fsl_soc.c 20.8 KB
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/*
 * FSL SoC setup code
 *
 * Maintained by Kumar Gala (see MAINTAINERS for contact information)
 *
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 * 2006 (c) MontaVista Software, Inc.
 * Vitaly Bordug <vbordug@ru.mvista.com>
 *
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 * This program is free software; you can redistribute  it and/or modify it
 * under  the terms of  the GNU General  Public License as published by the
 * Free Software Foundation;  either version 2 of the  License, or (at your
 * option) any later version.
 */

#include <linux/stddef.h>
#include <linux/kernel.h>
#include <linux/init.h>
#include <linux/errno.h>
#include <linux/major.h>
#include <linux/delay.h>
#include <linux/irq.h>
#include <linux/module.h>
#include <linux/device.h>
#include <linux/platform_device.h>
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#include <linux/of_platform.h>
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#include <linux/phy.h>
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#include <linux/phy_fixed.h>
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#include <linux/spi/spi.h>
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#include <linux/fsl_devices.h>
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#include <linux/fs_enet_pd.h>
#include <linux/fs_uart_pd.h>
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#include <asm/system.h>
#include <asm/atomic.h>
#include <asm/io.h>
#include <asm/irq.h>
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#include <asm/time.h>
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#include <asm/prom.h>
#include <sysdev/fsl_soc.h>
#include <mm/mmu_decl.h>
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#include <asm/cpm2.h>
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extern void init_fcc_ioports(struct fs_platform_info*);
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extern void init_fec_ioports(struct fs_platform_info*);
extern void init_smc_ioports(struct fs_uart_platform_info*);
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static phys_addr_t immrbase = -1;

phys_addr_t get_immrbase(void)
{
	struct device_node *soc;

	if (immrbase != -1)
		return immrbase;

	soc = of_find_node_by_type(NULL, "soc");
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	if (soc) {
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		int size;
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		u32 naddr;
		const u32 *prop = of_get_property(soc, "#address-cells", &size);
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		if (prop && size == 4)
			naddr = *prop;
		else
			naddr = 2;

		prop = of_get_property(soc, "ranges", &size);
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		if (prop)
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			immrbase = of_translate_address(soc, prop + naddr);

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		of_node_put(soc);
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	}
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	return immrbase;
}

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EXPORT_SYMBOL(get_immrbase);
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static u32 sysfreq = -1;

u32 fsl_get_sys_freq(void)
{
	struct device_node *soc;
	const u32 *prop;
	int size;

	if (sysfreq != -1)
		return sysfreq;

	soc = of_find_node_by_type(NULL, "soc");
	if (!soc)
		return -1;

	prop = of_get_property(soc, "clock-frequency", &size);
	if (!prop || size != sizeof(*prop) || *prop == 0)
		prop = of_get_property(soc, "bus-frequency", &size);

	if (prop && size == sizeof(*prop))
		sysfreq = *prop;

	of_node_put(soc);
	return sysfreq;
}
EXPORT_SYMBOL(fsl_get_sys_freq);

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#if defined(CONFIG_CPM2) || defined(CONFIG_QUICC_ENGINE) || defined(CONFIG_8xx)
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static u32 brgfreq = -1;

u32 get_brgfreq(void)
{
	struct device_node *node;
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	const unsigned int *prop;
	int size;
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	if (brgfreq != -1)
		return brgfreq;

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	node = of_find_compatible_node(NULL, NULL, "fsl,cpm-brg");
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	if (node) {
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		prop = of_get_property(node, "clock-frequency", &size);
		if (prop && size == 4)
			brgfreq = *prop;

		of_node_put(node);
		return brgfreq;
	}
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	/* Legacy device binding -- will go away when no users are left. */
	node = of_find_node_by_type(NULL, "cpm");
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	if (!node)
		node = of_find_compatible_node(NULL, NULL, "fsl,qe");
	if (!node)
		node = of_find_node_by_type(NULL, "qe");

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	if (node) {
		prop = of_get_property(node, "brg-frequency", &size);
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		if (prop && size == 4)
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			brgfreq = *prop;
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		if (brgfreq == -1 || brgfreq == 0) {
			prop = of_get_property(node, "bus-frequency", &size);
			if (prop && size == 4)
				brgfreq = *prop / 2;
		}
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		of_node_put(node);
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	}
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	return brgfreq;
}

EXPORT_SYMBOL(get_brgfreq);

static u32 fs_baudrate = -1;

u32 get_baudrate(void)
{
	struct device_node *node;

	if (fs_baudrate != -1)
		return fs_baudrate;

	node = of_find_node_by_type(NULL, "serial");
	if (node) {
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		int size;
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		const unsigned int *prop = of_get_property(node,
				"current-speed", &size);
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		if (prop)
			fs_baudrate = *prop;
		of_node_put(node);
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	}
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	return fs_baudrate;
}

EXPORT_SYMBOL(get_baudrate);
#endif /* CONFIG_CPM2 */

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#ifdef CONFIG_FIXED_PHY
static int __init of_add_fixed_phys(void)
{
	int ret;
	struct device_node *np;
	u32 *fixed_link;
	struct fixed_phy_status status = {};

	for_each_node_by_name(np, "ethernet") {
		fixed_link  = (u32 *)of_get_property(np, "fixed-link", NULL);
		if (!fixed_link)
			continue;

		status.link = 1;
		status.duplex = fixed_link[1];
		status.speed = fixed_link[2];
		status.pause = fixed_link[3];
		status.asym_pause = fixed_link[4];

		ret = fixed_phy_add(PHY_POLL, fixed_link[0], &status);
		if (ret) {
			of_node_put(np);
			return ret;
		}
	}

	return 0;
}
arch_initcall(of_add_fixed_phys);
#endif /* CONFIG_FIXED_PHY */

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static int __init gfar_mdio_of_init(void)
211
{
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	struct device_node *np = NULL;
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	struct platform_device *mdio_dev;
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	struct resource res;
	int ret;

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	np = of_find_compatible_node(np, NULL, "fsl,gianfar-mdio");

	/* try the deprecated version */
	if (!np)
		np = of_find_compatible_node(np, "mdio", "gianfar");

	if (np) {
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		int k;
		struct device_node *child = NULL;
		struct gianfar_mdio_data mdio_data;

		memset(&res, 0, sizeof(res));
		memset(&mdio_data, 0, sizeof(mdio_data));

		ret = of_address_to_resource(np, 0, &res);
		if (ret)
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			goto err;
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		mdio_dev =
		    platform_device_register_simple("fsl-gianfar_mdio",
						    res.start, &res, 1);
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		if (IS_ERR(mdio_dev)) {
			ret = PTR_ERR(mdio_dev);
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			goto err;
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		}

		for (k = 0; k < 32; k++)
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			mdio_data.irq[k] = PHY_POLL;
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		while ((child = of_get_next_child(np, child)) != NULL) {
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			int irq = irq_of_parse_and_map(child, 0);
			if (irq != NO_IRQ) {
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				const u32 *id = of_get_property(child,
							"reg", NULL);
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				mdio_data.irq[*id] = irq;
			}
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		}

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		ret =
		    platform_device_add_data(mdio_dev, &mdio_data,
					     sizeof(struct gianfar_mdio_data));
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		if (ret)
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			goto unreg;
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	}

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	of_node_put(np);
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	return 0;

unreg:
	platform_device_unregister(mdio_dev);
err:
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	of_node_put(np);
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	return ret;
}

arch_initcall(gfar_mdio_of_init);

static const char *gfar_tx_intr = "tx";
static const char *gfar_rx_intr = "rx";
static const char *gfar_err_intr = "error";

static int __init gfar_of_init(void)
{
	struct device_node *np;
	unsigned int i;
	struct platform_device *gfar_dev;
	struct resource res;
	int ret;

	for (np = NULL, i = 0;
	     (np = of_find_compatible_node(np, "network", "gianfar")) != NULL;
	     i++) {
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		struct resource r[4];
		struct device_node *phy, *mdio;
		struct gianfar_platform_data gfar_data;
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		const unsigned int *id;
		const char *model;
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		const char *ctype;
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		const void *mac_addr;
		const phandle *ph;
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		int n_res = 2;
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		memset(r, 0, sizeof(r));
		memset(&gfar_data, 0, sizeof(gfar_data));

		ret = of_address_to_resource(np, 0, &r[0]);
		if (ret)
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			goto err;
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306
		of_irq_to_resource(np, 0, &r[1]);
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308
		model = of_get_property(np, "model", NULL);
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		/* If we aren't the FEC we have multiple interrupts */
		if (model && strcasecmp(model, "FEC")) {
			r[1].name = gfar_tx_intr;

			r[2].name = gfar_rx_intr;
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			of_irq_to_resource(np, 1, &r[2]);
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			r[3].name = gfar_err_intr;
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			of_irq_to_resource(np, 2, &r[3]);
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			n_res += 2;
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		}

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		gfar_dev =
		    platform_device_register_simple("fsl-gianfar", i, &r[0],
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						    n_res);
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		if (IS_ERR(gfar_dev)) {
			ret = PTR_ERR(gfar_dev);
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			goto err;
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		}

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		mac_addr = of_get_mac_address(np);
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		if (mac_addr)
			memcpy(gfar_data.mac_addr, mac_addr, 6);
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		if (model && !strcasecmp(model, "TSEC"))
			gfar_data.device_flags =
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			    FSL_GIANFAR_DEV_HAS_GIGABIT |
			    FSL_GIANFAR_DEV_HAS_COALESCE |
			    FSL_GIANFAR_DEV_HAS_RMON |
			    FSL_GIANFAR_DEV_HAS_MULTI_INTR;
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		if (model && !strcasecmp(model, "eTSEC"))
			gfar_data.device_flags =
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			    FSL_GIANFAR_DEV_HAS_GIGABIT |
			    FSL_GIANFAR_DEV_HAS_COALESCE |
			    FSL_GIANFAR_DEV_HAS_RMON |
			    FSL_GIANFAR_DEV_HAS_MULTI_INTR |
			    FSL_GIANFAR_DEV_HAS_CSUM |
			    FSL_GIANFAR_DEV_HAS_VLAN |
			    FSL_GIANFAR_DEV_HAS_EXTENDED_HASH;
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		ctype = of_get_property(np, "phy-connection-type", NULL);

		/* We only care about rgmii-id.  The rest are autodetected */
		if (ctype && !strcmp(ctype, "rgmii-id"))
			gfar_data.interface = PHY_INTERFACE_MODE_RGMII_ID;
		else
			gfar_data.interface = PHY_INTERFACE_MODE_MII;

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		ph = of_get_property(np, "phy-handle", NULL);
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		if (ph == NULL) {
			u32 *fixed_link;

			fixed_link = (u32 *)of_get_property(np, "fixed-link",
							   NULL);
			if (!fixed_link) {
				ret = -ENODEV;
				goto unreg;
			}
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371
			snprintf(gfar_data.bus_id, MII_BUS_ID_SIZE, "0");
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			gfar_data.phy_id = fixed_link[0];
		} else {
			phy = of_find_node_by_phandle(*ph);
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			if (phy == NULL) {
				ret = -ENODEV;
				goto unreg;
			}

			mdio = of_get_parent(phy);

			id = of_get_property(phy, "reg", NULL);
			ret = of_address_to_resource(mdio, 0, &res);
			if (ret) {
				of_node_put(phy);
				of_node_put(mdio);
				goto unreg;
			}

			gfar_data.phy_id = *id;
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			snprintf(gfar_data.bus_id, MII_BUS_ID_SIZE, "%x",
					res.start);
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			of_node_put(phy);
			of_node_put(mdio);
		}

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		ret =
		    platform_device_add_data(gfar_dev, &gfar_data,
					     sizeof(struct
						    gianfar_platform_data));
403
		if (ret)
404
			goto unreg;
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	}

	return 0;

409
unreg:
410
	platform_device_unregister(gfar_dev);
411
err:
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	return ret;
}
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arch_initcall(gfar_of_init);

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#ifdef CONFIG_I2C_BOARDINFO
#include <linux/i2c.h>
struct i2c_driver_device {
	char	*of_device;
	char	*i2c_driver;
	char	*i2c_type;
};

static struct i2c_driver_device i2c_devices[] __initdata = {
	{"ricoh,rs5c372a", "rtc-rs5c372", "rs5c372a",},
	{"ricoh,rs5c372b", "rtc-rs5c372", "rs5c372b",},
	{"ricoh,rv5c386",  "rtc-rs5c372", "rv5c386",},
	{"ricoh,rv5c387a", "rtc-rs5c372", "rv5c387a",},
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	{"dallas,ds1307",  "rtc-ds1307",  "ds1307",},
	{"dallas,ds1337",  "rtc-ds1307",  "ds1337",},
	{"dallas,ds1338",  "rtc-ds1307",  "ds1338",},
	{"dallas,ds1339",  "rtc-ds1307",  "ds1339",},
	{"dallas,ds1340",  "rtc-ds1307",  "ds1340",},
	{"stm,m41t00",     "rtc-ds1307",  "m41t00"},
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	{"dallas,ds1374",  "rtc-ds1374",  "rtc-ds1374",},
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};

439 440
static int __init of_find_i2c_driver(struct device_node *node,
				     struct i2c_board_info *info)
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{
	int i;

	for (i = 0; i < ARRAY_SIZE(i2c_devices); i++) {
		if (!of_device_is_compatible(node, i2c_devices[i].of_device))
			continue;
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		if (strlcpy(info->driver_name, i2c_devices[i].i2c_driver,
			    KOBJ_NAME_LEN) >= KOBJ_NAME_LEN ||
		    strlcpy(info->type, i2c_devices[i].i2c_type,
			    I2C_NAME_SIZE) >= I2C_NAME_SIZE)
			return -ENOMEM;
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		return 0;
	}
	return -ENODEV;
}

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static void __init of_register_i2c_devices(struct device_node *adap_node,
					   int bus_num)
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{
	struct device_node *node = NULL;

	while ((node = of_get_next_child(adap_node, node))) {
463
		struct i2c_board_info info = {};
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		const u32 *addr;
		int len;

		addr = of_get_property(node, "reg", &len);
		if (!addr || len < sizeof(int) || *addr > (1 << 10) - 1) {
469
			printk(KERN_WARNING "fsl_soc.c: invalid i2c device entry\n");
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			continue;
		}

		info.irq = irq_of_parse_and_map(node, 0);
		if (info.irq == NO_IRQ)
			info.irq = -1;

		if (of_find_i2c_driver(node, &info) < 0)
			continue;

		info.addr = *addr;

		i2c_register_board_info(bus_num, &info, 1);
	}
}

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static int __init fsl_i2c_of_init(void)
{
	struct device_node *np;
489
	unsigned int i = 0;
490 491 492
	struct platform_device *i2c_dev;
	int ret;

493
	for_each_compatible_node(np, NULL, "fsl-i2c") {
494 495
		struct resource r[2];
		struct fsl_i2c_platform_data i2c_data;
496
		const unsigned char *flags = NULL;
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		memset(&r, 0, sizeof(r));
		memset(&i2c_data, 0, sizeof(i2c_data));

		ret = of_address_to_resource(np, 0, &r[0]);
		if (ret)
503
			goto err;
504

505
		of_irq_to_resource(np, 0, &r[1]);
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		i2c_dev = platform_device_register_simple("fsl-i2c", i, r, 2);
		if (IS_ERR(i2c_dev)) {
			ret = PTR_ERR(i2c_dev);
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			goto err;
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		}

		i2c_data.device_flags = 0;
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		flags = of_get_property(np, "dfsrr", NULL);
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		if (flags)
			i2c_data.device_flags |= FSL_I2C_DEV_SEPARATE_DFSRR;

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		flags = of_get_property(np, "fsl5200-clocking", NULL);
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		if (flags)
			i2c_data.device_flags |= FSL_I2C_DEV_CLOCK_5200;

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		ret =
		    platform_device_add_data(i2c_dev, &i2c_data,
					     sizeof(struct
						    fsl_i2c_platform_data));
526
		if (ret)
527
			goto unreg;
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529
		of_register_i2c_devices(np, i++);
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	}

	return 0;

534
unreg:
535
	platform_device_unregister(i2c_dev);
536
err:
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	return ret;
}
539

540
arch_initcall(fsl_i2c_of_init);
541
#endif
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#ifdef CONFIG_PPC_83xx
static int __init mpc83xx_wdt_init(void)
{
	struct resource r;
547
	struct device_node *np;
548
	struct platform_device *dev;
549
	u32 freq = fsl_get_sys_freq();
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	int ret;

	np = of_find_compatible_node(NULL, "watchdog", "mpc83xx_wdt");

	if (!np) {
		ret = -ENODEV;
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		goto nodev;
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	}

	memset(&r, 0, sizeof(r));

	ret = of_address_to_resource(np, 0, &r);
	if (ret)
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		goto err;
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	dev = platform_device_register_simple("mpc83xx_wdt", 0, &r, 1);
	if (IS_ERR(dev)) {
		ret = PTR_ERR(dev);
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		goto err;
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	}

571
	ret = platform_device_add_data(dev, &freq, sizeof(freq));
572
	if (ret)
573
		goto unreg;
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	of_node_put(np);
	return 0;

578
unreg:
579
	platform_device_unregister(dev);
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err:
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	of_node_put(np);
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nodev:
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	return ret;
}
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arch_initcall(mpc83xx_wdt_init);
#endif
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static enum fsl_usb2_phy_modes determine_usb_phy(const char *phy_type)
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{
	if (!phy_type)
		return FSL_USB2_PHY_NONE;
	if (!strcasecmp(phy_type, "ulpi"))
		return FSL_USB2_PHY_ULPI;
	if (!strcasecmp(phy_type, "utmi"))
		return FSL_USB2_PHY_UTMI;
	if (!strcasecmp(phy_type, "utmi_wide"))
		return FSL_USB2_PHY_UTMI_WIDE;
	if (!strcasecmp(phy_type, "serial"))
		return FSL_USB2_PHY_SERIAL;

	return FSL_USB2_PHY_NONE;
}

static int __init fsl_usb_of_init(void)
{
	struct device_node *np;
608
	unsigned int i = 0;
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	struct platform_device *usb_dev_mph = NULL, *usb_dev_dr_host = NULL,
		*usb_dev_dr_client = NULL;
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	int ret;

613
	for_each_compatible_node(np, NULL, "fsl-usb2-mph") {
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		struct resource r[2];
		struct fsl_usb2_platform_data usb_data;
616
		const unsigned char *prop = NULL;
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		memset(&r, 0, sizeof(r));
		memset(&usb_data, 0, sizeof(usb_data));

		ret = of_address_to_resource(np, 0, &r[0]);
		if (ret)
			goto err;

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		of_irq_to_resource(np, 0, &r[1]);
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		usb_dev_mph =
		    platform_device_register_simple("fsl-ehci", i, r, 2);
		if (IS_ERR(usb_dev_mph)) {
			ret = PTR_ERR(usb_dev_mph);
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			goto err;
		}

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		usb_dev_mph->dev.coherent_dma_mask = 0xffffffffUL;
		usb_dev_mph->dev.dma_mask = &usb_dev_mph->dev.coherent_dma_mask;
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		usb_data.operating_mode = FSL_USB2_MPH_HOST;

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		prop = of_get_property(np, "port0", NULL);
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		if (prop)
			usb_data.port_enables |= FSL_USB2_PORT0_ENABLED;

643
		prop = of_get_property(np, "port1", NULL);
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		if (prop)
			usb_data.port_enables |= FSL_USB2_PORT1_ENABLED;

647
		prop = of_get_property(np, "phy_type", NULL);
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		usb_data.phy_mode = determine_usb_phy(prop);

		ret =
651
		    platform_device_add_data(usb_dev_mph, &usb_data,
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					     sizeof(struct
						    fsl_usb2_platform_data));
		if (ret)
655
			goto unreg_mph;
656
		i++;
657 658
	}

659
	for_each_compatible_node(np, NULL, "fsl-usb2-dr") {
660 661
		struct resource r[2];
		struct fsl_usb2_platform_data usb_data;
662
		const unsigned char *prop = NULL;
663 664 665 666 667 668

		memset(&r, 0, sizeof(r));
		memset(&usb_data, 0, sizeof(usb_data));

		ret = of_address_to_resource(np, 0, &r[0]);
		if (ret)
669
			goto unreg_mph;
670

671
		of_irq_to_resource(np, 0, &r[1]);
672

673
		prop = of_get_property(np, "dr_mode", NULL);
674 675 676 677 678 679 680 681 682 683 684 685 686 687 688 689 690 691 692 693 694 695 696 697 698 699 700 701 702 703 704 705 706

		if (!prop || !strcmp(prop, "host")) {
			usb_data.operating_mode = FSL_USB2_DR_HOST;
			usb_dev_dr_host = platform_device_register_simple(
					"fsl-ehci", i, r, 2);
			if (IS_ERR(usb_dev_dr_host)) {
				ret = PTR_ERR(usb_dev_dr_host);
				goto err;
			}
		} else if (prop && !strcmp(prop, "peripheral")) {
			usb_data.operating_mode = FSL_USB2_DR_DEVICE;
			usb_dev_dr_client = platform_device_register_simple(
					"fsl-usb2-udc", i, r, 2);
			if (IS_ERR(usb_dev_dr_client)) {
				ret = PTR_ERR(usb_dev_dr_client);
				goto err;
			}
		} else if (prop && !strcmp(prop, "otg")) {
			usb_data.operating_mode = FSL_USB2_DR_OTG;
			usb_dev_dr_host = platform_device_register_simple(
					"fsl-ehci", i, r, 2);
			if (IS_ERR(usb_dev_dr_host)) {
				ret = PTR_ERR(usb_dev_dr_host);
				goto err;
			}
			usb_dev_dr_client = platform_device_register_simple(
					"fsl-usb2-udc", i, r, 2);
			if (IS_ERR(usb_dev_dr_client)) {
				ret = PTR_ERR(usb_dev_dr_client);
				goto err;
			}
		} else {
			ret = -EINVAL;
707 708 709
			goto err;
		}

710
		prop = of_get_property(np, "phy_type", NULL);
711 712
		usb_data.phy_mode = determine_usb_phy(prop);

713 714 715 716 717 718 719 720 721 722 723 724 725 726 727 728 729 730
		if (usb_dev_dr_host) {
			usb_dev_dr_host->dev.coherent_dma_mask = 0xffffffffUL;
			usb_dev_dr_host->dev.dma_mask = &usb_dev_dr_host->
				dev.coherent_dma_mask;
			if ((ret = platform_device_add_data(usb_dev_dr_host,
						&usb_data, sizeof(struct
						fsl_usb2_platform_data))))
				goto unreg_dr;
		}
		if (usb_dev_dr_client) {
			usb_dev_dr_client->dev.coherent_dma_mask = 0xffffffffUL;
			usb_dev_dr_client->dev.dma_mask = &usb_dev_dr_client->
				dev.coherent_dma_mask;
			if ((ret = platform_device_add_data(usb_dev_dr_client,
						&usb_data, sizeof(struct
						fsl_usb2_platform_data))))
				goto unreg_dr;
		}
731
		i++;
732 733 734
	}
	return 0;

735
unreg_dr:
736 737 738 739
	if (usb_dev_dr_host)
		platform_device_unregister(usb_dev_dr_host);
	if (usb_dev_dr_client)
		platform_device_unregister(usb_dev_dr_client);
740 741 742
unreg_mph:
	if (usb_dev_mph)
		platform_device_unregister(usb_dev_mph);
743 744 745 746
err:
	return ret;
}

747
arch_initcall(fsl_usb_of_init);
748

749 750 751 752 753
static int __init of_fsl_spi_probe(char *type, char *compatible, u32 sysclk,
				   struct spi_board_info *board_infos,
				   unsigned int num_board_infos,
				   void (*activate_cs)(u8 cs, u8 polarity),
				   void (*deactivate_cs)(u8 cs, u8 polarity))
754 755
{
	struct device_node *np;
756
	unsigned int i = 0;
757

758 759
	for_each_compatible_node(np, type, compatible) {
		int ret;
760 761 762 763 764 765 766 767 768 769 770
		unsigned int j;
		const void *prop;
		struct resource res[2];
		struct platform_device *pdev;
		struct fsl_spi_platform_data pdata = {
			.activate_cs = activate_cs,
			.deactivate_cs = deactivate_cs,
		};

		memset(res, 0, sizeof(res));

771
		pdata.sysclk = sysclk;
772 773 774 775 776 777

		prop = of_get_property(np, "reg", NULL);
		if (!prop)
			goto err;
		pdata.bus_num = *(u32 *)prop;

778 779 780 781
		prop = of_get_property(np, "cell-index", NULL);
		if (prop)
			i = *(u32 *)prop;

782 783 784 785 786 787 788 789 790 791
		prop = of_get_property(np, "mode", NULL);
		if (prop && !strcmp(prop, "cpu-qe"))
			pdata.qe_mode = 1;

		for (j = 0; j < num_board_infos; j++) {
			if (board_infos[j].bus_num == pdata.bus_num)
				pdata.max_chipselect++;
		}

		if (!pdata.max_chipselect)
792
			continue;
793 794 795 796 797 798 799 800 801 802 803 804 805 806 807 808 809 810 811 812 813 814

		ret = of_address_to_resource(np, 0, &res[0]);
		if (ret)
			goto err;

		ret = of_irq_to_resource(np, 0, &res[1]);
		if (ret == NO_IRQ)
			goto err;

		pdev = platform_device_alloc("mpc83xx_spi", i);
		if (!pdev)
			goto err;

		ret = platform_device_add_data(pdev, &pdata, sizeof(pdata));
		if (ret)
			goto unreg;

		ret = platform_device_add_resources(pdev, res,
						    ARRAY_SIZE(res));
		if (ret)
			goto unreg;

815
		ret = platform_device_add(pdev);
816 817 818
		if (ret)
			goto unreg;

819
		goto next;
820 821 822
unreg:
		platform_device_del(pdev);
err:
823 824 825
		pr_err("%s: registration failed\n", np->full_name);
next:
		i++;
826 827
	}

828 829 830 831 832 833 834 835 836 837 838 839 840 841 842 843
	return i;
}

int __init fsl_spi_init(struct spi_board_info *board_infos,
			unsigned int num_board_infos,
			void (*activate_cs)(u8 cs, u8 polarity),
			void (*deactivate_cs)(u8 cs, u8 polarity))
{
	u32 sysclk = -1;
	int ret;

#ifdef CONFIG_QUICC_ENGINE
	/* SPI controller is either clocked from QE or SoC clock */
	sysclk = get_brgfreq();
#endif
	if (sysclk == -1) {
844 845
		sysclk = fsl_get_sys_freq();
		if (sysclk == -1)
846 847 848 849 850 851 852 853 854
			return -ENODEV;
	}

	ret = of_fsl_spi_probe(NULL, "fsl,spi", sysclk, board_infos,
			       num_board_infos, activate_cs, deactivate_cs);
	if (!ret)
		of_fsl_spi_probe("spi", "fsl_spi", sysclk, board_infos,
				 num_board_infos, activate_cs, deactivate_cs);

855 856
	return spi_register_board_info(board_infos, num_board_infos);
}
857 858 859 860 861 862 863 864 865 866 867 868 869 870 871 872 873 874 875 876 877 878 879 880 881 882 883 884 885 886 887 888 889 890 891 892 893 894

#if defined(CONFIG_PPC_85xx) || defined(CONFIG_PPC_86xx)
static __be32 __iomem *rstcr;

static int __init setup_rstcr(void)
{
	struct device_node *np;
	np = of_find_node_by_name(NULL, "global-utilities");
	if ((np && of_get_property(np, "fsl,has-rstcr", NULL))) {
		const u32 *prop = of_get_property(np, "reg", NULL);
		if (prop) {
			/* map reset control register
			 * 0xE00B0 is offset of reset control register
			 */
			rstcr = ioremap(get_immrbase() + *prop + 0xB0, 0xff);
			if (!rstcr)
				printk (KERN_EMERG "Error: reset control "
						"register not mapped!\n");
		}
	} else
		printk (KERN_INFO "rstcr compatible register does not exist!\n");
	if (np)
		of_node_put(np);
	return 0;
}

arch_initcall(setup_rstcr);

void fsl_rstcr_restart(char *cmd)
{
	local_irq_disable();
	if (rstcr)
		/* set reset control register */
		out_be32(rstcr, 0x2);	/* HRESET_REQ */

	while (1) ;
}
#endif
895 896 897 898 899 900 901 902 903 904 905 906 907 908 909 910 911 912 913 914 915 916 917 918 919 920 921 922 923 924 925 926 927 928 929 930 931 932 933 934 935

#if defined(CONFIG_FB_FSL_DIU) || defined(CONFIG_FB_FSL_DIU_MODULE)
struct platform_diu_data_ops diu_ops = {
	.diu_size = 1280 * 1024 * 4,	/* default one 1280x1024 buffer */
};
EXPORT_SYMBOL(diu_ops);

int __init preallocate_diu_videomemory(void)
{
	pr_debug("diu_size=%lu\n", diu_ops.diu_size);

	diu_ops.diu_mem = __alloc_bootmem(diu_ops.diu_size, 8, 0);
	if (!diu_ops.diu_mem) {
		printk(KERN_ERR "fsl-diu: cannot allocate %lu bytes\n",
			diu_ops.diu_size);
		return -ENOMEM;
	}

	pr_debug("diu_mem=%p\n", diu_ops.diu_mem);

	rh_init(&diu_ops.diu_rh_info, 4096, ARRAY_SIZE(diu_ops.diu_rh_block),
		diu_ops.diu_rh_block);
	return rh_attach_region(&diu_ops.diu_rh_info,
				(unsigned long) diu_ops.diu_mem,
				diu_ops.diu_size);
}

static int __init early_parse_diufb(char *p)
{
	if (!p)
		return 1;

	diu_ops.diu_size = _ALIGN_UP(memparse(p, &p), 8);

	pr_debug("diu_size=%lu\n", diu_ops.diu_size);

	return 0;
}
early_param("diufb", early_parse_diufb);

#endif