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v6.8
   1// SPDX-License-Identifier: GPL-2.0-only
   2/*
   3 * GPIO driver for Marvell SoCs
   4 *
   5 * Copyright (C) 2012 Marvell
   6 *
   7 * Thomas Petazzoni <thomas.petazzoni@free-electrons.com>
   8 * Andrew Lunn <andrew@lunn.ch>
   9 * Sebastian Hesselbarth <sebastian.hesselbarth@gmail.com>
  10 *
 
 
 
 
  11 * This driver is a fairly straightforward GPIO driver for the
  12 * complete family of Marvell EBU SoC platforms (Orion, Dove,
  13 * Kirkwood, Discovery, Armada 370/XP). The only complexity of this
  14 * driver is the different register layout that exists between the
  15 * non-SMP platforms (Orion, Dove, Kirkwood, Armada 370) and the SMP
  16 * platforms (MV78200 from the Discovery family and the Armada
  17 * XP). Therefore, this driver handles three variants of the GPIO
  18 * block:
  19 * - the basic variant, called "orion-gpio", with the simplest
  20 *   register set. Used on Orion, Dove, Kirkwoord, Armada 370 and
  21 *   non-SMP Discovery systems
  22 * - the mv78200 variant for MV78200 Discovery systems. This variant
  23 *   turns the edge mask and level mask registers into CPU0 edge
  24 *   mask/level mask registers, and adds CPU1 edge mask/level mask
  25 *   registers.
  26 * - the armadaxp variant for Armada XP systems. This variant keeps
  27 *   the normal cause/edge mask/level mask registers when the global
  28 *   interrupts are used, but adds per-CPU cause/edge mask/level mask
  29 *   registers n a separate memory area for the per-CPU GPIO
  30 *   interrupts.
  31 */
  32
  33#include <linux/bitops.h>
  34#include <linux/clk.h>
  35#include <linux/err.h>
  36#include <linux/gpio/driver.h>
  37#include <linux/gpio/consumer.h>
  38#include <linux/gpio/machine.h>
  39#include <linux/init.h>
  40#include <linux/io.h>
  41#include <linux/irq.h>
  42#include <linux/irqchip/chained_irq.h>
  43#include <linux/irqdomain.h>
  44#include <linux/mfd/syscon.h>
  45#include <linux/of.h>
 
  46#include <linux/pinctrl/consumer.h>
  47#include <linux/platform_device.h>
  48#include <linux/property.h>
  49#include <linux/pwm.h>
  50#include <linux/regmap.h>
  51#include <linux/slab.h>
  52
  53/*
  54 * GPIO unit register offsets.
  55 */
  56#define GPIO_OUT_OFF			0x0000
  57#define GPIO_IO_CONF_OFF		0x0004
  58#define GPIO_BLINK_EN_OFF		0x0008
  59#define GPIO_IN_POL_OFF			0x000c
  60#define GPIO_DATA_IN_OFF		0x0010
  61#define GPIO_EDGE_CAUSE_OFF		0x0014
  62#define GPIO_EDGE_MASK_OFF		0x0018
  63#define GPIO_LEVEL_MASK_OFF		0x001c
  64#define GPIO_BLINK_CNT_SELECT_OFF	0x0020
  65
  66/*
  67 * PWM register offsets.
  68 */
  69#define PWM_BLINK_ON_DURATION_OFF	0x0
  70#define PWM_BLINK_OFF_DURATION_OFF	0x4
  71#define PWM_BLINK_COUNTER_B_OFF		0x8
  72
  73/* Armada 8k variant gpios register offsets */
  74#define AP80X_GPIO0_OFF_A8K		0x1040
  75#define CP11X_GPIO0_OFF_A8K		0x100
  76#define CP11X_GPIO1_OFF_A8K		0x140
  77
  78/* The MV78200 has per-CPU registers for edge mask and level mask */
  79#define GPIO_EDGE_MASK_MV78200_OFF(cpu)	  ((cpu) ? 0x30 : 0x18)
  80#define GPIO_LEVEL_MASK_MV78200_OFF(cpu)  ((cpu) ? 0x34 : 0x1C)
  81
  82/*
  83 * The Armada XP has per-CPU registers for interrupt cause, interrupt
  84 * mask and interrupt level mask. Those are in percpu_regs range.
 
  85 */
  86#define GPIO_EDGE_CAUSE_ARMADAXP_OFF(cpu) ((cpu) * 0x4)
  87#define GPIO_EDGE_MASK_ARMADAXP_OFF(cpu)  (0x10 + (cpu) * 0x4)
  88#define GPIO_LEVEL_MASK_ARMADAXP_OFF(cpu) (0x20 + (cpu) * 0x4)
  89
  90#define MVEBU_GPIO_SOC_VARIANT_ORION	0x1
  91#define MVEBU_GPIO_SOC_VARIANT_MV78200	0x2
  92#define MVEBU_GPIO_SOC_VARIANT_ARMADAXP 0x3
  93#define MVEBU_GPIO_SOC_VARIANT_A8K	0x4
  94
  95#define MVEBU_MAX_GPIO_PER_BANK		32
  96
  97struct mvebu_pwm {
  98	struct regmap		*regs;
  99	u32			 offset;
 100	unsigned long		 clk_rate;
 101	struct gpio_desc	*gpiod;
 102	struct pwm_chip		 chip;
 103	spinlock_t		 lock;
 104	struct mvebu_gpio_chip	*mvchip;
 105
 106	/* Used to preserve GPIO/PWM registers across suspend/resume */
 107	u32			 blink_select;
 108	u32			 blink_on_duration;
 109	u32			 blink_off_duration;
 110};
 111
 112struct mvebu_gpio_chip {
 113	struct gpio_chip   chip;
 114	struct regmap     *regs;
 115	u32		   offset;
 116	struct regmap     *percpu_regs;
 117	int		   irqbase;
 118	struct irq_domain *domain;
 119	int		   soc_variant;
 120
 121	/* Used for PWM support */
 122	struct clk	  *clk;
 123	struct mvebu_pwm  *mvpwm;
 124
 125	/* Used to preserve GPIO registers across suspend/resume */
 126	u32		   out_reg;
 127	u32		   io_conf_reg;
 128	u32		   blink_en_reg;
 129	u32		   in_pol_reg;
 130	u32		   edge_mask_regs[4];
 131	u32		   level_mask_regs[4];
 132};
 133
 134/*
 135 * Functions returning addresses of individual registers for a given
 136 * GPIO controller.
 137 */
 138
 139static void mvebu_gpioreg_edge_cause(struct mvebu_gpio_chip *mvchip,
 140			 struct regmap **map, unsigned int *offset)
 141{
 142	int cpu;
 143
 144	switch (mvchip->soc_variant) {
 145	case MVEBU_GPIO_SOC_VARIANT_ORION:
 146	case MVEBU_GPIO_SOC_VARIANT_MV78200:
 147	case MVEBU_GPIO_SOC_VARIANT_A8K:
 148		*map = mvchip->regs;
 149		*offset = GPIO_EDGE_CAUSE_OFF + mvchip->offset;
 150		break;
 151	case MVEBU_GPIO_SOC_VARIANT_ARMADAXP:
 152		cpu = smp_processor_id();
 153		*map = mvchip->percpu_regs;
 154		*offset = GPIO_EDGE_CAUSE_ARMADAXP_OFF(cpu);
 155		break;
 156	default:
 157		BUG();
 158	}
 159}
 160
 161static u32
 162mvebu_gpio_read_edge_cause(struct mvebu_gpio_chip *mvchip)
 163{
 164	struct regmap *map;
 165	unsigned int offset;
 166	u32 val;
 167
 168	mvebu_gpioreg_edge_cause(mvchip, &map, &offset);
 169	regmap_read(map, offset, &val);
 170
 171	return val;
 172}
 173
 174static void
 175mvebu_gpio_write_edge_cause(struct mvebu_gpio_chip *mvchip, u32 val)
 176{
 177	struct regmap *map;
 178	unsigned int offset;
 179
 180	mvebu_gpioreg_edge_cause(mvchip, &map, &offset);
 181	regmap_write(map, offset, val);
 182}
 183
 184static inline void
 185mvebu_gpioreg_edge_mask(struct mvebu_gpio_chip *mvchip,
 186			struct regmap **map, unsigned int *offset)
 187{
 188	int cpu;
 189
 190	switch (mvchip->soc_variant) {
 191	case MVEBU_GPIO_SOC_VARIANT_ORION:
 192	case MVEBU_GPIO_SOC_VARIANT_A8K:
 193		*map = mvchip->regs;
 194		*offset = GPIO_EDGE_MASK_OFF + mvchip->offset;
 195		break;
 196	case MVEBU_GPIO_SOC_VARIANT_MV78200:
 197		cpu = smp_processor_id();
 198		*map = mvchip->regs;
 199		*offset = GPIO_EDGE_MASK_MV78200_OFF(cpu);
 200		break;
 201	case MVEBU_GPIO_SOC_VARIANT_ARMADAXP:
 202		cpu = smp_processor_id();
 203		*map = mvchip->percpu_regs;
 204		*offset = GPIO_EDGE_MASK_ARMADAXP_OFF(cpu);
 205		break;
 206	default:
 207		BUG();
 208	}
 209}
 210
 211static u32
 212mvebu_gpio_read_edge_mask(struct mvebu_gpio_chip *mvchip)
 213{
 214	struct regmap *map;
 215	unsigned int offset;
 216	u32 val;
 217
 218	mvebu_gpioreg_edge_mask(mvchip, &map, &offset);
 219	regmap_read(map, offset, &val);
 220
 221	return val;
 222}
 223
 224static void
 225mvebu_gpio_write_edge_mask(struct mvebu_gpio_chip *mvchip, u32 val)
 226{
 227	struct regmap *map;
 228	unsigned int offset;
 229
 230	mvebu_gpioreg_edge_mask(mvchip, &map, &offset);
 231	regmap_write(map, offset, val);
 232}
 233
 234static void
 235mvebu_gpioreg_level_mask(struct mvebu_gpio_chip *mvchip,
 236			 struct regmap **map, unsigned int *offset)
 237{
 238	int cpu;
 239
 240	switch (mvchip->soc_variant) {
 241	case MVEBU_GPIO_SOC_VARIANT_ORION:
 242	case MVEBU_GPIO_SOC_VARIANT_A8K:
 243		*map = mvchip->regs;
 244		*offset = GPIO_LEVEL_MASK_OFF + mvchip->offset;
 245		break;
 246	case MVEBU_GPIO_SOC_VARIANT_MV78200:
 247		cpu = smp_processor_id();
 248		*map = mvchip->regs;
 249		*offset = GPIO_LEVEL_MASK_MV78200_OFF(cpu);
 250		break;
 251	case MVEBU_GPIO_SOC_VARIANT_ARMADAXP:
 252		cpu = smp_processor_id();
 253		*map = mvchip->percpu_regs;
 254		*offset = GPIO_LEVEL_MASK_ARMADAXP_OFF(cpu);
 255		break;
 256	default:
 257		BUG();
 258	}
 259}
 260
 261static u32
 262mvebu_gpio_read_level_mask(struct mvebu_gpio_chip *mvchip)
 263{
 264	struct regmap *map;
 265	unsigned int offset;
 266	u32 val;
 267
 268	mvebu_gpioreg_level_mask(mvchip, &map, &offset);
 269	regmap_read(map, offset, &val);
 270
 271	return val;
 272}
 273
 274static void
 275mvebu_gpio_write_level_mask(struct mvebu_gpio_chip *mvchip, u32 val)
 276{
 277	struct regmap *map;
 278	unsigned int offset;
 279
 280	mvebu_gpioreg_level_mask(mvchip, &map, &offset);
 281	regmap_write(map, offset, val);
 282}
 283
 284/*
 285 * Functions returning offsets of individual registers for a given
 286 * PWM controller.
 287 */
 288static unsigned int mvebu_pwmreg_blink_on_duration(struct mvebu_pwm *mvpwm)
 289{
 290	return mvpwm->offset + PWM_BLINK_ON_DURATION_OFF;
 291}
 292
 293static unsigned int mvebu_pwmreg_blink_off_duration(struct mvebu_pwm *mvpwm)
 294{
 295	return mvpwm->offset + PWM_BLINK_OFF_DURATION_OFF;
 296}
 297
 298/*
 299 * Functions implementing the gpio_chip methods
 300 */
 301static void mvebu_gpio_set(struct gpio_chip *chip, unsigned int pin, int value)
 302{
 303	struct mvebu_gpio_chip *mvchip = gpiochip_get_data(chip);
 304
 305	regmap_update_bits(mvchip->regs, GPIO_OUT_OFF + mvchip->offset,
 306			   BIT(pin), value ? BIT(pin) : 0);
 307}
 308
 309static int mvebu_gpio_get(struct gpio_chip *chip, unsigned int pin)
 310{
 311	struct mvebu_gpio_chip *mvchip = gpiochip_get_data(chip);
 312	u32 u;
 313
 314	regmap_read(mvchip->regs, GPIO_IO_CONF_OFF + mvchip->offset, &u);
 315
 316	if (u & BIT(pin)) {
 317		u32 data_in, in_pol;
 318
 319		regmap_read(mvchip->regs, GPIO_DATA_IN_OFF + mvchip->offset,
 320			    &data_in);
 321		regmap_read(mvchip->regs, GPIO_IN_POL_OFF + mvchip->offset,
 322			    &in_pol);
 323		u = data_in ^ in_pol;
 324	} else {
 325		regmap_read(mvchip->regs, GPIO_OUT_OFF + mvchip->offset, &u);
 326	}
 327
 328	return (u >> pin) & 1;
 329}
 330
 331static void mvebu_gpio_blink(struct gpio_chip *chip, unsigned int pin,
 332			     int value)
 333{
 334	struct mvebu_gpio_chip *mvchip = gpiochip_get_data(chip);
 335
 336	regmap_update_bits(mvchip->regs, GPIO_BLINK_EN_OFF + mvchip->offset,
 337			   BIT(pin), value ? BIT(pin) : 0);
 338}
 339
 340static int mvebu_gpio_direction_input(struct gpio_chip *chip, unsigned int pin)
 341{
 342	struct mvebu_gpio_chip *mvchip = gpiochip_get_data(chip);
 343	int ret;
 344
 345	/*
 346	 * Check with the pinctrl driver whether this pin is usable as
 347	 * an input GPIO
 348	 */
 349	ret = pinctrl_gpio_direction_input(chip, pin);
 350	if (ret)
 351		return ret;
 352
 353	regmap_update_bits(mvchip->regs, GPIO_IO_CONF_OFF + mvchip->offset,
 354			   BIT(pin), BIT(pin));
 355
 356	return 0;
 357}
 358
 359static int mvebu_gpio_direction_output(struct gpio_chip *chip, unsigned int pin,
 360				       int value)
 361{
 362	struct mvebu_gpio_chip *mvchip = gpiochip_get_data(chip);
 363	int ret;
 364
 365	/*
 366	 * Check with the pinctrl driver whether this pin is usable as
 367	 * an output GPIO
 368	 */
 369	ret = pinctrl_gpio_direction_output(chip, pin);
 370	if (ret)
 371		return ret;
 372
 373	mvebu_gpio_blink(chip, pin, 0);
 374	mvebu_gpio_set(chip, pin, value);
 375
 376	regmap_update_bits(mvchip->regs, GPIO_IO_CONF_OFF + mvchip->offset,
 377			   BIT(pin), 0);
 378
 379	return 0;
 380}
 381
 382static int mvebu_gpio_get_direction(struct gpio_chip *chip, unsigned int pin)
 383{
 384	struct mvebu_gpio_chip *mvchip = gpiochip_get_data(chip);
 385	u32 u;
 386
 387	regmap_read(mvchip->regs, GPIO_IO_CONF_OFF + mvchip->offset, &u);
 388
 389	if (u & BIT(pin))
 390		return GPIO_LINE_DIRECTION_IN;
 391
 392	return GPIO_LINE_DIRECTION_OUT;
 393}
 394
 395static int mvebu_gpio_to_irq(struct gpio_chip *chip, unsigned int pin)
 396{
 397	struct mvebu_gpio_chip *mvchip = gpiochip_get_data(chip);
 398
 399	return irq_create_mapping(mvchip->domain, pin);
 400}
 401
 402/*
 403 * Functions implementing the irq_chip methods
 404 */
 405static void mvebu_gpio_irq_ack(struct irq_data *d)
 406{
 407	struct irq_chip_generic *gc = irq_data_get_irq_chip_data(d);
 408	struct mvebu_gpio_chip *mvchip = gc->private;
 409	u32 mask = d->mask;
 410
 411	irq_gc_lock(gc);
 412	mvebu_gpio_write_edge_cause(mvchip, ~mask);
 413	irq_gc_unlock(gc);
 414}
 415
 416static void mvebu_gpio_edge_irq_mask(struct irq_data *d)
 417{
 418	struct irq_chip_generic *gc = irq_data_get_irq_chip_data(d);
 419	struct mvebu_gpio_chip *mvchip = gc->private;
 420	struct irq_chip_type *ct = irq_data_get_chip_type(d);
 421	u32 mask = d->mask;
 422
 423	irq_gc_lock(gc);
 424	ct->mask_cache_priv &= ~mask;
 425	mvebu_gpio_write_edge_mask(mvchip, ct->mask_cache_priv);
 426	irq_gc_unlock(gc);
 427}
 428
 429static void mvebu_gpio_edge_irq_unmask(struct irq_data *d)
 430{
 431	struct irq_chip_generic *gc = irq_data_get_irq_chip_data(d);
 432	struct mvebu_gpio_chip *mvchip = gc->private;
 433	struct irq_chip_type *ct = irq_data_get_chip_type(d);
 434	u32 mask = d->mask;
 435
 436	irq_gc_lock(gc);
 437	mvebu_gpio_write_edge_cause(mvchip, ~mask);
 438	ct->mask_cache_priv |= mask;
 439	mvebu_gpio_write_edge_mask(mvchip, ct->mask_cache_priv);
 440	irq_gc_unlock(gc);
 441}
 442
 443static void mvebu_gpio_level_irq_mask(struct irq_data *d)
 444{
 445	struct irq_chip_generic *gc = irq_data_get_irq_chip_data(d);
 446	struct mvebu_gpio_chip *mvchip = gc->private;
 447	struct irq_chip_type *ct = irq_data_get_chip_type(d);
 448	u32 mask = d->mask;
 449
 450	irq_gc_lock(gc);
 451	ct->mask_cache_priv &= ~mask;
 452	mvebu_gpio_write_level_mask(mvchip, ct->mask_cache_priv);
 453	irq_gc_unlock(gc);
 454}
 455
 456static void mvebu_gpio_level_irq_unmask(struct irq_data *d)
 457{
 458	struct irq_chip_generic *gc = irq_data_get_irq_chip_data(d);
 459	struct mvebu_gpio_chip *mvchip = gc->private;
 460	struct irq_chip_type *ct = irq_data_get_chip_type(d);
 461	u32 mask = d->mask;
 462
 463	irq_gc_lock(gc);
 464	ct->mask_cache_priv |= mask;
 465	mvebu_gpio_write_level_mask(mvchip, ct->mask_cache_priv);
 466	irq_gc_unlock(gc);
 467}
 468
 469/*****************************************************************************
 470 * MVEBU GPIO IRQ
 471 *
 472 * GPIO_IN_POL register controls whether GPIO_DATA_IN will hold the same
 473 * value of the line or the opposite value.
 474 *
 475 * Level IRQ handlers: DATA_IN is used directly as cause register.
 476 *		       Interrupt are masked by LEVEL_MASK registers.
 477 * Edge IRQ handlers:  Change in DATA_IN are latched in EDGE_CAUSE.
 478 *		       Interrupt are masked by EDGE_MASK registers.
 479 * Both-edge handlers: Similar to regular Edge handlers, but also swaps
 480 *		       the polarity to catch the next line transaction.
 481 *		       This is a race condition that might not perfectly
 482 *		       work on some use cases.
 483 *
 484 * Every eight GPIO lines are grouped (OR'ed) before going up to main
 485 * cause register.
 486 *
 487 *		      EDGE  cause    mask
 488 *	  data-in   /--------| |-----| |----\
 489 *     -----| |-----			     ---- to main cause reg
 490 *	     X	    \----------------| |----/
 491 *	  polarity    LEVEL	     mask
 492 *
 493 ****************************************************************************/
 494
 495static int mvebu_gpio_irq_set_type(struct irq_data *d, unsigned int type)
 496{
 497	struct irq_chip_generic *gc = irq_data_get_irq_chip_data(d);
 498	struct irq_chip_type *ct = irq_data_get_chip_type(d);
 499	struct mvebu_gpio_chip *mvchip = gc->private;
 500	int pin;
 501	u32 u;
 502
 503	pin = d->hwirq;
 504
 505	regmap_read(mvchip->regs, GPIO_IO_CONF_OFF + mvchip->offset, &u);
 506	if ((u & BIT(pin)) == 0)
 507		return -EINVAL;
 508
 509	type &= IRQ_TYPE_SENSE_MASK;
 510	if (type == IRQ_TYPE_NONE)
 511		return -EINVAL;
 512
 513	/* Check if we need to change chip and handler */
 514	if (!(ct->type & type))
 515		if (irq_setup_alt_chip(d, type))
 516			return -EINVAL;
 517
 518	/*
 519	 * Configure interrupt polarity.
 520	 */
 521	switch (type) {
 522	case IRQ_TYPE_EDGE_RISING:
 523	case IRQ_TYPE_LEVEL_HIGH:
 524		regmap_update_bits(mvchip->regs,
 525				   GPIO_IN_POL_OFF + mvchip->offset,
 526				   BIT(pin), 0);
 527		break;
 528	case IRQ_TYPE_EDGE_FALLING:
 529	case IRQ_TYPE_LEVEL_LOW:
 530		regmap_update_bits(mvchip->regs,
 531				   GPIO_IN_POL_OFF + mvchip->offset,
 532				   BIT(pin), BIT(pin));
 533		break;
 534	case IRQ_TYPE_EDGE_BOTH: {
 535		u32 data_in, in_pol, val;
 536
 537		regmap_read(mvchip->regs,
 538			    GPIO_IN_POL_OFF + mvchip->offset, &in_pol);
 539		regmap_read(mvchip->regs,
 540			    GPIO_DATA_IN_OFF + mvchip->offset, &data_in);
 541
 542		/*
 543		 * set initial polarity based on current input level
 544		 */
 545		if ((data_in ^ in_pol) & BIT(pin))
 546			val = BIT(pin); /* falling */
 547		else
 548			val = 0; /* raising */
 549
 550		regmap_update_bits(mvchip->regs,
 551				   GPIO_IN_POL_OFF + mvchip->offset,
 552				   BIT(pin), val);
 553		break;
 554	}
 555	}
 556	return 0;
 557}
 558
 559static void mvebu_gpio_irq_handler(struct irq_desc *desc)
 560{
 561	struct mvebu_gpio_chip *mvchip = irq_desc_get_handler_data(desc);
 562	struct irq_chip *chip = irq_desc_get_chip(desc);
 563	u32 cause, type, data_in, level_mask, edge_cause, edge_mask;
 564	int i;
 565
 566	if (mvchip == NULL)
 567		return;
 568
 569	chained_irq_enter(chip, desc);
 570
 571	regmap_read(mvchip->regs, GPIO_DATA_IN_OFF + mvchip->offset, &data_in);
 572	level_mask = mvebu_gpio_read_level_mask(mvchip);
 573	edge_cause = mvebu_gpio_read_edge_cause(mvchip);
 574	edge_mask  = mvebu_gpio_read_edge_mask(mvchip);
 575
 576	cause = (data_in & level_mask) | (edge_cause & edge_mask);
 577
 578	for (i = 0; i < mvchip->chip.ngpio; i++) {
 579		int irq;
 580
 581		irq = irq_find_mapping(mvchip->domain, i);
 582
 583		if (!(cause & BIT(i)))
 584			continue;
 585
 586		type = irq_get_trigger_type(irq);
 587		if ((type & IRQ_TYPE_SENSE_MASK) == IRQ_TYPE_EDGE_BOTH) {
 588			/* Swap polarity (race with GPIO line) */
 589			u32 polarity;
 590
 591			regmap_read(mvchip->regs,
 592				    GPIO_IN_POL_OFF + mvchip->offset,
 593				    &polarity);
 594			polarity ^= BIT(i);
 595			regmap_write(mvchip->regs,
 596				     GPIO_IN_POL_OFF + mvchip->offset,
 597				     polarity);
 598		}
 599
 600		generic_handle_irq(irq);
 601	}
 602
 603	chained_irq_exit(chip, desc);
 604}
 605
 606static const struct regmap_config mvebu_gpio_regmap_config = {
 607	.reg_bits = 32,
 608	.reg_stride = 4,
 609	.val_bits = 32,
 610	.fast_io = true,
 611};
 612
 613/*
 614 * Functions implementing the pwm_chip methods
 615 */
 616static struct mvebu_pwm *to_mvebu_pwm(struct pwm_chip *chip)
 617{
 618	return container_of(chip, struct mvebu_pwm, chip);
 619}
 620
 621static int mvebu_pwm_request(struct pwm_chip *chip, struct pwm_device *pwm)
 622{
 623	struct mvebu_pwm *mvpwm = to_mvebu_pwm(chip);
 624	struct mvebu_gpio_chip *mvchip = mvpwm->mvchip;
 625	struct gpio_desc *desc;
 626	unsigned long flags;
 627	int ret = 0;
 628
 629	spin_lock_irqsave(&mvpwm->lock, flags);
 630
 631	if (mvpwm->gpiod) {
 632		ret = -EBUSY;
 633	} else {
 634		desc = gpiochip_request_own_desc(&mvchip->chip,
 635						 pwm->hwpwm, "mvebu-pwm",
 636						 GPIO_ACTIVE_HIGH,
 637						 GPIOD_OUT_LOW);
 638		if (IS_ERR(desc)) {
 639			ret = PTR_ERR(desc);
 640			goto out;
 641		}
 642
 643		mvpwm->gpiod = desc;
 644	}
 645out:
 646	spin_unlock_irqrestore(&mvpwm->lock, flags);
 647	return ret;
 648}
 649
 650static void mvebu_pwm_free(struct pwm_chip *chip, struct pwm_device *pwm)
 651{
 652	struct mvebu_pwm *mvpwm = to_mvebu_pwm(chip);
 653	unsigned long flags;
 654
 655	spin_lock_irqsave(&mvpwm->lock, flags);
 656	gpiochip_free_own_desc(mvpwm->gpiod);
 657	mvpwm->gpiod = NULL;
 658	spin_unlock_irqrestore(&mvpwm->lock, flags);
 659}
 660
 661static int mvebu_pwm_get_state(struct pwm_chip *chip,
 662			       struct pwm_device *pwm,
 663			       struct pwm_state *state)
 664{
 665
 666	struct mvebu_pwm *mvpwm = to_mvebu_pwm(chip);
 667	struct mvebu_gpio_chip *mvchip = mvpwm->mvchip;
 668	unsigned long long val;
 669	unsigned long flags;
 670	u32 u;
 671
 672	spin_lock_irqsave(&mvpwm->lock, flags);
 673
 674	regmap_read(mvpwm->regs, mvebu_pwmreg_blink_on_duration(mvpwm), &u);
 675	/* Hardware treats zero as 2^32. See mvebu_pwm_apply(). */
 676	if (u > 0)
 677		val = u;
 678	else
 679		val = UINT_MAX + 1ULL;
 680	state->duty_cycle = DIV_ROUND_UP_ULL(val * NSEC_PER_SEC,
 681			mvpwm->clk_rate);
 682
 683	regmap_read(mvpwm->regs, mvebu_pwmreg_blink_off_duration(mvpwm), &u);
 684	/* period = on + off duration */
 685	if (u > 0)
 686		val += u;
 687	else
 688		val += UINT_MAX + 1ULL;
 689	state->period = DIV_ROUND_UP_ULL(val * NSEC_PER_SEC, mvpwm->clk_rate);
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 690
 691	regmap_read(mvchip->regs, GPIO_BLINK_EN_OFF + mvchip->offset, &u);
 692	if (u)
 693		state->enabled = true;
 694	else
 695		state->enabled = false;
 696
 697	spin_unlock_irqrestore(&mvpwm->lock, flags);
 698
 699	return 0;
 700}
 701
 702static int mvebu_pwm_apply(struct pwm_chip *chip, struct pwm_device *pwm,
 703			   const struct pwm_state *state)
 704{
 705	struct mvebu_pwm *mvpwm = to_mvebu_pwm(chip);
 706	struct mvebu_gpio_chip *mvchip = mvpwm->mvchip;
 707	unsigned long long val;
 708	unsigned long flags;
 709	unsigned int on, off;
 710
 711	if (state->polarity != PWM_POLARITY_NORMAL)
 712		return -EINVAL;
 713
 714	val = (unsigned long long) mvpwm->clk_rate * state->duty_cycle;
 715	do_div(val, NSEC_PER_SEC);
 716	if (val > UINT_MAX + 1ULL)
 717		return -EINVAL;
 718	/*
 719	 * Zero on/off values don't work as expected. Experimentation shows
 720	 * that zero value is treated as 2^32. This behavior is not documented.
 721	 */
 722	if (val == UINT_MAX + 1ULL)
 723		on = 0;
 724	else if (val)
 725		on = val;
 726	else
 727		on = 1;
 728
 729	val = (unsigned long long) mvpwm->clk_rate * state->period;
 
 730	do_div(val, NSEC_PER_SEC);
 731	val -= on;
 732	if (val > UINT_MAX + 1ULL)
 733		return -EINVAL;
 734	if (val == UINT_MAX + 1ULL)
 735		off = 0;
 736	else if (val)
 737		off = val;
 738	else
 739		off = 1;
 740
 741	spin_lock_irqsave(&mvpwm->lock, flags);
 742
 743	regmap_write(mvpwm->regs, mvebu_pwmreg_blink_on_duration(mvpwm), on);
 744	regmap_write(mvpwm->regs, mvebu_pwmreg_blink_off_duration(mvpwm), off);
 745	if (state->enabled)
 746		mvebu_gpio_blink(&mvchip->chip, pwm->hwpwm, 1);
 747	else
 748		mvebu_gpio_blink(&mvchip->chip, pwm->hwpwm, 0);
 749
 750	spin_unlock_irqrestore(&mvpwm->lock, flags);
 751
 752	return 0;
 753}
 754
 755static const struct pwm_ops mvebu_pwm_ops = {
 756	.request = mvebu_pwm_request,
 757	.free = mvebu_pwm_free,
 758	.get_state = mvebu_pwm_get_state,
 759	.apply = mvebu_pwm_apply,
 
 760};
 761
 762static void __maybe_unused mvebu_pwm_suspend(struct mvebu_gpio_chip *mvchip)
 763{
 764	struct mvebu_pwm *mvpwm = mvchip->mvpwm;
 765
 766	regmap_read(mvchip->regs, GPIO_BLINK_CNT_SELECT_OFF + mvchip->offset,
 767		    &mvpwm->blink_select);
 768	regmap_read(mvpwm->regs, mvebu_pwmreg_blink_on_duration(mvpwm),
 769		    &mvpwm->blink_on_duration);
 770	regmap_read(mvpwm->regs, mvebu_pwmreg_blink_off_duration(mvpwm),
 771		    &mvpwm->blink_off_duration);
 772}
 773
 774static void __maybe_unused mvebu_pwm_resume(struct mvebu_gpio_chip *mvchip)
 775{
 776	struct mvebu_pwm *mvpwm = mvchip->mvpwm;
 777
 778	regmap_write(mvchip->regs, GPIO_BLINK_CNT_SELECT_OFF + mvchip->offset,
 779		     mvpwm->blink_select);
 780	regmap_write(mvpwm->regs, mvebu_pwmreg_blink_on_duration(mvpwm),
 781		     mvpwm->blink_on_duration);
 782	regmap_write(mvpwm->regs, mvebu_pwmreg_blink_off_duration(mvpwm),
 783		     mvpwm->blink_off_duration);
 784}
 785
 786static int mvebu_pwm_probe(struct platform_device *pdev,
 787			   struct mvebu_gpio_chip *mvchip,
 788			   int id)
 789{
 790	struct device *dev = &pdev->dev;
 791	struct mvebu_pwm *mvpwm;
 792	void __iomem *base;
 793	u32 offset;
 794	u32 set;
 795
 796	if (mvchip->soc_variant == MVEBU_GPIO_SOC_VARIANT_A8K) {
 797		int ret = of_property_read_u32(dev->of_node,
 798					       "marvell,pwm-offset", &offset);
 799		if (ret < 0)
 800			return 0;
 801	} else {
 802		/*
 803		 * There are only two sets of PWM configuration registers for
 804		 * all the GPIO lines on those SoCs which this driver reserves
 805		 * for the first two GPIO chips. So if the resource is missing
 806		 * we can't treat it as an error.
 807		 */
 808		if (!platform_get_resource_byname(pdev, IORESOURCE_MEM, "pwm"))
 809			return 0;
 810		offset = 0;
 811	}
 812
 813	if (IS_ERR(mvchip->clk))
 814		return PTR_ERR(mvchip->clk);
 815
 
 
 
 
 
 
 
 
 
 
 
 
 
 816	mvpwm = devm_kzalloc(dev, sizeof(struct mvebu_pwm), GFP_KERNEL);
 817	if (!mvpwm)
 818		return -ENOMEM;
 819	mvchip->mvpwm = mvpwm;
 820	mvpwm->mvchip = mvchip;
 821	mvpwm->offset = offset;
 822
 823	if (mvchip->soc_variant == MVEBU_GPIO_SOC_VARIANT_A8K) {
 824		mvpwm->regs = mvchip->regs;
 825
 826		switch (mvchip->offset) {
 827		case AP80X_GPIO0_OFF_A8K:
 828		case CP11X_GPIO0_OFF_A8K:
 829			/* Blink counter A */
 830			set = 0;
 831			break;
 832		case CP11X_GPIO1_OFF_A8K:
 833			/* Blink counter B */
 834			set = U32_MAX;
 835			mvpwm->offset += PWM_BLINK_COUNTER_B_OFF;
 836			break;
 837		default:
 838			return -EINVAL;
 839		}
 840	} else {
 841		base = devm_platform_ioremap_resource_byname(pdev, "pwm");
 842		if (IS_ERR(base))
 843			return PTR_ERR(base);
 844
 845		mvpwm->regs = devm_regmap_init_mmio(&pdev->dev, base,
 846						    &mvebu_gpio_regmap_config);
 847		if (IS_ERR(mvpwm->regs))
 848			return PTR_ERR(mvpwm->regs);
 849
 850		/*
 851		 * Use set A for lines of GPIO chip with id 0, B for GPIO chip
 852		 * with id 1. Don't allow further GPIO chips to be used for PWM.
 853		 */
 854		if (id == 0)
 855			set = 0;
 856		else if (id == 1)
 857			set = U32_MAX;
 858		else
 859			return -EINVAL;
 860	}
 861
 862	regmap_write(mvchip->regs,
 863		     GPIO_BLINK_CNT_SELECT_OFF + mvchip->offset, set);
 864
 865	mvpwm->clk_rate = clk_get_rate(mvchip->clk);
 866	if (!mvpwm->clk_rate) {
 867		dev_err(dev, "failed to get clock rate\n");
 868		return -EINVAL;
 869	}
 870
 871	mvpwm->chip.dev = dev;
 872	mvpwm->chip.ops = &mvebu_pwm_ops;
 873	mvpwm->chip.npwm = mvchip->chip.ngpio;
 
 
 
 
 
 
 
 874
 875	spin_lock_init(&mvpwm->lock);
 876
 877	return devm_pwmchip_add(dev, &mvpwm->chip);
 878}
 879
 880#ifdef CONFIG_DEBUG_FS
 881#include <linux/seq_file.h>
 882
 883static void mvebu_gpio_dbg_show(struct seq_file *s, struct gpio_chip *chip)
 884{
 885	struct mvebu_gpio_chip *mvchip = gpiochip_get_data(chip);
 886	u32 out, io_conf, blink, in_pol, data_in, cause, edg_msk, lvl_msk;
 887	const char *label;
 888	int i;
 889
 890	regmap_read(mvchip->regs, GPIO_OUT_OFF + mvchip->offset, &out);
 891	regmap_read(mvchip->regs, GPIO_IO_CONF_OFF + mvchip->offset, &io_conf);
 892	regmap_read(mvchip->regs, GPIO_BLINK_EN_OFF + mvchip->offset, &blink);
 893	regmap_read(mvchip->regs, GPIO_IN_POL_OFF + mvchip->offset, &in_pol);
 894	regmap_read(mvchip->regs, GPIO_DATA_IN_OFF + mvchip->offset, &data_in);
 895	cause	= mvebu_gpio_read_edge_cause(mvchip);
 896	edg_msk	= mvebu_gpio_read_edge_mask(mvchip);
 897	lvl_msk	= mvebu_gpio_read_level_mask(mvchip);
 898
 899	for_each_requested_gpio(chip, i, label) {
 
 900		u32 msk;
 901		bool is_out;
 902
 
 
 
 
 903		msk = BIT(i);
 904		is_out = !(io_conf & msk);
 905
 906		seq_printf(s, " gpio-%-3d (%-20.20s)", chip->base + i, label);
 907
 908		if (is_out) {
 909			seq_printf(s, " out %s %s\n",
 910				   out & msk ? "hi" : "lo",
 911				   blink & msk ? "(blink )" : "");
 912			continue;
 913		}
 914
 915		seq_printf(s, " in  %s (act %s) - IRQ",
 916			   (data_in ^ in_pol) & msk  ? "hi" : "lo",
 917			   in_pol & msk ? "lo" : "hi");
 918		if (!((edg_msk | lvl_msk) & msk)) {
 919			seq_puts(s, " disabled\n");
 920			continue;
 921		}
 922		if (edg_msk & msk)
 923			seq_puts(s, " edge ");
 924		if (lvl_msk & msk)
 925			seq_puts(s, " level");
 926		seq_printf(s, " (%s)\n", cause & msk ? "pending" : "clear  ");
 927	}
 928}
 929#else
 930#define mvebu_gpio_dbg_show NULL
 931#endif
 932
 933static const struct of_device_id mvebu_gpio_of_match[] = {
 934	{
 935		.compatible = "marvell,orion-gpio",
 936		.data	    = (void *) MVEBU_GPIO_SOC_VARIANT_ORION,
 937	},
 938	{
 939		.compatible = "marvell,mv78200-gpio",
 940		.data	    = (void *) MVEBU_GPIO_SOC_VARIANT_MV78200,
 941	},
 942	{
 943		.compatible = "marvell,armadaxp-gpio",
 944		.data	    = (void *) MVEBU_GPIO_SOC_VARIANT_ARMADAXP,
 945	},
 946	{
 947		.compatible = "marvell,armada-370-gpio",
 948		.data	    = (void *) MVEBU_GPIO_SOC_VARIANT_ORION,
 949	},
 950	{
 951		.compatible = "marvell,armada-8k-gpio",
 952		.data       = (void *) MVEBU_GPIO_SOC_VARIANT_A8K,
 953	},
 954	{
 955		/* sentinel */
 956	},
 957};
 958
 959static int mvebu_gpio_suspend(struct platform_device *pdev, pm_message_t state)
 960{
 961	struct mvebu_gpio_chip *mvchip = platform_get_drvdata(pdev);
 962	int i;
 963
 964	regmap_read(mvchip->regs, GPIO_OUT_OFF + mvchip->offset,
 965		    &mvchip->out_reg);
 966	regmap_read(mvchip->regs, GPIO_IO_CONF_OFF + mvchip->offset,
 967		    &mvchip->io_conf_reg);
 968	regmap_read(mvchip->regs, GPIO_BLINK_EN_OFF + mvchip->offset,
 969		    &mvchip->blink_en_reg);
 970	regmap_read(mvchip->regs, GPIO_IN_POL_OFF + mvchip->offset,
 971		    &mvchip->in_pol_reg);
 972
 973	switch (mvchip->soc_variant) {
 974	case MVEBU_GPIO_SOC_VARIANT_ORION:
 975	case MVEBU_GPIO_SOC_VARIANT_A8K:
 976		regmap_read(mvchip->regs, GPIO_EDGE_MASK_OFF + mvchip->offset,
 977			    &mvchip->edge_mask_regs[0]);
 978		regmap_read(mvchip->regs, GPIO_LEVEL_MASK_OFF + mvchip->offset,
 979			    &mvchip->level_mask_regs[0]);
 980		break;
 981	case MVEBU_GPIO_SOC_VARIANT_MV78200:
 982		for (i = 0; i < 2; i++) {
 983			regmap_read(mvchip->regs,
 984				    GPIO_EDGE_MASK_MV78200_OFF(i),
 985				    &mvchip->edge_mask_regs[i]);
 986			regmap_read(mvchip->regs,
 987				    GPIO_LEVEL_MASK_MV78200_OFF(i),
 988				    &mvchip->level_mask_regs[i]);
 989		}
 990		break;
 991	case MVEBU_GPIO_SOC_VARIANT_ARMADAXP:
 992		for (i = 0; i < 4; i++) {
 993			regmap_read(mvchip->regs,
 994				    GPIO_EDGE_MASK_ARMADAXP_OFF(i),
 995				    &mvchip->edge_mask_regs[i]);
 996			regmap_read(mvchip->regs,
 997				    GPIO_LEVEL_MASK_ARMADAXP_OFF(i),
 998				    &mvchip->level_mask_regs[i]);
 999		}
1000		break;
1001	default:
1002		BUG();
1003	}
1004
1005	if (IS_REACHABLE(CONFIG_PWM))
1006		mvebu_pwm_suspend(mvchip);
1007
1008	return 0;
1009}
1010
1011static int mvebu_gpio_resume(struct platform_device *pdev)
1012{
1013	struct mvebu_gpio_chip *mvchip = platform_get_drvdata(pdev);
1014	int i;
1015
1016	regmap_write(mvchip->regs, GPIO_OUT_OFF + mvchip->offset,
1017		     mvchip->out_reg);
1018	regmap_write(mvchip->regs, GPIO_IO_CONF_OFF + mvchip->offset,
1019		     mvchip->io_conf_reg);
1020	regmap_write(mvchip->regs, GPIO_BLINK_EN_OFF + mvchip->offset,
1021		     mvchip->blink_en_reg);
1022	regmap_write(mvchip->regs, GPIO_IN_POL_OFF + mvchip->offset,
1023		     mvchip->in_pol_reg);
1024
1025	switch (mvchip->soc_variant) {
1026	case MVEBU_GPIO_SOC_VARIANT_ORION:
1027	case MVEBU_GPIO_SOC_VARIANT_A8K:
1028		regmap_write(mvchip->regs, GPIO_EDGE_MASK_OFF + mvchip->offset,
1029			     mvchip->edge_mask_regs[0]);
1030		regmap_write(mvchip->regs, GPIO_LEVEL_MASK_OFF + mvchip->offset,
1031			     mvchip->level_mask_regs[0]);
1032		break;
1033	case MVEBU_GPIO_SOC_VARIANT_MV78200:
1034		for (i = 0; i < 2; i++) {
1035			regmap_write(mvchip->regs,
1036				     GPIO_EDGE_MASK_MV78200_OFF(i),
1037				     mvchip->edge_mask_regs[i]);
1038			regmap_write(mvchip->regs,
1039				     GPIO_LEVEL_MASK_MV78200_OFF(i),
1040				     mvchip->level_mask_regs[i]);
1041		}
1042		break;
1043	case MVEBU_GPIO_SOC_VARIANT_ARMADAXP:
1044		for (i = 0; i < 4; i++) {
1045			regmap_write(mvchip->regs,
1046				     GPIO_EDGE_MASK_ARMADAXP_OFF(i),
1047				     mvchip->edge_mask_regs[i]);
1048			regmap_write(mvchip->regs,
1049				     GPIO_LEVEL_MASK_ARMADAXP_OFF(i),
1050				     mvchip->level_mask_regs[i]);
1051		}
1052		break;
1053	default:
1054		BUG();
1055	}
1056
1057	if (IS_REACHABLE(CONFIG_PWM))
1058		mvebu_pwm_resume(mvchip);
1059
1060	return 0;
1061}
1062
 
 
 
 
 
 
 
1063static int mvebu_gpio_probe_raw(struct platform_device *pdev,
1064				struct mvebu_gpio_chip *mvchip)
1065{
1066	void __iomem *base;
1067
1068	base = devm_platform_ioremap_resource(pdev, 0);
1069	if (IS_ERR(base))
1070		return PTR_ERR(base);
1071
1072	mvchip->regs = devm_regmap_init_mmio(&pdev->dev, base,
1073					     &mvebu_gpio_regmap_config);
1074	if (IS_ERR(mvchip->regs))
1075		return PTR_ERR(mvchip->regs);
1076
1077	/*
1078	 * For the legacy SoCs, the regmap directly maps to the GPIO
1079	 * registers, so no offset is needed.
1080	 */
1081	mvchip->offset = 0;
1082
1083	/*
1084	 * The Armada XP has a second range of registers for the
1085	 * per-CPU registers
1086	 */
1087	if (mvchip->soc_variant == MVEBU_GPIO_SOC_VARIANT_ARMADAXP) {
1088		base = devm_platform_ioremap_resource(pdev, 1);
1089		if (IS_ERR(base))
1090			return PTR_ERR(base);
1091
1092		mvchip->percpu_regs =
1093			devm_regmap_init_mmio(&pdev->dev, base,
1094					      &mvebu_gpio_regmap_config);
1095		if (IS_ERR(mvchip->percpu_regs))
1096			return PTR_ERR(mvchip->percpu_regs);
1097	}
1098
1099	return 0;
1100}
1101
1102static int mvebu_gpio_probe_syscon(struct platform_device *pdev,
1103				   struct mvebu_gpio_chip *mvchip)
1104{
1105	mvchip->regs = syscon_node_to_regmap(pdev->dev.parent->of_node);
1106	if (IS_ERR(mvchip->regs))
1107		return PTR_ERR(mvchip->regs);
1108
1109	if (of_property_read_u32(pdev->dev.of_node, "offset", &mvchip->offset))
1110		return -EINVAL;
1111
1112	return 0;
1113}
1114
1115static void mvebu_gpio_remove_irq_domain(void *data)
1116{
1117	struct irq_domain *domain = data;
1118
1119	irq_domain_remove(domain);
1120}
1121
1122static int mvebu_gpio_probe(struct platform_device *pdev)
1123{
1124	struct mvebu_gpio_chip *mvchip;
 
1125	struct device_node *np = pdev->dev.of_node;
1126	struct irq_chip_generic *gc;
1127	struct irq_chip_type *ct;
1128	unsigned int ngpios;
1129	bool have_irqs;
1130	int soc_variant;
1131	int i, cpu, id;
1132	int err;
1133
1134	soc_variant = (unsigned long)device_get_match_data(&pdev->dev);
 
 
 
 
1135
1136	/* Some gpio controllers do not provide irq support */
1137	err = platform_irq_count(pdev);
1138	if (err < 0)
1139		return err;
1140
1141	have_irqs = err != 0;
1142
1143	mvchip = devm_kzalloc(&pdev->dev, sizeof(struct mvebu_gpio_chip),
1144			      GFP_KERNEL);
1145	if (!mvchip)
1146		return -ENOMEM;
1147
1148	platform_set_drvdata(pdev, mvchip);
1149
1150	if (of_property_read_u32(pdev->dev.of_node, "ngpios", &ngpios)) {
1151		dev_err(&pdev->dev, "Missing ngpios OF property\n");
1152		return -ENODEV;
1153	}
1154
1155	id = of_alias_get_id(pdev->dev.of_node, "gpio");
1156	if (id < 0) {
1157		dev_err(&pdev->dev, "Couldn't get OF id\n");
1158		return id;
1159	}
1160
1161	mvchip->clk = devm_clk_get(&pdev->dev, NULL);
1162	/* Not all SoCs require a clock.*/
1163	if (!IS_ERR(mvchip->clk))
1164		clk_prepare_enable(mvchip->clk);
1165
1166	mvchip->soc_variant = soc_variant;
1167	mvchip->chip.label = dev_name(&pdev->dev);
1168	mvchip->chip.parent = &pdev->dev;
1169	mvchip->chip.request = gpiochip_generic_request;
1170	mvchip->chip.free = gpiochip_generic_free;
1171	mvchip->chip.get_direction = mvebu_gpio_get_direction;
1172	mvchip->chip.direction_input = mvebu_gpio_direction_input;
1173	mvchip->chip.get = mvebu_gpio_get;
1174	mvchip->chip.direction_output = mvebu_gpio_direction_output;
1175	mvchip->chip.set = mvebu_gpio_set;
1176	if (have_irqs)
1177		mvchip->chip.to_irq = mvebu_gpio_to_irq;
1178	mvchip->chip.base = id * MVEBU_MAX_GPIO_PER_BANK;
1179	mvchip->chip.ngpio = ngpios;
1180	mvchip->chip.can_sleep = false;
 
1181	mvchip->chip.dbg_show = mvebu_gpio_dbg_show;
1182
1183	if (soc_variant == MVEBU_GPIO_SOC_VARIANT_A8K)
1184		err = mvebu_gpio_probe_syscon(pdev, mvchip);
1185	else
1186		err = mvebu_gpio_probe_raw(pdev, mvchip);
1187
1188	if (err)
1189		return err;
1190
1191	/*
1192	 * Mask and clear GPIO interrupts.
1193	 */
1194	switch (soc_variant) {
1195	case MVEBU_GPIO_SOC_VARIANT_ORION:
1196	case MVEBU_GPIO_SOC_VARIANT_A8K:
1197		regmap_write(mvchip->regs,
1198			     GPIO_EDGE_CAUSE_OFF + mvchip->offset, 0);
1199		regmap_write(mvchip->regs,
1200			     GPIO_EDGE_MASK_OFF + mvchip->offset, 0);
1201		regmap_write(mvchip->regs,
1202			     GPIO_LEVEL_MASK_OFF + mvchip->offset, 0);
1203		break;
1204	case MVEBU_GPIO_SOC_VARIANT_MV78200:
1205		regmap_write(mvchip->regs, GPIO_EDGE_CAUSE_OFF, 0);
1206		for (cpu = 0; cpu < 2; cpu++) {
1207			regmap_write(mvchip->regs,
1208				     GPIO_EDGE_MASK_MV78200_OFF(cpu), 0);
1209			regmap_write(mvchip->regs,
1210				     GPIO_LEVEL_MASK_MV78200_OFF(cpu), 0);
1211		}
1212		break;
1213	case MVEBU_GPIO_SOC_VARIANT_ARMADAXP:
1214		regmap_write(mvchip->regs, GPIO_EDGE_CAUSE_OFF, 0);
1215		regmap_write(mvchip->regs, GPIO_EDGE_MASK_OFF, 0);
1216		regmap_write(mvchip->regs, GPIO_LEVEL_MASK_OFF, 0);
1217		for (cpu = 0; cpu < 4; cpu++) {
1218			regmap_write(mvchip->percpu_regs,
1219				     GPIO_EDGE_CAUSE_ARMADAXP_OFF(cpu), 0);
1220			regmap_write(mvchip->percpu_regs,
1221				     GPIO_EDGE_MASK_ARMADAXP_OFF(cpu), 0);
1222			regmap_write(mvchip->percpu_regs,
1223				     GPIO_LEVEL_MASK_ARMADAXP_OFF(cpu), 0);
1224		}
1225		break;
1226	default:
1227		BUG();
1228	}
1229
1230	devm_gpiochip_add_data(&pdev->dev, &mvchip->chip, mvchip);
1231
1232	/* Some MVEBU SoCs have simple PWM support for GPIO lines */
1233	if (IS_REACHABLE(CONFIG_PWM)) {
1234		err = mvebu_pwm_probe(pdev, mvchip, id);
1235		if (err)
1236			return err;
1237	}
1238
1239	/* Some gpio controllers do not provide irq support */
1240	if (!have_irqs)
1241		return 0;
1242
1243	mvchip->domain =
1244	    irq_domain_add_linear(np, ngpios, &irq_generic_chip_ops, NULL);
1245	if (!mvchip->domain) {
1246		dev_err(&pdev->dev, "couldn't allocate irq domain %s (DT).\n",
1247			mvchip->chip.label);
1248		return -ENODEV;
1249	}
1250
1251	err = devm_add_action_or_reset(&pdev->dev, mvebu_gpio_remove_irq_domain,
1252				       mvchip->domain);
1253	if (err)
1254		return err;
1255
1256	err = irq_alloc_domain_generic_chips(
1257	    mvchip->domain, ngpios, 2, np->name, handle_level_irq,
1258	    IRQ_NOREQUEST | IRQ_NOPROBE | IRQ_LEVEL, 0, 0);
1259	if (err) {
1260		dev_err(&pdev->dev, "couldn't allocate irq chips %s (DT).\n",
1261			mvchip->chip.label);
1262		return err;
1263	}
1264
1265	/*
1266	 * NOTE: The common accessors cannot be used because of the percpu
1267	 * access to the mask registers
1268	 */
1269	gc = irq_get_domain_generic_chip(mvchip->domain, 0);
1270	gc->private = mvchip;
1271	ct = &gc->chip_types[0];
1272	ct->type = IRQ_TYPE_LEVEL_HIGH | IRQ_TYPE_LEVEL_LOW;
1273	ct->chip.irq_mask = mvebu_gpio_level_irq_mask;
1274	ct->chip.irq_unmask = mvebu_gpio_level_irq_unmask;
1275	ct->chip.irq_set_type = mvebu_gpio_irq_set_type;
1276	ct->chip.name = mvchip->chip.label;
1277
1278	ct = &gc->chip_types[1];
1279	ct->type = IRQ_TYPE_EDGE_RISING | IRQ_TYPE_EDGE_FALLING;
1280	ct->chip.irq_ack = mvebu_gpio_irq_ack;
1281	ct->chip.irq_mask = mvebu_gpio_edge_irq_mask;
1282	ct->chip.irq_unmask = mvebu_gpio_edge_irq_unmask;
1283	ct->chip.irq_set_type = mvebu_gpio_irq_set_type;
1284	ct->handler = handle_edge_irq;
1285	ct->chip.name = mvchip->chip.label;
1286
1287	/*
1288	 * Setup the interrupt handlers. Each chip can have up to 4
1289	 * interrupt handlers, with each handler dealing with 8 GPIO
1290	 * pins.
1291	 */
1292	for (i = 0; i < 4; i++) {
1293		int irq = platform_get_irq_optional(pdev, i);
1294
1295		if (irq < 0)
1296			continue;
1297		irq_set_chained_handler_and_data(irq, mvebu_gpio_irq_handler,
1298						 mvchip);
1299	}
1300
 
 
 
 
1301	return 0;
 
 
 
 
 
1302}
1303
1304static struct platform_driver mvebu_gpio_driver = {
1305	.driver		= {
1306		.name		= "mvebu-gpio",
1307		.of_match_table = mvebu_gpio_of_match,
1308	},
1309	.probe		= mvebu_gpio_probe,
1310	.suspend        = mvebu_gpio_suspend,
1311	.resume         = mvebu_gpio_resume,
1312};
1313builtin_platform_driver(mvebu_gpio_driver);
v5.4
 
   1/*
   2 * GPIO driver for Marvell SoCs
   3 *
   4 * Copyright (C) 2012 Marvell
   5 *
   6 * Thomas Petazzoni <thomas.petazzoni@free-electrons.com>
   7 * Andrew Lunn <andrew@lunn.ch>
   8 * Sebastian Hesselbarth <sebastian.hesselbarth@gmail.com>
   9 *
  10 * This file is licensed under the terms of the GNU General Public
  11 * License version 2.  This program is licensed "as is" without any
  12 * warranty of any kind, whether express or implied.
  13 *
  14 * This driver is a fairly straightforward GPIO driver for the
  15 * complete family of Marvell EBU SoC platforms (Orion, Dove,
  16 * Kirkwood, Discovery, Armada 370/XP). The only complexity of this
  17 * driver is the different register layout that exists between the
  18 * non-SMP platforms (Orion, Dove, Kirkwood, Armada 370) and the SMP
  19 * platforms (MV78200 from the Discovery family and the Armada
  20 * XP). Therefore, this driver handles three variants of the GPIO
  21 * block:
  22 * - the basic variant, called "orion-gpio", with the simplest
  23 *   register set. Used on Orion, Dove, Kirkwoord, Armada 370 and
  24 *   non-SMP Discovery systems
  25 * - the mv78200 variant for MV78200 Discovery systems. This variant
  26 *   turns the edge mask and level mask registers into CPU0 edge
  27 *   mask/level mask registers, and adds CPU1 edge mask/level mask
  28 *   registers.
  29 * - the armadaxp variant for Armada XP systems. This variant keeps
  30 *   the normal cause/edge mask/level mask registers when the global
  31 *   interrupts are used, but adds per-CPU cause/edge mask/level mask
  32 *   registers n a separate memory area for the per-CPU GPIO
  33 *   interrupts.
  34 */
  35
  36#include <linux/bitops.h>
  37#include <linux/clk.h>
  38#include <linux/err.h>
  39#include <linux/gpio/driver.h>
  40#include <linux/gpio/consumer.h>
  41#include <linux/gpio/machine.h>
  42#include <linux/init.h>
  43#include <linux/io.h>
  44#include <linux/irq.h>
  45#include <linux/irqchip/chained_irq.h>
  46#include <linux/irqdomain.h>
  47#include <linux/mfd/syscon.h>
  48#include <linux/of_device.h>
  49#include <linux/of_irq.h>
  50#include <linux/pinctrl/consumer.h>
  51#include <linux/platform_device.h>
 
  52#include <linux/pwm.h>
  53#include <linux/regmap.h>
  54#include <linux/slab.h>
  55
  56/*
  57 * GPIO unit register offsets.
  58 */
  59#define GPIO_OUT_OFF			0x0000
  60#define GPIO_IO_CONF_OFF		0x0004
  61#define GPIO_BLINK_EN_OFF		0x0008
  62#define GPIO_IN_POL_OFF			0x000c
  63#define GPIO_DATA_IN_OFF		0x0010
  64#define GPIO_EDGE_CAUSE_OFF		0x0014
  65#define GPIO_EDGE_MASK_OFF		0x0018
  66#define GPIO_LEVEL_MASK_OFF		0x001c
  67#define GPIO_BLINK_CNT_SELECT_OFF	0x0020
  68
  69/*
  70 * PWM register offsets.
  71 */
  72#define PWM_BLINK_ON_DURATION_OFF	0x0
  73#define PWM_BLINK_OFF_DURATION_OFF	0x4
 
  74
 
 
 
 
  75
  76/* The MV78200 has per-CPU registers for edge mask and level mask */
  77#define GPIO_EDGE_MASK_MV78200_OFF(cpu)	  ((cpu) ? 0x30 : 0x18)
  78#define GPIO_LEVEL_MASK_MV78200_OFF(cpu)  ((cpu) ? 0x34 : 0x1C)
  79
  80/*
  81 * The Armada XP has per-CPU registers for interrupt cause, interrupt
  82 * mask and interrupt level mask. Those are relative to the
  83 * percpu_membase.
  84 */
  85#define GPIO_EDGE_CAUSE_ARMADAXP_OFF(cpu) ((cpu) * 0x4)
  86#define GPIO_EDGE_MASK_ARMADAXP_OFF(cpu)  (0x10 + (cpu) * 0x4)
  87#define GPIO_LEVEL_MASK_ARMADAXP_OFF(cpu) (0x20 + (cpu) * 0x4)
  88
  89#define MVEBU_GPIO_SOC_VARIANT_ORION	0x1
  90#define MVEBU_GPIO_SOC_VARIANT_MV78200	0x2
  91#define MVEBU_GPIO_SOC_VARIANT_ARMADAXP 0x3
  92#define MVEBU_GPIO_SOC_VARIANT_A8K	0x4
  93
  94#define MVEBU_MAX_GPIO_PER_BANK		32
  95
  96struct mvebu_pwm {
  97	void __iomem		*membase;
 
  98	unsigned long		 clk_rate;
  99	struct gpio_desc	*gpiod;
 100	struct pwm_chip		 chip;
 101	spinlock_t		 lock;
 102	struct mvebu_gpio_chip	*mvchip;
 103
 104	/* Used to preserve GPIO/PWM registers across suspend/resume */
 105	u32			 blink_select;
 106	u32			 blink_on_duration;
 107	u32			 blink_off_duration;
 108};
 109
 110struct mvebu_gpio_chip {
 111	struct gpio_chip   chip;
 112	struct regmap     *regs;
 113	u32		   offset;
 114	struct regmap     *percpu_regs;
 115	int		   irqbase;
 116	struct irq_domain *domain;
 117	int		   soc_variant;
 118
 119	/* Used for PWM support */
 120	struct clk	  *clk;
 121	struct mvebu_pwm  *mvpwm;
 122
 123	/* Used to preserve GPIO registers across suspend/resume */
 124	u32		   out_reg;
 125	u32		   io_conf_reg;
 126	u32		   blink_en_reg;
 127	u32		   in_pol_reg;
 128	u32		   edge_mask_regs[4];
 129	u32		   level_mask_regs[4];
 130};
 131
 132/*
 133 * Functions returning addresses of individual registers for a given
 134 * GPIO controller.
 135 */
 136
 137static void mvebu_gpioreg_edge_cause(struct mvebu_gpio_chip *mvchip,
 138			 struct regmap **map, unsigned int *offset)
 139{
 140	int cpu;
 141
 142	switch (mvchip->soc_variant) {
 143	case MVEBU_GPIO_SOC_VARIANT_ORION:
 144	case MVEBU_GPIO_SOC_VARIANT_MV78200:
 145	case MVEBU_GPIO_SOC_VARIANT_A8K:
 146		*map = mvchip->regs;
 147		*offset = GPIO_EDGE_CAUSE_OFF + mvchip->offset;
 148		break;
 149	case MVEBU_GPIO_SOC_VARIANT_ARMADAXP:
 150		cpu = smp_processor_id();
 151		*map = mvchip->percpu_regs;
 152		*offset = GPIO_EDGE_CAUSE_ARMADAXP_OFF(cpu);
 153		break;
 154	default:
 155		BUG();
 156	}
 157}
 158
 159static u32
 160mvebu_gpio_read_edge_cause(struct mvebu_gpio_chip *mvchip)
 161{
 162	struct regmap *map;
 163	unsigned int offset;
 164	u32 val;
 165
 166	mvebu_gpioreg_edge_cause(mvchip, &map, &offset);
 167	regmap_read(map, offset, &val);
 168
 169	return val;
 170}
 171
 172static void
 173mvebu_gpio_write_edge_cause(struct mvebu_gpio_chip *mvchip, u32 val)
 174{
 175	struct regmap *map;
 176	unsigned int offset;
 177
 178	mvebu_gpioreg_edge_cause(mvchip, &map, &offset);
 179	regmap_write(map, offset, val);
 180}
 181
 182static inline void
 183mvebu_gpioreg_edge_mask(struct mvebu_gpio_chip *mvchip,
 184			struct regmap **map, unsigned int *offset)
 185{
 186	int cpu;
 187
 188	switch (mvchip->soc_variant) {
 189	case MVEBU_GPIO_SOC_VARIANT_ORION:
 190	case MVEBU_GPIO_SOC_VARIANT_A8K:
 191		*map = mvchip->regs;
 192		*offset = GPIO_EDGE_MASK_OFF + mvchip->offset;
 193		break;
 194	case MVEBU_GPIO_SOC_VARIANT_MV78200:
 195		cpu = smp_processor_id();
 196		*map = mvchip->regs;
 197		*offset = GPIO_EDGE_MASK_MV78200_OFF(cpu);
 198		break;
 199	case MVEBU_GPIO_SOC_VARIANT_ARMADAXP:
 200		cpu = smp_processor_id();
 201		*map = mvchip->percpu_regs;
 202		*offset = GPIO_EDGE_MASK_ARMADAXP_OFF(cpu);
 203		break;
 204	default:
 205		BUG();
 206	}
 207}
 208
 209static u32
 210mvebu_gpio_read_edge_mask(struct mvebu_gpio_chip *mvchip)
 211{
 212	struct regmap *map;
 213	unsigned int offset;
 214	u32 val;
 215
 216	mvebu_gpioreg_edge_mask(mvchip, &map, &offset);
 217	regmap_read(map, offset, &val);
 218
 219	return val;
 220}
 221
 222static void
 223mvebu_gpio_write_edge_mask(struct mvebu_gpio_chip *mvchip, u32 val)
 224{
 225	struct regmap *map;
 226	unsigned int offset;
 227
 228	mvebu_gpioreg_edge_mask(mvchip, &map, &offset);
 229	regmap_write(map, offset, val);
 230}
 231
 232static void
 233mvebu_gpioreg_level_mask(struct mvebu_gpio_chip *mvchip,
 234			 struct regmap **map, unsigned int *offset)
 235{
 236	int cpu;
 237
 238	switch (mvchip->soc_variant) {
 239	case MVEBU_GPIO_SOC_VARIANT_ORION:
 240	case MVEBU_GPIO_SOC_VARIANT_A8K:
 241		*map = mvchip->regs;
 242		*offset = GPIO_LEVEL_MASK_OFF + mvchip->offset;
 243		break;
 244	case MVEBU_GPIO_SOC_VARIANT_MV78200:
 245		cpu = smp_processor_id();
 246		*map = mvchip->regs;
 247		*offset = GPIO_LEVEL_MASK_MV78200_OFF(cpu);
 248		break;
 249	case MVEBU_GPIO_SOC_VARIANT_ARMADAXP:
 250		cpu = smp_processor_id();
 251		*map = mvchip->percpu_regs;
 252		*offset = GPIO_LEVEL_MASK_ARMADAXP_OFF(cpu);
 253		break;
 254	default:
 255		BUG();
 256	}
 257}
 258
 259static u32
 260mvebu_gpio_read_level_mask(struct mvebu_gpio_chip *mvchip)
 261{
 262	struct regmap *map;
 263	unsigned int offset;
 264	u32 val;
 265
 266	mvebu_gpioreg_level_mask(mvchip, &map, &offset);
 267	regmap_read(map, offset, &val);
 268
 269	return val;
 270}
 271
 272static void
 273mvebu_gpio_write_level_mask(struct mvebu_gpio_chip *mvchip, u32 val)
 274{
 275	struct regmap *map;
 276	unsigned int offset;
 277
 278	mvebu_gpioreg_level_mask(mvchip, &map, &offset);
 279	regmap_write(map, offset, val);
 280}
 281
 282/*
 283 * Functions returning addresses of individual registers for a given
 284 * PWM controller.
 285 */
 286static void __iomem *mvebu_pwmreg_blink_on_duration(struct mvebu_pwm *mvpwm)
 287{
 288	return mvpwm->membase + PWM_BLINK_ON_DURATION_OFF;
 289}
 290
 291static void __iomem *mvebu_pwmreg_blink_off_duration(struct mvebu_pwm *mvpwm)
 292{
 293	return mvpwm->membase + PWM_BLINK_OFF_DURATION_OFF;
 294}
 295
 296/*
 297 * Functions implementing the gpio_chip methods
 298 */
 299static void mvebu_gpio_set(struct gpio_chip *chip, unsigned int pin, int value)
 300{
 301	struct mvebu_gpio_chip *mvchip = gpiochip_get_data(chip);
 302
 303	regmap_update_bits(mvchip->regs, GPIO_OUT_OFF + mvchip->offset,
 304			   BIT(pin), value ? BIT(pin) : 0);
 305}
 306
 307static int mvebu_gpio_get(struct gpio_chip *chip, unsigned int pin)
 308{
 309	struct mvebu_gpio_chip *mvchip = gpiochip_get_data(chip);
 310	u32 u;
 311
 312	regmap_read(mvchip->regs, GPIO_IO_CONF_OFF + mvchip->offset, &u);
 313
 314	if (u & BIT(pin)) {
 315		u32 data_in, in_pol;
 316
 317		regmap_read(mvchip->regs, GPIO_DATA_IN_OFF + mvchip->offset,
 318			    &data_in);
 319		regmap_read(mvchip->regs, GPIO_IN_POL_OFF + mvchip->offset,
 320			    &in_pol);
 321		u = data_in ^ in_pol;
 322	} else {
 323		regmap_read(mvchip->regs, GPIO_OUT_OFF + mvchip->offset, &u);
 324	}
 325
 326	return (u >> pin) & 1;
 327}
 328
 329static void mvebu_gpio_blink(struct gpio_chip *chip, unsigned int pin,
 330			     int value)
 331{
 332	struct mvebu_gpio_chip *mvchip = gpiochip_get_data(chip);
 333
 334	regmap_update_bits(mvchip->regs, GPIO_BLINK_EN_OFF + mvchip->offset,
 335			   BIT(pin), value ? BIT(pin) : 0);
 336}
 337
 338static int mvebu_gpio_direction_input(struct gpio_chip *chip, unsigned int pin)
 339{
 340	struct mvebu_gpio_chip *mvchip = gpiochip_get_data(chip);
 341	int ret;
 342
 343	/*
 344	 * Check with the pinctrl driver whether this pin is usable as
 345	 * an input GPIO
 346	 */
 347	ret = pinctrl_gpio_direction_input(chip->base + pin);
 348	if (ret)
 349		return ret;
 350
 351	regmap_update_bits(mvchip->regs, GPIO_IO_CONF_OFF + mvchip->offset,
 352			   BIT(pin), BIT(pin));
 353
 354	return 0;
 355}
 356
 357static int mvebu_gpio_direction_output(struct gpio_chip *chip, unsigned int pin,
 358				       int value)
 359{
 360	struct mvebu_gpio_chip *mvchip = gpiochip_get_data(chip);
 361	int ret;
 362
 363	/*
 364	 * Check with the pinctrl driver whether this pin is usable as
 365	 * an output GPIO
 366	 */
 367	ret = pinctrl_gpio_direction_output(chip->base + pin);
 368	if (ret)
 369		return ret;
 370
 371	mvebu_gpio_blink(chip, pin, 0);
 372	mvebu_gpio_set(chip, pin, value);
 373
 374	regmap_update_bits(mvchip->regs, GPIO_IO_CONF_OFF + mvchip->offset,
 375			   BIT(pin), 0);
 376
 377	return 0;
 378}
 379
 380static int mvebu_gpio_get_direction(struct gpio_chip *chip, unsigned int pin)
 381{
 382	struct mvebu_gpio_chip *mvchip = gpiochip_get_data(chip);
 383	u32 u;
 384
 385	regmap_read(mvchip->regs, GPIO_IO_CONF_OFF + mvchip->offset, &u);
 386
 387	return !!(u & BIT(pin));
 
 
 
 388}
 389
 390static int mvebu_gpio_to_irq(struct gpio_chip *chip, unsigned int pin)
 391{
 392	struct mvebu_gpio_chip *mvchip = gpiochip_get_data(chip);
 393
 394	return irq_create_mapping(mvchip->domain, pin);
 395}
 396
 397/*
 398 * Functions implementing the irq_chip methods
 399 */
 400static void mvebu_gpio_irq_ack(struct irq_data *d)
 401{
 402	struct irq_chip_generic *gc = irq_data_get_irq_chip_data(d);
 403	struct mvebu_gpio_chip *mvchip = gc->private;
 404	u32 mask = d->mask;
 405
 406	irq_gc_lock(gc);
 407	mvebu_gpio_write_edge_cause(mvchip, ~mask);
 408	irq_gc_unlock(gc);
 409}
 410
 411static void mvebu_gpio_edge_irq_mask(struct irq_data *d)
 412{
 413	struct irq_chip_generic *gc = irq_data_get_irq_chip_data(d);
 414	struct mvebu_gpio_chip *mvchip = gc->private;
 415	struct irq_chip_type *ct = irq_data_get_chip_type(d);
 416	u32 mask = d->mask;
 417
 418	irq_gc_lock(gc);
 419	ct->mask_cache_priv &= ~mask;
 420	mvebu_gpio_write_edge_mask(mvchip, ct->mask_cache_priv);
 421	irq_gc_unlock(gc);
 422}
 423
 424static void mvebu_gpio_edge_irq_unmask(struct irq_data *d)
 425{
 426	struct irq_chip_generic *gc = irq_data_get_irq_chip_data(d);
 427	struct mvebu_gpio_chip *mvchip = gc->private;
 428	struct irq_chip_type *ct = irq_data_get_chip_type(d);
 429	u32 mask = d->mask;
 430
 431	irq_gc_lock(gc);
 
 432	ct->mask_cache_priv |= mask;
 433	mvebu_gpio_write_edge_mask(mvchip, ct->mask_cache_priv);
 434	irq_gc_unlock(gc);
 435}
 436
 437static void mvebu_gpio_level_irq_mask(struct irq_data *d)
 438{
 439	struct irq_chip_generic *gc = irq_data_get_irq_chip_data(d);
 440	struct mvebu_gpio_chip *mvchip = gc->private;
 441	struct irq_chip_type *ct = irq_data_get_chip_type(d);
 442	u32 mask = d->mask;
 443
 444	irq_gc_lock(gc);
 445	ct->mask_cache_priv &= ~mask;
 446	mvebu_gpio_write_level_mask(mvchip, ct->mask_cache_priv);
 447	irq_gc_unlock(gc);
 448}
 449
 450static void mvebu_gpio_level_irq_unmask(struct irq_data *d)
 451{
 452	struct irq_chip_generic *gc = irq_data_get_irq_chip_data(d);
 453	struct mvebu_gpio_chip *mvchip = gc->private;
 454	struct irq_chip_type *ct = irq_data_get_chip_type(d);
 455	u32 mask = d->mask;
 456
 457	irq_gc_lock(gc);
 458	ct->mask_cache_priv |= mask;
 459	mvebu_gpio_write_level_mask(mvchip, ct->mask_cache_priv);
 460	irq_gc_unlock(gc);
 461}
 462
 463/*****************************************************************************
 464 * MVEBU GPIO IRQ
 465 *
 466 * GPIO_IN_POL register controls whether GPIO_DATA_IN will hold the same
 467 * value of the line or the opposite value.
 468 *
 469 * Level IRQ handlers: DATA_IN is used directly as cause register.
 470 *		       Interrupt are masked by LEVEL_MASK registers.
 471 * Edge IRQ handlers:  Change in DATA_IN are latched in EDGE_CAUSE.
 472 *		       Interrupt are masked by EDGE_MASK registers.
 473 * Both-edge handlers: Similar to regular Edge handlers, but also swaps
 474 *		       the polarity to catch the next line transaction.
 475 *		       This is a race condition that might not perfectly
 476 *		       work on some use cases.
 477 *
 478 * Every eight GPIO lines are grouped (OR'ed) before going up to main
 479 * cause register.
 480 *
 481 *		      EDGE  cause    mask
 482 *	  data-in   /--------| |-----| |----\
 483 *     -----| |-----			     ---- to main cause reg
 484 *	     X	    \----------------| |----/
 485 *	  polarity    LEVEL	     mask
 486 *
 487 ****************************************************************************/
 488
 489static int mvebu_gpio_irq_set_type(struct irq_data *d, unsigned int type)
 490{
 491	struct irq_chip_generic *gc = irq_data_get_irq_chip_data(d);
 492	struct irq_chip_type *ct = irq_data_get_chip_type(d);
 493	struct mvebu_gpio_chip *mvchip = gc->private;
 494	int pin;
 495	u32 u;
 496
 497	pin = d->hwirq;
 498
 499	regmap_read(mvchip->regs, GPIO_IO_CONF_OFF + mvchip->offset, &u);
 500	if ((u & BIT(pin)) == 0)
 501		return -EINVAL;
 502
 503	type &= IRQ_TYPE_SENSE_MASK;
 504	if (type == IRQ_TYPE_NONE)
 505		return -EINVAL;
 506
 507	/* Check if we need to change chip and handler */
 508	if (!(ct->type & type))
 509		if (irq_setup_alt_chip(d, type))
 510			return -EINVAL;
 511
 512	/*
 513	 * Configure interrupt polarity.
 514	 */
 515	switch (type) {
 516	case IRQ_TYPE_EDGE_RISING:
 517	case IRQ_TYPE_LEVEL_HIGH:
 518		regmap_update_bits(mvchip->regs,
 519				   GPIO_IN_POL_OFF + mvchip->offset,
 520				   BIT(pin), 0);
 521		break;
 522	case IRQ_TYPE_EDGE_FALLING:
 523	case IRQ_TYPE_LEVEL_LOW:
 524		regmap_update_bits(mvchip->regs,
 525				   GPIO_IN_POL_OFF + mvchip->offset,
 526				   BIT(pin), BIT(pin));
 527		break;
 528	case IRQ_TYPE_EDGE_BOTH: {
 529		u32 data_in, in_pol, val;
 530
 531		regmap_read(mvchip->regs,
 532			    GPIO_IN_POL_OFF + mvchip->offset, &in_pol);
 533		regmap_read(mvchip->regs,
 534			    GPIO_DATA_IN_OFF + mvchip->offset, &data_in);
 535
 536		/*
 537		 * set initial polarity based on current input level
 538		 */
 539		if ((data_in ^ in_pol) & BIT(pin))
 540			val = BIT(pin); /* falling */
 541		else
 542			val = 0; /* raising */
 543
 544		regmap_update_bits(mvchip->regs,
 545				   GPIO_IN_POL_OFF + mvchip->offset,
 546				   BIT(pin), val);
 547		break;
 548	}
 549	}
 550	return 0;
 551}
 552
 553static void mvebu_gpio_irq_handler(struct irq_desc *desc)
 554{
 555	struct mvebu_gpio_chip *mvchip = irq_desc_get_handler_data(desc);
 556	struct irq_chip *chip = irq_desc_get_chip(desc);
 557	u32 cause, type, data_in, level_mask, edge_cause, edge_mask;
 558	int i;
 559
 560	if (mvchip == NULL)
 561		return;
 562
 563	chained_irq_enter(chip, desc);
 564
 565	regmap_read(mvchip->regs, GPIO_DATA_IN_OFF + mvchip->offset, &data_in);
 566	level_mask = mvebu_gpio_read_level_mask(mvchip);
 567	edge_cause = mvebu_gpio_read_edge_cause(mvchip);
 568	edge_mask  = mvebu_gpio_read_edge_mask(mvchip);
 569
 570	cause = (data_in & level_mask) | (edge_cause & edge_mask);
 571
 572	for (i = 0; i < mvchip->chip.ngpio; i++) {
 573		int irq;
 574
 575		irq = irq_find_mapping(mvchip->domain, i);
 576
 577		if (!(cause & BIT(i)))
 578			continue;
 579
 580		type = irq_get_trigger_type(irq);
 581		if ((type & IRQ_TYPE_SENSE_MASK) == IRQ_TYPE_EDGE_BOTH) {
 582			/* Swap polarity (race with GPIO line) */
 583			u32 polarity;
 584
 585			regmap_read(mvchip->regs,
 586				    GPIO_IN_POL_OFF + mvchip->offset,
 587				    &polarity);
 588			polarity ^= BIT(i);
 589			regmap_write(mvchip->regs,
 590				     GPIO_IN_POL_OFF + mvchip->offset,
 591				     polarity);
 592		}
 593
 594		generic_handle_irq(irq);
 595	}
 596
 597	chained_irq_exit(chip, desc);
 598}
 599
 
 
 
 
 
 
 
 600/*
 601 * Functions implementing the pwm_chip methods
 602 */
 603static struct mvebu_pwm *to_mvebu_pwm(struct pwm_chip *chip)
 604{
 605	return container_of(chip, struct mvebu_pwm, chip);
 606}
 607
 608static int mvebu_pwm_request(struct pwm_chip *chip, struct pwm_device *pwm)
 609{
 610	struct mvebu_pwm *mvpwm = to_mvebu_pwm(chip);
 611	struct mvebu_gpio_chip *mvchip = mvpwm->mvchip;
 612	struct gpio_desc *desc;
 613	unsigned long flags;
 614	int ret = 0;
 615
 616	spin_lock_irqsave(&mvpwm->lock, flags);
 617
 618	if (mvpwm->gpiod) {
 619		ret = -EBUSY;
 620	} else {
 621		desc = gpiochip_request_own_desc(&mvchip->chip,
 622						 pwm->hwpwm, "mvebu-pwm",
 623						 GPIO_ACTIVE_HIGH,
 624						 GPIOD_OUT_LOW);
 625		if (IS_ERR(desc)) {
 626			ret = PTR_ERR(desc);
 627			goto out;
 628		}
 629
 630		mvpwm->gpiod = desc;
 631	}
 632out:
 633	spin_unlock_irqrestore(&mvpwm->lock, flags);
 634	return ret;
 635}
 636
 637static void mvebu_pwm_free(struct pwm_chip *chip, struct pwm_device *pwm)
 638{
 639	struct mvebu_pwm *mvpwm = to_mvebu_pwm(chip);
 640	unsigned long flags;
 641
 642	spin_lock_irqsave(&mvpwm->lock, flags);
 643	gpiochip_free_own_desc(mvpwm->gpiod);
 644	mvpwm->gpiod = NULL;
 645	spin_unlock_irqrestore(&mvpwm->lock, flags);
 646}
 647
 648static void mvebu_pwm_get_state(struct pwm_chip *chip,
 649				struct pwm_device *pwm,
 650				struct pwm_state *state) {
 
 651
 652	struct mvebu_pwm *mvpwm = to_mvebu_pwm(chip);
 653	struct mvebu_gpio_chip *mvchip = mvpwm->mvchip;
 654	unsigned long long val;
 655	unsigned long flags;
 656	u32 u;
 657
 658	spin_lock_irqsave(&mvpwm->lock, flags);
 659
 660	val = (unsigned long long)
 661		readl_relaxed(mvebu_pwmreg_blink_on_duration(mvpwm));
 662	val *= NSEC_PER_SEC;
 663	do_div(val, mvpwm->clk_rate);
 664	if (val > UINT_MAX)
 665		state->duty_cycle = UINT_MAX;
 666	else if (val)
 667		state->duty_cycle = val;
 
 
 
 
 
 668	else
 669		state->duty_cycle = 1;
 670
 671	val = (unsigned long long)
 672		readl_relaxed(mvebu_pwmreg_blink_off_duration(mvpwm));
 673	val *= NSEC_PER_SEC;
 674	do_div(val, mvpwm->clk_rate);
 675	if (val < state->duty_cycle) {
 676		state->period = 1;
 677	} else {
 678		val -= state->duty_cycle;
 679		if (val > UINT_MAX)
 680			state->period = UINT_MAX;
 681		else if (val)
 682			state->period = val;
 683		else
 684			state->period = 1;
 685	}
 686
 687	regmap_read(mvchip->regs, GPIO_BLINK_EN_OFF + mvchip->offset, &u);
 688	if (u)
 689		state->enabled = true;
 690	else
 691		state->enabled = false;
 692
 693	spin_unlock_irqrestore(&mvpwm->lock, flags);
 
 
 694}
 695
 696static int mvebu_pwm_apply(struct pwm_chip *chip, struct pwm_device *pwm,
 697			   const struct pwm_state *state)
 698{
 699	struct mvebu_pwm *mvpwm = to_mvebu_pwm(chip);
 700	struct mvebu_gpio_chip *mvchip = mvpwm->mvchip;
 701	unsigned long long val;
 702	unsigned long flags;
 703	unsigned int on, off;
 704
 
 
 
 705	val = (unsigned long long) mvpwm->clk_rate * state->duty_cycle;
 706	do_div(val, NSEC_PER_SEC);
 707	if (val > UINT_MAX)
 708		return -EINVAL;
 709	if (val)
 
 
 
 
 
 
 710		on = val;
 711	else
 712		on = 1;
 713
 714	val = (unsigned long long) mvpwm->clk_rate *
 715		(state->period - state->duty_cycle);
 716	do_div(val, NSEC_PER_SEC);
 717	if (val > UINT_MAX)
 
 718		return -EINVAL;
 719	if (val)
 
 
 720		off = val;
 721	else
 722		off = 1;
 723
 724	spin_lock_irqsave(&mvpwm->lock, flags);
 725
 726	writel_relaxed(on, mvebu_pwmreg_blink_on_duration(mvpwm));
 727	writel_relaxed(off, mvebu_pwmreg_blink_off_duration(mvpwm));
 728	if (state->enabled)
 729		mvebu_gpio_blink(&mvchip->chip, pwm->hwpwm, 1);
 730	else
 731		mvebu_gpio_blink(&mvchip->chip, pwm->hwpwm, 0);
 732
 733	spin_unlock_irqrestore(&mvpwm->lock, flags);
 734
 735	return 0;
 736}
 737
 738static const struct pwm_ops mvebu_pwm_ops = {
 739	.request = mvebu_pwm_request,
 740	.free = mvebu_pwm_free,
 741	.get_state = mvebu_pwm_get_state,
 742	.apply = mvebu_pwm_apply,
 743	.owner = THIS_MODULE,
 744};
 745
 746static void __maybe_unused mvebu_pwm_suspend(struct mvebu_gpio_chip *mvchip)
 747{
 748	struct mvebu_pwm *mvpwm = mvchip->mvpwm;
 749
 750	regmap_read(mvchip->regs, GPIO_BLINK_CNT_SELECT_OFF + mvchip->offset,
 751		    &mvpwm->blink_select);
 752	mvpwm->blink_on_duration =
 753		readl_relaxed(mvebu_pwmreg_blink_on_duration(mvpwm));
 754	mvpwm->blink_off_duration =
 755		readl_relaxed(mvebu_pwmreg_blink_off_duration(mvpwm));
 756}
 757
 758static void __maybe_unused mvebu_pwm_resume(struct mvebu_gpio_chip *mvchip)
 759{
 760	struct mvebu_pwm *mvpwm = mvchip->mvpwm;
 761
 762	regmap_write(mvchip->regs, GPIO_BLINK_CNT_SELECT_OFF + mvchip->offset,
 763		     mvpwm->blink_select);
 764	writel_relaxed(mvpwm->blink_on_duration,
 765		       mvebu_pwmreg_blink_on_duration(mvpwm));
 766	writel_relaxed(mvpwm->blink_off_duration,
 767		       mvebu_pwmreg_blink_off_duration(mvpwm));
 768}
 769
 770static int mvebu_pwm_probe(struct platform_device *pdev,
 771			   struct mvebu_gpio_chip *mvchip,
 772			   int id)
 773{
 774	struct device *dev = &pdev->dev;
 775	struct mvebu_pwm *mvpwm;
 776	struct resource *res;
 
 777	u32 set;
 778
 779	if (!of_device_is_compatible(mvchip->chip.of_node,
 780				     "marvell,armada-370-gpio"))
 781		return 0;
 782
 783	/*
 784	 * There are only two sets of PWM configuration registers for
 785	 * all the GPIO lines on those SoCs which this driver reserves
 786	 * for the first two GPIO chips. So if the resource is missing
 787	 * we can't treat it as an error.
 788	 */
 789	res = platform_get_resource_byname(pdev, IORESOURCE_MEM, "pwm");
 790	if (!res)
 791		return 0;
 
 
 
 792
 793	if (IS_ERR(mvchip->clk))
 794		return PTR_ERR(mvchip->clk);
 795
 796	/*
 797	 * Use set A for lines of GPIO chip with id 0, B for GPIO chip
 798	 * with id 1. Don't allow further GPIO chips to be used for PWM.
 799	 */
 800	if (id == 0)
 801		set = 0;
 802	else if (id == 1)
 803		set = U32_MAX;
 804	else
 805		return -EINVAL;
 806	regmap_write(mvchip->regs,
 807		     GPIO_BLINK_CNT_SELECT_OFF + mvchip->offset, set);
 808
 809	mvpwm = devm_kzalloc(dev, sizeof(struct mvebu_pwm), GFP_KERNEL);
 810	if (!mvpwm)
 811		return -ENOMEM;
 812	mvchip->mvpwm = mvpwm;
 813	mvpwm->mvchip = mvchip;
 
 
 
 
 814
 815	mvpwm->membase = devm_ioremap_resource(dev, res);
 816	if (IS_ERR(mvpwm->membase))
 817		return PTR_ERR(mvpwm->membase);
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 818
 819	mvpwm->clk_rate = clk_get_rate(mvchip->clk);
 820	if (!mvpwm->clk_rate) {
 821		dev_err(dev, "failed to get clock rate\n");
 822		return -EINVAL;
 823	}
 824
 825	mvpwm->chip.dev = dev;
 826	mvpwm->chip.ops = &mvebu_pwm_ops;
 827	mvpwm->chip.npwm = mvchip->chip.ngpio;
 828	/*
 829	 * There may already be some PWM allocated, so we can't force
 830	 * mvpwm->chip.base to a fixed point like mvchip->chip.base.
 831	 * So, we let pwmchip_add() do the numbering and take the next free
 832	 * region.
 833	 */
 834	mvpwm->chip.base = -1;
 835
 836	spin_lock_init(&mvpwm->lock);
 837
 838	return pwmchip_add(&mvpwm->chip);
 839}
 840
 841#ifdef CONFIG_DEBUG_FS
 842#include <linux/seq_file.h>
 843
 844static void mvebu_gpio_dbg_show(struct seq_file *s, struct gpio_chip *chip)
 845{
 846	struct mvebu_gpio_chip *mvchip = gpiochip_get_data(chip);
 847	u32 out, io_conf, blink, in_pol, data_in, cause, edg_msk, lvl_msk;
 
 848	int i;
 849
 850	regmap_read(mvchip->regs, GPIO_OUT_OFF + mvchip->offset, &out);
 851	regmap_read(mvchip->regs, GPIO_IO_CONF_OFF + mvchip->offset, &io_conf);
 852	regmap_read(mvchip->regs, GPIO_BLINK_EN_OFF + mvchip->offset, &blink);
 853	regmap_read(mvchip->regs, GPIO_IN_POL_OFF + mvchip->offset, &in_pol);
 854	regmap_read(mvchip->regs, GPIO_DATA_IN_OFF + mvchip->offset, &data_in);
 855	cause	= mvebu_gpio_read_edge_cause(mvchip);
 856	edg_msk	= mvebu_gpio_read_edge_mask(mvchip);
 857	lvl_msk	= mvebu_gpio_read_level_mask(mvchip);
 858
 859	for (i = 0; i < chip->ngpio; i++) {
 860		const char *label;
 861		u32 msk;
 862		bool is_out;
 863
 864		label = gpiochip_is_requested(chip, i);
 865		if (!label)
 866			continue;
 867
 868		msk = BIT(i);
 869		is_out = !(io_conf & msk);
 870
 871		seq_printf(s, " gpio-%-3d (%-20.20s)", chip->base + i, label);
 872
 873		if (is_out) {
 874			seq_printf(s, " out %s %s\n",
 875				   out & msk ? "hi" : "lo",
 876				   blink & msk ? "(blink )" : "");
 877			continue;
 878		}
 879
 880		seq_printf(s, " in  %s (act %s) - IRQ",
 881			   (data_in ^ in_pol) & msk  ? "hi" : "lo",
 882			   in_pol & msk ? "lo" : "hi");
 883		if (!((edg_msk | lvl_msk) & msk)) {
 884			seq_puts(s, " disabled\n");
 885			continue;
 886		}
 887		if (edg_msk & msk)
 888			seq_puts(s, " edge ");
 889		if (lvl_msk & msk)
 890			seq_puts(s, " level");
 891		seq_printf(s, " (%s)\n", cause & msk ? "pending" : "clear  ");
 892	}
 893}
 894#else
 895#define mvebu_gpio_dbg_show NULL
 896#endif
 897
 898static const struct of_device_id mvebu_gpio_of_match[] = {
 899	{
 900		.compatible = "marvell,orion-gpio",
 901		.data	    = (void *) MVEBU_GPIO_SOC_VARIANT_ORION,
 902	},
 903	{
 904		.compatible = "marvell,mv78200-gpio",
 905		.data	    = (void *) MVEBU_GPIO_SOC_VARIANT_MV78200,
 906	},
 907	{
 908		.compatible = "marvell,armadaxp-gpio",
 909		.data	    = (void *) MVEBU_GPIO_SOC_VARIANT_ARMADAXP,
 910	},
 911	{
 912		.compatible = "marvell,armada-370-gpio",
 913		.data	    = (void *) MVEBU_GPIO_SOC_VARIANT_ORION,
 914	},
 915	{
 916		.compatible = "marvell,armada-8k-gpio",
 917		.data       = (void *) MVEBU_GPIO_SOC_VARIANT_A8K,
 918	},
 919	{
 920		/* sentinel */
 921	},
 922};
 923
 924static int mvebu_gpio_suspend(struct platform_device *pdev, pm_message_t state)
 925{
 926	struct mvebu_gpio_chip *mvchip = platform_get_drvdata(pdev);
 927	int i;
 928
 929	regmap_read(mvchip->regs, GPIO_OUT_OFF + mvchip->offset,
 930		    &mvchip->out_reg);
 931	regmap_read(mvchip->regs, GPIO_IO_CONF_OFF + mvchip->offset,
 932		    &mvchip->io_conf_reg);
 933	regmap_read(mvchip->regs, GPIO_BLINK_EN_OFF + mvchip->offset,
 934		    &mvchip->blink_en_reg);
 935	regmap_read(mvchip->regs, GPIO_IN_POL_OFF + mvchip->offset,
 936		    &mvchip->in_pol_reg);
 937
 938	switch (mvchip->soc_variant) {
 939	case MVEBU_GPIO_SOC_VARIANT_ORION:
 940	case MVEBU_GPIO_SOC_VARIANT_A8K:
 941		regmap_read(mvchip->regs, GPIO_EDGE_MASK_OFF + mvchip->offset,
 942			    &mvchip->edge_mask_regs[0]);
 943		regmap_read(mvchip->regs, GPIO_LEVEL_MASK_OFF + mvchip->offset,
 944			    &mvchip->level_mask_regs[0]);
 945		break;
 946	case MVEBU_GPIO_SOC_VARIANT_MV78200:
 947		for (i = 0; i < 2; i++) {
 948			regmap_read(mvchip->regs,
 949				    GPIO_EDGE_MASK_MV78200_OFF(i),
 950				    &mvchip->edge_mask_regs[i]);
 951			regmap_read(mvchip->regs,
 952				    GPIO_LEVEL_MASK_MV78200_OFF(i),
 953				    &mvchip->level_mask_regs[i]);
 954		}
 955		break;
 956	case MVEBU_GPIO_SOC_VARIANT_ARMADAXP:
 957		for (i = 0; i < 4; i++) {
 958			regmap_read(mvchip->regs,
 959				    GPIO_EDGE_MASK_ARMADAXP_OFF(i),
 960				    &mvchip->edge_mask_regs[i]);
 961			regmap_read(mvchip->regs,
 962				    GPIO_LEVEL_MASK_ARMADAXP_OFF(i),
 963				    &mvchip->level_mask_regs[i]);
 964		}
 965		break;
 966	default:
 967		BUG();
 968	}
 969
 970	if (IS_ENABLED(CONFIG_PWM))
 971		mvebu_pwm_suspend(mvchip);
 972
 973	return 0;
 974}
 975
 976static int mvebu_gpio_resume(struct platform_device *pdev)
 977{
 978	struct mvebu_gpio_chip *mvchip = platform_get_drvdata(pdev);
 979	int i;
 980
 981	regmap_write(mvchip->regs, GPIO_OUT_OFF + mvchip->offset,
 982		     mvchip->out_reg);
 983	regmap_write(mvchip->regs, GPIO_IO_CONF_OFF + mvchip->offset,
 984		     mvchip->io_conf_reg);
 985	regmap_write(mvchip->regs, GPIO_BLINK_EN_OFF + mvchip->offset,
 986		     mvchip->blink_en_reg);
 987	regmap_write(mvchip->regs, GPIO_IN_POL_OFF + mvchip->offset,
 988		     mvchip->in_pol_reg);
 989
 990	switch (mvchip->soc_variant) {
 991	case MVEBU_GPIO_SOC_VARIANT_ORION:
 992	case MVEBU_GPIO_SOC_VARIANT_A8K:
 993		regmap_write(mvchip->regs, GPIO_EDGE_MASK_OFF + mvchip->offset,
 994			     mvchip->edge_mask_regs[0]);
 995		regmap_write(mvchip->regs, GPIO_LEVEL_MASK_OFF + mvchip->offset,
 996			     mvchip->level_mask_regs[0]);
 997		break;
 998	case MVEBU_GPIO_SOC_VARIANT_MV78200:
 999		for (i = 0; i < 2; i++) {
1000			regmap_write(mvchip->regs,
1001				     GPIO_EDGE_MASK_MV78200_OFF(i),
1002				     mvchip->edge_mask_regs[i]);
1003			regmap_write(mvchip->regs,
1004				     GPIO_LEVEL_MASK_MV78200_OFF(i),
1005				     mvchip->level_mask_regs[i]);
1006		}
1007		break;
1008	case MVEBU_GPIO_SOC_VARIANT_ARMADAXP:
1009		for (i = 0; i < 4; i++) {
1010			regmap_write(mvchip->regs,
1011				     GPIO_EDGE_MASK_ARMADAXP_OFF(i),
1012				     mvchip->edge_mask_regs[i]);
1013			regmap_write(mvchip->regs,
1014				     GPIO_LEVEL_MASK_ARMADAXP_OFF(i),
1015				     mvchip->level_mask_regs[i]);
1016		}
1017		break;
1018	default:
1019		BUG();
1020	}
1021
1022	if (IS_ENABLED(CONFIG_PWM))
1023		mvebu_pwm_resume(mvchip);
1024
1025	return 0;
1026}
1027
1028static const struct regmap_config mvebu_gpio_regmap_config = {
1029	.reg_bits = 32,
1030	.reg_stride = 4,
1031	.val_bits = 32,
1032	.fast_io = true,
1033};
1034
1035static int mvebu_gpio_probe_raw(struct platform_device *pdev,
1036				struct mvebu_gpio_chip *mvchip)
1037{
1038	void __iomem *base;
1039
1040	base = devm_platform_ioremap_resource(pdev, 0);
1041	if (IS_ERR(base))
1042		return PTR_ERR(base);
1043
1044	mvchip->regs = devm_regmap_init_mmio(&pdev->dev, base,
1045					     &mvebu_gpio_regmap_config);
1046	if (IS_ERR(mvchip->regs))
1047		return PTR_ERR(mvchip->regs);
1048
1049	/*
1050	 * For the legacy SoCs, the regmap directly maps to the GPIO
1051	 * registers, so no offset is needed.
1052	 */
1053	mvchip->offset = 0;
1054
1055	/*
1056	 * The Armada XP has a second range of registers for the
1057	 * per-CPU registers
1058	 */
1059	if (mvchip->soc_variant == MVEBU_GPIO_SOC_VARIANT_ARMADAXP) {
1060		base = devm_platform_ioremap_resource(pdev, 1);
1061		if (IS_ERR(base))
1062			return PTR_ERR(base);
1063
1064		mvchip->percpu_regs =
1065			devm_regmap_init_mmio(&pdev->dev, base,
1066					      &mvebu_gpio_regmap_config);
1067		if (IS_ERR(mvchip->percpu_regs))
1068			return PTR_ERR(mvchip->percpu_regs);
1069	}
1070
1071	return 0;
1072}
1073
1074static int mvebu_gpio_probe_syscon(struct platform_device *pdev,
1075				   struct mvebu_gpio_chip *mvchip)
1076{
1077	mvchip->regs = syscon_node_to_regmap(pdev->dev.parent->of_node);
1078	if (IS_ERR(mvchip->regs))
1079		return PTR_ERR(mvchip->regs);
1080
1081	if (of_property_read_u32(pdev->dev.of_node, "offset", &mvchip->offset))
1082		return -EINVAL;
1083
1084	return 0;
1085}
1086
 
 
 
 
 
 
 
1087static int mvebu_gpio_probe(struct platform_device *pdev)
1088{
1089	struct mvebu_gpio_chip *mvchip;
1090	const struct of_device_id *match;
1091	struct device_node *np = pdev->dev.of_node;
1092	struct irq_chip_generic *gc;
1093	struct irq_chip_type *ct;
1094	unsigned int ngpios;
1095	bool have_irqs;
1096	int soc_variant;
1097	int i, cpu, id;
1098	int err;
1099
1100	match = of_match_device(mvebu_gpio_of_match, &pdev->dev);
1101	if (match)
1102		soc_variant = (unsigned long) match->data;
1103	else
1104		soc_variant = MVEBU_GPIO_SOC_VARIANT_ORION;
1105
1106	/* Some gpio controllers do not provide irq support */
1107	have_irqs = of_irq_count(np) != 0;
 
 
 
 
1108
1109	mvchip = devm_kzalloc(&pdev->dev, sizeof(struct mvebu_gpio_chip),
1110			      GFP_KERNEL);
1111	if (!mvchip)
1112		return -ENOMEM;
1113
1114	platform_set_drvdata(pdev, mvchip);
1115
1116	if (of_property_read_u32(pdev->dev.of_node, "ngpios", &ngpios)) {
1117		dev_err(&pdev->dev, "Missing ngpios OF property\n");
1118		return -ENODEV;
1119	}
1120
1121	id = of_alias_get_id(pdev->dev.of_node, "gpio");
1122	if (id < 0) {
1123		dev_err(&pdev->dev, "Couldn't get OF id\n");
1124		return id;
1125	}
1126
1127	mvchip->clk = devm_clk_get(&pdev->dev, NULL);
1128	/* Not all SoCs require a clock.*/
1129	if (!IS_ERR(mvchip->clk))
1130		clk_prepare_enable(mvchip->clk);
1131
1132	mvchip->soc_variant = soc_variant;
1133	mvchip->chip.label = dev_name(&pdev->dev);
1134	mvchip->chip.parent = &pdev->dev;
1135	mvchip->chip.request = gpiochip_generic_request;
1136	mvchip->chip.free = gpiochip_generic_free;
1137	mvchip->chip.get_direction = mvebu_gpio_get_direction;
1138	mvchip->chip.direction_input = mvebu_gpio_direction_input;
1139	mvchip->chip.get = mvebu_gpio_get;
1140	mvchip->chip.direction_output = mvebu_gpio_direction_output;
1141	mvchip->chip.set = mvebu_gpio_set;
1142	if (have_irqs)
1143		mvchip->chip.to_irq = mvebu_gpio_to_irq;
1144	mvchip->chip.base = id * MVEBU_MAX_GPIO_PER_BANK;
1145	mvchip->chip.ngpio = ngpios;
1146	mvchip->chip.can_sleep = false;
1147	mvchip->chip.of_node = np;
1148	mvchip->chip.dbg_show = mvebu_gpio_dbg_show;
1149
1150	if (soc_variant == MVEBU_GPIO_SOC_VARIANT_A8K)
1151		err = mvebu_gpio_probe_syscon(pdev, mvchip);
1152	else
1153		err = mvebu_gpio_probe_raw(pdev, mvchip);
1154
1155	if (err)
1156		return err;
1157
1158	/*
1159	 * Mask and clear GPIO interrupts.
1160	 */
1161	switch (soc_variant) {
1162	case MVEBU_GPIO_SOC_VARIANT_ORION:
1163	case MVEBU_GPIO_SOC_VARIANT_A8K:
1164		regmap_write(mvchip->regs,
1165			     GPIO_EDGE_CAUSE_OFF + mvchip->offset, 0);
1166		regmap_write(mvchip->regs,
1167			     GPIO_EDGE_MASK_OFF + mvchip->offset, 0);
1168		regmap_write(mvchip->regs,
1169			     GPIO_LEVEL_MASK_OFF + mvchip->offset, 0);
1170		break;
1171	case MVEBU_GPIO_SOC_VARIANT_MV78200:
1172		regmap_write(mvchip->regs, GPIO_EDGE_CAUSE_OFF, 0);
1173		for (cpu = 0; cpu < 2; cpu++) {
1174			regmap_write(mvchip->regs,
1175				     GPIO_EDGE_MASK_MV78200_OFF(cpu), 0);
1176			regmap_write(mvchip->regs,
1177				     GPIO_LEVEL_MASK_MV78200_OFF(cpu), 0);
1178		}
1179		break;
1180	case MVEBU_GPIO_SOC_VARIANT_ARMADAXP:
1181		regmap_write(mvchip->regs, GPIO_EDGE_CAUSE_OFF, 0);
1182		regmap_write(mvchip->regs, GPIO_EDGE_MASK_OFF, 0);
1183		regmap_write(mvchip->regs, GPIO_LEVEL_MASK_OFF, 0);
1184		for (cpu = 0; cpu < 4; cpu++) {
1185			regmap_write(mvchip->percpu_regs,
1186				     GPIO_EDGE_CAUSE_ARMADAXP_OFF(cpu), 0);
1187			regmap_write(mvchip->percpu_regs,
1188				     GPIO_EDGE_MASK_ARMADAXP_OFF(cpu), 0);
1189			regmap_write(mvchip->percpu_regs,
1190				     GPIO_LEVEL_MASK_ARMADAXP_OFF(cpu), 0);
1191		}
1192		break;
1193	default:
1194		BUG();
1195	}
1196
1197	devm_gpiochip_add_data(&pdev->dev, &mvchip->chip, mvchip);
1198
 
 
 
 
 
 
 
1199	/* Some gpio controllers do not provide irq support */
1200	if (!have_irqs)
1201		return 0;
1202
1203	mvchip->domain =
1204	    irq_domain_add_linear(np, ngpios, &irq_generic_chip_ops, NULL);
1205	if (!mvchip->domain) {
1206		dev_err(&pdev->dev, "couldn't allocate irq domain %s (DT).\n",
1207			mvchip->chip.label);
1208		return -ENODEV;
1209	}
1210
 
 
 
 
 
1211	err = irq_alloc_domain_generic_chips(
1212	    mvchip->domain, ngpios, 2, np->name, handle_level_irq,
1213	    IRQ_NOREQUEST | IRQ_NOPROBE | IRQ_LEVEL, 0, 0);
1214	if (err) {
1215		dev_err(&pdev->dev, "couldn't allocate irq chips %s (DT).\n",
1216			mvchip->chip.label);
1217		goto err_domain;
1218	}
1219
1220	/*
1221	 * NOTE: The common accessors cannot be used because of the percpu
1222	 * access to the mask registers
1223	 */
1224	gc = irq_get_domain_generic_chip(mvchip->domain, 0);
1225	gc->private = mvchip;
1226	ct = &gc->chip_types[0];
1227	ct->type = IRQ_TYPE_LEVEL_HIGH | IRQ_TYPE_LEVEL_LOW;
1228	ct->chip.irq_mask = mvebu_gpio_level_irq_mask;
1229	ct->chip.irq_unmask = mvebu_gpio_level_irq_unmask;
1230	ct->chip.irq_set_type = mvebu_gpio_irq_set_type;
1231	ct->chip.name = mvchip->chip.label;
1232
1233	ct = &gc->chip_types[1];
1234	ct->type = IRQ_TYPE_EDGE_RISING | IRQ_TYPE_EDGE_FALLING;
1235	ct->chip.irq_ack = mvebu_gpio_irq_ack;
1236	ct->chip.irq_mask = mvebu_gpio_edge_irq_mask;
1237	ct->chip.irq_unmask = mvebu_gpio_edge_irq_unmask;
1238	ct->chip.irq_set_type = mvebu_gpio_irq_set_type;
1239	ct->handler = handle_edge_irq;
1240	ct->chip.name = mvchip->chip.label;
1241
1242	/*
1243	 * Setup the interrupt handlers. Each chip can have up to 4
1244	 * interrupt handlers, with each handler dealing with 8 GPIO
1245	 * pins.
1246	 */
1247	for (i = 0; i < 4; i++) {
1248		int irq = platform_get_irq(pdev, i);
1249
1250		if (irq < 0)
1251			continue;
1252		irq_set_chained_handler_and_data(irq, mvebu_gpio_irq_handler,
1253						 mvchip);
1254	}
1255
1256	/* Some MVEBU SoCs have simple PWM support for GPIO lines */
1257	if (IS_ENABLED(CONFIG_PWM))
1258		return mvebu_pwm_probe(pdev, mvchip, id);
1259
1260	return 0;
1261
1262err_domain:
1263	irq_domain_remove(mvchip->domain);
1264
1265	return err;
1266}
1267
1268static struct platform_driver mvebu_gpio_driver = {
1269	.driver		= {
1270		.name		= "mvebu-gpio",
1271		.of_match_table = mvebu_gpio_of_match,
1272	},
1273	.probe		= mvebu_gpio_probe,
1274	.suspend        = mvebu_gpio_suspend,
1275	.resume         = mvebu_gpio_resume,
1276};
1277builtin_platform_driver(mvebu_gpio_driver);