css.c 33.3 KB
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// SPDX-License-Identifier: GPL-2.0
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/*
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 * driver for channel subsystem
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 *
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 * Copyright IBM Corp. 2002, 2010
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 *
 * Author(s): Arnd Bergmann (arndb@de.ibm.com)
 *	      Cornelia Huck (cornelia.huck@de.ibm.com)
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 */
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#define KMSG_COMPONENT "cio"
#define pr_fmt(fmt) KMSG_COMPONENT ": " fmt

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#include <linux/export.h>
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#include <linux/init.h>
#include <linux/device.h>
#include <linux/slab.h>
#include <linux/errno.h>
#include <linux/list.h>
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#include <linux/reboot.h>
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#include <linux/proc_fs.h>
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#include <linux/genalloc.h>
#include <linux/dma-mapping.h>
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#include <asm/isc.h>
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#include <asm/crw.h>
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#include "css.h"
#include "cio.h"
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#include "blacklist.h"
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#include "cio_debug.h"
#include "ioasm.h"
#include "chsc.h"
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#include "device.h"
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#include "idset.h"
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#include "chp.h"
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int css_init_done = 0;
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int max_ssid;
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#define MAX_CSS_IDX 0
struct channel_subsystem *channel_subsystems[MAX_CSS_IDX + 1];
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static struct bus_type css_bus_type;
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int
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for_each_subchannel(int(*fn)(struct subchannel_id, void *), void *data)
{
	struct subchannel_id schid;
	int ret;

	init_subchannel_id(&schid);
	do {
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		do {
			ret = fn(schid, data);
			if (ret)
				break;
		} while (schid.sch_no++ < __MAX_SUBCHANNEL);
		schid.sch_no = 0;
	} while (schid.ssid++ < max_ssid);
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	return ret;
}

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struct cb_data {
	void *data;
	struct idset *set;
	int (*fn_known_sch)(struct subchannel *, void *);
	int (*fn_unknown_sch)(struct subchannel_id, void *);
};

static int call_fn_known_sch(struct device *dev, void *data)
{
	struct subchannel *sch = to_subchannel(dev);
	struct cb_data *cb = data;
	int rc = 0;

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	if (cb->set)
		idset_sch_del(cb->set, sch->schid);
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	if (cb->fn_known_sch)
		rc = cb->fn_known_sch(sch, cb->data);
	return rc;
}

static int call_fn_unknown_sch(struct subchannel_id schid, void *data)
{
	struct cb_data *cb = data;
	int rc = 0;

	if (idset_sch_contains(cb->set, schid))
		rc = cb->fn_unknown_sch(schid, cb->data);
	return rc;
}

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static int call_fn_all_sch(struct subchannel_id schid, void *data)
{
	struct cb_data *cb = data;
	struct subchannel *sch;
	int rc = 0;

	sch = get_subchannel_by_schid(schid);
	if (sch) {
		if (cb->fn_known_sch)
			rc = cb->fn_known_sch(sch, cb->data);
		put_device(&sch->dev);
	} else {
		if (cb->fn_unknown_sch)
			rc = cb->fn_unknown_sch(schid, cb->data);
	}

	return rc;
}

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int for_each_subchannel_staged(int (*fn_known)(struct subchannel *, void *),
			       int (*fn_unknown)(struct subchannel_id,
			       void *), void *data)
{
	struct cb_data cb;
	int rc;

	cb.data = data;
	cb.fn_known_sch = fn_known;
	cb.fn_unknown_sch = fn_unknown;
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	if (fn_known && !fn_unknown) {
		/* Skip idset allocation in case of known-only loop. */
		cb.set = NULL;
		return bus_for_each_dev(&css_bus_type, NULL, &cb,
					call_fn_known_sch);
	}

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	cb.set = idset_sch_new();
	if (!cb.set)
		/* fall back to brute force scanning in case of oom */
		return for_each_subchannel(call_fn_all_sch, &cb);

	idset_fill(cb.set);

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	/* Process registered subchannels. */
	rc = bus_for_each_dev(&css_bus_type, NULL, &cb, call_fn_known_sch);
	if (rc)
		goto out;
	/* Process unregistered subchannels. */
	if (fn_unknown)
		rc = for_each_subchannel(call_fn_unknown_sch, &cb);
out:
	idset_free(cb.set);

	return rc;
}

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static void css_sch_todo(struct work_struct *work);

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static int css_sch_create_locks(struct subchannel *sch)
{
	sch->lock = kmalloc(sizeof(*sch->lock), GFP_KERNEL);
	if (!sch->lock)
		return -ENOMEM;

	spin_lock_init(sch->lock);
	mutex_init(&sch->reg_mutex);

	return 0;
}

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static void css_subchannel_release(struct device *dev)
{
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	struct subchannel *sch = to_subchannel(dev);
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	sch->config.intparm = 0;
	cio_commit_config(sch);
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	kfree(sch->driver_override);
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	kfree(sch->lock);
	kfree(sch);
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}

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static int css_validate_subchannel(struct subchannel_id schid,
				   struct schib *schib)
{
	int err;

	switch (schib->pmcw.st) {
	case SUBCHANNEL_TYPE_IO:
	case SUBCHANNEL_TYPE_MSG:
		if (!css_sch_is_valid(schib))
			err = -ENODEV;
		else if (is_blacklisted(schid.ssid, schib->pmcw.dev)) {
			CIO_MSG_EVENT(6, "Blacklisted device detected "
				      "at devno %04X, subchannel set %x\n",
				      schib->pmcw.dev, schid.ssid);
			err = -ENODEV;
		} else
			err = 0;
		break;
	default:
		err = 0;
	}
	if (err)
		goto out;

	CIO_MSG_EVENT(4, "Subchannel 0.%x.%04x reports subchannel type %04X\n",
		      schid.ssid, schid.sch_no, schib->pmcw.st);
out:
	return err;
}

struct subchannel *css_alloc_subchannel(struct subchannel_id schid,
					struct schib *schib)
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{
	struct subchannel *sch;
	int ret;

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	ret = css_validate_subchannel(schid, schib);
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	if (ret < 0)
		return ERR_PTR(ret);

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	sch = kzalloc(sizeof(*sch), GFP_KERNEL | GFP_DMA);
	if (!sch)
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		return ERR_PTR(-ENOMEM);
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	sch->schid = schid;
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	sch->schib = *schib;
	sch->st = schib->pmcw.st;
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	ret = css_sch_create_locks(sch);
	if (ret)
		goto err;

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	INIT_WORK(&sch->todo_work, css_sch_todo);
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	sch->dev.release = &css_subchannel_release;
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	sch->dev.dma_mask = &sch->dma_mask;
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	device_initialize(&sch->dev);
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	/*
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	 * The physical addresses for some of the dma structures that can
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	 * belong to a subchannel need to fit 31 bit width (e.g. ccw).
	 */
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	ret = dma_set_coherent_mask(&sch->dev, DMA_BIT_MASK(31));
	if (ret)
		goto err;
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	/*
	 * But we don't have such restrictions imposed on the stuff that
	 * is handled by the streaming API.
	 */
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	ret = dma_set_mask(&sch->dev, DMA_BIT_MASK(64));
	if (ret)
		goto err;

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	return sch;
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err:
	kfree(sch);
	return ERR_PTR(ret);
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}

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static int css_sch_device_register(struct subchannel *sch)
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{
	int ret;

	mutex_lock(&sch->reg_mutex);
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	dev_set_name(&sch->dev, "0.%x.%04x", sch->schid.ssid,
		     sch->schid.sch_no);
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	ret = device_add(&sch->dev);
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	mutex_unlock(&sch->reg_mutex);
	return ret;
}

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/**
 * css_sch_device_unregister - unregister a subchannel
 * @sch: subchannel to be unregistered
 */
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void css_sch_device_unregister(struct subchannel *sch)
{
	mutex_lock(&sch->reg_mutex);
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	if (device_is_registered(&sch->dev))
		device_unregister(&sch->dev);
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	mutex_unlock(&sch->reg_mutex);
}
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EXPORT_SYMBOL_GPL(css_sch_device_unregister);
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static void ssd_from_pmcw(struct chsc_ssd_info *ssd, struct pmcw *pmcw)
{
	int i;
	int mask;

	memset(ssd, 0, sizeof(struct chsc_ssd_info));
	ssd->path_mask = pmcw->pim;
	for (i = 0; i < 8; i++) {
		mask = 0x80 >> i;
		if (pmcw->pim & mask) {
			chp_id_init(&ssd->chpid[i]);
			ssd->chpid[i].id = pmcw->chpid[i];
		}
	}
}

static void ssd_register_chpids(struct chsc_ssd_info *ssd)
{
	int i;
	int mask;

	for (i = 0; i < 8; i++) {
		mask = 0x80 >> i;
		if (ssd->path_mask & mask)
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			chp_new(ssd->chpid[i]);
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	}
}

void css_update_ssd_info(struct subchannel *sch)
{
	int ret;

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	ret = chsc_get_ssd_info(sch->schid, &sch->ssd_info);
	if (ret)
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		ssd_from_pmcw(&sch->ssd_info, &sch->schib.pmcw);
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	ssd_register_chpids(&sch->ssd_info);
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}

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static ssize_t type_show(struct device *dev, struct device_attribute *attr,
			 char *buf)
{
	struct subchannel *sch = to_subchannel(dev);

	return sprintf(buf, "%01x\n", sch->st);
}

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static DEVICE_ATTR_RO(type);
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static ssize_t modalias_show(struct device *dev, struct device_attribute *attr,
			     char *buf)
{
	struct subchannel *sch = to_subchannel(dev);

	return sprintf(buf, "css:t%01X\n", sch->st);
}

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static DEVICE_ATTR_RO(modalias);
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static ssize_t driver_override_store(struct device *dev,
				     struct device_attribute *attr,
				     const char *buf, size_t count)
{
	struct subchannel *sch = to_subchannel(dev);
	char *driver_override, *old, *cp;

	/* We need to keep extra room for a newline */
	if (count >= (PAGE_SIZE - 1))
		return -EINVAL;

	driver_override = kstrndup(buf, count, GFP_KERNEL);
	if (!driver_override)
		return -ENOMEM;

	cp = strchr(driver_override, '\n');
	if (cp)
		*cp = '\0';

	device_lock(dev);
	old = sch->driver_override;
	if (strlen(driver_override)) {
		sch->driver_override = driver_override;
	} else {
		kfree(driver_override);
		sch->driver_override = NULL;
	}
	device_unlock(dev);

	kfree(old);

	return count;
}

static ssize_t driver_override_show(struct device *dev,
				    struct device_attribute *attr, char *buf)
{
	struct subchannel *sch = to_subchannel(dev);
	ssize_t len;

	device_lock(dev);
	len = snprintf(buf, PAGE_SIZE, "%s\n", sch->driver_override);
	device_unlock(dev);
	return len;
}
static DEVICE_ATTR_RW(driver_override);

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static struct attribute *subch_attrs[] = {
	&dev_attr_type.attr,
	&dev_attr_modalias.attr,
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	&dev_attr_driver_override.attr,
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	NULL,
};

static struct attribute_group subch_attr_group = {
	.attrs = subch_attrs,
};

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static const struct attribute_group *default_subch_attr_groups[] = {
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	&subch_attr_group,
	NULL,
};

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static ssize_t chpids_show(struct device *dev,
			   struct device_attribute *attr,
			   char *buf)
{
	struct subchannel *sch = to_subchannel(dev);
	struct chsc_ssd_info *ssd = &sch->ssd_info;
	ssize_t ret = 0;
	int mask;
	int chp;

	for (chp = 0; chp < 8; chp++) {
		mask = 0x80 >> chp;
		if (ssd->path_mask & mask)
			ret += sprintf(buf + ret, "%02x ", ssd->chpid[chp].id);
		else
			ret += sprintf(buf + ret, "00 ");
	}
	ret += sprintf(buf + ret, "\n");
	return ret;
}
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static DEVICE_ATTR_RO(chpids);
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static ssize_t pimpampom_show(struct device *dev,
			      struct device_attribute *attr,
			      char *buf)
{
	struct subchannel *sch = to_subchannel(dev);
	struct pmcw *pmcw = &sch->schib.pmcw;

	return sprintf(buf, "%02x %02x %02x\n",
		       pmcw->pim, pmcw->pam, pmcw->pom);
}
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static DEVICE_ATTR_RO(pimpampom);
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static ssize_t dev_busid_show(struct device *dev,
			      struct device_attribute *attr,
			      char *buf)
{
	struct subchannel *sch = to_subchannel(dev);
	struct pmcw *pmcw = &sch->schib.pmcw;

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	if ((pmcw->st == SUBCHANNEL_TYPE_IO && pmcw->dnv) ||
	    (pmcw->st == SUBCHANNEL_TYPE_MSG && pmcw->w))
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		return sysfs_emit(buf, "0.%x.%04x\n", sch->schid.ssid,
				  pmcw->dev);
	else
		return sysfs_emit(buf, "none\n");
}
static DEVICE_ATTR_RO(dev_busid);

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static struct attribute *io_subchannel_type_attrs[] = {
	&dev_attr_chpids.attr,
	&dev_attr_pimpampom.attr,
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	&dev_attr_dev_busid.attr,
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	NULL,
};
ATTRIBUTE_GROUPS(io_subchannel_type);

static const struct device_type io_subchannel_type = {
	.groups = io_subchannel_type_groups,
};

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int css_register_subchannel(struct subchannel *sch)
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{
	int ret;

	/* Initialize the subchannel structure */
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	sch->dev.parent = &channel_subsystems[0]->device;
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	sch->dev.bus = &css_bus_type;
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	sch->dev.groups = default_subch_attr_groups;
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	if (sch->st == SUBCHANNEL_TYPE_IO)
		sch->dev.type = &io_subchannel_type;

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	css_update_ssd_info(sch);
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	/* make it known to the system */
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	ret = css_sch_device_register(sch);
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	if (ret) {
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		CIO_MSG_EVENT(0, "Could not register sch 0.%x.%04x: %d\n",
			      sch->schid.ssid, sch->schid.sch_no, ret);
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		return ret;
	}
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	return ret;
}

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static int css_probe_device(struct subchannel_id schid, struct schib *schib)
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{
	struct subchannel *sch;
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	int ret;
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	sch = css_alloc_subchannel(schid, schib);
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	if (IS_ERR(sch))
		return PTR_ERR(sch);

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	ret = css_register_subchannel(sch);
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	if (ret)
		put_device(&sch->dev);

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	return ret;
}

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static int
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check_subchannel(struct device *dev, const void *data)
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{
	struct subchannel *sch;
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	struct subchannel_id *schid = (void *)data;
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	sch = to_subchannel(dev);
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	return schid_equal(&sch->schid, schid);
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}

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struct subchannel *
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get_subchannel_by_schid(struct subchannel_id schid)
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{
	struct device *dev;

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	dev = bus_find_device(&css_bus_type, NULL,
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			      &schid, check_subchannel);
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	return dev ? to_subchannel(dev) : NULL;
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}

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/**
 * css_sch_is_valid() - check if a subchannel is valid
 * @schib: subchannel information block for the subchannel
 */
int css_sch_is_valid(struct schib *schib)
{
	if ((schib->pmcw.st == SUBCHANNEL_TYPE_IO) && !schib->pmcw.dnv)
		return 0;
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	if ((schib->pmcw.st == SUBCHANNEL_TYPE_MSG) && !schib->pmcw.w)
		return 0;
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	return 1;
}
EXPORT_SYMBOL_GPL(css_sch_is_valid);

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static int css_evaluate_new_subchannel(struct subchannel_id schid, int slow)
{
	struct schib schib;
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	int ccode;
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	if (!slow) {
		/* Will be done on the slow path. */
		return -EAGAIN;
	}
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	/*
	 * The first subchannel that is not-operational (ccode==3)
	 * indicates that there aren't any more devices available.
	 * If stsch gets an exception, it means the current subchannel set
	 * is not valid.
	 */
	ccode = stsch(schid, &schib);
	if (ccode)
		return (ccode == 3) ? -ENXIO : ccode;
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	return css_probe_device(schid, &schib);
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}

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static int css_evaluate_known_subchannel(struct subchannel *sch, int slow)
{
	int ret = 0;

	if (sch->driver) {
		if (sch->driver->sch_event)
			ret = sch->driver->sch_event(sch, slow);
		else
			dev_dbg(&sch->dev,
				"Got subchannel machine check but "
				"no sch_event handler provided.\n");
	}
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	if (ret != 0 && ret != -EAGAIN) {
		CIO_MSG_EVENT(2, "eval: sch 0.%x.%04x, rc=%d\n",
			      sch->schid.ssid, sch->schid.sch_no, ret);
	}
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	return ret;
}

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static void css_evaluate_subchannel(struct subchannel_id schid, int slow)
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{
	struct subchannel *sch;
	int ret;

	sch = get_subchannel_by_schid(schid);
	if (sch) {
		ret = css_evaluate_known_subchannel(sch, slow);
		put_device(&sch->dev);
	} else
		ret = css_evaluate_new_subchannel(schid, slow);
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	if (ret == -EAGAIN)
		css_schedule_eval(schid);
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}

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/**
 * css_sched_sch_todo - schedule a subchannel operation
 * @sch: subchannel
 * @todo: todo
 *
 * Schedule the operation identified by @todo to be performed on the slow path
 * workqueue. Do nothing if another operation with higher priority is already
 * scheduled. Needs to be called with subchannel lock held.
 */
void css_sched_sch_todo(struct subchannel *sch, enum sch_todo todo)
{
	CIO_MSG_EVENT(4, "sch_todo: sched sch=0.%x.%04x todo=%d\n",
		      sch->schid.ssid, sch->schid.sch_no, todo);
	if (sch->todo >= todo)
		return;
	/* Get workqueue ref. */
	if (!get_device(&sch->dev))
		return;
	sch->todo = todo;
	if (!queue_work(cio_work_q, &sch->todo_work)) {
		/* Already queued, release workqueue ref. */
		put_device(&sch->dev);
	}
}
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EXPORT_SYMBOL_GPL(css_sched_sch_todo);
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static void css_sch_todo(struct work_struct *work)
{
	struct subchannel *sch;
	enum sch_todo todo;
	int ret;

	sch = container_of(work, struct subchannel, todo_work);
	/* Find out todo. */
	spin_lock_irq(sch->lock);
	todo = sch->todo;
	CIO_MSG_EVENT(4, "sch_todo: sch=0.%x.%04x, todo=%d\n", sch->schid.ssid,
		      sch->schid.sch_no, todo);
	sch->todo = SCH_TODO_NOTHING;
	spin_unlock_irq(sch->lock);
	/* Perform todo. */
	switch (todo) {
	case SCH_TODO_NOTHING:
		break;
	case SCH_TODO_EVAL:
		ret = css_evaluate_known_subchannel(sch, 1);
		if (ret == -EAGAIN) {
			spin_lock_irq(sch->lock);
			css_sched_sch_todo(sch, todo);
			spin_unlock_irq(sch->lock);
		}
		break;
	case SCH_TODO_UNREG:
		css_sch_device_unregister(sch);
		break;
	}
	/* Release workqueue ref. */
	put_device(&sch->dev);
}

651
static struct idset *slow_subchannel_set;
652
static DEFINE_SPINLOCK(slow_subchannel_lock);
653
static DECLARE_WAIT_QUEUE_HEAD(css_eval_wq);
654
static atomic_t css_eval_scheduled;
655 656

static int __init slow_subchannel_init(void)
L
Linus Torvalds 已提交
657
{
658
	atomic_set(&css_eval_scheduled, 0);
659 660
	slow_subchannel_set = idset_sch_new();
	if (!slow_subchannel_set) {
C
Cornelia Huck 已提交
661
		CIO_MSG_EVENT(0, "could not allocate slow subchannel set\n");
662 663 664
		return -ENOMEM;
	}
	return 0;
L
Linus Torvalds 已提交
665 666
}

667
static int slow_eval_known_fn(struct subchannel *sch, void *data)
L
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668
{
669 670
	int eval;
	int rc;
L
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671 672

	spin_lock_irq(&slow_subchannel_lock);
673 674 675 676 677 678 679
	eval = idset_sch_contains(slow_subchannel_set, sch->schid);
	idset_sch_del(slow_subchannel_set, sch->schid);
	spin_unlock_irq(&slow_subchannel_lock);
	if (eval) {
		rc = css_evaluate_known_subchannel(sch, 1);
		if (rc == -EAGAIN)
			css_schedule_eval(sch->schid);
680 681 682 683 684
		/*
		 * The loop might take long time for platforms with lots of
		 * known devices. Allow scheduling here.
		 */
		cond_resched();
L
Linus Torvalds 已提交
685
	}
686 687 688 689 690 691 692 693 694 695 696
	return 0;
}

static int slow_eval_unknown_fn(struct subchannel_id schid, void *data)
{
	int eval;
	int rc = 0;

	spin_lock_irq(&slow_subchannel_lock);
	eval = idset_sch_contains(slow_subchannel_set, schid);
	idset_sch_del(slow_subchannel_set, schid);
L
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697
	spin_unlock_irq(&slow_subchannel_lock);
698 699 700 701 702 703 704 705 706 707 708
	if (eval) {
		rc = css_evaluate_new_subchannel(schid, 1);
		switch (rc) {
		case -EAGAIN:
			css_schedule_eval(schid);
			rc = 0;
			break;
		case -ENXIO:
		case -ENOMEM:
		case -EIO:
			/* These should abort looping */
709
			spin_lock_irq(&slow_subchannel_lock);
710
			idset_sch_del_subseq(slow_subchannel_set, schid);
711
			spin_unlock_irq(&slow_subchannel_lock);
712 713 714 715
			break;
		default:
			rc = 0;
		}
716 717 718
		/* Allow scheduling here since the containing loop might
		 * take a while.  */
		cond_resched();
719 720 721 722 723 724
	}
	return rc;
}

static void css_slow_path_func(struct work_struct *unused)
{
725 726
	unsigned long flags;

727 728 729
	CIO_TRACE_EVENT(4, "slowpath");
	for_each_subchannel_staged(slow_eval_known_fn, slow_eval_unknown_fn,
				   NULL);
730 731 732 733 734 735
	spin_lock_irqsave(&slow_subchannel_lock, flags);
	if (idset_is_empty(slow_subchannel_set)) {
		atomic_set(&css_eval_scheduled, 0);
		wake_up(&css_eval_wq);
	}
	spin_unlock_irqrestore(&slow_subchannel_lock, flags);
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}

738
static DECLARE_DELAYED_WORK(slow_path_work, css_slow_path_func);
739
struct workqueue_struct *cio_work_q;
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740

741 742 743 744 745 746
void css_schedule_eval(struct subchannel_id schid)
{
	unsigned long flags;

	spin_lock_irqsave(&slow_subchannel_lock, flags);
	idset_sch_add(slow_subchannel_set, schid);
747
	atomic_set(&css_eval_scheduled, 1);
748
	queue_delayed_work(cio_work_q, &slow_path_work, 0);
749 750 751 752 753 754 755 756 757
	spin_unlock_irqrestore(&slow_subchannel_lock, flags);
}

void css_schedule_eval_all(void)
{
	unsigned long flags;

	spin_lock_irqsave(&slow_subchannel_lock, flags);
	idset_fill(slow_subchannel_set);
758
	atomic_set(&css_eval_scheduled, 1);
759
	queue_delayed_work(cio_work_q, &slow_path_work, 0);
760 761 762
	spin_unlock_irqrestore(&slow_subchannel_lock, flags);
}

763
static int __unset_registered(struct device *dev, void *data)
764
{
765 766
	struct idset *set = data;
	struct subchannel *sch = to_subchannel(dev);
767

768 769
	idset_sch_del(set, sch->schid);
	return 0;
770 771
}

772 773 774 775
static int __unset_online(struct device *dev, void *data)
{
	struct idset *set = data;
	struct subchannel *sch = to_subchannel(dev);
776
	struct ccw_device *cdev;
777

778 779 780 781 782
	if (sch->st == SUBCHANNEL_TYPE_IO) {
		cdev = sch_get_cdev(sch);
		if (cdev && cdev->online)
			idset_sch_del(set, sch->schid);
	}
783 784 785 786 787

	return 0;
}

void css_schedule_eval_cond(enum css_eval_cond cond, unsigned long delay)
788
{
789
	unsigned long flags;
790
	struct idset *set;
791

792
	/* Find unregistered subchannels. */
793 794
	set = idset_sch_new();
	if (!set) {
795 796
		/* Fallback. */
		css_schedule_eval_all();
797 798
		return;
	}
799 800 801 802 803 804 805 806 807 808 809 810
	idset_fill(set);
	switch (cond) {
	case CSS_EVAL_UNREG:
		bus_for_each_dev(&css_bus_type, NULL, set, __unset_registered);
		break;
	case CSS_EVAL_NOT_ONLINE:
		bus_for_each_dev(&css_bus_type, NULL, set, __unset_online);
		break;
	default:
		break;
	}

811 812
	/* Apply to slow_subchannel_set. */
	spin_lock_irqsave(&slow_subchannel_lock, flags);
813
	idset_add_set(slow_subchannel_set, set);
814
	atomic_set(&css_eval_scheduled, 1);
815
	queue_delayed_work(cio_work_q, &slow_path_work, delay);
816
	spin_unlock_irqrestore(&slow_subchannel_lock, flags);
817
	idset_free(set);
818 819
}

820 821
void css_wait_for_slow_path(void)
{
822
	flush_workqueue(cio_work_q);
823
}
824 825 826 827

/* Schedule reprobing of all unregistered subchannels. */
void css_schedule_reprobe(void)
{
828
	/* Schedule with a delay to allow merging of subsequent calls. */
829
	css_schedule_eval_cond(CSS_EVAL_UNREG, 1 * HZ);
830 831 832
}
EXPORT_SYMBOL_GPL(css_schedule_reprobe);

L
Linus Torvalds 已提交
833 834 835
/*
 * Called from the machine check handler for subchannel report words.
 */
836
static void css_process_crw(struct crw *crw0, struct crw *crw1, int overflow)
L
Linus Torvalds 已提交
837
{
838
	struct subchannel_id mchk_schid;
839
	struct subchannel *sch;
L
Linus Torvalds 已提交
840

841 842 843 844 845 846 847 848 849 850 851 852 853
	if (overflow) {
		css_schedule_eval_all();
		return;
	}
	CIO_CRW_EVENT(2, "CRW0 reports slct=%d, oflw=%d, "
		      "chn=%d, rsc=%X, anc=%d, erc=%X, rsid=%X\n",
		      crw0->slct, crw0->oflw, crw0->chn, crw0->rsc, crw0->anc,
		      crw0->erc, crw0->rsid);
	if (crw1)
		CIO_CRW_EVENT(2, "CRW1 reports slct=%d, oflw=%d, "
			      "chn=%d, rsc=%X, anc=%d, erc=%X, rsid=%X\n",
			      crw1->slct, crw1->oflw, crw1->chn, crw1->rsc,
			      crw1->anc, crw1->erc, crw1->rsid);
854
	init_subchannel_id(&mchk_schid);
855 856
	mchk_schid.sch_no = crw0->rsid;
	if (crw1)
857
		mchk_schid.ssid = (crw1->rsid >> 4) & 3;
858

859 860 861 862 863 864 865
	if (crw0->erc == CRW_ERC_PMOD) {
		sch = get_subchannel_by_schid(mchk_schid);
		if (sch) {
			css_update_ssd_info(sch);
			put_device(&sch->dev);
		}
	}
866
	/*
L
Linus Torvalds 已提交
867 868 869 870
	 * Since we are always presented with IPI in the CRW, we have to
	 * use stsch() to find out if the subchannel in question has come
	 * or gone.
	 */
871
	css_evaluate_subchannel(mchk_schid, 0);
L
Linus Torvalds 已提交
872 873 874
}

static void __init
875
css_generate_pgid(struct channel_subsystem *css, u32 tod_high)
L
Linus Torvalds 已提交
876
{
877 878
	struct cpuid cpu_id;

879
	if (css_general_characteristics.mcss) {
880
		css->global_pgid.pgid_high.ext_cssid.version = 0x80;
881
		css->global_pgid.pgid_high.ext_cssid.cssid =
882
			css->id_valid ? css->cssid : 0;
883
	} else {
884
		css->global_pgid.pgid_high.cpu_addr = stap();
L
Linus Torvalds 已提交
885
	}
886 887 888
	get_cpu_id(&cpu_id);
	css->global_pgid.cpu_id = cpu_id.ident;
	css->global_pgid.cpu_model = cpu_id.machine;
889 890 891
	css->global_pgid.tod_high = tod_high;
}

892
static void channel_subsystem_release(struct device *dev)
893
{
894
	struct channel_subsystem *css = to_css(dev);
895

896
	mutex_destroy(&css->mutex);
897 898 899
	kfree(css);
}

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Sebastian Ott 已提交
900 901 902 903 904
static ssize_t real_cssid_show(struct device *dev, struct device_attribute *a,
			       char *buf)
{
	struct channel_subsystem *css = to_css(dev);

905
	if (!css->id_valid)
S
Sebastian Ott 已提交
906 907 908 909 910 911
		return -EINVAL;

	return sprintf(buf, "%x\n", css->cssid);
}
static DEVICE_ATTR_RO(real_cssid);

912 913 914 915 916 917 918 919 920 921 922 923
static ssize_t rescan_store(struct device *dev, struct device_attribute *a,
			    const char *buf, size_t count)
{
	CIO_TRACE_EVENT(4, "usr-rescan");

	css_schedule_eval_all();
	css_complete_work();

	return count;
}
static DEVICE_ATTR_WO(rescan);

S
Sebastian Ott 已提交
924 925
static ssize_t cm_enable_show(struct device *dev, struct device_attribute *a,
			      char *buf)
926 927
{
	struct channel_subsystem *css = to_css(dev);
928
	int ret;
929

930 931 932 933
	mutex_lock(&css->mutex);
	ret = sprintf(buf, "%x\n", css->cm_enabled);
	mutex_unlock(&css->mutex);
	return ret;
934 935
}

S
Sebastian Ott 已提交
936 937
static ssize_t cm_enable_store(struct device *dev, struct device_attribute *a,
			       const char *buf, size_t count)
938 939
{
	struct channel_subsystem *css = to_css(dev);
940
	unsigned long val;
S
Sebastian Ott 已提交
941
	int ret;
942

943
	ret = kstrtoul(buf, 16, &val);
944 945
	if (ret)
		return ret;
946
	mutex_lock(&css->mutex);
947 948
	switch (val) {
	case 0:
949 950
		ret = css->cm_enabled ? chsc_secm(css, 0) : 0;
		break;
951
	case 1:
952 953 954 955 956
		ret = css->cm_enabled ? 0 : chsc_secm(css, 1);
		break;
	default:
		ret = -EINVAL;
	}
957
	mutex_unlock(&css->mutex);
958 959
	return ret < 0 ? ret : count;
}
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Sebastian Ott 已提交
960 961 962 963 964 965 966 967
static DEVICE_ATTR_RW(cm_enable);

static umode_t cm_enable_mode(struct kobject *kobj, struct attribute *attr,
			      int index)
{
	return css_chsc_characteristics.secm ? attr->mode : 0;
}

S
Sebastian Ott 已提交
968 969
static struct attribute *cssdev_attrs[] = {
	&dev_attr_real_cssid.attr,
970
	&dev_attr_rescan.attr,
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Sebastian Ott 已提交
971 972 973 974 975 976 977
	NULL,
};

static struct attribute_group cssdev_attr_group = {
	.attrs = cssdev_attrs,
};

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Sebastian Ott 已提交
978 979 980 981 982 983 984 985 986
static struct attribute *cssdev_cm_attrs[] = {
	&dev_attr_cm_enable.attr,
	NULL,
};

static struct attribute_group cssdev_cm_attr_group = {
	.attrs = cssdev_cm_attrs,
	.is_visible = cm_enable_mode,
};
987

S
Sebastian Ott 已提交
988
static const struct attribute_group *cssdev_attr_groups[] = {
S
Sebastian Ott 已提交
989
	&cssdev_attr_group,
S
Sebastian Ott 已提交
990 991 992
	&cssdev_cm_attr_group,
	NULL,
};
993

994
static int __init setup_css(int nr)
995
{
996
	struct channel_subsystem *css;
997
	int ret;
998

999 1000
	css = kzalloc(sizeof(*css), GFP_KERNEL);
	if (!css)
1001
		return -ENOMEM;
1002 1003 1004 1005 1006

	channel_subsystems[nr] = css;
	dev_set_name(&css->device, "css%x", nr);
	css->device.groups = cssdev_attr_groups;
	css->device.release = channel_subsystem_release;
1007 1008 1009 1010 1011
	/*
	 * We currently allocate notifier bits with this (using
	 * css->device as the device argument with the DMA API)
	 * and are fine with 64 bit addresses.
	 */
1012 1013 1014 1015 1016
	ret = dma_coerce_mask_and_coherent(&css->device, DMA_BIT_MASK(64));
	if (ret) {
		kfree(css);
		goto out_err;
	}
1017 1018

	mutex_init(&css->mutex);
1019 1020 1021 1022 1023 1024
	ret = chsc_get_cssid_iid(nr, &css->cssid, &css->iid);
	if (!ret) {
		css->id_valid = true;
		pr_info("Partition identifier %01x.%01x\n", css->cssid,
			css->iid);
	}
1025 1026 1027 1028 1029 1030 1031 1032 1033 1034 1035 1036 1037 1038 1039 1040
	css_generate_pgid(css, (u32) (get_tod_clock() >> 32));

	ret = device_register(&css->device);
	if (ret) {
		put_device(&css->device);
		goto out_err;
	}

	css->pseudo_subchannel = kzalloc(sizeof(*css->pseudo_subchannel),
					 GFP_KERNEL);
	if (!css->pseudo_subchannel) {
		device_unregister(&css->device);
		ret = -ENOMEM;
		goto out_err;
	}

1041 1042
	css->pseudo_subchannel->dev.parent = &css->device;
	css->pseudo_subchannel->dev.release = css_subchannel_release;
1043
	mutex_init(&css->pseudo_subchannel->reg_mutex);
1044
	ret = css_sch_create_locks(css->pseudo_subchannel);
1045
	if (ret) {
1046
		kfree(css->pseudo_subchannel);
1047 1048
		device_unregister(&css->device);
		goto out_err;
1049
	}
1050

1051 1052 1053 1054 1055 1056 1057 1058 1059 1060 1061 1062
	dev_set_name(&css->pseudo_subchannel->dev, "defunct");
	ret = device_register(&css->pseudo_subchannel->dev);
	if (ret) {
		put_device(&css->pseudo_subchannel->dev);
		device_unregister(&css->device);
		goto out_err;
	}

	return ret;
out_err:
	channel_subsystems[nr] = NULL;
	return ret;
L
Linus Torvalds 已提交
1063 1064
}

1065 1066 1067 1068
static int css_reboot_event(struct notifier_block *this,
			    unsigned long event,
			    void *ptr)
{
S
Sebastian Ott 已提交
1069 1070
	struct channel_subsystem *css;
	int ret;
1071 1072

	ret = NOTIFY_DONE;
S
Sebastian Ott 已提交
1073
	for_each_css(css) {
1074
		mutex_lock(&css->mutex);
1075 1076 1077
		if (css->cm_enabled)
			if (chsc_secm(css, 0))
				ret = NOTIFY_BAD;
1078
		mutex_unlock(&css->mutex);
1079 1080 1081 1082 1083 1084 1085 1086 1087
	}

	return ret;
}

static struct notifier_block css_reboot_notifier = {
	.notifier_call = css_reboot_event,
};

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 1127 1128 1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139 1140 1141 1142 1143 1144 1145 1146 1147 1148 1149 1150 1151 1152 1153 1154 1155 1156 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 1183 1184 1185 1186 1187 1188 1189 1190 1191 1192
#define  CIO_DMA_GFP (GFP_KERNEL | __GFP_ZERO)
static struct gen_pool *cio_dma_pool;

/* Currently cio supports only a single css */
struct device *cio_get_dma_css_dev(void)
{
	return &channel_subsystems[0]->device;
}

struct gen_pool *cio_gp_dma_create(struct device *dma_dev, int nr_pages)
{
	struct gen_pool *gp_dma;
	void *cpu_addr;
	dma_addr_t dma_addr;
	int i;

	gp_dma = gen_pool_create(3, -1);
	if (!gp_dma)
		return NULL;
	for (i = 0; i < nr_pages; ++i) {
		cpu_addr = dma_alloc_coherent(dma_dev, PAGE_SIZE, &dma_addr,
					      CIO_DMA_GFP);
		if (!cpu_addr)
			return gp_dma;
		gen_pool_add_virt(gp_dma, (unsigned long) cpu_addr,
				  dma_addr, PAGE_SIZE, -1);
	}
	return gp_dma;
}

static void __gp_dma_free_dma(struct gen_pool *pool,
			      struct gen_pool_chunk *chunk, void *data)
{
	size_t chunk_size = chunk->end_addr - chunk->start_addr + 1;

	dma_free_coherent((struct device *) data, chunk_size,
			 (void *) chunk->start_addr,
			 (dma_addr_t) chunk->phys_addr);
}

void cio_gp_dma_destroy(struct gen_pool *gp_dma, struct device *dma_dev)
{
	if (!gp_dma)
		return;
	/* this is quite ugly but no better idea */
	gen_pool_for_each_chunk(gp_dma, __gp_dma_free_dma, dma_dev);
	gen_pool_destroy(gp_dma);
}

static int cio_dma_pool_init(void)
{
	/* No need to free up the resources: compiled in */
	cio_dma_pool = cio_gp_dma_create(cio_get_dma_css_dev(), 1);
	if (!cio_dma_pool)
		return -ENOMEM;
	return 0;
}

void *cio_gp_dma_zalloc(struct gen_pool *gp_dma, struct device *dma_dev,
			size_t size)
{
	dma_addr_t dma_addr;
	unsigned long addr;
	size_t chunk_size;

	if (!gp_dma)
		return NULL;
	addr = gen_pool_alloc(gp_dma, size);
	while (!addr) {
		chunk_size = round_up(size, PAGE_SIZE);
		addr = (unsigned long) dma_alloc_coherent(dma_dev,
					 chunk_size, &dma_addr, CIO_DMA_GFP);
		if (!addr)
			return NULL;
		gen_pool_add_virt(gp_dma, addr, dma_addr, chunk_size, -1);
		addr = gen_pool_alloc(gp_dma, size);
	}
	return (void *) addr;
}

void cio_gp_dma_free(struct gen_pool *gp_dma, void *cpu_addr, size_t size)
{
	if (!cpu_addr)
		return;
	memset(cpu_addr, 0, size);
	gen_pool_free(gp_dma, (unsigned long) cpu_addr, size);
}

/*
 * Allocate dma memory from the css global pool. Intended for memory not
 * specific to any single device within the css. The allocated memory
 * is not guaranteed to be 31-bit addressable.
 *
 * Caution: Not suitable for early stuff like console.
 */
void *cio_dma_zalloc(size_t size)
{
	return cio_gp_dma_zalloc(cio_dma_pool, cio_get_dma_css_dev(), size);
}

void cio_dma_free(void *cpu_addr, size_t size)
{
	cio_gp_dma_free(cio_dma_pool, cpu_addr, size);
}

L
Linus Torvalds 已提交
1193 1194
/*
 * Now that the driver core is running, we can setup our channel subsystem.
1195
 * The struct subchannel's are created during probing.
L
Linus Torvalds 已提交
1196
 */
S
Sebastian Ott 已提交
1197
static int __init css_bus_init(void)
L
Linus Torvalds 已提交
1198
{
1199
	int ret, i;
L
Linus Torvalds 已提交
1200

S
Sebastian Ott 已提交
1201 1202 1203 1204
	ret = chsc_init();
	if (ret)
		return ret;

1205
	chsc_determine_css_characteristics();
1206 1207
	/* Try to enable MSS. */
	ret = chsc_enable_facility(CHSC_SDA_OC_MSS);
1208
	if (ret)
1209
		max_ssid = 0;
1210 1211
	else /* Success. */
		max_ssid = __MAX_SSID;
1212

1213 1214 1215 1216
	ret = slow_subchannel_init();
	if (ret)
		goto out;

1217
	ret = crw_register_handler(CRW_RSC_SCH, css_process_crw);
1218 1219 1220
	if (ret)
		goto out;

L
Linus Torvalds 已提交
1221 1222 1223
	if ((ret = bus_register(&css_bus_type)))
		goto out;

1224
	/* Setup css structure. */
S
Sebastian Ott 已提交
1225
	for (i = 0; i <= MAX_CSS_IDX; i++) {
1226
		ret = setup_css(i);
1227
		if (ret)
1228
			goto out_unregister;
1229
	}
1230 1231
	ret = register_reboot_notifier(&css_reboot_notifier);
	if (ret)
1232
		goto out_unregister;
1233 1234
	ret = cio_dma_pool_init();
	if (ret)
1235
		goto out_unregister_rn;
1236
	airq_init();
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1237 1238
	css_init_done = 1;

1239
	/* Enable default isc for I/O subchannels. */
1240
	isc_register(IO_SCH_ISC);
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	return 0;
1243 1244
out_unregister_rn:
	unregister_reboot_notifier(&css_reboot_notifier);
1245
out_unregister:
1246 1247
	while (i-- > 0) {
		struct channel_subsystem *css = channel_subsystems[i];
1248 1249
		device_unregister(&css->pseudo_subchannel->dev);
		device_unregister(&css->device);
1250
	}
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	bus_unregister(&css_bus_type);
out:
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1253
	crw_unregister_handler(CRW_RSC_SCH);
1254
	idset_free(slow_subchannel_set);
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	chsc_init_cleanup();
1256 1257
	pr_alert("The CSS device driver initialization failed with "
		 "errno=%d\n", ret);
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	return ret;
}

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static void __init css_bus_cleanup(void)
{
	struct channel_subsystem *css;

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	for_each_css(css) {
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		device_unregister(&css->pseudo_subchannel->dev);
		device_unregister(&css->device);
	}
	bus_unregister(&css_bus_type);
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	crw_unregister_handler(CRW_RSC_SCH);
1271
	idset_free(slow_subchannel_set);
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1272
	chsc_init_cleanup();
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	isc_unregister(IO_SCH_ISC);
}

static int __init channel_subsystem_init(void)
{
	int ret;

	ret = css_bus_init();
	if (ret)
		return ret;
1283 1284 1285 1286 1287
	cio_work_q = create_singlethread_workqueue("cio");
	if (!cio_work_q) {
		ret = -ENOMEM;
		goto out_bus;
	}
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	ret = io_subchannel_init();
	if (ret)
1290
		goto out_wq;
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1292 1293 1294 1295 1296
	/* Register subchannels which are already in use. */
	cio_register_early_subchannels();
	/* Start initial subchannel evaluation. */
	css_schedule_eval_all();

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	return ret;
1298 1299 1300 1301 1302
out_wq:
	destroy_workqueue(cio_work_q);
out_bus:
	css_bus_cleanup();
	return ret;
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}
subsys_initcall(channel_subsystem_init);

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static int css_settle(struct device_driver *drv, void *unused)
{
	struct css_driver *cssdrv = to_cssdriver(drv);

	if (cssdrv->settle)
1311
		return cssdrv->settle();
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	return 0;
}

1315
int css_complete_work(void)
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1316 1317 1318 1319
{
	int ret;

	/* Wait for the evaluation of subchannels to finish. */
1320 1321 1322 1323
	ret = wait_event_interruptible(css_eval_wq,
				       atomic_read(&css_eval_scheduled) == 0);
	if (ret)
		return -EINTR;
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	flush_workqueue(cio_work_q);
	/* Wait for the subchannel type specific initialization to finish */
1326
	return bus_for_each_drv(&css_bus_type, NULL, NULL, css_settle);
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1327 1328 1329
}


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1330 1331 1332 1333 1334 1335
/*
 * Wait for the initialization of devices to finish, to make sure we are
 * done with our setup if the search for the root device starts.
 */
static int __init channel_subsystem_init_sync(void)
{
S
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1336 1337
	css_complete_work();
	return 0;
S
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1338 1339 1340
}
subsys_initcall_sync(channel_subsystem_init_sync);

S
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1341 1342 1343 1344
#ifdef CONFIG_PROC_FS
static ssize_t cio_settle_write(struct file *file, const char __user *buf,
				size_t count, loff_t *ppos)
{
1345 1346
	int ret;

S
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1347 1348
	/* Handle pending CRW's. */
	crw_wait_for_channel_report();
1349 1350 1351
	ret = css_complete_work();

	return ret ? ret : count;
S
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1352 1353
}

1354 1355 1356 1357
static const struct proc_ops cio_settle_proc_ops = {
	.proc_open	= nonseekable_open,
	.proc_write	= cio_settle_write,
	.proc_lseek	= no_llseek,
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1358 1359 1360 1361 1362 1363
};

static int __init cio_settle_init(void)
{
	struct proc_dir_entry *entry;

1364
	entry = proc_create("cio_settle", S_IWUSR, NULL, &cio_settle_proc_ops);
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1365 1366 1367 1368 1369 1370 1371
	if (!entry)
		return -ENOMEM;
	return 0;
}
device_initcall(cio_settle_init);
#endif /*CONFIG_PROC_FS*/

1372 1373
int sch_is_pseudo_sch(struct subchannel *sch)
{
1374 1375
	if (!sch->dev.parent)
		return 0;
1376 1377 1378
	return sch == to_css(sch->dev.parent)->pseudo_subchannel;
}

1379
static int css_bus_match(struct device *dev, struct device_driver *drv)
L
Linus Torvalds 已提交
1380
{
1381 1382
	struct subchannel *sch = to_subchannel(dev);
	struct css_driver *driver = to_cssdriver(drv);
1383
	struct css_device_id *id;
L
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1384

1385 1386 1387 1388
	/* When driver_override is set, only bind to the matching driver */
	if (sch->driver_override && strcmp(sch->driver_override, drv->name))
		return 0;

1389 1390 1391 1392
	for (id = driver->subchannel_type; id->match_flags; id++) {
		if (sch->st == id->type)
			return 1;
	}
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1393 1394 1395 1396

	return 0;
}

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1397
static int css_probe(struct device *dev)
1398 1399
{
	struct subchannel *sch;
C
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1400
	int ret;
1401 1402

	sch = to_subchannel(dev);
1403
	sch->driver = to_cssdriver(dev->driver);
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1404 1405 1406 1407
	ret = sch->driver->probe ? sch->driver->probe(sch) : 0;
	if (ret)
		sch->driver = NULL;
	return ret;
1408 1409
}

1410
static void css_remove(struct device *dev)
1411 1412 1413 1414
{
	struct subchannel *sch;

	sch = to_subchannel(dev);
1415 1416
	if (sch->driver->remove)
		sch->driver->remove(sch);
C
Cornelia Huck 已提交
1417
	sch->driver = NULL;
1418 1419
}

C
Cornelia Huck 已提交
1420
static void css_shutdown(struct device *dev)
1421 1422 1423 1424
{
	struct subchannel *sch;

	sch = to_subchannel(dev);
C
Cornelia Huck 已提交
1425
	if (sch->driver && sch->driver->shutdown)
1426 1427 1428
		sch->driver->shutdown(sch);
}

1429 1430 1431 1432 1433 1434 1435 1436 1437 1438 1439 1440
static int css_uevent(struct device *dev, struct kobj_uevent_env *env)
{
	struct subchannel *sch = to_subchannel(dev);
	int ret;

	ret = add_uevent_var(env, "ST=%01X", sch->st);
	if (ret)
		return ret;
	ret = add_uevent_var(env, "MODALIAS=css:t%01X", sch->st);
	return ret;
}

1441
static struct bus_type css_bus_type = {
1442 1443 1444 1445 1446
	.name     = "css",
	.match    = css_bus_match,
	.probe    = css_probe,
	.remove   = css_remove,
	.shutdown = css_shutdown,
1447
	.uevent   = css_uevent,
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1448 1449
};

1450 1451 1452 1453 1454 1455 1456 1457 1458 1459 1460 1461 1462 1463 1464 1465 1466 1467 1468 1469 1470 1471 1472 1473 1474
/**
 * css_driver_register - register a css driver
 * @cdrv: css driver to register
 *
 * This is mainly a wrapper around driver_register that sets name
 * and bus_type in the embedded struct device_driver correctly.
 */
int css_driver_register(struct css_driver *cdrv)
{
	cdrv->drv.bus = &css_bus_type;
	return driver_register(&cdrv->drv);
}
EXPORT_SYMBOL_GPL(css_driver_register);

/**
 * css_driver_unregister - unregister a css driver
 * @cdrv: css driver to unregister
 *
 * This is a wrapper around driver_unregister.
 */
void css_driver_unregister(struct css_driver *cdrv)
{
	driver_unregister(&cdrv->drv);
}
EXPORT_SYMBOL_GPL(css_driver_unregister);