dasd.c 80.4 KB
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/*
 * File...........: linux/drivers/s390/block/dasd.c
 * Author(s)......: Holger Smolinski <Holger.Smolinski@de.ibm.com>
 *		    Horst Hummel <Horst.Hummel@de.ibm.com>
 *		    Carsten Otte <Cotte@de.ibm.com>
 *		    Martin Schwidefsky <schwidefsky@de.ibm.com>
 * Bugreports.to..: <Linux390@de.ibm.com>
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 * Copyright IBM Corp. 1999, 2009
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 */

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#define KMSG_COMPONENT "dasd"
#define pr_fmt(fmt) KMSG_COMPONENT ": " fmt

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#include <linux/kernel_stat.h>
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#include <linux/kmod.h>
#include <linux/init.h>
#include <linux/interrupt.h>
#include <linux/ctype.h>
#include <linux/major.h>
#include <linux/slab.h>
#include <linux/buffer_head.h>
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#include <linux/hdreg.h>
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#include <linux/async.h>
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#include <linux/mutex.h>
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#include <asm/ccwdev.h>
#include <asm/ebcdic.h>
#include <asm/idals.h>
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#include <asm/itcw.h>
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#include <asm/diag.h>
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/* This is ugly... */
#define PRINTK_HEADER "dasd:"

#include "dasd_int.h"
/*
 * SECTION: Constant definitions to be used within this file
 */
#define DASD_CHANQ_MAX_SIZE 4

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#define DASD_SLEEPON_START_TAG	(void *) 1
#define DASD_SLEEPON_END_TAG	(void *) 2

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/*
 * SECTION: exported variables of dasd.c
 */
debug_info_t *dasd_debug_area;
struct dasd_discipline *dasd_diag_discipline_pointer;
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void dasd_int_handler(struct ccw_device *, unsigned long, struct irb *);
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MODULE_AUTHOR("Holger Smolinski <Holger.Smolinski@de.ibm.com>");
MODULE_DESCRIPTION("Linux on S/390 DASD device driver,"
		   " Copyright 2000 IBM Corporation");
MODULE_SUPPORTED_DEVICE("dasd");
MODULE_LICENSE("GPL");

/*
 * SECTION: prototypes for static functions of dasd.c
 */
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static int  dasd_alloc_queue(struct dasd_block *);
static void dasd_setup_queue(struct dasd_block *);
static void dasd_free_queue(struct dasd_block *);
static void dasd_flush_request_queue(struct dasd_block *);
static int dasd_flush_block_queue(struct dasd_block *);
static void dasd_device_tasklet(struct dasd_device *);
static void dasd_block_tasklet(struct dasd_block *);
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static void do_kick_device(struct work_struct *);
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static void do_restore_device(struct work_struct *);
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static void do_reload_device(struct work_struct *);
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static void dasd_return_cqr_cb(struct dasd_ccw_req *, void *);
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static void dasd_device_timeout(unsigned long);
static void dasd_block_timeout(unsigned long);
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static void __dasd_process_erp(struct dasd_device *, struct dasd_ccw_req *);
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/*
 * SECTION: Operations on the device structure.
 */
static wait_queue_head_t dasd_init_waitq;
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static wait_queue_head_t dasd_flush_wq;
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static wait_queue_head_t generic_waitq;
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/*
 * Allocate memory for a new device structure.
 */
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struct dasd_device *dasd_alloc_device(void)
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{
	struct dasd_device *device;

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	device = kzalloc(sizeof(struct dasd_device), GFP_ATOMIC);
	if (!device)
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		return ERR_PTR(-ENOMEM);

	/* Get two pages for normal block device operations. */
	device->ccw_mem = (void *) __get_free_pages(GFP_ATOMIC | GFP_DMA, 1);
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	if (!device->ccw_mem) {
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		kfree(device);
		return ERR_PTR(-ENOMEM);
	}
	/* Get one page for error recovery. */
	device->erp_mem = (void *) get_zeroed_page(GFP_ATOMIC | GFP_DMA);
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	if (!device->erp_mem) {
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		free_pages((unsigned long) device->ccw_mem, 1);
		kfree(device);
		return ERR_PTR(-ENOMEM);
	}

	dasd_init_chunklist(&device->ccw_chunks, device->ccw_mem, PAGE_SIZE*2);
	dasd_init_chunklist(&device->erp_chunks, device->erp_mem, PAGE_SIZE);
	spin_lock_init(&device->mem_lock);
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	atomic_set(&device->tasklet_scheduled, 0);
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	tasklet_init(&device->tasklet,
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		     (void (*)(unsigned long)) dasd_device_tasklet,
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		     (unsigned long) device);
	INIT_LIST_HEAD(&device->ccw_queue);
	init_timer(&device->timer);
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	device->timer.function = dasd_device_timeout;
	device->timer.data = (unsigned long) device;
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	INIT_WORK(&device->kick_work, do_kick_device);
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	INIT_WORK(&device->restore_device, do_restore_device);
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	INIT_WORK(&device->reload_device, do_reload_device);
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	device->state = DASD_STATE_NEW;
	device->target = DASD_STATE_NEW;
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	mutex_init(&device->state_mutex);
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	return device;
}

/*
 * Free memory of a device structure.
 */
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void dasd_free_device(struct dasd_device *device)
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{
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	kfree(device->private);
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	free_page((unsigned long) device->erp_mem);
	free_pages((unsigned long) device->ccw_mem, 1);
	kfree(device);
}

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/*
 * Allocate memory for a new device structure.
 */
struct dasd_block *dasd_alloc_block(void)
{
	struct dasd_block *block;

	block = kzalloc(sizeof(*block), GFP_ATOMIC);
	if (!block)
		return ERR_PTR(-ENOMEM);
	/* open_count = 0 means device online but not in use */
	atomic_set(&block->open_count, -1);

	spin_lock_init(&block->request_queue_lock);
	atomic_set(&block->tasklet_scheduled, 0);
	tasklet_init(&block->tasklet,
		     (void (*)(unsigned long)) dasd_block_tasklet,
		     (unsigned long) block);
	INIT_LIST_HEAD(&block->ccw_queue);
	spin_lock_init(&block->queue_lock);
	init_timer(&block->timer);
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	block->timer.function = dasd_block_timeout;
	block->timer.data = (unsigned long) block;
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	return block;
}

/*
 * Free memory of a device structure.
 */
void dasd_free_block(struct dasd_block *block)
{
	kfree(block);
}

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/*
 * Make a new device known to the system.
 */
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static int dasd_state_new_to_known(struct dasd_device *device)
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{
	int rc;

	/*
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	 * As long as the device is not in state DASD_STATE_NEW we want to
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	 * keep the reference count > 0.
	 */
	dasd_get_device(device);

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	if (device->block) {
		rc = dasd_alloc_queue(device->block);
		if (rc) {
			dasd_put_device(device);
			return rc;
		}
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	}
	device->state = DASD_STATE_KNOWN;
	return 0;
}

/*
 * Let the system forget about a device.
 */
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static int dasd_state_known_to_new(struct dasd_device *device)
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{
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	/* Disable extended error reporting for this device. */
	dasd_eer_disable(device);
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	/* Forget the discipline information. */
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	if (device->discipline) {
		if (device->discipline->uncheck_device)
			device->discipline->uncheck_device(device);
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		module_put(device->discipline->owner);
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	}
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	device->discipline = NULL;
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	if (device->base_discipline)
		module_put(device->base_discipline->owner);
	device->base_discipline = NULL;
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	device->state = DASD_STATE_NEW;

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	if (device->block)
		dasd_free_queue(device->block);
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	/* Give up reference we took in dasd_state_new_to_known. */
	dasd_put_device(device);
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	return 0;
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}

/*
 * Request the irq line for the device.
 */
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static int dasd_state_known_to_basic(struct dasd_device *device)
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{
	int rc;

	/* Allocate and register gendisk structure. */
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	if (device->block) {
		rc = dasd_gendisk_alloc(device->block);
		if (rc)
			return rc;
	}
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	/* register 'device' debug area, used for all DBF_DEV_XXX calls */
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	device->debug_area = debug_register(dev_name(&device->cdev->dev), 4, 1,
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					    8 * sizeof(long));
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	debug_register_view(device->debug_area, &debug_sprintf_view);
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	debug_set_level(device->debug_area, DBF_WARNING);
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	DBF_DEV_EVENT(DBF_EMERG, device, "%s", "debug area created");

	device->state = DASD_STATE_BASIC;
	return 0;
}

/*
 * Release the irq line for the device. Terminate any running i/o.
 */
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static int dasd_state_basic_to_known(struct dasd_device *device)
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{
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	int rc;
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	if (device->block) {
		dasd_gendisk_free(device->block);
		dasd_block_clear_timer(device->block);
	}
	rc = dasd_flush_device_queue(device);
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	if (rc)
		return rc;
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	dasd_device_clear_timer(device);
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	DBF_DEV_EVENT(DBF_EMERG, device, "%p debug area deleted", device);
	if (device->debug_area != NULL) {
		debug_unregister(device->debug_area);
		device->debug_area = NULL;
	}
	device->state = DASD_STATE_KNOWN;
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	return 0;
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}

/*
 * Do the initial analysis. The do_analysis function may return
 * -EAGAIN in which case the device keeps the state DASD_STATE_BASIC
 * until the discipline decides to continue the startup sequence
 * by calling the function dasd_change_state. The eckd disciplines
 * uses this to start a ccw that detects the format. The completion
 * interrupt for this detection ccw uses the kernel event daemon to
 * trigger the call to dasd_change_state. All this is done in the
 * discipline code, see dasd_eckd.c.
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 * After the analysis ccw is done (do_analysis returned 0) the block
 * device is setup.
 * In case the analysis returns an error, the device setup is stopped
 * (a fake disk was already added to allow formatting).
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 */
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static int dasd_state_basic_to_ready(struct dasd_device *device)
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{
	int rc;
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	struct dasd_block *block;
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	rc = 0;
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	block = device->block;
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	/* make disk known with correct capacity */
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	if (block) {
		if (block->base->discipline->do_analysis != NULL)
			rc = block->base->discipline->do_analysis(block);
		if (rc) {
			if (rc != -EAGAIN)
				device->state = DASD_STATE_UNFMT;
			return rc;
		}
		dasd_setup_queue(block);
		set_capacity(block->gdp,
			     block->blocks << block->s2b_shift);
		device->state = DASD_STATE_READY;
		rc = dasd_scan_partitions(block);
		if (rc)
			device->state = DASD_STATE_BASIC;
	} else {
		device->state = DASD_STATE_READY;
	}
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	return rc;
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}

/*
 * Remove device from block device layer. Destroy dirty buffers.
 * Forget format information. Check if the target level is basic
 * and if it is create fake disk for formatting.
 */
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static int dasd_state_ready_to_basic(struct dasd_device *device)
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{
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	int rc;

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	device->state = DASD_STATE_BASIC;
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	if (device->block) {
		struct dasd_block *block = device->block;
		rc = dasd_flush_block_queue(block);
		if (rc) {
			device->state = DASD_STATE_READY;
			return rc;
		}
		dasd_flush_request_queue(block);
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		dasd_destroy_partitions(block);
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		block->blocks = 0;
		block->bp_block = 0;
		block->s2b_shift = 0;
	}
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	return 0;
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}

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/*
 * Back to basic.
 */
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static int dasd_state_unfmt_to_basic(struct dasd_device *device)
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{
	device->state = DASD_STATE_BASIC;
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	return 0;
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}

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/*
 * Make the device online and schedule the bottom half to start
 * the requeueing of requests from the linux request queue to the
 * ccw queue.
 */
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static int
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dasd_state_ready_to_online(struct dasd_device * device)
{
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	int rc;
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	struct gendisk *disk;
	struct disk_part_iter piter;
	struct hd_struct *part;
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	if (device->discipline->ready_to_online) {
		rc = device->discipline->ready_to_online(device);
		if (rc)
			return rc;
	}
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	device->state = DASD_STATE_ONLINE;
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	if (device->block) {
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		dasd_schedule_block_bh(device->block);
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		disk = device->block->bdev->bd_disk;
		disk_part_iter_init(&piter, disk, DISK_PITER_INCL_PART0);
		while ((part = disk_part_iter_next(&piter)))
			kobject_uevent(&part_to_dev(part)->kobj, KOBJ_CHANGE);
		disk_part_iter_exit(&piter);
	}
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	return 0;
}

/*
 * Stop the requeueing of requests again.
 */
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static int dasd_state_online_to_ready(struct dasd_device *device)
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{
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	int rc;
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	struct gendisk *disk;
	struct disk_part_iter piter;
	struct hd_struct *part;
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	if (device->discipline->online_to_ready) {
		rc = device->discipline->online_to_ready(device);
		if (rc)
			return rc;
	}
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	device->state = DASD_STATE_READY;
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	if (device->block) {
		disk = device->block->bdev->bd_disk;
		disk_part_iter_init(&piter, disk, DISK_PITER_INCL_PART0);
		while ((part = disk_part_iter_next(&piter)))
			kobject_uevent(&part_to_dev(part)->kobj, KOBJ_CHANGE);
		disk_part_iter_exit(&piter);
	}
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	return 0;
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}

/*
 * Device startup state changes.
 */
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static int dasd_increase_state(struct dasd_device *device)
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{
	int rc;

	rc = 0;
	if (device->state == DASD_STATE_NEW &&
	    device->target >= DASD_STATE_KNOWN)
		rc = dasd_state_new_to_known(device);

	if (!rc &&
	    device->state == DASD_STATE_KNOWN &&
	    device->target >= DASD_STATE_BASIC)
		rc = dasd_state_known_to_basic(device);

	if (!rc &&
	    device->state == DASD_STATE_BASIC &&
	    device->target >= DASD_STATE_READY)
		rc = dasd_state_basic_to_ready(device);

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	if (!rc &&
	    device->state == DASD_STATE_UNFMT &&
	    device->target > DASD_STATE_UNFMT)
		rc = -EPERM;

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	if (!rc &&
	    device->state == DASD_STATE_READY &&
	    device->target >= DASD_STATE_ONLINE)
		rc = dasd_state_ready_to_online(device);

	return rc;
}

/*
 * Device shutdown state changes.
 */
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static int dasd_decrease_state(struct dasd_device *device)
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{
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	int rc;

	rc = 0;
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	if (device->state == DASD_STATE_ONLINE &&
	    device->target <= DASD_STATE_READY)
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		rc = dasd_state_online_to_ready(device);
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	if (!rc &&
	    device->state == DASD_STATE_READY &&
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	    device->target <= DASD_STATE_BASIC)
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		rc = dasd_state_ready_to_basic(device);
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	if (!rc &&
	    device->state == DASD_STATE_UNFMT &&
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	    device->target <= DASD_STATE_BASIC)
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		rc = dasd_state_unfmt_to_basic(device);
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	if (!rc &&
	    device->state == DASD_STATE_BASIC &&
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	    device->target <= DASD_STATE_KNOWN)
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		rc = dasd_state_basic_to_known(device);
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	if (!rc &&
	    device->state == DASD_STATE_KNOWN &&
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	    device->target <= DASD_STATE_NEW)
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		rc = dasd_state_known_to_new(device);
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	return rc;
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}

/*
 * This is the main startup/shutdown routine.
 */
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static void dasd_change_state(struct dasd_device *device)
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{
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	int rc;
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	if (device->state == device->target)
		/* Already where we want to go today... */
		return;
	if (device->state < device->target)
		rc = dasd_increase_state(device);
	else
		rc = dasd_decrease_state(device);
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	if (rc == -EAGAIN)
		return;
	if (rc)
		device->target = device->state;
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	if (device->state == device->target)
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		wake_up(&dasd_init_waitq);
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	/* let user-space know that the device status changed */
	kobject_uevent(&device->cdev->dev.kobj, KOBJ_CHANGE);
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}

/*
 * Kick starter for devices that did not complete the startup/shutdown
 * procedure or were sleeping because of a pending state.
 * dasd_kick_device will schedule a call do do_kick_device to the kernel
 * event daemon.
 */
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static void do_kick_device(struct work_struct *work)
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{
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	struct dasd_device *device = container_of(work, struct dasd_device, kick_work);
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	mutex_lock(&device->state_mutex);
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	dasd_change_state(device);
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	mutex_unlock(&device->state_mutex);
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	dasd_schedule_device_bh(device);
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	dasd_put_device(device);
}

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void dasd_kick_device(struct dasd_device *device)
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{
	dasd_get_device(device);
	/* queue call to dasd_kick_device to the kernel event daemon. */
	schedule_work(&device->kick_work);
}

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/*
 * dasd_reload_device will schedule a call do do_reload_device to the kernel
 * event daemon.
 */
static void do_reload_device(struct work_struct *work)
{
	struct dasd_device *device = container_of(work, struct dasd_device,
						  reload_device);
	device->discipline->reload(device);
	dasd_put_device(device);
}

void dasd_reload_device(struct dasd_device *device)
{
	dasd_get_device(device);
	/* queue call to dasd_reload_device to the kernel event daemon. */
	schedule_work(&device->reload_device);
}
EXPORT_SYMBOL(dasd_reload_device);

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/*
 * dasd_restore_device will schedule a call do do_restore_device to the kernel
 * event daemon.
 */
static void do_restore_device(struct work_struct *work)
{
	struct dasd_device *device = container_of(work, struct dasd_device,
						  restore_device);
	device->cdev->drv->restore(device->cdev);
	dasd_put_device(device);
}

void dasd_restore_device(struct dasd_device *device)
{
	dasd_get_device(device);
	/* queue call to dasd_restore_device to the kernel event daemon. */
	schedule_work(&device->restore_device);
}

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/*
 * Set the target state for a device and starts the state change.
 */
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void dasd_set_target_state(struct dasd_device *device, int target)
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{
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	dasd_get_device(device);
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	mutex_lock(&device->state_mutex);
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	/* If we are in probeonly mode stop at DASD_STATE_READY. */
	if (dasd_probeonly && target > DASD_STATE_READY)
		target = DASD_STATE_READY;
	if (device->target != target) {
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		if (device->state == target)
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			wake_up(&dasd_init_waitq);
		device->target = target;
	}
	if (device->state != device->target)
		dasd_change_state(device);
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	mutex_unlock(&device->state_mutex);
	dasd_put_device(device);
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}

/*
 * Enable devices with device numbers in [from..to].
 */
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static inline int _wait_for_device(struct dasd_device *device)
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{
	return (device->state == device->target);
}

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void dasd_enable_device(struct dasd_device *device)
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{
	dasd_set_target_state(device, DASD_STATE_ONLINE);
	if (device->state <= DASD_STATE_KNOWN)
		/* No discipline for device found. */
		dasd_set_target_state(device, DASD_STATE_NEW);
	/* Now wait for the devices to come up. */
	wait_event(dasd_init_waitq, _wait_for_device(device));
}

/*
 * SECTION: device operation (interrupt handler, start i/o, term i/o ...)
 */
#ifdef CONFIG_DASD_PROFILE

struct dasd_profile_info_t dasd_global_profile;
unsigned int dasd_profile_level = DASD_PROFILE_OFF;

/*
 * Increments counter in global and local profiling structures.
 */
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#define dasd_profile_counter(value, counter, block) \
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{ \
	int index; \
	for (index = 0; index < 31 && value >> (2+index); index++); \
	dasd_global_profile.counter[index]++; \
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	block->profile.counter[index]++; \
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}

/*
 * Add profiling information for cqr before execution.
 */
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static void dasd_profile_start(struct dasd_block *block,
			       struct dasd_ccw_req *cqr,
			       struct request *req)
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{
	struct list_head *l;
	unsigned int counter;

	if (dasd_profile_level != DASD_PROFILE_ON)
		return;

	/* count the length of the chanq for statistics */
	counter = 0;
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	list_for_each(l, &block->ccw_queue)
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		if (++counter >= 31)
			break;
	dasd_global_profile.dasd_io_nr_req[counter]++;
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	block->profile.dasd_io_nr_req[counter]++;
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}

/*
 * Add profiling information for cqr after execution.
 */
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static void dasd_profile_end(struct dasd_block *block,
			     struct dasd_ccw_req *cqr,
			     struct request *req)
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{
	long strtime, irqtime, endtime, tottime;	/* in microseconds */
	long tottimeps, sectors;

	if (dasd_profile_level != DASD_PROFILE_ON)
		return;

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	sectors = blk_rq_sectors(req);
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	if (!cqr->buildclk || !cqr->startclk ||
	    !cqr->stopclk || !cqr->endclk ||
	    !sectors)
		return;

	strtime = ((cqr->startclk - cqr->buildclk) >> 12);
	irqtime = ((cqr->stopclk - cqr->startclk) >> 12);
	endtime = ((cqr->endclk - cqr->stopclk) >> 12);
	tottime = ((cqr->endclk - cqr->buildclk) >> 12);
	tottimeps = tottime / sectors;

	if (!dasd_global_profile.dasd_io_reqs)
		memset(&dasd_global_profile, 0,
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		       sizeof(struct dasd_profile_info_t));
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	dasd_global_profile.dasd_io_reqs++;
	dasd_global_profile.dasd_io_sects += sectors;

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	if (!block->profile.dasd_io_reqs)
		memset(&block->profile, 0,
		       sizeof(struct dasd_profile_info_t));
	block->profile.dasd_io_reqs++;
	block->profile.dasd_io_sects += sectors;
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	dasd_profile_counter(sectors, dasd_io_secs, block);
	dasd_profile_counter(tottime, dasd_io_times, block);
	dasd_profile_counter(tottimeps, dasd_io_timps, block);
	dasd_profile_counter(strtime, dasd_io_time1, block);
	dasd_profile_counter(irqtime, dasd_io_time2, block);
	dasd_profile_counter(irqtime / sectors, dasd_io_time2ps, block);
	dasd_profile_counter(endtime, dasd_io_time3, block);
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}
#else
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#define dasd_profile_start(block, cqr, req) do {} while (0)
#define dasd_profile_end(block, cqr, req) do {} while (0)
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#endif				/* CONFIG_DASD_PROFILE */

/*
 * Allocate memory for a channel program with 'cplength' channel
 * command words and 'datasize' additional space. There are two
 * variantes: 1) dasd_kmalloc_request uses kmalloc to get the needed
 * memory and 2) dasd_smalloc_request uses the static ccw memory
 * that gets allocated for each device.
 */
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struct dasd_ccw_req *dasd_kmalloc_request(int magic, int cplength,
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					  int datasize,
					  struct dasd_device *device)
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{
	struct dasd_ccw_req *cqr;

	/* Sanity checks */
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	BUG_ON(datasize > PAGE_SIZE ||
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	     (cplength*sizeof(struct ccw1)) > PAGE_SIZE);
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	cqr = kzalloc(sizeof(struct dasd_ccw_req), GFP_ATOMIC);
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	if (cqr == NULL)
		return ERR_PTR(-ENOMEM);
	cqr->cpaddr = NULL;
	if (cplength > 0) {
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		cqr->cpaddr = kcalloc(cplength, sizeof(struct ccw1),
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				      GFP_ATOMIC | GFP_DMA);
		if (cqr->cpaddr == NULL) {
			kfree(cqr);
			return ERR_PTR(-ENOMEM);
		}
	}
	cqr->data = NULL;
	if (datasize > 0) {
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		cqr->data = kzalloc(datasize, GFP_ATOMIC | GFP_DMA);
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		if (cqr->data == NULL) {
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			kfree(cqr->cpaddr);
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			kfree(cqr);
			return ERR_PTR(-ENOMEM);
		}
	}
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	cqr->magic =  magic;
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	set_bit(DASD_CQR_FLAGS_USE_ERP, &cqr->flags);
	dasd_get_device(device);
	return cqr;
}

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struct dasd_ccw_req *dasd_smalloc_request(int magic, int cplength,
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					  int datasize,
					  struct dasd_device *device)
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{
	unsigned long flags;
	struct dasd_ccw_req *cqr;
	char *data;
	int size;

	size = (sizeof(struct dasd_ccw_req) + 7L) & -8L;
	if (cplength > 0)
		size += cplength * sizeof(struct ccw1);
	if (datasize > 0)
		size += datasize;
	spin_lock_irqsave(&device->mem_lock, flags);
	cqr = (struct dasd_ccw_req *)
		dasd_alloc_chunk(&device->ccw_chunks, size);
	spin_unlock_irqrestore(&device->mem_lock, flags);
	if (cqr == NULL)
		return ERR_PTR(-ENOMEM);
	memset(cqr, 0, sizeof(struct dasd_ccw_req));
	data = (char *) cqr + ((sizeof(struct dasd_ccw_req) + 7L) & -8L);
	cqr->cpaddr = NULL;
	if (cplength > 0) {
		cqr->cpaddr = (struct ccw1 *) data;
		data += cplength*sizeof(struct ccw1);
		memset(cqr->cpaddr, 0, cplength*sizeof(struct ccw1));
	}
	cqr->data = NULL;
	if (datasize > 0) {
		cqr->data = data;
 		memset(cqr->data, 0, datasize);
	}
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	cqr->magic = magic;
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	set_bit(DASD_CQR_FLAGS_USE_ERP, &cqr->flags);
	dasd_get_device(device);
	return cqr;
}

/*
 * Free memory of a channel program. This function needs to free all the
 * idal lists that might have been created by dasd_set_cda and the
 * struct dasd_ccw_req itself.
 */
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void dasd_kfree_request(struct dasd_ccw_req *cqr, struct dasd_device *device)
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{
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#ifdef CONFIG_64BIT
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	struct ccw1 *ccw;

	/* Clear any idals used for the request. */
	ccw = cqr->cpaddr;
	do {
		clear_normalized_cda(ccw);
	} while (ccw++->flags & (CCW_FLAG_CC | CCW_FLAG_DC));
#endif
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	kfree(cqr->cpaddr);
	kfree(cqr->data);
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	kfree(cqr);
	dasd_put_device(device);
}

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void dasd_sfree_request(struct dasd_ccw_req *cqr, struct dasd_device *device)
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{
	unsigned long flags;

	spin_lock_irqsave(&device->mem_lock, flags);
	dasd_free_chunk(&device->ccw_chunks, cqr);
	spin_unlock_irqrestore(&device->mem_lock, flags);
	dasd_put_device(device);
}

/*
 * Check discipline magic in cqr.
 */
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static inline int dasd_check_cqr(struct dasd_ccw_req *cqr)
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{
	struct dasd_device *device;

	if (cqr == NULL)
		return -EINVAL;
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	device = cqr->startdev;
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	if (strncmp((char *) &cqr->magic, device->discipline->ebcname, 4)) {
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		DBF_DEV_EVENT(DBF_WARNING, device,
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			    " dasd_ccw_req 0x%08x magic doesn't match"
			    " discipline 0x%08x",
			    cqr->magic,
			    *(unsigned int *) device->discipline->name);
		return -EINVAL;
	}
	return 0;
}

/*
 * Terminate the current i/o and set the request to clear_pending.
 * Timer keeps device runnig.
 * ccw_device_clear can fail if the i/o subsystem
 * is in a bad mood.
 */
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int dasd_term_IO(struct dasd_ccw_req *cqr)
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{
	struct dasd_device *device;
	int retries, rc;
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	char errorstring[ERRORLENGTH];
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	/* Check the cqr */
	rc = dasd_check_cqr(cqr);
	if (rc)
		return rc;
	retries = 0;
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	device = (struct dasd_device *) cqr->startdev;
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	while ((retries < 5) && (cqr->status == DASD_CQR_IN_IO)) {
		rc = ccw_device_clear(device->cdev, (long) cqr);
		switch (rc) {
		case 0:	/* termination successful */
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			cqr->retries--;
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			cqr->status = DASD_CQR_CLEAR_PENDING;
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			cqr->stopclk = get_clock();
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			cqr->starttime = 0;
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			DBF_DEV_EVENT(DBF_DEBUG, device,
				      "terminate cqr %p successful",
				      cqr);
			break;
		case -ENODEV:
			DBF_DEV_EVENT(DBF_ERR, device, "%s",
				      "device gone, retry");
			break;
		case -EIO:
			DBF_DEV_EVENT(DBF_ERR, device, "%s",
				      "I/O error, retry");
			break;
		case -EINVAL:
		case -EBUSY:
			DBF_DEV_EVENT(DBF_ERR, device, "%s",
				      "device busy, retry later");
			break;
		default:
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			/* internal error 10 - unknown rc*/
			snprintf(errorstring, ERRORLENGTH, "10 %d", rc);
			dev_err(&device->cdev->dev, "An error occurred in the "
				"DASD device driver, reason=%s\n", errorstring);
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			BUG();
			break;
		}
		retries++;
	}
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	dasd_schedule_device_bh(device);
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	return rc;
}

/*
 * Start the i/o. This start_IO can fail if the channel is really busy.
 * In that case set up a timer to start the request later.
 */
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int dasd_start_IO(struct dasd_ccw_req *cqr)
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{
	struct dasd_device *device;
	int rc;
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	char errorstring[ERRORLENGTH];
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	/* Check the cqr */
	rc = dasd_check_cqr(cqr);
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	if (rc) {
		cqr->intrc = rc;
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		return rc;
903
	}
904
	device = (struct dasd_device *) cqr->startdev;
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	if (((cqr->block &&
	      test_bit(DASD_FLAG_LOCK_STOLEN, &cqr->block->base->flags)) ||
	     test_bit(DASD_FLAG_LOCK_STOLEN, &device->flags)) &&
	    !test_bit(DASD_CQR_ALLOW_SLOCK, &cqr->flags)) {
		DBF_DEV_EVENT(DBF_DEBUG, device, "start_IO: return request %p "
			      "because of stolen lock", cqr);
		cqr->status = DASD_CQR_ERROR;
		cqr->intrc = -EPERM;
		return -EPERM;
	}
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	if (cqr->retries < 0) {
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		/* internal error 14 - start_IO run out of retries */
		sprintf(errorstring, "14 %p", cqr);
		dev_err(&device->cdev->dev, "An error occurred in the DASD "
			"device driver, reason=%s\n", errorstring);
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		cqr->status = DASD_CQR_ERROR;
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		return -EIO;
	}
	cqr->startclk = get_clock();
	cqr->starttime = jiffies;
	cqr->retries--;
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	if (!test_bit(DASD_CQR_VERIFY_PATH, &cqr->flags)) {
		cqr->lpm &= device->path_data.opm;
		if (!cqr->lpm)
			cqr->lpm = device->path_data.opm;
	}
931 932 933 934 935 936 937
	if (cqr->cpmode == 1) {
		rc = ccw_device_tm_start(device->cdev, cqr->cpaddr,
					 (long) cqr, cqr->lpm);
	} else {
		rc = ccw_device_start(device->cdev, cqr->cpaddr,
				      (long) cqr, cqr->lpm, 0);
	}
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	switch (rc) {
	case 0:
		cqr->status = DASD_CQR_IN_IO;
		break;
	case -EBUSY:
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		DBF_DEV_EVENT(DBF_WARNING, device, "%s",
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			      "start_IO: device busy, retry later");
		break;
	case -ETIMEDOUT:
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		DBF_DEV_EVENT(DBF_WARNING, device, "%s",
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			      "start_IO: request timeout, retry later");
		break;
	case -EACCES:
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		/* -EACCES indicates that the request used only a subset of the
		 * available paths and all these paths are gone. If the lpm of
		 * this request was only a subset of the opm (e.g. the ppm) then
		 * we just do a retry with all available paths.
		 * If we already use the full opm, something is amiss, and we
		 * need a full path verification.
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		 */
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		if (test_bit(DASD_CQR_VERIFY_PATH, &cqr->flags)) {
			DBF_DEV_EVENT(DBF_WARNING, device,
				      "start_IO: selected paths gone (%x)",
				      cqr->lpm);
		} else if (cqr->lpm != device->path_data.opm) {
			cqr->lpm = device->path_data.opm;
			DBF_DEV_EVENT(DBF_DEBUG, device, "%s",
				      "start_IO: selected paths gone,"
				      " retry on all paths");
		} else {
			DBF_DEV_EVENT(DBF_WARNING, device, "%s",
				      "start_IO: all paths in opm gone,"
				      " do path verification");
			dasd_generic_last_path_gone(device);
			device->path_data.opm = 0;
			device->path_data.ppm = 0;
			device->path_data.npm = 0;
			device->path_data.tbvpm =
				ccw_device_get_path_mask(device->cdev);
		}
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		break;
	case -ENODEV:
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		DBF_DEV_EVENT(DBF_WARNING, device, "%s",
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			      "start_IO: -ENODEV device gone, retry");
		break;
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	case -EIO:
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		DBF_DEV_EVENT(DBF_WARNING, device, "%s",
985
			      "start_IO: -EIO device gone, retry");
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		break;
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	case -EINVAL:
		/* most likely caused in power management context */
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		DBF_DEV_EVENT(DBF_WARNING, device, "%s",
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			      "start_IO: -EINVAL device currently "
			      "not accessible");
		break;
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	default:
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		/* internal error 11 - unknown rc */
		snprintf(errorstring, ERRORLENGTH, "11 %d", rc);
		dev_err(&device->cdev->dev,
			"An error occurred in the DASD device driver, "
			"reason=%s\n", errorstring);
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		BUG();
		break;
	}
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	cqr->intrc = rc;
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	return rc;
}

/*
 * Timeout function for dasd devices. This is used for different purposes
 *  1) missing interrupt handler for normal operation
 *  2) delayed start of request where start_IO failed with -EBUSY
 *  3) timeout for missing state change interrupts
 * The head of the ccw queue will have status DASD_CQR_IN_IO for 1),
 * DASD_CQR_QUEUED for 2) and 3).
 */
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static void dasd_device_timeout(unsigned long ptr)
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{
	unsigned long flags;
	struct dasd_device *device;

	device = (struct dasd_device *) ptr;
	spin_lock_irqsave(get_ccwdev_lock(device->cdev), flags);
	/* re-activate request queue */
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	dasd_device_remove_stop_bits(device, DASD_STOPPED_PENDING);
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	spin_unlock_irqrestore(get_ccwdev_lock(device->cdev), flags);
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	dasd_schedule_device_bh(device);
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}

/*
 * Setup timeout for a device in jiffies.
 */
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void dasd_device_set_timer(struct dasd_device *device, int expires)
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{
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	if (expires == 0)
		del_timer(&device->timer);
	else
		mod_timer(&device->timer, jiffies + expires);
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}

/*
 * Clear timeout for a device.
 */
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void dasd_device_clear_timer(struct dasd_device *device)
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{
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	del_timer(&device->timer);
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}

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static void dasd_handle_killed_request(struct ccw_device *cdev,
				       unsigned long intparm)
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{
	struct dasd_ccw_req *cqr;
	struct dasd_device *device;

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	if (!intparm)
		return;
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	cqr = (struct dasd_ccw_req *) intparm;
	if (cqr->status != DASD_CQR_IN_IO) {
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		DBF_EVENT_DEVID(DBF_DEBUG, cdev,
				"invalid status in handle_killed_request: "
				"%02x", cqr->status);
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		return;
	}

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	device = dasd_device_from_cdev_locked(cdev);
	if (IS_ERR(device)) {
		DBF_EVENT_DEVID(DBF_DEBUG, cdev, "%s",
				"unable to get device from cdev");
		return;
	}

	if (!cqr->startdev ||
	    device != cqr->startdev ||
	    strncmp(cqr->startdev->discipline->ebcname,
		    (char *) &cqr->magic, 4)) {
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		DBF_EVENT_DEVID(DBF_DEBUG, cdev, "%s",
				"invalid device in request");
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		dasd_put_device(device);
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		return;
	}

	/* Schedule request to be retried. */
	cqr->status = DASD_CQR_QUEUED;

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	dasd_device_clear_timer(device);
	dasd_schedule_device_bh(device);
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	dasd_put_device(device);
}

1087
void dasd_generic_handle_state_change(struct dasd_device *device)
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{
1089 1090 1091
	/* First of all start sense subsystem status request. */
	dasd_eer_snss(device);

1092
	dasd_device_remove_stop_bits(device, DASD_STOPPED_PENDING);
1093 1094 1095
	dasd_schedule_device_bh(device);
	if (device->block)
		dasd_schedule_block_bh(device->block);
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}

/*
 * Interrupt handler for "normal" ssch-io based dasd devices.
 */
1101 1102
void dasd_int_handler(struct ccw_device *cdev, unsigned long intparm,
		      struct irb *irb)
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{
	struct dasd_ccw_req *cqr, *next;
	struct dasd_device *device;
	unsigned long long now;
	int expires;

1109
	kstat_cpu(smp_processor_id()).irqs[IOINT_DAS]++;
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	if (IS_ERR(irb)) {
		switch (PTR_ERR(irb)) {
		case -EIO:
			break;
		case -ETIMEDOUT:
1115 1116
			DBF_EVENT_DEVID(DBF_WARNING, cdev, "%s: "
					"request timed out\n", __func__);
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			break;
		default:
1119 1120 1121
			DBF_EVENT_DEVID(DBF_WARNING, cdev, "%s: "
					"unknown error %ld\n", __func__,
					PTR_ERR(irb));
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		}
1123
		dasd_handle_killed_request(cdev, intparm);
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		return;
	}

	now = get_clock();
1128
	cqr = (struct dasd_ccw_req *) intparm;
1129 1130 1131 1132
	/* check for conditions that should be handled immediately */
	if (!cqr ||
	    !(scsw_dstat(&irb->scsw) == (DEV_STAT_CHN_END | DEV_STAT_DEV_END) &&
	      scsw_cstat(&irb->scsw) == 0)) {
1133 1134
		if (cqr)
			memcpy(&cqr->irb, irb, sizeof(*irb));
1135
		device = dasd_device_from_cdev_locked(cdev);
1136 1137 1138 1139
		if (IS_ERR(device))
			return;
		/* ignore unsolicited interrupts for DIAG discipline */
		if (device->discipline == dasd_diag_discipline_pointer) {
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			dasd_put_device(device);
1141
			return;
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		}
1143 1144 1145 1146
		device->discipline->dump_sense_dbf(device, irb, "int");
		if (device->features & DASD_FEATURE_ERPLOG)
			device->discipline->dump_sense(device, cqr, irb);
		device->discipline->check_for_device_change(device, cqr, irb);
1147
		dasd_put_device(device);
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	}
1149 1150
	if (!cqr)
		return;
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1152 1153
	device = (struct dasd_device *) cqr->startdev;
	if (!device ||
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	    strncmp(device->discipline->ebcname, (char *) &cqr->magic, 4)) {
1155 1156
		DBF_EVENT_DEVID(DBF_DEBUG, cdev, "%s",
				"invalid device in request");
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		return;
	}

	/* Check for clear pending */
1161
	if (cqr->status == DASD_CQR_CLEAR_PENDING &&
1162
	    scsw_fctl(&irb->scsw) & SCSW_FCTL_CLEAR_FUNC) {
1163 1164
		cqr->status = DASD_CQR_CLEARED;
		dasd_device_clear_timer(device);
1165
		wake_up(&dasd_flush_wq);
1166
		dasd_schedule_device_bh(device);
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		return;
	}

1170
	/* check status - the request might have been killed by dyn detach */
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	if (cqr->status != DASD_CQR_IN_IO) {
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		DBF_DEV_EVENT(DBF_DEBUG, device, "invalid status: bus_id %s, "
			      "status %02x", dev_name(&cdev->dev), cqr->status);
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		return;
	}
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1177
	next = NULL;
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	expires = 0;
1179 1180
	if (scsw_dstat(&irb->scsw) == (DEV_STAT_CHN_END | DEV_STAT_DEV_END) &&
	    scsw_cstat(&irb->scsw) == 0) {
1181 1182
		/* request was completed successfully */
		cqr->status = DASD_CQR_SUCCESS;
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		cqr->stopclk = now;
		/* Start first request on queue if possible -> fast_io. */
1185 1186 1187
		if (cqr->devlist.next != &device->ccw_queue) {
			next = list_entry(cqr->devlist.next,
					  struct dasd_ccw_req, devlist);
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		}
1189
	} else {  /* error */
1190 1191 1192
		/*
		 * If we don't want complex ERP for this request, then just
		 * reset this and retry it in the fastpath
1193
		 */
1194
		if (!test_bit(DASD_CQR_FLAGS_USE_ERP, &cqr->flags) &&
1195
		    cqr->retries > 0) {
1196
			if (cqr->lpm == device->path_data.opm)
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				DBF_DEV_EVENT(DBF_DEBUG, device,
					      "default ERP in fastpath "
					      "(%i retries left)",
					      cqr->retries);
1201 1202
			if (!test_bit(DASD_CQR_VERIFY_PATH, &cqr->flags))
				cqr->lpm = device->path_data.opm;
1203 1204 1205
			cqr->status = DASD_CQR_QUEUED;
			next = cqr;
		} else
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			cqr->status = DASD_CQR_ERROR;
1207 1208 1209 1210 1211
	}
	if (next && (next->status == DASD_CQR_QUEUED) &&
	    (!device->stopped)) {
		if (device->discipline->start_IO(next) == 0)
			expires = next->expires;
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	}
	if (expires != 0)
1214
		dasd_device_set_timer(device, expires);
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	else
1216 1217
		dasd_device_clear_timer(device);
	dasd_schedule_device_bh(device);
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}

1220 1221 1222 1223 1224 1225 1226 1227 1228 1229
enum uc_todo dasd_generic_uc_handler(struct ccw_device *cdev, struct irb *irb)
{
	struct dasd_device *device;

	device = dasd_device_from_cdev_locked(cdev);

	if (IS_ERR(device))
		goto out;
	if (test_bit(DASD_FLAG_OFFLINE, &device->flags) ||
	   device->state != device->target ||
1230
	   !device->discipline->check_for_device_change){
1231 1232 1233
		dasd_put_device(device);
		goto out;
	}
1234 1235 1236
	if (device->discipline->dump_sense_dbf)
		device->discipline->dump_sense_dbf(device, irb, "uc");
	device->discipline->check_for_device_change(device, NULL, irb);
1237 1238 1239 1240 1241 1242
	dasd_put_device(device);
out:
	return UC_TODO_RETRY;
}
EXPORT_SYMBOL_GPL(dasd_generic_uc_handler);

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/*
1244 1245
 * If we have an error on a dasd_block layer request then we cancel
 * and return all further requests from the same dasd_block as well.
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 */
1247 1248
static void __dasd_device_recovery(struct dasd_device *device,
				   struct dasd_ccw_req *ref_cqr)
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{
1250 1251
	struct list_head *l, *n;
	struct dasd_ccw_req *cqr;
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1253 1254 1255 1256 1257
	/*
	 * only requeue request that came from the dasd_block layer
	 */
	if (!ref_cqr->block)
		return;
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1259 1260 1261 1262 1263 1264 1265 1266
	list_for_each_safe(l, n, &device->ccw_queue) {
		cqr = list_entry(l, struct dasd_ccw_req, devlist);
		if (cqr->status == DASD_CQR_QUEUED &&
		    ref_cqr->block == cqr->block) {
			cqr->status = DASD_CQR_CLEARED;
		}
	}
};
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/*
1269 1270
 * Remove those ccw requests from the queue that need to be returned
 * to the upper layer.
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 */
1272 1273
static void __dasd_device_process_ccw_queue(struct dasd_device *device,
					    struct list_head *final_queue)
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{
	struct list_head *l, *n;
	struct dasd_ccw_req *cqr;

	/* Process request with final status. */
	list_for_each_safe(l, n, &device->ccw_queue) {
1280 1281
		cqr = list_entry(l, struct dasd_ccw_req, devlist);

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		/* Stop list processing at the first non-final request. */
1283 1284 1285
		if (cqr->status == DASD_CQR_QUEUED ||
		    cqr->status == DASD_CQR_IN_IO ||
		    cqr->status == DASD_CQR_CLEAR_PENDING)
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			break;
		if (cqr->status == DASD_CQR_ERROR) {
1288
			__dasd_device_recovery(device, cqr);
1289
		}
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		/* Rechain finished requests to final queue */
1291
		list_move_tail(&cqr->devlist, final_queue);
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	}
}

/*
1296 1297
 * the cqrs from the final queue are returned to the upper layer
 * by setting a dasd_block state and calling the callback function
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 */
1299 1300
static void __dasd_device_process_final_queue(struct dasd_device *device,
					      struct list_head *final_queue)
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{
1302
	struct list_head *l, *n;
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	struct dasd_ccw_req *cqr;
1304
	struct dasd_block *block;
1305 1306
	void (*callback)(struct dasd_ccw_req *, void *data);
	void *callback_data;
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	char errorstring[ERRORLENGTH];
1308

1309 1310 1311
	list_for_each_safe(l, n, final_queue) {
		cqr = list_entry(l, struct dasd_ccw_req, devlist);
		list_del_init(&cqr->devlist);
1312
		block = cqr->block;
1313 1314
		callback = cqr->callback;
		callback_data = cqr->callback_data;
1315 1316
		if (block)
			spin_lock_bh(&block->queue_lock);
1317 1318 1319 1320 1321 1322 1323 1324 1325 1326 1327
		switch (cqr->status) {
		case DASD_CQR_SUCCESS:
			cqr->status = DASD_CQR_DONE;
			break;
		case DASD_CQR_ERROR:
			cqr->status = DASD_CQR_NEED_ERP;
			break;
		case DASD_CQR_CLEARED:
			cqr->status = DASD_CQR_TERMINATED;
			break;
		default:
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			/* internal error 12 - wrong cqr status*/
			snprintf(errorstring, ERRORLENGTH, "12 %p %x02", cqr, cqr->status);
			dev_err(&device->cdev->dev,
				"An error occurred in the DASD device driver, "
				"reason=%s\n", errorstring);
1333
			BUG();
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1334
		}
1335
		if (cqr->callback != NULL)
1336
			(callback)(cqr, callback_data);
1337 1338
		if (block)
			spin_unlock_bh(&block->queue_lock);
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1339 1340 1341 1342 1343 1344 1345
	}
}

/*
 * Take a look at the first request on the ccw queue and check
 * if it reached its expire time. If so, terminate the IO.
 */
1346
static void __dasd_device_check_expire(struct dasd_device *device)
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1347 1348 1349 1350 1351
{
	struct dasd_ccw_req *cqr;

	if (list_empty(&device->ccw_queue))
		return;
1352
	cqr = list_entry(device->ccw_queue.next, struct dasd_ccw_req, devlist);
1353 1354 1355 1356
	if ((cqr->status == DASD_CQR_IN_IO && cqr->expires != 0) &&
	    (time_after_eq(jiffies, cqr->expires + cqr->starttime))) {
		if (device->discipline->term_IO(cqr) != 0) {
			/* Hmpf, try again in 5 sec */
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1357
			dev_err(&device->cdev->dev,
1358
				"cqr %p timed out (%lus) but cannot be "
S
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1359 1360
				"ended, retrying in 5 s\n",
				cqr, (cqr->expires/HZ));
1361 1362
			cqr->expires += 5*HZ;
			dasd_device_set_timer(device, 5*HZ);
1363
		} else {
S
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1364
			dev_err(&device->cdev->dev,
1365
				"cqr %p timed out (%lus), %i retries "
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1366 1367
				"remaining\n", cqr, (cqr->expires/HZ),
				cqr->retries);
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		}
	}
}

/*
 * Take a look at the first request on the ccw queue and check
 * if it needs to be started.
 */
1376
static void __dasd_device_start_head(struct dasd_device *device)
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{
	struct dasd_ccw_req *cqr;
	int rc;

	if (list_empty(&device->ccw_queue))
		return;
1383
	cqr = list_entry(device->ccw_queue.next, struct dasd_ccw_req, devlist);
1384 1385
	if (cqr->status != DASD_CQR_QUEUED)
		return;
1386 1387 1388 1389 1390 1391 1392 1393
	/* when device is stopped, return request to previous layer
	 * exception: only the disconnect or unresumed bits are set and the
	 * cqr is a path verification request
	 */
	if (device->stopped &&
	    !(!(device->stopped & ~(DASD_STOPPED_DC_WAIT | DASD_UNRESUMED_PM))
	      && test_bit(DASD_CQR_VERIFY_PATH, &cqr->flags))) {
		cqr->intrc = -EAGAIN;
1394 1395
		cqr->status = DASD_CQR_CLEARED;
		dasd_schedule_device_bh(device);
1396
		return;
1397
	}
1398 1399 1400

	rc = device->discipline->start_IO(cqr);
	if (rc == 0)
1401
		dasd_device_set_timer(device, cqr->expires);
1402
	else if (rc == -EACCES) {
1403
		dasd_schedule_device_bh(device);
1404 1405
	} else
		/* Hmpf, try again in 1/2 sec */
1406
		dasd_device_set_timer(device, 50);
1407 1408
}

1409 1410 1411 1412 1413 1414 1415 1416 1417 1418 1419 1420 1421 1422 1423 1424 1425
static void __dasd_device_check_path_events(struct dasd_device *device)
{
	int rc;

	if (device->path_data.tbvpm) {
		if (device->stopped & ~(DASD_STOPPED_DC_WAIT |
					DASD_UNRESUMED_PM))
			return;
		rc = device->discipline->verify_path(
			device, device->path_data.tbvpm);
		if (rc)
			dasd_device_set_timer(device, 50);
		else
			device->path_data.tbvpm = 0;
	}
};

L
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1426
/*
1427 1428 1429 1430 1431 1432 1433 1434
 * Go through all request on the dasd_device request queue,
 * terminate them on the cdev if necessary, and return them to the
 * submitting layer via callback.
 * Note:
 * Make sure that all 'submitting layers' still exist when
 * this function is called!. In other words, when 'device' is a base
 * device then all block layer requests must have been removed before
 * via dasd_flush_block_queue.
L
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1435
 */
1436
int dasd_flush_device_queue(struct dasd_device *device)
L
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1437
{
1438 1439
	struct dasd_ccw_req *cqr, *n;
	int rc;
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	struct list_head flush_queue;

	INIT_LIST_HEAD(&flush_queue);
	spin_lock_irq(get_ccwdev_lock(device->cdev));
1444
	rc = 0;
1445
	list_for_each_entry_safe(cqr, n, &device->ccw_queue, devlist) {
1446 1447 1448 1449 1450 1451
		/* Check status and move request to flush_queue */
		switch (cqr->status) {
		case DASD_CQR_IN_IO:
			rc = device->discipline->term_IO(cqr);
			if (rc) {
				/* unable to terminate requeust */
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				dev_err(&device->cdev->dev,
					"Flushing the DASD request queue "
					"failed for request %p\n", cqr);
1455 1456 1457 1458 1459
				/* stop flush processing */
				goto finished;
			}
			break;
		case DASD_CQR_QUEUED:
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			cqr->stopclk = get_clock();
1461
			cqr->status = DASD_CQR_CLEARED;
1462
			break;
1463
		default: /* no need to modify the others */
1464 1465
			break;
		}
1466
		list_move_tail(&cqr->devlist, &flush_queue);
1467 1468 1469
	}
finished:
	spin_unlock_irq(get_ccwdev_lock(device->cdev));
1470 1471 1472 1473 1474 1475 1476 1477 1478 1479 1480 1481 1482
	/*
	 * After this point all requests must be in state CLEAR_PENDING,
	 * CLEARED, SUCCESS or ERROR. Now wait for CLEAR_PENDING to become
	 * one of the others.
	 */
	list_for_each_entry_safe(cqr, n, &flush_queue, devlist)
		wait_event(dasd_flush_wq,
			   (cqr->status != DASD_CQR_CLEAR_PENDING));
	/*
	 * Now set each request back to TERMINATED, DONE or NEED_ERP
	 * and call the callback function of flushed requests
	 */
	__dasd_device_process_final_queue(device, &flush_queue);
1483
	return rc;
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}

/*
 * Acquire the device lock and process queues for the device.
 */
1489
static void dasd_device_tasklet(struct dasd_device *device)
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1490 1491 1492 1493 1494 1495 1496
{
	struct list_head final_queue;

	atomic_set (&device->tasklet_scheduled, 0);
	INIT_LIST_HEAD(&final_queue);
	spin_lock_irq(get_ccwdev_lock(device->cdev));
	/* Check expire time of first request on the ccw queue. */
1497 1498 1499
	__dasd_device_check_expire(device);
	/* find final requests on ccw queue */
	__dasd_device_process_ccw_queue(device, &final_queue);
1500
	__dasd_device_check_path_events(device);
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	spin_unlock_irq(get_ccwdev_lock(device->cdev));
	/* Now call the callback function of requests with final status */
1503 1504
	__dasd_device_process_final_queue(device, &final_queue);
	spin_lock_irq(get_ccwdev_lock(device->cdev));
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	/* Now check if the head of the ccw queue needs to be started. */
1506 1507
	__dasd_device_start_head(device);
	spin_unlock_irq(get_ccwdev_lock(device->cdev));
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	dasd_put_device(device);
}

/*
 * Schedules a call to dasd_tasklet over the device tasklet.
 */
1514
void dasd_schedule_device_bh(struct dasd_device *device)
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{
	/* Protect against rescheduling. */
1517
	if (atomic_cmpxchg (&device->tasklet_scheduled, 0, 1) != 0)
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		return;
	dasd_get_device(device);
	tasklet_hi_schedule(&device->tasklet);
}

1523 1524 1525 1526 1527 1528 1529 1530 1531 1532 1533 1534 1535 1536
void dasd_device_set_stop_bits(struct dasd_device *device, int bits)
{
	device->stopped |= bits;
}
EXPORT_SYMBOL_GPL(dasd_device_set_stop_bits);

void dasd_device_remove_stop_bits(struct dasd_device *device, int bits)
{
	device->stopped &= ~bits;
	if (!device->stopped)
		wake_up(&generic_waitq);
}
EXPORT_SYMBOL_GPL(dasd_device_remove_stop_bits);

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/*
1538 1539
 * Queue a request to the head of the device ccw_queue.
 * Start the I/O if possible.
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1540
 */
1541
void dasd_add_request_head(struct dasd_ccw_req *cqr)
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{
	struct dasd_device *device;
	unsigned long flags;

1546
	device = cqr->startdev;
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	spin_lock_irqsave(get_ccwdev_lock(device->cdev), flags);
1548 1549
	cqr->status = DASD_CQR_QUEUED;
	list_add(&cqr->devlist, &device->ccw_queue);
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	/* let the bh start the request to keep them in order */
1551
	dasd_schedule_device_bh(device);
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	spin_unlock_irqrestore(get_ccwdev_lock(device->cdev), flags);
}

/*
1556 1557
 * Queue a request to the tail of the device ccw_queue.
 * Start the I/O if possible.
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1558
 */
1559
void dasd_add_request_tail(struct dasd_ccw_req *cqr)
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1560 1561 1562 1563
{
	struct dasd_device *device;
	unsigned long flags;

1564
	device = cqr->startdev;
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1565
	spin_lock_irqsave(get_ccwdev_lock(device->cdev), flags);
1566 1567
	cqr->status = DASD_CQR_QUEUED;
	list_add_tail(&cqr->devlist, &device->ccw_queue);
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1568
	/* let the bh start the request to keep them in order */
1569
	dasd_schedule_device_bh(device);
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	spin_unlock_irqrestore(get_ccwdev_lock(device->cdev), flags);
}

/*
1574
 * Wakeup helper for the 'sleep_on' functions.
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 */
1576
static void dasd_wakeup_cb(struct dasd_ccw_req *cqr, void *data)
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{
1578 1579 1580 1581
	spin_lock_irq(get_ccwdev_lock(cqr->startdev->cdev));
	cqr->callback_data = DASD_SLEEPON_END_TAG;
	spin_unlock_irq(get_ccwdev_lock(cqr->startdev->cdev));
	wake_up(&generic_waitq);
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1582 1583
}

1584
static inline int _wait_for_wakeup(struct dasd_ccw_req *cqr)
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1585 1586 1587 1588
{
	struct dasd_device *device;
	int rc;

1589
	device = cqr->startdev;
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	spin_lock_irq(get_ccwdev_lock(device->cdev));
1591
	rc = (cqr->callback_data == DASD_SLEEPON_END_TAG);
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	spin_unlock_irq(get_ccwdev_lock(device->cdev));
	return rc;
}

/*
1597
 * checks if error recovery is necessary, returns 1 if yes, 0 otherwise.
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 */
1599
static int __dasd_sleep_on_erp(struct dasd_ccw_req *cqr)
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1600 1601
{
	struct dasd_device *device;
1602
	dasd_erp_fn_t erp_fn;
1603

1604 1605
	if (cqr->status == DASD_CQR_FILLED)
		return 0;
1606
	device = cqr->startdev;
1607 1608 1609 1610 1611 1612 1613 1614 1615 1616 1617 1618 1619 1620 1621 1622 1623 1624 1625
	if (test_bit(DASD_CQR_FLAGS_USE_ERP, &cqr->flags)) {
		if (cqr->status == DASD_CQR_TERMINATED) {
			device->discipline->handle_terminated_request(cqr);
			return 1;
		}
		if (cqr->status == DASD_CQR_NEED_ERP) {
			erp_fn = device->discipline->erp_action(cqr);
			erp_fn(cqr);
			return 1;
		}
		if (cqr->status == DASD_CQR_FAILED)
			dasd_log_sense(cqr, &cqr->irb);
		if (cqr->refers) {
			__dasd_process_erp(device, cqr);
			return 1;
		}
	}
	return 0;
}
1626

1627 1628 1629 1630 1631 1632 1633 1634 1635 1636
static int __dasd_sleep_on_loop_condition(struct dasd_ccw_req *cqr)
{
	if (test_bit(DASD_CQR_FLAGS_USE_ERP, &cqr->flags)) {
		if (cqr->refers) /* erp is not done yet */
			return 1;
		return ((cqr->status != DASD_CQR_DONE) &&
			(cqr->status != DASD_CQR_FAILED));
	} else
		return (cqr->status == DASD_CQR_FILLED);
}
1637

1638 1639 1640 1641 1642 1643 1644 1645 1646 1647 1648 1649 1650 1651 1652 1653 1654 1655 1656
static int _dasd_sleep_on(struct dasd_ccw_req *maincqr, int interruptible)
{
	struct dasd_device *device;
	int rc;
	struct list_head ccw_queue;
	struct dasd_ccw_req *cqr;

	INIT_LIST_HEAD(&ccw_queue);
	maincqr->status = DASD_CQR_FILLED;
	device = maincqr->startdev;
	list_add(&maincqr->blocklist, &ccw_queue);
	for (cqr = maincqr;  __dasd_sleep_on_loop_condition(cqr);
	     cqr = list_first_entry(&ccw_queue,
				    struct dasd_ccw_req, blocklist)) {

		if (__dasd_sleep_on_erp(cqr))
			continue;
		if (cqr->status != DASD_CQR_FILLED) /* could be failed */
			continue;
1657 1658 1659 1660 1661 1662
		if (test_bit(DASD_FLAG_LOCK_STOLEN, &device->flags) &&
		    !test_bit(DASD_CQR_ALLOW_SLOCK, &cqr->flags)) {
			cqr->status = DASD_CQR_FAILED;
			cqr->intrc = -EPERM;
			continue;
		}
1663 1664 1665 1666 1667 1668 1669 1670 1671 1672 1673 1674 1675 1676 1677 1678 1679 1680 1681 1682
		/* Non-temporary stop condition will trigger fail fast */
		if (device->stopped & ~DASD_STOPPED_PENDING &&
		    test_bit(DASD_CQR_FLAGS_FAILFAST, &cqr->flags) &&
		    (!dasd_eer_enabled(device))) {
			cqr->status = DASD_CQR_FAILED;
			continue;
		}
		/* Don't try to start requests if device is stopped */
		if (interruptible) {
			rc = wait_event_interruptible(
				generic_waitq, !(device->stopped));
			if (rc == -ERESTARTSYS) {
				cqr->status = DASD_CQR_FAILED;
				maincqr->intrc = rc;
				continue;
			}
		} else
			wait_event(generic_waitq, !(device->stopped));

		cqr->callback = dasd_wakeup_cb;
1683
		cqr->callback_data = DASD_SLEEPON_START_TAG;
1684 1685 1686 1687 1688 1689 1690 1691 1692 1693 1694 1695 1696 1697 1698 1699 1700 1701 1702 1703 1704 1705
		dasd_add_request_tail(cqr);
		if (interruptible) {
			rc = wait_event_interruptible(
				generic_waitq, _wait_for_wakeup(cqr));
			if (rc == -ERESTARTSYS) {
				dasd_cancel_req(cqr);
				/* wait (non-interruptible) for final status */
				wait_event(generic_waitq,
					   _wait_for_wakeup(cqr));
				cqr->status = DASD_CQR_FAILED;
				maincqr->intrc = rc;
				continue;
			}
		} else
			wait_event(generic_waitq, _wait_for_wakeup(cqr));
	}

	maincqr->endclk = get_clock();
	if ((maincqr->status != DASD_CQR_DONE) &&
	    (maincqr->intrc != -ERESTARTSYS))
		dasd_log_sense(maincqr, &maincqr->irb);
	if (maincqr->status == DASD_CQR_DONE)
1706
		rc = 0;
1707 1708
	else if (maincqr->intrc)
		rc = maincqr->intrc;
1709 1710
	else
		rc = -EIO;
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	return rc;
}

1714 1715 1716 1717 1718 1719 1720 1721 1722
/*
 * Queue a request to the tail of the device ccw_queue and wait for
 * it's completion.
 */
int dasd_sleep_on(struct dasd_ccw_req *cqr)
{
	return _dasd_sleep_on(cqr, 0);
}

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1723
/*
1724 1725
 * Queue a request to the tail of the device ccw_queue and wait
 * interruptible for it's completion.
L
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1726
 */
1727
int dasd_sleep_on_interruptible(struct dasd_ccw_req *cqr)
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1728
{
1729
	return _dasd_sleep_on(cqr, 1);
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1730 1731 1732 1733 1734 1735 1736 1737
}

/*
 * Whoa nelly now it gets really hairy. For some functions (e.g. steal lock
 * for eckd devices) the currently running request has to be terminated
 * and be put back to status queued, before the special request is added
 * to the head of the queue. Then the special request is waited on normally.
 */
1738
static inline int _dasd_term_running_cqr(struct dasd_device *device)
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1739 1740 1741 1742 1743
{
	struct dasd_ccw_req *cqr;

	if (list_empty(&device->ccw_queue))
		return 0;
1744
	cqr = list_entry(device->ccw_queue.next, struct dasd_ccw_req, devlist);
1745
	return device->discipline->term_IO(cqr);
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1746 1747
}

1748
int dasd_sleep_on_immediatly(struct dasd_ccw_req *cqr)
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1749 1750 1751
{
	struct dasd_device *device;
	int rc;
1752

1753
	device = cqr->startdev;
1754 1755 1756 1757 1758 1759
	if (test_bit(DASD_FLAG_LOCK_STOLEN, &device->flags) &&
	    !test_bit(DASD_CQR_ALLOW_SLOCK, &cqr->flags)) {
		cqr->status = DASD_CQR_FAILED;
		cqr->intrc = -EPERM;
		return -EIO;
	}
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	spin_lock_irq(get_ccwdev_lock(device->cdev));
	rc = _dasd_term_running_cqr(device);
	if (rc) {
		spin_unlock_irq(get_ccwdev_lock(device->cdev));
		return rc;
	}
	cqr->callback = dasd_wakeup_cb;
1767
	cqr->callback_data = DASD_SLEEPON_START_TAG;
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	cqr->status = DASD_CQR_QUEUED;
1769
	list_add(&cqr->devlist, &device->ccw_queue);
1770

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	/* let the bh start the request to keep them in order */
1772
	dasd_schedule_device_bh(device);
1773

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	spin_unlock_irq(get_ccwdev_lock(device->cdev));

1776
	wait_event(generic_waitq, _wait_for_wakeup(cqr));
1777

1778 1779 1780 1781 1782 1783
	if (cqr->status == DASD_CQR_DONE)
		rc = 0;
	else if (cqr->intrc)
		rc = cqr->intrc;
	else
		rc = -EIO;
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	return rc;
}

/*
 * Cancels a request that was started with dasd_sleep_on_req.
 * This is useful to timeout requests. The request will be
 * terminated if it is currently in i/o.
 * Returns 1 if the request has been terminated.
1792 1793 1794 1795
 *	   0 if there was no need to terminate the request (not started yet)
 *	   negative error code if termination failed
 * Cancellation of a request is an asynchronous operation! The calling
 * function has to wait until the request is properly returned via callback.
L
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 */
1797
int dasd_cancel_req(struct dasd_ccw_req *cqr)
L
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1798
{
1799
	struct dasd_device *device = cqr->startdev;
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1800 1801 1802 1803 1804 1805 1806
	unsigned long flags;
	int rc;

	rc = 0;
	spin_lock_irqsave(get_ccwdev_lock(device->cdev), flags);
	switch (cqr->status) {
	case DASD_CQR_QUEUED:
1807 1808
		/* request was not started - just set to cleared */
		cqr->status = DASD_CQR_CLEARED;
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1809 1810 1811
		break;
	case DASD_CQR_IN_IO:
		/* request in IO - terminate IO and release again */
1812 1813
		rc = device->discipline->term_IO(cqr);
		if (rc) {
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Stefan Haberland 已提交
1814 1815 1816
			dev_err(&device->cdev->dev,
				"Cancelling request %p failed with rc=%d\n",
				cqr, rc);
1817 1818 1819
		} else {
			cqr->stopclk = get_clock();
		}
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1820
		break;
1821
	default: /* already finished or clear pending - do nothing */
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		break;
1823 1824 1825 1826 1827 1828 1829 1830 1831 1832 1833 1834 1835 1836 1837 1838 1839 1840 1841 1842 1843 1844 1845 1846
	}
	spin_unlock_irqrestore(get_ccwdev_lock(device->cdev), flags);
	dasd_schedule_device_bh(device);
	return rc;
}


/*
 * SECTION: Operations of the dasd_block layer.
 */

/*
 * Timeout function for dasd_block. This is used when the block layer
 * is waiting for something that may not come reliably, (e.g. a state
 * change interrupt)
 */
static void dasd_block_timeout(unsigned long ptr)
{
	unsigned long flags;
	struct dasd_block *block;

	block = (struct dasd_block *) ptr;
	spin_lock_irqsave(get_ccwdev_lock(block->base->cdev), flags);
	/* re-activate request queue */
1847
	dasd_device_remove_stop_bits(block->base, DASD_STOPPED_PENDING);
1848 1849 1850 1851 1852 1853 1854 1855 1856
	spin_unlock_irqrestore(get_ccwdev_lock(block->base->cdev), flags);
	dasd_schedule_block_bh(block);
}

/*
 * Setup timeout for a dasd_block in jiffies.
 */
void dasd_block_set_timer(struct dasd_block *block, int expires)
{
1857 1858 1859 1860
	if (expires == 0)
		del_timer(&block->timer);
	else
		mod_timer(&block->timer, jiffies + expires);
1861 1862 1863 1864 1865 1866 1867
}

/*
 * Clear timeout for a dasd_block.
 */
void dasd_block_clear_timer(struct dasd_block *block)
{
1868
	del_timer(&block->timer);
1869 1870 1871 1872 1873
}

/*
 * Process finished error recovery ccw.
 */
1874 1875
static void __dasd_process_erp(struct dasd_device *device,
			       struct dasd_ccw_req *cqr)
1876 1877 1878 1879 1880 1881
{
	dasd_erp_fn_t erp_fn;

	if (cqr->status == DASD_CQR_DONE)
		DBF_DEV_EVENT(DBF_NOTICE, device, "%s", "ERP successful");
	else
S
Stefan Haberland 已提交
1882
		dev_err(&device->cdev->dev, "ERP failed for the DASD\n");
1883 1884 1885
	erp_fn = device->discipline->erp_postaction(cqr);
	erp_fn(cqr);
}
L
Linus Torvalds 已提交
1886

1887 1888 1889 1890 1891 1892 1893 1894 1895 1896 1897 1898 1899 1900 1901 1902 1903 1904 1905 1906 1907 1908 1909
/*
 * Fetch requests from the block device queue.
 */
static void __dasd_process_request_queue(struct dasd_block *block)
{
	struct request_queue *queue;
	struct request *req;
	struct dasd_ccw_req *cqr;
	struct dasd_device *basedev;
	unsigned long flags;
	queue = block->request_queue;
	basedev = block->base;
	/* No queue ? Then there is nothing to do. */
	if (queue == NULL)
		return;

	/*
	 * We requeue request from the block device queue to the ccw
	 * queue only in two states. In state DASD_STATE_READY the
	 * partition detection is done and we need to requeue requests
	 * for that. State DASD_STATE_ONLINE is normal block device
	 * operation.
	 */
1910 1911 1912
	if (basedev->state < DASD_STATE_READY) {
		while ((req = blk_fetch_request(block->request_queue)))
			__blk_end_request_all(req, -EIO);
1913
		return;
1914
	}
1915
	/* Now we try to fetch requests from the request queue */
1916
	while (!blk_queue_plugged(queue) && (req = blk_peek_request(queue))) {
1917 1918 1919 1920 1921
		if (basedev->features & DASD_FEATURE_READONLY &&
		    rq_data_dir(req) == WRITE) {
			DBF_DEV_EVENT(DBF_ERR, basedev,
				      "Rejecting write request %p",
				      req);
1922
			blk_start_request(req);
1923
			__blk_end_request_all(req, -EIO);
1924 1925 1926 1927 1928 1929 1930 1931 1932 1933 1934 1935 1936 1937 1938 1939 1940
			continue;
		}
		cqr = basedev->discipline->build_cp(basedev, block, req);
		if (IS_ERR(cqr)) {
			if (PTR_ERR(cqr) == -EBUSY)
				break;	/* normal end condition */
			if (PTR_ERR(cqr) == -ENOMEM)
				break;	/* terminate request queue loop */
			if (PTR_ERR(cqr) == -EAGAIN) {
				/*
				 * The current request cannot be build right
				 * now, we have to try later. If this request
				 * is the head-of-queue we stop the device
				 * for 1/2 second.
				 */
				if (!list_empty(&block->ccw_queue))
					break;
1941 1942 1943 1944 1945 1946
				spin_lock_irqsave(
					get_ccwdev_lock(basedev->cdev), flags);
				dasd_device_set_stop_bits(basedev,
							  DASD_STOPPED_PENDING);
				spin_unlock_irqrestore(
					get_ccwdev_lock(basedev->cdev), flags);
1947 1948 1949 1950 1951 1952 1953
				dasd_block_set_timer(block, HZ/2);
				break;
			}
			DBF_DEV_EVENT(DBF_ERR, basedev,
				      "CCW creation failed (rc=%ld) "
				      "on request %p",
				      PTR_ERR(cqr), req);
1954
			blk_start_request(req);
1955
			__blk_end_request_all(req, -EIO);
1956 1957 1958 1959 1960 1961 1962 1963
			continue;
		}
		/*
		 *  Note: callback is set to dasd_return_cqr_cb in
		 * __dasd_block_start_head to cover erp requests as well
		 */
		cqr->callback_data = (void *) req;
		cqr->status = DASD_CQR_FILLED;
1964
		blk_start_request(req);
1965 1966 1967 1968 1969 1970 1971 1972 1973
		list_add_tail(&cqr->blocklist, &block->ccw_queue);
		dasd_profile_start(block, cqr, req);
	}
}

static void __dasd_cleanup_cqr(struct dasd_ccw_req *cqr)
{
	struct request *req;
	int status;
1974
	int error = 0;
1975 1976 1977

	req = (struct request *) cqr->callback_data;
	dasd_profile_end(cqr->block, cqr, req);
1978
	status = cqr->block->base->discipline->free_cp(cqr, req);
1979 1980
	if (status <= 0)
		error = status ? status : -EIO;
1981
	__blk_end_request_all(req, error);
1982 1983 1984 1985 1986 1987 1988 1989 1990 1991 1992 1993 1994 1995 1996 1997 1998 1999 2000 2001 2002 2003 2004 2005 2006 2007 2008 2009 2010 2011 2012
}

/*
 * Process ccw request queue.
 */
static void __dasd_process_block_ccw_queue(struct dasd_block *block,
					   struct list_head *final_queue)
{
	struct list_head *l, *n;
	struct dasd_ccw_req *cqr;
	dasd_erp_fn_t erp_fn;
	unsigned long flags;
	struct dasd_device *base = block->base;

restart:
	/* Process request with final status. */
	list_for_each_safe(l, n, &block->ccw_queue) {
		cqr = list_entry(l, struct dasd_ccw_req, blocklist);
		if (cqr->status != DASD_CQR_DONE &&
		    cqr->status != DASD_CQR_FAILED &&
		    cqr->status != DASD_CQR_NEED_ERP &&
		    cqr->status != DASD_CQR_TERMINATED)
			continue;

		if (cqr->status == DASD_CQR_TERMINATED) {
			base->discipline->handle_terminated_request(cqr);
			goto restart;
		}

		/*  Process requests that may be recovered */
		if (cqr->status == DASD_CQR_NEED_ERP) {
2013
			erp_fn = base->discipline->erp_action(cqr);
2014 2015
			if (IS_ERR(erp_fn(cqr)))
				continue;
2016 2017 2018
			goto restart;
		}

2019 2020 2021 2022 2023
		/* log sense for fatal error */
		if (cqr->status == DASD_CQR_FAILED) {
			dasd_log_sense(cqr, &cqr->irb);
		}

2024 2025 2026 2027 2028 2029 2030 2031 2032
		/* First of all call extended error reporting. */
		if (dasd_eer_enabled(base) &&
		    cqr->status == DASD_CQR_FAILED) {
			dasd_eer_write(base, cqr, DASD_EER_FATALERROR);

			/* restart request  */
			cqr->status = DASD_CQR_FILLED;
			cqr->retries = 255;
			spin_lock_irqsave(get_ccwdev_lock(base->cdev), flags);
2033
			dasd_device_set_stop_bits(base, DASD_STOPPED_QUIESCE);
2034 2035 2036 2037 2038 2039 2040
			spin_unlock_irqrestore(get_ccwdev_lock(base->cdev),
					       flags);
			goto restart;
		}

		/* Process finished ERP request. */
		if (cqr->refers) {
2041
			__dasd_process_erp(base, cqr);
2042 2043 2044 2045 2046 2047 2048 2049 2050 2051 2052 2053 2054 2055 2056 2057 2058 2059 2060 2061 2062 2063 2064 2065 2066 2067 2068
			goto restart;
		}

		/* Rechain finished requests to final queue */
		cqr->endclk = get_clock();
		list_move_tail(&cqr->blocklist, final_queue);
	}
}

static void dasd_return_cqr_cb(struct dasd_ccw_req *cqr, void *data)
{
	dasd_schedule_block_bh(cqr->block);
}

static void __dasd_block_start_head(struct dasd_block *block)
{
	struct dasd_ccw_req *cqr;

	if (list_empty(&block->ccw_queue))
		return;
	/* We allways begin with the first requests on the queue, as some
	 * of previously started requests have to be enqueued on a
	 * dasd_device again for error recovery.
	 */
	list_for_each_entry(cqr, &block->ccw_queue, blocklist) {
		if (cqr->status != DASD_CQR_FILLED)
			continue;
2069 2070 2071 2072 2073 2074 2075
		if (test_bit(DASD_FLAG_LOCK_STOLEN, &block->base->flags) &&
		    !test_bit(DASD_CQR_ALLOW_SLOCK, &cqr->flags)) {
			cqr->status = DASD_CQR_FAILED;
			cqr->intrc = -EPERM;
			dasd_schedule_block_bh(block);
			continue;
		}
2076 2077 2078 2079 2080 2081 2082 2083 2084 2085 2086 2087 2088 2089 2090 2091 2092 2093 2094 2095 2096 2097 2098 2099 2100 2101 2102 2103 2104 2105 2106 2107 2108 2109 2110 2111 2112 2113 2114 2115 2116 2117 2118 2119 2120 2121 2122 2123 2124 2125 2126 2127 2128 2129 2130 2131 2132 2133 2134 2135 2136 2137 2138 2139 2140 2141 2142 2143 2144 2145 2146 2147 2148 2149 2150 2151 2152 2153 2154 2155 2156 2157 2158 2159 2160 2161 2162 2163 2164 2165 2166 2167 2168 2169 2170 2171 2172 2173 2174 2175 2176 2177
		/* Non-temporary stop condition will trigger fail fast */
		if (block->base->stopped & ~DASD_STOPPED_PENDING &&
		    test_bit(DASD_CQR_FLAGS_FAILFAST, &cqr->flags) &&
		    (!dasd_eer_enabled(block->base))) {
			cqr->status = DASD_CQR_FAILED;
			dasd_schedule_block_bh(block);
			continue;
		}
		/* Don't try to start requests if device is stopped */
		if (block->base->stopped)
			return;

		/* just a fail safe check, should not happen */
		if (!cqr->startdev)
			cqr->startdev = block->base;

		/* make sure that the requests we submit find their way back */
		cqr->callback = dasd_return_cqr_cb;

		dasd_add_request_tail(cqr);
	}
}

/*
 * Central dasd_block layer routine. Takes requests from the generic
 * block layer request queue, creates ccw requests, enqueues them on
 * a dasd_device and processes ccw requests that have been returned.
 */
static void dasd_block_tasklet(struct dasd_block *block)
{
	struct list_head final_queue;
	struct list_head *l, *n;
	struct dasd_ccw_req *cqr;

	atomic_set(&block->tasklet_scheduled, 0);
	INIT_LIST_HEAD(&final_queue);
	spin_lock(&block->queue_lock);
	/* Finish off requests on ccw queue */
	__dasd_process_block_ccw_queue(block, &final_queue);
	spin_unlock(&block->queue_lock);
	/* Now call the callback function of requests with final status */
	spin_lock_irq(&block->request_queue_lock);
	list_for_each_safe(l, n, &final_queue) {
		cqr = list_entry(l, struct dasd_ccw_req, blocklist);
		list_del_init(&cqr->blocklist);
		__dasd_cleanup_cqr(cqr);
	}
	spin_lock(&block->queue_lock);
	/* Get new request from the block device request queue */
	__dasd_process_request_queue(block);
	/* Now check if the head of the ccw queue needs to be started. */
	__dasd_block_start_head(block);
	spin_unlock(&block->queue_lock);
	spin_unlock_irq(&block->request_queue_lock);
	dasd_put_device(block->base);
}

static void _dasd_wake_block_flush_cb(struct dasd_ccw_req *cqr, void *data)
{
	wake_up(&dasd_flush_wq);
}

/*
 * Go through all request on the dasd_block request queue, cancel them
 * on the respective dasd_device, and return them to the generic
 * block layer.
 */
static int dasd_flush_block_queue(struct dasd_block *block)
{
	struct dasd_ccw_req *cqr, *n;
	int rc, i;
	struct list_head flush_queue;

	INIT_LIST_HEAD(&flush_queue);
	spin_lock_bh(&block->queue_lock);
	rc = 0;
restart:
	list_for_each_entry_safe(cqr, n, &block->ccw_queue, blocklist) {
		/* if this request currently owned by a dasd_device cancel it */
		if (cqr->status >= DASD_CQR_QUEUED)
			rc = dasd_cancel_req(cqr);
		if (rc < 0)
			break;
		/* Rechain request (including erp chain) so it won't be
		 * touched by the dasd_block_tasklet anymore.
		 * Replace the callback so we notice when the request
		 * is returned from the dasd_device layer.
		 */
		cqr->callback = _dasd_wake_block_flush_cb;
		for (i = 0; cqr != NULL; cqr = cqr->refers, i++)
			list_move_tail(&cqr->blocklist, &flush_queue);
		if (i > 1)
			/* moved more than one request - need to restart */
			goto restart;
	}
	spin_unlock_bh(&block->queue_lock);
	/* Now call the callback function of flushed requests */
restart_cb:
	list_for_each_entry_safe(cqr, n, &flush_queue, blocklist) {
		wait_event(dasd_flush_wq, (cqr->status < DASD_CQR_QUEUED));
		/* Process finished ERP request. */
		if (cqr->refers) {
2178
			spin_lock_bh(&block->queue_lock);
2179
			__dasd_process_erp(block->base, cqr);
2180
			spin_unlock_bh(&block->queue_lock);
2181 2182 2183 2184 2185
			/* restart list_for_xx loop since dasd_process_erp
			 * might remove multiple elements */
			goto restart_cb;
		}
		/* call the callback function */
2186
		spin_lock_irq(&block->request_queue_lock);
2187 2188 2189
		cqr->endclk = get_clock();
		list_del_init(&cqr->blocklist);
		__dasd_cleanup_cqr(cqr);
2190
		spin_unlock_irq(&block->request_queue_lock);
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2191 2192 2193 2194 2195
	}
	return rc;
}

/*
2196 2197 2198 2199 2200 2201 2202 2203 2204 2205 2206 2207 2208 2209 2210 2211
 * Schedules a call to dasd_tasklet over the device tasklet.
 */
void dasd_schedule_block_bh(struct dasd_block *block)
{
	/* Protect against rescheduling. */
	if (atomic_cmpxchg(&block->tasklet_scheduled, 0, 1) != 0)
		return;
	/* life cycle of block is bound to it's base device */
	dasd_get_device(block->base);
	tasklet_hi_schedule(&block->tasklet);
}


/*
 * SECTION: external block device operations
 * (request queue handling, open, release, etc.)
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 */

/*
 * Dasd request queue function. Called from ll_rw_blk.c
 */
2217
static void do_dasd_request(struct request_queue *queue)
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2218
{
2219
	struct dasd_block *block;
L
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2220

2221 2222
	block = queue->queuedata;
	spin_lock(&block->queue_lock);
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2223
	/* Get new request from the block device request queue */
2224
	__dasd_process_request_queue(block);
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	/* Now check if the head of the ccw queue needs to be started. */
2226 2227
	__dasd_block_start_head(block);
	spin_unlock(&block->queue_lock);
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}

/*
 * Allocate and initialize request queue and default I/O scheduler.
 */
2233
static int dasd_alloc_queue(struct dasd_block *block)
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2234 2235 2236
{
	int rc;

2237 2238 2239
	block->request_queue = blk_init_queue(do_dasd_request,
					       &block->request_queue_lock);
	if (block->request_queue == NULL)
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2240 2241
		return -ENOMEM;

2242
	block->request_queue->queuedata = block;
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2243

2244
	elevator_exit(block->request_queue->elevator);
2245
	block->request_queue->elevator = NULL;
2246
	rc = elevator_init(block->request_queue, "deadline");
L
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2247
	if (rc) {
2248
		blk_cleanup_queue(block->request_queue);
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		return rc;
	}
	return 0;
}

/*
 * Allocate and initialize request queue.
 */
2257
static void dasd_setup_queue(struct dasd_block *block)
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{
	int max;

2261
	blk_queue_logical_block_size(block->request_queue, block->bp_block);
2262
	max = block->base->discipline->max_blocks << block->s2b_shift;
2263
	blk_queue_max_hw_sectors(block->request_queue, max);
2264
	blk_queue_max_segments(block->request_queue, -1L);
2265 2266 2267 2268 2269
	/* with page sized segments we can translate each segement into
	 * one idaw/tidaw
	 */
	blk_queue_max_segment_size(block->request_queue, PAGE_SIZE);
	blk_queue_segment_boundary(block->request_queue, PAGE_SIZE - 1);
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}

/*
 * Deactivate and free request queue.
 */
2275
static void dasd_free_queue(struct dasd_block *block)
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{
2277 2278 2279
	if (block->request_queue) {
		blk_cleanup_queue(block->request_queue);
		block->request_queue = NULL;
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	}
}

/*
 * Flush request on the request queue.
 */
2286
static void dasd_flush_request_queue(struct dasd_block *block)
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2287 2288 2289
{
	struct request *req;

2290
	if (!block->request_queue)
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2291
		return;
2292

2293
	spin_lock_irq(&block->request_queue_lock);
2294
	while ((req = blk_fetch_request(block->request_queue)))
2295
		__blk_end_request_all(req, -EIO);
2296
	spin_unlock_irq(&block->request_queue_lock);
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}

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static int dasd_open(struct block_device *bdev, fmode_t mode)
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{
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2301
	struct dasd_block *block = bdev->bd_disk->private_data;
2302
	struct dasd_device *base;
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2303 2304
	int rc;

2305 2306 2307 2308
	if (!block)
		return -ENODEV;

	base = block->base;
2309 2310
	atomic_inc(&block->open_count);
	if (test_bit(DASD_FLAG_OFFLINE, &base->flags)) {
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		rc = -ENODEV;
		goto unlock;
	}

2315
	if (!try_module_get(base->discipline->owner)) {
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		rc = -EINVAL;
		goto unlock;
	}

	if (dasd_probeonly) {
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		dev_info(&base->cdev->dev,
			 "Accessing the DASD failed because it is in "
			 "probeonly mode\n");
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		rc = -EPERM;
		goto out;
	}

2328 2329
	if (base->state <= DASD_STATE_BASIC) {
		DBF_DEV_EVENT(DBF_ERR, base, " %s",
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			      " Cannot open unrecognized device");
		rc = -ENODEV;
		goto out;
	}

2335 2336 2337 2338 2339 2340 2341
	if ((mode & FMODE_WRITE) &&
	    (test_bit(DASD_FLAG_DEVICE_RO, &base->flags) ||
	     (base->features & DASD_FEATURE_READONLY))) {
		rc = -EROFS;
		goto out;
	}

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	return 0;

out:
2345
	module_put(base->discipline->owner);
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unlock:
2347
	atomic_dec(&block->open_count);
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	return rc;
}

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static int dasd_release(struct gendisk *disk, fmode_t mode)
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2352
{
2353
	struct dasd_block *block = disk->private_data;
L
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2354

2355 2356
	atomic_dec(&block->open_count);
	module_put(block->base->discipline->owner);
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	return 0;
}

2360 2361 2362
/*
 * Return disk geometry.
 */
2363
static int dasd_getgeo(struct block_device *bdev, struct hd_geometry *geo)
2364
{
2365 2366
	struct dasd_block *block;
	struct dasd_device *base;
2367

2368 2369
	block = bdev->bd_disk->private_data;
	if (!block)
2370
		return -ENODEV;
2371
	base = block->base;
2372

2373 2374
	if (!base->discipline ||
	    !base->discipline->fill_geometry)
2375 2376
		return -EINVAL;

2377 2378
	base->discipline->fill_geometry(block, geo);
	geo->start = get_start_sect(bdev) >> block->s2b_shift;
2379 2380 2381
	return 0;
}

2382
const struct block_device_operations
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dasd_device_operations = {
	.owner		= THIS_MODULE,
A
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	.open		= dasd_open,
	.release	= dasd_release,
2387 2388
	.ioctl		= dasd_ioctl,
	.compat_ioctl	= dasd_ioctl,
2389
	.getgeo		= dasd_getgeo,
L
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};

2392 2393 2394
/*******************************************************************************
 * end of block device operations
 */
L
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2395 2396 2397 2398 2399 2400 2401

static void
dasd_exit(void)
{
#ifdef CONFIG_PROC_FS
	dasd_proc_exit();
#endif
2402
	dasd_eer_exit();
2403 2404 2405 2406
        if (dasd_page_cache != NULL) {
		kmem_cache_destroy(dasd_page_cache);
		dasd_page_cache = NULL;
	}
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	dasd_gendisk_exit();
	dasd_devmap_exit();
	if (dasd_debug_area != NULL) {
		debug_unregister(dasd_debug_area);
		dasd_debug_area = NULL;
	}
}

/*
 * SECTION: common functions for ccw_driver use
 */

2419 2420 2421 2422 2423 2424 2425 2426 2427 2428 2429 2430 2431 2432 2433 2434 2435 2436 2437 2438 2439 2440 2441 2442 2443 2444 2445 2446
/*
 * Is the device read-only?
 * Note that this function does not report the setting of the
 * readonly device attribute, but how it is configured in z/VM.
 */
int dasd_device_is_ro(struct dasd_device *device)
{
	struct ccw_dev_id dev_id;
	struct diag210 diag_data;
	int rc;

	if (!MACHINE_IS_VM)
		return 0;
	ccw_device_get_id(device->cdev, &dev_id);
	memset(&diag_data, 0, sizeof(diag_data));
	diag_data.vrdcdvno = dev_id.devno;
	diag_data.vrdclen = sizeof(diag_data);
	rc = diag210(&diag_data);
	if (rc == 0 || rc == 2) {
		return diag_data.vrdcvfla & 0x80;
	} else {
		DBF_EVENT(DBF_WARNING, "diag210 failed for dev=%04x with rc=%d",
			  dev_id.devno, rc);
		return 0;
	}
}
EXPORT_SYMBOL_GPL(dasd_device_is_ro);

2447 2448 2449 2450 2451 2452 2453 2454 2455 2456 2457
static void dasd_generic_auto_online(void *data, async_cookie_t cookie)
{
	struct ccw_device *cdev = data;
	int ret;

	ret = ccw_device_set_online(cdev);
	if (ret)
		pr_warning("%s: Setting the DASD online failed with rc=%d\n",
			   dev_name(&cdev->dev), ret);
}

2458 2459 2460 2461
/*
 * Initial attempt at a probe function. this can be simplified once
 * the other detection code is gone.
 */
2462 2463
int dasd_generic_probe(struct ccw_device *cdev,
		       struct dasd_discipline *discipline)
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{
	int ret;

	ret = dasd_add_sysfs_files(cdev);
	if (ret) {
2469 2470 2471
		DBF_EVENT_DEVID(DBF_WARNING, cdev, "%s",
				"dasd_generic_probe: could not add "
				"sysfs entries");
2472
		return ret;
L
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2473
	}
2474
	cdev->handler = &dasd_int_handler;
L
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2475

2476 2477 2478 2479 2480 2481
	/*
	 * Automatically online either all dasd devices (dasd_autodetect)
	 * or all devices specified with dasd= parameters during
	 * initial probe.
	 */
	if ((dasd_get_feature(cdev, DASD_FEATURE_INITIAL_ONLINE) > 0 ) ||
2482
	    (dasd_autodetect && dasd_busid_known(dev_name(&cdev->dev)) != 0))
2483
		async_schedule(dasd_generic_auto_online, cdev);
2484
	return 0;
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2485 2486
}

2487 2488 2489 2490
/*
 * This will one day be called from a global not_oper handler.
 * It is also used by driver_unregister during module unload.
 */
2491
void dasd_generic_remove(struct ccw_device *cdev)
L
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2492 2493
{
	struct dasd_device *device;
2494
	struct dasd_block *block;
L
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2495

2496 2497
	cdev->handler = NULL;

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2498 2499 2500 2501 2502 2503 2504 2505 2506 2507 2508 2509 2510 2511 2512 2513
	dasd_remove_sysfs_files(cdev);
	device = dasd_device_from_cdev(cdev);
	if (IS_ERR(device))
		return;
	if (test_and_set_bit(DASD_FLAG_OFFLINE, &device->flags)) {
		/* Already doing offline processing */
		dasd_put_device(device);
		return;
	}
	/*
	 * This device is removed unconditionally. Set offline
	 * flag to prevent dasd_open from opening it while it is
	 * no quite down yet.
	 */
	dasd_set_target_state(device, DASD_STATE_NEW);
	/* dasd_delete_device destroys the device reference. */
2514 2515
	block = device->block;
	device->block = NULL;
L
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2516
	dasd_delete_device(device);
2517 2518 2519 2520 2521 2522
	/*
	 * life cycle of block is bound to device, so delete it after
	 * device was safely removed
	 */
	if (block)
		dasd_free_block(block);
L
Linus Torvalds 已提交
2523 2524
}

2525 2526
/*
 * Activate a device. This is called from dasd_{eckd,fba}_probe() when either
L
Linus Torvalds 已提交
2527
 * the device is detected for the first time and is supposed to be used
2528 2529
 * or the user has started activation through sysfs.
 */
2530 2531
int dasd_generic_set_online(struct ccw_device *cdev,
			    struct dasd_discipline *base_discipline)
L
Linus Torvalds 已提交
2532
{
2533
	struct dasd_discipline *discipline;
L
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2534
	struct dasd_device *device;
2535
	int rc;
2536

2537 2538
	/* first online clears initial online feature flag */
	dasd_set_feature(cdev, DASD_FEATURE_INITIAL_ONLINE, 0);
L
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2539 2540 2541 2542
	device = dasd_create_device(cdev);
	if (IS_ERR(device))
		return PTR_ERR(device);

2543
	discipline = base_discipline;
2544
	if (device->features & DASD_FEATURE_USEDIAG) {
L
Linus Torvalds 已提交
2545
	  	if (!dasd_diag_discipline_pointer) {
S
Stefan Haberland 已提交
2546 2547 2548
			pr_warning("%s Setting the DASD online failed because "
				   "of missing DIAG discipline\n",
				   dev_name(&cdev->dev));
L
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2549 2550 2551 2552 2553
			dasd_delete_device(device);
			return -ENODEV;
		}
		discipline = dasd_diag_discipline_pointer;
	}
2554 2555 2556 2557 2558 2559 2560 2561 2562 2563
	if (!try_module_get(base_discipline->owner)) {
		dasd_delete_device(device);
		return -EINVAL;
	}
	if (!try_module_get(discipline->owner)) {
		module_put(base_discipline->owner);
		dasd_delete_device(device);
		return -EINVAL;
	}
	device->base_discipline = base_discipline;
L
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2564 2565
	device->discipline = discipline;

2566
	/* check_device will allocate block device if necessary */
L
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2567 2568
	rc = discipline->check_device(device);
	if (rc) {
S
Stefan Haberland 已提交
2569 2570 2571
		pr_warning("%s Setting the DASD online with discipline %s "
			   "failed with rc=%i\n",
			   dev_name(&cdev->dev), discipline->name, rc);
2572 2573
		module_put(discipline->owner);
		module_put(base_discipline->owner);
L
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2574 2575 2576 2577 2578 2579
		dasd_delete_device(device);
		return rc;
	}

	dasd_set_target_state(device, DASD_STATE_ONLINE);
	if (device->state <= DASD_STATE_KNOWN) {
S
Stefan Haberland 已提交
2580 2581
		pr_warning("%s Setting the DASD online failed because of a "
			   "missing discipline\n", dev_name(&cdev->dev));
L
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2582 2583
		rc = -ENODEV;
		dasd_set_target_state(device, DASD_STATE_NEW);
2584 2585
		if (device->block)
			dasd_free_block(device->block);
L
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2586 2587 2588
		dasd_delete_device(device);
	} else
		pr_debug("dasd_generic device %s found\n",
2589
				dev_name(&cdev->dev));
S
Stefan Haberland 已提交
2590 2591 2592

	wait_event(dasd_init_waitq, _wait_for_device(device));

L
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2593 2594 2595 2596
	dasd_put_device(device);
	return rc;
}

2597
int dasd_generic_set_offline(struct ccw_device *cdev)
L
Linus Torvalds 已提交
2598 2599
{
	struct dasd_device *device;
2600
	struct dasd_block *block;
2601
	int max_count, open_count;
L
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2602 2603 2604 2605 2606 2607 2608 2609 2610 2611 2612 2613 2614 2615 2616

	device = dasd_device_from_cdev(cdev);
	if (IS_ERR(device))
		return PTR_ERR(device);
	if (test_and_set_bit(DASD_FLAG_OFFLINE, &device->flags)) {
		/* Already doing offline processing */
		dasd_put_device(device);
		return 0;
	}
	/*
	 * We must make sure that this device is currently not in use.
	 * The open_count is increased for every opener, that includes
	 * the blkdev_get in dasd_scan_partitions. We are only interested
	 * in the other openers.
	 */
2617
	if (device->block) {
2618 2619
		max_count = device->block->bdev ? 0 : -1;
		open_count = atomic_read(&device->block->open_count);
2620 2621
		if (open_count > max_count) {
			if (open_count > 0)
S
Stefan Haberland 已提交
2622 2623 2624
				pr_warning("%s: The DASD cannot be set offline "
					   "with open count %i\n",
					   dev_name(&cdev->dev), open_count);
2625
			else
S
Stefan Haberland 已提交
2626 2627 2628
				pr_warning("%s: The DASD cannot be set offline "
					   "while it is in use\n",
					   dev_name(&cdev->dev));
2629 2630 2631 2632
			clear_bit(DASD_FLAG_OFFLINE, &device->flags);
			dasd_put_device(device);
			return -EBUSY;
		}
L
Linus Torvalds 已提交
2633 2634 2635
	}
	dasd_set_target_state(device, DASD_STATE_NEW);
	/* dasd_delete_device destroys the device reference. */
2636 2637
	block = device->block;
	device->block = NULL;
L
Linus Torvalds 已提交
2638
	dasd_delete_device(device);
2639 2640 2641 2642 2643 2644
	/*
	 * life cycle of block is bound to device, so delete it after
	 * device was safely removed
	 */
	if (block)
		dasd_free_block(block);
L
Linus Torvalds 已提交
2645 2646 2647
	return 0;
}

2648 2649 2650 2651 2652 2653 2654 2655 2656 2657 2658 2659 2660 2661 2662 2663 2664 2665 2666 2667 2668 2669 2670 2671 2672 2673 2674 2675 2676 2677 2678 2679 2680 2681 2682 2683 2684 2685 2686 2687 2688 2689 2690 2691
int dasd_generic_last_path_gone(struct dasd_device *device)
{
	struct dasd_ccw_req *cqr;

	dev_warn(&device->cdev->dev, "No operational channel path is left "
		 "for the device\n");
	DBF_DEV_EVENT(DBF_WARNING, device, "%s", "last path gone");
	/* First of all call extended error reporting. */
	dasd_eer_write(device, NULL, DASD_EER_NOPATH);

	if (device->state < DASD_STATE_BASIC)
		return 0;
	/* Device is active. We want to keep it. */
	list_for_each_entry(cqr, &device->ccw_queue, devlist)
		if ((cqr->status == DASD_CQR_IN_IO) ||
		    (cqr->status == DASD_CQR_CLEAR_PENDING)) {
			cqr->status = DASD_CQR_QUEUED;
			cqr->retries++;
		}
	dasd_device_set_stop_bits(device, DASD_STOPPED_DC_WAIT);
	dasd_device_clear_timer(device);
	dasd_schedule_device_bh(device);
	return 1;
}
EXPORT_SYMBOL_GPL(dasd_generic_last_path_gone);

int dasd_generic_path_operational(struct dasd_device *device)
{
	dev_info(&device->cdev->dev, "A channel path to the device has become "
		 "operational\n");
	DBF_DEV_EVENT(DBF_WARNING, device, "%s", "path operational");
	dasd_device_remove_stop_bits(device, DASD_STOPPED_DC_WAIT);
	if (device->stopped & DASD_UNRESUMED_PM) {
		dasd_device_remove_stop_bits(device, DASD_UNRESUMED_PM);
		dasd_restore_device(device);
		return 1;
	}
	dasd_schedule_device_bh(device);
	if (device->block)
		dasd_schedule_block_bh(device->block);
	return 1;
}
EXPORT_SYMBOL_GPL(dasd_generic_path_operational);

2692
int dasd_generic_notify(struct ccw_device *cdev, int event)
L
Linus Torvalds 已提交
2693 2694 2695 2696
{
	struct dasd_device *device;
	int ret;

2697
	device = dasd_device_from_cdev_locked(cdev);
L
Linus Torvalds 已提交
2698 2699 2700 2701 2702
	if (IS_ERR(device))
		return 0;
	ret = 0;
	switch (event) {
	case CIO_GONE:
2703
	case CIO_BOXED:
L
Linus Torvalds 已提交
2704
	case CIO_NO_PATH:
2705 2706 2707 2708
		device->path_data.opm = 0;
		device->path_data.ppm = 0;
		device->path_data.npm = 0;
		ret = dasd_generic_last_path_gone(device);
L
Linus Torvalds 已提交
2709 2710 2711
		break;
	case CIO_OPER:
		ret = 1;
2712 2713
		if (device->path_data.opm)
			ret = dasd_generic_path_operational(device);
L
Linus Torvalds 已提交
2714 2715 2716 2717 2718 2719
		break;
	}
	dasd_put_device(device);
	return ret;
}

2720 2721 2722 2723 2724 2725 2726 2727 2728 2729 2730 2731 2732 2733 2734 2735 2736 2737 2738 2739 2740 2741 2742 2743 2744 2745 2746 2747 2748 2749 2750 2751 2752 2753 2754 2755 2756 2757 2758 2759 2760 2761 2762
void dasd_generic_path_event(struct ccw_device *cdev, int *path_event)
{
	int chp;
	__u8 oldopm, eventlpm;
	struct dasd_device *device;

	device = dasd_device_from_cdev_locked(cdev);
	if (IS_ERR(device))
		return;
	for (chp = 0; chp < 8; chp++) {
		eventlpm = 0x80 >> chp;
		if (path_event[chp] & PE_PATH_GONE) {
			oldopm = device->path_data.opm;
			device->path_data.opm &= ~eventlpm;
			device->path_data.ppm &= ~eventlpm;
			device->path_data.npm &= ~eventlpm;
			if (oldopm && !device->path_data.opm)
				dasd_generic_last_path_gone(device);
		}
		if (path_event[chp] & PE_PATH_AVAILABLE) {
			device->path_data.opm &= ~eventlpm;
			device->path_data.ppm &= ~eventlpm;
			device->path_data.npm &= ~eventlpm;
			device->path_data.tbvpm |= eventlpm;
			dasd_schedule_device_bh(device);
		}
	}
	dasd_put_device(device);
}
EXPORT_SYMBOL_GPL(dasd_generic_path_event);

int dasd_generic_verify_path(struct dasd_device *device, __u8 lpm)
{
	if (!device->path_data.opm && lpm) {
		device->path_data.opm = lpm;
		dasd_generic_path_operational(device);
	} else
		device->path_data.opm |= lpm;
	return 0;
}
EXPORT_SYMBOL_GPL(dasd_generic_verify_path);


2763 2764 2765 2766 2767 2768 2769 2770 2771
int dasd_generic_pm_freeze(struct ccw_device *cdev)
{
	struct dasd_ccw_req *cqr, *n;
	int rc;
	struct list_head freeze_queue;
	struct dasd_device *device = dasd_device_from_cdev(cdev);

	if (IS_ERR(device))
		return PTR_ERR(device);
2772 2773 2774 2775

	if (device->discipline->freeze)
		rc = device->discipline->freeze(device);

2776
	/* disallow new I/O  */
2777
	dasd_device_set_stop_bits(device, DASD_STOPPED_PM);
2778 2779 2780 2781 2782 2783 2784 2785 2786 2787 2788 2789 2790 2791 2792 2793 2794 2795 2796 2797 2798 2799 2800 2801 2802 2803 2804 2805 2806 2807 2808 2809 2810 2811 2812 2813 2814 2815 2816 2817 2818 2819 2820 2821 2822 2823 2824
	/* clear active requests */
	INIT_LIST_HEAD(&freeze_queue);
	spin_lock_irq(get_ccwdev_lock(cdev));
	rc = 0;
	list_for_each_entry_safe(cqr, n, &device->ccw_queue, devlist) {
		/* Check status and move request to flush_queue */
		if (cqr->status == DASD_CQR_IN_IO) {
			rc = device->discipline->term_IO(cqr);
			if (rc) {
				/* unable to terminate requeust */
				dev_err(&device->cdev->dev,
					"Unable to terminate request %p "
					"on suspend\n", cqr);
				spin_unlock_irq(get_ccwdev_lock(cdev));
				dasd_put_device(device);
				return rc;
			}
		}
		list_move_tail(&cqr->devlist, &freeze_queue);
	}

	spin_unlock_irq(get_ccwdev_lock(cdev));

	list_for_each_entry_safe(cqr, n, &freeze_queue, devlist) {
		wait_event(dasd_flush_wq,
			   (cqr->status != DASD_CQR_CLEAR_PENDING));
		if (cqr->status == DASD_CQR_CLEARED)
			cqr->status = DASD_CQR_QUEUED;
	}
	/* move freeze_queue to start of the ccw_queue */
	spin_lock_irq(get_ccwdev_lock(cdev));
	list_splice_tail(&freeze_queue, &device->ccw_queue);
	spin_unlock_irq(get_ccwdev_lock(cdev));

	dasd_put_device(device);
	return rc;
}
EXPORT_SYMBOL_GPL(dasd_generic_pm_freeze);

int dasd_generic_restore_device(struct ccw_device *cdev)
{
	struct dasd_device *device = dasd_device_from_cdev(cdev);
	int rc = 0;

	if (IS_ERR(device))
		return PTR_ERR(device);

2825
	/* allow new IO again */
2826 2827
	dasd_device_remove_stop_bits(device,
				     (DASD_STOPPED_PM | DASD_UNRESUMED_PM));
2828

2829 2830
	dasd_schedule_device_bh(device);

2831 2832 2833 2834 2835
	/*
	 * call discipline restore function
	 * if device is stopped do nothing e.g. for disconnected devices
	 */
	if (device->discipline->restore && !(device->stopped))
2836
		rc = device->discipline->restore(device);
2837
	if (rc || device->stopped)
2838 2839 2840 2841 2842
		/*
		 * if the resume failed for the DASD we put it in
		 * an UNRESUMED stop state
		 */
		device->stopped |= DASD_UNRESUMED_PM;
2843

2844 2845 2846
	if (device->block)
		dasd_schedule_block_bh(device->block);

2847
	dasd_put_device(device);
2848
	return 0;
2849 2850 2851
}
EXPORT_SYMBOL_GPL(dasd_generic_restore_device);

H
Heiko Carstens 已提交
2852 2853 2854
static struct dasd_ccw_req *dasd_generic_build_rdc(struct dasd_device *device,
						   void *rdc_buffer,
						   int rdc_buffer_size,
2855
						   int magic)
2856 2857 2858
{
	struct dasd_ccw_req *cqr;
	struct ccw1 *ccw;
2859
	unsigned long *idaw;
2860 2861 2862 2863

	cqr = dasd_smalloc_request(magic, 1 /* RDC */, rdc_buffer_size, device);

	if (IS_ERR(cqr)) {
S
Stefan Haberland 已提交
2864 2865 2866 2867
		/* internal error 13 - Allocating the RDC request failed*/
		dev_err(&device->cdev->dev,
			 "An error occurred in the DASD device driver, "
			 "reason=%s\n", "13");
2868 2869 2870 2871 2872
		return cqr;
	}

	ccw = cqr->cpaddr;
	ccw->cmd_code = CCW_CMD_RDC;
2873 2874 2875 2876 2877 2878 2879 2880 2881
	if (idal_is_needed(rdc_buffer, rdc_buffer_size)) {
		idaw = (unsigned long *) (cqr->data);
		ccw->cda = (__u32)(addr_t) idaw;
		ccw->flags = CCW_FLAG_IDA;
		idaw = idal_create_words(idaw, rdc_buffer, rdc_buffer_size);
	} else {
		ccw->cda = (__u32)(addr_t) rdc_buffer;
		ccw->flags = 0;
	}
2882

2883
	ccw->count = rdc_buffer_size;
2884 2885
	cqr->startdev = device;
	cqr->memdev = device;
2886
	cqr->expires = 10*HZ;
2887
	cqr->retries = 256;
2888 2889 2890 2891 2892 2893
	cqr->buildclk = get_clock();
	cqr->status = DASD_CQR_FILLED;
	return cqr;
}


2894
int dasd_generic_read_dev_chars(struct dasd_device *device, int magic,
2895
				void *rdc_buffer, int rdc_buffer_size)
2896 2897 2898 2899
{
	int ret;
	struct dasd_ccw_req *cqr;

2900
	cqr = dasd_generic_build_rdc(device, rdc_buffer, rdc_buffer_size,
2901 2902 2903 2904 2905
				     magic);
	if (IS_ERR(cqr))
		return PTR_ERR(cqr);

	ret = dasd_sleep_on(cqr);
2906
	dasd_sfree_request(cqr, cqr->memdev);
2907 2908
	return ret;
}
C
Cornelia Huck 已提交
2909
EXPORT_SYMBOL_GPL(dasd_generic_read_dev_chars);
2910

2911 2912 2913 2914 2915 2916 2917 2918 2919 2920 2921 2922 2923 2924 2925 2926 2927 2928 2929 2930 2931 2932 2933 2934 2935 2936 2937 2938 2939 2940 2941 2942 2943 2944
/*
 *   In command mode and transport mode we need to look for sense
 *   data in different places. The sense data itself is allways
 *   an array of 32 bytes, so we can unify the sense data access
 *   for both modes.
 */
char *dasd_get_sense(struct irb *irb)
{
	struct tsb *tsb = NULL;
	char *sense = NULL;

	if (scsw_is_tm(&irb->scsw) && (irb->scsw.tm.fcxs == 0x01)) {
		if (irb->scsw.tm.tcw)
			tsb = tcw_get_tsb((struct tcw *)(unsigned long)
					  irb->scsw.tm.tcw);
		if (tsb && tsb->length == 64 && tsb->flags)
			switch (tsb->flags & 0x07) {
			case 1:	/* tsa_iostat */
				sense = tsb->tsa.iostat.sense;
				break;
			case 2: /* tsa_ddpc */
				sense = tsb->tsa.ddpc.sense;
				break;
			default:
				/* currently we don't use interrogate data */
				break;
			}
	} else if (irb->esw.esw0.erw.cons) {
		sense = irb->ecw;
	}
	return sense;
}
EXPORT_SYMBOL_GPL(dasd_get_sense);

2945
static int __init dasd_init(void)
L
Linus Torvalds 已提交
2946 2947 2948 2949
{
	int rc;

	init_waitqueue_head(&dasd_init_waitq);
2950
	init_waitqueue_head(&dasd_flush_wq);
2951
	init_waitqueue_head(&generic_waitq);
L
Linus Torvalds 已提交
2952 2953

	/* register 'common' DASD debug area, used for all DBF_XXX calls */
2954
	dasd_debug_area = debug_register("dasd", 1, 1, 8 * sizeof(long));
L
Linus Torvalds 已提交
2955 2956 2957 2958 2959
	if (dasd_debug_area == NULL) {
		rc = -ENOMEM;
		goto failed;
	}
	debug_register_view(dasd_debug_area, &debug_sprintf_view);
H
Horst Hummel 已提交
2960
	debug_set_level(dasd_debug_area, DBF_WARNING);
L
Linus Torvalds 已提交
2961 2962 2963 2964 2965 2966 2967 2968 2969 2970 2971 2972 2973 2974

	DBF_EVENT(DBF_EMERG, "%s", "debug area created");

	dasd_diag_discipline_pointer = NULL;

	rc = dasd_devmap_init();
	if (rc)
		goto failed;
	rc = dasd_gendisk_init();
	if (rc)
		goto failed;
	rc = dasd_parse();
	if (rc)
		goto failed;
2975 2976 2977
	rc = dasd_eer_init();
	if (rc)
		goto failed;
L
Linus Torvalds 已提交
2978 2979 2980 2981 2982 2983 2984 2985
#ifdef CONFIG_PROC_FS
	rc = dasd_proc_init();
	if (rc)
		goto failed;
#endif

	return 0;
failed:
S
Stefan Haberland 已提交
2986
	pr_info("The DASD device driver could not be initialized\n");
L
Linus Torvalds 已提交
2987 2988 2989 2990 2991 2992 2993 2994 2995 2996 2997 2998 2999
	dasd_exit();
	return rc;
}

module_init(dasd_init);
module_exit(dasd_exit);

EXPORT_SYMBOL(dasd_debug_area);
EXPORT_SYMBOL(dasd_diag_discipline_pointer);

EXPORT_SYMBOL(dasd_add_request_head);
EXPORT_SYMBOL(dasd_add_request_tail);
EXPORT_SYMBOL(dasd_cancel_req);
3000 3001
EXPORT_SYMBOL(dasd_device_clear_timer);
EXPORT_SYMBOL(dasd_block_clear_timer);
L
Linus Torvalds 已提交
3002 3003 3004 3005 3006
EXPORT_SYMBOL(dasd_enable_device);
EXPORT_SYMBOL(dasd_int_handler);
EXPORT_SYMBOL(dasd_kfree_request);
EXPORT_SYMBOL(dasd_kick_device);
EXPORT_SYMBOL(dasd_kmalloc_request);
3007 3008
EXPORT_SYMBOL(dasd_schedule_device_bh);
EXPORT_SYMBOL(dasd_schedule_block_bh);
L
Linus Torvalds 已提交
3009
EXPORT_SYMBOL(dasd_set_target_state);
3010 3011
EXPORT_SYMBOL(dasd_device_set_timer);
EXPORT_SYMBOL(dasd_block_set_timer);
L
Linus Torvalds 已提交
3012 3013 3014 3015 3016 3017 3018 3019 3020 3021 3022 3023 3024
EXPORT_SYMBOL(dasd_sfree_request);
EXPORT_SYMBOL(dasd_sleep_on);
EXPORT_SYMBOL(dasd_sleep_on_immediatly);
EXPORT_SYMBOL(dasd_sleep_on_interruptible);
EXPORT_SYMBOL(dasd_smalloc_request);
EXPORT_SYMBOL(dasd_start_IO);
EXPORT_SYMBOL(dasd_term_IO);

EXPORT_SYMBOL_GPL(dasd_generic_probe);
EXPORT_SYMBOL_GPL(dasd_generic_remove);
EXPORT_SYMBOL_GPL(dasd_generic_notify);
EXPORT_SYMBOL_GPL(dasd_generic_set_online);
EXPORT_SYMBOL_GPL(dasd_generic_set_offline);
3025 3026 3027 3028
EXPORT_SYMBOL_GPL(dasd_generic_handle_state_change);
EXPORT_SYMBOL_GPL(dasd_flush_device_queue);
EXPORT_SYMBOL_GPL(dasd_alloc_block);
EXPORT_SYMBOL_GPL(dasd_free_block);