fsl_soc.c 30.3 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/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>
40
#include <asm/cpm2.h>
41

42
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");
55
	if (soc) {
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		int size;
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		const void *prop = of_get_property(soc, "reg", &size);
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		if (prop)
			immrbase = of_translate_address(soc, prop);
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		of_node_put(soc);
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	}
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	return immrbase;
}

67
EXPORT_SYMBOL(get_immrbase);
68

69
#if defined(CONFIG_CPM2) || 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");
	if (node) {
		prop = of_get_property(node, "brg-frequency", &size);
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		if (prop && size == 4)
97
			brgfreq = *prop;
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99
		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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static int __init gfar_mdio_of_init(void)
134
{
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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";

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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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230
		of_irq_to_resource(np, 0, &r[1]);
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232
		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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		phy = of_find_node_by_phandle(*ph);

		if (phy == NULL) {
			ret = -ENODEV;
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			goto unreg;
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		}

		mdio = of_get_parent(phy);

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

		gfar_data.phy_id = *id;
		gfar_data.bus_id = res.start;

		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));
312
		if (ret)
313
			goto unreg;
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	}

	return 0;

318
unreg:
319
	platform_device_unregister(gfar_dev);
320
err:
321 322
	return ret;
}
323

324 325
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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};

348 349
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;
}

366 367
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))) {
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		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) {
378
			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;
398
	unsigned int i = 0;
399 400 401
	struct platform_device *i2c_dev;
	int ret;

402
	for_each_compatible_node(np, NULL, "fsl-i2c") {
403 404
		struct resource r[2];
		struct fsl_i2c_platform_data i2c_data;
405
		const unsigned char *flags = NULL;
406 407 408 409 410 411

		memset(&r, 0, sizeof(r));
		memset(&i2c_data, 0, sizeof(i2c_data));

		ret = of_address_to_resource(np, 0, &r[0]);
		if (ret)
412
			goto err;
413

414
		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);
419
			goto err;
420 421 422
		}

		i2c_data.device_flags = 0;
423
		flags = of_get_property(np, "dfsrr", NULL);
424 425 426
		if (flags)
			i2c_data.device_flags |= FSL_I2C_DEV_SEPARATE_DFSRR;

427
		flags = of_get_property(np, "fsl5200-clocking", NULL);
428 429 430
		if (flags)
			i2c_data.device_flags |= FSL_I2C_DEV_CLOCK_5200;

431 432 433 434
		ret =
		    platform_device_add_data(i2c_dev, &i2c_data,
					     sizeof(struct
						    fsl_i2c_platform_data));
435
		if (ret)
436
			goto unreg;
437

438
		of_register_i2c_devices(np, i++);
439 440 441 442
	}

	return 0;

443
unreg:
444
	platform_device_unregister(i2c_dev);
445
err:
446 447
	return ret;
}
448

449
arch_initcall(fsl_i2c_of_init);
450
#endif
451 452 453 454 455 456 457

#ifdef CONFIG_PPC_83xx
static int __init mpc83xx_wdt_init(void)
{
	struct resource r;
	struct device_node *soc, *np;
	struct platform_device *dev;
458
	const unsigned int *freq;
459 460 461 462 463 464
	int ret;

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

	if (!np) {
		ret = -ENODEV;
465
		goto nodev;
466 467 468 469 470 471
	}

	soc = of_find_node_by_type(NULL, "soc");

	if (!soc) {
		ret = -ENODEV;
472
		goto nosoc;
473 474
	}

475
	freq = of_get_property(soc, "bus-frequency", NULL);
476 477
	if (!freq) {
		ret = -ENODEV;
478
		goto err;
479 480 481 482 483 484
	}

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

	ret = of_address_to_resource(np, 0, &r);
	if (ret)
485
		goto err;
486 487 488 489

	dev = platform_device_register_simple("mpc83xx_wdt", 0, &r, 1);
	if (IS_ERR(dev)) {
		ret = PTR_ERR(dev);
490
		goto err;
491 492 493 494
	}

	ret = platform_device_add_data(dev, freq, sizeof(int));
	if (ret)
495
		goto unreg;
496 497 498 499 500 501

	of_node_put(soc);
	of_node_put(np);

	return 0;

502
unreg:
503
	platform_device_unregister(dev);
504
err:
505
	of_node_put(soc);
506
nosoc:
507
	of_node_put(np);
508
nodev:
509 510
	return ret;
}
511

512 513
arch_initcall(mpc83xx_wdt_init);
#endif
514

515
static enum fsl_usb2_phy_modes determine_usb_phy(const char *phy_type)
516 517 518 519 520 521 522 523 524 525 526 527 528 529 530 531 532 533
{
	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;
534
	unsigned int i = 0;
535 536
	struct platform_device *usb_dev_mph = NULL, *usb_dev_dr_host = NULL,
		*usb_dev_dr_client = NULL;
537 538
	int ret;

539
	for_each_compatible_node(np, NULL, "fsl-usb2-mph") {
540 541
		struct resource r[2];
		struct fsl_usb2_platform_data usb_data;
542
		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;

551
		of_irq_to_resource(np, 0, &r[1]);
552

553 554 555 556
		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;
		}

560 561
		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;

565
		prop = of_get_property(np, "port0", NULL);
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		if (prop)
			usb_data.port_enables |= FSL_USB2_PORT0_ENABLED;

569
		prop = of_get_property(np, "port1", NULL);
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		if (prop)
			usb_data.port_enables |= FSL_USB2_PORT1_ENABLED;

573
		prop = of_get_property(np, "phy_type", NULL);
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		usb_data.phy_mode = determine_usb_phy(prop);

		ret =
577
		    platform_device_add_data(usb_dev_mph, &usb_data,
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					     sizeof(struct
						    fsl_usb2_platform_data));
		if (ret)
581
			goto unreg_mph;
582
		i++;
583 584
	}

585
	for_each_compatible_node(np, NULL, "fsl-usb2-dr") {
586 587
		struct resource r[2];
		struct fsl_usb2_platform_data usb_data;
588
		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)
595
			goto unreg_mph;
596

597
		of_irq_to_resource(np, 0, &r[1]);
598

599
		prop = of_get_property(np, "dr_mode", NULL);
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		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;
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			goto err;
		}

636
		prop = of_get_property(np, "phy_type", NULL);
637 638
		usb_data.phy_mode = determine_usb_phy(prop);

639 640 641 642 643 644 645 646 647 648 649 650 651 652 653 654 655 656
		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;
		}
657
		i++;
658 659 660
	}
	return 0;

661
unreg_dr:
662 663 664 665
	if (usb_dev_dr_host)
		platform_device_unregister(usb_dev_dr_host);
	if (usb_dev_dr_client)
		platform_device_unregister(usb_dev_dr_client);
666 667 668
unreg_mph:
	if (usb_dev_mph)
		platform_device_unregister(usb_dev_mph);
669 670 671 672
err:
	return ret;
}

673
arch_initcall(fsl_usb_of_init);
674

675
#ifndef CONFIG_PPC_CPM_NEW_BINDING
676 677
#ifdef CONFIG_CPM2

678 679
extern void init_scc_ioports(struct fs_uart_platform_info*);

680 681 682 683 684 685 686 687 688 689 690 691 692 693 694 695 696 697 698
static const char fcc_regs[] = "fcc_regs";
static const char fcc_regs_c[] = "fcc_regs_c";
static const char fcc_pram[] = "fcc_pram";
static char bus_id[9][BUS_ID_SIZE];

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

	for (np = NULL, i = 0;
	     (np = of_find_compatible_node(np, "network", "fs_enet")) != NULL;
	     i++) {
		struct resource r[4];
		struct device_node *phy, *mdio;
		struct fs_platform_info fs_enet_data;
699
		const unsigned int *id, *phy_addr, *phy_irq;
700 701 702 703 704 705 706 707 708 709 710 711 712 713 714 715 716 717 718 719 720
		const void *mac_addr;
		const phandle *ph;
		const char *model;

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

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

		ret = of_address_to_resource(np, 1, &r[1]);
		if (ret)
			goto err;
		r[1].name = fcc_pram;

		ret = of_address_to_resource(np, 2, &r[2]);
		if (ret)
			goto err;
		r[2].name = fcc_regs_c;
721
		fs_enet_data.fcc_regs_c = r[2].start;
722

723
		of_irq_to_resource(np, 0, &r[3]);
724 725 726 727 728 729 730 731 732

		fs_enet_dev =
		    platform_device_register_simple("fsl-cpm-fcc", i, &r[0], 4);

		if (IS_ERR(fs_enet_dev)) {
			ret = PTR_ERR(fs_enet_dev);
			goto err;
		}

733
		model = of_get_property(np, "model", NULL);
734 735 736 737 738
		if (model == NULL) {
			ret = -ENODEV;
			goto unreg;
		}

739 740 741
		mac_addr = of_get_mac_address(np);
		if (mac_addr)
			memcpy(fs_enet_data.macaddr, mac_addr, 6);
742

743
		ph = of_get_property(np, "phy-handle", NULL);
744 745 746 747 748 749 750
		phy = of_find_node_by_phandle(*ph);

		if (phy == NULL) {
			ret = -ENODEV;
			goto unreg;
		}

751
		phy_addr = of_get_property(phy, "reg", NULL);
752 753
		fs_enet_data.phy_addr = *phy_addr;

754
		phy_irq = of_get_property(phy, "interrupts", NULL);
755

756
		id = of_get_property(np, "device-id", NULL);
757
		fs_enet_data.fs_no = *id;
758
		strcpy(fs_enet_data.fs_type, model);
759 760 761 762 763 764 765 766 767

		mdio = of_get_parent(phy);
                ret = of_address_to_resource(mdio, 0, &res);
                if (ret) {
                        of_node_put(phy);
                        of_node_put(mdio);
                        goto unreg;
                }

768 769 770 771
		fs_enet_data.clk_rx = *((u32 *)of_get_property(np,
						"rx-clock", NULL));
		fs_enet_data.clk_tx = *((u32 *)of_get_property(np,
						"tx-clock", NULL));
772

773
		if (strstr(model, "FCC")) {
774
			int fcc_index = *id - 1;
775
			const unsigned char *mdio_bb_prop;
776

777
			fs_enet_data.dpram_offset = (u32)cpm_dpram_addr(0);
778 779 780 781 782 783 784 785 786 787 788 789
			fs_enet_data.rx_ring = 32;
			fs_enet_data.tx_ring = 32;
			fs_enet_data.rx_copybreak = 240;
			fs_enet_data.use_napi = 0;
			fs_enet_data.napi_weight = 17;
			fs_enet_data.mem_offset = FCC_MEM_OFFSET(fcc_index);
			fs_enet_data.cp_page = CPM_CR_FCC_PAGE(fcc_index);
			fs_enet_data.cp_block = CPM_CR_FCC_SBLOCK(fcc_index);

			snprintf((char*)&bus_id[(*id)], BUS_ID_SIZE, "%x:%02x",
							(u32)res.start, fs_enet_data.phy_addr);
			fs_enet_data.bus_id = (char*)&bus_id[(*id)];
790
			fs_enet_data.init_ioports = init_fcc_ioports;
791

792
			mdio_bb_prop = of_get_property(phy, "bitbang", NULL);
793 794 795 796 797 798 799 800 801 802 803 804 805 806 807 808 809 810 811 812 813 814 815 816 817 818 819 820 821 822 823 824 825 826 827 828 829 830 831 832 833 834
			if (mdio_bb_prop) {
				struct platform_device *fs_enet_mdio_bb_dev;
				struct fs_mii_bb_platform_info fs_enet_mdio_bb_data;

				fs_enet_mdio_bb_dev =
					platform_device_register_simple("fsl-bb-mdio",
							i, NULL, 0);
				memset(&fs_enet_mdio_bb_data, 0,
						sizeof(struct fs_mii_bb_platform_info));
				fs_enet_mdio_bb_data.mdio_dat.bit =
					mdio_bb_prop[0];
				fs_enet_mdio_bb_data.mdio_dir.bit =
					mdio_bb_prop[1];
				fs_enet_mdio_bb_data.mdc_dat.bit =
					mdio_bb_prop[2];
				fs_enet_mdio_bb_data.mdio_port =
					mdio_bb_prop[3];
				fs_enet_mdio_bb_data.mdc_port =
					mdio_bb_prop[4];
				fs_enet_mdio_bb_data.delay =
					mdio_bb_prop[5];

				fs_enet_mdio_bb_data.irq[0] = phy_irq[0];
				fs_enet_mdio_bb_data.irq[1] = -1;
				fs_enet_mdio_bb_data.irq[2] = -1;
				fs_enet_mdio_bb_data.irq[3] = phy_irq[0];
				fs_enet_mdio_bb_data.irq[31] = -1;

				fs_enet_mdio_bb_data.mdio_dat.offset =
					(u32)&cpm2_immr->im_ioport.iop_pdatc;
				fs_enet_mdio_bb_data.mdio_dir.offset =
					(u32)&cpm2_immr->im_ioport.iop_pdirc;
				fs_enet_mdio_bb_data.mdc_dat.offset =
					(u32)&cpm2_immr->im_ioport.iop_pdatc;

				ret = platform_device_add_data(
						fs_enet_mdio_bb_dev,
						&fs_enet_mdio_bb_data,
						sizeof(struct fs_mii_bb_platform_info));
				if (ret)
					goto unreg;
			}
835

836 837
			of_node_put(phy);
			of_node_put(mdio);
838

839 840 841
			ret = platform_device_add_data(fs_enet_dev, &fs_enet_data,
						     sizeof(struct
							    fs_platform_info));
842 843 844
			if (ret)
				goto unreg;
		}
845 846 847 848 849 850 851 852 853 854 855 856 857 858 859 860 861 862 863 864 865 866 867 868 869 870 871
	}
	return 0;

unreg:
	platform_device_unregister(fs_enet_dev);
err:
	return ret;
}

arch_initcall(fs_enet_of_init);

static const char scc_regs[] = "regs";
static const char scc_pram[] = "pram";

static int __init cpm_uart_of_init(void)
{
	struct device_node *np;
	unsigned int i;
	struct platform_device *cpm_uart_dev;
	int ret;

	for (np = NULL, i = 0;
	     (np = of_find_compatible_node(np, "serial", "cpm_uart")) != NULL;
	     i++) {
		struct resource r[3];
		struct fs_uart_platform_info cpm_uart_data;
		const int *id;
872
		const char *model;
873 874 875 876 877 878 879 880 881 882 883 884 885 886 887

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

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

		r[0].name = scc_regs;

		ret = of_address_to_resource(np, 1, &r[1]);
		if (ret)
			goto err;
		r[1].name = scc_pram;

888
		of_irq_to_resource(np, 0, &r[2]);
889 890 891 892 893 894 895 896 897

		cpm_uart_dev =
		    platform_device_register_simple("fsl-cpm-scc:uart", i, &r[0], 3);

		if (IS_ERR(cpm_uart_dev)) {
			ret = PTR_ERR(cpm_uart_dev);
			goto err;
		}

898
		id = of_get_property(np, "device-id", NULL);
899
		cpm_uart_data.fs_no = *id;
900

901
		model = of_get_property(np, "model", NULL);
902 903
		strcpy(cpm_uart_data.fs_type, model);

904 905 906 907 908 909
		cpm_uart_data.uart_clk = ppc_proc_freq;

		cpm_uart_data.tx_num_fifo = 4;
		cpm_uart_data.tx_buf_size = 32;
		cpm_uart_data.rx_num_fifo = 4;
		cpm_uart_data.rx_buf_size = 32;
910 911 912 913
		cpm_uart_data.clk_rx = *((u32 *)of_get_property(np,
						"rx-clock", NULL));
		cpm_uart_data.clk_tx = *((u32 *)of_get_property(np,
						"tx-clock", NULL));
914 915 916 917 918 919 920 921 922 923 924 925 926 927 928 929 930 931 932

		ret =
		    platform_device_add_data(cpm_uart_dev, &cpm_uart_data,
					     sizeof(struct
						    fs_uart_platform_info));
		if (ret)
			goto unreg;
	}

	return 0;

unreg:
	platform_device_unregister(cpm_uart_dev);
err:
	return ret;
}

arch_initcall(cpm_uart_of_init);
#endif /* CONFIG_CPM2 */
933 934 935 936

#ifdef CONFIG_8xx

extern void init_scc_ioports(struct fs_platform_info*);
937
extern int platform_device_skip(const char *model, int id);
938 939 940 941 942 943 944 945 946 947 948 949 950 951 952 953 954 955 956 957 958 959 960 961 962 963 964 965 966 967 968 969 970 971 972 973 974 975 976 977 978 979 980 981 982 983 984 985 986 987 988 989 990 991 992 993 994 995 996 997 998 999 1000 1001 1002 1003

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

	for (np = NULL, i = 0;
	     (np = of_find_compatible_node(np, "mdio", "fs_enet")) != NULL;
	     i++) {
		struct fs_mii_fec_platform_info mdio_data;

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

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

		mdio_dev =
		    platform_device_register_simple("fsl-cpm-fec-mdio",
						    res.start, &res, 1);
		if (IS_ERR(mdio_dev)) {
			ret = PTR_ERR(mdio_dev);
			goto err;
		}

		mdio_data.mii_speed = ((((ppc_proc_freq + 4999999) / 2500000) / 2) & 0x3F) << 1;

		ret =
		    platform_device_add_data(mdio_dev, &mdio_data,
					     sizeof(struct fs_mii_fec_platform_info));
		if (ret)
			goto unreg;
	}
	return 0;

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

arch_initcall(fs_enet_mdio_of_init);

static const char *enet_regs = "regs";
static const char *enet_pram = "pram";
static const char *enet_irq = "interrupt";
static char bus_id[9][BUS_ID_SIZE];

static int __init fs_enet_of_init(void)
{
	struct device_node *np;
	unsigned int i;
	struct platform_device *fs_enet_dev = NULL;
	struct resource res;
	int ret;

	for (np = NULL, i = 0;
	     (np = of_find_compatible_node(np, "network", "fs_enet")) != NULL;
	     i++) {
		struct resource r[4];
		struct device_node *phy = NULL, *mdio = NULL;
		struct fs_platform_info fs_enet_data;
1004 1005
		const unsigned int *id;
		const unsigned int *phy_addr;
1006
		const void *mac_addr;
1007 1008
		const phandle *ph;
		const char *model;
1009 1010 1011 1012

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

1013
		model = of_get_property(np, "model", NULL);
1014 1015 1016 1017 1018
		if (model == NULL) {
			ret = -ENODEV;
			goto unreg;
		}

1019
		id = of_get_property(np, "device-id", NULL);
1020 1021 1022 1023 1024 1025 1026 1027 1028 1029
		fs_enet_data.fs_no = *id;

		if (platform_device_skip(model, *id))
			continue;

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

1030 1031 1032
		mac_addr = of_get_mac_address(np);
		if (mac_addr)
			memcpy(fs_enet_data.macaddr, mac_addr, 6);
1033

1034
		ph = of_get_property(np, "phy-handle", NULL);
1035 1036 1037 1038
		if (ph != NULL)
			phy = of_find_node_by_phandle(*ph);

		if (phy != NULL) {
1039
			phy_addr = of_get_property(phy, "reg", NULL);
1040 1041 1042 1043 1044 1045 1046 1047 1048 1049 1050 1051
			fs_enet_data.phy_addr = *phy_addr;
			fs_enet_data.has_phy = 1;

			mdio = of_get_parent(phy);
			ret = of_address_to_resource(mdio, 0, &res);
			if (ret) {
				of_node_put(phy);
				of_node_put(mdio);
                                goto unreg;
			}
		}

1052
		model = of_get_property(np, "model", NULL);
1053 1054 1055 1056 1057 1058 1059 1060 1061 1062 1063 1064 1065 1066 1067 1068 1069 1070 1071 1072 1073 1074 1075 1076 1077 1078 1079 1080 1081 1082 1083 1084 1085 1086 1087 1088 1089 1090 1091 1092 1093 1094 1095 1096 1097 1098 1099 1100 1101 1102 1103 1104 1105 1106 1107 1108 1109 1110 1111 1112 1113 1114 1115 1116 1117 1118 1119 1120 1121 1122 1123 1124 1125 1126
		strcpy(fs_enet_data.fs_type, model);

		if (strstr(model, "FEC")) {
			r[1].start = r[1].end = irq_of_parse_and_map(np, 0);
			r[1].flags = IORESOURCE_IRQ;
			r[1].name = enet_irq;

			fs_enet_dev =
				    platform_device_register_simple("fsl-cpm-fec", i, &r[0], 2);

			if (IS_ERR(fs_enet_dev)) {
				ret = PTR_ERR(fs_enet_dev);
				goto err;
			}

			fs_enet_data.rx_ring = 128;
			fs_enet_data.tx_ring = 16;
			fs_enet_data.rx_copybreak = 240;
			fs_enet_data.use_napi = 1;
			fs_enet_data.napi_weight = 17;

			snprintf((char*)&bus_id[i], BUS_ID_SIZE, "%x:%02x",
							(u32)res.start, fs_enet_data.phy_addr);
			fs_enet_data.bus_id = (char*)&bus_id[i];
			fs_enet_data.init_ioports = init_fec_ioports;
		}
		if (strstr(model, "SCC")) {
			ret = of_address_to_resource(np, 1, &r[1]);
			if (ret)
				goto err;
			r[1].name = enet_pram;

			r[2].start = r[2].end = irq_of_parse_and_map(np, 0);
			r[2].flags = IORESOURCE_IRQ;
			r[2].name = enet_irq;

			fs_enet_dev =
				    platform_device_register_simple("fsl-cpm-scc", i, &r[0], 3);

			if (IS_ERR(fs_enet_dev)) {
				ret = PTR_ERR(fs_enet_dev);
				goto err;
			}

			fs_enet_data.rx_ring = 64;
			fs_enet_data.tx_ring = 8;
			fs_enet_data.rx_copybreak = 240;
			fs_enet_data.use_napi = 1;
			fs_enet_data.napi_weight = 17;

			snprintf((char*)&bus_id[i], BUS_ID_SIZE, "%s", "fixed@10:1");
                        fs_enet_data.bus_id = (char*)&bus_id[i];
			fs_enet_data.init_ioports = init_scc_ioports;
		}

		of_node_put(phy);
		of_node_put(mdio);

		ret = platform_device_add_data(fs_enet_dev, &fs_enet_data,
					     sizeof(struct
						    fs_platform_info));
		if (ret)
			goto unreg;
	}
	return 0;

unreg:
	platform_device_unregister(fs_enet_dev);
err:
	return ret;
}

arch_initcall(fs_enet_of_init);

1127 1128
static int __init fsl_pcmcia_of_init(void)
{
1129
	struct device_node *np;
1130 1131 1132
	/*
	 * Register all the devices which type is "pcmcia"
	 */
1133 1134
	for_each_compatible_node(np, "pcmcia", "fsl,pq-pcmcia")
		of_platform_device_create(np, "m8xx-pcmcia", NULL);
1135 1136 1137 1138
	return 0;
}

arch_initcall(fsl_pcmcia_of_init);
1139 1140 1141 1142 1143 1144 1145 1146 1147 1148 1149 1150 1151 1152 1153 1154

static const char *smc_regs = "regs";
static const char *smc_pram = "pram";

static int __init cpm_smc_uart_of_init(void)
{
	struct device_node *np;
	unsigned int i;
	struct platform_device *cpm_uart_dev;
	int ret;

	for (np = NULL, i = 0;
	     (np = of_find_compatible_node(np, "serial", "cpm_uart")) != NULL;
	     i++) {
		struct resource r[3];
		struct fs_uart_platform_info cpm_uart_data;
1155 1156
		const int *id;
		const char *model;
1157 1158 1159 1160 1161 1162 1163 1164 1165 1166 1167 1168 1169 1170 1171 1172 1173 1174 1175 1176 1177 1178 1179 1180 1181 1182

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

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

		r[0].name = smc_regs;

		ret = of_address_to_resource(np, 1, &r[1]);
		if (ret)
			goto err;
		r[1].name = smc_pram;

		r[2].start = r[2].end = irq_of_parse_and_map(np, 0);
		r[2].flags = IORESOURCE_IRQ;

		cpm_uart_dev =
		    platform_device_register_simple("fsl-cpm-smc:uart", i, &r[0], 3);

		if (IS_ERR(cpm_uart_dev)) {
			ret = PTR_ERR(cpm_uart_dev);
			goto err;
		}

1183
		model = of_get_property(np, "model", NULL);
1184 1185
		strcpy(cpm_uart_data.fs_type, model);

1186
		id = of_get_property(np, "device-id", NULL);
1187 1188 1189 1190 1191 1192 1193 1194 1195 1196 1197 1198 1199 1200 1201 1202 1203 1204 1205 1206 1207 1208 1209 1210 1211 1212 1213
		cpm_uart_data.fs_no = *id;
		cpm_uart_data.uart_clk = ppc_proc_freq;

		cpm_uart_data.tx_num_fifo = 4;
		cpm_uart_data.tx_buf_size = 32;
		cpm_uart_data.rx_num_fifo = 4;
		cpm_uart_data.rx_buf_size = 32;

		ret =
		    platform_device_add_data(cpm_uart_dev, &cpm_uart_data,
					     sizeof(struct
						    fs_uart_platform_info));
		if (ret)
			goto unreg;
	}

	return 0;

unreg:
	platform_device_unregister(cpm_uart_dev);
err:
	return ret;
}

arch_initcall(cpm_smc_uart_of_init);

#endif /* CONFIG_8xx */
1214
#endif /* CONFIG_PPC_CPM_NEW_BINDING */
1215 1216 1217 1218 1219 1220 1221 1222 1223 1224

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))
{
	struct device_node *np;
	unsigned int i;
	const u32 *sysclk;

1225
	/* SPI controller is either clocked from QE or SoC clock */
1226
	np = of_find_node_by_type(NULL, "qe");
1227 1228 1229
	if (!np)
		np = of_find_node_by_type(NULL, "soc");

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	if (!np)
		return -ENODEV;

	sysclk = of_get_property(np, "bus-frequency", NULL);
	if (!sysclk)
		return -ENODEV;

	for (np = NULL, i = 1;
	     (np = of_find_compatible_node(np, "spi", "fsl_spi")) != NULL;
	     i++) {
		int ret = 0;
		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));

		pdata.sysclk = *sysclk;

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

		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)
			goto err;

		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;

		ret = platform_device_register(pdev);
		if (ret)
			goto unreg;

		continue;
unreg:
		platform_device_del(pdev);
err:
		continue;
	}

	return spi_register_board_info(board_infos, num_board_infos);
}
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#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