, "max one fck and ick for %pOF\n", np);
295 
296 		return -EINVAL;
297 	}
298 
299 	ddata->clocks = devm_kcalloc(ddata->dev,
300 				     ddata->nr_clocks, sizeof(*ddata->clocks),
301 				     GFP_KERNEL);
302 	if (!ddata->clocks)
303 		return -ENOMEM;
304 
305 	for (i = 0; i < SYSC_MAX_CLOCKS; i++) {
306 		const char *name = ddata->clock_roles[i];
307 
308 		if (!name)
309 			continue;
310 
311 		error = sysc_get_one_clock(ddata, name);
312 		if (error && error != -ENOENT)
313 			return error;
314 	}
315 
316 	return 0;
317 }
318 
319 static int sysc_enable_main_clocks(struct sysc *ddata)
320 {
321 	struct clk *clock;
322 	int i, error;
323 
324 	if (!ddata->clocks)
325 		return 0;
326 
327 	for (i = 0; i < SYSC_OPTFCK0; i++) {
328 		clock = ddata->clocks[i];
329 
330 		/* Main clocks may not have ick */
331 		if (IS_ERR_OR_NULL(clock))
332 			continue;
333 
334 		error = clk_enable(clock);
335 		if (error)
336 			goto err_disable;
337 	}
338 
339 	return 0;
340 
341 err_disable:
342 	for (i--; i >= 0; i--) {
343 		clock = ddata->clocks[i];
344 
345 		/* Main clocks may not have ick */
346 		if (IS_ERR_OR_NULL(clock))
347 			continue;
348 
349 		clk_disable(clock);
350 	}
351 
352 	return error;
353 }
354 
355 static void sysc_disable_main_clocks(struct sysc *ddata)
356 {
357 	struct clk *clock;
358 	int i;
359 
360 	if (!ddata->clocks)
361 		return;
362 
363 	for (i = 0; i < SYSC_OPTFCK0; i++) {
364 		clock = ddata->clocks[i];
365 		if (IS_ERR_OR_NULL(clock))
366 			continue;
367 
368 		clk_disable(clock);
369 	}
370 }
371 
372 static int sysc_enable_opt_clocks(struct sysc *ddata)
373 {
374 	struct clk *clock;
375 	int i, error;
376 
377 	if (!ddata->clocks)
378 		return 0;
379 
380 	for (i = SYSC_OPTFCK0; i < SYSC_MAX_CLOCKS; i++) {
381 		clock = ddata->clocks[i];
382 
383 		/* Assume no holes for opt clocks */
384 		if (IS_ERR_OR_NULL(clock))
385 			return 0;
386 
387 		error = clk_enable(clock);
388 		if (error)
389 			goto err_disable;
390 	}
391 
392 	return 0;
393 
394 err_disable:
395 	for (i--; i >= 0; i--) {
396 		clock = ddata->clocks[i];
397 		if (IS_ERR_OR_NULL(clock))
398 			continue;
399 
400 		clk_disable(clock);
401 	}
402 
403 	return error;
404 }
405 
406 static void sysc_disable_opt_clocks(struct sysc *ddata)
407 {
408 	struct clk *clock;
409 	int i;
410 
411 	if (!ddata->clocks)
412 		return;
413 
414 	for (i = SYSC_OPTFCK0; i < SYSC_MAX_CLOCKS; i++) {
415 		clock = ddata->clocks[i];
416 
417 		/* Assume no holes for opt clocks */
418 		if (IS_ERR_OR_NULL(clock))
419 			return;
420 
421 		clk_disable(clock);
422 	}
423 }
424 
425 /**
426  * sysc_init_resets - init rstctrl reset line if configured
427  * @ddata: device driver data
428  *
429  * See sysc_rstctrl_reset_deassert().
430  */
431 static int sysc_init_resets(struct sysc *ddata)
432 {
433 	ddata->rsts =
434 		devm_reset_control_array_get_optional_exclusive(ddata->dev);
435 	if (IS_ERR(ddata->rsts))
436 		return PTR_ERR(ddata->rsts);
437 
438 	return 0;
439 }
440 
441 /**
442  * sysc_parse_and_check_child_range - parses module IO region from ranges
443  * @ddata: device driver data
444  *
445  * In general we only need rev, syss, and sysc registers and not the whole
446  * module range. But we do want the offsets for these registers from the
447  * module base. This allows us to check them against the legacy hwmod
448  * platform data. Let's also check the ranges are configured properly.
449  */
450 static int sysc_parse_and_check_child_range(struct sysc *ddata)
451 {
452 	struct device_node *np = ddata->dev->of_node;
453 	const __be32 *ranges;
454 	u32 nr_addr, nr_size;
455 	int len, error;
456 
457 	ranges = of_get_property(np, "ranges", &len);
458 	if (!ranges) {
459 		dev_err(ddata->dev, "missing ranges for %pOF\n", np);
460 
461 		return -ENOENT;
462 	}
463 
464 	len /= sizeof(*ranges);
465 
466 	if (len < 3) {
467 		dev_err(ddata->dev, "incomplete ranges for %pOF\n", np);
468 
469 		return -EINVAL;
470 	}
471 
472 	error = of_property_read_u32(np, "#address-cells", &nr_addr);
473 	if (error)
474 		return -ENOENT;
475 
476 	error = of_property_read_u32(np, "#size-cells", &nr_size);
477 	if (error)
478 		return -ENOENT;
479 
480 	if (nr_addr != 1 || nr_size != 1) {
481 		dev_err(ddata->dev, "invalid ranges for %pOF\n", np);
482 
483 		return -EINVAL;
484 	}
485 
486 	ranges++;
487 	ddata->module_pa = of_translate_address(np, ranges++);
488 	ddata->module_size = be32_to_cpup(ranges);
489 
490 	return 0;
491 }
492 
493 static struct device_node *stdout_path;
494 
495 static void sysc_init_stdout_path(struct sysc *ddata)
496 {
497 	struct device_node *np = NULL;
498 	const char *uart;
499 
500 	if (IS_ERR(stdout_path))
501 		return;
502 
503 	if (stdout_path)
504 		return;
505 
506 	np = of_find_node_by_path("/chosen");
507 	if (!np)
508 		goto err;
509 
510 	uart = of_get_property(np, "stdout-path", NULL);
511 	if (!uart)
512 		goto err;
513 
514 	np = of_find_node_by_path(uart);
515 	if (!np)
516 		goto err;
517 
518 	stdout_path = np;
519 
520 	return;
521 
522 err:
523 	stdout_path = ERR_PTR(-ENODEV);
524 }
525 
526 static void sysc_check_quirk_stdout(struct sysc *ddata,
527 				    struct device_node *np)
528 {
529 	sysc_init_stdout_path(ddata);
530 	if (np != stdout_path)
531 		return;
532 
533 	ddata->cfg.quirks |= SYSC_QUIRK_NO_IDLE_ON_INIT |
534 				SYSC_QUIRK_NO_RESET_ON_INIT;
535 }
536 
537 /**
538  * sysc_check_one_child - check child configuration
539  * @ddata: device driver data
540  * @np: child device node
541  *
542  * Let's avoid messy situations where we have new interconnect target
543  * node but children have "ti,hwmods". These belong to the interconnect
544  * target node and are managed by this driver.
545  */
546 static int sysc_check_one_child(struct sysc *ddata,
547 				struct device_node *np)
548 {
549 	const char *name;
550 
551 	name = of_get_property(np, "ti,hwmods", NULL);
552 	if (name)
553 		dev_warn(ddata->dev, "really a child ti,hwmods property?");
554 
555 	sysc_check_quirk_stdout(ddata, np);
556 	sysc_parse_dts_quirks(ddata, np, true);
557 
558 	return 0;
559 }
560 
561 static int sysc_check_children(struct sysc *ddata)
562 {
563 	struct device_node *child;
564 	int error;
565 
566 	for_each_child_of_node(ddata->dev->of_node, child) {
567 		error = sysc_check_one_child(ddata, child);
568 		if (error)
569 			return error;
570 	}
571 
572 	return 0;
573 }
574 
575 /*
576  * So far only I2C uses 16-bit read access with clockactivity with revision
577  * in two registers with stride of 4. We can detect this based on the rev
578  * register size to configure things far enough to be able to properly read
579  * the revision register.
580  */
581 static void sysc_check_quirk_16bit(struct sysc *ddata, struct resource *res)
582 {
583 	if (resource_size(res) == 8)
584 		ddata->cfg.quirks |= SYSC_QUIRK_16BIT | SYSC_QUIRK_USE_CLOCKACT;
585 }
586 
587 /**
588  * sysc_parse_one - parses the interconnect target module registers
589  * @ddata: device driver data
590  * @reg: register to parse
591  */
592 static int sysc_parse_one(struct sysc *ddata, enum sysc_registers reg)
593 {
594 	struct resource *res;
595 	const char *name;
596 
597 	switch (reg) {
598 	case SYSC_REVISION:
599 	case SYSC_SYSCONFIG:
600 	case SYSC_SYSSTATUS:
601 		name = reg_names[reg];
602 		break;
603 	default:
604 		return -EINVAL;
605 	}
606 
607 	res = platform_get_resource_byname(to_platform_device(ddata->dev),
608 					   IORESOURCE_MEM, name);
609 	if (!res) {
610 		ddata->offsets[reg] = -ENODEV;
611 
612 		return 0;
613 	}
614 
615 	ddata->offsets[reg] = res->start - ddata->module_pa;
616 	if (reg == SYSC_REVISION)
617 		sysc_check_quirk_16bit(ddata, res);
618 
619 	return 0;
620 }
621 
622 static int sysc_parse_registers(struct sysc *ddata)
623 {
624 	int i, error;
625 
626 	for (i = 0; i < SYSC_MAX_REGS; i++) {
627 		error = sysc_parse_one(ddata, i);
628 		if (error)
629 			return error;
630 	}
631 
632 	return 0;
633 }
634 
635 /**
636  * sysc_check_registers - check for misconfigured register overlaps
637  * @ddata: device driver data
638  */
639 static int sysc_check_registers(struct sysc *ddata)
640 {
641 	int i, j, nr_regs = 0, nr_matches = 0;
642 
643 	for (i = 0; i < SYSC_MAX_REGS; i++) {
644 		if (ddata->offsets[i] < 0)
645 			continue;
646 
647 		if (ddata->offsets[i] > (ddata->module_size - 4)) {
648 			dev_err(ddata->dev, "register outside module range");
649 
650 				return -EINVAL;
651 		}
652 
653 		for (j = 0; j < SYSC_MAX_REGS; j++) {
654 			if (ddata->offsets[j] < 0)
655 				continue;
656 
657 			if (ddata->offsets[i] == ddata->offsets[j])
658 				nr_matches++;
659 		}
660 		nr_regs++;
661 	}
662 
663 	if (nr_regs < 1) {
664 		dev_err(ddata->dev, "missing registers\n");
665 
666 		return -EINVAL;
667 	}
668 
669 	if (nr_matches > nr_regs) {
670 		dev_err(ddata->dev, "overlapping registers: (%i/%i)",
671 			nr_regs, nr_matches);
672 
673 		return -EINVAL;
674 	}
675 
676 	return 0;
677 }
678 
679 /**
680  * syc_ioremap - ioremap register space for the interconnect target module
681  * @ddata: device driver data
682  *
683  * Note that the interconnect target module registers can be anywhere
684  * within the interconnect target module range. For example, SGX has
685  * them at offset 0x1fc00 in the 32MB module address space. And cpsw
686  * has them at offset 0x1200 in the CPSW_WR child. Usually the
687  * the interconnect target module registers are at the beginning of
688  * the module range though.
689  */
690 static int sysc_ioremap(struct sysc *ddata)
691 {
692 	int size;
693 
694 	size = max3(ddata->offsets[SYSC_REVISION],
695 		    ddata->offsets[SYSC_SYSCONFIG],
696 		    ddata->offsets[SYSC_SYSSTATUS]);
697 
698 	if (size < 0 || (size + sizeof(u32)) > ddata->module_size)
699 		return -EINVAL;
700 
701 	ddata->module_va = devm_ioremap(ddata->dev,
702 					ddata->module_pa,
703 					size + sizeof(u32));
704 	if (!ddata->module_va)
705 		return -EIO;
706 
707 	return 0;
708 }
709 
710 /**
711  * sysc_map_and_check_registers - ioremap and check device registers
712  * @ddata: device driver data
713  */
714 static int sysc_map_and_check_registers(struct sysc *ddata)
715 {
716 	int error;
717 
718 	error = sysc_parse_and_check_child_range(ddata);
719 	if (error)
720 		return error;
721 
722 	error = sysc_check_children(ddata);
723 	if (error)
724 		return error;
725 
726 	error = sysc_parse_registers(ddata);
727 	if (error)
728 		return error;
729 
730 	error = sysc_ioremap(ddata);
731 	if (error)
732 		return error;
733 
734 	error = sysc_check_registers(ddata);
735 	if (error)
736 		return error;
737 
738 	return 0;
739 }
740 
741 /**
742  * sysc_show_rev - read and show interconnect target module revision
743  * @bufp: buffer to print the information to
744  * @ddata: device driver data
745  */
746 static int sysc_show_rev(char *bufp, struct sysc *ddata)
747 {
748 	int len;
749 
750 	if (ddata->offsets[SYSC_REVISION] < 0)
751 		return sprintf(bufp, ":NA");
752 
753 	len = sprintf(bufp, ":%08x", ddata->revision);
754 
755 	return len;
756 }
757 
758 static int sysc_show_reg(struct sysc *ddata,
759 			 char *bufp, enum sysc_registers reg)
760 {
761 	if (ddata->offsets[reg] < 0)
762 		return sprintf(bufp, ":NA");
763 
764 	return sprintf(bufp, ":%x", ddata->offsets[reg]);
765 }
766 
767 static int sysc_show_name(char *bufp, struct sysc *ddata)
768 {
769 	if (!ddata->name)
770 		return 0;
771 
772 	return sprintf(bufp, ":%s", ddata->name);
773 }
774 
775 /**
776  * sysc_show_registers - show information about interconnect target module
777  * @ddata: device driver data
778  */
779 static void sysc_show_registers(struct sysc *ddata)
780 {
781 	char buf[128];
782 	char *bufp = buf;
783 	int i;
784 
785 	for (i = 0; i < SYSC_MAX_REGS; i++)
786 		bufp += sysc_show_reg(ddata, bufp, i);
787 
788 	bufp += sysc_show_rev(bufp, ddata);
789 	bufp += sysc_show_name(bufp, ddata);
790 
791 	dev_dbg(ddata->dev, "%llx:%x%s\n",
792 		ddata->module_pa, ddata->module_size,
793 		buf);
794 }
795 
796 #define SYSC_IDLE_MASK	(SYSC_NR_IDLEMODES - 1)
797 
798 static int sysc_enable_module(struct device *dev)
799 {
800 	struct sysc *ddata;
801 	const struct sysc_regbits *regbits;
802 	u32 reg, idlemodes, best_mode;
803 
804 	ddata = dev_get_drvdata(dev);
805 	if (ddata->offsets[SYSC_SYSCONFIG] == -ENODEV)
806 		return 0;
807 
808 	/*
809 	 * TODO: Need to prevent clockdomain autoidle?
810 	 * See clkdm_deny_idle() in arch/mach-omap2/omap_hwmod.c
811 	 */
812 
813 	regbits = ddata->cap->regbits;
814 	reg = sysc_read(ddata, ddata->offsets[SYSC_SYSCONFIG]);
815 
816 	/* Set SIDLE mode */
817 	idlemodes = ddata->cfg.sidlemodes;
818 	if (!idlemodes || regbits->sidle_shift < 0)
819 		goto set_midle;
820 
821 	best_mode = fls(ddata->cfg.sidlemodes) - 1;
822 	if (best_mode > SYSC_IDLE_MASK) {
823 		dev_err(dev, "%s: invalid sidlemode\n", __func__);
824 		return -EINVAL;
825 	}
826 
827 	reg &= ~(SYSC_IDLE_MASK << regbits->sidle_shift);
828 	reg |= best_mode << regbits->sidle_shift;
829 	sysc_write(ddata, ddata->offsets[SYSC_SYSCONFIG], reg);
830 
831 set_midle:
832 	/* Set MIDLE mode */
833 	idlemodes = ddata->cfg.midlemodes;
834 	if (!idlemodes || regbits->midle_shift < 0)
835 		return 0;
836 
837 	best_mode = fls(ddata->cfg.midlemodes) - 1;
838 	if (best_mode > SYSC_IDLE_MASK) {
839 		dev_err(dev, "%s: invalid midlemode\n", __func__);
840 		return -EINVAL;
841 	}
842 
843 	reg &= ~(SYSC_IDLE_MASK << regbits->midle_shift);
844 	reg |= best_mode << regbits->midle_shift;
845 	sysc_write(ddata, ddata->offsets[SYSC_SYSCONFIG], reg);
846 
847 	return 0;
848 }
849 
850 static int sysc_best_idle_mode(u32 idlemodes, u32 *best_mode)
851 {
852 	if (idlemodes & BIT(SYSC_IDLE_SMART_WKUP))
853 		*best_mode = SYSC_IDLE_SMART_WKUP;
854 	else if (idlemodes & BIT(SYSC_IDLE_SMART))
855 		*best_mode = SYSC_IDLE_SMART;
856 	else if (idlemodes & SYSC_IDLE_FORCE)
857 		*best_mode = SYSC_IDLE_FORCE;
858 	else
859 		return -EINVAL;
860 
861 	return 0;
862 }
863 
864 static int sysc_disable_module(struct device *dev)
865 {
866 	struct sysc *ddata;
867 	const struct sysc_regbits *regbits;
868 	u32 reg, idlemodes, best_mode;
869 	int ret;
870 
871 	ddata = dev_get_drvdata(dev);
872 	if (ddata->offsets[SYSC_SYSCONFIG] == -ENODEV)
873 		return 0;
874 
875 	/*
876 	 * TODO: Need to prevent clockdomain autoidle?
877 	 * See clkdm_deny_idle() in arch/mach-omap2/omap_hwmod.c
878 	 */
879 
880 	regbits = ddata->cap->regbits;
881 	reg = sysc_read(ddata, ddata->offsets[SYSC_SYSCONFIG]);
882 
883 	/* Set MIDLE mode */
884 	idlemodes = ddata->cfg.midlemodes;
885 	if (!idlemodes || regbits->midle_shift < 0)
886 		goto set_sidle;
887 
888 	ret = sysc_best_idle_mode(idlemodes, &best_mode);
889 	if (ret) {
890 		dev_err(dev, "%s: invalid midlemode\n", __func__);
891 		return ret;
892 	}
893 
894 	reg &= ~(SYSC_IDLE_MASK << regbits->midle_shift);
895 	reg |= best_mode << regbits->midle_shift;
896 	sysc_write(ddata, ddata->offsets[SYSC_SYSCONFIG], reg);
897 
898 set_sidle:
899 	/* Set SIDLE mode */
900 	idlemodes = ddata->cfg.sidlemodes;
901 	if (!idlemodes || regbits->sidle_shift < 0)
902 		return 0;
903 
904 	ret = sysc_best_idle_mode(idlemodes, &best_mode);
905 	if (ret) {
906 		dev_err(dev, "%s: invalid sidlemode\n", __func__);
907 		return ret;
908 	}
909 
910 	reg &= ~(SYSC_IDLE_MASK << regbits->sidle_shift);
911 	reg |= best_mode << regbits->sidle_shift;
912 	sysc_write(ddata, ddata->offsets[SYSC_SYSCONFIG], reg);
913 
914 	return 0;
915 }
916 
917 static int __maybe_unused sysc_runtime_suspend_legacy(struct device *dev,
918 						      struct sysc *ddata)
919 {
920 	struct ti_sysc_platform_data *pdata;
921 	int error;
922 
923 	pdata = dev_get_platdata(ddata->dev);
924 	if (!pdata)
925 		return 0;
926 
927 	if (!pdata->idle_module)
928 		return -ENODEV;
929 
930 	error = pdata->idle_module(dev, &ddata->cookie);
931 	if (error)
932 		dev_err(dev, "%s: could not idle: %i\n",
933 			__func__, error);
934 
935 	return 0;
936 }
937 
938 static int __maybe_unused sysc_runtime_resume_legacy(struct device *dev,
939 						     struct sysc *ddata)
940 {
941 	struct ti_sysc_platform_data *pdata;
942 	int error;
943 
944 	pdata = dev_get_platdata(ddata->dev);
945 	if (!pdata)
946 		return 0;
947 
948 	if (!pdata->enable_module)
949 		return -ENODEV;
950 
951 	error = pdata->enable_module(dev, &ddata->cookie);
952 	if (error)
953 		dev_err(dev, "%s: could not enable: %i\n",
954 			__func__, error);
955 
956 	return 0;
957 }
958 
959 static int __maybe_unused sysc_runtime_suspend(struct device *dev)
960 {
961 	struct sysc *ddata;
962 	int error = 0;
963 
964 	ddata = dev_get_drvdata(dev);
965 
966 	if (!ddata->enabled)
967 		return 0;
968 
969 	if (ddata->legacy_mode) {
970 		error = sysc_runtime_suspend_legacy(dev, ddata);
971 		if (error)
972 			return error;
973 	} else {
974 		error = sysc_disable_module(dev);
975 		if (error)
976 			return error;
977 	}
978 
979 	sysc_disable_main_clocks(ddata);
980 
981 	if (sysc_opt_clks_needed(ddata))
982 		sysc_disable_opt_clocks(ddata);
983 
984 	ddata->enabled = false;
985 
986 	return error;
987 }
988 
989 static int __maybe_unused sysc_runtime_resume(struct device *dev)
990 {
991 	struct sysc *ddata;
992 	int error = 0;
993 
994 	ddata = dev_get_drvdata(dev);
995 
996 	if (ddata->enabled)
997 		return 0;
998 
999 	if (sysc_opt_clks_needed(ddata)) {
1000 		error = sysc_enable_opt_clocks(ddata);
1001 		if (error)
1002 			return error;
1003 	}
1004 
1005 	error = sysc_enable_main_clocks(ddata);
1006 	if (error)
1007 		goto err_opt_clocks;
1008 
1009 	if (ddata->legacy_mode) {
1010 		error = sysc_runtime_resume_legacy(dev, ddata);
1011 		if (error)
1012 			goto err_main_clocks;
1013 	} else {
1014 		error = sysc_enable_module(dev);
1015 		if (error)
1016 			goto err_main_clocks;
1017 	}
1018 
1019 	ddata->enabled = true;
1020 
1021 	return 0;
1022 
1023 err_main_clocks:
1024 	sysc_disable_main_clocks(ddata);
1025 err_opt_clocks:
1026 	if (sysc_opt_clks_needed(ddata))
1027 		sysc_disable_opt_clocks(ddata);
1028 
1029 	return error;
1030 }
1031 
1032 static int __maybe_unused sysc_noirq_suspend(struct device *dev)
1033 {
1034 	struct sysc *ddata;
1035 
1036 	ddata = dev_get_drvdata(dev);
1037 
1038 	if (ddata->cfg.quirks & SYSC_QUIRK_LEGACY_IDLE)
1039 		return 0;
1040 
1041 	return pm_runtime_force_suspend(dev);
1042 }
1043 
1044 static int __maybe_unused sysc_noirq_resume(struct device *dev)
1045 {
1046 	struct sysc *ddata;
1047 
1048 	ddata = dev_get_drvdata(dev);
1049 
1050 	if (ddata->cfg.quirks & SYSC_QUIRK_LEGACY_IDLE)
1051 		return 0;
1052 
1053 	return pm_runtime_force_resume(dev);
1054 }
1055 
1056 static const struct dev_pm_ops sysc_pm_ops = {
1057 	SET_NOIRQ_SYSTEM_SLEEP_PM_OPS(sysc_noirq_suspend, sysc_noirq_resume)
1058 	SET_RUNTIME_PM_OPS(sysc_runtime_suspend,
1059 			   sysc_runtime_resume,
1060 			   NULL)
1061 };
1062 
1063 /* Module revision register based quirks */
1064 struct sysc_revision_quirk {
1065 	const char *name;
1066 	u32 base;
1067 	int rev_offset;
1068 	int sysc_offset;
1069 	int syss_offset;
1070 	u32 revision;
1071 	u32 revision_mask;
1072 	u32 quirks;
1073 };
1074 
1075 #define SYSC_QUIRK(optname, optbase, optrev, optsysc, optsyss,		\
1076 		   optrev_val, optrevmask, optquirkmask)		\
1077 	{								\
1078 		.name = (optname),					\
1079 		.base = (optbase),					\
1080 		.rev_offset = (optrev),					\
1081 		.sysc_offset = (optsysc),				\
1082 		.syss_offset = (optsyss),				\
1083 		.revision = (optrev_val),				\
1084 		.revision_mask = (optrevmask),				\
1085 		.quirks = (optquirkmask),				\
1086 	}
1087 
1088 static const struct sysc_revision_quirk sysc_revision_quirks[] = {
1089 	/* These drivers need to be fixed to not use pm_runtime_irq_safe() */
1090 	SYSC_QUIRK("gpio", 0, 0, 0x10, 0x114, 0x50600801, 0xffff00ff,
1091 		   SYSC_QUIRK_LEGACY_IDLE | SYSC_QUIRK_OPT_CLKS_IN_RESET),
1092 	SYSC_QUIRK("mmu", 0, 0, 0x10, 0x14, 0x00000020, 0xffffffff,
1093 		   SYSC_QUIRK_LEGACY_IDLE),
1094 	SYSC_QUIRK("mmu", 0, 0, 0x10, 0x14, 0x00000030, 0xffffffff,
1095 		   SYSC_QUIRK_LEGACY_IDLE),
1096 	SYSC_QUIRK("sham", 0, 0x100, 0x110, 0x114, 0x40000c03, 0xffffffff,
1097 		   SYSC_QUIRK_LEGACY_IDLE),
1098 	SYSC_QUIRK("smartreflex", 0, -1, 0x24, -1, 0x00000000, 0xffffffff,
1099 		   SYSC_QUIRK_LEGACY_IDLE),
1100 	SYSC_QUIRK("smartreflex", 0, -1, 0x38, -1, 0x00000000, 0xffffffff,
1101 		   SYSC_QUIRK_LEGACY_IDLE),
1102 	SYSC_QUIRK("timer", 0, 0, 0x10, 0x14, 0x00000015, 0xffffffff,
1103 		   0),
1104 	/* Some timers on omap4 and later */
1105 	SYSC_QUIRK("timer", 0, 0, 0x10, -1, 0x50002100, 0xffffffff,
1106 		   0),
1107 	SYSC_QUIRK("timer", 0, 0, 0x10, -1, 0x4fff1301, 0xffff00ff,
1108 		   0),
1109 	SYSC_QUIRK("uart", 0, 0x50, 0x54, 0x58, 0x00000052, 0xffffffff,
1110 		   SYSC_QUIRK_SWSUP_SIDLE_ACT | SYSC_QUIRK_LEGACY_IDLE),
1111 	/* Uarts on omap4 and later */
1112 	SYSC_QUIRK("uart", 0, 0x50, 0x54, 0x58, 0x50411e03, 0xffff00ff,
1113 		   SYSC_QUIRK_SWSUP_SIDLE_ACT | SYSC_QUIRK_LEGACY_IDLE),
1114 	SYSC_QUIRK("uart", 0, 0x50, 0x54, 0x58, 0x47422e03, 0xffffffff,
1115 		   SYSC_QUIRK_SWSUP_SIDLE_ACT | SYSC_QUIRK_LEGACY_IDLE),
1116 
1117 	/* Quirks that need to be set based on the module address */
1118 	SYSC_QUIRK("mcpdm", 0x40132000, 0, 0x10, -1, 0x50000800, 0xffffffff,
1119 		   SYSC_QUIRK_EXT_OPT_CLOCK | SYSC_QUIRK_NO_RESET_ON_INIT |
1120 		   SYSC_QUIRK_SWSUP_SIDLE),
1121 
1122 #ifdef DEBUG
1123 	SYSC_QUIRK("adc", 0, 0, 0x10, -1, 0x47300001, 0xffffffff, 0),
1124 	SYSC_QUIRK("atl", 0, 0, -1, -1, 0x0a070100, 0xffffffff, 0),
1125 	SYSC_QUIRK("aess", 0, 0, 0x10, -1, 0x40000000, 0xffffffff, 0),
1126 	SYSC_QUIRK("cm", 0, 0, -1, -1, 0x40000301, 0xffffffff, 0),
1127 	SYSC_QUIRK("control", 0, 0, 0x10, -1, 0x40000900, 0xffffffff, 0),
1128 	SYSC_QUIRK("cpgmac", 0, 0x1200, 0x1208, 0x1204, 0x4edb1902,
1129 		   0xffff00f0, 0),
1130 	SYSC_QUIRK("dcan", 0, 0, -1, -1, 0xffffffff, 0xffffffff, 0),
1131 	SYSC_QUIRK("dcan", 0, 0, -1, -1, 0x00001401, 0xffffffff, 0),
1132 	SYSC_QUIRK("dmic", 0, 0, 0x10, -1, 0x50010000, 0xffffffff, 0),
1133 	SYSC_QUIRK("dwc3", 0, 0, 0x10, -1, 0x500a0200, 0xffffffff, 0),
1134 	SYSC_QUIRK("epwmss", 0, 0, 0x4, -1, 0x47400001, 0xffffffff, 0),
1135 	SYSC_QUIRK("gpu", 0, 0x1fc00, 0x1fc10, -1, 0, 0, 0),
1136 	SYSC_QUIRK("hdq1w", 0, 0, 0x14, 0x18, 0x00000006, 0xffffffff, 0),
1137 	SYSC_QUIRK("hdq1w", 0, 0, 0x14, 0x18, 0x0000000a, 0xffffffff, 0),
1138 	SYSC_QUIRK("hsi", 0, 0, 0x10, 0x14, 0x50043101, 0xffffffff, 0),
1139 	SYSC_QUIRK("iss", 0, 0, 0x10, -1, 0x40000101, 0xffffffff, 0),
1140 	SYSC_QUIRK("i2c", 0, 0, 0x10, 0x90, 0x5040000a, 0xfffff0f0, 0),
1141 	SYSC_QUIRK("lcdc", 0, 0, 0x54, -1, 0x4f201000, 0xffffffff, 0),
1142 	SYSC_QUIRK("mcasp", 0, 0, 0x4, -1, 0x44306302, 0xffffffff, 0),
1143 	SYSC_QUIRK("mcasp", 0, 0, 0x4, -1, 0x44307b02, 0xffffffff, 0),
1144 	SYSC_QUIRK("mcbsp", 0, -1, 0x8c, -1, 0, 0, 0),
1145 	SYSC_QUIRK("mcspi", 0, 0, 0x10, -1, 0x40300a0b, 0xffff00ff, 0),
1146 	SYSC_QUIRK("mcspi", 0, 0, 0x110, 0x114, 0x40300a0b, 0xffffffff, 0),
1147 	SYSC_QUIRK("mailbox", 0, 0, 0x10, -1, 0x00000400, 0xffffffff, 0),
1148 	SYSC_QUIRK("m3", 0, 0, -1, -1, 0x5f580105, 0x0fff0f00, 0),
1149 	SYSC_QUIRK("ocp2scp", 0, 0, 0x10, 0x14, 0x50060005, 0xfffffff0, 0),
1150 	SYSC_QUIRK("ocp2scp", 0, 0, -1, -1, 0x50060007, 0xffffffff, 0),
1151 	SYSC_QUIRK("padconf", 0, 0, 0x10, -1, 0x4fff0800, 0xffffffff, 0),
1152 	SYSC_QUIRK("padconf", 0, 0, -1, -1, 0x40001100, 0xffffffff, 0),
1153 	SYSC_QUIRK("prcm", 0, 0, -1, -1, 0x40000100, 0xffffffff, 0),
1154 	SYSC_QUIRK("prcm", 0, 0, -1, -1, 0x00004102, 0xffffffff, 0),
1155 	SYSC_QUIRK("prcm", 0, 0, -1, -1, 0x40000400, 0xffffffff, 0),
1156 	SYSC_QUIRK("scm", 0, 0, 0x10, -1, 0x40000900, 0xffffffff, 0),
1157 	SYSC_QUIRK("scm", 0, 0, -1, -1, 0x4e8b0100, 0xffffffff, 0),
1158 	SYSC_QUIRK("scm", 0, 0, -1, -1, 0x4f000100, 0xffffffff, 0),
1159 	SYSC_QUIRK("scm", 0, 0, -1, -1, 0x40000900, 0xffffffff, 0),
1160 	SYSC_QUIRK("scrm", 0, 0, -1, -1, 0x00000010, 0xffffffff, 0),
1161 	SYSC_QUIRK("sdio", 0, 0, 0x10, -1, 0x40202301, 0xffff0ff0, 0),
1162 	SYSC_QUIRK("sdio", 0, 0x2fc, 0x110, 0x114, 0x31010000, 0xffffffff, 0),
1163 	SYSC_QUIRK("sdma", 0, 0, 0x2c, 0x28, 0x00010900, 0xffffffff, 0),
1164 	SYSC_QUIRK("slimbus", 0, 0, 0x10, -1, 0x40000902, 0xffffffff, 0),
1165 	SYSC_QUIRK("slimbus", 0, 0, 0x10, -1, 0x40002903, 0xffffffff, 0),
1166 	SYSC_QUIRK("spinlock", 0, 0, 0x10, -1, 0x50020000, 0xffffffff, 0),
1167 	SYSC_QUIRK("rng", 0, 0x1fe0, 0x1fe4, -1, 0x00000020, 0xffffffff, 0),
1168 	SYSC_QUIRK("rtc", 0, 0x74, 0x78, -1, 0x4eb01908, 0xffff00f0, 0),
1169 	SYSC_QUIRK("timer32k", 0, 0, 0x4, -1, 0x00000060, 0xffffffff, 0),
1170 	SYSC_QUIRK("usbhstll", 0, 0, 0x10, 0x14, 0x00000004, 0xffffffff, 0),
1171 	SYSC_QUIRK("usbhstll", 0, 0, 0x10, 0x14, 0x00000008, 0xffffffff, 0),
1172 	SYSC_QUIRK("usb_host_hs", 0, 0, 0x10, 0x14, 0x50700100, 0xffffffff, 0),
1173 	SYSC_QUIRK("usb_host_hs", 0, 0, 0x10, -1, 0x50700101, 0xffffffff, 0),
1174 	SYSC_QUIRK("usb_otg_hs", 0, 0x400, 0x404, 0x408, 0x00000050,
1175 		   0xffffffff, 0),
1176 	SYSC_QUIRK("wdt", 0, 0, 0x10, 0x14, 0x502a0500, 0xfffff0f0, 0),
1177 	SYSC_QUIRK("vfpe", 0, 0, 0x104, -1, 0x4d001200, 0xffffffff, 0),
1178 #endif
1179 };
1180 
1181 /*
1182  * Early quirks based on module base and register offsets only that are
1183  * needed before the module revision can be read
1184  */
1185 static void sysc_init_early_quirks(struct sysc *ddata)
1186 {
1187 	const struct sysc_revision_quirk *q;
1188 	int i;
1189 
1190 	for (i = 0; i < ARRAY_SIZE(sysc_revision_quirks); i++) {
1191 		q = &sysc_revision_quirks[i];
1192 
1193 		if (!q->base)
1194 			continue;
1195 
1196 		if (q->base != ddata->module_pa)
1197 			continue;
1198 
1199 		if (q->rev_offset >= 0 &&
1200 		    q->rev_offset != ddata->offsets[SYSC_REVISION])
1201 			continue;
1202 
1203 		if (q->sysc_offset >= 0 &&
1204 		    q->sysc_offset != ddata->offsets[SYSC_SYSCONFIG])
1205 			continue;
1206 
1207 		if (q->syss_offset >= 0 &&
1208 		    q->syss_offset != ddata->offsets[SYSC_SYSSTATUS])
1209 			continue;
1210 
1211 		ddata->name = q->name;
1212 		ddata->cfg.quirks |= q->quirks;
1213 	}
1214 }
1215 
1216 /* Quirks that also consider the revision register value */
1217 static void sysc_init_revision_quirks(struct sysc *ddata)
1218 {
1219 	const struct sysc_revision_quirk *q;
1220 	int i;
1221 
1222 	for (i = 0; i < ARRAY_SIZE(sysc_revision_quirks); i++) {
1223 		q = &sysc_revision_quirks[i];
1224 
1225 		if (q->base && q->base != ddata->module_pa)
1226 			continue;
1227 
1228 		if (q->rev_offset >= 0 &&
1229 		    q->rev_offset != ddata->offsets[SYSC_REVISION])
1230 			continue;
1231 
1232 		if (q->sysc_offset >= 0 &&
1233 		    q->sysc_offset != ddata->offsets[SYSC_SYSCONFIG])
1234 			continue;
1235 
1236 		if (q->syss_offset >= 0 &&
1237 		    q->syss_offset != ddata->offsets[SYSC_SYSSTATUS])
1238 			continue;
1239 
1240 		if (q->revision == ddata->revision ||
1241 		    (q->revision & q->revision_mask) ==
1242 		    (ddata->revision & q->revision_mask)) {
1243 			ddata->name = q->name;
1244 			ddata->cfg.quirks |= q->quirks;
1245 		}
1246 	}
1247 }
1248 
1249 /*
1250  * Note that pdata->init_module() typically does a reset first. After
1251  * pdata->init_module() is done, PM runtime can be used for the interconnect
1252  * target module.
1253  */
1254 static int sysc_legacy_init(struct sysc *ddata)
1255 {
1256 	struct ti_sysc_platform_data *pdata = dev_get_platdata(ddata->dev);
1257 	int error;
1258 
1259 	if (!ddata->legacy_mode || !pdata || !pdata->init_module)
1260 		return 0;
1261 
1262 	error = pdata->init_module(ddata->dev, ddata->mdata, &ddata->cookie);
1263 	if (error == -EEXIST)
1264 		error = 0;
1265 
1266 	return error;
1267 }
1268 
1269 /**
1270  * sysc_rstctrl_reset_deassert - deassert rstctrl reset
1271  * @ddata: device driver data
1272  * @reset: reset before deassert
1273  *
1274  * A module can have both OCP softreset control and external rstctrl.
1275  * If more complicated rstctrl resets are needed, please handle these
1276  * directly from the child device driver and map only the module reset
1277  * for the parent interconnect target module device.
1278  *
1279  * Automatic reset of the module on init can be skipped with the
1280  * "ti,no-reset-on-init" device tree property.
1281  */
1282 static int sysc_rstctrl_reset_deassert(struct sysc *ddata, bool reset)
1283 {
1284 	int error;
1285 
1286 	if (!ddata->rsts)
1287 		return 0;
1288 
1289 	if (reset) {
1290 		error = reset_control_assert(ddata->rsts);
1291 		if (error)
1292 			return error;
1293 	}
1294 
1295 	return reset_control_deassert(ddata->rsts);
1296 }
1297 
1298 static int sysc_reset(struct sysc *ddata)
1299 {
1300 	int offset = ddata->offsets[SYSC_SYSCONFIG];
1301 	int val;
1302 
1303 	if (ddata->legacy_mode || offset < 0 ||
1304 	    ddata->cfg.quirks & SYSC_QUIRK_NO_RESET_ON_INIT)
1305 		return 0;
1306 
1307 	/*
1308 	 * Currently only support reset status in sysstatus.
1309 	 * Warn and return error in all other cases
1310 	 */
1311 	if (!ddata->cfg.syss_mask) {
1312 		dev_err(ddata->dev, "No ti,syss-mask. Reset failed\n");
1313 		return -EINVAL;
1314 	}
1315 
1316 	val = sysc_read(ddata, offset);
1317 	val |= (0x1 << ddata->cap->regbits->srst_shift);
1318 	sysc_write(ddata, offset, val);
1319 
1320 	/* Poll on reset status */
1321 	offset = ddata->offsets[SYSC_SYSSTATUS];
1322 
1323 	return readl_poll_timeout(ddata->module_va + offset, val,
1324 				  (val & ddata->cfg.syss_mask) == 0x0,
1325 				  100, MAX_MODULE_SOFTRESET_WAIT);
1326 }
1327 
1328 /*
1329  * At this point the module is configured enough to read the revision but
1330  * module may not be completely configured yet to use PM runtime. Enable
1331  * all clocks directly during init to configure the quirks needed for PM
1332  * runtime based on the revision register.
1333  */
1334 static int sysc_init_module(struct sysc *ddata)
1335 {
1336 	int error = 0;
1337 	bool manage_clocks = true;
1338 	bool reset = true;
1339 
1340 	if (ddata->cfg.quirks & SYSC_QUIRK_NO_RESET_ON_INIT)
1341 		reset = false;
1342 
1343 	error = sysc_rstctrl_reset_deassert(ddata, reset);
1344 	if (error)
1345 		return error;
1346 
1347 	if (ddata->cfg.quirks &
1348 	    (SYSC_QUIRK_NO_IDLE | SYSC_QUIRK_NO_IDLE_ON_INIT))
1349 		manage_clocks = false;
1350 
1351 	if (manage_clocks) {
1352 		error = sysc_enable_opt_clocks(ddata);
1353 		if (error)
1354 			return error;
1355 
1356 		error = sysc_enable_main_clocks(ddata);
1357 		if (error)
1358 			goto err_opt_clocks;
1359 	}
1360 
1361 	ddata->revision = sysc_read_revision(ddata);
1362 	sysc_init_revision_quirks(ddata);
1363 
1364 	error = sysc_legacy_init(ddata);
1365 	if (error)
1366 		goto err_main_clocks;
1367 
1368 	error = sysc_reset(ddata);
1369 	if (error)
1370 		dev_err(ddata->dev, "Reset failed with %d\n", error);
1371 
1372 err_main_clocks:
1373 	if (manage_clocks)
1374 		sysc_disable_main_clocks(ddata);
1375 err_opt_clocks:
1376 	if (manage_clocks)
1377 		sysc_disable_opt_clocks(ddata);
1378 
1379 	return error;
1380 }
1381 
1382 static int sysc_init_sysc_mask(struct sysc *ddata)
1383 {
1384 	struct device_node *np = ddata->dev->of_node;
1385 	int error;
1386 	u32 val;
1387 
1388 	error = of_property_read_u32(np, "ti,sysc-mask", &val);
1389 	if (error)
1390 		return 0;
1391 
1392 	if (val)
1393 		ddata->cfg.sysc_val = val & ddata->cap->sysc_mask;
1394 	else
1395 		ddata->cfg.sysc_val = ddata->cap->sysc_mask;
1396 
1397 	return 0;
1398 }
1399 
1400 static int sysc_init_idlemode(struct sysc *ddata, u8 *idlemodes,
1401 			      const char *name)
1402 {
1403 	struct device_node *np = ddata->dev->of_node;
1404 	struct property *prop;
1405 	const __be32 *p;
1406 	u32 val;
1407 
1408 	of_property_for_each_u32(np, name, prop, p, val) {
1409 		if (val >= SYSC_NR_IDLEMODES) {
1410 			dev_err(ddata->dev, "invalid idlemode: %i\n", val);
1411 			return -EINVAL;
1412 		}
1413 		*idlemodes |=  (1 << val);
1414 	}
1415 
1416 	return 0;
1417 }
1418 
1419 static int sysc_init_idlemodes(struct sysc *ddata)
1420 {
1421 	int error;
1422 
1423 	error = sysc_init_idlemode(ddata, &ddata->cfg.midlemodes,
1424 				   "ti,sysc-midle");
1425 	if (error)
1426 		return error;
1427 
1428 	error = sysc_init_idlemode(ddata, &ddata->cfg.sidlemodes,
1429 				   "ti,sysc-sidle");
1430 	if (error)
1431 		return error;
1432 
1433 	return 0;
1434 }
1435 
1436 /*
1437  * Only some devices on omap4 and later have SYSCONFIG reset done
1438  * bit. We can detect this if there is no SYSSTATUS at all, or the
1439  * SYSTATUS bit 0 is not used. Note that some SYSSTATUS registers
1440  * have multiple bits for the child devices like OHCI and EHCI.
1441  * Depends on SYSC being parsed first.
1442  */
1443 static int sysc_init_syss_mask(struct sysc *ddata)
1444 {
1445 	struct device_node *np = ddata->dev->of_node;
1446 	int error;
1447 	u32 val;
1448 
1449 	error = of_property_read_u32(np, "ti,syss-mask", &val);
1450 	if (error) {
1451 		if ((ddata->cap->type == TI_SYSC_OMAP4 ||
1452 		     ddata->cap->type == TI_SYSC_OMAP4_TIMER) &&
1453 		    (ddata->cfg.sysc_val & SYSC_OMAP4_SOFTRESET))
1454 			ddata->cfg.quirks |= SYSC_QUIRK_RESET_STATUS;
1455 
1456 		return 0;
1457 	}
1458 
1459 	if (!(val & 1) && (ddata->cfg.sysc_val & SYSC_OMAP4_SOFTRESET))
1460 		ddata->cfg.quirks |= SYSC_QUIRK_RESET_STATUS;
1461 
1462 	ddata->cfg.syss_mask = val;
1463 
1464 	return 0;
1465 }
1466 
1467 /*
1468  * Many child device drivers need to have fck and opt clocks available
1469  * to get the clock rate for device internal configuration etc.
1470  */
1471 static int sysc_child_add_named_clock(struct sysc *ddata,
1472 				      struct device *child,
1473 				      const char *name)
1474 {
1475 	struct clk *clk;
1476 	struct clk_lookup *l;
1477 	int error = 0;
1478 
1479 	if (!name)
1480 		return 0;
1481 
1482 	clk = clk_get(child, name);
1483 	if (!IS_ERR(clk)) {
1484 		clk_put(clk);
1485 
1486 		return -EEXIST;
1487 	}
1488 
1489 	clk = clk_get(ddata->dev, name);
1490 	if (IS_ERR(clk))
1491 		return -ENODEV;
1492 
1493 	l = clkdev_create(clk, name, dev_name(child));
1494 	if (!l)
1495 		error = -ENOMEM;
1496 
1497 	clk_put(clk);
1498 
1499 	return error;
1500 }
1501 
1502 static int sysc_child_add_clocks(struct sysc *ddata,
1503 				 struct device *child)
1504 {
1505 	int i, error;
1506 
1507 	for (i = 0; i < ddata->nr_clocks; i++) {
1508 		error = sysc_child_add_named_clock(ddata,
1509 						   child,
1510 						   ddata->clock_roles[i]);
1511 		if (error && error != -EEXIST) {
1512 			dev_err(ddata->dev, "could not add child clock %s: %i\n",
1513 				ddata->clock_roles[i], error);
1514 
1515 			return error;
1516 		}
1517 	}
1518 
1519 	return 0;
1520 }
1521 
1522 static struct device_type sysc_device_type = {
1523 };
1524 
1525 static struct sysc *sysc_child_to_parent(struct device *dev)
1526 {
1527 	struct device *parent = dev->parent;
1528 
1529 	if (!parent || parent->type != &sysc_device_type)
1530 		return NULL;
1531 
1532 	return dev_get_drvdata(parent);
1533 }
1534 
1535 static int __maybe_unused sysc_child_runtime_suspend(struct device *dev)
1536 {
1537 	struct sysc *ddata;
1538 	int error;
1539 
1540 	ddata = sysc_child_to_parent(dev);
1541 
1542 	error = pm_generic_runtime_suspend(dev);
1543 	if (error)
1544 		return error;
1545 
1546 	if (!ddata->enabled)
1547 		return 0;
1548 
1549 	return sysc_runtime_suspend(ddata->dev);
1550 }
1551 
1552 static int __maybe_unused sysc_child_runtime_resume(struct device *dev)
1553 {
1554 	struct sysc *ddata;
1555 	int error;
1556 
1557 	ddata = sysc_child_to_parent(dev);
1558 
1559 	if (!ddata->enabled) {
1560 		error = sysc_runtime_resume(ddata->dev);
1561 		if (error < 0)
1562 			dev_err(ddata->dev,
1563 				"%s error: %i\n", __func__, error);
1564 	}
1565 
1566 	return pm_generic_runtime_resume(dev);
1567 }
1568 
1569 #ifdef CONFIG_PM_SLEEP
1570 static int sysc_child_suspend_noirq(struct device *dev)
1571 {
1572 	struct sysc *ddata;
1573 	int error;
1574 
1575 	ddata = sysc_child_to_parent(dev);
1576 
1577 	dev_dbg(ddata->dev, "%s %s\n", __func__,
1578 		ddata->name ? ddata->name : "");
1579 
1580 	error = pm_generic_suspend_noirq(dev);
1581 	if (error) {
1582 		dev_err(dev, "%s error at %i: %i\n",
1583 			__func__, __LINE__, error);
1584 
1585 		return error;
1586 	}
1587 
1588 	if (!pm_runtime_status_suspended(dev)) {
1589 		error = pm_generic_runtime_suspend(dev);
1590 		if (error) {
1591 			dev_dbg(dev, "%s busy at %i: %i\n",
1592 				__func__, __LINE__, error);
1593 
1594 			return 0;
1595 		}
1596 
1597 		error = sysc_runtime_suspend(ddata->dev);
1598 		if (error) {
1599 			dev_err(dev, "%s error at %i: %i\n",
1600 				__func__, __LINE__, error);
1601 
1602 			return error;
1603 		}
1604 
1605 		ddata->child_needs_resume = true;
1606 	}
1607 
1608 	return 0;
1609 }
1610 
1611 static int sysc_child_resume_noirq(struct device *dev)
1612 {
1613 	struct sysc *ddata;
1614 	int error;
1615 
1616 	ddata = sysc_child_to_parent(dev);
1617 
1618 	dev_dbg(ddata->dev, "%s %s\n", __func__,
1619 		ddata->name ? ddata->name : "");
1620 
1621 	if (ddata->child_needs_resume) {
1622 		ddata->child_needs_resume = false;
1623 
1624 		error = sysc_runtime_resume(ddata->dev);
1625 		if (error)
1626 			dev_err(ddata->dev,
1627 				"%s runtime resume error: %i\n",
1628 				__func__, error);
1629 
1630 		error = pm_generic_runtime_resume(dev);
1631 		if (error)
1632 			dev_err(ddata->dev,
1633 				"%s generic runtime resume: %i\n",
1634 				__func__, error);
1635 	}
1636 
1637 	return pm_generic_resume_noirq(dev);
1638 }
1639 #endif
1640 
1641 static struct dev_pm_domain sysc_child_pm_domain = {
1642 	.ops = {
1643 		SET_RUNTIME_PM_OPS(sysc_child_runtime_suspend,
1644 				   sysc_child_runtime_resume,
1645 				   NULL)
1646 		USE_PLATFORM_PM_SLEEP_OPS
1647 		SET_NOIRQ_SYSTEM_SLEEP_PM_OPS(sysc_child_suspend_noirq,
1648 					      sysc_child_resume_noirq)
1649 	}
1650 };
1651 
1652 /**
1653  * sysc_legacy_idle_quirk - handle children in omap_device compatible way
1654  * @ddata: device driver data
1655  * @child: child device driver
1656  *
1657  * Allow idle for child devices as done with _od_runtime_suspend().
1658  * Otherwise many child devices will not idle because of the permanent
1659  * parent usecount set in pm_runtime_irq_safe().
1660  *
1661  * Note that the long term solution is to just modify the child device
1662  * drivers to not set pm_runtime_irq_safe() and then this can be just
1663  * dropped.
1664  */
1665 static void sysc_legacy_idle_quirk(struct sysc *ddata, struct device *child)
1666 {
1667 	if (!ddata->legacy_mode)
1668 		return;
1669 
1670 	if (ddata->cfg.quirks & SYSC_QUIRK_LEGACY_IDLE)
1671 		dev_pm_domain_set(child, &sysc_child_pm_domain);
1672 }
1673 
1674 static int sysc_notifier_call(struct notifier_block *nb,
1675 			      unsigned long event, void *device)
1676 {
1677 	struct device *dev = device;
1678 	struct sysc *ddata;
1679 	int error;
1680 
1681 	ddata = sysc_child_to_parent(dev);
1682 	if (!ddata)
1683 		return NOTIFY_DONE;
1684 
1685 	switch (event) {
1686 	case BUS_NOTIFY_ADD_DEVICE:
1687 		error = sysc_child_add_clocks(ddata, dev);
1688 		if (error)
1689 			return error;
1690 		sysc_legacy_idle_quirk(ddata, dev);
1691 		break;
1692 	default:
1693 		break;
1694 	}
1695 
1696 	return NOTIFY_DONE;
1697 }
1698 
1699 static struct notifier_block sysc_nb = {
1700 	.notifier_call = sysc_notifier_call,
1701 };
1702 
1703 /* Device tree configured quirks */
1704 struct sysc_dts_quirk {
1705 	const char *name;
1706 	u32 mask;
1707 };
1708 
1709 static const struct sysc_dts_quirk sysc_dts_quirks[] = {
1710 	{ .name = "ti,no-idle-on-init",
1711 	  .mask = SYSC_QUIRK_NO_IDLE_ON_INIT, },
1712 	{ .name = "ti,no-reset-on-init",
1713 	  .mask = SYSC_QUIRK_NO_RESET_ON_INIT, },
1714 	{ .name = "ti,no-idle",
1715 	  .mask = SYSC_QUIRK_NO_IDLE, },
1716 };
1717 
1718 static void sysc_parse_dts_quirks(struct sysc *ddata, struct device_node *np,
1719 				  bool is_child)
1720 {
1721 	const struct property *prop;
1722 	int i, len;
1723 
1724 	for (i = 0; i < ARRAY_SIZE(sysc_dts_quirks); i++) {
1725 		const char *name = sysc_dts_quirks[i].name;
1726 
1727 		prop = of_get_property(np, name, &len);
1728 		if (!prop)
1729 			continue;
1730 
1731 		ddata->cfg.quirks |= sysc_dts_quirks[i].mask;
1732 		if (is_child) {
1733 			dev_warn(ddata->dev,
1734 				 "dts flag should be at module level for %s\n",
1735 				 name);
1736 		}
1737 	}
1738 }
1739 
1740 static int sysc_init_dts_quirks(struct sysc *ddata)
1741 {
1742 	struct device_node *np = ddata->dev->of_node;
1743 	int error;
1744 	u32 val;
1745 
1746 	ddata->legacy_mode = of_get_property(np, "ti,hwmods", NULL);
1747 
1748 	sysc_parse_dts_quirks(ddata, np, false);
1749 	error = of_property_read_u32(np, "ti,sysc-delay-us", &val);
1750 	if (!error) {
1751 		if (val > 255) {
1752 			dev_warn(ddata->dev, "bad ti,sysc-delay-us: %i\n",
1753 				 val);
1754 		}
1755 
1756 		ddata->cfg.srst_udelay = (u8)val;
1757 	}
1758 
1759 	return 0;
1760 }
1761 
1762 static void sysc_unprepare(struct sysc *ddata)
1763 {
1764 	int i;
1765 
1766 	if (!ddata->clocks)
1767 		return;
1768 
1769 	for (i = 0; i < SYSC_MAX_CLOCKS; i++) {
1770 		if (!IS_ERR_OR_NULL(ddata->clocks[i]))
1771 			clk_unprepare(ddata->clocks[i]);
1772 	}
1773 }
1774 
1775 /*
1776  * Common sysc register bits found on omap2, also known as type1
1777  */
1778 static const struct sysc_regbits sysc_regbits_omap2 = {
1779 	.dmadisable_shift = -ENODEV,
1780 	.midle_shift = 12,
1781 	.sidle_shift = 3,
1782 	.clkact_shift = 8,
1783 	.emufree_shift = 5,
1784 	.enwkup_shift = 2,
1785 	.srst_shift = 1,
1786 	.autoidle_shift = 0,
1787 };
1788 
1789 static const struct sysc_capabilities sysc_omap2 = {
1790 	.type = TI_SYSC_OMAP2,
1791 	.sysc_mask = SYSC_OMAP2_CLOCKACTIVITY | SYSC_OMAP2_EMUFREE |
1792 		     SYSC_OMAP2_ENAWAKEUP | SYSC_OMAP2_SOFTRESET |
1793 		     SYSC_OMAP2_AUTOIDLE,
1794 	.regbits = &sysc_regbits_omap2,
1795 };
1796 
1797 /* All omap2 and 3 timers, and timers 1, 2 & 10 on omap 4 and 5 */
1798 static const struct sysc_capabilities sysc_omap2_timer = {
1799 	.type = TI_SYSC_OMAP2_TIMER,
1800 	.sysc_mask = SYSC_OMAP2_CLOCKACTIVITY | SYSC_OMAP2_EMUFREE |
1801 		     SYSC_OMAP2_ENAWAKEUP | SYSC_OMAP2_SOFTRESET |
1802 		     SYSC_OMAP2_AUTOIDLE,
1803 	.regbits = &sysc_regbits_omap2,
1804 	.mod_quirks = SYSC_QUIRK_USE_CLOCKACT,
1805 };
1806 
1807 /*
1808  * SHAM2 (SHA1/MD5) sysc found on omap3, a variant of sysc_regbits_omap2
1809  * with different sidle position
1810  */
1811 static const struct sysc_regbits sysc_regbits_omap3_sham = {
1812 	.dmadisable_shift = -ENODEV,
1813 	.midle_shift = -ENODEV,
1814 	.sidle_shift = 4,
1815 	.clkact_shift = -ENODEV,
1816 	.enwkup_shift = -ENODEV,
1817 	.srst_shift = 1,
1818 	.autoidle_shift = 0,
1819 	.emufree_shift = -ENODEV,
1820 };
1821 
1822 static const struct sysc_capabilities sysc_omap3_sham = {
1823 	.type = TI_SYSC_OMAP3_SHAM,
1824 	.sysc_mask = SYSC_OMAP2_SOFTRESET | SYSC_OMAP2_AUTOIDLE,
1825 	.regbits = &sysc_regbits_omap3_sham,
1826 };
1827 
1828 /*
1829  * AES register bits found on omap3 and later, a variant of
1830  * sysc_regbits_omap2 with different sidle position
1831  */
1832 static const struct sysc_regbits sysc_regbits_omap3_aes = {
1833 	.dmadisable_shift = -ENODEV,
1834 	.midle_shift = -ENODEV,
1835 	.sidle_shift = 6,
1836 	.clkact_shift = -ENODEV,
1837 	.enwkup_shift = -ENODEV,
1838 	.srst_shift = 1,
1839 	.autoidle_shift = 0,
1840 	.emufree_shift = -ENODEV,
1841 };
1842 
1843 static const struct sysc_capabilities sysc_omap3_aes = {
1844 	.type = TI_SYSC_OMAP3_AES,
1845 	.sysc_mask = SYSC_OMAP2_SOFTRESET | SYSC_OMAP2_AUTOIDLE,
1846 	.regbits = &sysc_regbits_omap3_aes,
1847 };
1848 
1849 /*
1850  * Common sysc register bits found on omap4, also known as type2
1851  */
1852 static const struct sysc_regbits sysc_regbits_omap4 = {
1853 	.dmadisable_shift = 16,
1854 	.midle_shift = 4,
1855 	.sidle_shift = 2,
1856 	.clkact_shift = -ENODEV,
1857 	.enwkup_shift = -ENODEV,
1858 	.emufree_shift = 1,
1859 	.srst_shift = 0,
1860 	.autoidle_shift = -ENODEV,
1861 };
1862 
1863 static const struct sysc_capabilities sysc_omap4 = {
1864 	.type = TI_SYSC_OMAP4,
1865 	.sysc_mask = SYSC_OMAP4_DMADISABLE | SYSC_OMAP4_FREEEMU |
1866 		     SYSC_OMAP4_SOFTRESET,
1867 	.regbits = &sysc_regbits_omap4,
1868 };
1869 
1870 static const struct sysc_capabilities sysc_omap4_timer = {
1871 	.type = TI_SYSC_OMAP4_TIMER,
1872 	.sysc_mask = SYSC_OMAP4_DMADISABLE | SYSC_OMAP4_FREEEMU |
1873 		     SYSC_OMAP4_SOFTRESET,
1874 	.regbits = &sysc_regbits_omap4,
1875 };
1876 
1877 /*
1878  * Common sysc register bits found on omap4, also known as type3
1879  */
1880 static const struct sysc_regbits sysc_regbits_omap4_simple = {
1881 	.dmadisable_shift = -ENODEV,
1882 	.midle_shift = 2,
1883 	.sidle_shift = 0,
1884 	.clkact_shift = -ENODEV,
1885 	.enwkup_shift = -ENODEV,
1886 	.srst_shift = -ENODEV,
1887 	.emufree_shift = -ENODEV,
1888 	.autoidle_shift = -ENODEV,
1889 };
1890 
1891 static const struct sysc_capabilities sysc_omap4_simple = {
1892 	.type = TI_SYSC_OMAP4_SIMPLE,
1893 	.regbits = &sysc_regbits_omap4_simple,
1894 };
1895 
1896 /*
1897  * SmartReflex sysc found on omap34xx
1898  */
1899 static const struct sysc_regbits sysc_regbits_omap34xx_sr = {
1900 	.dmadisable_shift = -ENODEV,
1901 	.midle_shift = -ENODEV,
1902 	.sidle_shift = -ENODEV,
1903 	.clkact_shift = 20,
1904 	.enwkup_shift = -ENODEV,
1905 	.srst_shift = -ENODEV,
1906 	.emufree_shift = -ENODEV,
1907 	.autoidle_shift = -ENODEV,
1908 };
1909 
1910 static const struct sysc_capabilities sysc_34xx_sr = {
1911 	.type = TI_SYSC_OMAP34XX_SR,
1912 	.sysc_mask = SYSC_OMAP2_CLOCKACTIVITY,
1913 	.regbits = &sysc_regbits_omap34xx_sr,
1914 	.mod_quirks = SYSC_QUIRK_USE_CLOCKACT | SYSC_QUIRK_UNCACHED |
1915 		      SYSC_QUIRK_LEGACY_IDLE,
1916 };
1917 
1918 /*
1919  * SmartReflex sysc found on omap36xx and later
1920  */
1921 static const struct sysc_regbits sysc_regbits_omap36xx_sr = {
1922 	.dmadisable_shift = -ENODEV,
1923 	.midle_shift = -ENODEV,
1924 	.sidle_shift = 24,
1925 	.clkact_shift = -ENODEV,
1926 	.enwkup_shift = 26,
1927 	.srst_shift = -ENODEV,
1928 	.emufree_shift = -ENODEV,
1929 	.autoidle_shift = -ENODEV,
1930 };
1931 
1932 static const struct sysc_capabilities sysc_36xx_sr = {
1933 	.type = TI_SYSC_OMAP36XX_SR,
1934 	.sysc_mask = SYSC_OMAP3_SR_ENAWAKEUP,
1935 	.regbits = &sysc_regbits_omap36xx_sr,
1936 	.mod_quirks = SYSC_QUIRK_UNCACHED | SYSC_QUIRK_LEGACY_IDLE,
1937 };
1938 
1939 static const struct sysc_capabilities sysc_omap4_sr = {
1940 	.type = TI_SYSC_OMAP4_SR,
1941 	.regbits = &sysc_regbits_omap36xx_sr,
1942 	.mod_quirks = SYSC_QUIRK_LEGACY_IDLE,
1943 };
1944 
1945 /*
1946  * McASP register bits found on omap4 and later
1947  */
1948 static const struct sysc_regbits sysc_regbits_omap4_mcasp = {
1949 	.dmadisable_shift = -ENODEV,
1950 	.midle_shift = -ENODEV,
1951 	.sidle_shift = 0,
1952 	.clkact_shift = -ENODEV,
1953 	.enwkup_shift = -ENODEV,
1954 	.srst_shift = -ENODEV,
1955 	.emufree_shift = -ENODEV,
1956 	.autoidle_shift = -ENODEV,
1957 };
1958 
1959 static const struct sysc_capabilities sysc_omap4_mcasp = {
1960 	.type = TI_SYSC_OMAP4_MCASP,
1961 	.regbits = &sysc_regbits_omap4_mcasp,
1962 	.mod_quirks = SYSC_QUIRK_OPT_CLKS_NEEDED,
1963 };
1964 
1965 /*
1966  * McASP found on dra7 and later
1967  */
1968 static const struct sysc_capabilities sysc_dra7_mcasp = {
1969 	.type = TI_SYSC_OMAP4_SIMPLE,
1970 	.regbits = &sysc_regbits_omap4_simple,
1971 	.mod_quirks = SYSC_QUIRK_OPT_CLKS_NEEDED,
1972 };
1973 
1974 /*
1975  * FS USB host found on omap4 and later
1976  */
1977 static const struct sysc_regbits sysc_regbits_omap4_usb_host_fs = {
1978 	.dmadisable_shift = -ENODEV,
1979 	.midle_shift = -ENODEV,
1980 	.sidle_shift = 24,
1981 	.clkact_shift = -ENODEV,
1982 	.enwkup_shift = 26,
1983 	.srst_shift = -ENODEV,
1984 	.emufree_shift = -ENODEV,
1985 	.autoidle_shift = -ENODEV,
1986 };
1987 
1988 static const struct sysc_capabilities sysc_omap4_usb_host_fs = {
1989 	.type = TI_SYSC_OMAP4_USB_HOST_FS,
1990 	.sysc_mask = SYSC_OMAP2_ENAWAKEUP,
1991 	.regbits = &sysc_regbits_omap4_usb_host_fs,
1992 };
1993 
1994 static const struct sysc_regbits sysc_regbits_dra7_mcan = {
1995 	.dmadisable_shift = -ENODEV,
1996 	.midle_shift = -ENODEV,
1997 	.sidle_shift = -ENODEV,
1998 	.clkact_shift = -ENODEV,
1999 	.enwkup_shift = 4,
2000 	.srst_shift = 0,
2001 	.emufree_shift = -ENODEV,
2002 	.autoidle_shift = -ENODEV,
2003 };
2004 
2005 static const struct sysc_capabilities sysc_dra7_mcan = {
2006 	.type = TI_SYSC_DRA7_MCAN,
2007 	.sysc_mask = SYSC_DRA7_MCAN_ENAWAKEUP | SYSC_OMAP4_SOFTRESET,
2008 	.regbits = &sysc_regbits_dra7_mcan,
2009 };
2010 
2011 static int sysc_init_pdata(struct sysc *ddata)
2012 {
2013 	struct ti_sysc_platform_data *pdata = dev_get_platdata(ddata->dev);
2014 	struct ti_sysc_module_data *mdata;
2015 
2016 	if (!pdata || !ddata->legacy_mode)
2017 		return 0;
2018 
2019 	mdata = devm_kzalloc(ddata->dev, sizeof(*mdata), GFP_KERNEL);
2020 	if (!mdata)
2021 		return -ENOMEM;
2022 
2023 	mdata->name = ddata->legacy_mode;
2024 	mdata->module_pa = ddata->module_pa;
2025 	mdata->module_size = ddata->module_size;
2026 	mdata->offsets = ddata->offsets;
2027 	mdata->nr_offsets = SYSC_MAX_REGS;
2028 	mdata->cap = ddata->cap;
2029 	mdata->cfg = &ddata->cfg;
2030 
2031 	ddata->mdata = mdata;
2032 
2033 	return 0;
2034 }
2035 
2036 static int sysc_init_match(struct sysc *ddata)
2037 {
2038 	const struct sysc_capabilities *cap;
2039 
2040 	cap = of_device_get_match_data(ddata->dev);
2041 	if (!cap)
2042 		return -EINVAL;
2043 
2044 	ddata->cap = cap;
2045 	if (ddata->cap)
2046 		ddata->cfg.quirks |= ddata->cap->mod_quirks;
2047 
2048 	return 0;
2049 }
2050 
2051 static void ti_sysc_idle(struct work_struct *work)
2052 {
2053 	struct sysc *ddata;
2054 
2055 	ddata = container_of(work, struct sysc, idle_work.work);
2056 
2057 	if (pm_runtime_active(ddata->dev))
2058 		pm_runtime_put_sync(ddata->dev);
2059 }
2060 
2061 static const struct of_device_id sysc_match_table[] = {
2062 	{ .compatible = "simple-bus", },
2063 	{ /* sentinel */ },
2064 };
2065 
2066 static int sysc_probe(struct platform_device *pdev)
2067 {
2068 	struct ti_sysc_platform_data *pdata = dev_get_platdata(&pdev->dev);
2069 	struct sysc *ddata;
2070 	int error;
2071 
2072 	ddata = devm_kzalloc(&pdev->dev, sizeof(*ddata), GFP_KERNEL);
2073 	if (!ddata)
2074 		return -ENOMEM;
2075 
2076 	ddata->dev = &pdev->dev;
2077 	platform_set_drvdata(pdev, ddata);
2078 
2079 	error = sysc_init_match(ddata);
2080 	if (error)
2081 		return error;
2082 
2083 	error = sysc_init_dts_quirks(ddata);
2084 	if (error)
2085 		goto unprepare;
2086 
2087 	error = sysc_map_and_check_registers(ddata);
2088 	if (error)
2089 		goto unprepare;
2090 
2091 	error = sysc_init_sysc_mask(ddata);
2092 	if (error)
2093 		goto unprepare;
2094 
2095 	error = sysc_init_idlemodes(ddata);
2096 	if (error)
2097 		goto unprepare;
2098 
2099 	error = sysc_init_syss_mask(ddata);
2100 	if (error)
2101 		goto unprepare;
2102 
2103 	error = sysc_init_pdata(ddata);
2104 	if (error)
2105 		goto unprepare;
2106 
2107 	sysc_init_early_quirks(ddata);
2108 
2109 	error = sysc_get_clocks(ddata);
2110 	if (error)
2111 		return error;
2112 
2113 	error = sysc_init_resets(ddata);
2114 	if (error)
2115 		return error;
2116 
2117 	error = sysc_init_module(ddata);
2118 	if (error)
2119 		goto unprepare;
2120 
2121 	pm_runtime_enable(ddata->dev);
2122 	error = pm_runtime_get_sync(ddata->dev);
2123 	if (error < 0) {
2124 		pm_runtime_put_noidle(ddata->dev);
2125 		pm_runtime_disable(ddata->dev);
2126 		goto unprepare;
2127 	}
2128 
2129 	sysc_show_registers(ddata);
2130 
2131 	ddata->dev->type = &sysc_device_type;
2132 	error = of_platform_populate(ddata->dev->of_node, sysc_match_table,
2133 				     pdata ? pdata->auxdata : NULL,
2134 				     ddata->dev);
2135 	if (error)
2136 		goto err;
2137 
2138 	INIT_DELAYED_WORK(&ddata->idle_work, ti_sysc_idle);
2139 
2140 	/* At least earlycon won't survive without deferred idle */
2141 	if (ddata->cfg.quirks & (SYSC_QUIRK_NO_IDLE_ON_INIT |
2142 				 SYSC_QUIRK_NO_RESET_ON_INIT)) {
2143 		schedule_delayed_work(&ddata->idle_work, 3000);
2144 	} else {
2145 		pm_runtime_put(&pdev->dev);
2146 	}
2147 
2148 	if (!of_get_available_child_count(ddata->dev->of_node))
2149 		reset_control_assert(ddata->rsts);
2150 
2151 	return 0;
2152 
2153 err:
2154 	pm_runtime_put_sync(&pdev->dev);
2155 	pm_runtime_disable(&pdev->dev);
2156 unprepare:
2157 	sysc_unprepare(ddata);
2158 
2159 	return error;
2160 }
2161 
2162 static int sysc_remove(struct platform_device *pdev)
2163 {
2164 	struct sysc *ddata = platform_get_drvdata(pdev);
2165 	int error;
2166 
2167 	cancel_delayed_work_sync(&ddata->idle_work);
2168 
2169 	error = pm_runtime_get_sync(ddata->dev);
2170 	if (error < 0) {
2171 		pm_runtime_put_noidle(ddata->dev);
2172 		pm_runtime_disable(ddata->dev);
2173 		goto unprepare;
2174 	}
2175 
2176 	of_platform_depopulate(&pdev->dev);
2177 
2178 	pm_runtime_put_sync(&pdev->dev);
2179 	pm_runtime_disable(&pdev->dev);
2180 	reset_control_assert(ddata->rsts);
2181 
2182 unprepare:
2183 	sysc_unprepare(ddata);
2184 
2185 	return 0;
2186 }
2187 
2188 static const struct of_device_id sysc_match[] = {
2189 	{ .compatible = "ti,sysc-omap2", .data = &sysc_omap2, },
2190 	{ .compatible = "ti,sysc-omap2-timer", .data = &sysc_omap2_timer, },
2191 	{ .compatible = "ti,sysc-omap4", .data = &sysc_omap4, },
2192 	{ .compatible = "ti,sysc-omap4-timer", .data = &sysc_omap4_timer, },
2193 	{ .compatible = "ti,sysc-omap4-simple", .data = &sysc_omap4_simple, },
2194 	{ .compatible = "ti,sysc-omap3430-sr", .data = &sysc_34xx_sr, },
2195 	{ .compatible = "ti,sysc-omap3630-sr", .data = &sysc_36xx_sr, },
2196 	{ .compatible = "ti,sysc-omap4-sr", .data = &sysc_omap4_sr, },
2197 	{ .compatible = "ti,sysc-omap3-sham", .data = &sysc_omap3_sham, },
2198 	{ .compatible = "ti,sysc-omap-aes", .data = &sysc_omap3_aes, },
2199 	{ .compatible = "ti,sysc-mcasp", .data = &sysc_omap4_mcasp, },
2200 	{ .compatible = "ti,sysc-dra7-mcasp", .data = &sysc_dra7_mcasp, },
2201 	{ .compatible = "ti,sysc-usb-host-fs",
2202 	  .data = &sysc_omap4_usb_host_fs, },
2203 	{ .compatible = "ti,sysc-dra7-mcan", .data = &sysc_dra7_mcan, },
2204 	{  },
2205 };
2206 MODULE_DEVICE_TABLE(of, sysc_match);
2207 
2208 static struct platform_driver sysc_driver = {
2209 	.probe		= sysc_probe,
2210 	.remove		= sysc_remove,
2211 	.driver         = {
2212 		.name   = "ti-sysc",
2213 		.of_match_table	= sysc_match,
2214 		.pm = &sysc_pm_ops,
2215 	},
2216 };
2217 
2218 static int __init sysc_init(void)
2219 {
2220 	bus_register_notifier(&platform_bus_type, &sysc_nb);
2221 
2222 	return platform_driver_register(&sysc_driver);
2223 }
2224 module_init(sysc_init);
2225 
2226 static void __exit sysc_exit(void)
2227 {
2228 	bus_unregister_notifier(&platform_bus_type, &sysc_nb);
2229 	platform_driver_unregister(&sysc_driver);
2230 }
2231 module_exit(sysc_exit);
2232 
2233 MODULE_DESCRIPTION("TI sysc interconnect target driver");
2234 MODULE_LICENSE("GPL v2");
2235