xref: /linux/arch/arm/mach-omap2/prm_common.c (revision 6396bb221514d2876fd6dc0aa2a1f240d99b37bb)
10a84a91cSTero Kristo /*
20a84a91cSTero Kristo  * OMAP2+ common Power & Reset Management (PRM) IP block functions
30a84a91cSTero Kristo  *
40a84a91cSTero Kristo  * Copyright (C) 2011 Texas Instruments, Inc.
50a84a91cSTero Kristo  * Tero Kristo <t-kristo@ti.com>
60a84a91cSTero Kristo  *
70a84a91cSTero Kristo  * This program is free software; you can redistribute it and/or modify
80a84a91cSTero Kristo  * it under the terms of the GNU General Public License version 2 as
90a84a91cSTero Kristo  * published by the Free Software Foundation.
100a84a91cSTero Kristo  *
110a84a91cSTero Kristo  *
120a84a91cSTero Kristo  * For historical purposes, the API used to configure the PRM
130a84a91cSTero Kristo  * interrupt handler refers to it as the "PRCM interrupt."  The
140a84a91cSTero Kristo  * underlying registers are located in the PRM on OMAP3/4.
150a84a91cSTero Kristo  *
160a84a91cSTero Kristo  * XXX This code should eventually be moved to a PRM driver.
170a84a91cSTero Kristo  */
180a84a91cSTero Kristo 
190a84a91cSTero Kristo #include <linux/kernel.h>
200a84a91cSTero Kristo #include <linux/module.h>
210a84a91cSTero Kristo #include <linux/init.h>
220a84a91cSTero Kristo #include <linux/io.h>
230a84a91cSTero Kristo #include <linux/irq.h>
240a84a91cSTero Kristo #include <linux/interrupt.h>
250a84a91cSTero Kristo #include <linux/slab.h>
26943a63a4STero Kristo #include <linux/of.h>
27943a63a4STero Kristo #include <linux/of_address.h>
28943a63a4STero Kristo #include <linux/clk-provider.h>
29943a63a4STero Kristo #include <linux/clk/ti.h>
300a84a91cSTero Kristo 
3130a69ef7STony Lindgren #include "soc.h"
320a84a91cSTero Kristo #include "prm2xxx_3xxx.h"
332bb2a5d3SPaul Walmsley #include "prm2xxx.h"
342bb2a5d3SPaul Walmsley #include "prm3xxx.h"
35ab7b2ffcSTero Kristo #include "prm33xx.h"
360a84a91cSTero Kristo #include "prm44xx.h"
3748e0c114STero Kristo #include "prm54xx.h"
3848e0c114STero Kristo #include "prm7xx.h"
3948e0c114STero Kristo #include "prcm43xx.h"
40d9a16f9aSPaul Walmsley #include "common.h"
41943a63a4STero Kristo #include "clock.h"
423dbb048bSTero Kristo #include "cm.h"
433dbb048bSTero Kristo #include "control.h"
440a84a91cSTero Kristo 
450a84a91cSTero Kristo /*
460a84a91cSTero Kristo  * OMAP_PRCM_MAX_NR_PENDING_REG: maximum number of PRM_IRQ*_MPU regs
470a84a91cSTero Kristo  * XXX this is technically not needed, since
480a84a91cSTero Kristo  * omap_prcm_register_chain_handler() could allocate this based on the
490a84a91cSTero Kristo  * actual amount of memory needed for the SoC
500a84a91cSTero Kristo  */
510a84a91cSTero Kristo #define OMAP_PRCM_MAX_NR_PENDING_REG		2
520a84a91cSTero Kristo 
530a84a91cSTero Kristo /*
540a84a91cSTero Kristo  * prcm_irq_chips: an array of all of the "generic IRQ chips" in use
550a84a91cSTero Kristo  * by the PRCM interrupt handler code.  There will be one 'chip' per
560a84a91cSTero Kristo  * PRM_{IRQSTATUS,IRQENABLE}_MPU register pair.  (So OMAP3 will have
570a84a91cSTero Kristo  * one "chip" and OMAP4 will have two.)
580a84a91cSTero Kristo  */
590a84a91cSTero Kristo static struct irq_chip_generic **prcm_irq_chips;
600a84a91cSTero Kristo 
610a84a91cSTero Kristo /*
620a84a91cSTero Kristo  * prcm_irq_setup: the PRCM IRQ parameters for the hardware the code
630a84a91cSTero Kristo  * is currently running on.  Defined and passed by initialization code
640a84a91cSTero Kristo  * that calls omap_prcm_register_chain_handler().
650a84a91cSTero Kristo  */
660a84a91cSTero Kristo static struct omap_prcm_irq_setup *prcm_irq_setup;
670a84a91cSTero Kristo 
68d9a16f9aSPaul Walmsley /* prm_base: base virtual address of the PRM IP block */
6990129336STero Kristo struct omap_domain_base prm_base;
70d9a16f9aSPaul Walmsley 
712541d15fSTero Kristo u16 prm_features;
722541d15fSTero Kristo 
73e24c3573SPaul Walmsley /*
74e24c3573SPaul Walmsley  * prm_ll_data: function pointers to SoC-specific implementations of
75e24c3573SPaul Walmsley  * common PRM functions
76e24c3573SPaul Walmsley  */
77e24c3573SPaul Walmsley static struct prm_ll_data null_prm_ll_data;
78e24c3573SPaul Walmsley static struct prm_ll_data *prm_ll_data = &null_prm_ll_data;
79e24c3573SPaul Walmsley 
800a84a91cSTero Kristo /* Private functions */
810a84a91cSTero Kristo 
820a84a91cSTero Kristo /*
830a84a91cSTero Kristo  * Move priority events from events to priority_events array
840a84a91cSTero Kristo  */
850a84a91cSTero Kristo static void omap_prcm_events_filter_priority(unsigned long *events,
860a84a91cSTero Kristo 	unsigned long *priority_events)
870a84a91cSTero Kristo {
880a84a91cSTero Kristo 	int i;
890a84a91cSTero Kristo 
900a84a91cSTero Kristo 	for (i = 0; i < prcm_irq_setup->nr_regs; i++) {
910a84a91cSTero Kristo 		priority_events[i] =
920a84a91cSTero Kristo 			events[i] & prcm_irq_setup->priority_mask[i];
930a84a91cSTero Kristo 		events[i] ^= priority_events[i];
940a84a91cSTero Kristo 	}
950a84a91cSTero Kristo }
960a84a91cSTero Kristo 
970a84a91cSTero Kristo /*
980a84a91cSTero Kristo  * PRCM Interrupt Handler
990a84a91cSTero Kristo  *
1000a84a91cSTero Kristo  * This is a common handler for the OMAP PRCM interrupts. Pending
1010a84a91cSTero Kristo  * interrupts are detected by a call to prcm_pending_events and
1020a84a91cSTero Kristo  * dispatched accordingly. Clearing of the wakeup events should be
1030a84a91cSTero Kristo  * done by the SoC specific individual handlers.
1040a84a91cSTero Kristo  */
105bd0b9ac4SThomas Gleixner static void omap_prcm_irq_handler(struct irq_desc *desc)
1060a84a91cSTero Kristo {
1070a84a91cSTero Kristo 	unsigned long pending[OMAP_PRCM_MAX_NR_PENDING_REG];
1080a84a91cSTero Kristo 	unsigned long priority_pending[OMAP_PRCM_MAX_NR_PENDING_REG];
1090a84a91cSTero Kristo 	struct irq_chip *chip = irq_desc_get_chip(desc);
1100a84a91cSTero Kristo 	unsigned int virtirq;
111b56f2cb7SVenkatraman S 	int nr_irq = prcm_irq_setup->nr_regs * 32;
1120a84a91cSTero Kristo 
1130a84a91cSTero Kristo 	/*
11491285b6fSTero Kristo 	 * If we are suspended, mask all interrupts from PRCM level,
11591285b6fSTero Kristo 	 * this does not ack them, and they will be pending until we
11691285b6fSTero Kristo 	 * re-enable the interrupts, at which point the
11791285b6fSTero Kristo 	 * omap_prcm_irq_handler will be executed again.  The
11891285b6fSTero Kristo 	 * _save_and_clear_irqen() function must ensure that the PRM
11991285b6fSTero Kristo 	 * write to disable all IRQs has reached the PRM before
12091285b6fSTero Kristo 	 * returning, or spurious PRCM interrupts may occur during
12191285b6fSTero Kristo 	 * suspend.
12291285b6fSTero Kristo 	 */
12391285b6fSTero Kristo 	if (prcm_irq_setup->suspended) {
12491285b6fSTero Kristo 		prcm_irq_setup->save_and_clear_irqen(prcm_irq_setup->saved_mask);
12591285b6fSTero Kristo 		prcm_irq_setup->suspend_save_flag = true;
12691285b6fSTero Kristo 	}
12791285b6fSTero Kristo 
12891285b6fSTero Kristo 	/*
1290a84a91cSTero Kristo 	 * Loop until all pending irqs are handled, since
1300a84a91cSTero Kristo 	 * generic_handle_irq() can cause new irqs to come
1310a84a91cSTero Kristo 	 */
13291285b6fSTero Kristo 	while (!prcm_irq_setup->suspended) {
1330a84a91cSTero Kristo 		prcm_irq_setup->read_pending_irqs(pending);
1340a84a91cSTero Kristo 
1350a84a91cSTero Kristo 		/* No bit set, then all IRQs are handled */
136b56f2cb7SVenkatraman S 		if (find_first_bit(pending, nr_irq) >= nr_irq)
1370a84a91cSTero Kristo 			break;
1380a84a91cSTero Kristo 
1390a84a91cSTero Kristo 		omap_prcm_events_filter_priority(pending, priority_pending);
1400a84a91cSTero Kristo 
1410a84a91cSTero Kristo 		/*
1420a84a91cSTero Kristo 		 * Loop on all currently pending irqs so that new irqs
1430a84a91cSTero Kristo 		 * cannot starve previously pending irqs
1440a84a91cSTero Kristo 		 */
1450a84a91cSTero Kristo 
1460a84a91cSTero Kristo 		/* Serve priority events first */
147b56f2cb7SVenkatraman S 		for_each_set_bit(virtirq, priority_pending, nr_irq)
1480a84a91cSTero Kristo 			generic_handle_irq(prcm_irq_setup->base_irq + virtirq);
1490a84a91cSTero Kristo 
1500a84a91cSTero Kristo 		/* Serve normal events next */
151b56f2cb7SVenkatraman S 		for_each_set_bit(virtirq, pending, nr_irq)
1520a84a91cSTero Kristo 			generic_handle_irq(prcm_irq_setup->base_irq + virtirq);
1530a84a91cSTero Kristo 	}
1540a84a91cSTero Kristo 	if (chip->irq_ack)
1550a84a91cSTero Kristo 		chip->irq_ack(&desc->irq_data);
1560a84a91cSTero Kristo 	if (chip->irq_eoi)
1570a84a91cSTero Kristo 		chip->irq_eoi(&desc->irq_data);
1580a84a91cSTero Kristo 	chip->irq_unmask(&desc->irq_data);
1590a84a91cSTero Kristo 
1600a84a91cSTero Kristo 	prcm_irq_setup->ocp_barrier(); /* avoid spurious IRQs */
1610a84a91cSTero Kristo }
1620a84a91cSTero Kristo 
1630a84a91cSTero Kristo /* Public functions */
1640a84a91cSTero Kristo 
1650a84a91cSTero Kristo /**
1660a84a91cSTero Kristo  * omap_prcm_event_to_irq - given a PRCM event name, returns the
1670a84a91cSTero Kristo  * corresponding IRQ on which the handler should be registered
1680a84a91cSTero Kristo  * @name: name of the PRCM interrupt bit to look up - see struct omap_prcm_irq
1690a84a91cSTero Kristo  *
1700a84a91cSTero Kristo  * Returns the Linux internal IRQ ID corresponding to @name upon success,
1710a84a91cSTero Kristo  * or -ENOENT upon failure.
1720a84a91cSTero Kristo  */
1730a84a91cSTero Kristo int omap_prcm_event_to_irq(const char *name)
1740a84a91cSTero Kristo {
1750a84a91cSTero Kristo 	int i;
1760a84a91cSTero Kristo 
1770a84a91cSTero Kristo 	if (!prcm_irq_setup || !name)
1780a84a91cSTero Kristo 		return -ENOENT;
1790a84a91cSTero Kristo 
1800a84a91cSTero Kristo 	for (i = 0; i < prcm_irq_setup->nr_irqs; i++)
1810a84a91cSTero Kristo 		if (!strcmp(prcm_irq_setup->irqs[i].name, name))
1820a84a91cSTero Kristo 			return prcm_irq_setup->base_irq +
1830a84a91cSTero Kristo 				prcm_irq_setup->irqs[i].offset;
1840a84a91cSTero Kristo 
1850a84a91cSTero Kristo 	return -ENOENT;
1860a84a91cSTero Kristo }
1870a84a91cSTero Kristo 
1880a84a91cSTero Kristo /**
1890a84a91cSTero Kristo  * omap_prcm_irq_cleanup - reverses memory allocated and other steps
1900a84a91cSTero Kristo  * done by omap_prcm_register_chain_handler()
1910a84a91cSTero Kristo  *
1920a84a91cSTero Kristo  * No return value.
1930a84a91cSTero Kristo  */
1940a84a91cSTero Kristo void omap_prcm_irq_cleanup(void)
1950a84a91cSTero Kristo {
1960fb22a8fSMarc Zyngier 	unsigned int irq;
1970a84a91cSTero Kristo 	int i;
1980a84a91cSTero Kristo 
1990a84a91cSTero Kristo 	if (!prcm_irq_setup) {
2000a84a91cSTero Kristo 		pr_err("PRCM: IRQ handler not initialized; cannot cleanup\n");
2010a84a91cSTero Kristo 		return;
2020a84a91cSTero Kristo 	}
2030a84a91cSTero Kristo 
2040a84a91cSTero Kristo 	if (prcm_irq_chips) {
2050a84a91cSTero Kristo 		for (i = 0; i < prcm_irq_setup->nr_regs; i++) {
2060a84a91cSTero Kristo 			if (prcm_irq_chips[i])
2070a84a91cSTero Kristo 				irq_remove_generic_chip(prcm_irq_chips[i],
2080a84a91cSTero Kristo 					0xffffffff, 0, 0);
2090a84a91cSTero Kristo 			prcm_irq_chips[i] = NULL;
2100a84a91cSTero Kristo 		}
2110a84a91cSTero Kristo 		kfree(prcm_irq_chips);
2120a84a91cSTero Kristo 		prcm_irq_chips = NULL;
2130a84a91cSTero Kristo 	}
2140a84a91cSTero Kristo 
21591285b6fSTero Kristo 	kfree(prcm_irq_setup->saved_mask);
21691285b6fSTero Kristo 	prcm_irq_setup->saved_mask = NULL;
21791285b6fSTero Kristo 
2180a84a91cSTero Kristo 	kfree(prcm_irq_setup->priority_mask);
2190a84a91cSTero Kristo 	prcm_irq_setup->priority_mask = NULL;
2200a84a91cSTero Kristo 
2210fb22a8fSMarc Zyngier 	irq = prcm_irq_setup->irq;
2220fb22a8fSMarc Zyngier 	irq_set_chained_handler(irq, NULL);
2230a84a91cSTero Kristo 
2240a84a91cSTero Kristo 	if (prcm_irq_setup->base_irq > 0)
2250a84a91cSTero Kristo 		irq_free_descs(prcm_irq_setup->base_irq,
2260a84a91cSTero Kristo 			prcm_irq_setup->nr_regs * 32);
2270a84a91cSTero Kristo 	prcm_irq_setup->base_irq = 0;
2280a84a91cSTero Kristo }
2290a84a91cSTero Kristo 
23091285b6fSTero Kristo void omap_prcm_irq_prepare(void)
23191285b6fSTero Kristo {
23291285b6fSTero Kristo 	prcm_irq_setup->suspended = true;
23391285b6fSTero Kristo }
23491285b6fSTero Kristo 
23591285b6fSTero Kristo void omap_prcm_irq_complete(void)
23691285b6fSTero Kristo {
23791285b6fSTero Kristo 	prcm_irq_setup->suspended = false;
23891285b6fSTero Kristo 
23991285b6fSTero Kristo 	/* If we have not saved the masks, do not attempt to restore */
24091285b6fSTero Kristo 	if (!prcm_irq_setup->suspend_save_flag)
24191285b6fSTero Kristo 		return;
24291285b6fSTero Kristo 
24391285b6fSTero Kristo 	prcm_irq_setup->suspend_save_flag = false;
24491285b6fSTero Kristo 
24591285b6fSTero Kristo 	/*
24691285b6fSTero Kristo 	 * Re-enable all masked PRCM irq sources, this causes the PRCM
24791285b6fSTero Kristo 	 * interrupt to fire immediately if the events were masked
24891285b6fSTero Kristo 	 * previously in the chain handler
24991285b6fSTero Kristo 	 */
25091285b6fSTero Kristo 	prcm_irq_setup->restore_irqen(prcm_irq_setup->saved_mask);
25191285b6fSTero Kristo }
25291285b6fSTero Kristo 
2530a84a91cSTero Kristo /**
2540a84a91cSTero Kristo  * omap_prcm_register_chain_handler - initializes the prcm chained interrupt
2550a84a91cSTero Kristo  * handler based on provided parameters
2560a84a91cSTero Kristo  * @irq_setup: hardware data about the underlying PRM/PRCM
2570a84a91cSTero Kristo  *
2580a84a91cSTero Kristo  * Set up the PRCM chained interrupt handler on the PRCM IRQ.  Sets up
2590a84a91cSTero Kristo  * one generic IRQ chip per PRM interrupt status/enable register pair.
2600a84a91cSTero Kristo  * Returns 0 upon success, -EINVAL if called twice or if invalid
2610a84a91cSTero Kristo  * arguments are passed, or -ENOMEM on any other error.
2620a84a91cSTero Kristo  */
2630a84a91cSTero Kristo int omap_prcm_register_chain_handler(struct omap_prcm_irq_setup *irq_setup)
2640a84a91cSTero Kristo {
265eeb3711bSPaul Walmsley 	int nr_regs;
2660a84a91cSTero Kristo 	u32 mask[OMAP_PRCM_MAX_NR_PENDING_REG];
2672a26d31bSTony Lindgren 	int offset, i, irq;
2680a84a91cSTero Kristo 	struct irq_chip_generic *gc;
2690a84a91cSTero Kristo 	struct irq_chip_type *ct;
2700a84a91cSTero Kristo 
2710a84a91cSTero Kristo 	if (!irq_setup)
2720a84a91cSTero Kristo 		return -EINVAL;
2730a84a91cSTero Kristo 
274eeb3711bSPaul Walmsley 	nr_regs = irq_setup->nr_regs;
275eeb3711bSPaul Walmsley 
2760a84a91cSTero Kristo 	if (prcm_irq_setup) {
2770a84a91cSTero Kristo 		pr_err("PRCM: already initialized; won't reinitialize\n");
2780a84a91cSTero Kristo 		return -EINVAL;
2790a84a91cSTero Kristo 	}
2800a84a91cSTero Kristo 
2810a84a91cSTero Kristo 	if (nr_regs > OMAP_PRCM_MAX_NR_PENDING_REG) {
2820a84a91cSTero Kristo 		pr_err("PRCM: nr_regs too large\n");
2830a84a91cSTero Kristo 		return -EINVAL;
2840a84a91cSTero Kristo 	}
2850a84a91cSTero Kristo 
2860a84a91cSTero Kristo 	prcm_irq_setup = irq_setup;
2870a84a91cSTero Kristo 
288*6396bb22SKees Cook 	prcm_irq_chips = kcalloc(nr_regs, sizeof(void *), GFP_KERNEL);
289*6396bb22SKees Cook 	prcm_irq_setup->saved_mask = kcalloc(nr_regs, sizeof(u32),
290*6396bb22SKees Cook 					     GFP_KERNEL);
291*6396bb22SKees Cook 	prcm_irq_setup->priority_mask = kcalloc(nr_regs, sizeof(u32),
2920a84a91cSTero Kristo 						GFP_KERNEL);
2930a84a91cSTero Kristo 
29491285b6fSTero Kristo 	if (!prcm_irq_chips || !prcm_irq_setup->saved_mask ||
2959a6b6f75SMarkus Elfring 	    !prcm_irq_setup->priority_mask)
2960a84a91cSTero Kristo 		goto err;
2970a84a91cSTero Kristo 
2980a84a91cSTero Kristo 	memset(mask, 0, sizeof(mask));
2990a84a91cSTero Kristo 
3000a84a91cSTero Kristo 	for (i = 0; i < irq_setup->nr_irqs; i++) {
3010a84a91cSTero Kristo 		offset = irq_setup->irqs[i].offset;
3020a84a91cSTero Kristo 		mask[offset >> 5] |= 1 << (offset & 0x1f);
3030a84a91cSTero Kristo 		if (irq_setup->irqs[i].priority)
3040a84a91cSTero Kristo 			irq_setup->priority_mask[offset >> 5] |=
3050a84a91cSTero Kristo 				1 << (offset & 0x1f);
3060a84a91cSTero Kristo 	}
3070a84a91cSTero Kristo 
3080fb22a8fSMarc Zyngier 	irq = irq_setup->irq;
3090fb22a8fSMarc Zyngier 	irq_set_chained_handler(irq, omap_prcm_irq_handler);
3100a84a91cSTero Kristo 
3110a84a91cSTero Kristo 	irq_setup->base_irq = irq_alloc_descs(-1, 0, irq_setup->nr_regs * 32,
3120a84a91cSTero Kristo 		0);
3130a84a91cSTero Kristo 
3140a84a91cSTero Kristo 	if (irq_setup->base_irq < 0) {
3150a84a91cSTero Kristo 		pr_err("PRCM: failed to allocate irq descs: %d\n",
3160a84a91cSTero Kristo 			irq_setup->base_irq);
3170a84a91cSTero Kristo 		goto err;
3180a84a91cSTero Kristo 	}
3190a84a91cSTero Kristo 
3204ba7c3c3SMing Lei 	for (i = 0; i < irq_setup->nr_regs; i++) {
3210a84a91cSTero Kristo 		gc = irq_alloc_generic_chip("PRCM", 1,
32290129336STero Kristo 			irq_setup->base_irq + i * 32, prm_base.va,
3230a84a91cSTero Kristo 			handle_level_irq);
3240a84a91cSTero Kristo 
3250a84a91cSTero Kristo 		if (!gc) {
3260a84a91cSTero Kristo 			pr_err("PRCM: failed to allocate generic chip\n");
3270a84a91cSTero Kristo 			goto err;
3280a84a91cSTero Kristo 		}
3290a84a91cSTero Kristo 		ct = gc->chip_types;
3300a84a91cSTero Kristo 		ct->chip.irq_ack = irq_gc_ack_set_bit;
3310a84a91cSTero Kristo 		ct->chip.irq_mask = irq_gc_mask_clr_bit;
3320a84a91cSTero Kristo 		ct->chip.irq_unmask = irq_gc_mask_set_bit;
3330a84a91cSTero Kristo 
3340a84a91cSTero Kristo 		ct->regs.ack = irq_setup->ack + i * 4;
3350a84a91cSTero Kristo 		ct->regs.mask = irq_setup->mask + i * 4;
3360a84a91cSTero Kristo 
3370a84a91cSTero Kristo 		irq_setup_generic_chip(gc, mask[i], 0, IRQ_NOREQUEST, 0);
3380a84a91cSTero Kristo 		prcm_irq_chips[i] = gc;
3390a84a91cSTero Kristo 	}
3400a84a91cSTero Kristo 
3412a26d31bSTony Lindgren 	irq = omap_prcm_event_to_irq("io");
34281243651STero Kristo 	omap_pcs_legacy_init(irq, irq_setup->reconfigure_io_chain);
34330a69ef7STony Lindgren 
3440a84a91cSTero Kristo 	return 0;
3450a84a91cSTero Kristo 
3460a84a91cSTero Kristo err:
3470a84a91cSTero Kristo 	omap_prcm_irq_cleanup();
3480a84a91cSTero Kristo 	return -ENOMEM;
3490a84a91cSTero Kristo }
3503f4990f4SR Sricharan 
351e24c3573SPaul Walmsley /**
352d9a16f9aSPaul Walmsley  * omap2_set_globals_prm - set the PRM base address (for early use)
353d9a16f9aSPaul Walmsley  * @prm: PRM base virtual address
354d9a16f9aSPaul Walmsley  *
355d9a16f9aSPaul Walmsley  * XXX Will be replaced when the PRM/CM drivers are completed.
3563f4990f4SR Sricharan  */
357d9a16f9aSPaul Walmsley void __init omap2_set_globals_prm(void __iomem *prm)
3583f4990f4SR Sricharan {
35990129336STero Kristo 	prm_base.va = prm;
360d9a16f9aSPaul Walmsley }
361d9a16f9aSPaul Walmsley 
362d9a16f9aSPaul Walmsley /**
3632bb2a5d3SPaul Walmsley  * prm_read_reset_sources - return the sources of the SoC's last reset
3642bb2a5d3SPaul Walmsley  *
3652bb2a5d3SPaul Walmsley  * Return a u32 bitmask representing the reset sources that caused the
3662bb2a5d3SPaul Walmsley  * SoC to reset.  The low-level per-SoC functions called by this
3672bb2a5d3SPaul Walmsley  * function remap the SoC-specific reset source bits into an
3682bb2a5d3SPaul Walmsley  * OMAP-common set of reset source bits, defined in
3692bb2a5d3SPaul Walmsley  * arch/arm/mach-omap2/prm.h.  Returns the standardized reset source
3702bb2a5d3SPaul Walmsley  * u32 bitmask from the hardware upon success, or returns (1 <<
3712bb2a5d3SPaul Walmsley  * OMAP_UNKNOWN_RST_SRC_ID_SHIFT) if no low-level read_reset_sources()
3722bb2a5d3SPaul Walmsley  * function was registered.
3733f4990f4SR Sricharan  */
3742bb2a5d3SPaul Walmsley u32 prm_read_reset_sources(void)
3753f4990f4SR Sricharan {
3762bb2a5d3SPaul Walmsley 	u32 ret = 1 << OMAP_UNKNOWN_RST_SRC_ID_SHIFT;
3772bb2a5d3SPaul Walmsley 
3782bb2a5d3SPaul Walmsley 	if (prm_ll_data->read_reset_sources)
3792bb2a5d3SPaul Walmsley 		ret = prm_ll_data->read_reset_sources();
3802bb2a5d3SPaul Walmsley 	else
3812bb2a5d3SPaul Walmsley 		WARN_ONCE(1, "prm: %s: no mapping function defined for reset sources\n", __func__);
3822bb2a5d3SPaul Walmsley 
3832bb2a5d3SPaul Walmsley 	return ret;
3842bb2a5d3SPaul Walmsley }
3852bb2a5d3SPaul Walmsley 
3862bb2a5d3SPaul Walmsley /**
387e6d3a8b0SRajendra Nayak  * prm_was_any_context_lost_old - was device context lost? (old API)
388e6d3a8b0SRajendra Nayak  * @part: PRM partition ID (e.g., OMAP4430_PRM_PARTITION)
389e6d3a8b0SRajendra Nayak  * @inst: PRM instance offset (e.g., OMAP4430_PRM_MPU_INST)
390e6d3a8b0SRajendra Nayak  * @idx: CONTEXT register offset
391e6d3a8b0SRajendra Nayak  *
392e6d3a8b0SRajendra Nayak  * Return 1 if any bits were set in the *_CONTEXT_* register
393e6d3a8b0SRajendra Nayak  * identified by (@part, @inst, @idx), which means that some context
394e6d3a8b0SRajendra Nayak  * was lost for that module; otherwise, return 0.  XXX Deprecated;
395e6d3a8b0SRajendra Nayak  * callers need to use a less-SoC-dependent way to identify hardware
396e6d3a8b0SRajendra Nayak  * IP blocks.
397e6d3a8b0SRajendra Nayak  */
398e6d3a8b0SRajendra Nayak bool prm_was_any_context_lost_old(u8 part, s16 inst, u16 idx)
399e6d3a8b0SRajendra Nayak {
400e6d3a8b0SRajendra Nayak 	bool ret = true;
401e6d3a8b0SRajendra Nayak 
402e6d3a8b0SRajendra Nayak 	if (prm_ll_data->was_any_context_lost_old)
403e6d3a8b0SRajendra Nayak 		ret = prm_ll_data->was_any_context_lost_old(part, inst, idx);
404e6d3a8b0SRajendra Nayak 	else
405e6d3a8b0SRajendra Nayak 		WARN_ONCE(1, "prm: %s: no mapping function defined\n",
406e6d3a8b0SRajendra Nayak 			  __func__);
407e6d3a8b0SRajendra Nayak 
408e6d3a8b0SRajendra Nayak 	return ret;
409e6d3a8b0SRajendra Nayak }
410e6d3a8b0SRajendra Nayak 
411e6d3a8b0SRajendra Nayak /**
412e6d3a8b0SRajendra Nayak  * prm_clear_context_lost_flags_old - clear context loss flags (old API)
413e6d3a8b0SRajendra Nayak  * @part: PRM partition ID (e.g., OMAP4430_PRM_PARTITION)
414e6d3a8b0SRajendra Nayak  * @inst: PRM instance offset (e.g., OMAP4430_PRM_MPU_INST)
415e6d3a8b0SRajendra Nayak  * @idx: CONTEXT register offset
416e6d3a8b0SRajendra Nayak  *
417e6d3a8b0SRajendra Nayak  * Clear hardware context loss bits for the module identified by
418e6d3a8b0SRajendra Nayak  * (@part, @inst, @idx).  No return value.  XXX Deprecated; callers
419e6d3a8b0SRajendra Nayak  * need to use a less-SoC-dependent way to identify hardware IP
420e6d3a8b0SRajendra Nayak  * blocks.
421e6d3a8b0SRajendra Nayak  */
422e6d3a8b0SRajendra Nayak void prm_clear_context_loss_flags_old(u8 part, s16 inst, u16 idx)
423e6d3a8b0SRajendra Nayak {
424e6d3a8b0SRajendra Nayak 	if (prm_ll_data->clear_context_loss_flags_old)
425e6d3a8b0SRajendra Nayak 		prm_ll_data->clear_context_loss_flags_old(part, inst, idx);
426e6d3a8b0SRajendra Nayak 	else
427e6d3a8b0SRajendra Nayak 		WARN_ONCE(1, "prm: %s: no mapping function defined\n",
428e6d3a8b0SRajendra Nayak 			  __func__);
429e6d3a8b0SRajendra Nayak }
430e6d3a8b0SRajendra Nayak 
431e6d3a8b0SRajendra Nayak /**
432efd44dc3STero Kristo  * omap_prm_assert_hardreset - assert hardreset for an IP block
433efd44dc3STero Kristo  * @shift: register bit shift corresponding to the reset line
434efd44dc3STero Kristo  * @part: PRM partition
435efd44dc3STero Kristo  * @prm_mod: PRM submodule base or instance offset
436efd44dc3STero Kristo  * @offset: register offset
437efd44dc3STero Kristo  *
438efd44dc3STero Kristo  * Asserts a hardware reset line for an IP block.
439efd44dc3STero Kristo  */
440efd44dc3STero Kristo int omap_prm_assert_hardreset(u8 shift, u8 part, s16 prm_mod, u16 offset)
441efd44dc3STero Kristo {
442efd44dc3STero Kristo 	if (!prm_ll_data->assert_hardreset) {
443efd44dc3STero Kristo 		WARN_ONCE(1, "prm: %s: no mapping function defined\n",
444efd44dc3STero Kristo 			  __func__);
445efd44dc3STero Kristo 		return -EINVAL;
446efd44dc3STero Kristo 	}
447efd44dc3STero Kristo 
448efd44dc3STero Kristo 	return prm_ll_data->assert_hardreset(shift, part, prm_mod, offset);
449efd44dc3STero Kristo }
450efd44dc3STero Kristo 
451efd44dc3STero Kristo /**
45237fb59d7STero Kristo  * omap_prm_deassert_hardreset - deassert hardreset for an IP block
45337fb59d7STero Kristo  * @shift: register bit shift corresponding to the reset line
45437fb59d7STero Kristo  * @st_shift: reset status bit shift corresponding to the reset line
45537fb59d7STero Kristo  * @part: PRM partition
45637fb59d7STero Kristo  * @prm_mod: PRM submodule base or instance offset
45737fb59d7STero Kristo  * @offset: register offset
45837fb59d7STero Kristo  * @st_offset: status register offset
45937fb59d7STero Kristo  *
46037fb59d7STero Kristo  * Deasserts a hardware reset line for an IP block.
46137fb59d7STero Kristo  */
46237fb59d7STero Kristo int omap_prm_deassert_hardreset(u8 shift, u8 st_shift, u8 part, s16 prm_mod,
46337fb59d7STero Kristo 				u16 offset, u16 st_offset)
46437fb59d7STero Kristo {
46537fb59d7STero Kristo 	if (!prm_ll_data->deassert_hardreset) {
46637fb59d7STero Kristo 		WARN_ONCE(1, "prm: %s: no mapping function defined\n",
46737fb59d7STero Kristo 			  __func__);
46837fb59d7STero Kristo 		return -EINVAL;
46937fb59d7STero Kristo 	}
47037fb59d7STero Kristo 
47137fb59d7STero Kristo 	return prm_ll_data->deassert_hardreset(shift, st_shift, part, prm_mod,
47237fb59d7STero Kristo 					       offset, st_offset);
47337fb59d7STero Kristo }
47437fb59d7STero Kristo 
47537fb59d7STero Kristo /**
4761bc28b34STero Kristo  * omap_prm_is_hardreset_asserted - check the hardreset status for an IP block
4771bc28b34STero Kristo  * @shift: register bit shift corresponding to the reset line
4781bc28b34STero Kristo  * @part: PRM partition
4791bc28b34STero Kristo  * @prm_mod: PRM submodule base or instance offset
4801bc28b34STero Kristo  * @offset: register offset
4811bc28b34STero Kristo  *
4821bc28b34STero Kristo  * Checks if a hardware reset line for an IP block is enabled or not.
4831bc28b34STero Kristo  */
4841bc28b34STero Kristo int omap_prm_is_hardreset_asserted(u8 shift, u8 part, s16 prm_mod, u16 offset)
4851bc28b34STero Kristo {
4861bc28b34STero Kristo 	if (!prm_ll_data->is_hardreset_asserted) {
4871bc28b34STero Kristo 		WARN_ONCE(1, "prm: %s: no mapping function defined\n",
4881bc28b34STero Kristo 			  __func__);
4891bc28b34STero Kristo 		return -EINVAL;
4901bc28b34STero Kristo 	}
4911bc28b34STero Kristo 
4921bc28b34STero Kristo 	return prm_ll_data->is_hardreset_asserted(shift, part, prm_mod, offset);
4931bc28b34STero Kristo }
4941bc28b34STero Kristo 
4951bc28b34STero Kristo /**
4964984eeafSTero Kristo  * omap_prm_reconfigure_io_chain - clear latches and reconfigure I/O chain
4974984eeafSTero Kristo  *
4984984eeafSTero Kristo  * Clear any previously-latched I/O wakeup events and ensure that the
4994984eeafSTero Kristo  * I/O wakeup gates are aligned with the current mux settings.
5004984eeafSTero Kristo  * Calls SoC specific I/O chain reconfigure function if available,
5014984eeafSTero Kristo  * otherwise does nothing.
5024984eeafSTero Kristo  */
5034984eeafSTero Kristo void omap_prm_reconfigure_io_chain(void)
5044984eeafSTero Kristo {
5054984eeafSTero Kristo 	if (!prcm_irq_setup || !prcm_irq_setup->reconfigure_io_chain)
5064984eeafSTero Kristo 		return;
5074984eeafSTero Kristo 
5084984eeafSTero Kristo 	prcm_irq_setup->reconfigure_io_chain();
5094984eeafSTero Kristo }
5104984eeafSTero Kristo 
5114984eeafSTero Kristo /**
51261c8621eSTero Kristo  * omap_prm_reset_system - trigger global SW reset
51361c8621eSTero Kristo  *
51461c8621eSTero Kristo  * Triggers SoC specific global warm reset to reboot the device.
51561c8621eSTero Kristo  */
51661c8621eSTero Kristo void omap_prm_reset_system(void)
51761c8621eSTero Kristo {
51861c8621eSTero Kristo 	if (!prm_ll_data->reset_system) {
51961c8621eSTero Kristo 		WARN_ONCE(1, "prm: %s: no mapping function defined\n",
52061c8621eSTero Kristo 			  __func__);
52161c8621eSTero Kristo 		return;
52261c8621eSTero Kristo 	}
52361c8621eSTero Kristo 
52461c8621eSTero Kristo 	prm_ll_data->reset_system();
52561c8621eSTero Kristo 
52661c8621eSTero Kristo 	while (1)
52761c8621eSTero Kristo 		cpu_relax();
52861c8621eSTero Kristo }
52961c8621eSTero Kristo 
53061c8621eSTero Kristo /**
5319cb6d363STero Kristo  * omap_prm_clear_mod_irqs - clear wake-up events from PRCM interrupt
5329cb6d363STero Kristo  * @module: PRM module to clear wakeups from
5339cb6d363STero Kristo  * @regs: register to clear
5349cb6d363STero Kristo  * @wkst_mask: wkst bits to clear
5359cb6d363STero Kristo  *
5369cb6d363STero Kristo  * Clears any wakeup events for the module and register set defined.
5379cb6d363STero Kristo  * Uses SoC specific implementation to do the actual wakeup status
5389cb6d363STero Kristo  * clearing.
5399cb6d363STero Kristo  */
5409cb6d363STero Kristo int omap_prm_clear_mod_irqs(s16 module, u8 regs, u32 wkst_mask)
5419cb6d363STero Kristo {
5429cb6d363STero Kristo 	if (!prm_ll_data->clear_mod_irqs) {
5439cb6d363STero Kristo 		WARN_ONCE(1, "prm: %s: no mapping function defined\n",
5449cb6d363STero Kristo 			  __func__);
5459cb6d363STero Kristo 		return -EINVAL;
5469cb6d363STero Kristo 	}
5479cb6d363STero Kristo 
5489cb6d363STero Kristo 	return prm_ll_data->clear_mod_irqs(module, regs, wkst_mask);
5499cb6d363STero Kristo }
5509cb6d363STero Kristo 
5519cb6d363STero Kristo /**
552e9f1ddcdSTero Kristo  * omap_prm_vp_check_txdone - check voltage processor TX done status
553e9f1ddcdSTero Kristo  *
554e9f1ddcdSTero Kristo  * Checks if voltage processor transmission has been completed.
555e9f1ddcdSTero Kristo  * Returns non-zero if a transmission has completed, 0 otherwise.
556e9f1ddcdSTero Kristo  */
557e9f1ddcdSTero Kristo u32 omap_prm_vp_check_txdone(u8 vp_id)
558e9f1ddcdSTero Kristo {
559e9f1ddcdSTero Kristo 	if (!prm_ll_data->vp_check_txdone) {
560e9f1ddcdSTero Kristo 		WARN_ONCE(1, "prm: %s: no mapping function defined\n",
561e9f1ddcdSTero Kristo 			  __func__);
562e9f1ddcdSTero Kristo 		return 0;
563e9f1ddcdSTero Kristo 	}
564e9f1ddcdSTero Kristo 
565e9f1ddcdSTero Kristo 	return prm_ll_data->vp_check_txdone(vp_id);
566e9f1ddcdSTero Kristo }
567e9f1ddcdSTero Kristo 
568e9f1ddcdSTero Kristo /**
569e9f1ddcdSTero Kristo  * omap_prm_vp_clear_txdone - clears voltage processor TX done status
570e9f1ddcdSTero Kristo  *
571e9f1ddcdSTero Kristo  * Clears the status bit for completed voltage processor transmission
572e9f1ddcdSTero Kristo  * returned by prm_vp_check_txdone.
573e9f1ddcdSTero Kristo  */
574e9f1ddcdSTero Kristo void omap_prm_vp_clear_txdone(u8 vp_id)
575e9f1ddcdSTero Kristo {
576e9f1ddcdSTero Kristo 	if (!prm_ll_data->vp_clear_txdone) {
577e9f1ddcdSTero Kristo 		WARN_ONCE(1, "prm: %s: no mapping function defined\n",
578e9f1ddcdSTero Kristo 			  __func__);
579e9f1ddcdSTero Kristo 		return;
580e9f1ddcdSTero Kristo 	}
581e9f1ddcdSTero Kristo 
582e9f1ddcdSTero Kristo 	prm_ll_data->vp_clear_txdone(vp_id);
583e9f1ddcdSTero Kristo }
584e9f1ddcdSTero Kristo 
585e9f1ddcdSTero Kristo /**
586e24c3573SPaul Walmsley  * prm_register - register per-SoC low-level data with the PRM
587e24c3573SPaul Walmsley  * @pld: low-level per-SoC OMAP PRM data & function pointers to register
588e24c3573SPaul Walmsley  *
589e24c3573SPaul Walmsley  * Register per-SoC low-level OMAP PRM data and function pointers with
590e24c3573SPaul Walmsley  * the OMAP PRM common interface.  The caller must keep the data
591e24c3573SPaul Walmsley  * pointed to by @pld valid until it calls prm_unregister() and
592e24c3573SPaul Walmsley  * it returns successfully.  Returns 0 upon success, -EINVAL if @pld
593e24c3573SPaul Walmsley  * is NULL, or -EEXIST if prm_register() has already been called
594e24c3573SPaul Walmsley  * without an intervening prm_unregister().
595e24c3573SPaul Walmsley  */
596e24c3573SPaul Walmsley int prm_register(struct prm_ll_data *pld)
597e24c3573SPaul Walmsley {
598e24c3573SPaul Walmsley 	if (!pld)
599e24c3573SPaul Walmsley 		return -EINVAL;
600e24c3573SPaul Walmsley 
601e24c3573SPaul Walmsley 	if (prm_ll_data != &null_prm_ll_data)
602e24c3573SPaul Walmsley 		return -EEXIST;
603e24c3573SPaul Walmsley 
604e24c3573SPaul Walmsley 	prm_ll_data = pld;
605e24c3573SPaul Walmsley 
6063f4990f4SR Sricharan 	return 0;
6073f4990f4SR Sricharan }
6083f4990f4SR Sricharan 
609e24c3573SPaul Walmsley /**
610e24c3573SPaul Walmsley  * prm_unregister - unregister per-SoC low-level data & function pointers
611e24c3573SPaul Walmsley  * @pld: low-level per-SoC OMAP PRM data & function pointers to unregister
612e24c3573SPaul Walmsley  *
613e24c3573SPaul Walmsley  * Unregister per-SoC low-level OMAP PRM data and function pointers
614e24c3573SPaul Walmsley  * that were previously registered with prm_register().  The
615e24c3573SPaul Walmsley  * caller may not destroy any of the data pointed to by @pld until
616e24c3573SPaul Walmsley  * this function returns successfully.  Returns 0 upon success, or
617e24c3573SPaul Walmsley  * -EINVAL if @pld is NULL or if @pld does not match the struct
618e24c3573SPaul Walmsley  * prm_ll_data * previously registered by prm_register().
619e24c3573SPaul Walmsley  */
620e24c3573SPaul Walmsley int prm_unregister(struct prm_ll_data *pld)
6213f4990f4SR Sricharan {
622e24c3573SPaul Walmsley 	if (!pld || prm_ll_data != pld)
623e24c3573SPaul Walmsley 		return -EINVAL;
6243f4990f4SR Sricharan 
625e24c3573SPaul Walmsley 	prm_ll_data = &null_prm_ll_data;
626e24c3573SPaul Walmsley 
6273f4990f4SR Sricharan 	return 0;
6283f4990f4SR Sricharan }
629943a63a4STero Kristo 
630ab7b2ffcSTero Kristo #ifdef CONFIG_ARCH_OMAP2
631ab7b2ffcSTero Kristo static struct omap_prcm_init_data omap2_prm_data __initdata = {
6323a3e1c88STero Kristo 	.index = TI_CLKM_PRM,
633ab7b2ffcSTero Kristo 	.init = omap2xxx_prm_init,
6343a3e1c88STero Kristo };
635ab7b2ffcSTero Kristo #endif
6363a3e1c88STero Kristo 
637ab7b2ffcSTero Kristo #ifdef CONFIG_ARCH_OMAP3
638ab7b2ffcSTero Kristo static struct omap_prcm_init_data omap3_prm_data __initdata = {
639ae521d4dSTero Kristo 	.index = TI_CLKM_PRM,
640ab7b2ffcSTero Kristo 	.init = omap3xxx_prm_init,
641ae521d4dSTero Kristo 
642ae521d4dSTero Kristo 	/*
643ae521d4dSTero Kristo 	 * IVA2 offset is a negative value, must offset the prm_base
644ae521d4dSTero Kristo 	 * address by this to get it to positive
645ae521d4dSTero Kristo 	 */
646ae521d4dSTero Kristo 	.offset = -OMAP3430_IVA2_MOD,
647ae521d4dSTero Kristo };
648ab7b2ffcSTero Kristo #endif
649ae521d4dSTero Kristo 
650ab7b2ffcSTero Kristo #if defined(CONFIG_SOC_AM33XX) || defined(CONFIG_SOC_TI81XX)
651ab7b2ffcSTero Kristo static struct omap_prcm_init_data am3_prm_data __initdata = {
652ab7b2ffcSTero Kristo 	.index = TI_CLKM_PRM,
653ab7b2ffcSTero Kristo 	.init = am33xx_prm_init,
654ab7b2ffcSTero Kristo };
655dbb7e70aSTony Lindgren #endif
6564e34df0cSTony Lindgren 
657dbb7e70aSTony Lindgren #ifdef CONFIG_SOC_TI81XX
6584e34df0cSTony Lindgren static struct omap_prcm_init_data dm814_pllss_data __initdata = {
6594e34df0cSTony Lindgren 	.index = TI_CLKM_PLLSS,
6604e34df0cSTony Lindgren 	.init = am33xx_prm_init,
6614e34df0cSTony Lindgren };
662ab7b2ffcSTero Kristo #endif
663ab7b2ffcSTero Kristo 
66448e0c114STero Kristo #ifdef CONFIG_ARCH_OMAP4
665ab7b2ffcSTero Kristo static struct omap_prcm_init_data omap4_prm_data __initdata = {
666ab7b2ffcSTero Kristo 	.index = TI_CLKM_PRM,
667ab7b2ffcSTero Kristo 	.init = omap44xx_prm_init,
66848e0c114STero Kristo 	.device_inst_offset = OMAP4430_PRM_DEVICE_INST,
6693da52167STony Lindgren 	.flags = PRM_HAS_IO_WAKEUP | PRM_HAS_VOLTAGE,
67048e0c114STero Kristo };
67148e0c114STero Kristo #endif
67248e0c114STero Kristo 
67348e0c114STero Kristo #ifdef CONFIG_SOC_OMAP5
67448e0c114STero Kristo static struct omap_prcm_init_data omap5_prm_data __initdata = {
67548e0c114STero Kristo 	.index = TI_CLKM_PRM,
67648e0c114STero Kristo 	.init = omap44xx_prm_init,
67748e0c114STero Kristo 	.device_inst_offset = OMAP54XX_PRM_DEVICE_INST,
6788b5b9a22STero Kristo 	.flags = PRM_HAS_IO_WAKEUP | PRM_HAS_VOLTAGE,
67948e0c114STero Kristo };
68048e0c114STero Kristo #endif
68148e0c114STero Kristo 
68248e0c114STero Kristo #ifdef CONFIG_SOC_DRA7XX
68348e0c114STero Kristo static struct omap_prcm_init_data dra7_prm_data __initdata = {
68448e0c114STero Kristo 	.index = TI_CLKM_PRM,
68548e0c114STero Kristo 	.init = omap44xx_prm_init,
68648e0c114STero Kristo 	.device_inst_offset = DRA7XX_PRM_DEVICE_INST,
6878b5b9a22STero Kristo 	.flags = PRM_HAS_IO_WAKEUP,
68848e0c114STero Kristo };
68948e0c114STero Kristo #endif
69048e0c114STero Kristo 
69148e0c114STero Kristo #ifdef CONFIG_SOC_AM43XX
69248e0c114STero Kristo static struct omap_prcm_init_data am4_prm_data __initdata = {
69348e0c114STero Kristo 	.index = TI_CLKM_PRM,
69448e0c114STero Kristo 	.init = omap44xx_prm_init,
69548e0c114STero Kristo 	.device_inst_offset = AM43XX_PRM_DEVICE_INST,
6968740a144SKeerthy 	.flags = PRM_HAS_IO_WAKEUP,
697ab7b2ffcSTero Kristo };
698ab7b2ffcSTero Kristo #endif
699ab7b2ffcSTero Kristo 
700ab7b2ffcSTero Kristo #if defined(CONFIG_ARCH_OMAP4) || defined(CONFIG_SOC_OMAP5)
701ab7b2ffcSTero Kristo static struct omap_prcm_init_data scrm_data __initdata = {
7023a3e1c88STero Kristo 	.index = TI_CLKM_SCRM,
7033a3e1c88STero Kristo };
704ab7b2ffcSTero Kristo #endif
7053a3e1c88STero Kristo 
7060527873bSArnd Bergmann static const struct of_device_id omap_prcm_dt_match_table[] __initconst = {
707ab7b2ffcSTero Kristo #ifdef CONFIG_SOC_AM33XX
708ab7b2ffcSTero Kristo 	{ .compatible = "ti,am3-prcm", .data = &am3_prm_data },
709ab7b2ffcSTero Kristo #endif
710ab7b2ffcSTero Kristo #ifdef CONFIG_SOC_AM43XX
71148e0c114STero Kristo 	{ .compatible = "ti,am4-prcm", .data = &am4_prm_data },
712ab7b2ffcSTero Kristo #endif
713ab7b2ffcSTero Kristo #ifdef CONFIG_SOC_TI81XX
714ab7b2ffcSTero Kristo 	{ .compatible = "ti,dm814-prcm", .data = &am3_prm_data },
7154e34df0cSTony Lindgren 	{ .compatible = "ti,dm814-pllss", .data = &dm814_pllss_data },
716ab7b2ffcSTero Kristo 	{ .compatible = "ti,dm816-prcm", .data = &am3_prm_data },
717ab7b2ffcSTero Kristo #endif
718ab7b2ffcSTero Kristo #ifdef CONFIG_ARCH_OMAP2
719ab7b2ffcSTero Kristo 	{ .compatible = "ti,omap2-prcm", .data = &omap2_prm_data },
720ab7b2ffcSTero Kristo #endif
721ab7b2ffcSTero Kristo #ifdef CONFIG_ARCH_OMAP3
722ae521d4dSTero Kristo 	{ .compatible = "ti,omap3-prm", .data = &omap3_prm_data },
723ab7b2ffcSTero Kristo #endif
724ab7b2ffcSTero Kristo #ifdef CONFIG_ARCH_OMAP4
725ab7b2ffcSTero Kristo 	{ .compatible = "ti,omap4-prm", .data = &omap4_prm_data },
7263a3e1c88STero Kristo 	{ .compatible = "ti,omap4-scrm", .data = &scrm_data },
727ab7b2ffcSTero Kristo #endif
728ab7b2ffcSTero Kristo #ifdef CONFIG_SOC_OMAP5
72948e0c114STero Kristo 	{ .compatible = "ti,omap5-prm", .data = &omap5_prm_data },
7303a3e1c88STero Kristo 	{ .compatible = "ti,omap5-scrm", .data = &scrm_data },
731ab7b2ffcSTero Kristo #endif
732ab7b2ffcSTero Kristo #ifdef CONFIG_SOC_DRA7XX
73348e0c114STero Kristo 	{ .compatible = "ti,dra7-prm", .data = &dra7_prm_data },
734ab7b2ffcSTero Kristo #endif
735943a63a4STero Kristo 	{ }
736943a63a4STero Kristo };
737943a63a4STero Kristo 
7383a1a388eSTero Kristo /**
739ae521d4dSTero Kristo  * omap2_prm_base_init - initialize iomappings for the PRM driver
740ae521d4dSTero Kristo  *
741ae521d4dSTero Kristo  * Detects and initializes the iomappings for the PRM driver, based
742ae521d4dSTero Kristo  * on the DT data. Returns 0 in success, negative error value
743ae521d4dSTero Kristo  * otherwise.
744ae521d4dSTero Kristo  */
745ae521d4dSTero Kristo int __init omap2_prm_base_init(void)
746ae521d4dSTero Kristo {
747ae521d4dSTero Kristo 	struct device_node *np;
748ae521d4dSTero Kristo 	const struct of_device_id *match;
749ae521d4dSTero Kristo 	struct omap_prcm_init_data *data;
75090129336STero Kristo 	struct resource res;
75190129336STero Kristo 	int ret;
752ae521d4dSTero Kristo 
753ae521d4dSTero Kristo 	for_each_matching_node_and_match(np, omap_prcm_dt_match_table, &match) {
754ae521d4dSTero Kristo 		data = (struct omap_prcm_init_data *)match->data;
755ae521d4dSTero Kristo 
75690129336STero Kristo 		ret = of_address_to_resource(np, 0, &res);
75790129336STero Kristo 		if (ret)
75890129336STero Kristo 			return ret;
759ae521d4dSTero Kristo 
76090129336STero Kristo 		data->mem = ioremap(res.start, resource_size(&res));
761ae521d4dSTero Kristo 
76290129336STero Kristo 		if (data->index == TI_CLKM_PRM) {
76390129336STero Kristo 			prm_base.va = data->mem + data->offset;
76490129336STero Kristo 			prm_base.pa = res.start + data->offset;
76590129336STero Kristo 		}
766ab7b2ffcSTero Kristo 
767ab7b2ffcSTero Kristo 		data->np = np;
768ab7b2ffcSTero Kristo 
769ab7b2ffcSTero Kristo 		if (data->init)
770ab7b2ffcSTero Kristo 			data->init(data);
771ae521d4dSTero Kristo 	}
772ae521d4dSTero Kristo 
773ae521d4dSTero Kristo 	return 0;
774ae521d4dSTero Kristo }
775ae521d4dSTero Kristo 
776ab7b2ffcSTero Kristo int __init omap2_prcm_base_init(void)
777ab7b2ffcSTero Kristo {
778425dc8b2STero Kristo 	int ret;
779425dc8b2STero Kristo 
780425dc8b2STero Kristo 	ret = omap2_prm_base_init();
781425dc8b2STero Kristo 	if (ret)
782425dc8b2STero Kristo 		return ret;
783425dc8b2STero Kristo 
784425dc8b2STero Kristo 	return omap2_cm_base_init();
785ab7b2ffcSTero Kristo }
786ab7b2ffcSTero Kristo 
787ae521d4dSTero Kristo /**
7883a1a388eSTero Kristo  * omap_prcm_init - low level init for the PRCM drivers
7893a1a388eSTero Kristo  *
7903a1a388eSTero Kristo  * Initializes the low level clock infrastructure for PRCM drivers.
7913a1a388eSTero Kristo  * Returns 0 in success, negative error value in failure.
7923a1a388eSTero Kristo  */
7933a1a388eSTero Kristo int __init omap_prcm_init(void)
794943a63a4STero Kristo {
795943a63a4STero Kristo 	struct device_node *np;
7963a3e1c88STero Kristo 	const struct of_device_id *match;
7973a3e1c88STero Kristo 	const struct omap_prcm_init_data *data;
7989f029b15STero Kristo 	int ret;
799943a63a4STero Kristo 
8003a3e1c88STero Kristo 	for_each_matching_node_and_match(np, omap_prcm_dt_match_table, &match) {
8013a3e1c88STero Kristo 		data = match->data;
8023a3e1c88STero Kristo 
80380cbb224STero Kristo 		ret = omap2_clk_provider_init(np, data->index, NULL, data->mem);
8049f029b15STero Kristo 		if (ret)
8059f029b15STero Kristo 			return ret;
806943a63a4STero Kristo 	}
807943a63a4STero Kristo 
808fe87414fSTero Kristo 	omap_cm_init();
809fe87414fSTero Kristo 
810943a63a4STero Kristo 	return 0;
811943a63a4STero Kristo }
812b550e47fSTero Kristo 
813b550e47fSTero Kristo static int __init prm_late_init(void)
814b550e47fSTero Kristo {
815b550e47fSTero Kristo 	if (prm_ll_data->late_init)
816b550e47fSTero Kristo 		return prm_ll_data->late_init();
817b550e47fSTero Kristo 	return 0;
818b550e47fSTero Kristo }
819b550e47fSTero Kristo subsys_initcall(prm_late_init);
820