hsmmc.c 7.2 KB
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/*
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 * linux/arch/arm/mach-omap2/hsmmc.c
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 *
 * Copyright (C) 2007-2008 Texas Instruments
 * Copyright (C) 2008 Nokia Corporation
 * Author: Texas Instruments
 *
 * This program is free software; you can redistribute it and/or modify
 * it under the terms of the GNU General Public License version 2 as
 * published by the Free Software Foundation.
 */
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#include <linux/kernel.h>
#include <linux/slab.h>
#include <linux/string.h>
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#include <linux/delay.h>
#include <mach/hardware.h>
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#include <plat/control.h>
#include <plat/mmc.h>
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#include <plat/omap-pm.h>
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#include "hsmmc.h"
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#if defined(CONFIG_MMC_OMAP_HS) || defined(CONFIG_MMC_OMAP_HS_MODULE)
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static u16 control_pbias_offset;
static u16 control_devconf1_offset;

#define HSMMC_NAME_LEN	9

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static struct hsmmc_controller {
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	char				name[HSMMC_NAME_LEN + 1];
} hsmmc[OMAP34XX_NR_MMC];
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#if defined(CONFIG_ARCH_OMAP3) && defined(CONFIG_PM)

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static int hsmmc_get_context_loss(struct device *dev)
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{
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	return omap_pm_get_dev_context_loss_count(dev);
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}

#else
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#define hsmmc_get_context_loss NULL
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#endif

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static void hsmmc1_before_set_reg(struct device *dev, int slot,
				  int power_on, int vdd)
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{
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	u32 reg, prog_io;
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	struct omap_mmc_platform_data *mmc = dev->platform_data;

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	if (mmc->slots[0].remux)
		mmc->slots[0].remux(dev, slot, power_on);

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	/*
	 * Assume we power both OMAP VMMC1 (for CMD, CLK, DAT0..3) and the
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	 * card with Vcc regulator (from twl4030 or whatever).  OMAP has both
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	 * 1.8V and 3.0V modes, controlled by the PBIAS register.
	 *
	 * In 8-bit modes, OMAP VMMC1A (for DAT4..7) needs a supply, which
	 * is most naturally TWL VSIM; those pins also use PBIAS.
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	 *
	 * FIXME handle VMMC1A as needed ...
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	 */
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	if (power_on) {
		if (cpu_is_omap2430()) {
			reg = omap_ctrl_readl(OMAP243X_CONTROL_DEVCONF1);
			if ((1 << vdd) >= MMC_VDD_30_31)
				reg |= OMAP243X_MMC1_ACTIVE_OVERWRITE;
			else
				reg &= ~OMAP243X_MMC1_ACTIVE_OVERWRITE;
			omap_ctrl_writel(reg, OMAP243X_CONTROL_DEVCONF1);
		}

		if (mmc->slots[0].internal_clock) {
			reg = omap_ctrl_readl(OMAP2_CONTROL_DEVCONF0);
			reg |= OMAP2_MMCSDIO1ADPCLKISEL;
			omap_ctrl_writel(reg, OMAP2_CONTROL_DEVCONF0);
		}

		reg = omap_ctrl_readl(control_pbias_offset);
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		if (cpu_is_omap3630()) {
			/* Set MMC I/O to 52Mhz */
			prog_io = omap_ctrl_readl(OMAP343X_CONTROL_PROG_IO1);
			prog_io |= OMAP3630_PRG_SDMMC1_SPEEDCTRL;
			omap_ctrl_writel(prog_io, OMAP343X_CONTROL_PROG_IO1);
		} else {
			reg |= OMAP2_PBIASSPEEDCTRL0;
		}
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		reg &= ~OMAP2_PBIASLITEPWRDNZ0;
		omap_ctrl_writel(reg, control_pbias_offset);
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	} else {
		reg = omap_ctrl_readl(control_pbias_offset);
		reg &= ~OMAP2_PBIASLITEPWRDNZ0;
		omap_ctrl_writel(reg, control_pbias_offset);
	}
}

static void hsmmc1_after_set_reg(struct device *dev, int slot,
				 int power_on, int vdd)
{
	u32 reg;
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	/* 100ms delay required for PBIAS configuration */
	msleep(100);
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	if (power_on) {
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		reg = omap_ctrl_readl(control_pbias_offset);
		reg |= (OMAP2_PBIASLITEPWRDNZ0 | OMAP2_PBIASSPEEDCTRL0);
		if ((1 << vdd) <= MMC_VDD_165_195)
			reg &= ~OMAP2_PBIASLITEVMODE0;
		else
			reg |= OMAP2_PBIASLITEVMODE0;
		omap_ctrl_writel(reg, control_pbias_offset);
	} else {
		reg = omap_ctrl_readl(control_pbias_offset);
		reg |= (OMAP2_PBIASSPEEDCTRL0 | OMAP2_PBIASLITEPWRDNZ0 |
			OMAP2_PBIASLITEVMODE0);
		omap_ctrl_writel(reg, control_pbias_offset);
	}
}

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static void hsmmc23_before_set_reg(struct device *dev, int slot,
				   int power_on, int vdd)
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{
	struct omap_mmc_platform_data *mmc = dev->platform_data;
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	if (mmc->slots[0].remux)
		mmc->slots[0].remux(dev, slot, power_on);

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	if (power_on) {
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		/* Only MMC2 supports a CLKIN */
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		if (mmc->slots[0].internal_clock) {
			u32 reg;

			reg = omap_ctrl_readl(control_devconf1_offset);
			reg |= OMAP2_MMCSDIO2ADPCLKISEL;
			omap_ctrl_writel(reg, control_devconf1_offset);
		}
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	}
}

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static int nop_mmc_set_power(struct device *dev, int slot, int power_on,
							int vdd)
{
	return 0;
}

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static struct omap_mmc_platform_data *hsmmc_data[OMAP34XX_NR_MMC] __initdata;

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void __init omap2_hsmmc_init(struct omap2_hsmmc_info *controllers)
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{
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	struct omap2_hsmmc_info *c;
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	int nr_hsmmc = ARRAY_SIZE(hsmmc_data);
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	int i;
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	if (cpu_is_omap2430()) {
		control_pbias_offset = OMAP243X_CONTROL_PBIAS_LITE;
		control_devconf1_offset = OMAP243X_CONTROL_DEVCONF1;
	} else {
		control_pbias_offset = OMAP343X_CONTROL_PBIAS_LITE;
		control_devconf1_offset = OMAP343X_CONTROL_DEVCONF1;
	}

	for (c = controllers; c->mmc; c++) {
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		struct hsmmc_controller *hc = hsmmc + c->mmc - 1;
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		struct omap_mmc_platform_data *mmc = hsmmc_data[c->mmc - 1];

		if (!c->mmc || c->mmc > nr_hsmmc) {
			pr_debug("MMC%d: no such controller\n", c->mmc);
			continue;
		}
		if (mmc) {
			pr_debug("MMC%d: already configured\n", c->mmc);
			continue;
		}

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		mmc = kzalloc(sizeof(struct omap_mmc_platform_data),
			      GFP_KERNEL);
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		if (!mmc) {
			pr_err("Cannot allocate memory for mmc device!\n");
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			goto done;
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		}

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		if (c->name)
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			strncpy(hc->name, c->name, HSMMC_NAME_LEN);
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		else
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			snprintf(hc->name, ARRAY_SIZE(hc->name),
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				"mmc%islot%i", c->mmc, 1);
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		mmc->slots[0].name = hc->name;
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		mmc->nr_slots = 1;
		mmc->slots[0].wires = c->wires;
		mmc->slots[0].internal_clock = !c->ext_clock;
		mmc->dma_mask = 0xffffffff;

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		mmc->get_context_loss_count = hsmmc_get_context_loss;
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		mmc->slots[0].switch_pin = c->gpio_cd;
		mmc->slots[0].gpio_wp = c->gpio_wp;
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		mmc->slots[0].remux = c->remux;

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		if (c->cover_only)
			mmc->slots[0].cover = 1;
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		if (c->nonremovable)
			mmc->slots[0].nonremovable = 1;

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		if (c->power_saving)
			mmc->slots[0].power_saving = 1;

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		if (c->no_off)
			mmc->slots[0].no_off = 1;

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		if (c->vcc_aux_disable_is_sleep)
			mmc->slots[0].vcc_aux_disable_is_sleep = 1;

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		/* NOTE:  MMC slots should have a Vcc regulator set up.
		 * This may be from a TWL4030-family chip, another
		 * controllable regulator, or a fixed supply.
		 *
		 * temporary HACK: ocr_mask instead of fixed supply
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		 */
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		mmc->slots[0].ocr_mask = c->ocr_mask;
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		if (cpu_is_omap3517() || cpu_is_omap3505())
			mmc->slots[0].set_power = nop_mmc_set_power;
		else
			mmc->slots[0].features |= HSMMC_HAS_PBIAS;

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		switch (c->mmc) {
		case 1:
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			if (mmc->slots[0].features & HSMMC_HAS_PBIAS) {
				/* on-chip level shifting via PBIAS0/PBIAS1 */
				mmc->slots[0].before_set_reg = hsmmc1_before_set_reg;
				mmc->slots[0].after_set_reg = hsmmc1_after_set_reg;
			}
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			/* Omap3630 HSMMC1 supports only 4-bit */
			if (cpu_is_omap3630() && c->wires > 4) {
				c->wires = 4;
				mmc->slots[0].wires = c->wires;
			}
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			break;
		case 2:
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			if (c->ext_clock)
				c->transceiver = 1;
			if (c->transceiver && c->wires > 4)
				c->wires = 4;
			/* FALLTHROUGH */
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		case 3:
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			if (mmc->slots[0].features & HSMMC_HAS_PBIAS) {
				/* off-chip level shifting, or none */
				mmc->slots[0].before_set_reg = hsmmc23_before_set_reg;
				mmc->slots[0].after_set_reg = NULL;
			}
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			break;
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		default:
			pr_err("MMC%d configuration not supported!\n", c->mmc);
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			kfree(mmc);
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			continue;
		}
		hsmmc_data[c->mmc - 1] = mmc;
	}

	omap2_init_mmc(hsmmc_data, OMAP34XX_NR_MMC);
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	/* pass the device nodes back to board setup code */
	for (c = controllers; c->mmc; c++) {
		struct omap_mmc_platform_data *mmc = hsmmc_data[c->mmc - 1];

		if (!c->mmc || c->mmc > nr_hsmmc)
			continue;
		c->dev = mmc->dev;
	}
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done:
	for (i = 0; i < nr_hsmmc; i++)
		kfree(hsmmc_data[i]);
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}

#endif