1d2912cb1SThomas Gleixner // SPDX-License-Identifier: GPL-2.0-only 20a84a91cSTero Kristo /* 30a84a91cSTero Kristo * OMAP2+ common Power & Reset Management (PRM) IP block functions 40a84a91cSTero Kristo * 50a84a91cSTero Kristo * Copyright (C) 2011 Texas Instruments, Inc. 60a84a91cSTero Kristo * Tero Kristo <t-kristo@ti.com> 70a84a91cSTero Kristo * 80a84a91cSTero Kristo * For historical purposes, the API used to configure the PRM 90a84a91cSTero Kristo * interrupt handler refers to it as the "PRCM interrupt." The 100a84a91cSTero Kristo * underlying registers are located in the PRM on OMAP3/4. 110a84a91cSTero Kristo * 120a84a91cSTero Kristo * XXX This code should eventually be moved to a PRM driver. 130a84a91cSTero Kristo */ 140a84a91cSTero Kristo 150a84a91cSTero Kristo #include <linux/kernel.h> 160a84a91cSTero Kristo #include <linux/module.h> 170a84a91cSTero Kristo #include <linux/init.h> 180a84a91cSTero Kristo #include <linux/io.h> 190a84a91cSTero Kristo #include <linux/irq.h> 200a84a91cSTero Kristo #include <linux/interrupt.h> 210a84a91cSTero Kristo #include <linux/slab.h> 22943a63a4STero Kristo #include <linux/of.h> 23943a63a4STero Kristo #include <linux/of_address.h> 24943a63a4STero Kristo #include <linux/clk-provider.h> 25943a63a4STero Kristo #include <linux/clk/ti.h> 260a84a91cSTero Kristo 2730a69ef7STony Lindgren #include "soc.h" 280a84a91cSTero Kristo #include "prm2xxx_3xxx.h" 292bb2a5d3SPaul Walmsley #include "prm2xxx.h" 302bb2a5d3SPaul Walmsley #include "prm3xxx.h" 31ab7b2ffcSTero Kristo #include "prm33xx.h" 320a84a91cSTero Kristo #include "prm44xx.h" 3348e0c114STero Kristo #include "prm54xx.h" 3448e0c114STero Kristo #include "prm7xx.h" 3548e0c114STero Kristo #include "prcm43xx.h" 36d9a16f9aSPaul Walmsley #include "common.h" 37943a63a4STero Kristo #include "clock.h" 383dbb048bSTero Kristo #include "cm.h" 393dbb048bSTero Kristo #include "control.h" 400a84a91cSTero Kristo 410a84a91cSTero Kristo /* 420a84a91cSTero Kristo * OMAP_PRCM_MAX_NR_PENDING_REG: maximum number of PRM_IRQ*_MPU regs 430a84a91cSTero Kristo * XXX this is technically not needed, since 440a84a91cSTero Kristo * omap_prcm_register_chain_handler() could allocate this based on the 450a84a91cSTero Kristo * actual amount of memory needed for the SoC 460a84a91cSTero Kristo */ 470a84a91cSTero Kristo #define OMAP_PRCM_MAX_NR_PENDING_REG 2 480a84a91cSTero Kristo 490a84a91cSTero Kristo /* 500a84a91cSTero Kristo * prcm_irq_chips: an array of all of the "generic IRQ chips" in use 510a84a91cSTero Kristo * by the PRCM interrupt handler code. There will be one 'chip' per 520a84a91cSTero Kristo * PRM_{IRQSTATUS,IRQENABLE}_MPU register pair. (So OMAP3 will have 530a84a91cSTero Kristo * one "chip" and OMAP4 will have two.) 540a84a91cSTero Kristo */ 550a84a91cSTero Kristo static struct irq_chip_generic **prcm_irq_chips; 560a84a91cSTero Kristo 570a84a91cSTero Kristo /* 580a84a91cSTero Kristo * prcm_irq_setup: the PRCM IRQ parameters for the hardware the code 590a84a91cSTero Kristo * is currently running on. Defined and passed by initialization code 600a84a91cSTero Kristo * that calls omap_prcm_register_chain_handler(). 610a84a91cSTero Kristo */ 620a84a91cSTero Kristo static struct omap_prcm_irq_setup *prcm_irq_setup; 630a84a91cSTero Kristo 64d9a16f9aSPaul Walmsley /* prm_base: base virtual address of the PRM IP block */ 6590129336STero Kristo struct omap_domain_base prm_base; 66d9a16f9aSPaul Walmsley 672541d15fSTero Kristo u16 prm_features; 682541d15fSTero Kristo 69e24c3573SPaul Walmsley /* 70*6521f6a1SAlexander Sverdlin * Platforms that implement different reboot modes can store the requested 71*6521f6a1SAlexander Sverdlin * mode here. 72*6521f6a1SAlexander Sverdlin */ 73*6521f6a1SAlexander Sverdlin enum reboot_mode prm_reboot_mode; 74*6521f6a1SAlexander Sverdlin 75*6521f6a1SAlexander Sverdlin /* 76e24c3573SPaul Walmsley * prm_ll_data: function pointers to SoC-specific implementations of 77e24c3573SPaul Walmsley * common PRM functions 78e24c3573SPaul Walmsley */ 79e24c3573SPaul Walmsley static struct prm_ll_data null_prm_ll_data; 80e24c3573SPaul Walmsley static struct prm_ll_data *prm_ll_data = &null_prm_ll_data; 81e24c3573SPaul Walmsley 820a84a91cSTero Kristo /* Private functions */ 830a84a91cSTero Kristo 840a84a91cSTero Kristo /* 850a84a91cSTero Kristo * Move priority events from events to priority_events array 860a84a91cSTero Kristo */ 870a84a91cSTero Kristo static void omap_prcm_events_filter_priority(unsigned long *events, 880a84a91cSTero Kristo unsigned long *priority_events) 890a84a91cSTero Kristo { 900a84a91cSTero Kristo int i; 910a84a91cSTero Kristo 920a84a91cSTero Kristo for (i = 0; i < prcm_irq_setup->nr_regs; i++) { 930a84a91cSTero Kristo priority_events[i] = 940a84a91cSTero Kristo events[i] & prcm_irq_setup->priority_mask[i]; 950a84a91cSTero Kristo events[i] ^= priority_events[i]; 960a84a91cSTero Kristo } 970a84a91cSTero Kristo } 980a84a91cSTero Kristo 990a84a91cSTero Kristo /* 1000a84a91cSTero Kristo * PRCM Interrupt Handler 1010a84a91cSTero Kristo * 1020a84a91cSTero Kristo * This is a common handler for the OMAP PRCM interrupts. Pending 1030a84a91cSTero Kristo * interrupts are detected by a call to prcm_pending_events and 1040a84a91cSTero Kristo * dispatched accordingly. Clearing of the wakeup events should be 1050a84a91cSTero Kristo * done by the SoC specific individual handlers. 1060a84a91cSTero Kristo */ 107bd0b9ac4SThomas Gleixner static void omap_prcm_irq_handler(struct irq_desc *desc) 1080a84a91cSTero Kristo { 1090a84a91cSTero Kristo unsigned long pending[OMAP_PRCM_MAX_NR_PENDING_REG]; 1100a84a91cSTero Kristo unsigned long priority_pending[OMAP_PRCM_MAX_NR_PENDING_REG]; 1110a84a91cSTero Kristo struct irq_chip *chip = irq_desc_get_chip(desc); 1120a84a91cSTero Kristo unsigned int virtirq; 113b56f2cb7SVenkatraman S int nr_irq = prcm_irq_setup->nr_regs * 32; 1140a84a91cSTero Kristo 1150a84a91cSTero Kristo /* 11691285b6fSTero Kristo * If we are suspended, mask all interrupts from PRCM level, 11791285b6fSTero Kristo * this does not ack them, and they will be pending until we 11891285b6fSTero Kristo * re-enable the interrupts, at which point the 11991285b6fSTero Kristo * omap_prcm_irq_handler will be executed again. The 12091285b6fSTero Kristo * _save_and_clear_irqen() function must ensure that the PRM 12191285b6fSTero Kristo * write to disable all IRQs has reached the PRM before 12291285b6fSTero Kristo * returning, or spurious PRCM interrupts may occur during 12391285b6fSTero Kristo * suspend. 12491285b6fSTero Kristo */ 12591285b6fSTero Kristo if (prcm_irq_setup->suspended) { 12691285b6fSTero Kristo prcm_irq_setup->save_and_clear_irqen(prcm_irq_setup->saved_mask); 12791285b6fSTero Kristo prcm_irq_setup->suspend_save_flag = true; 12891285b6fSTero Kristo } 12991285b6fSTero Kristo 13091285b6fSTero Kristo /* 1310a84a91cSTero Kristo * Loop until all pending irqs are handled, since 1320a84a91cSTero Kristo * generic_handle_irq() can cause new irqs to come 1330a84a91cSTero Kristo */ 13491285b6fSTero Kristo while (!prcm_irq_setup->suspended) { 1350a84a91cSTero Kristo prcm_irq_setup->read_pending_irqs(pending); 1360a84a91cSTero Kristo 1370a84a91cSTero Kristo /* No bit set, then all IRQs are handled */ 138b56f2cb7SVenkatraman S if (find_first_bit(pending, nr_irq) >= nr_irq) 1390a84a91cSTero Kristo break; 1400a84a91cSTero Kristo 1410a84a91cSTero Kristo omap_prcm_events_filter_priority(pending, priority_pending); 1420a84a91cSTero Kristo 1430a84a91cSTero Kristo /* 1440a84a91cSTero Kristo * Loop on all currently pending irqs so that new irqs 1450a84a91cSTero Kristo * cannot starve previously pending irqs 1460a84a91cSTero Kristo */ 1470a84a91cSTero Kristo 1480a84a91cSTero Kristo /* Serve priority events first */ 149b56f2cb7SVenkatraman S for_each_set_bit(virtirq, priority_pending, nr_irq) 1500a84a91cSTero Kristo generic_handle_irq(prcm_irq_setup->base_irq + virtirq); 1510a84a91cSTero Kristo 1520a84a91cSTero Kristo /* Serve normal events next */ 153b56f2cb7SVenkatraman S for_each_set_bit(virtirq, pending, nr_irq) 1540a84a91cSTero Kristo generic_handle_irq(prcm_irq_setup->base_irq + virtirq); 1550a84a91cSTero Kristo } 1560a84a91cSTero Kristo if (chip->irq_ack) 1570a84a91cSTero Kristo chip->irq_ack(&desc->irq_data); 1580a84a91cSTero Kristo if (chip->irq_eoi) 1590a84a91cSTero Kristo chip->irq_eoi(&desc->irq_data); 1600a84a91cSTero Kristo chip->irq_unmask(&desc->irq_data); 1610a84a91cSTero Kristo 1620a84a91cSTero Kristo prcm_irq_setup->ocp_barrier(); /* avoid spurious IRQs */ 1630a84a91cSTero Kristo } 1640a84a91cSTero Kristo 1650a84a91cSTero Kristo /* Public functions */ 1660a84a91cSTero Kristo 1670a84a91cSTero Kristo /** 1680a84a91cSTero Kristo * omap_prcm_event_to_irq - given a PRCM event name, returns the 1690a84a91cSTero Kristo * corresponding IRQ on which the handler should be registered 1700a84a91cSTero Kristo * @name: name of the PRCM interrupt bit to look up - see struct omap_prcm_irq 1710a84a91cSTero Kristo * 1720a84a91cSTero Kristo * Returns the Linux internal IRQ ID corresponding to @name upon success, 1730a84a91cSTero Kristo * or -ENOENT upon failure. 1740a84a91cSTero Kristo */ 1750a84a91cSTero Kristo int omap_prcm_event_to_irq(const char *name) 1760a84a91cSTero Kristo { 1770a84a91cSTero Kristo int i; 1780a84a91cSTero Kristo 1790a84a91cSTero Kristo if (!prcm_irq_setup || !name) 1800a84a91cSTero Kristo return -ENOENT; 1810a84a91cSTero Kristo 1820a84a91cSTero Kristo for (i = 0; i < prcm_irq_setup->nr_irqs; i++) 1830a84a91cSTero Kristo if (!strcmp(prcm_irq_setup->irqs[i].name, name)) 1840a84a91cSTero Kristo return prcm_irq_setup->base_irq + 1850a84a91cSTero Kristo prcm_irq_setup->irqs[i].offset; 1860a84a91cSTero Kristo 1870a84a91cSTero Kristo return -ENOENT; 1880a84a91cSTero Kristo } 1890a84a91cSTero Kristo 1900a84a91cSTero Kristo /** 1910a84a91cSTero Kristo * omap_prcm_irq_cleanup - reverses memory allocated and other steps 1920a84a91cSTero Kristo * done by omap_prcm_register_chain_handler() 1930a84a91cSTero Kristo * 1940a84a91cSTero Kristo * No return value. 1950a84a91cSTero Kristo */ 1966aeb51c1SArnd Bergmann static void omap_prcm_irq_cleanup(void) 1970a84a91cSTero Kristo { 1980fb22a8fSMarc Zyngier unsigned int irq; 1990a84a91cSTero Kristo int i; 2000a84a91cSTero Kristo 2010a84a91cSTero Kristo if (!prcm_irq_setup) { 2020a84a91cSTero Kristo pr_err("PRCM: IRQ handler not initialized; cannot cleanup\n"); 2030a84a91cSTero Kristo return; 2040a84a91cSTero Kristo } 2050a84a91cSTero Kristo 2060a84a91cSTero Kristo if (prcm_irq_chips) { 2070a84a91cSTero Kristo for (i = 0; i < prcm_irq_setup->nr_regs; i++) { 2080a84a91cSTero Kristo if (prcm_irq_chips[i]) 2090a84a91cSTero Kristo irq_remove_generic_chip(prcm_irq_chips[i], 2100a84a91cSTero Kristo 0xffffffff, 0, 0); 2110a84a91cSTero Kristo prcm_irq_chips[i] = NULL; 2120a84a91cSTero Kristo } 2130a84a91cSTero Kristo kfree(prcm_irq_chips); 2140a84a91cSTero Kristo prcm_irq_chips = NULL; 2150a84a91cSTero Kristo } 2160a84a91cSTero Kristo 21791285b6fSTero Kristo kfree(prcm_irq_setup->saved_mask); 21891285b6fSTero Kristo prcm_irq_setup->saved_mask = NULL; 21991285b6fSTero Kristo 2200a84a91cSTero Kristo kfree(prcm_irq_setup->priority_mask); 2210a84a91cSTero Kristo prcm_irq_setup->priority_mask = NULL; 2220a84a91cSTero Kristo 2230fb22a8fSMarc Zyngier irq = prcm_irq_setup->irq; 2240fb22a8fSMarc Zyngier irq_set_chained_handler(irq, NULL); 2250a84a91cSTero Kristo 2260a84a91cSTero Kristo if (prcm_irq_setup->base_irq > 0) 2270a84a91cSTero Kristo irq_free_descs(prcm_irq_setup->base_irq, 2280a84a91cSTero Kristo prcm_irq_setup->nr_regs * 32); 2290a84a91cSTero Kristo prcm_irq_setup->base_irq = 0; 2300a84a91cSTero Kristo } 2310a84a91cSTero Kristo 23291285b6fSTero Kristo void omap_prcm_irq_prepare(void) 23391285b6fSTero Kristo { 23491285b6fSTero Kristo prcm_irq_setup->suspended = true; 23591285b6fSTero Kristo } 23691285b6fSTero Kristo 23791285b6fSTero Kristo void omap_prcm_irq_complete(void) 23891285b6fSTero Kristo { 23991285b6fSTero Kristo prcm_irq_setup->suspended = false; 24091285b6fSTero Kristo 24191285b6fSTero Kristo /* If we have not saved the masks, do not attempt to restore */ 24291285b6fSTero Kristo if (!prcm_irq_setup->suspend_save_flag) 24391285b6fSTero Kristo return; 24491285b6fSTero Kristo 24591285b6fSTero Kristo prcm_irq_setup->suspend_save_flag = false; 24691285b6fSTero Kristo 24791285b6fSTero Kristo /* 24891285b6fSTero Kristo * Re-enable all masked PRCM irq sources, this causes the PRCM 24991285b6fSTero Kristo * interrupt to fire immediately if the events were masked 25091285b6fSTero Kristo * previously in the chain handler 25191285b6fSTero Kristo */ 25291285b6fSTero Kristo prcm_irq_setup->restore_irqen(prcm_irq_setup->saved_mask); 25391285b6fSTero Kristo } 25491285b6fSTero Kristo 2550a84a91cSTero Kristo /** 2560a84a91cSTero Kristo * omap_prcm_register_chain_handler - initializes the prcm chained interrupt 2570a84a91cSTero Kristo * handler based on provided parameters 2580a84a91cSTero Kristo * @irq_setup: hardware data about the underlying PRM/PRCM 2590a84a91cSTero Kristo * 2600a84a91cSTero Kristo * Set up the PRCM chained interrupt handler on the PRCM IRQ. Sets up 2610a84a91cSTero Kristo * one generic IRQ chip per PRM interrupt status/enable register pair. 2620a84a91cSTero Kristo * Returns 0 upon success, -EINVAL if called twice or if invalid 2630a84a91cSTero Kristo * arguments are passed, or -ENOMEM on any other error. 2640a84a91cSTero Kristo */ 2650a84a91cSTero Kristo int omap_prcm_register_chain_handler(struct omap_prcm_irq_setup *irq_setup) 2660a84a91cSTero Kristo { 267eeb3711bSPaul Walmsley int nr_regs; 2680a84a91cSTero Kristo u32 mask[OMAP_PRCM_MAX_NR_PENDING_REG]; 2692a26d31bSTony Lindgren int offset, i, irq; 2700a84a91cSTero Kristo struct irq_chip_generic *gc; 2710a84a91cSTero Kristo struct irq_chip_type *ct; 2720a84a91cSTero Kristo 2730a84a91cSTero Kristo if (!irq_setup) 2740a84a91cSTero Kristo return -EINVAL; 2750a84a91cSTero Kristo 276eeb3711bSPaul Walmsley nr_regs = irq_setup->nr_regs; 277eeb3711bSPaul Walmsley 2780a84a91cSTero Kristo if (prcm_irq_setup) { 2790a84a91cSTero Kristo pr_err("PRCM: already initialized; won't reinitialize\n"); 2800a84a91cSTero Kristo return -EINVAL; 2810a84a91cSTero Kristo } 2820a84a91cSTero Kristo 2830a84a91cSTero Kristo if (nr_regs > OMAP_PRCM_MAX_NR_PENDING_REG) { 2840a84a91cSTero Kristo pr_err("PRCM: nr_regs too large\n"); 2850a84a91cSTero Kristo return -EINVAL; 2860a84a91cSTero Kristo } 2870a84a91cSTero Kristo 2880a84a91cSTero Kristo prcm_irq_setup = irq_setup; 2890a84a91cSTero Kristo 2906396bb22SKees Cook prcm_irq_chips = kcalloc(nr_regs, sizeof(void *), GFP_KERNEL); 2916396bb22SKees Cook prcm_irq_setup->saved_mask = kcalloc(nr_regs, sizeof(u32), 2926396bb22SKees Cook GFP_KERNEL); 2936396bb22SKees Cook prcm_irq_setup->priority_mask = kcalloc(nr_regs, sizeof(u32), 2940a84a91cSTero Kristo GFP_KERNEL); 2950a84a91cSTero Kristo 29691285b6fSTero Kristo if (!prcm_irq_chips || !prcm_irq_setup->saved_mask || 2979a6b6f75SMarkus Elfring !prcm_irq_setup->priority_mask) 2980a84a91cSTero Kristo goto err; 2990a84a91cSTero Kristo 3000a84a91cSTero Kristo memset(mask, 0, sizeof(mask)); 3010a84a91cSTero Kristo 3020a84a91cSTero Kristo for (i = 0; i < irq_setup->nr_irqs; i++) { 3030a84a91cSTero Kristo offset = irq_setup->irqs[i].offset; 3040a84a91cSTero Kristo mask[offset >> 5] |= 1 << (offset & 0x1f); 3050a84a91cSTero Kristo if (irq_setup->irqs[i].priority) 3060a84a91cSTero Kristo irq_setup->priority_mask[offset >> 5] |= 3070a84a91cSTero Kristo 1 << (offset & 0x1f); 3080a84a91cSTero Kristo } 3090a84a91cSTero Kristo 3100fb22a8fSMarc Zyngier irq = irq_setup->irq; 3110fb22a8fSMarc Zyngier irq_set_chained_handler(irq, omap_prcm_irq_handler); 3120a84a91cSTero Kristo 3130a84a91cSTero Kristo irq_setup->base_irq = irq_alloc_descs(-1, 0, irq_setup->nr_regs * 32, 3140a84a91cSTero Kristo 0); 3150a84a91cSTero Kristo 3160a84a91cSTero Kristo if (irq_setup->base_irq < 0) { 3170a84a91cSTero Kristo pr_err("PRCM: failed to allocate irq descs: %d\n", 3180a84a91cSTero Kristo irq_setup->base_irq); 3190a84a91cSTero Kristo goto err; 3200a84a91cSTero Kristo } 3210a84a91cSTero Kristo 3224ba7c3c3SMing Lei for (i = 0; i < irq_setup->nr_regs; i++) { 3230a84a91cSTero Kristo gc = irq_alloc_generic_chip("PRCM", 1, 32490129336STero Kristo irq_setup->base_irq + i * 32, prm_base.va, 3250a84a91cSTero Kristo handle_level_irq); 3260a84a91cSTero Kristo 3270a84a91cSTero Kristo if (!gc) { 3280a84a91cSTero Kristo pr_err("PRCM: failed to allocate generic chip\n"); 3290a84a91cSTero Kristo goto err; 3300a84a91cSTero Kristo } 3310a84a91cSTero Kristo ct = gc->chip_types; 3320a84a91cSTero Kristo ct->chip.irq_ack = irq_gc_ack_set_bit; 3330a84a91cSTero Kristo ct->chip.irq_mask = irq_gc_mask_clr_bit; 3340a84a91cSTero Kristo ct->chip.irq_unmask = irq_gc_mask_set_bit; 3350a84a91cSTero Kristo 3360a84a91cSTero Kristo ct->regs.ack = irq_setup->ack + i * 4; 3370a84a91cSTero Kristo ct->regs.mask = irq_setup->mask + i * 4; 3380a84a91cSTero Kristo 3390a84a91cSTero Kristo irq_setup_generic_chip(gc, mask[i], 0, IRQ_NOREQUEST, 0); 3400a84a91cSTero Kristo prcm_irq_chips[i] = gc; 3410a84a91cSTero Kristo } 3420a84a91cSTero Kristo 3432a26d31bSTony Lindgren irq = omap_prcm_event_to_irq("io"); 34481243651STero Kristo omap_pcs_legacy_init(irq, irq_setup->reconfigure_io_chain); 34530a69ef7STony Lindgren 3460a84a91cSTero Kristo return 0; 3470a84a91cSTero Kristo 3480a84a91cSTero Kristo err: 3490a84a91cSTero Kristo omap_prcm_irq_cleanup(); 3500a84a91cSTero Kristo return -ENOMEM; 3510a84a91cSTero Kristo } 3523f4990f4SR Sricharan 353e24c3573SPaul Walmsley /** 354e6d3a8b0SRajendra Nayak * prm_was_any_context_lost_old - was device context lost? (old API) 355e6d3a8b0SRajendra Nayak * @part: PRM partition ID (e.g., OMAP4430_PRM_PARTITION) 356e6d3a8b0SRajendra Nayak * @inst: PRM instance offset (e.g., OMAP4430_PRM_MPU_INST) 357e6d3a8b0SRajendra Nayak * @idx: CONTEXT register offset 358e6d3a8b0SRajendra Nayak * 359e6d3a8b0SRajendra Nayak * Return 1 if any bits were set in the *_CONTEXT_* register 360e6d3a8b0SRajendra Nayak * identified by (@part, @inst, @idx), which means that some context 361e6d3a8b0SRajendra Nayak * was lost for that module; otherwise, return 0. XXX Deprecated; 362e6d3a8b0SRajendra Nayak * callers need to use a less-SoC-dependent way to identify hardware 363e6d3a8b0SRajendra Nayak * IP blocks. 364e6d3a8b0SRajendra Nayak */ 365e6d3a8b0SRajendra Nayak bool prm_was_any_context_lost_old(u8 part, s16 inst, u16 idx) 366e6d3a8b0SRajendra Nayak { 367e6d3a8b0SRajendra Nayak bool ret = true; 368e6d3a8b0SRajendra Nayak 369e6d3a8b0SRajendra Nayak if (prm_ll_data->was_any_context_lost_old) 370e6d3a8b0SRajendra Nayak ret = prm_ll_data->was_any_context_lost_old(part, inst, idx); 371e6d3a8b0SRajendra Nayak else 372e6d3a8b0SRajendra Nayak WARN_ONCE(1, "prm: %s: no mapping function defined\n", 373e6d3a8b0SRajendra Nayak __func__); 374e6d3a8b0SRajendra Nayak 375e6d3a8b0SRajendra Nayak return ret; 376e6d3a8b0SRajendra Nayak } 377e6d3a8b0SRajendra Nayak 378e6d3a8b0SRajendra Nayak /** 379f9dbbac9SRandy Dunlap * prm_clear_context_loss_flags_old - clear context loss flags (old API) 380e6d3a8b0SRajendra Nayak * @part: PRM partition ID (e.g., OMAP4430_PRM_PARTITION) 381e6d3a8b0SRajendra Nayak * @inst: PRM instance offset (e.g., OMAP4430_PRM_MPU_INST) 382e6d3a8b0SRajendra Nayak * @idx: CONTEXT register offset 383e6d3a8b0SRajendra Nayak * 384e6d3a8b0SRajendra Nayak * Clear hardware context loss bits for the module identified by 385e6d3a8b0SRajendra Nayak * (@part, @inst, @idx). No return value. XXX Deprecated; callers 386e6d3a8b0SRajendra Nayak * need to use a less-SoC-dependent way to identify hardware IP 387e6d3a8b0SRajendra Nayak * blocks. 388e6d3a8b0SRajendra Nayak */ 389e6d3a8b0SRajendra Nayak void prm_clear_context_loss_flags_old(u8 part, s16 inst, u16 idx) 390e6d3a8b0SRajendra Nayak { 391e6d3a8b0SRajendra Nayak if (prm_ll_data->clear_context_loss_flags_old) 392e6d3a8b0SRajendra Nayak prm_ll_data->clear_context_loss_flags_old(part, inst, idx); 393e6d3a8b0SRajendra Nayak else 394e6d3a8b0SRajendra Nayak WARN_ONCE(1, "prm: %s: no mapping function defined\n", 395e6d3a8b0SRajendra Nayak __func__); 396e6d3a8b0SRajendra Nayak } 397e6d3a8b0SRajendra Nayak 398e6d3a8b0SRajendra Nayak /** 399efd44dc3STero Kristo * omap_prm_assert_hardreset - assert hardreset for an IP block 400efd44dc3STero Kristo * @shift: register bit shift corresponding to the reset line 401efd44dc3STero Kristo * @part: PRM partition 402efd44dc3STero Kristo * @prm_mod: PRM submodule base or instance offset 403efd44dc3STero Kristo * @offset: register offset 404efd44dc3STero Kristo * 405efd44dc3STero Kristo * Asserts a hardware reset line for an IP block. 406efd44dc3STero Kristo */ 407efd44dc3STero Kristo int omap_prm_assert_hardreset(u8 shift, u8 part, s16 prm_mod, u16 offset) 408efd44dc3STero Kristo { 409efd44dc3STero Kristo if (!prm_ll_data->assert_hardreset) { 410efd44dc3STero Kristo WARN_ONCE(1, "prm: %s: no mapping function defined\n", 411efd44dc3STero Kristo __func__); 412efd44dc3STero Kristo return -EINVAL; 413efd44dc3STero Kristo } 414efd44dc3STero Kristo 415efd44dc3STero Kristo return prm_ll_data->assert_hardreset(shift, part, prm_mod, offset); 416efd44dc3STero Kristo } 417efd44dc3STero Kristo 418efd44dc3STero Kristo /** 41937fb59d7STero Kristo * omap_prm_deassert_hardreset - deassert hardreset for an IP block 42037fb59d7STero Kristo * @shift: register bit shift corresponding to the reset line 42137fb59d7STero Kristo * @st_shift: reset status bit shift corresponding to the reset line 42237fb59d7STero Kristo * @part: PRM partition 42337fb59d7STero Kristo * @prm_mod: PRM submodule base or instance offset 42437fb59d7STero Kristo * @offset: register offset 42537fb59d7STero Kristo * @st_offset: status register offset 42637fb59d7STero Kristo * 42737fb59d7STero Kristo * Deasserts a hardware reset line for an IP block. 42837fb59d7STero Kristo */ 42937fb59d7STero Kristo int omap_prm_deassert_hardreset(u8 shift, u8 st_shift, u8 part, s16 prm_mod, 43037fb59d7STero Kristo u16 offset, u16 st_offset) 43137fb59d7STero Kristo { 43237fb59d7STero Kristo if (!prm_ll_data->deassert_hardreset) { 43337fb59d7STero Kristo WARN_ONCE(1, "prm: %s: no mapping function defined\n", 43437fb59d7STero Kristo __func__); 43537fb59d7STero Kristo return -EINVAL; 43637fb59d7STero Kristo } 43737fb59d7STero Kristo 43837fb59d7STero Kristo return prm_ll_data->deassert_hardreset(shift, st_shift, part, prm_mod, 43937fb59d7STero Kristo offset, st_offset); 44037fb59d7STero Kristo } 44137fb59d7STero Kristo 44237fb59d7STero Kristo /** 4431bc28b34STero Kristo * omap_prm_is_hardreset_asserted - check the hardreset status for an IP block 4441bc28b34STero Kristo * @shift: register bit shift corresponding to the reset line 4451bc28b34STero Kristo * @part: PRM partition 4461bc28b34STero Kristo * @prm_mod: PRM submodule base or instance offset 4471bc28b34STero Kristo * @offset: register offset 4481bc28b34STero Kristo * 4491bc28b34STero Kristo * Checks if a hardware reset line for an IP block is enabled or not. 4501bc28b34STero Kristo */ 4511bc28b34STero Kristo int omap_prm_is_hardreset_asserted(u8 shift, u8 part, s16 prm_mod, u16 offset) 4521bc28b34STero Kristo { 4531bc28b34STero Kristo if (!prm_ll_data->is_hardreset_asserted) { 4541bc28b34STero Kristo WARN_ONCE(1, "prm: %s: no mapping function defined\n", 4551bc28b34STero Kristo __func__); 4561bc28b34STero Kristo return -EINVAL; 4571bc28b34STero Kristo } 4581bc28b34STero Kristo 4591bc28b34STero Kristo return prm_ll_data->is_hardreset_asserted(shift, part, prm_mod, offset); 4601bc28b34STero Kristo } 4611bc28b34STero Kristo 4621bc28b34STero Kristo /** 46361c8621eSTero Kristo * omap_prm_reset_system - trigger global SW reset 46461c8621eSTero Kristo * 46561c8621eSTero Kristo * Triggers SoC specific global warm reset to reboot the device. 46661c8621eSTero Kristo */ 46761c8621eSTero Kristo void omap_prm_reset_system(void) 46861c8621eSTero Kristo { 46961c8621eSTero Kristo if (!prm_ll_data->reset_system) { 47061c8621eSTero Kristo WARN_ONCE(1, "prm: %s: no mapping function defined\n", 47161c8621eSTero Kristo __func__); 47261c8621eSTero Kristo return; 47361c8621eSTero Kristo } 47461c8621eSTero Kristo 47561c8621eSTero Kristo prm_ll_data->reset_system(); 47661c8621eSTero Kristo 4775388a5b8SRussell King while (1) { 47861c8621eSTero Kristo cpu_relax(); 4795388a5b8SRussell King wfe(); 4805388a5b8SRussell King } 48161c8621eSTero Kristo } 48261c8621eSTero Kristo 48361c8621eSTero Kristo /** 4849cb6d363STero Kristo * omap_prm_clear_mod_irqs - clear wake-up events from PRCM interrupt 4859cb6d363STero Kristo * @module: PRM module to clear wakeups from 4869cb6d363STero Kristo * @regs: register to clear 4879cb6d363STero Kristo * @wkst_mask: wkst bits to clear 4889cb6d363STero Kristo * 4899cb6d363STero Kristo * Clears any wakeup events for the module and register set defined. 4909cb6d363STero Kristo * Uses SoC specific implementation to do the actual wakeup status 4919cb6d363STero Kristo * clearing. 4929cb6d363STero Kristo */ 4939cb6d363STero Kristo int omap_prm_clear_mod_irqs(s16 module, u8 regs, u32 wkst_mask) 4949cb6d363STero Kristo { 4959cb6d363STero Kristo if (!prm_ll_data->clear_mod_irqs) { 4969cb6d363STero Kristo WARN_ONCE(1, "prm: %s: no mapping function defined\n", 4979cb6d363STero Kristo __func__); 4989cb6d363STero Kristo return -EINVAL; 4999cb6d363STero Kristo } 5009cb6d363STero Kristo 5019cb6d363STero Kristo return prm_ll_data->clear_mod_irqs(module, regs, wkst_mask); 5029cb6d363STero Kristo } 5039cb6d363STero Kristo 5049cb6d363STero Kristo /** 505e9f1ddcdSTero Kristo * omap_prm_vp_check_txdone - check voltage processor TX done status 506f9dbbac9SRandy Dunlap * @vp_id: unique VP instance ID 507e9f1ddcdSTero Kristo * 508e9f1ddcdSTero Kristo * Checks if voltage processor transmission has been completed. 509e9f1ddcdSTero Kristo * Returns non-zero if a transmission has completed, 0 otherwise. 510e9f1ddcdSTero Kristo */ 511e9f1ddcdSTero Kristo u32 omap_prm_vp_check_txdone(u8 vp_id) 512e9f1ddcdSTero Kristo { 513e9f1ddcdSTero Kristo if (!prm_ll_data->vp_check_txdone) { 514e9f1ddcdSTero Kristo WARN_ONCE(1, "prm: %s: no mapping function defined\n", 515e9f1ddcdSTero Kristo __func__); 516e9f1ddcdSTero Kristo return 0; 517e9f1ddcdSTero Kristo } 518e9f1ddcdSTero Kristo 519e9f1ddcdSTero Kristo return prm_ll_data->vp_check_txdone(vp_id); 520e9f1ddcdSTero Kristo } 521e9f1ddcdSTero Kristo 522e9f1ddcdSTero Kristo /** 523e9f1ddcdSTero Kristo * omap_prm_vp_clear_txdone - clears voltage processor TX done status 524f9dbbac9SRandy Dunlap * @vp_id: unique VP instance ID 525e9f1ddcdSTero Kristo * 526e9f1ddcdSTero Kristo * Clears the status bit for completed voltage processor transmission 527e9f1ddcdSTero Kristo * returned by prm_vp_check_txdone. 528e9f1ddcdSTero Kristo */ 529e9f1ddcdSTero Kristo void omap_prm_vp_clear_txdone(u8 vp_id) 530e9f1ddcdSTero Kristo { 531e9f1ddcdSTero Kristo if (!prm_ll_data->vp_clear_txdone) { 532e9f1ddcdSTero Kristo WARN_ONCE(1, "prm: %s: no mapping function defined\n", 533e9f1ddcdSTero Kristo __func__); 534e9f1ddcdSTero Kristo return; 535e9f1ddcdSTero Kristo } 536e9f1ddcdSTero Kristo 537e9f1ddcdSTero Kristo prm_ll_data->vp_clear_txdone(vp_id); 538e9f1ddcdSTero Kristo } 539e9f1ddcdSTero Kristo 540e9f1ddcdSTero Kristo /** 541e24c3573SPaul Walmsley * prm_register - register per-SoC low-level data with the PRM 542e24c3573SPaul Walmsley * @pld: low-level per-SoC OMAP PRM data & function pointers to register 543e24c3573SPaul Walmsley * 544e24c3573SPaul Walmsley * Register per-SoC low-level OMAP PRM data and function pointers with 545e24c3573SPaul Walmsley * the OMAP PRM common interface. The caller must keep the data 546e24c3573SPaul Walmsley * pointed to by @pld valid until it calls prm_unregister() and 547e24c3573SPaul Walmsley * it returns successfully. Returns 0 upon success, -EINVAL if @pld 548e24c3573SPaul Walmsley * is NULL, or -EEXIST if prm_register() has already been called 549e24c3573SPaul Walmsley * without an intervening prm_unregister(). 550e24c3573SPaul Walmsley */ 551e24c3573SPaul Walmsley int prm_register(struct prm_ll_data *pld) 552e24c3573SPaul Walmsley { 553e24c3573SPaul Walmsley if (!pld) 554e24c3573SPaul Walmsley return -EINVAL; 555e24c3573SPaul Walmsley 556e24c3573SPaul Walmsley if (prm_ll_data != &null_prm_ll_data) 557e24c3573SPaul Walmsley return -EEXIST; 558e24c3573SPaul Walmsley 559e24c3573SPaul Walmsley prm_ll_data = pld; 560e24c3573SPaul Walmsley 5613f4990f4SR Sricharan return 0; 5623f4990f4SR Sricharan } 5633f4990f4SR Sricharan 564e24c3573SPaul Walmsley /** 565e24c3573SPaul Walmsley * prm_unregister - unregister per-SoC low-level data & function pointers 566e24c3573SPaul Walmsley * @pld: low-level per-SoC OMAP PRM data & function pointers to unregister 567e24c3573SPaul Walmsley * 568e24c3573SPaul Walmsley * Unregister per-SoC low-level OMAP PRM data and function pointers 569e24c3573SPaul Walmsley * that were previously registered with prm_register(). The 570e24c3573SPaul Walmsley * caller may not destroy any of the data pointed to by @pld until 571e24c3573SPaul Walmsley * this function returns successfully. Returns 0 upon success, or 572e24c3573SPaul Walmsley * -EINVAL if @pld is NULL or if @pld does not match the struct 573e24c3573SPaul Walmsley * prm_ll_data * previously registered by prm_register(). 574e24c3573SPaul Walmsley */ 575e24c3573SPaul Walmsley int prm_unregister(struct prm_ll_data *pld) 5763f4990f4SR Sricharan { 577e24c3573SPaul Walmsley if (!pld || prm_ll_data != pld) 578e24c3573SPaul Walmsley return -EINVAL; 5793f4990f4SR Sricharan 580e24c3573SPaul Walmsley prm_ll_data = &null_prm_ll_data; 581e24c3573SPaul Walmsley 5823f4990f4SR Sricharan return 0; 5833f4990f4SR Sricharan } 584943a63a4STero Kristo 585ab7b2ffcSTero Kristo #ifdef CONFIG_ARCH_OMAP2 586ab7b2ffcSTero Kristo static struct omap_prcm_init_data omap2_prm_data __initdata = { 5873a3e1c88STero Kristo .index = TI_CLKM_PRM, 588ab7b2ffcSTero Kristo .init = omap2xxx_prm_init, 5893a3e1c88STero Kristo }; 590ab7b2ffcSTero Kristo #endif 5913a3e1c88STero Kristo 592ab7b2ffcSTero Kristo #ifdef CONFIG_ARCH_OMAP3 593ab7b2ffcSTero Kristo static struct omap_prcm_init_data omap3_prm_data __initdata = { 594ae521d4dSTero Kristo .index = TI_CLKM_PRM, 595ab7b2ffcSTero Kristo .init = omap3xxx_prm_init, 596ae521d4dSTero Kristo 597ae521d4dSTero Kristo /* 598ae521d4dSTero Kristo * IVA2 offset is a negative value, must offset the prm_base 599ae521d4dSTero Kristo * address by this to get it to positive 600ae521d4dSTero Kristo */ 601ae521d4dSTero Kristo .offset = -OMAP3430_IVA2_MOD, 602ae521d4dSTero Kristo }; 603ab7b2ffcSTero Kristo #endif 604ae521d4dSTero Kristo 605ab7b2ffcSTero Kristo #if defined(CONFIG_SOC_AM33XX) || defined(CONFIG_SOC_TI81XX) 606ab7b2ffcSTero Kristo static struct omap_prcm_init_data am3_prm_data __initdata = { 607ab7b2ffcSTero Kristo .index = TI_CLKM_PRM, 608ab7b2ffcSTero Kristo .init = am33xx_prm_init, 609ab7b2ffcSTero Kristo }; 610dbb7e70aSTony Lindgren #endif 6114e34df0cSTony Lindgren 612dbb7e70aSTony Lindgren #ifdef CONFIG_SOC_TI81XX 6134e34df0cSTony Lindgren static struct omap_prcm_init_data dm814_pllss_data __initdata = { 6144e34df0cSTony Lindgren .index = TI_CLKM_PLLSS, 6154e34df0cSTony Lindgren .init = am33xx_prm_init, 6164e34df0cSTony Lindgren }; 617ab7b2ffcSTero Kristo #endif 618ab7b2ffcSTero Kristo 61948e0c114STero Kristo #ifdef CONFIG_ARCH_OMAP4 620ab7b2ffcSTero Kristo static struct omap_prcm_init_data omap4_prm_data __initdata = { 621ab7b2ffcSTero Kristo .index = TI_CLKM_PRM, 622ab7b2ffcSTero Kristo .init = omap44xx_prm_init, 62348e0c114STero Kristo .device_inst_offset = OMAP4430_PRM_DEVICE_INST, 6243da52167STony Lindgren .flags = PRM_HAS_IO_WAKEUP | PRM_HAS_VOLTAGE, 62548e0c114STero Kristo }; 62648e0c114STero Kristo #endif 62748e0c114STero Kristo 62848e0c114STero Kristo #ifdef CONFIG_SOC_OMAP5 62948e0c114STero Kristo static struct omap_prcm_init_data omap5_prm_data __initdata = { 63048e0c114STero Kristo .index = TI_CLKM_PRM, 63148e0c114STero Kristo .init = omap44xx_prm_init, 63248e0c114STero Kristo .device_inst_offset = OMAP54XX_PRM_DEVICE_INST, 6338b5b9a22STero Kristo .flags = PRM_HAS_IO_WAKEUP | PRM_HAS_VOLTAGE, 63448e0c114STero Kristo }; 63548e0c114STero Kristo #endif 63648e0c114STero Kristo 63748e0c114STero Kristo #ifdef CONFIG_SOC_DRA7XX 63848e0c114STero Kristo static struct omap_prcm_init_data dra7_prm_data __initdata = { 63948e0c114STero Kristo .index = TI_CLKM_PRM, 64048e0c114STero Kristo .init = omap44xx_prm_init, 64148e0c114STero Kristo .device_inst_offset = DRA7XX_PRM_DEVICE_INST, 6428b5b9a22STero Kristo .flags = PRM_HAS_IO_WAKEUP, 64348e0c114STero Kristo }; 64448e0c114STero Kristo #endif 64548e0c114STero Kristo 64648e0c114STero Kristo #ifdef CONFIG_SOC_AM43XX 64748e0c114STero Kristo static struct omap_prcm_init_data am4_prm_data __initdata = { 64848e0c114STero Kristo .index = TI_CLKM_PRM, 64948e0c114STero Kristo .init = omap44xx_prm_init, 65048e0c114STero Kristo .device_inst_offset = AM43XX_PRM_DEVICE_INST, 6518740a144SKeerthy .flags = PRM_HAS_IO_WAKEUP, 652ab7b2ffcSTero Kristo }; 653ab7b2ffcSTero Kristo #endif 654ab7b2ffcSTero Kristo 655ab7b2ffcSTero Kristo #if defined(CONFIG_ARCH_OMAP4) || defined(CONFIG_SOC_OMAP5) 656ab7b2ffcSTero Kristo static struct omap_prcm_init_data scrm_data __initdata = { 6573a3e1c88STero Kristo .index = TI_CLKM_SCRM, 6583a3e1c88STero Kristo }; 659ab7b2ffcSTero Kristo #endif 6603a3e1c88STero Kristo 6610527873bSArnd Bergmann static const struct of_device_id omap_prcm_dt_match_table[] __initconst = { 662ab7b2ffcSTero Kristo #ifdef CONFIG_SOC_AM33XX 663ab7b2ffcSTero Kristo { .compatible = "ti,am3-prcm", .data = &am3_prm_data }, 664ab7b2ffcSTero Kristo #endif 665ab7b2ffcSTero Kristo #ifdef CONFIG_SOC_AM43XX 66648e0c114STero Kristo { .compatible = "ti,am4-prcm", .data = &am4_prm_data }, 667ab7b2ffcSTero Kristo #endif 668ab7b2ffcSTero Kristo #ifdef CONFIG_SOC_TI81XX 669ab7b2ffcSTero Kristo { .compatible = "ti,dm814-prcm", .data = &am3_prm_data }, 6704e34df0cSTony Lindgren { .compatible = "ti,dm814-pllss", .data = &dm814_pllss_data }, 671ab7b2ffcSTero Kristo { .compatible = "ti,dm816-prcm", .data = &am3_prm_data }, 672ab7b2ffcSTero Kristo #endif 673ab7b2ffcSTero Kristo #ifdef CONFIG_ARCH_OMAP2 674ab7b2ffcSTero Kristo { .compatible = "ti,omap2-prcm", .data = &omap2_prm_data }, 675ab7b2ffcSTero Kristo #endif 676ab7b2ffcSTero Kristo #ifdef CONFIG_ARCH_OMAP3 677ae521d4dSTero Kristo { .compatible = "ti,omap3-prm", .data = &omap3_prm_data }, 678ab7b2ffcSTero Kristo #endif 679ab7b2ffcSTero Kristo #ifdef CONFIG_ARCH_OMAP4 680ab7b2ffcSTero Kristo { .compatible = "ti,omap4-prm", .data = &omap4_prm_data }, 6813a3e1c88STero Kristo { .compatible = "ti,omap4-scrm", .data = &scrm_data }, 682ab7b2ffcSTero Kristo #endif 683ab7b2ffcSTero Kristo #ifdef CONFIG_SOC_OMAP5 68448e0c114STero Kristo { .compatible = "ti,omap5-prm", .data = &omap5_prm_data }, 6853a3e1c88STero Kristo { .compatible = "ti,omap5-scrm", .data = &scrm_data }, 686ab7b2ffcSTero Kristo #endif 687ab7b2ffcSTero Kristo #ifdef CONFIG_SOC_DRA7XX 68848e0c114STero Kristo { .compatible = "ti,dra7-prm", .data = &dra7_prm_data }, 689ab7b2ffcSTero Kristo #endif 690943a63a4STero Kristo { } 691943a63a4STero Kristo }; 692943a63a4STero Kristo 6933a1a388eSTero Kristo /** 694ae521d4dSTero Kristo * omap2_prm_base_init - initialize iomappings for the PRM driver 695ae521d4dSTero Kristo * 696ae521d4dSTero Kristo * Detects and initializes the iomappings for the PRM driver, based 697ae521d4dSTero Kristo * on the DT data. Returns 0 in success, negative error value 698ae521d4dSTero Kristo * otherwise. 699ae521d4dSTero Kristo */ 7006aeb51c1SArnd Bergmann static int __init omap2_prm_base_init(void) 701ae521d4dSTero Kristo { 702ae521d4dSTero Kristo struct device_node *np; 703ae521d4dSTero Kristo const struct of_device_id *match; 704ae521d4dSTero Kristo struct omap_prcm_init_data *data; 70590129336STero Kristo struct resource res; 70690129336STero Kristo int ret; 707ae521d4dSTero Kristo 708ae521d4dSTero Kristo for_each_matching_node_and_match(np, omap_prcm_dt_match_table, &match) { 709ae521d4dSTero Kristo data = (struct omap_prcm_init_data *)match->data; 710ae521d4dSTero Kristo 71190129336STero Kristo ret = of_address_to_resource(np, 0, &res); 712883f464cSWang Qing if (ret) { 713883f464cSWang Qing of_node_put(np); 71490129336STero Kristo return ret; 715883f464cSWang Qing } 716ae521d4dSTero Kristo 71790129336STero Kristo data->mem = ioremap(res.start, resource_size(&res)); 718ae521d4dSTero Kristo 71990129336STero Kristo if (data->index == TI_CLKM_PRM) { 72090129336STero Kristo prm_base.va = data->mem + data->offset; 72190129336STero Kristo prm_base.pa = res.start + data->offset; 72290129336STero Kristo } 723ab7b2ffcSTero Kristo 724ab7b2ffcSTero Kristo data->np = np; 725ab7b2ffcSTero Kristo 726ab7b2ffcSTero Kristo if (data->init) 727ab7b2ffcSTero Kristo data->init(data); 728ae521d4dSTero Kristo } 729ae521d4dSTero Kristo 730ae521d4dSTero Kristo return 0; 731ae521d4dSTero Kristo } 732ae521d4dSTero Kristo 733ab7b2ffcSTero Kristo int __init omap2_prcm_base_init(void) 734ab7b2ffcSTero Kristo { 735425dc8b2STero Kristo int ret; 736425dc8b2STero Kristo 737425dc8b2STero Kristo ret = omap2_prm_base_init(); 738425dc8b2STero Kristo if (ret) 739425dc8b2STero Kristo return ret; 740425dc8b2STero Kristo 741425dc8b2STero Kristo return omap2_cm_base_init(); 742ab7b2ffcSTero Kristo } 743ab7b2ffcSTero Kristo 744ae521d4dSTero Kristo /** 7453a1a388eSTero Kristo * omap_prcm_init - low level init for the PRCM drivers 7463a1a388eSTero Kristo * 7473a1a388eSTero Kristo * Initializes the low level clock infrastructure for PRCM drivers. 7483a1a388eSTero Kristo * Returns 0 in success, negative error value in failure. 7493a1a388eSTero Kristo */ 7503a1a388eSTero Kristo int __init omap_prcm_init(void) 751943a63a4STero Kristo { 752943a63a4STero Kristo struct device_node *np; 7533a3e1c88STero Kristo const struct of_device_id *match; 7543a3e1c88STero Kristo const struct omap_prcm_init_data *data; 7559f029b15STero Kristo int ret; 756943a63a4STero Kristo 7573a3e1c88STero Kristo for_each_matching_node_and_match(np, omap_prcm_dt_match_table, &match) { 7583a3e1c88STero Kristo data = match->data; 7593a3e1c88STero Kristo 76080cbb224STero Kristo ret = omap2_clk_provider_init(np, data->index, NULL, data->mem); 761883f464cSWang Qing if (ret) { 762883f464cSWang Qing of_node_put(np); 7639f029b15STero Kristo return ret; 764943a63a4STero Kristo } 765883f464cSWang Qing } 766943a63a4STero Kristo 767fe87414fSTero Kristo omap_cm_init(); 768fe87414fSTero Kristo 769943a63a4STero Kristo return 0; 770943a63a4STero Kristo } 771b550e47fSTero Kristo 772b550e47fSTero Kristo static int __init prm_late_init(void) 773b550e47fSTero Kristo { 774b550e47fSTero Kristo if (prm_ll_data->late_init) 775b550e47fSTero Kristo return prm_ll_data->late_init(); 776b550e47fSTero Kristo return 0; 777b550e47fSTero Kristo } 778b550e47fSTero Kristo subsys_initcall(prm_late_init); 779