2 * linux/arch/arm/mach-exynos4/mach-nuri.c
4 * Copyright (c) 2011 Samsung Electronics Co., Ltd.
6 * This program is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License version 2 as
8 * published by the Free Software Foundation.
11 #include <linux/platform_device.h>
12 #include <linux/serial_core.h>
13 #include <linux/input.h>
14 #include <linux/i2c.h>
15 #include <linux/i2c/atmel_mxt_ts.h>
16 #include <linux/i2c-gpio.h>
17 #include <linux/gpio_keys.h>
18 #include <linux/gpio.h>
19 #include <linux/power/max8903_charger.h>
20 #include <linux/power/max17042_battery.h>
21 #include <linux/regulator/machine.h>
22 #include <linux/regulator/fixed.h>
23 #include <linux/mfd/max8997.h>
24 #include <linux/mfd/max8997-private.h>
25 #include <linux/mmc/host.h>
27 #include <linux/pwm_backlight.h>
28 #include <linux/platform_data/s3c-hsotg.h>
29 #include <drm/exynos_drm.h>
31 #include <video/platform_lcd.h>
32 #include <media/m5mols.h>
33 #include <media/s5k6aa.h>
34 #include <media/s5p_fimc.h>
35 #include <media/v4l2-mediabus.h>
37 #include <asm/mach/arch.h>
38 #include <asm/hardware/gic.h>
39 #include <asm/mach-types.h>
42 #include <plat/regs-fb-v4.h>
43 #include <plat/regs-serial.h>
45 #include <plat/devs.h>
47 #include <plat/sdhci.h>
48 #include <plat/ehci.h>
49 #include <plat/clock.h>
50 #include <plat/gpio-cfg.h>
53 #include <plat/fimc-core.h>
54 #include <plat/camport.h>
55 #include <plat/mipi_csis.h>
61 /* Following are default values for UCON, ULCON and UFCON UART registers */
62 #define NURI_UCON_DEFAULT (S3C2410_UCON_TXILEVEL | \
63 S3C2410_UCON_RXILEVEL | \
64 S3C2410_UCON_TXIRQMODE | \
65 S3C2410_UCON_RXIRQMODE | \
66 S3C2410_UCON_RXFIFO_TOI | \
67 S3C2443_UCON_RXERR_IRQEN)
69 #define NURI_ULCON_DEFAULT S3C2410_LCON_CS8
71 #define NURI_UFCON_DEFAULT (S3C2410_UFCON_FIFOMODE | \
72 S5PV210_UFCON_TXTRIG256 | \
73 S5PV210_UFCON_RXTRIG256)
75 enum fixed_regulator_id
{
78 FIXED_REG_ID_CAM_A28V
,
80 FIXED_REG_ID_CAM_VT_15V
,
83 static struct s3c2410_uartcfg nuri_uartcfgs
[] __initdata
= {
86 .ucon
= NURI_UCON_DEFAULT
,
87 .ulcon
= NURI_ULCON_DEFAULT
,
88 .ufcon
= NURI_UFCON_DEFAULT
,
92 .ucon
= NURI_UCON_DEFAULT
,
93 .ulcon
= NURI_ULCON_DEFAULT
,
94 .ufcon
= NURI_UFCON_DEFAULT
,
98 .ucon
= NURI_UCON_DEFAULT
,
99 .ulcon
= NURI_ULCON_DEFAULT
,
100 .ufcon
= NURI_UFCON_DEFAULT
,
104 .ucon
= NURI_UCON_DEFAULT
,
105 .ulcon
= NURI_ULCON_DEFAULT
,
106 .ufcon
= NURI_UFCON_DEFAULT
,
111 static struct s3c_sdhci_platdata nuri_hsmmc0_data __initdata
= {
113 .host_caps
= (MMC_CAP_8_BIT_DATA
| MMC_CAP_4_BIT_DATA
|
114 MMC_CAP_MMC_HIGHSPEED
| MMC_CAP_SD_HIGHSPEED
|
116 .host_caps2
= MMC_CAP2_BROKEN_VOLTAGE
,
117 .cd_type
= S3C_SDHCI_CD_PERMANENT
,
120 static struct regulator_consumer_supply emmc_supplies
[] = {
121 REGULATOR_SUPPLY("vmmc", "exynos4-sdhci.0"),
122 REGULATOR_SUPPLY("vmmc", "dw_mmc"),
125 static struct regulator_init_data emmc_fixed_voltage_init_data
= {
127 .name
= "VMEM_VDD_2.8V",
128 .valid_ops_mask
= REGULATOR_CHANGE_STATUS
,
130 .num_consumer_supplies
= ARRAY_SIZE(emmc_supplies
),
131 .consumer_supplies
= emmc_supplies
,
134 static struct fixed_voltage_config emmc_fixed_voltage_config
= {
135 .supply_name
= "MASSMEMORY_EN (inverted)",
136 .microvolts
= 2800000,
137 .gpio
= EXYNOS4_GPL1(1),
138 .enable_high
= false,
139 .init_data
= &emmc_fixed_voltage_init_data
,
142 static struct platform_device emmc_fixed_voltage
= {
143 .name
= "reg-fixed-voltage",
144 .id
= FIXED_REG_ID_MMC
,
146 .platform_data
= &emmc_fixed_voltage_config
,
151 static struct s3c_sdhci_platdata nuri_hsmmc2_data __initdata
= {
153 .host_caps
= MMC_CAP_4_BIT_DATA
|
154 MMC_CAP_MMC_HIGHSPEED
| MMC_CAP_SD_HIGHSPEED
,
155 .ext_cd_gpio
= EXYNOS4_GPX3(3), /* XEINT_27 */
156 .ext_cd_gpio_invert
= 1,
157 .cd_type
= S3C_SDHCI_CD_GPIO
,
161 static struct s3c_sdhci_platdata nuri_hsmmc3_data __initdata
= {
163 .host_caps
= MMC_CAP_4_BIT_DATA
|
164 MMC_CAP_MMC_HIGHSPEED
| MMC_CAP_SD_HIGHSPEED
,
165 .cd_type
= S3C_SDHCI_CD_EXTERNAL
,
168 static void __init
nuri_sdhci_init(void)
170 s3c_sdhci0_set_platdata(&nuri_hsmmc0_data
);
171 s3c_sdhci2_set_platdata(&nuri_hsmmc2_data
);
172 s3c_sdhci3_set_platdata(&nuri_hsmmc3_data
);
176 static struct gpio_keys_button nuri_gpio_keys_tables
[] = {
178 .code
= KEY_VOLUMEUP
,
179 .gpio
= EXYNOS4_GPX2(0), /* XEINT16 */
180 .desc
= "gpio-keys: KEY_VOLUMEUP",
183 .debounce_interval
= 1,
185 .code
= KEY_VOLUMEDOWN
,
186 .gpio
= EXYNOS4_GPX2(1), /* XEINT17 */
187 .desc
= "gpio-keys: KEY_VOLUMEDOWN",
190 .debounce_interval
= 1,
193 .gpio
= EXYNOS4_GPX2(7), /* XEINT23 */
194 .desc
= "gpio-keys: KEY_POWER",
198 .debounce_interval
= 1,
202 static struct gpio_keys_platform_data nuri_gpio_keys_data
= {
203 .buttons
= nuri_gpio_keys_tables
,
204 .nbuttons
= ARRAY_SIZE(nuri_gpio_keys_tables
),
207 static struct platform_device nuri_gpio_keys
= {
210 .platform_data
= &nuri_gpio_keys_data
,
214 #ifdef CONFIG_DRM_EXYNOS
215 static struct exynos_drm_fimd_pdata drm_fimd_pdata
= {
229 .vidcon0
= VIDCON0_VIDOUT_RGB
| VIDCON0_PNRMODE_RGB
|
231 .vidcon1
= VIDCON1_INV_HSYNC
| VIDCON1_INV_VSYNC
,
238 static struct s3c_fb_pd_win nuri_fb_win0
= {
244 .virtual_y
= 2 * 600,
247 static struct fb_videomode nuri_lcd_timing
= {
259 static struct s3c_fb_platdata nuri_fb_pdata __initdata
= {
260 .win
[0] = &nuri_fb_win0
,
261 .vtiming
= &nuri_lcd_timing
,
262 .vidcon0
= VIDCON0_VIDOUT_RGB
| VIDCON0_PNRMODE_RGB
|
264 .vidcon1
= VIDCON1_INV_HSYNC
| VIDCON1_INV_VSYNC
,
265 .setup_gpio
= exynos4_fimd0_gpio_setup_24bpp
,
269 static void nuri_lcd_power_on(struct plat_lcd_data
*pd
, unsigned int power
)
271 int gpio
= EXYNOS4_GPE1(5);
273 gpio_request(gpio
, "LVDS_nSHDN");
274 gpio_direction_output(gpio
, power
);
278 static int nuri_bl_init(struct device
*dev
)
280 return gpio_request_one(EXYNOS4_GPE2(3), GPIOF_OUT_INIT_LOW
,
284 static int nuri_bl_notify(struct device
*dev
, int brightness
)
289 gpio_set_value(EXYNOS4_GPE2(3), 1);
294 static void nuri_bl_exit(struct device
*dev
)
296 gpio_free(EXYNOS4_GPE2(3));
299 /* nuri pwm backlight */
300 static struct platform_pwm_backlight_data nuri_backlight_data
= {
302 .pwm_period_ns
= 30000,
303 .max_brightness
= 100,
304 .dft_brightness
= 50,
305 .init
= nuri_bl_init
,
306 .notify
= nuri_bl_notify
,
307 .exit
= nuri_bl_exit
,
310 static struct platform_device nuri_backlight_device
= {
311 .name
= "pwm-backlight",
314 .parent
= &s3c_device_timer
[0].dev
,
315 .platform_data
= &nuri_backlight_data
,
319 static struct plat_lcd_data nuri_lcd_platform_data
= {
320 .set_power
= nuri_lcd_power_on
,
323 static struct platform_device nuri_lcd_device
= {
324 .name
= "platform-lcd",
327 .platform_data
= &nuri_lcd_platform_data
,
332 static struct i2c_board_info i2c1_devs
[] __initdata
= {
333 /* Gyro, To be updated */
337 static struct mxt_platform_data mxt_platform_data
= {
344 .voltage
= 2800000, /* 2.8V */
345 .orient
= MXT_DIAGONAL_COUNTER
,
346 .irqflags
= IRQF_TRIGGER_FALLING
,
349 static struct s3c2410_platform_i2c i2c3_data __initdata
= {
353 .frequency
= 400 * 1000,
357 static struct i2c_board_info i2c3_devs
[] __initdata
= {
359 I2C_BOARD_INFO("atmel_mxt_ts", 0x4a),
360 .platform_data
= &mxt_platform_data
,
365 static void __init
nuri_tsp_init(void)
369 /* TOUCH_INT: XEINT_4 */
370 gpio
= EXYNOS4_GPX0(4);
371 gpio_request(gpio
, "TOUCH_INT");
372 s3c_gpio_cfgpin(gpio
, S3C_GPIO_SFN(0xf));
373 s3c_gpio_setpull(gpio
, S3C_GPIO_PULL_UP
);
376 static struct regulator_consumer_supply __initdata max8997_ldo1_
[] = {
377 REGULATOR_SUPPLY("vdd", "s5p-adc"), /* Used by CPU's ADC drv */
379 static struct regulator_consumer_supply __initdata max8997_ldo3_
[] = {
380 REGULATOR_SUPPLY("vusb_d", "s3c-hsotg"), /* USB */
381 REGULATOR_SUPPLY("vdd11", "s5p-mipi-csis.0"), /* MIPI */
383 static struct regulator_consumer_supply __initdata max8997_ldo4_
[] = {
384 REGULATOR_SUPPLY("vdd18", "s5p-mipi-csis.0"), /* MIPI */
386 static struct regulator_consumer_supply __initdata max8997_ldo5_
[] = {
387 REGULATOR_SUPPLY("vhsic", "modemctl"), /* MODEM */
389 static struct regulator_consumer_supply nuri_max8997_ldo6_consumer
[] = {
390 REGULATOR_SUPPLY("vdd_reg", "6-003c"), /* S5K6AA camera */
392 static struct regulator_consumer_supply __initdata max8997_ldo7_
[] = {
393 REGULATOR_SUPPLY("dig_18", "0-001f"), /* HCD803 */
395 static struct regulator_consumer_supply __initdata max8997_ldo8_
[] = {
396 REGULATOR_SUPPLY("vusb_a", "s3c-hsotg"), /* USB */
397 REGULATOR_SUPPLY("vdac", NULL
), /* Used by CPU */
399 static struct regulator_consumer_supply __initdata max8997_ldo11_
[] = {
400 REGULATOR_SUPPLY("vcc", "platform-lcd"), /* U804 LVDS */
402 static struct regulator_consumer_supply __initdata max8997_ldo12_
[] = {
403 REGULATOR_SUPPLY("vddio", "6-003c"), /* HDC802 */
405 static struct regulator_consumer_supply __initdata max8997_ldo13_
[] = {
406 REGULATOR_SUPPLY("vmmc", "exynos4-sdhci.2"), /* TFLASH */
408 static struct regulator_consumer_supply __initdata max8997_ldo14_
[] = {
409 REGULATOR_SUPPLY("inmotor", "max8997-haptic"),
411 static struct regulator_consumer_supply __initdata max8997_ldo15_
[] = {
412 REGULATOR_SUPPLY("avdd", "3-004a"), /* Touch Screen */
414 static struct regulator_consumer_supply __initdata max8997_ldo16_
[] = {
415 REGULATOR_SUPPLY("d_sensor", "0-001f"), /* HDC803 */
417 static struct regulator_consumer_supply __initdata max8997_ldo18_
[] = {
418 REGULATOR_SUPPLY("vdd", "3-004a"), /* Touch Screen */
420 static struct regulator_consumer_supply __initdata max8997_buck1_
[] = {
421 REGULATOR_SUPPLY("vdd_arm", NULL
), /* CPUFREQ */
423 static struct regulator_consumer_supply __initdata max8997_buck2_
[] = {
424 REGULATOR_SUPPLY("vdd_int", "exynos4210-busfreq.0"), /* CPUFREQ */
426 static struct regulator_consumer_supply __initdata max8997_buck3_
[] = {
427 REGULATOR_SUPPLY("vdd", "mali_dev.0"), /* G3D of Exynos 4 */
429 static struct regulator_consumer_supply __initdata max8997_buck4_
[] = {
430 REGULATOR_SUPPLY("core", "0-001f"), /* HDC803 */
432 static struct regulator_consumer_supply __initdata max8997_buck6_
[] = {
433 REGULATOR_SUPPLY("dig_28", "0-001f"), /* pin "7" of HDC803 */
435 static struct regulator_consumer_supply __initdata max8997_esafeout1_
[] = {
436 REGULATOR_SUPPLY("usb_vbus", NULL
), /* CPU's USB OTG */
438 static struct regulator_consumer_supply __initdata max8997_esafeout2_
[] = {
439 REGULATOR_SUPPLY("usb_vbus", "modemctl"), /* VBUS of Modem */
442 static struct regulator_consumer_supply __initdata max8997_charger_
[] = {
443 REGULATOR_SUPPLY("vinchg1", "charger-manager.0"),
445 static struct regulator_consumer_supply __initdata max8997_chg_toff_
[] = {
446 REGULATOR_SUPPLY("vinchg_stop", NULL
), /* for jack interrupt handlers */
449 static struct regulator_consumer_supply __initdata max8997_32khz_ap_
[] = {
450 REGULATOR_SUPPLY("gps_clk", "bcm4751"),
451 REGULATOR_SUPPLY("bt_clk", "bcm4330-b1"),
452 REGULATOR_SUPPLY("wifi_clk", "bcm433-b1"),
455 static struct regulator_init_data __initdata max8997_ldo1_data
= {
457 .name
= "VADC_3.3V_C210",
460 .valid_ops_mask
= REGULATOR_CHANGE_STATUS
,
466 .num_consumer_supplies
= ARRAY_SIZE(max8997_ldo1_
),
467 .consumer_supplies
= max8997_ldo1_
,
470 static struct regulator_init_data __initdata max8997_ldo2_data
= {
472 .name
= "VALIVE_1.1V_C210",
483 static struct regulator_init_data __initdata max8997_ldo3_data
= {
485 .name
= "VUSB_1.1V_C210",
488 .valid_ops_mask
= REGULATOR_CHANGE_STATUS
,
494 .num_consumer_supplies
= ARRAY_SIZE(max8997_ldo3_
),
495 .consumer_supplies
= max8997_ldo3_
,
498 static struct regulator_init_data __initdata max8997_ldo4_data
= {
500 .name
= "VMIPI_1.8V",
503 .valid_ops_mask
= REGULATOR_CHANGE_STATUS
,
509 .num_consumer_supplies
= ARRAY_SIZE(max8997_ldo4_
),
510 .consumer_supplies
= max8997_ldo4_
,
513 static struct regulator_init_data __initdata max8997_ldo5_data
= {
515 .name
= "VHSIC_1.2V_C210",
518 .valid_ops_mask
= REGULATOR_CHANGE_STATUS
,
524 .num_consumer_supplies
= ARRAY_SIZE(max8997_ldo5_
),
525 .consumer_supplies
= max8997_ldo5_
,
528 static struct regulator_init_data __initdata max8997_ldo6_data
= {
530 .name
= "VCC_1.8V_PDA",
539 .num_consumer_supplies
= ARRAY_SIZE(nuri_max8997_ldo6_consumer
),
540 .consumer_supplies
= nuri_max8997_ldo6_consumer
,
543 static struct regulator_init_data __initdata max8997_ldo7_data
= {
545 .name
= "CAM_ISP_1.8V",
548 .valid_ops_mask
= REGULATOR_CHANGE_STATUS
,
554 .num_consumer_supplies
= ARRAY_SIZE(max8997_ldo7_
),
555 .consumer_supplies
= max8997_ldo7_
,
558 static struct regulator_init_data __initdata max8997_ldo8_data
= {
560 .name
= "VUSB+VDAC_3.3V_C210",
563 .valid_ops_mask
= REGULATOR_CHANGE_STATUS
,
569 .num_consumer_supplies
= ARRAY_SIZE(max8997_ldo8_
),
570 .consumer_supplies
= max8997_ldo8_
,
573 static struct regulator_init_data __initdata max8997_ldo9_data
= {
575 .name
= "VCC_2.8V_PDA",
586 static struct regulator_init_data __initdata max8997_ldo10_data
= {
588 .name
= "VPLL_1.1V_C210",
599 static struct regulator_init_data __initdata max8997_ldo11_data
= {
601 .name
= "LVDS_VDD3.3V",
604 .valid_ops_mask
= REGULATOR_CHANGE_STATUS
,
611 .num_consumer_supplies
= ARRAY_SIZE(max8997_ldo11_
),
612 .consumer_supplies
= max8997_ldo11_
,
615 static struct regulator_init_data __initdata max8997_ldo12_data
= {
617 .name
= "VT_CAM_1.8V",
620 .valid_ops_mask
= REGULATOR_CHANGE_STATUS
,
626 .num_consumer_supplies
= ARRAY_SIZE(max8997_ldo12_
),
627 .consumer_supplies
= max8997_ldo12_
,
630 static struct regulator_init_data __initdata max8997_ldo13_data
= {
635 .valid_ops_mask
= REGULATOR_CHANGE_STATUS
,
641 .num_consumer_supplies
= ARRAY_SIZE(max8997_ldo13_
),
642 .consumer_supplies
= max8997_ldo13_
,
645 static struct regulator_init_data __initdata max8997_ldo14_data
= {
647 .name
= "VCC_3.0V_MOTOR",
650 .valid_ops_mask
= REGULATOR_CHANGE_STATUS
,
656 .num_consumer_supplies
= ARRAY_SIZE(max8997_ldo14_
),
657 .consumer_supplies
= max8997_ldo14_
,
660 static struct regulator_init_data __initdata max8997_ldo15_data
= {
662 .name
= "VTOUCH_ADVV2.8V",
666 .valid_ops_mask
= REGULATOR_CHANGE_STATUS
,
671 .num_consumer_supplies
= ARRAY_SIZE(max8997_ldo15_
),
672 .consumer_supplies
= max8997_ldo15_
,
675 static struct regulator_init_data __initdata max8997_ldo16_data
= {
677 .name
= "CAM_SENSOR_IO_1.8V",
680 .valid_ops_mask
= REGULATOR_CHANGE_STATUS
,
686 .num_consumer_supplies
= ARRAY_SIZE(max8997_ldo16_
),
687 .consumer_supplies
= max8997_ldo16_
,
690 static struct regulator_init_data __initdata max8997_ldo18_data
= {
692 .name
= "VTOUCH_VDD2.8V",
695 .valid_ops_mask
= REGULATOR_CHANGE_STATUS
,
701 .num_consumer_supplies
= ARRAY_SIZE(max8997_ldo18_
),
702 .consumer_supplies
= max8997_ldo18_
,
705 static struct regulator_init_data __initdata max8997_ldo21_data
= {
707 .name
= "VDDQ_M1M2_1.2V",
718 static struct regulator_init_data __initdata max8997_buck1_data
= {
720 .name
= "VARM_1.2V_C210",
723 .valid_ops_mask
= REGULATOR_CHANGE_VOLTAGE
,
729 .num_consumer_supplies
= ARRAY_SIZE(max8997_buck1_
),
730 .consumer_supplies
= max8997_buck1_
,
733 static struct regulator_init_data __initdata max8997_buck2_data
= {
735 .name
= "VINT_1.1V_C210",
738 .valid_ops_mask
= REGULATOR_CHANGE_VOLTAGE
,
744 .num_consumer_supplies
= ARRAY_SIZE(max8997_buck2_
),
745 .consumer_supplies
= max8997_buck2_
,
748 static struct regulator_init_data __initdata max8997_buck3_data
= {
750 .name
= "VG3D_1.1V_C210",
753 .valid_ops_mask
= REGULATOR_CHANGE_VOLTAGE
|
754 REGULATOR_CHANGE_STATUS
,
759 .num_consumer_supplies
= ARRAY_SIZE(max8997_buck3_
),
760 .consumer_supplies
= max8997_buck3_
,
763 static struct regulator_init_data __initdata max8997_buck4_data
= {
765 .name
= "CAM_ISP_CORE_1.2V",
769 .valid_ops_mask
= REGULATOR_CHANGE_STATUS
,
774 .num_consumer_supplies
= ARRAY_SIZE(max8997_buck4_
),
775 .consumer_supplies
= max8997_buck4_
,
778 static struct regulator_init_data __initdata max8997_buck5_data
= {
780 .name
= "VMEM_1.2V_C210",
791 static struct regulator_init_data __initdata max8997_buck6_data
= {
793 .name
= "CAM_AF_2.8V",
796 .valid_ops_mask
= REGULATOR_CHANGE_STATUS
,
801 .num_consumer_supplies
= ARRAY_SIZE(max8997_buck6_
),
802 .consumer_supplies
= max8997_buck6_
,
805 static struct regulator_init_data __initdata max8997_buck7_data
= {
807 .name
= "VCC_SUB_2.0V",
818 static struct regulator_init_data __initdata max8997_32khz_ap_data
= {
826 .num_consumer_supplies
= ARRAY_SIZE(max8997_32khz_ap_
),
827 .consumer_supplies
= max8997_32khz_ap_
,
830 static struct regulator_init_data __initdata max8997_32khz_cp_data
= {
839 static struct regulator_init_data __initdata max8997_vichg_data
= {
848 static struct regulator_init_data __initdata max8997_esafeout1_data
= {
851 .valid_ops_mask
= REGULATOR_CHANGE_STATUS
,
857 .num_consumer_supplies
= ARRAY_SIZE(max8997_esafeout1_
),
858 .consumer_supplies
= max8997_esafeout1_
,
861 static struct regulator_init_data __initdata max8997_esafeout2_data
= {
864 .valid_ops_mask
= REGULATOR_CHANGE_STATUS
,
869 .num_consumer_supplies
= ARRAY_SIZE(max8997_esafeout2_
),
870 .consumer_supplies
= max8997_esafeout2_
,
873 static struct regulator_init_data __initdata max8997_charger_cv_data
= {
875 .name
= "CHARGER_CV",
882 static struct regulator_init_data __initdata max8997_charger_data
= {
888 .valid_ops_mask
= REGULATOR_CHANGE_STATUS
|
889 REGULATOR_CHANGE_CURRENT
,
891 .num_consumer_supplies
= ARRAY_SIZE(max8997_charger_
),
892 .consumer_supplies
= max8997_charger_
,
895 static struct regulator_init_data __initdata max8997_charger_topoff_data
= {
897 .name
= "CHARGER TOPOFF",
900 .valid_ops_mask
= REGULATOR_CHANGE_CURRENT
,
902 .num_consumer_supplies
= ARRAY_SIZE(max8997_chg_toff_
),
903 .consumer_supplies
= max8997_chg_toff_
,
906 static struct max8997_regulator_data __initdata nuri_max8997_regulators
[] = {
907 { MAX8997_LDO1
, &max8997_ldo1_data
},
908 { MAX8997_LDO2
, &max8997_ldo2_data
},
909 { MAX8997_LDO3
, &max8997_ldo3_data
},
910 { MAX8997_LDO4
, &max8997_ldo4_data
},
911 { MAX8997_LDO5
, &max8997_ldo5_data
},
912 { MAX8997_LDO6
, &max8997_ldo6_data
},
913 { MAX8997_LDO7
, &max8997_ldo7_data
},
914 { MAX8997_LDO8
, &max8997_ldo8_data
},
915 { MAX8997_LDO9
, &max8997_ldo9_data
},
916 { MAX8997_LDO10
, &max8997_ldo10_data
},
917 { MAX8997_LDO11
, &max8997_ldo11_data
},
918 { MAX8997_LDO12
, &max8997_ldo12_data
},
919 { MAX8997_LDO13
, &max8997_ldo13_data
},
920 { MAX8997_LDO14
, &max8997_ldo14_data
},
921 { MAX8997_LDO15
, &max8997_ldo15_data
},
922 { MAX8997_LDO16
, &max8997_ldo16_data
},
924 { MAX8997_LDO18
, &max8997_ldo18_data
},
925 { MAX8997_LDO21
, &max8997_ldo21_data
},
927 { MAX8997_BUCK1
, &max8997_buck1_data
},
928 { MAX8997_BUCK2
, &max8997_buck2_data
},
929 { MAX8997_BUCK3
, &max8997_buck3_data
},
930 { MAX8997_BUCK4
, &max8997_buck4_data
},
931 { MAX8997_BUCK5
, &max8997_buck5_data
},
932 { MAX8997_BUCK6
, &max8997_buck6_data
},
933 { MAX8997_BUCK7
, &max8997_buck7_data
},
935 { MAX8997_EN32KHZ_AP
, &max8997_32khz_ap_data
},
936 { MAX8997_EN32KHZ_CP
, &max8997_32khz_cp_data
},
938 { MAX8997_ENVICHG
, &max8997_vichg_data
},
939 { MAX8997_ESAFEOUT1
, &max8997_esafeout1_data
},
940 { MAX8997_ESAFEOUT2
, &max8997_esafeout2_data
},
941 { MAX8997_CHARGER_CV
, &max8997_charger_cv_data
},
942 { MAX8997_CHARGER
, &max8997_charger_data
},
943 { MAX8997_CHARGER_TOPOFF
, &max8997_charger_topoff_data
},
946 static struct max8997_platform_data __initdata nuri_max8997_pdata
= {
949 .num_regulators
= ARRAY_SIZE(nuri_max8997_regulators
),
950 .regulators
= nuri_max8997_regulators
,
952 .buck125_gpios
= { EXYNOS4_GPX0(5), EXYNOS4_GPX0(6), EXYNOS4_GPL0(0) },
954 .buck1_voltage
[0] = 1350000, /* 1.35V */
955 .buck1_voltage
[1] = 1300000, /* 1.3V */
956 .buck1_voltage
[2] = 1250000, /* 1.25V */
957 .buck1_voltage
[3] = 1200000, /* 1.2V */
958 .buck1_voltage
[4] = 1150000, /* 1.15V */
959 .buck1_voltage
[5] = 1100000, /* 1.1V */
960 .buck1_voltage
[6] = 1000000, /* 1.0V */
961 .buck1_voltage
[7] = 950000, /* 0.95V */
963 .buck2_voltage
[0] = 1100000, /* 1.1V */
964 .buck2_voltage
[1] = 1000000, /* 1.0V */
965 .buck2_voltage
[2] = 950000, /* 0.95V */
966 .buck2_voltage
[3] = 900000, /* 0.9V */
967 .buck2_voltage
[4] = 1100000, /* 1.1V */
968 .buck2_voltage
[5] = 1000000, /* 1.0V */
969 .buck2_voltage
[6] = 950000, /* 0.95V */
970 .buck2_voltage
[7] = 900000, /* 0.9V */
972 .buck5_voltage
[0] = 1200000, /* 1.2V */
973 .buck5_voltage
[1] = 1200000, /* 1.2V */
974 .buck5_voltage
[2] = 1200000, /* 1.2V */
975 .buck5_voltage
[3] = 1200000, /* 1.2V */
976 .buck5_voltage
[4] = 1200000, /* 1.2V */
977 .buck5_voltage
[5] = 1200000, /* 1.2V */
978 .buck5_voltage
[6] = 1200000, /* 1.2V */
979 .buck5_voltage
[7] = 1200000, /* 1.2V */
982 /* GPIO I2C 5 (PMIC) */
983 enum { I2C5_MAX8997
};
984 static struct i2c_board_info i2c5_devs
[] __initdata
= {
986 I2C_BOARD_INFO("max8997", 0xCC >> 1),
987 .platform_data
= &nuri_max8997_pdata
,
991 static struct max17042_platform_data nuri_battery_platform_data
= {
994 /* GPIO I2C 9 (Fuel Gauge) */
995 static struct i2c_gpio_platform_data i2c9_gpio_data
= {
996 .sda_pin
= EXYNOS4_GPY4(0), /* XM0ADDR_8 */
997 .scl_pin
= EXYNOS4_GPY4(1), /* XM0ADDR_9 */
999 static struct platform_device i2c9_gpio
= {
1003 .platform_data
= &i2c9_gpio_data
,
1006 enum { I2C9_MAX17042
};
1007 static struct i2c_board_info i2c9_devs
[] __initdata
= {
1009 I2C_BOARD_INFO("max17042", 0x36),
1010 .platform_data
= &nuri_battery_platform_data
,
1014 /* MAX8903 Secondary Charger */
1015 static struct regulator_consumer_supply supplies_max8903
[] = {
1016 REGULATOR_SUPPLY("vinchg2", "charger-manager.0"),
1019 static struct regulator_init_data max8903_charger_en_data
= {
1021 .name
= "VOUT_CHARGER",
1022 .valid_ops_mask
= REGULATOR_CHANGE_STATUS
,
1025 .num_consumer_supplies
= ARRAY_SIZE(supplies_max8903
),
1026 .consumer_supplies
= supplies_max8903
,
1029 static struct fixed_voltage_config max8903_charger_en
= {
1030 .supply_name
= "VOUT_CHARGER",
1031 .microvolts
= 5000000, /* Assume 5VDC */
1032 .gpio
= EXYNOS4_GPY4(5), /* TA_EN negaged */
1033 .enable_high
= 0, /* Enable = Low */
1034 .enabled_at_boot
= 1,
1035 .init_data
= &max8903_charger_en_data
,
1038 static struct platform_device max8903_fixed_reg_dev
= {
1039 .name
= "reg-fixed-voltage",
1040 .id
= FIXED_REG_ID_MAX8903
,
1041 .dev
= { .platform_data
= &max8903_charger_en
},
1044 static struct max8903_pdata nuri_max8903
= {
1046 * cen: don't control with the driver, let it be
1047 * controlled by regulator above
1049 .dok
= EXYNOS4_GPX1(4), /* TA_nCONNECTED */
1050 /* uok, usus: not connected */
1051 .chg
= EXYNOS4_GPE2(0), /* TA_nCHG */
1052 /* flt: vcc_1.8V_pda */
1053 .dcm
= EXYNOS4_GPL0(1), /* CURR_ADJ */
1056 .usb_valid
= false, /* USB is not wired to MAX8903 */
1059 static struct platform_device nuri_max8903_device
= {
1060 .name
= "max8903-charger",
1062 .platform_data
= &nuri_max8903
,
1066 static void __init
nuri_power_init(void)
1071 gpio
= EXYNOS4_GPX0(7);
1072 gpio_request(gpio
, "AP_PMIC_IRQ");
1073 s3c_gpio_cfgpin(gpio
, S3C_GPIO_SFN(0xf));
1074 s3c_gpio_setpull(gpio
, S3C_GPIO_PULL_NONE
);
1076 gpio
= EXYNOS4_GPX2(3);
1077 gpio_request(gpio
, "FUEL_ALERT");
1078 s3c_gpio_cfgpin(gpio
, S3C_GPIO_SFN(0xf));
1079 s3c_gpio_setpull(gpio
, S3C_GPIO_PULL_NONE
);
1081 gpio
= nuri_max8903
.dok
;
1082 gpio_request(gpio
, "TA_nCONNECTED");
1083 s3c_gpio_cfgpin(gpio
, S3C_GPIO_SFN(0xf));
1084 s3c_gpio_setpull(gpio
, S3C_GPIO_PULL_NONE
);
1085 ta_en
= gpio_get_value(gpio
) ? 0 : 1;
1087 gpio
= nuri_max8903
.chg
;
1088 gpio_request(gpio
, "TA_nCHG");
1089 gpio_direction_input(gpio
);
1091 gpio
= nuri_max8903
.dcm
;
1092 gpio_request(gpio
, "CURR_ADJ");
1093 gpio_direction_output(gpio
, ta_en
);
1097 static struct s5p_ehci_platdata nuri_ehci_pdata
;
1099 static void __init
nuri_ehci_init(void)
1101 struct s5p_ehci_platdata
*pdata
= &nuri_ehci_pdata
;
1103 s5p_ehci_set_platdata(pdata
);
1107 static struct s3c_hsotg_plat nuri_hsotg_pdata
;
1110 static struct regulator_consumer_supply cam_vt_cam15_supply
=
1111 REGULATOR_SUPPLY("vdd_core", "6-003c");
1113 static struct regulator_init_data cam_vt_cam15_reg_init_data
= {
1114 .constraints
= { .valid_ops_mask
= REGULATOR_CHANGE_STATUS
},
1115 .num_consumer_supplies
= 1,
1116 .consumer_supplies
= &cam_vt_cam15_supply
,
1119 static struct fixed_voltage_config cam_vt_cam15_fixed_voltage_cfg
= {
1120 .supply_name
= "VT_CAM_1.5V",
1121 .microvolts
= 1500000,
1122 .gpio
= EXYNOS4_GPE2(2), /* VT_CAM_1.5V_EN */
1124 .init_data
= &cam_vt_cam15_reg_init_data
,
1127 static struct platform_device cam_vt_cam15_fixed_rdev
= {
1128 .name
= "reg-fixed-voltage", .id
= FIXED_REG_ID_CAM_VT_15V
,
1129 .dev
= { .platform_data
= &cam_vt_cam15_fixed_voltage_cfg
},
1132 static struct regulator_consumer_supply cam_vdda_supply
[] = {
1133 REGULATOR_SUPPLY("vdda", "6-003c"),
1134 REGULATOR_SUPPLY("a_sensor", "0-001f"),
1137 static struct regulator_init_data cam_vdda_reg_init_data
= {
1138 .constraints
= { .valid_ops_mask
= REGULATOR_CHANGE_STATUS
},
1139 .num_consumer_supplies
= ARRAY_SIZE(cam_vdda_supply
),
1140 .consumer_supplies
= cam_vdda_supply
,
1143 static struct fixed_voltage_config cam_vdda_fixed_voltage_cfg
= {
1144 .supply_name
= "CAM_IO_EN",
1145 .microvolts
= 2800000,
1146 .gpio
= EXYNOS4_GPE2(1), /* CAM_IO_EN */
1148 .init_data
= &cam_vdda_reg_init_data
,
1151 static struct platform_device cam_vdda_fixed_rdev
= {
1152 .name
= "reg-fixed-voltage", .id
= FIXED_REG_ID_CAM_A28V
,
1153 .dev
= { .platform_data
= &cam_vdda_fixed_voltage_cfg
},
1156 static struct regulator_consumer_supply camera_8m_12v_supply
=
1157 REGULATOR_SUPPLY("dig_12", "0-001f");
1159 static struct regulator_init_data cam_8m_12v_reg_init_data
= {
1160 .num_consumer_supplies
= 1,
1161 .consumer_supplies
= &camera_8m_12v_supply
,
1163 .valid_ops_mask
= REGULATOR_CHANGE_STATUS
1167 static struct fixed_voltage_config cam_8m_12v_fixed_voltage_cfg
= {
1168 .supply_name
= "8M_1.2V",
1169 .microvolts
= 1200000,
1170 .gpio
= EXYNOS4_GPE2(5), /* 8M_1.2V_EN */
1172 .init_data
= &cam_8m_12v_reg_init_data
,
1175 static struct platform_device cam_8m_12v_fixed_rdev
= {
1176 .name
= "reg-fixed-voltage", .id
= FIXED_REG_ID_CAM_12V
,
1177 .dev
= { .platform_data
= &cam_8m_12v_fixed_voltage_cfg
},
1180 static struct s5p_platform_mipi_csis mipi_csis_platdata
= {
1181 .clk_rate
= 166000000UL,
1185 .phy_enable
= s5p_csis_phy_enable
,
1188 #define GPIO_CAM_MEGA_RST EXYNOS4_GPY3(7) /* ISP_RESET */
1189 #define GPIO_CAM_8M_ISP_INT EXYNOS4_GPL2(5)
1190 #define GPIO_CAM_VT_NSTBY EXYNOS4_GPL2(0)
1191 #define GPIO_CAM_VT_NRST EXYNOS4_GPL2(1)
1193 static struct s5k6aa_platform_data s5k6aa_pldata
= {
1194 .mclk_frequency
= 24000000UL,
1195 .gpio_reset
= { GPIO_CAM_VT_NRST
, 0 },
1196 .gpio_stby
= { GPIO_CAM_VT_NSTBY
, 0 },
1197 .bus_type
= V4L2_MBUS_PARALLEL
,
1201 static struct i2c_board_info s5k6aa_board_info
= {
1202 I2C_BOARD_INFO("S5K6AA", 0x3c),
1203 .platform_data
= &s5k6aa_pldata
,
1206 static struct m5mols_platform_data m5mols_platdata
= {
1207 .gpio_reset
= GPIO_CAM_MEGA_RST
,
1210 static struct i2c_board_info m5mols_board_info
= {
1211 I2C_BOARD_INFO("M5MOLS", 0x1F),
1212 .platform_data
= &m5mols_platdata
,
1215 static struct s5p_fimc_isp_info nuri_camera_sensors
[] = {
1217 .flags
= V4L2_MBUS_PCLK_SAMPLE_RISING
|
1218 V4L2_MBUS_VSYNC_ACTIVE_LOW
,
1219 .bus_type
= FIMC_ITU_601
,
1220 .board_info
= &s5k6aa_board_info
,
1221 .clk_frequency
= 24000000UL,
1224 .flags
= V4L2_MBUS_PCLK_SAMPLE_FALLING
|
1225 V4L2_MBUS_VSYNC_ACTIVE_LOW
,
1226 .bus_type
= FIMC_MIPI_CSI2
,
1227 .board_info
= &m5mols_board_info
,
1228 .clk_frequency
= 24000000UL,
1229 .csi_data_align
= 32,
1233 static struct s5p_platform_fimc fimc_md_platdata
= {
1234 .isp_info
= nuri_camera_sensors
,
1235 .num_clients
= ARRAY_SIZE(nuri_camera_sensors
),
1238 static struct gpio nuri_camera_gpios
[] = {
1239 { GPIO_CAM_VT_NSTBY
, GPIOF_OUT_INIT_LOW
, "CAM_VGA_NSTBY" },
1240 { GPIO_CAM_VT_NRST
, GPIOF_OUT_INIT_LOW
, "CAM_VGA_NRST" },
1241 { GPIO_CAM_8M_ISP_INT
, GPIOF_IN
, "8M_ISP_INT" },
1242 { GPIO_CAM_MEGA_RST
, GPIOF_OUT_INIT_LOW
, "CAM_8M_NRST" },
1245 static void __init
nuri_camera_init(void)
1247 s3c_set_platdata(&mipi_csis_platdata
, sizeof(mipi_csis_platdata
),
1248 &s5p_device_mipi_csis0
);
1249 s3c_set_platdata(&fimc_md_platdata
, sizeof(fimc_md_platdata
),
1250 &s5p_device_fimc_md
);
1252 if (gpio_request_array(nuri_camera_gpios
,
1253 ARRAY_SIZE(nuri_camera_gpios
))) {
1254 pr_err("%s: GPIO request failed\n", __func__
);
1258 m5mols_board_info
.irq
= s5p_register_gpio_interrupt(GPIO_CAM_8M_ISP_INT
);
1259 if (!IS_ERR_VALUE(m5mols_board_info
.irq
))
1260 s3c_gpio_cfgpin(GPIO_CAM_8M_ISP_INT
, S3C_GPIO_SFN(0xF));
1262 pr_err("%s: Failed to configure 8M_ISP_INT GPIO\n", __func__
);
1264 /* Free GPIOs controlled directly by the sensor drivers. */
1265 gpio_free(GPIO_CAM_VT_NRST
);
1266 gpio_free(GPIO_CAM_VT_NSTBY
);
1267 gpio_free(GPIO_CAM_MEGA_RST
);
1269 if (exynos4_fimc_setup_gpio(S5P_CAMPORT_A
)) {
1270 pr_err("%s: Camera port A setup failed\n", __func__
);
1273 /* Increase drive strength of the sensor clock output */
1274 s5p_gpio_set_drvstr(EXYNOS4_GPJ1(3), S5P_GPIO_DRVSTR_LV4
);
1277 static struct s3c2410_platform_i2c nuri_i2c6_platdata __initdata
= {
1278 .frequency
= 400000U,
1283 static struct s3c2410_platform_i2c nuri_i2c0_platdata __initdata
= {
1284 .frequency
= 400000U,
1288 /* DEVFREQ controlling memory/bus */
1289 static struct platform_device exynos4_bus_devfreq
= {
1290 .name
= "exynos4210-busfreq",
1293 static struct platform_device
*nuri_devices
[] __initdata
= {
1294 /* Samsung Platform Devices */
1295 &s3c_device_i2c5
, /* PMIC should initialize first */
1298 &emmc_fixed_voltage
,
1299 &s5p_device_mipi_csis0
,
1309 &s3c_device_timer
[0],
1320 &s5p_device_fimc_md
,
1321 &s3c_device_usb_hsotg
,
1326 &nuri_backlight_device
,
1327 &max8903_fixed_reg_dev
,
1328 &nuri_max8903_device
,
1329 &cam_vt_cam15_fixed_rdev
,
1330 &cam_vdda_fixed_rdev
,
1331 &cam_8m_12v_fixed_rdev
,
1332 &exynos4_bus_devfreq
,
1333 #ifdef CONFIG_DRM_EXYNOS
1338 static void __init
nuri_map_io(void)
1340 exynos_init_io(NULL
, 0);
1341 s3c24xx_init_clocks(clk_xusbxti
.rate
);
1342 s3c24xx_init_uarts(nuri_uartcfgs
, ARRAY_SIZE(nuri_uartcfgs
));
1345 static void __init
nuri_reserve(void)
1347 s5p_mfc_reserve_mem(0x43000000, 8 << 20, 0x51000000, 8 << 20);
1350 static void __init
nuri_machine_init(void)
1356 s3c_i2c0_set_platdata(&nuri_i2c0_platdata
);
1357 i2c_register_board_info(1, i2c1_devs
, ARRAY_SIZE(i2c1_devs
));
1358 s3c_i2c3_set_platdata(&i2c3_data
);
1359 i2c_register_board_info(3, i2c3_devs
, ARRAY_SIZE(i2c3_devs
));
1360 s3c_i2c5_set_platdata(NULL
);
1361 i2c5_devs
[I2C5_MAX8997
].irq
= gpio_to_irq(EXYNOS4_GPX0(7));
1362 i2c_register_board_info(5, i2c5_devs
, ARRAY_SIZE(i2c5_devs
));
1363 i2c9_devs
[I2C9_MAX17042
].irq
= gpio_to_irq(EXYNOS4_GPX2(3));
1364 i2c_register_board_info(9, i2c9_devs
, ARRAY_SIZE(i2c9_devs
));
1365 s3c_i2c6_set_platdata(&nuri_i2c6_platdata
);
1367 #ifdef CONFIG_DRM_EXYNOS
1368 s5p_device_fimd0
.dev
.platform_data
= &drm_fimd_pdata
;
1369 exynos4_fimd0_gpio_setup_24bpp();
1371 s5p_fimd0_set_platdata(&nuri_fb_pdata
);
1377 s3c_hsotg_set_platdata(&nuri_hsotg_pdata
);
1380 platform_add_devices(nuri_devices
, ARRAY_SIZE(nuri_devices
));
1383 MACHINE_START(NURI
, "NURI")
1384 /* Maintainer: Kyungmin Park <kyungmin.park@samsung.com> */
1385 .atag_offset
= 0x100,
1386 .init_irq
= exynos4_init_irq
,
1387 .map_io
= nuri_map_io
,
1388 .handle_irq
= gic_handle_irq
,
1389 .init_machine
= nuri_machine_init
,
1390 .init_late
= exynos_init_late
,
1391 .timer
= &exynos4_timer
,
1392 .reserve
= &nuri_reserve
,
1393 .restart
= exynos4_restart
,