xref: /openbmc/linux/arch/arm/mach-omap2/board-n8x0.c (revision 6f9a8a54)
1d2912cb1SThomas Gleixner // SPDX-License-Identifier: GPL-2.0-only
263138812SKalle Valo /*
363138812SKalle Valo  * linux/arch/arm/mach-omap2/board-n8x0.c
463138812SKalle Valo  *
563138812SKalle Valo  * Copyright (C) 2005-2009 Nokia Corporation
663138812SKalle Valo  * Author: Juha Yrjola <juha.yrjola@nokia.com>
763138812SKalle Valo  *
863138812SKalle Valo  * Modified from mach-omap2/board-generic.c
963138812SKalle Valo  */
1063138812SKalle Valo 
1163138812SKalle Valo #include <linux/clk.h>
1263138812SKalle Valo #include <linux/delay.h>
13e519f0bbSLinus Walleij #include <linux/gpio/machine.h>
148e0285abSLinus Walleij #include <linux/gpio/consumer.h>
1563138812SKalle Valo #include <linux/init.h>
1663138812SKalle Valo #include <linux/io.h>
170857ba3cSAaro Koskinen #include <linux/irq.h>
1863138812SKalle Valo #include <linux/stddef.h>
199418c65fSTony Lindgren #include <linux/i2c.h>
2063138812SKalle Valo #include <linux/spi/spi.h>
2163138812SKalle Valo #include <linux/usb/musb.h>
22826c71a0SAndreas Fenkart #include <linux/mmc/host.h>
232203747cSArnd Bergmann #include <linux/platform_data/spi-omap2-mcspi.h>
24826c71a0SAndreas Fenkart #include <linux/platform_data/mmc-omap.h>
257bd3b618STony Lindgren #include <linux/mfd/menelaus.h>
2663138812SKalle Valo 
2763138812SKalle Valo #include <asm/mach/arch.h>
2863138812SKalle Valo #include <asm/mach-types.h>
2963138812SKalle Valo 
304e65331cSTony Lindgren #include "common.h"
3168f39e74STony Lindgren #include "mmc.h"
328e0285abSLinus Walleij #include "usb-tusb6010.h"
33810ac2a1STony Lindgren #include "soc.h"
34e92ce89cSFelipe Balbi #include "common-board-devices.h"
35bd8f0fc9STony Lindgren 
3697b9ad16SFrancisco Alecrim #define TUSB6010_ASYNC_CS	1
3797b9ad16SFrancisco Alecrim #define TUSB6010_SYNC_CS	4
3897b9ad16SFrancisco Alecrim #define TUSB6010_DMACHAN	0x3f
3997b9ad16SFrancisco Alecrim 
40c8f27e97STony Lindgren #define NOKIA_N810_WIMAX	(1 << 2)
41c8f27e97STony Lindgren #define NOKIA_N810		(1 << 1)
42c8f27e97STony Lindgren #define NOKIA_N800		(1 << 0)
43c8f27e97STony Lindgren 
44c8f27e97STony Lindgren static u32 board_caps;
45c8f27e97STony Lindgren 
46c8f27e97STony Lindgren #define board_is_n800()		(board_caps & NOKIA_N800)
47c8f27e97STony Lindgren #define board_is_n810()		(board_caps & NOKIA_N810)
48c8f27e97STony Lindgren #define board_is_n810_wimax()	(board_caps & NOKIA_N810_WIMAX)
49c8f27e97STony Lindgren 
board_check_revision(void)50c8f27e97STony Lindgren static void board_check_revision(void)
51c8f27e97STony Lindgren {
52c8f27e97STony Lindgren 	if (of_machine_is_compatible("nokia,n800"))
53c8f27e97STony Lindgren 		board_caps = NOKIA_N800;
54c8f27e97STony Lindgren 	else if (of_machine_is_compatible("nokia,n810"))
55c8f27e97STony Lindgren 		board_caps = NOKIA_N810;
56c8f27e97STony Lindgren 	else if (of_machine_is_compatible("nokia,n810-wimax"))
57c8f27e97STony Lindgren 		board_caps = NOKIA_N810_WIMAX;
58c8f27e97STony Lindgren 
59c8f27e97STony Lindgren 	if (!board_caps)
60c8f27e97STony Lindgren 		pr_err("Unknown board\n");
61c8f27e97STony Lindgren }
62c8f27e97STony Lindgren 
63502ad2a6SJavier Martinez Canillas #if IS_ENABLED(CONFIG_USB_MUSB_TUSB6010)
6497b9ad16SFrancisco Alecrim 
6597b9ad16SFrancisco Alecrim static struct musb_hdrc_config musb_config = {
6697b9ad16SFrancisco Alecrim 	.multipoint	= 1,
6797b9ad16SFrancisco Alecrim 	.dyn_fifo	= 1,
6897b9ad16SFrancisco Alecrim 	.num_eps	= 16,
6997b9ad16SFrancisco Alecrim 	.ram_bits	= 12,
7097b9ad16SFrancisco Alecrim };
7197b9ad16SFrancisco Alecrim 
7297b9ad16SFrancisco Alecrim static struct musb_hdrc_platform_data tusb_data = {
7397b9ad16SFrancisco Alecrim 	.mode		= MUSB_OTG,
7497b9ad16SFrancisco Alecrim 	.min_power	= 25,	/* x2 = 50 mA drawn from VBUS as peripheral */
7597b9ad16SFrancisco Alecrim 	.power		= 100,	/* Max 100 mA VBUS for host mode */
7697b9ad16SFrancisco Alecrim 	.config		= &musb_config,
7797b9ad16SFrancisco Alecrim };
7897b9ad16SFrancisco Alecrim 
798e0285abSLinus Walleij static struct gpiod_lookup_table tusb_gpio_table = {
808e0285abSLinus Walleij 	.dev_id = "musb-tusb",
818e0285abSLinus Walleij 	.table = {
826f9a8a54SAaro Koskinen 		GPIO_LOOKUP("gpio-0-31", 0, "enable", GPIO_ACTIVE_HIGH),
836f9a8a54SAaro Koskinen 		GPIO_LOOKUP("gpio-32-63", 26, "int", GPIO_ACTIVE_HIGH),
848e0285abSLinus Walleij 		{ }
858e0285abSLinus Walleij 	},
868e0285abSLinus Walleij };
878e0285abSLinus Walleij 
n8x0_usb_init(void)8897b9ad16SFrancisco Alecrim static void __init n8x0_usb_init(void)
8997b9ad16SFrancisco Alecrim {
9097b9ad16SFrancisco Alecrim 	int ret = 0;
9197b9ad16SFrancisco Alecrim 
928e0285abSLinus Walleij 	gpiod_add_lookup_table(&tusb_gpio_table);
9397b9ad16SFrancisco Alecrim 	ret = tusb6010_setup_interface(&tusb_data, TUSB6010_REFCLK_19, 2,
9497b9ad16SFrancisco Alecrim 				       TUSB6010_ASYNC_CS, TUSB6010_SYNC_CS,
958e0285abSLinus Walleij 				       TUSB6010_DMACHAN);
9697b9ad16SFrancisco Alecrim 	if (ret != 0)
9797b9ad16SFrancisco Alecrim 		return;
9897b9ad16SFrancisco Alecrim 
998e0285abSLinus Walleij 	pr_info("TUSB 6010\n");
1008e0285abSLinus Walleij 
1018e0285abSLinus Walleij 	return;
10297b9ad16SFrancisco Alecrim }
10397b9ad16SFrancisco Alecrim #else
10497b9ad16SFrancisco Alecrim 
n8x0_usb_init(void)10597b9ad16SFrancisco Alecrim static void __init n8x0_usb_init(void) {}
10697b9ad16SFrancisco Alecrim 
1077c925546SFelipe Balbi #endif /*CONFIG_USB_MUSB_TUSB6010 */
10897b9ad16SFrancisco Alecrim 
10997b9ad16SFrancisco Alecrim 
11063138812SKalle Valo static struct omap2_mcspi_device_config p54spi_mcspi_config = {
11163138812SKalle Valo 	.turbo_mode	= 0,
11263138812SKalle Valo };
11363138812SKalle Valo 
11463138812SKalle Valo static struct spi_board_info n800_spi_board_info[] __initdata = {
11563138812SKalle Valo 	{
11663138812SKalle Valo 		.modalias	= "p54spi",
11763138812SKalle Valo 		.bus_num	= 2,
11863138812SKalle Valo 		.chip_select	= 0,
11963138812SKalle Valo 		.max_speed_hz   = 48000000,
12063138812SKalle Valo 		.controller_data = &p54spi_mcspi_config,
12163138812SKalle Valo 	},
12263138812SKalle Valo };
12363138812SKalle Valo 
124502ad2a6SJavier Martinez Canillas #if defined(CONFIG_MENELAUS) && IS_ENABLED(CONFIG_MMC_OMAP)
1259418c65fSTony Lindgren 
1269418c65fSTony Lindgren /*
1279418c65fSTony Lindgren  * On both N800 and N810, only the first of the two MMC controllers is in use.
1289418c65fSTony Lindgren  * The two MMC slots are multiplexed via Menelaus companion chip over I2C.
1299418c65fSTony Lindgren  * On N800, both slots are powered via Menelaus. On N810, only one of the
1309418c65fSTony Lindgren  * slots is powered via Menelaus. The N810 EMMC is powered via GPIO.
1319418c65fSTony Lindgren  *
1329418c65fSTony Lindgren  * VMMC				slot 1 on both N800 and N810
1339418c65fSTony Lindgren  * VDCDC3_APE and VMCS2_APE	slot 2 on N800
1349418c65fSTony Lindgren  * GPIO23 and GPIO9		slot 2 EMMC on N810
1359418c65fSTony Lindgren  *
1369418c65fSTony Lindgren  */
13749b87c6dSTony Lindgren static int slot1_cover_open;
13849b87c6dSTony Lindgren static int slot2_cover_open;
13949b87c6dSTony Lindgren static struct device *mmc_device;
14049b87c6dSTony Lindgren 
141086426dcSAaro Koskinen static struct gpiod_lookup_table nokia800_mmc_gpio_table = {
142e519f0bbSLinus Walleij 	.dev_id = "mmci-omap.0",
143e519f0bbSLinus Walleij 	.table = {
144e519f0bbSLinus Walleij 		/* Slot switch, GPIO 96 */
145d73e7fb9SAaro Koskinen 		GPIO_LOOKUP("gpio-96-127", 0, "switch", GPIO_ACTIVE_HIGH),
146e519f0bbSLinus Walleij 		{ }
147e519f0bbSLinus Walleij 	},
148e519f0bbSLinus Walleij };
149e519f0bbSLinus Walleij 
150e519f0bbSLinus Walleij static struct gpiod_lookup_table nokia810_mmc_gpio_table = {
151e519f0bbSLinus Walleij 	.dev_id = "mmci-omap.0",
152e519f0bbSLinus Walleij 	.table = {
153086426dcSAaro Koskinen 		/* Slot switch, GPIO 96 */
154086426dcSAaro Koskinen 		GPIO_LOOKUP("gpio-96-127", 0, "switch", GPIO_ACTIVE_HIGH),
155e519f0bbSLinus Walleij 		/* Slot index 1, VSD power, GPIO 23 */
156d73e7fb9SAaro Koskinen 		GPIO_LOOKUP_IDX("gpio-0-31", 23, "vsd", 1, GPIO_ACTIVE_HIGH),
157e519f0bbSLinus Walleij 		/* Slot index 1, VIO power, GPIO 9 */
158d73e7fb9SAaro Koskinen 		GPIO_LOOKUP_IDX("gpio-0-31", 9, "vio", 1, GPIO_ACTIVE_HIGH),
159e519f0bbSLinus Walleij 		{ }
160e519f0bbSLinus Walleij 	},
161e519f0bbSLinus Walleij };
1629418c65fSTony Lindgren 
n8x0_mmc_set_power_menelaus(struct device * dev,int slot,int power_on,int vdd)1639418c65fSTony Lindgren static int n8x0_mmc_set_power_menelaus(struct device *dev, int slot,
1649418c65fSTony Lindgren 					int power_on, int vdd)
1659418c65fSTony Lindgren {
1669418c65fSTony Lindgren 	int mV;
1679418c65fSTony Lindgren 
1689418c65fSTony Lindgren #ifdef CONFIG_MMC_DEBUG
1699418c65fSTony Lindgren 	dev_dbg(dev, "Set slot %d power: %s (vdd %d)\n", slot + 1,
1709418c65fSTony Lindgren 		power_on ? "on" : "off", vdd);
1719418c65fSTony Lindgren #endif
1729418c65fSTony Lindgren 	if (slot == 0) {
1739418c65fSTony Lindgren 		if (!power_on)
1749418c65fSTony Lindgren 			return menelaus_set_vmmc(0);
1759418c65fSTony Lindgren 		switch (1 << vdd) {
1769418c65fSTony Lindgren 		case MMC_VDD_33_34:
1779418c65fSTony Lindgren 		case MMC_VDD_32_33:
1789418c65fSTony Lindgren 		case MMC_VDD_31_32:
1799418c65fSTony Lindgren 			mV = 3100;
1809418c65fSTony Lindgren 			break;
1819418c65fSTony Lindgren 		case MMC_VDD_30_31:
1829418c65fSTony Lindgren 			mV = 3000;
1839418c65fSTony Lindgren 			break;
1849418c65fSTony Lindgren 		case MMC_VDD_28_29:
1859418c65fSTony Lindgren 			mV = 2800;
1869418c65fSTony Lindgren 			break;
1879418c65fSTony Lindgren 		case MMC_VDD_165_195:
1889418c65fSTony Lindgren 			mV = 1850;
1899418c65fSTony Lindgren 			break;
1909418c65fSTony Lindgren 		default:
1919418c65fSTony Lindgren 			BUG();
1929418c65fSTony Lindgren 		}
1939418c65fSTony Lindgren 		return menelaus_set_vmmc(mV);
1949418c65fSTony Lindgren 	} else {
1959418c65fSTony Lindgren 		if (!power_on)
1969418c65fSTony Lindgren 			return menelaus_set_vdcdc(3, 0);
1979418c65fSTony Lindgren 		switch (1 << vdd) {
1989418c65fSTony Lindgren 		case MMC_VDD_33_34:
1999418c65fSTony Lindgren 		case MMC_VDD_32_33:
2009418c65fSTony Lindgren 			mV = 3300;
2019418c65fSTony Lindgren 			break;
2029418c65fSTony Lindgren 		case MMC_VDD_30_31:
2039418c65fSTony Lindgren 		case MMC_VDD_29_30:
2049418c65fSTony Lindgren 			mV = 3000;
2059418c65fSTony Lindgren 			break;
2069418c65fSTony Lindgren 		case MMC_VDD_28_29:
2079418c65fSTony Lindgren 		case MMC_VDD_27_28:
2089418c65fSTony Lindgren 			mV = 2800;
2099418c65fSTony Lindgren 			break;
2109418c65fSTony Lindgren 		case MMC_VDD_24_25:
2119418c65fSTony Lindgren 		case MMC_VDD_23_24:
2129418c65fSTony Lindgren 			mV = 2400;
2139418c65fSTony Lindgren 			break;
2149418c65fSTony Lindgren 		case MMC_VDD_22_23:
2159418c65fSTony Lindgren 		case MMC_VDD_21_22:
2169418c65fSTony Lindgren 			mV = 2200;
2179418c65fSTony Lindgren 			break;
2189418c65fSTony Lindgren 		case MMC_VDD_20_21:
2199418c65fSTony Lindgren 			mV = 2000;
2209418c65fSTony Lindgren 			break;
2219418c65fSTony Lindgren 		case MMC_VDD_165_195:
2229418c65fSTony Lindgren 			mV = 1800;
2239418c65fSTony Lindgren 			break;
2249418c65fSTony Lindgren 		default:
2259418c65fSTony Lindgren 			BUG();
2269418c65fSTony Lindgren 		}
2279418c65fSTony Lindgren 		return menelaus_set_vdcdc(3, mV);
2289418c65fSTony Lindgren 	}
2299418c65fSTony Lindgren 	return 0;
2309418c65fSTony Lindgren }
2319418c65fSTony Lindgren 
n8x0_mmc_set_power(struct device * dev,int slot,int power_on,int vdd)2329418c65fSTony Lindgren static int n8x0_mmc_set_power(struct device *dev, int slot, int power_on,
2339418c65fSTony Lindgren 			      int vdd)
2349418c65fSTony Lindgren {
235c8f27e97STony Lindgren 	if (board_is_n800() || slot == 0)
2369418c65fSTony Lindgren 		return n8x0_mmc_set_power_menelaus(dev, slot, power_on, vdd);
2379418c65fSTony Lindgren 
238e519f0bbSLinus Walleij 	/* The n810 power will be handled by GPIO code in the driver */
2399418c65fSTony Lindgren 
2409418c65fSTony Lindgren 	return 0;
2419418c65fSTony Lindgren }
2429418c65fSTony Lindgren 
n8x0_mmc_set_bus_mode(struct device * dev,int slot,int bus_mode)2439418c65fSTony Lindgren static int n8x0_mmc_set_bus_mode(struct device *dev, int slot, int bus_mode)
2449418c65fSTony Lindgren {
2459418c65fSTony Lindgren 	int r;
2469418c65fSTony Lindgren 
2479418c65fSTony Lindgren 	dev_dbg(dev, "Set slot %d bus mode %s\n", slot + 1,
2489418c65fSTony Lindgren 		bus_mode == MMC_BUSMODE_OPENDRAIN ? "open-drain" : "push-pull");
2499418c65fSTony Lindgren 	BUG_ON(slot != 0 && slot != 1);
2509418c65fSTony Lindgren 	slot++;
2519418c65fSTony Lindgren 	switch (bus_mode) {
2529418c65fSTony Lindgren 	case MMC_BUSMODE_OPENDRAIN:
2539418c65fSTony Lindgren 		r = menelaus_set_mmc_opendrain(slot, 1);
2549418c65fSTony Lindgren 		break;
2559418c65fSTony Lindgren 	case MMC_BUSMODE_PUSHPULL:
2569418c65fSTony Lindgren 		r = menelaus_set_mmc_opendrain(slot, 0);
2579418c65fSTony Lindgren 		break;
2589418c65fSTony Lindgren 	default:
2599418c65fSTony Lindgren 		BUG();
2609418c65fSTony Lindgren 	}
2619418c65fSTony Lindgren 	if (r != 0 && printk_ratelimit())
2629418c65fSTony Lindgren 		dev_err(dev, "MMC: unable to set bus mode for slot %d\n",
2639418c65fSTony Lindgren 			slot);
2649418c65fSTony Lindgren 	return r;
2659418c65fSTony Lindgren }
2669418c65fSTony Lindgren 
n8x0_mmc_get_cover_state(struct device * dev,int slot)2679418c65fSTony Lindgren static int n8x0_mmc_get_cover_state(struct device *dev, int slot)
2689418c65fSTony Lindgren {
2699418c65fSTony Lindgren 	slot++;
2709418c65fSTony Lindgren 	BUG_ON(slot != 1 && slot != 2);
2719418c65fSTony Lindgren 	if (slot == 1)
2729418c65fSTony Lindgren 		return slot1_cover_open;
2739418c65fSTony Lindgren 	else
2749418c65fSTony Lindgren 		return slot2_cover_open;
2759418c65fSTony Lindgren }
2769418c65fSTony Lindgren 
n8x0_mmc_callback(void * data,u8 card_mask)2779418c65fSTony Lindgren static void n8x0_mmc_callback(void *data, u8 card_mask)
2789418c65fSTony Lindgren {
279040ab72eSYongqiang Liu #ifdef CONFIG_MMC_OMAP
2809418c65fSTony Lindgren 	int bit, *openp, index;
2819418c65fSTony Lindgren 
282c8f27e97STony Lindgren 	if (board_is_n800()) {
2839418c65fSTony Lindgren 		bit = 1 << 1;
2849418c65fSTony Lindgren 		openp = &slot2_cover_open;
2859418c65fSTony Lindgren 		index = 1;
2869418c65fSTony Lindgren 	} else {
2879418c65fSTony Lindgren 		bit = 1;
2889418c65fSTony Lindgren 		openp = &slot1_cover_open;
2899418c65fSTony Lindgren 		index = 0;
2909418c65fSTony Lindgren 	}
2919418c65fSTony Lindgren 
2929418c65fSTony Lindgren 	if (card_mask & bit)
2939418c65fSTony Lindgren 		*openp = 1;
2949418c65fSTony Lindgren 	else
2959418c65fSTony Lindgren 		*openp = 0;
2969418c65fSTony Lindgren 
2979418c65fSTony Lindgren 	omap_mmc_notify_cover_event(mmc_device, index, *openp);
298d5171102STony Lindgren #else
299d5171102STony Lindgren 	pr_warn("MMC: notify cover event not available\n");
300d5171102STony Lindgren #endif
3019418c65fSTony Lindgren }
3029418c65fSTony Lindgren 
n8x0_mmc_late_init(struct device * dev)3039418c65fSTony Lindgren static int n8x0_mmc_late_init(struct device *dev)
3049418c65fSTony Lindgren {
3059418c65fSTony Lindgren 	int r, bit, *openp;
3069418c65fSTony Lindgren 	int vs2sel;
3079418c65fSTony Lindgren 
3089418c65fSTony Lindgren 	mmc_device = dev;
3099418c65fSTony Lindgren 
3109418c65fSTony Lindgren 	r = menelaus_set_slot_sel(1);
3119418c65fSTony Lindgren 	if (r < 0)
3129418c65fSTony Lindgren 		return r;
3139418c65fSTony Lindgren 
314c8f27e97STony Lindgren 	if (board_is_n800())
3159418c65fSTony Lindgren 		vs2sel = 0;
3169418c65fSTony Lindgren 	else
3179418c65fSTony Lindgren 		vs2sel = 2;
3189418c65fSTony Lindgren 
3199418c65fSTony Lindgren 	r = menelaus_set_mmc_slot(2, 0, vs2sel, 1);
3209418c65fSTony Lindgren 	if (r < 0)
3219418c65fSTony Lindgren 		return r;
3229418c65fSTony Lindgren 
3239418c65fSTony Lindgren 	n8x0_mmc_set_power(dev, 0, MMC_POWER_ON, 16); /* MMC_VDD_28_29 */
3249418c65fSTony Lindgren 	n8x0_mmc_set_power(dev, 1, MMC_POWER_ON, 16);
3259418c65fSTony Lindgren 
3269418c65fSTony Lindgren 	r = menelaus_set_mmc_slot(1, 1, 0, 1);
3279418c65fSTony Lindgren 	if (r < 0)
3289418c65fSTony Lindgren 		return r;
3299418c65fSTony Lindgren 	r = menelaus_set_mmc_slot(2, 1, vs2sel, 1);
3309418c65fSTony Lindgren 	if (r < 0)
3319418c65fSTony Lindgren 		return r;
3329418c65fSTony Lindgren 
3339418c65fSTony Lindgren 	r = menelaus_get_slot_pin_states();
3349418c65fSTony Lindgren 	if (r < 0)
3359418c65fSTony Lindgren 		return r;
3369418c65fSTony Lindgren 
337c8f27e97STony Lindgren 	if (board_is_n800()) {
3389418c65fSTony Lindgren 		bit = 1 << 1;
3399418c65fSTony Lindgren 		openp = &slot2_cover_open;
3409418c65fSTony Lindgren 	} else {
3419418c65fSTony Lindgren 		bit = 1;
3429418c65fSTony Lindgren 		openp = &slot1_cover_open;
3439418c65fSTony Lindgren 		slot2_cover_open = 0;
3449418c65fSTony Lindgren 	}
3459418c65fSTony Lindgren 
3469418c65fSTony Lindgren 	/* All slot pin bits seem to be inversed until first switch change */
3479418c65fSTony Lindgren 	if (r == 0xf || r == (0xf & ~bit))
3489418c65fSTony Lindgren 		r = ~r;
3499418c65fSTony Lindgren 
3509418c65fSTony Lindgren 	if (r & bit)
3519418c65fSTony Lindgren 		*openp = 1;
3529418c65fSTony Lindgren 	else
3539418c65fSTony Lindgren 		*openp = 0;
3549418c65fSTony Lindgren 
3559418c65fSTony Lindgren 	r = menelaus_register_mmc_callback(n8x0_mmc_callback, NULL);
3569418c65fSTony Lindgren 
3579418c65fSTony Lindgren 	return r;
3589418c65fSTony Lindgren }
3599418c65fSTony Lindgren 
n8x0_mmc_shutdown(struct device * dev)3609418c65fSTony Lindgren static void n8x0_mmc_shutdown(struct device *dev)
3619418c65fSTony Lindgren {
3629418c65fSTony Lindgren 	int vs2sel;
3639418c65fSTony Lindgren 
364c8f27e97STony Lindgren 	if (board_is_n800())
3659418c65fSTony Lindgren 		vs2sel = 0;
3669418c65fSTony Lindgren 	else
3679418c65fSTony Lindgren 		vs2sel = 2;
3689418c65fSTony Lindgren 
3699418c65fSTony Lindgren 	menelaus_set_mmc_slot(1, 0, 0, 0);
3709418c65fSTony Lindgren 	menelaus_set_mmc_slot(2, 0, vs2sel, 0);
3719418c65fSTony Lindgren }
3729418c65fSTony Lindgren 
n8x0_mmc_cleanup(struct device * dev)3739418c65fSTony Lindgren static void n8x0_mmc_cleanup(struct device *dev)
3749418c65fSTony Lindgren {
3759418c65fSTony Lindgren 	menelaus_unregister_mmc_callback();
3769418c65fSTony Lindgren }
3779418c65fSTony Lindgren 
3789418c65fSTony Lindgren /*
3799418c65fSTony Lindgren  * MMC controller1 has two slots that are multiplexed via I2C.
3809418c65fSTony Lindgren  * MMC controller2 is not in use.
3819418c65fSTony Lindgren  */
3829418c65fSTony Lindgren static struct omap_mmc_platform_data mmc1_data = {
383fa590c92STony Lindgren 	.nr_slots			= 0,
3849418c65fSTony Lindgren 	.init				= n8x0_mmc_late_init,
3859418c65fSTony Lindgren 	.cleanup			= n8x0_mmc_cleanup,
3869418c65fSTony Lindgren 	.shutdown			= n8x0_mmc_shutdown,
3879418c65fSTony Lindgren 	.max_freq			= 24000000,
3889418c65fSTony Lindgren 	.slots[0] = {
3899418c65fSTony Lindgren 		.wires			= 4,
3909418c65fSTony Lindgren 		.set_power		= n8x0_mmc_set_power,
3919418c65fSTony Lindgren 		.set_bus_mode		= n8x0_mmc_set_bus_mode,
3929418c65fSTony Lindgren 		.get_cover_state	= n8x0_mmc_get_cover_state,
3939418c65fSTony Lindgren 		.ocr_mask		= MMC_VDD_165_195 | MMC_VDD_30_31 |
3949418c65fSTony Lindgren 						MMC_VDD_32_33   | MMC_VDD_33_34,
3959418c65fSTony Lindgren 		.name			= "internal",
3969418c65fSTony Lindgren 	},
3979418c65fSTony Lindgren 	.slots[1] = {
3989418c65fSTony Lindgren 		.set_power		= n8x0_mmc_set_power,
3999418c65fSTony Lindgren 		.set_bus_mode		= n8x0_mmc_set_bus_mode,
4009418c65fSTony Lindgren 		.get_cover_state	= n8x0_mmc_get_cover_state,
4019418c65fSTony Lindgren 		.ocr_mask		= MMC_VDD_165_195 | MMC_VDD_20_21 |
4029418c65fSTony Lindgren 						MMC_VDD_21_22 | MMC_VDD_22_23 |
4039418c65fSTony Lindgren 						MMC_VDD_23_24 | MMC_VDD_24_25 |
4049418c65fSTony Lindgren 						MMC_VDD_27_28 | MMC_VDD_28_29 |
4059418c65fSTony Lindgren 						MMC_VDD_29_30 | MMC_VDD_30_31 |
4069418c65fSTony Lindgren 						MMC_VDD_32_33 | MMC_VDD_33_34,
4079418c65fSTony Lindgren 		.name			= "external",
4089418c65fSTony Lindgren 	},
4099418c65fSTony Lindgren };
4109418c65fSTony Lindgren 
4119418c65fSTony Lindgren static struct omap_mmc_platform_data *mmc_data[OMAP24XX_NR_MMC];
4129418c65fSTony Lindgren 
n8x0_mmc_init(void)413bc593f5dSIgor Grinberg static void __init n8x0_mmc_init(void)
4149418c65fSTony Lindgren {
415c8f27e97STony Lindgren 	if (board_is_n810()) {
4169418c65fSTony Lindgren 		mmc1_data.slots[0].name = "external";
4179418c65fSTony Lindgren 
4189418c65fSTony Lindgren 		/*
4199418c65fSTony Lindgren 		 * Some Samsung Movinand chips do not like open-ended
4209418c65fSTony Lindgren 		 * multi-block reads and fall to braind-dead state
4219418c65fSTony Lindgren 		 * while doing so. Reducing the number of blocks in
4229418c65fSTony Lindgren 		 * the transfer or delays in clock disable do not help
4239418c65fSTony Lindgren 		 */
4249418c65fSTony Lindgren 		mmc1_data.slots[1].name = "internal";
4259418c65fSTony Lindgren 		mmc1_data.slots[1].ban_openended = 1;
426e519f0bbSLinus Walleij 		gpiod_add_lookup_table(&nokia810_mmc_gpio_table);
427086426dcSAaro Koskinen 	} else {
428086426dcSAaro Koskinen 		gpiod_add_lookup_table(&nokia800_mmc_gpio_table);
4299418c65fSTony Lindgren 	}
4309418c65fSTony Lindgren 
431fa590c92STony Lindgren 	mmc1_data.nr_slots = 2;
4329418c65fSTony Lindgren 	mmc_data[0] = &mmc1_data;
4339418c65fSTony Lindgren }
4349418c65fSTony Lindgren #else
435fa590c92STony Lindgren static struct omap_mmc_platform_data mmc1_data;
n8x0_mmc_init(void)4366aeb51c1SArnd Bergmann static void __init n8x0_mmc_init(void)
4379418c65fSTony Lindgren {
4389418c65fSTony Lindgren }
4399418c65fSTony Lindgren #endif	/* CONFIG_MMC_OMAP */
4409418c65fSTony Lindgren 
4419418c65fSTony Lindgren #ifdef CONFIG_MENELAUS
4429418c65fSTony Lindgren 
n8x0_auto_sleep_regulators(void)4439418c65fSTony Lindgren static int n8x0_auto_sleep_regulators(void)
4449418c65fSTony Lindgren {
4459418c65fSTony Lindgren 	u32 val;
4469418c65fSTony Lindgren 	int ret;
4479418c65fSTony Lindgren 
4489418c65fSTony Lindgren 	val = EN_VPLL_SLEEP | EN_VMMC_SLEEP    \
4499418c65fSTony Lindgren 		| EN_VAUX_SLEEP | EN_VIO_SLEEP \
4509418c65fSTony Lindgren 		| EN_VMEM_SLEEP | EN_DC3_SLEEP \
4519418c65fSTony Lindgren 		| EN_VC_SLEEP | EN_DC2_SLEEP;
4529418c65fSTony Lindgren 
4539418c65fSTony Lindgren 	ret = menelaus_set_regulator_sleep(1, val);
4549418c65fSTony Lindgren 	if (ret < 0) {
4557852ec05SPaul Walmsley 		pr_err("Could not set regulators to sleep on menelaus: %u\n",
4567852ec05SPaul Walmsley 		       ret);
4579418c65fSTony Lindgren 		return ret;
4589418c65fSTony Lindgren 	}
4599418c65fSTony Lindgren 	return 0;
4609418c65fSTony Lindgren }
4619418c65fSTony Lindgren 
n8x0_auto_voltage_scale(void)4629418c65fSTony Lindgren static int n8x0_auto_voltage_scale(void)
4639418c65fSTony Lindgren {
4649418c65fSTony Lindgren 	int ret;
4659418c65fSTony Lindgren 
4669418c65fSTony Lindgren 	ret = menelaus_set_vcore_hw(1400, 1050);
4679418c65fSTony Lindgren 	if (ret < 0) {
4687852ec05SPaul Walmsley 		pr_err("Could not set VCORE voltage on menelaus: %u\n", ret);
4699418c65fSTony Lindgren 		return ret;
4709418c65fSTony Lindgren 	}
4719418c65fSTony Lindgren 	return 0;
4729418c65fSTony Lindgren }
4739418c65fSTony Lindgren 
n8x0_menelaus_late_init(struct device * dev)4749418c65fSTony Lindgren static int n8x0_menelaus_late_init(struct device *dev)
4759418c65fSTony Lindgren {
4769418c65fSTony Lindgren 	int ret;
4779418c65fSTony Lindgren 
4789418c65fSTony Lindgren 	ret = n8x0_auto_voltage_scale();
4799418c65fSTony Lindgren 	if (ret < 0)
4809418c65fSTony Lindgren 		return ret;
4819418c65fSTony Lindgren 	ret = n8x0_auto_sleep_regulators();
4829418c65fSTony Lindgren 	if (ret < 0)
4839418c65fSTony Lindgren 		return ret;
4849418c65fSTony Lindgren 	return 0;
4859418c65fSTony Lindgren }
4869418c65fSTony Lindgren 
487a7f97d25SJarkko Nikula #else
n8x0_menelaus_late_init(struct device * dev)488a7f97d25SJarkko Nikula static int n8x0_menelaus_late_init(struct device *dev)
4899418c65fSTony Lindgren {
490a7f97d25SJarkko Nikula 	return 0;
491a7f97d25SJarkko Nikula }
492a7f97d25SJarkko Nikula #endif
4939418c65fSTony Lindgren 
494ef70b0bdSTony Lindgren struct menelaus_platform_data n8x0_menelaus_platform_data = {
4959418c65fSTony Lindgren 	.late_init = n8x0_menelaus_late_init,
4969418c65fSTony Lindgren };
4979418c65fSTony Lindgren 
n8x0_late_initcall(void)498810ac2a1STony Lindgren static int __init n8x0_late_initcall(void)
499810ac2a1STony Lindgren {
500810ac2a1STony Lindgren 	if (!board_caps)
501810ac2a1STony Lindgren 		return -ENODEV;
502810ac2a1STony Lindgren 
503810ac2a1STony Lindgren 	n8x0_mmc_init();
504810ac2a1STony Lindgren 	n8x0_usb_init();
505810ac2a1STony Lindgren 
506810ac2a1STony Lindgren 	return 0;
507810ac2a1STony Lindgren }
508810ac2a1STony Lindgren omap_late_initcall(n8x0_late_initcall);
509810ac2a1STony Lindgren 
510fa590c92STony Lindgren /*
511fa590c92STony Lindgren  * Legacy init pdata init for n8x0. Note that we want to follow the
512fa590c92STony Lindgren  * I2C bus numbering starting at 0 for device tree like other omaps.
513fa590c92STony Lindgren  */
n8x0_legacy_init(void)514fa590c92STony Lindgren void * __init n8x0_legacy_init(void)
515fa590c92STony Lindgren {
516fa590c92STony Lindgren 	board_check_revision();
517fa590c92STony Lindgren 	spi_register_board_info(n800_spi_board_info,
518fa590c92STony Lindgren 				ARRAY_SIZE(n800_spi_board_info));
519fa590c92STony Lindgren 	return &mmc1_data;
520fa590c92STony Lindgren }
521