2 * arch/arm/mach-ep93xx/core.c
3 * Core routines for Cirrus EP93xx chips.
5 * Copyright (C) 2006 Lennert Buytenhek <buytenh@wantstofly.org>
6 * Copyright (C) 2007 Herbert Valerio Riedel <hvr@gnu.org>
8 * Thanks go to Michael Burian and Ray Lehtiniemi for their key
9 * role in the ep93xx linux community.
11 * This program is free software; you can redistribute it and/or modify
12 * it under the terms of the GNU General Public License as published by
13 * the Free Software Foundation; either version 2 of the License, or (at
14 * your option) any later version.
17 #define pr_fmt(fmt) "ep93xx " KBUILD_MODNAME ": " fmt
19 #include <linux/kernel.h>
20 #include <linux/init.h>
21 #include <linux/platform_device.h>
22 #include <linux/interrupt.h>
23 #include <linux/dma-mapping.h>
24 #include <linux/sys_soc.h>
25 #include <linux/timex.h>
26 #include <linux/irq.h>
28 #include <linux/gpio.h>
29 #include <linux/leds.h>
30 #include <linux/termios.h>
31 #include <linux/amba/bus.h>
32 #include <linux/amba/serial.h>
33 #include <linux/mtd/physmap.h>
34 #include <linux/i2c.h>
35 #include <linux/i2c-gpio.h>
36 #include <linux/spi/spi.h>
37 #include <linux/export.h>
38 #include <linux/irqchip/arm-vic.h>
39 #include <linux/reboot.h>
40 #include <linux/usb/ohci_pdriver.h>
42 #include <mach/hardware.h>
43 #include <linux/platform_data/video-ep93xx.h>
44 #include <linux/platform_data/keypad-ep93xx.h>
45 #include <linux/platform_data/spi-ep93xx.h>
46 #include <mach/gpio-ep93xx.h>
48 #include <asm/mach/arch.h>
49 #include <asm/mach/map.h>
50 #include <asm/mach/time.h>
54 /*************************************************************************
55 * Static I/O mappings that are needed for all EP93xx platforms
56 *************************************************************************/
57 static struct map_desc ep93xx_io_desc
[] __initdata
= {
59 .virtual = EP93XX_AHB_VIRT_BASE
,
60 .pfn
= __phys_to_pfn(EP93XX_AHB_PHYS_BASE
),
61 .length
= EP93XX_AHB_SIZE
,
64 .virtual = EP93XX_APB_VIRT_BASE
,
65 .pfn
= __phys_to_pfn(EP93XX_APB_PHYS_BASE
),
66 .length
= EP93XX_APB_SIZE
,
71 void __init
ep93xx_map_io(void)
73 iotable_init(ep93xx_io_desc
, ARRAY_SIZE(ep93xx_io_desc
));
77 /*************************************************************************
78 * Timer handling for EP93xx
79 *************************************************************************
80 * The ep93xx has four internal timers. Timers 1, 2 (both 16 bit) and
81 * 3 (32 bit) count down at 508 kHz, are self-reloading, and can generate
82 * an interrupt on underflow. Timer 4 (40 bit) counts down at 983.04 kHz,
83 * is free-running, and can't generate interrupts.
85 * The 508 kHz timers are ideal for use for the timer interrupt, as the
86 * most common values of HZ divide 508 kHz nicely. We pick one of the 16
87 * bit timers (timer 1) since we don't need more than 16 bits of reload
88 * value as long as HZ >= 8.
90 * The higher clock rate of timer 4 makes it a better choice than the
91 * other timers for use in gettimeoffset(), while the fact that it can't
92 * generate interrupts means we don't have to worry about not being able
93 * to use this timer for something else. We also use timer 4 for keeping
94 * track of lost jiffies.
96 #define EP93XX_TIMER_REG(x) (EP93XX_TIMER_BASE + (x))
97 #define EP93XX_TIMER1_LOAD EP93XX_TIMER_REG(0x00)
98 #define EP93XX_TIMER1_VALUE EP93XX_TIMER_REG(0x04)
99 #define EP93XX_TIMER1_CONTROL EP93XX_TIMER_REG(0x08)
100 #define EP93XX_TIMER123_CONTROL_ENABLE (1 << 7)
101 #define EP93XX_TIMER123_CONTROL_MODE (1 << 6)
102 #define EP93XX_TIMER123_CONTROL_CLKSEL (1 << 3)
103 #define EP93XX_TIMER1_CLEAR EP93XX_TIMER_REG(0x0c)
104 #define EP93XX_TIMER2_LOAD EP93XX_TIMER_REG(0x20)
105 #define EP93XX_TIMER2_VALUE EP93XX_TIMER_REG(0x24)
106 #define EP93XX_TIMER2_CONTROL EP93XX_TIMER_REG(0x28)
107 #define EP93XX_TIMER2_CLEAR EP93XX_TIMER_REG(0x2c)
108 #define EP93XX_TIMER4_VALUE_LOW EP93XX_TIMER_REG(0x60)
109 #define EP93XX_TIMER4_VALUE_HIGH EP93XX_TIMER_REG(0x64)
110 #define EP93XX_TIMER4_VALUE_HIGH_ENABLE (1 << 8)
111 #define EP93XX_TIMER3_LOAD EP93XX_TIMER_REG(0x80)
112 #define EP93XX_TIMER3_VALUE EP93XX_TIMER_REG(0x84)
113 #define EP93XX_TIMER3_CONTROL EP93XX_TIMER_REG(0x88)
114 #define EP93XX_TIMER3_CLEAR EP93XX_TIMER_REG(0x8c)
116 #define EP93XX_TIMER123_CLOCK 508469
117 #define EP93XX_TIMER4_CLOCK 983040
119 #define TIMER1_RELOAD ((EP93XX_TIMER123_CLOCK / HZ) - 1)
120 #define TIMER4_TICKS_PER_JIFFY DIV_ROUND_CLOSEST(EP93XX_TIMER4_CLOCK, HZ)
122 static unsigned int last_jiffy_time
;
124 static irqreturn_t
ep93xx_timer_interrupt(int irq
, void *dev_id
)
126 /* Writing any value clears the timer interrupt */
127 __raw_writel(1, EP93XX_TIMER1_CLEAR
);
129 /* Recover lost jiffies */
131 (__raw_readl(EP93XX_TIMER4_VALUE_LOW
) - last_jiffy_time
)
132 >= TIMER4_TICKS_PER_JIFFY
) {
133 last_jiffy_time
+= TIMER4_TICKS_PER_JIFFY
;
140 static struct irqaction ep93xx_timer_irq
= {
141 .name
= "ep93xx timer",
142 .flags
= IRQF_TIMER
| IRQF_IRQPOLL
,
143 .handler
= ep93xx_timer_interrupt
,
146 static u32
ep93xx_gettimeoffset(void)
150 offset
= __raw_readl(EP93XX_TIMER4_VALUE_LOW
) - last_jiffy_time
;
153 * Timer 4 is based on a 983.04 kHz reference clock,
154 * so dividing by 983040 gives the fraction of a second,
155 * so dividing by 0.983040 converts to uS.
156 * Refactor the calculation to avoid overflow.
157 * Finally, multiply by 1000 to give nS.
159 return (offset
+ (53 * offset
/ 3072)) * 1000;
162 void __init
ep93xx_timer_init(void)
164 u32 tmode
= EP93XX_TIMER123_CONTROL_MODE
|
165 EP93XX_TIMER123_CONTROL_CLKSEL
;
167 arch_gettimeoffset
= ep93xx_gettimeoffset
;
169 /* Enable periodic HZ timer. */
170 __raw_writel(tmode
, EP93XX_TIMER1_CONTROL
);
171 __raw_writel(TIMER1_RELOAD
, EP93XX_TIMER1_LOAD
);
172 __raw_writel(tmode
| EP93XX_TIMER123_CONTROL_ENABLE
,
173 EP93XX_TIMER1_CONTROL
);
175 /* Enable lost jiffy timer. */
176 __raw_writel(EP93XX_TIMER4_VALUE_HIGH_ENABLE
,
177 EP93XX_TIMER4_VALUE_HIGH
);
179 setup_irq(IRQ_EP93XX_TIMER1
, &ep93xx_timer_irq
);
183 /*************************************************************************
184 * EP93xx IRQ handling
185 *************************************************************************/
186 void __init
ep93xx_init_irq(void)
188 vic_init(EP93XX_VIC1_BASE
, 0, EP93XX_VIC1_VALID_IRQ_MASK
, 0);
189 vic_init(EP93XX_VIC2_BASE
, 32, EP93XX_VIC2_VALID_IRQ_MASK
, 0);
193 /*************************************************************************
194 * EP93xx System Controller Software Locked register handling
195 *************************************************************************/
198 * syscon_swlock prevents anything else from writing to the syscon
199 * block while a software locked register is being written.
201 static DEFINE_SPINLOCK(syscon_swlock
);
203 void ep93xx_syscon_swlocked_write(unsigned int val
, void __iomem
*reg
)
207 spin_lock_irqsave(&syscon_swlock
, flags
);
209 __raw_writel(0xaa, EP93XX_SYSCON_SWLOCK
);
210 __raw_writel(val
, reg
);
212 spin_unlock_irqrestore(&syscon_swlock
, flags
);
215 void ep93xx_devcfg_set_clear(unsigned int set_bits
, unsigned int clear_bits
)
220 spin_lock_irqsave(&syscon_swlock
, flags
);
222 val
= __raw_readl(EP93XX_SYSCON_DEVCFG
);
225 __raw_writel(0xaa, EP93XX_SYSCON_SWLOCK
);
226 __raw_writel(val
, EP93XX_SYSCON_DEVCFG
);
228 spin_unlock_irqrestore(&syscon_swlock
, flags
);
232 * ep93xx_chip_revision() - returns the EP93xx chip revision
234 * See <mach/platform.h> for more information.
236 unsigned int ep93xx_chip_revision(void)
240 v
= __raw_readl(EP93XX_SYSCON_SYSCFG
);
241 v
&= EP93XX_SYSCON_SYSCFG_REV_MASK
;
242 v
>>= EP93XX_SYSCON_SYSCFG_REV_SHIFT
;
245 EXPORT_SYMBOL_GPL(ep93xx_chip_revision
);
247 /*************************************************************************
249 *************************************************************************/
250 static struct resource ep93xx_gpio_resource
[] = {
251 DEFINE_RES_MEM(EP93XX_GPIO_PHYS_BASE
, 0xcc),
254 static struct platform_device ep93xx_gpio_device
= {
255 .name
= "gpio-ep93xx",
257 .num_resources
= ARRAY_SIZE(ep93xx_gpio_resource
),
258 .resource
= ep93xx_gpio_resource
,
261 /*************************************************************************
262 * EP93xx peripheral handling
263 *************************************************************************/
264 #define EP93XX_UART_MCR_OFFSET (0x0100)
266 static void ep93xx_uart_set_mctrl(struct amba_device
*dev
,
267 void __iomem
*base
, unsigned int mctrl
)
272 if (mctrl
& TIOCM_RTS
)
274 if (mctrl
& TIOCM_DTR
)
277 __raw_writel(mcr
, base
+ EP93XX_UART_MCR_OFFSET
);
280 static struct amba_pl010_data ep93xx_uart_data
= {
281 .set_mctrl
= ep93xx_uart_set_mctrl
,
284 static AMBA_APB_DEVICE(uart1
, "apb:uart1", 0x00041010, EP93XX_UART1_PHYS_BASE
,
285 { IRQ_EP93XX_UART1
}, &ep93xx_uart_data
);
287 static AMBA_APB_DEVICE(uart2
, "apb:uart2", 0x00041010, EP93XX_UART2_PHYS_BASE
,
288 { IRQ_EP93XX_UART2
}, NULL
);
290 static AMBA_APB_DEVICE(uart3
, "apb:uart3", 0x00041010, EP93XX_UART3_PHYS_BASE
,
291 { IRQ_EP93XX_UART3
}, &ep93xx_uart_data
);
293 static struct resource ep93xx_rtc_resource
[] = {
294 DEFINE_RES_MEM(EP93XX_RTC_PHYS_BASE
, 0x10c),
297 static struct platform_device ep93xx_rtc_device
= {
298 .name
= "ep93xx-rtc",
300 .num_resources
= ARRAY_SIZE(ep93xx_rtc_resource
),
301 .resource
= ep93xx_rtc_resource
,
304 /*************************************************************************
305 * EP93xx OHCI USB Host
306 *************************************************************************/
308 static struct clk
*ep93xx_ohci_host_clock
;
310 static int ep93xx_ohci_power_on(struct platform_device
*pdev
)
312 if (!ep93xx_ohci_host_clock
) {
313 ep93xx_ohci_host_clock
= devm_clk_get(&pdev
->dev
, NULL
);
314 if (IS_ERR(ep93xx_ohci_host_clock
))
315 return PTR_ERR(ep93xx_ohci_host_clock
);
318 return clk_enable(ep93xx_ohci_host_clock
);
321 static void ep93xx_ohci_power_off(struct platform_device
*pdev
)
323 clk_disable(ep93xx_ohci_host_clock
);
326 static struct usb_ohci_pdata ep93xx_ohci_pdata
= {
327 .power_on
= ep93xx_ohci_power_on
,
328 .power_off
= ep93xx_ohci_power_off
,
329 .power_suspend
= ep93xx_ohci_power_off
,
332 static struct resource ep93xx_ohci_resources
[] = {
333 DEFINE_RES_MEM(EP93XX_USB_PHYS_BASE
, 0x1000),
334 DEFINE_RES_IRQ(IRQ_EP93XX_USB
),
337 static u64 ep93xx_ohci_dma_mask
= DMA_BIT_MASK(32);
339 static struct platform_device ep93xx_ohci_device
= {
340 .name
= "ohci-platform",
342 .num_resources
= ARRAY_SIZE(ep93xx_ohci_resources
),
343 .resource
= ep93xx_ohci_resources
,
345 .dma_mask
= &ep93xx_ohci_dma_mask
,
346 .coherent_dma_mask
= DMA_BIT_MASK(32),
347 .platform_data
= &ep93xx_ohci_pdata
,
351 /*************************************************************************
352 * EP93xx physmap'ed flash
353 *************************************************************************/
354 static struct physmap_flash_data ep93xx_flash_data
;
356 static struct resource ep93xx_flash_resource
= {
357 .flags
= IORESOURCE_MEM
,
360 static struct platform_device ep93xx_flash
= {
361 .name
= "physmap-flash",
364 .platform_data
= &ep93xx_flash_data
,
367 .resource
= &ep93xx_flash_resource
,
371 * ep93xx_register_flash() - Register the external flash device.
372 * @width: bank width in octets
373 * @start: resource start address
374 * @size: resource size
376 void __init
ep93xx_register_flash(unsigned int width
,
377 resource_size_t start
, resource_size_t size
)
379 ep93xx_flash_data
.width
= width
;
381 ep93xx_flash_resource
.start
= start
;
382 ep93xx_flash_resource
.end
= start
+ size
- 1;
384 platform_device_register(&ep93xx_flash
);
388 /*************************************************************************
389 * EP93xx ethernet peripheral handling
390 *************************************************************************/
391 static struct ep93xx_eth_data ep93xx_eth_data
;
393 static struct resource ep93xx_eth_resource
[] = {
394 DEFINE_RES_MEM(EP93XX_ETHERNET_PHYS_BASE
, 0x10000),
395 DEFINE_RES_IRQ(IRQ_EP93XX_ETHERNET
),
398 static u64 ep93xx_eth_dma_mask
= DMA_BIT_MASK(32);
400 static struct platform_device ep93xx_eth_device
= {
401 .name
= "ep93xx-eth",
404 .platform_data
= &ep93xx_eth_data
,
405 .coherent_dma_mask
= DMA_BIT_MASK(32),
406 .dma_mask
= &ep93xx_eth_dma_mask
,
408 .num_resources
= ARRAY_SIZE(ep93xx_eth_resource
),
409 .resource
= ep93xx_eth_resource
,
413 * ep93xx_register_eth - Register the built-in ethernet platform device.
414 * @data: platform specific ethernet configuration (__initdata)
415 * @copy_addr: flag indicating that the MAC address should be copied
416 * from the IndAd registers (as programmed by the bootloader)
418 void __init
ep93xx_register_eth(struct ep93xx_eth_data
*data
, int copy_addr
)
421 memcpy_fromio(data
->dev_addr
, EP93XX_ETHERNET_BASE
+ 0x50, 6);
423 ep93xx_eth_data
= *data
;
424 platform_device_register(&ep93xx_eth_device
);
428 /*************************************************************************
429 * EP93xx i2c peripheral handling
430 *************************************************************************/
431 static struct i2c_gpio_platform_data ep93xx_i2c_data
;
433 static struct platform_device ep93xx_i2c_device
= {
437 .platform_data
= &ep93xx_i2c_data
,
442 * ep93xx_register_i2c - Register the i2c platform device.
443 * @data: platform specific i2c-gpio configuration (__initdata)
444 * @devices: platform specific i2c bus device information (__initdata)
445 * @num: the number of devices on the i2c bus
447 void __init
ep93xx_register_i2c(struct i2c_gpio_platform_data
*data
,
448 struct i2c_board_info
*devices
, int num
)
451 * Set the EEPROM interface pin drive type control.
452 * Defines the driver type for the EECLK and EEDAT pins as either
453 * open drain, which will require an external pull-up, or a normal
456 if (data
->sda_is_open_drain
&& data
->sda_pin
!= EP93XX_GPIO_LINE_EEDAT
)
457 pr_warning("sda != EEDAT, open drain has no effect\n");
458 if (data
->scl_is_open_drain
&& data
->scl_pin
!= EP93XX_GPIO_LINE_EECLK
)
459 pr_warning("scl != EECLK, open drain has no effect\n");
461 __raw_writel((data
->sda_is_open_drain
<< 1) |
462 (data
->scl_is_open_drain
<< 0),
463 EP93XX_GPIO_EEDRIVE
);
465 ep93xx_i2c_data
= *data
;
466 i2c_register_board_info(0, devices
, num
);
467 platform_device_register(&ep93xx_i2c_device
);
470 /*************************************************************************
471 * EP93xx SPI peripheral handling
472 *************************************************************************/
473 static struct ep93xx_spi_info ep93xx_spi_master_data
;
475 static struct resource ep93xx_spi_resources
[] = {
476 DEFINE_RES_MEM(EP93XX_SPI_PHYS_BASE
, 0x18),
477 DEFINE_RES_IRQ(IRQ_EP93XX_SSP
),
480 static u64 ep93xx_spi_dma_mask
= DMA_BIT_MASK(32);
482 static struct platform_device ep93xx_spi_device
= {
483 .name
= "ep93xx-spi",
486 .platform_data
= &ep93xx_spi_master_data
,
487 .coherent_dma_mask
= DMA_BIT_MASK(32),
488 .dma_mask
= &ep93xx_spi_dma_mask
,
490 .num_resources
= ARRAY_SIZE(ep93xx_spi_resources
),
491 .resource
= ep93xx_spi_resources
,
495 * ep93xx_register_spi() - registers spi platform device
496 * @info: ep93xx board specific spi master info (__initdata)
497 * @devices: SPI devices to register (__initdata)
498 * @num: number of SPI devices to register
500 * This function registers platform device for the EP93xx SPI controller and
501 * also makes sure that SPI pins are muxed so that I2S is not using those pins.
503 void __init
ep93xx_register_spi(struct ep93xx_spi_info
*info
,
504 struct spi_board_info
*devices
, int num
)
507 * When SPI is used, we need to make sure that I2S is muxed off from
510 ep93xx_devcfg_clear_bits(EP93XX_SYSCON_DEVCFG_I2SONSSP
);
512 ep93xx_spi_master_data
= *info
;
513 spi_register_board_info(devices
, num
);
514 platform_device_register(&ep93xx_spi_device
);
517 /*************************************************************************
519 *************************************************************************/
520 static const struct gpio_led ep93xx_led_pins
[] __initconst
= {
522 .name
= "platform:grled",
523 .gpio
= EP93XX_GPIO_LINE_GRLED
,
525 .name
= "platform:rdled",
526 .gpio
= EP93XX_GPIO_LINE_RDLED
,
530 static const struct gpio_led_platform_data ep93xx_led_data __initconst
= {
531 .num_leds
= ARRAY_SIZE(ep93xx_led_pins
),
532 .leds
= ep93xx_led_pins
,
535 /*************************************************************************
536 * EP93xx pwm peripheral handling
537 *************************************************************************/
538 static struct resource ep93xx_pwm0_resource
[] = {
539 DEFINE_RES_MEM(EP93XX_PWM_PHYS_BASE
, 0x10),
542 static struct platform_device ep93xx_pwm0_device
= {
543 .name
= "ep93xx-pwm",
545 .num_resources
= ARRAY_SIZE(ep93xx_pwm0_resource
),
546 .resource
= ep93xx_pwm0_resource
,
549 static struct resource ep93xx_pwm1_resource
[] = {
550 DEFINE_RES_MEM(EP93XX_PWM_PHYS_BASE
+ 0x20, 0x10),
553 static struct platform_device ep93xx_pwm1_device
= {
554 .name
= "ep93xx-pwm",
556 .num_resources
= ARRAY_SIZE(ep93xx_pwm1_resource
),
557 .resource
= ep93xx_pwm1_resource
,
560 void __init
ep93xx_register_pwm(int pwm0
, int pwm1
)
563 platform_device_register(&ep93xx_pwm0_device
);
565 /* NOTE: EP9307 does not have PWMOUT1 (pin EGPIO14) */
567 platform_device_register(&ep93xx_pwm1_device
);
570 int ep93xx_pwm_acquire_gpio(struct platform_device
*pdev
)
576 } else if (pdev
->id
== 1) {
577 err
= gpio_request(EP93XX_GPIO_LINE_EGPIO14
,
578 dev_name(&pdev
->dev
));
581 err
= gpio_direction_output(EP93XX_GPIO_LINE_EGPIO14
, 0);
585 /* PWM 1 output on EGPIO[14] */
586 ep93xx_devcfg_set_bits(EP93XX_SYSCON_DEVCFG_PONG
);
594 gpio_free(EP93XX_GPIO_LINE_EGPIO14
);
597 EXPORT_SYMBOL(ep93xx_pwm_acquire_gpio
);
599 void ep93xx_pwm_release_gpio(struct platform_device
*pdev
)
602 gpio_direction_input(EP93XX_GPIO_LINE_EGPIO14
);
603 gpio_free(EP93XX_GPIO_LINE_EGPIO14
);
605 /* EGPIO[14] used for GPIO */
606 ep93xx_devcfg_clear_bits(EP93XX_SYSCON_DEVCFG_PONG
);
609 EXPORT_SYMBOL(ep93xx_pwm_release_gpio
);
612 /*************************************************************************
613 * EP93xx video peripheral handling
614 *************************************************************************/
615 static struct ep93xxfb_mach_info ep93xxfb_data
;
617 static struct resource ep93xx_fb_resource
[] = {
618 DEFINE_RES_MEM(EP93XX_RASTER_PHYS_BASE
, 0x800),
621 static struct platform_device ep93xx_fb_device
= {
625 .platform_data
= &ep93xxfb_data
,
626 .coherent_dma_mask
= DMA_BIT_MASK(32),
627 .dma_mask
= &ep93xx_fb_device
.dev
.coherent_dma_mask
,
629 .num_resources
= ARRAY_SIZE(ep93xx_fb_resource
),
630 .resource
= ep93xx_fb_resource
,
633 /* The backlight use a single register in the framebuffer's register space */
634 #define EP93XX_RASTER_REG_BRIGHTNESS 0x20
636 static struct resource ep93xx_bl_resources
[] = {
637 DEFINE_RES_MEM(EP93XX_RASTER_PHYS_BASE
+
638 EP93XX_RASTER_REG_BRIGHTNESS
, 0x04),
641 static struct platform_device ep93xx_bl_device
= {
644 .num_resources
= ARRAY_SIZE(ep93xx_bl_resources
),
645 .resource
= ep93xx_bl_resources
,
649 * ep93xx_register_fb - Register the framebuffer platform device.
650 * @data: platform specific framebuffer configuration (__initdata)
652 void __init
ep93xx_register_fb(struct ep93xxfb_mach_info
*data
)
654 ep93xxfb_data
= *data
;
655 platform_device_register(&ep93xx_fb_device
);
656 platform_device_register(&ep93xx_bl_device
);
660 /*************************************************************************
661 * EP93xx matrix keypad peripheral handling
662 *************************************************************************/
663 static struct ep93xx_keypad_platform_data ep93xx_keypad_data
;
665 static struct resource ep93xx_keypad_resource
[] = {
666 DEFINE_RES_MEM(EP93XX_KEY_MATRIX_PHYS_BASE
, 0x0c),
667 DEFINE_RES_IRQ(IRQ_EP93XX_KEY
),
670 static struct platform_device ep93xx_keypad_device
= {
671 .name
= "ep93xx-keypad",
674 .platform_data
= &ep93xx_keypad_data
,
676 .num_resources
= ARRAY_SIZE(ep93xx_keypad_resource
),
677 .resource
= ep93xx_keypad_resource
,
681 * ep93xx_register_keypad - Register the keypad platform device.
682 * @data: platform specific keypad configuration (__initdata)
684 void __init
ep93xx_register_keypad(struct ep93xx_keypad_platform_data
*data
)
686 ep93xx_keypad_data
= *data
;
687 platform_device_register(&ep93xx_keypad_device
);
690 int ep93xx_keypad_acquire_gpio(struct platform_device
*pdev
)
695 for (i
= 0; i
< 8; i
++) {
696 err
= gpio_request(EP93XX_GPIO_LINE_C(i
), dev_name(&pdev
->dev
));
699 err
= gpio_request(EP93XX_GPIO_LINE_D(i
), dev_name(&pdev
->dev
));
704 /* Enable the keypad controller; GPIO ports C and D used for keypad */
705 ep93xx_devcfg_clear_bits(EP93XX_SYSCON_DEVCFG_KEYS
|
706 EP93XX_SYSCON_DEVCFG_GONK
);
711 gpio_free(EP93XX_GPIO_LINE_C(i
));
713 for (--i
; i
>= 0; --i
) {
714 gpio_free(EP93XX_GPIO_LINE_C(i
));
715 gpio_free(EP93XX_GPIO_LINE_D(i
));
719 EXPORT_SYMBOL(ep93xx_keypad_acquire_gpio
);
721 void ep93xx_keypad_release_gpio(struct platform_device
*pdev
)
725 for (i
= 0; i
< 8; i
++) {
726 gpio_free(EP93XX_GPIO_LINE_C(i
));
727 gpio_free(EP93XX_GPIO_LINE_D(i
));
730 /* Disable the keypad controller; GPIO ports C and D used for GPIO */
731 ep93xx_devcfg_set_bits(EP93XX_SYSCON_DEVCFG_KEYS
|
732 EP93XX_SYSCON_DEVCFG_GONK
);
734 EXPORT_SYMBOL(ep93xx_keypad_release_gpio
);
736 /*************************************************************************
737 * EP93xx I2S audio peripheral handling
738 *************************************************************************/
739 static struct resource ep93xx_i2s_resource
[] = {
740 DEFINE_RES_MEM(EP93XX_I2S_PHYS_BASE
, 0x100),
743 static struct platform_device ep93xx_i2s_device
= {
744 .name
= "ep93xx-i2s",
746 .num_resources
= ARRAY_SIZE(ep93xx_i2s_resource
),
747 .resource
= ep93xx_i2s_resource
,
750 static struct platform_device ep93xx_pcm_device
= {
751 .name
= "ep93xx-pcm-audio",
755 void __init
ep93xx_register_i2s(void)
757 platform_device_register(&ep93xx_i2s_device
);
758 platform_device_register(&ep93xx_pcm_device
);
761 #define EP93XX_SYSCON_DEVCFG_I2S_MASK (EP93XX_SYSCON_DEVCFG_I2SONSSP | \
762 EP93XX_SYSCON_DEVCFG_I2SONAC97)
764 #define EP93XX_I2SCLKDIV_MASK (EP93XX_SYSCON_I2SCLKDIV_ORIDE | \
765 EP93XX_SYSCON_I2SCLKDIV_SPOL)
767 int ep93xx_i2s_acquire(void)
771 ep93xx_devcfg_set_clear(EP93XX_SYSCON_DEVCFG_I2SONAC97
,
772 EP93XX_SYSCON_DEVCFG_I2S_MASK
);
775 * This is potentially racy with the clock api for i2s_mclk, sclk and
776 * lrclk. Since the i2s driver is the only user of those clocks we
777 * rely on it to prevent parallel use of this function and the
778 * clock api for the i2s clocks.
780 val
= __raw_readl(EP93XX_SYSCON_I2SCLKDIV
);
781 val
&= ~EP93XX_I2SCLKDIV_MASK
;
782 val
|= EP93XX_SYSCON_I2SCLKDIV_ORIDE
| EP93XX_SYSCON_I2SCLKDIV_SPOL
;
783 ep93xx_syscon_swlocked_write(val
, EP93XX_SYSCON_I2SCLKDIV
);
787 EXPORT_SYMBOL(ep93xx_i2s_acquire
);
789 void ep93xx_i2s_release(void)
791 ep93xx_devcfg_clear_bits(EP93XX_SYSCON_DEVCFG_I2S_MASK
);
793 EXPORT_SYMBOL(ep93xx_i2s_release
);
795 /*************************************************************************
796 * EP93xx AC97 audio peripheral handling
797 *************************************************************************/
798 static struct resource ep93xx_ac97_resources
[] = {
799 DEFINE_RES_MEM(EP93XX_AAC_PHYS_BASE
, 0xac),
800 DEFINE_RES_IRQ(IRQ_EP93XX_AACINTR
),
803 static struct platform_device ep93xx_ac97_device
= {
804 .name
= "ep93xx-ac97",
806 .num_resources
= ARRAY_SIZE(ep93xx_ac97_resources
),
807 .resource
= ep93xx_ac97_resources
,
810 void __init
ep93xx_register_ac97(void)
813 * Make sure that the AC97 pins are not used by I2S.
815 ep93xx_devcfg_clear_bits(EP93XX_SYSCON_DEVCFG_I2SONAC97
);
817 platform_device_register(&ep93xx_ac97_device
);
818 platform_device_register(&ep93xx_pcm_device
);
821 /*************************************************************************
823 *************************************************************************/
824 static struct resource ep93xx_wdt_resources
[] = {
825 DEFINE_RES_MEM(EP93XX_WATCHDOG_PHYS_BASE
, 0x08),
828 static struct platform_device ep93xx_wdt_device
= {
829 .name
= "ep93xx-wdt",
831 .num_resources
= ARRAY_SIZE(ep93xx_wdt_resources
),
832 .resource
= ep93xx_wdt_resources
,
835 /*************************************************************************
837 *************************************************************************/
838 static struct resource ep93xx_ide_resources
[] = {
839 DEFINE_RES_MEM(EP93XX_IDE_PHYS_BASE
, 0x38),
840 DEFINE_RES_IRQ(IRQ_EP93XX_EXT3
),
843 static struct platform_device ep93xx_ide_device
= {
844 .name
= "ep93xx-ide",
847 .dma_mask
= &ep93xx_ide_device
.dev
.coherent_dma_mask
,
848 .coherent_dma_mask
= DMA_BIT_MASK(32),
850 .num_resources
= ARRAY_SIZE(ep93xx_ide_resources
),
851 .resource
= ep93xx_ide_resources
,
854 void __init
ep93xx_register_ide(void)
856 platform_device_register(&ep93xx_ide_device
);
859 int ep93xx_ide_acquire_gpio(struct platform_device
*pdev
)
864 err
= gpio_request(EP93XX_GPIO_LINE_EGPIO2
, dev_name(&pdev
->dev
));
867 err
= gpio_request(EP93XX_GPIO_LINE_EGPIO15
, dev_name(&pdev
->dev
));
870 for (i
= 2; i
< 8; i
++) {
871 err
= gpio_request(EP93XX_GPIO_LINE_E(i
), dev_name(&pdev
->dev
));
875 for (i
= 4; i
< 8; i
++) {
876 err
= gpio_request(EP93XX_GPIO_LINE_G(i
), dev_name(&pdev
->dev
));
880 for (i
= 0; i
< 8; i
++) {
881 err
= gpio_request(EP93XX_GPIO_LINE_H(i
), dev_name(&pdev
->dev
));
886 /* GPIO ports E[7:2], G[7:4] and H used by IDE */
887 ep93xx_devcfg_clear_bits(EP93XX_SYSCON_DEVCFG_EONIDE
|
888 EP93XX_SYSCON_DEVCFG_GONIDE
|
889 EP93XX_SYSCON_DEVCFG_HONIDE
);
893 for (--i
; i
>= 0; --i
)
894 gpio_free(EP93XX_GPIO_LINE_H(i
));
897 for (--i
; i
>= 4; --i
)
898 gpio_free(EP93XX_GPIO_LINE_G(i
));
901 for (--i
; i
>= 2; --i
)
902 gpio_free(EP93XX_GPIO_LINE_E(i
));
903 gpio_free(EP93XX_GPIO_LINE_EGPIO15
);
905 gpio_free(EP93XX_GPIO_LINE_EGPIO2
);
908 EXPORT_SYMBOL(ep93xx_ide_acquire_gpio
);
910 void ep93xx_ide_release_gpio(struct platform_device
*pdev
)
914 for (i
= 2; i
< 8; i
++)
915 gpio_free(EP93XX_GPIO_LINE_E(i
));
916 for (i
= 4; i
< 8; i
++)
917 gpio_free(EP93XX_GPIO_LINE_G(i
));
918 for (i
= 0; i
< 8; i
++)
919 gpio_free(EP93XX_GPIO_LINE_H(i
));
920 gpio_free(EP93XX_GPIO_LINE_EGPIO15
);
921 gpio_free(EP93XX_GPIO_LINE_EGPIO2
);
924 /* GPIO ports E[7:2], G[7:4] and H used by GPIO */
925 ep93xx_devcfg_set_bits(EP93XX_SYSCON_DEVCFG_EONIDE
|
926 EP93XX_SYSCON_DEVCFG_GONIDE
|
927 EP93XX_SYSCON_DEVCFG_HONIDE
);
929 EXPORT_SYMBOL(ep93xx_ide_release_gpio
);
931 /*************************************************************************
932 * EP93xx Security peripheral
933 *************************************************************************/
936 * The Maverick Key is 256 bits of micro fuses blown at the factory during
937 * manufacturing to uniquely identify a part.
939 * See: http://arm.cirrus.com/forum/viewtopic.php?t=486&highlight=maverick+key
941 #define EP93XX_SECURITY_REG(x) (EP93XX_SECURITY_BASE + (x))
942 #define EP93XX_SECURITY_SECFLG EP93XX_SECURITY_REG(0x2400)
943 #define EP93XX_SECURITY_FUSEFLG EP93XX_SECURITY_REG(0x2410)
944 #define EP93XX_SECURITY_UNIQID EP93XX_SECURITY_REG(0x2440)
945 #define EP93XX_SECURITY_UNIQCHK EP93XX_SECURITY_REG(0x2450)
946 #define EP93XX_SECURITY_UNIQVAL EP93XX_SECURITY_REG(0x2460)
947 #define EP93XX_SECURITY_SECID1 EP93XX_SECURITY_REG(0x2500)
948 #define EP93XX_SECURITY_SECID2 EP93XX_SECURITY_REG(0x2504)
949 #define EP93XX_SECURITY_SECCHK1 EP93XX_SECURITY_REG(0x2520)
950 #define EP93XX_SECURITY_SECCHK2 EP93XX_SECURITY_REG(0x2524)
951 #define EP93XX_SECURITY_UNIQID2 EP93XX_SECURITY_REG(0x2700)
952 #define EP93XX_SECURITY_UNIQID3 EP93XX_SECURITY_REG(0x2704)
953 #define EP93XX_SECURITY_UNIQID4 EP93XX_SECURITY_REG(0x2708)
954 #define EP93XX_SECURITY_UNIQID5 EP93XX_SECURITY_REG(0x270c)
956 static char ep93xx_soc_id
[33];
958 static const char __init
*ep93xx_get_soc_id(void)
960 unsigned int id
, id2
, id3
, id4
, id5
;
962 if (__raw_readl(EP93XX_SECURITY_UNIQVAL
) != 1)
963 return "bad Hamming code";
965 id
= __raw_readl(EP93XX_SECURITY_UNIQID
);
966 id2
= __raw_readl(EP93XX_SECURITY_UNIQID2
);
967 id3
= __raw_readl(EP93XX_SECURITY_UNIQID3
);
968 id4
= __raw_readl(EP93XX_SECURITY_UNIQID4
);
969 id5
= __raw_readl(EP93XX_SECURITY_UNIQID5
);
974 snprintf(ep93xx_soc_id
, sizeof(ep93xx_soc_id
),
975 "%08x%08x%08x%08x", id2
, id3
, id4
, id5
);
977 return ep93xx_soc_id
;
980 static const char __init
*ep93xx_get_soc_rev(void)
982 int rev
= ep93xx_chip_revision();
985 case EP93XX_CHIP_REV_D0
:
987 case EP93XX_CHIP_REV_D1
:
989 case EP93XX_CHIP_REV_E0
:
991 case EP93XX_CHIP_REV_E1
:
993 case EP93XX_CHIP_REV_E2
:
1000 static const char __init
*ep93xx_get_machine_name(void)
1002 return kasprintf(GFP_KERNEL
,"%s", machine_desc
->name
);
1005 static struct device __init
*ep93xx_init_soc(void)
1007 struct soc_device_attribute
*soc_dev_attr
;
1008 struct soc_device
*soc_dev
;
1010 soc_dev_attr
= kzalloc(sizeof(*soc_dev_attr
), GFP_KERNEL
);
1014 soc_dev_attr
->machine
= ep93xx_get_machine_name();
1015 soc_dev_attr
->family
= "Cirrus Logic EP93xx";
1016 soc_dev_attr
->revision
= ep93xx_get_soc_rev();
1017 soc_dev_attr
->soc_id
= ep93xx_get_soc_id();
1019 soc_dev
= soc_device_register(soc_dev_attr
);
1020 if (IS_ERR(soc_dev
)) {
1021 kfree(soc_dev_attr
->machine
);
1022 kfree(soc_dev_attr
);
1026 return soc_device_to_device(soc_dev
);
1029 struct device __init
*ep93xx_init_devices(void)
1031 struct device
*parent
;
1033 /* Disallow access to MaverickCrunch initially */
1034 ep93xx_devcfg_clear_bits(EP93XX_SYSCON_DEVCFG_CPENA
);
1036 /* Default all ports to GPIO */
1037 ep93xx_devcfg_set_bits(EP93XX_SYSCON_DEVCFG_KEYS
|
1038 EP93XX_SYSCON_DEVCFG_GONK
|
1039 EP93XX_SYSCON_DEVCFG_EONIDE
|
1040 EP93XX_SYSCON_DEVCFG_GONIDE
|
1041 EP93XX_SYSCON_DEVCFG_HONIDE
);
1043 parent
= ep93xx_init_soc();
1045 /* Get the GPIO working early, other devices need it */
1046 platform_device_register(&ep93xx_gpio_device
);
1048 amba_device_register(&uart1_device
, &iomem_resource
);
1049 amba_device_register(&uart2_device
, &iomem_resource
);
1050 amba_device_register(&uart3_device
, &iomem_resource
);
1052 platform_device_register(&ep93xx_rtc_device
);
1053 platform_device_register(&ep93xx_ohci_device
);
1054 platform_device_register(&ep93xx_wdt_device
);
1056 gpio_led_register_device(-1, &ep93xx_led_data
);
1061 void ep93xx_restart(enum reboot_mode mode
, const char *cmd
)
1064 * Set then clear the SWRST bit to initiate a software reset
1066 ep93xx_devcfg_set_bits(EP93XX_SYSCON_DEVCFG_SWRST
);
1067 ep93xx_devcfg_clear_bits(EP93XX_SYSCON_DEVCFG_SWRST
);
1073 void __init
ep93xx_init_late(void)