ide-tape.c 90.4 KB
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/*
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 * IDE ATAPI streaming tape driver.
 *
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 * Copyright (C) 1995-1999  Gadi Oxman <gadio@netvision.net.il>
 * Copyright (C) 2003-2005  Bartlomiej Zolnierkiewicz
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 *
 * This driver was constructed as a student project in the software laboratory
 * of the faculty of electrical engineering in the Technion - Israel's
 * Institute Of Technology, with the guide of Avner Lottem and Dr. Ilana David.
 *
 * It is hereby placed under the terms of the GNU general public license.
 * (See linux/COPYING).
 *
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 * For a historical changelog see
 * Documentation/ide/ChangeLog.ide-tape.1995-2002
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 */

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#define IDETAPE_VERSION "1.20"
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#include <linux/module.h>
#include <linux/types.h>
#include <linux/string.h>
#include <linux/kernel.h>
#include <linux/delay.h>
#include <linux/timer.h>
#include <linux/mm.h>
#include <linux/interrupt.h>
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#include <linux/jiffies.h>
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#include <linux/major.h>
#include <linux/errno.h>
#include <linux/genhd.h>
#include <linux/slab.h>
#include <linux/pci.h>
#include <linux/ide.h>
#include <linux/smp_lock.h>
#include <linux/completion.h>
#include <linux/bitops.h>
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#include <linux/mutex.h>
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#include <scsi/scsi.h>
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#include <asm/byteorder.h>
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#include <linux/irq.h>
#include <linux/uaccess.h>
#include <linux/io.h>
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#include <asm/unaligned.h>
#include <linux/mtio.h>

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enum {
	/* output errors only */
	DBG_ERR =		(1 << 0),
	/* output all sense key/asc */
	DBG_SENSE =		(1 << 1),
	/* info regarding all chrdev-related procedures */
	DBG_CHRDEV =		(1 << 2),
	/* all remaining procedures */
	DBG_PROCS =		(1 << 3),
	/* buffer alloc info (pc_stack & rq_stack) */
	DBG_PCRQ_STACK =	(1 << 4),
};

/* define to see debug info */
#define IDETAPE_DEBUG_LOG		0

#if IDETAPE_DEBUG_LOG
#define debug_log(lvl, fmt, args...)			\
{							\
	if (tape->debug_mask & lvl)			\
	printk(KERN_INFO "ide-tape: " fmt, ## args);	\
}
#else
#define debug_log(lvl, fmt, args...) do {} while (0)
#endif

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/**************************** Tunable parameters *****************************/


/*
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 * Pipelined mode parameters.
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 *
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 * We try to use the minimum number of stages which is enough to keep the tape
 * constantly streaming. To accomplish that, we implement a feedback loop around
 * the maximum number of stages:
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 *
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 * We start from MIN maximum stages (we will not even use MIN stages if we don't
 * need them), increment it by RATE*(MAX-MIN) whenever we sense that the
 * pipeline is empty, until we reach the optimum value or until we reach MAX.
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 */
#define IDETAPE_MIN_PIPELINE_STAGES	  1
#define IDETAPE_MAX_PIPELINE_STAGES	400
#define IDETAPE_INCREASE_STAGES_RATE	 20

/*
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 * After each failed packet command we issue a request sense command and retry
 * the packet command IDETAPE_MAX_PC_RETRIES times.
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 *
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 * Setting IDETAPE_MAX_PC_RETRIES to 0 will disable retries.
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 */
#define IDETAPE_MAX_PC_RETRIES		3

/*
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 * With each packet command, we allocate a buffer of IDETAPE_PC_BUFFER_SIZE
 * bytes. This is used for several packet commands (Not for READ/WRITE commands)
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 */
#define IDETAPE_PC_BUFFER_SIZE		256

/*
 *	In various places in the driver, we need to allocate storage
 *	for packet commands and requests, which will remain valid while
 *	we leave the driver to wait for an interrupt or a timeout event.
 */
#define IDETAPE_PC_STACK		(10 + IDETAPE_MAX_PC_RETRIES)

/*
 * Some drives (for example, Seagate STT3401A Travan) require a very long
 * timeout, because they don't return an interrupt or clear their busy bit
 * until after the command completes (even retension commands).
 */
#define IDETAPE_WAIT_CMD		(900*HZ)

/*
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 * The following parameter is used to select the point in the internal tape fifo
 * in which we will start to refill the buffer. Decreasing the following
 * parameter will improve the system's latency and interactive response, while
 * using a high value might improve system throughput.
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 */
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#define IDETAPE_FIFO_THRESHOLD		2
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/*
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 * DSC polling parameters.
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 *
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 * Polling for DSC (a single bit in the status register) is a very important
 * function in ide-tape. There are two cases in which we poll for DSC:
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 *
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 * 1. Before a read/write packet command, to ensure that we can transfer data
 * from/to the tape's data buffers, without causing an actual media access.
 * In case the tape is not ready yet, we take out our request from the device
 * request queue, so that ide.c could service requests from the other device
 * on the same interface in the meantime.
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 *
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 * 2. After the successful initialization of a "media access packet command",
 * which is a command that can take a long time to complete (the interval can
 * range from several seconds to even an hour). Again, we postpone our request
 * in the middle to free the bus for the other device. The polling frequency
 * here should be lower than the read/write frequency since those media access
 * commands are slow. We start from a "fast" frequency - IDETAPE_DSC_MA_FAST
 * (1 second), and if we don't receive DSC after IDETAPE_DSC_MA_THRESHOLD
 * (5 min), we switch it to a lower frequency - IDETAPE_DSC_MA_SLOW (1 min).
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 *
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 * We also set a timeout for the timer, in case something goes wrong. The
 * timeout should be longer then the maximum execution time of a tape operation.
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 */
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/* DSC timings. */
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#define IDETAPE_DSC_RW_MIN		5*HZ/100	/* 50 msec */
#define IDETAPE_DSC_RW_MAX		40*HZ/100	/* 400 msec */
#define IDETAPE_DSC_RW_TIMEOUT		2*60*HZ		/* 2 minutes */
#define IDETAPE_DSC_MA_FAST		2*HZ		/* 2 seconds */
#define IDETAPE_DSC_MA_THRESHOLD	5*60*HZ		/* 5 minutes */
#define IDETAPE_DSC_MA_SLOW		30*HZ		/* 30 seconds */
#define IDETAPE_DSC_MA_TIMEOUT		2*60*60*HZ	/* 2 hours */

/*************************** End of tunable parameters ***********************/

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/* Read/Write error simulation */
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#define SIMULATE_ERRORS			0

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/* tape directions */
enum {
	IDETAPE_DIR_NONE  = (1 << 0),
	IDETAPE_DIR_READ  = (1 << 1),
	IDETAPE_DIR_WRITE = (1 << 2),
};
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struct idetape_bh {
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	u32 b_size;
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	atomic_t b_count;
	struct idetape_bh *b_reqnext;
	char *b_data;
};

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/* Tape door status */
#define DOOR_UNLOCKED			0
#define DOOR_LOCKED			1
#define DOOR_EXPLICITLY_LOCKED		2

/* Some defines for the SPACE command */
#define IDETAPE_SPACE_OVER_FILEMARK	1
#define IDETAPE_SPACE_TO_EOD		3

/* Some defines for the LOAD UNLOAD command */
#define IDETAPE_LU_LOAD_MASK		1
#define IDETAPE_LU_RETENSION_MASK	2
#define IDETAPE_LU_EOT_MASK		4

/*
 * Special requests for our block device strategy routine.
 *
 * In order to service a character device command, we add special requests to
 * the tail of our block device request queue and wait for their completion.
 */

enum {
	REQ_IDETAPE_PC1		= (1 << 0), /* packet command (first stage) */
	REQ_IDETAPE_PC2		= (1 << 1), /* packet command (second stage) */
	REQ_IDETAPE_READ	= (1 << 2),
	REQ_IDETAPE_WRITE	= (1 << 3),
};

/* Error codes returned in rq->errors to the higher part of the driver. */
#define IDETAPE_ERROR_GENERAL		101
#define IDETAPE_ERROR_FILEMARK		102
#define IDETAPE_ERROR_EOD		103

/* Structures related to the SELECT SENSE / MODE SENSE packet commands. */
#define IDETAPE_BLOCK_DESCRIPTOR	0
#define IDETAPE_CAPABILITIES_PAGE	0x2a

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/* Tape flag bits values. */
enum {
	IDETAPE_FLAG_IGNORE_DSC		= (1 << 0),
	/* 0 When the tape position is unknown */
	IDETAPE_FLAG_ADDRESS_VALID	= (1 <<	1),
	/* Device already opened */
	IDETAPE_FLAG_BUSY			= (1 << 2),
	/* Error detected in a pipeline stage */
	IDETAPE_FLAG_PIPELINE_ERR	= (1 <<	3),
	/* Attempt to auto-detect the current user block size */
	IDETAPE_FLAG_DETECT_BS		= (1 << 4),
	/* Currently on a filemark */
	IDETAPE_FLAG_FILEMARK		= (1 << 5),
	/* DRQ interrupt device */
	IDETAPE_FLAG_DRQ_INTERRUPT	= (1 << 6),
	/* pipeline active */
	IDETAPE_FLAG_PIPELINE_ACTIVE	= (1 << 7),
	/* 0 = no tape is loaded, so we don't rewind after ejecting */
	IDETAPE_FLAG_MEDIUM_PRESENT	= (1 << 8),
};

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/* A pipeline stage. */
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typedef struct idetape_stage_s {
	struct request rq;			/* The corresponding request */
	struct idetape_bh *bh;			/* The data buffers */
	struct idetape_stage_s *next;		/* Pointer to the next stage */
} idetape_stage_t;

/*
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 * Most of our global data which we need to save even as we leave the driver due
 * to an interrupt or a timer event is stored in the struct defined below.
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 */
typedef struct ide_tape_obj {
	ide_drive_t	*drive;
	ide_driver_t	*driver;
	struct gendisk	*disk;
	struct kref	kref;

	/*
	 *	Since a typical character device operation requires more
	 *	than one packet command, we provide here enough memory
	 *	for the maximum of interconnected packet commands.
	 *	The packet commands are stored in the circular array pc_stack.
	 *	pc_stack_index points to the last used entry, and warps around
	 *	to the start when we get to the last array entry.
	 *
	 *	pc points to the current processed packet command.
	 *
	 *	failed_pc points to the last failed packet command, or contains
	 *	NULL if we do not need to retry any packet command. This is
	 *	required since an additional packet command is needed before the
	 *	retry, to get detailed information on what went wrong.
	 */
	/* Current packet command */
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	struct ide_atapi_pc *pc;
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	/* Last failed packet command */
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	struct ide_atapi_pc *failed_pc;
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	/* Packet command stack */
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	struct ide_atapi_pc pc_stack[IDETAPE_PC_STACK];
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	/* Next free packet command storage space */
	int pc_stack_index;
	struct request rq_stack[IDETAPE_PC_STACK];
	/* We implement a circular array */
	int rq_stack_index;

	/*
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	 * DSC polling variables.
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	 *
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	 * While polling for DSC we use postponed_rq to postpone the current
	 * request so that ide.c will be able to service pending requests on the
	 * other device. Note that at most we will have only one DSC (usually
	 * data transfer) request in the device request queue. Additional
	 * requests can be queued in our internal pipeline, but they will be
	 * visible to ide.c only one at a time.
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	 */
	struct request *postponed_rq;
	/* The time in which we started polling for DSC */
	unsigned long dsc_polling_start;
	/* Timer used to poll for dsc */
	struct timer_list dsc_timer;
	/* Read/Write dsc polling frequency */
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	unsigned long best_dsc_rw_freq;
	unsigned long dsc_poll_freq;
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	unsigned long dsc_timeout;

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	/* Read position information */
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	u8 partition;
	/* Current block */
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	unsigned int first_frame;
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	/* Last error information */
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	u8 sense_key, asc, ascq;

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	/* Character device operation */
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	unsigned int minor;
	/* device name */
	char name[4];
	/* Current character device data transfer direction */
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	u8 chrdev_dir;
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	/* tape block size, usually 512 or 1024 bytes */
	unsigned short blk_size;
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	int user_bs_factor;
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	/* Copy of the tape's Capabilities and Mechanical Page */
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	u8 caps[20];
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	/*
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	 * Active data transfer request parameters.
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	 *
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	 * At most, there is only one ide-tape originated data transfer request
	 * in the device request queue. This allows ide.c to easily service
	 * requests from the other device when we postpone our active request.
	 * In the pipelined operation mode, we use our internal pipeline
	 * structure to hold more data requests. The data buffer size is chosen
	 * based on the tape's recommendation.
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	 */
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	/* ptr to the request which is waiting in the device request queue */
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	struct request *active_data_rq;
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	/* Data buffer size chosen based on the tape's recommendation */
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	int stage_size;
	idetape_stage_t *merge_stage;
	int merge_stage_size;
	struct idetape_bh *bh;
	char *b_data;
	int b_count;
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	/*
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	 * Pipeline parameters.
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	 *
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	 * To accomplish non-pipelined mode, we simply set the following
	 * variables to zero (or NULL, where appropriate).
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	 */
	/* Number of currently used stages */
	int nr_stages;
	/* Number of pending stages */
	int nr_pending_stages;
	/* We will not allocate more than this number of stages */
	int max_stages, min_pipeline, max_pipeline;
	/* The first stage which will be removed from the pipeline */
	idetape_stage_t *first_stage;
	/* The currently active stage */
	idetape_stage_t *active_stage;
	/* Will be serviced after the currently active request */
	idetape_stage_t *next_stage;
	/* New requests will be added to the pipeline here */
	idetape_stage_t *last_stage;
	int pages_per_stage;
	/* Wasted space in each stage */
	int excess_bh_size;

	/* Status/Action flags: long for set_bit */
	unsigned long flags;
	/* protects the ide-tape queue */
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	spinlock_t lock;
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	/* Measures average tape speed */
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	unsigned long avg_time;
	int avg_size;
	int avg_speed;

	/* the door is currently locked */
	int door_locked;
	/* the tape hardware is write protected */
	char drv_write_prot;
	/* the tape is write protected (hardware or opened as read-only) */
	char write_prot;

	/*
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	 * Limit the number of times a request can be postponed, to avoid an
	 * infinite postpone deadlock.
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	 */
	int postpone_cnt;

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	/* Speed control at the tape buffers input/output */
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	unsigned long insert_time;
	int insert_size;
	int insert_speed;
	int measure_insert_time;

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	u32 debug_mask;
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} idetape_tape_t;

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static DEFINE_MUTEX(idetape_ref_mutex);
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static struct class *idetape_sysfs_class;

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#define to_ide_tape(obj) container_of(obj, struct ide_tape_obj, kref)

#define ide_tape_g(disk) \
	container_of((disk)->private_data, struct ide_tape_obj, driver)

static struct ide_tape_obj *ide_tape_get(struct gendisk *disk)
{
	struct ide_tape_obj *tape = NULL;

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	mutex_lock(&idetape_ref_mutex);
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	tape = ide_tape_g(disk);
	if (tape)
		kref_get(&tape->kref);
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	mutex_unlock(&idetape_ref_mutex);
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	return tape;
}

static void ide_tape_release(struct kref *);

static void ide_tape_put(struct ide_tape_obj *tape)
{
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	mutex_lock(&idetape_ref_mutex);
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	kref_put(&tape->kref, ide_tape_release);
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	mutex_unlock(&idetape_ref_mutex);
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}

/*
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 * The variables below are used for the character device interface. Additional
 * state variables are defined in our ide_drive_t structure.
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 */
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static struct ide_tape_obj *idetape_devs[MAX_HWIFS * MAX_DRIVES];
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#define ide_tape_f(file) ((file)->private_data)

static struct ide_tape_obj *ide_tape_chrdev_get(unsigned int i)
{
	struct ide_tape_obj *tape = NULL;

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	mutex_lock(&idetape_ref_mutex);
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	tape = idetape_devs[i];
	if (tape)
		kref_get(&tape->kref);
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	mutex_unlock(&idetape_ref_mutex);
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	return tape;
}

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static void idetape_input_buffers(ide_drive_t *drive, struct ide_atapi_pc *pc,
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				  unsigned int bcount)
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{
	struct idetape_bh *bh = pc->bh;
	int count;

	while (bcount) {
		if (bh == NULL) {
			printk(KERN_ERR "ide-tape: bh == NULL in "
				"idetape_input_buffers\n");
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			ide_atapi_discard_data(drive, bcount);
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			return;
		}
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		count = min(
			(unsigned int)(bh->b_size - atomic_read(&bh->b_count)),
			bcount);
		HWIF(drive)->atapi_input_bytes(drive, bh->b_data +
					atomic_read(&bh->b_count), count);
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		bcount -= count;
		atomic_add(count, &bh->b_count);
		if (atomic_read(&bh->b_count) == bh->b_size) {
			bh = bh->b_reqnext;
			if (bh)
				atomic_set(&bh->b_count, 0);
		}
	}
	pc->bh = bh;
}

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static void idetape_output_buffers(ide_drive_t *drive, struct ide_atapi_pc *pc,
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				   unsigned int bcount)
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{
	struct idetape_bh *bh = pc->bh;
	int count;

	while (bcount) {
		if (bh == NULL) {
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			printk(KERN_ERR "ide-tape: bh == NULL in %s\n",
					__func__);
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			return;
		}
		count = min((unsigned int)pc->b_count, (unsigned int)bcount);
		HWIF(drive)->atapi_output_bytes(drive, pc->b_data, count);
		bcount -= count;
		pc->b_data += count;
		pc->b_count -= count;
		if (!pc->b_count) {
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			bh = bh->b_reqnext;
			pc->bh = bh;
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			if (bh) {
				pc->b_data = bh->b_data;
				pc->b_count = atomic_read(&bh->b_count);
			}
		}
	}
}

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static void idetape_update_buffers(struct ide_atapi_pc *pc)
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{
	struct idetape_bh *bh = pc->bh;
	int count;
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	unsigned int bcount = pc->xferred;
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	if (pc->flags & PC_FLAG_WRITING)
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		return;
	while (bcount) {
		if (bh == NULL) {
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			printk(KERN_ERR "ide-tape: bh == NULL in %s\n",
					__func__);
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			return;
		}
		count = min((unsigned int)bh->b_size, (unsigned int)bcount);
		atomic_set(&bh->b_count, count);
		if (atomic_read(&bh->b_count) == bh->b_size)
			bh = bh->b_reqnext;
		bcount -= count;
	}
	pc->bh = bh;
}

/*
 *	idetape_next_pc_storage returns a pointer to a place in which we can
 *	safely store a packet command, even though we intend to leave the
 *	driver. A storage space for a maximum of IDETAPE_PC_STACK packet
 *	commands is allocated at initialization time.
 */
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static struct ide_atapi_pc *idetape_next_pc_storage(ide_drive_t *drive)
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{
	idetape_tape_t *tape = drive->driver_data;

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	debug_log(DBG_PCRQ_STACK, "pc_stack_index=%d\n", tape->pc_stack_index);

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	if (tape->pc_stack_index == IDETAPE_PC_STACK)
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		tape->pc_stack_index = 0;
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	return (&tape->pc_stack[tape->pc_stack_index++]);
}

/*
 *	idetape_next_rq_storage is used along with idetape_next_pc_storage.
 *	Since we queue packet commands in the request queue, we need to
 *	allocate a request, along with the allocation of a packet command.
 */
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/**************************************************************
 *                                                            *
 *  This should get fixed to use kmalloc(.., GFP_ATOMIC)      *
 *  followed later on by kfree().   -ml                       *
 *                                                            *
 **************************************************************/
560 561

static struct request *idetape_next_rq_storage(ide_drive_t *drive)
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{
	idetape_tape_t *tape = drive->driver_data;

565 566
	debug_log(DBG_PCRQ_STACK, "rq_stack_index=%d\n", tape->rq_stack_index);

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	if (tape->rq_stack_index == IDETAPE_PC_STACK)
568
		tape->rq_stack_index = 0;
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	return (&tape->rq_stack[tape->rq_stack_index++]);
}

572
static void idetape_init_pc(struct ide_atapi_pc *pc)
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{
	memset(pc->c, 0, 12);
	pc->retries = 0;
	pc->flags = 0;
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	pc->req_xfer = 0;
	pc->buf = pc->pc_buf;
	pc->buf_size = IDETAPE_PC_BUFFER_SIZE;
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	pc->bh = NULL;
	pc->b_data = NULL;
}

/*
585 586
 * called on each failed packet command retry to analyze the request sense. We
 * currently do not utilize this information.
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 */
588
static void idetape_analyze_error(ide_drive_t *drive, u8 *sense)
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{
	idetape_tape_t *tape = drive->driver_data;
591
	struct ide_atapi_pc *pc = tape->failed_pc;
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593 594 595
	tape->sense_key = sense[2] & 0xF;
	tape->asc       = sense[12];
	tape->ascq      = sense[13];
596 597 598

	debug_log(DBG_ERR, "pc = %x, sense key = %x, asc = %x, ascq = %x\n",
		 pc->c[0], tape->sense_key, tape->asc, tape->ascq);
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	/* Correct pc->xferred by asking the tape.	 */
601
	if (pc->flags & PC_FLAG_DMA_ERROR) {
602
		pc->xferred = pc->req_xfer -
603
			tape->blk_size *
604
			be32_to_cpu(get_unaligned((u32 *)&sense[3]));
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		idetape_update_buffers(pc);
	}

	/*
	 * If error was the result of a zero-length read or write command,
	 * with sense key=5, asc=0x22, ascq=0, let it slide.  Some drives
	 * (i.e. Seagate STT3401A Travan) don't support 0-length read/writes.
	 */
613
	if ((pc->c[0] == READ_6 || pc->c[0] == WRITE_6)
614 615 616
	    /* length == 0 */
	    && pc->c[4] == 0 && pc->c[3] == 0 && pc->c[2] == 0) {
		if (tape->sense_key == 5) {
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			/* don't report an error, everything's ok */
			pc->error = 0;
			/* don't retry read/write */
620
			pc->flags |= PC_FLAG_ABORT;
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		}
	}
623
	if (pc->c[0] == READ_6 && (sense[2] & 0x80)) {
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		pc->error = IDETAPE_ERROR_FILEMARK;
625
		pc->flags |= PC_FLAG_ABORT;
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	}
627
	if (pc->c[0] == WRITE_6) {
628 629
		if ((sense[2] & 0x40) || (tape->sense_key == 0xd
		     && tape->asc == 0x0 && tape->ascq == 0x2)) {
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			pc->error = IDETAPE_ERROR_EOD;
631
			pc->flags |= PC_FLAG_ABORT;
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		}
	}
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	if (pc->c[0] == READ_6 || pc->c[0] == WRITE_6) {
635
		if (tape->sense_key == 8) {
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			pc->error = IDETAPE_ERROR_EOD;
637
			pc->flags |= PC_FLAG_ABORT;
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		}
639
		if (!(pc->flags & PC_FLAG_ABORT) &&
640
		    pc->xferred)
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			pc->retries = IDETAPE_MAX_PC_RETRIES + 1;
	}
}

645
/* Free a stage along with its related buffers completely. */
646
static void __idetape_kfree_stage(idetape_stage_t *stage)
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{
	struct idetape_bh *prev_bh, *bh = stage->bh;
	int size;

	while (bh != NULL) {
		if (bh->b_data != NULL) {
			size = (int) bh->b_size;
			while (size > 0) {
				free_page((unsigned long) bh->b_data);
				size -= PAGE_SIZE;
				bh->b_data += PAGE_SIZE;
			}
		}
		prev_bh = bh;
		bh = bh->b_reqnext;
		kfree(prev_bh);
	}
	kfree(stage);
}

/*
668 669
 * Finish servicing a request and insert a pending pipeline request into the
 * main device queue.
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 */
static int idetape_end_request(ide_drive_t *drive, int uptodate, int nr_sects)
{
	struct request *rq = HWGROUP(drive)->rq;
	idetape_tape_t *tape = drive->driver_data;
	unsigned long flags;
	int error;

678
	debug_log(DBG_PROCS, "Enter %s\n", __func__);
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	switch (uptodate) {
681 682 683
	case 0:	error = IDETAPE_ERROR_GENERAL; break;
	case 1: error = 0; break;
	default: error = uptodate;
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	}
	rq->errors = error;
	if (error)
		tape->failed_pc = NULL;

689 690 691 692 693
	if (!blk_special_request(rq)) {
		ide_end_request(drive, uptodate, nr_sects);
		return 0;
	}

694
	spin_lock_irqsave(&tape->lock, flags);
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	ide_end_drive_cmd(drive, 0, 0);

698
	clear_bit(IDETAPE_FLAG_PIPELINE_ACTIVE, &tape->flags);
699
	spin_unlock_irqrestore(&tape->lock, flags);
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	return 0;
}

703
static ide_startstop_t idetape_request_sense_callback(ide_drive_t *drive)
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{
	idetape_tape_t *tape = drive->driver_data;

707 708
	debug_log(DBG_PROCS, "Enter %s\n", __func__);

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	if (!tape->pc->error) {
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		idetape_analyze_error(drive, tape->pc->buf);
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		idetape_end_request(drive, 1, 0);
	} else {
713 714
		printk(KERN_ERR "ide-tape: Error in REQUEST SENSE itself - "
				"Aborting request!\n");
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		idetape_end_request(drive, 0, 0);
	}
	return ide_stopped;
}

720
static void idetape_create_request_sense_cmd(struct ide_atapi_pc *pc)
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{
722
	idetape_init_pc(pc);
723
	pc->c[0] = REQUEST_SENSE;
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	pc->c[4] = 20;
725 726
	pc->req_xfer = 20;
	pc->idetape_callback = &idetape_request_sense_callback;
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}

static void idetape_init_rq(struct request *rq, u8 cmd)
{
	memset(rq, 0, sizeof(*rq));
732
	rq->cmd_type = REQ_TYPE_SPECIAL;
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	rq->cmd[0] = cmd;
}

/*
737 738 739 740 741
 * Generate a new packet command request in front of the request queue, before
 * the current request, so that it will be processed immediately, on the next
 * pass through the driver. The function below is called from the request
 * handling part of the driver (the "bottom" part). Safe storage for the request
 * should be allocated with ide_tape_next_{pc,rq}_storage() prior to that.
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 *
743 744 745
 * Memory for those requests is pre-allocated at initialization time, and is
 * limited to IDETAPE_PC_STACK requests. We assume that we have enough space for
 * the maximum possible number of inter-dependent packet commands.
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 *
747 748 749
 * The higher level of the driver - The ioctl handler and the character device
 * handling functions should queue request to the lower level part and wait for
 * their completion using idetape_queue_pc_tail or idetape_queue_rw_tail.
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 */
751
static void idetape_queue_pc_head(ide_drive_t *drive, struct ide_atapi_pc *pc,
752
				  struct request *rq)
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{
	struct ide_tape_obj *tape = drive->driver_data;

	idetape_init_rq(rq, REQ_IDETAPE_PC1);
	rq->buffer = (char *) pc;
	rq->rq_disk = tape->disk;
	(void) ide_do_drive_cmd(drive, rq, ide_preempt);
}

/*
 *	idetape_retry_pc is called when an error was detected during the
 *	last packet command. We queue a request sense packet command in
 *	the head of the request list.
 */
static ide_startstop_t idetape_retry_pc (ide_drive_t *drive)
{
	idetape_tape_t *tape = drive->driver_data;
770
	struct ide_atapi_pc *pc;
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	struct request *rq;

773
	(void)ide_read_error(drive);
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	pc = idetape_next_pc_storage(drive);
	rq = idetape_next_rq_storage(drive);
	idetape_create_request_sense_cmd(pc);
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	set_bit(IDETAPE_FLAG_IGNORE_DSC, &tape->flags);
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	idetape_queue_pc_head(drive, pc, rq);
	return ide_stopped;
}

/*
783 784
 * Postpone the current request so that ide.c will be able to service requests
 * from another device on the same hwgroup while we are polling for DSC.
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 */
786
static void idetape_postpone_request(ide_drive_t *drive)
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{
	idetape_tape_t *tape = drive->driver_data;

790 791
	debug_log(DBG_PROCS, "Enter %s\n", __func__);

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	tape->postponed_rq = HWGROUP(drive)->rq;
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	ide_stall_queue(drive, tape->dsc_poll_freq);
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}

796
typedef void idetape_io_buf(ide_drive_t *, struct ide_atapi_pc *, unsigned int);
797

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/*
799 800 801 802
 * This is the usual interrupt handler which will be called during a packet
 * command. We will transfer some of the data (as requested by the drive) and
 * will re-point interrupt handler to us. When data transfer is finished, we
 * will act according to the algorithm described before
803
 * idetape_issue_pc.
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 */
805
static ide_startstop_t idetape_pc_intr(ide_drive_t *drive)
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{
	ide_hwif_t *hwif = drive->hwif;
	idetape_tape_t *tape = drive->driver_data;
809
	struct ide_atapi_pc *pc = tape->pc;
810 811
	xfer_func_t *xferfunc;
	idetape_io_buf *iobuf;
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	unsigned int temp;
#if SIMULATE_ERRORS
814
	static int error_sim_count;
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#endif
816
	u16 bcount;
817
	u8 stat, ireason;
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819
	debug_log(DBG_PROCS, "Enter %s - interrupt handler\n", __func__);
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	/* Clear the interrupt */
822
	stat = ide_read_status(drive);
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824
	if (pc->flags & PC_FLAG_DMA_IN_PROGRESS) {
825
		if (hwif->dma_ops->dma_end(drive) || (stat & ERR_STAT)) {
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			/*
			 * A DMA error is sometimes expected. For example,
			 * if the tape is crossing a filemark during a
			 * READ command, it will issue an irq and position
			 * itself before the filemark, so that only a partial
			 * data transfer will occur (which causes the DMA
			 * error). In that case, we will later ask the tape
			 * how much bytes of the original request were
			 * actually transferred (we can't receive that
			 * information from the DMA engine on most chipsets).
			 */

			/*
			 * On the contrary, a DMA error is never expected;
			 * it usually indicates a hardware error or abort.
			 * If the tape crosses a filemark during a READ
			 * command, it will issue an irq and position itself
			 * after the filemark (not before). Only a partial
			 * data transfer will occur, but no DMA error.
			 * (AS, 19 Apr 2001)
			 */
847
			pc->flags |= PC_FLAG_DMA_ERROR;
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		} else {
849
			pc->xferred = pc->req_xfer;
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			idetape_update_buffers(pc);
		}
852 853
		debug_log(DBG_PROCS, "DMA finished\n");

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	}

	/* No more interrupts */
857
	if ((stat & DRQ_STAT) == 0) {
858
		debug_log(DBG_SENSE, "Packet command completed, %d bytes"
859
				" transferred\n", pc->xferred);
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		pc->flags &= ~PC_FLAG_DMA_IN_PROGRESS;
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		local_irq_enable();

#if SIMULATE_ERRORS
865
		if ((pc->c[0] == WRITE_6 || pc->c[0] == READ_6) &&
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		    (++error_sim_count % 100) == 0) {
			printk(KERN_INFO "ide-tape: %s: simulating error\n",
				tape->name);
869
			stat |= ERR_STAT;
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		}
#endif
872
		if ((stat & ERR_STAT) && pc->c[0] == REQUEST_SENSE)
873
			stat &= ~ERR_STAT;
874
		if ((stat & ERR_STAT) || (pc->flags & PC_FLAG_DMA_ERROR)) {
875
			/* Error detected */
876 877
			debug_log(DBG_ERR, "%s: I/O error\n", tape->name);

878
			if (pc->c[0] == REQUEST_SENSE) {
879 880
				printk(KERN_ERR "ide-tape: I/O error in request"
						" sense command\n");
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				return ide_do_reset(drive);
			}
883 884 885
			debug_log(DBG_ERR, "[cmd %x]: check condition\n",
					pc->c[0]);

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			/* Retry operation */
			return idetape_retry_pc(drive);
		}
		pc->error = 0;
890
		if ((pc->flags & PC_FLAG_WAIT_FOR_DSC) &&
891
		    (stat & SEEK_STAT) == 0) {
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			/* Media access command */
			tape->dsc_polling_start = jiffies;
894
			tape->dsc_poll_freq = IDETAPE_DSC_MA_FAST;
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			tape->dsc_timeout = jiffies + IDETAPE_DSC_MA_TIMEOUT;
			/* Allow ide.c to handle other requests */
			idetape_postpone_request(drive);
			return ide_stopped;
		}
		if (tape->failed_pc == pc)
			tape->failed_pc = NULL;
		/* Command finished - Call the callback function */
903
		return pc->idetape_callback(drive);
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	}
905 906 907

	if (pc->flags & PC_FLAG_DMA_IN_PROGRESS) {
		pc->flags &= ~PC_FLAG_DMA_IN_PROGRESS;
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		printk(KERN_ERR "ide-tape: The tape wants to issue more "
				"interrupts in DMA mode\n");
		printk(KERN_ERR "ide-tape: DMA disabled, reverting to PIO\n");
911
		ide_dma_off(drive);
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		return ide_do_reset(drive);
	}
	/* Get the number of bytes to transfer on this interrupt. */
915 916
	bcount = (hwif->INB(hwif->io_ports[IDE_BCOUNTH_OFFSET]) << 8) |
		  hwif->INB(hwif->io_ports[IDE_BCOUNTL_OFFSET]);
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918
	ireason = hwif->INB(hwif->io_ports[IDE_IREASON_OFFSET]);
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920
	if (ireason & CD) {
921
		printk(KERN_ERR "ide-tape: CoD != 0 in %s\n", __func__);
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		return ide_do_reset(drive);
	}
924
	if (((ireason & IO) == IO) == !!(pc->flags & PC_FLAG_WRITING)) {
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		/* Hopefully, we will never get here */
		printk(KERN_ERR "ide-tape: We wanted to %s, ",
927
				(ireason & IO) ? "Write" : "Read");
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		printk(KERN_ERR "ide-tape: but the tape wants us to %s !\n",
929
				(ireason & IO) ? "Read" : "Write");
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		return ide_do_reset(drive);
	}
932
	if (!(pc->flags & PC_FLAG_WRITING)) {
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		/* Reading - Check that we have enough space */
934 935 936
		temp = pc->xferred + bcount;
		if (temp > pc->req_xfer) {
			if (temp > pc->buf_size) {
937 938 939
				printk(KERN_ERR "ide-tape: The tape wants to "
					"send us more data than expected "
					"- discarding data\n");
940
				ide_atapi_discard_data(drive, bcount);
941 942
				ide_set_handler(drive, &idetape_pc_intr,
						IDETAPE_WAIT_CMD, NULL);
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				return ide_started;
			}
945 946
			debug_log(DBG_SENSE, "The tape wants to send us more "
				"data than expected - allowing transfer\n");
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		}
948 949
		iobuf = &idetape_input_buffers;
		xferfunc = hwif->atapi_input_bytes;
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	} else {
951 952
		iobuf = &idetape_output_buffers;
		xferfunc = hwif->atapi_output_bytes;
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	}
954 955 956 957

	if (pc->bh)
		iobuf(drive, pc, bcount);
	else
958
		xferfunc(drive, pc->cur_pos, bcount);
959

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	/* Update the current position */
961 962
	pc->xferred += bcount;
	pc->cur_pos += bcount;
963 964 965 966

	debug_log(DBG_SENSE, "[cmd %x] transferred %d bytes on that intr.\n",
			pc->c[0], bcount);

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	/* And set the interrupt handler again */
	ide_set_handler(drive, &idetape_pc_intr, IDETAPE_WAIT_CMD, NULL);
	return ide_started;
}

/*
973
 * Packet Command Interface
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 *
975 976 977
 * The current Packet Command is available in tape->pc, and will not change
 * until we finish handling it. Each packet command is associated with a
 * callback function that will be called when the command is finished.
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 *
979
 * The handling will be done in three stages:
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 *
981 982
 * 1. idetape_issue_pc will send the packet command to the drive, and will set
 * the interrupt handler to idetape_pc_intr.
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 *
984 985
 * 2. On each interrupt, idetape_pc_intr will be called. This step will be
 * repeated until the device signals us that no more interrupts will be issued.
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 *
987 988 989 990 991 992 993
 * 3. ATAPI Tape media access commands have immediate status with a delayed
 * process. In case of a successful initiation of a media access packet command,
 * the DSC bit will be set when the actual execution of the command is finished.
 * Since the tape drive will not issue an interrupt, we have to poll for this
 * event. In this case, we define the request as "low priority request" by
 * setting rq_status to IDETAPE_RQ_POSTPONED, set a timer to poll for DSC and
 * exit the driver.
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 *
995 996
 * ide.c will then give higher priority to requests which originate from the
 * other device, until will change rq_status to RQ_ACTIVE.
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 *
998
 * 4. When the packet command is finished, it will be checked for errors.
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 *
1000 1001 1002
 * 5. In case an error was found, we queue a request sense packet command in
 * front of the request queue and retry the operation up to
 * IDETAPE_MAX_PC_RETRIES times.
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 *
1004 1005 1006
 * 6. In case no error was found, or we decided to give up and not to retry
 * again, the callback function will be called and then we will handle the next
 * request.
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 */
static ide_startstop_t idetape_transfer_pc(ide_drive_t *drive)
{
	ide_hwif_t *hwif = drive->hwif;
	idetape_tape_t *tape = drive->driver_data;
1012
	struct ide_atapi_pc *pc = tape->pc;
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1013 1014
	int retries = 100;
	ide_startstop_t startstop;
1015
	u8 ireason;
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1017 1018 1019
	if (ide_wait_stat(&startstop, drive, DRQ_STAT, BUSY_STAT, WAIT_READY)) {
		printk(KERN_ERR "ide-tape: Strange, packet command initiated "
				"yet DRQ isn't asserted\n");
L
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1020 1021
		return startstop;
	}
1022
	ireason = hwif->INB(hwif->io_ports[IDE_IREASON_OFFSET]);
1023
	while (retries-- && ((ireason & CD) == 0 || (ireason & IO))) {
L
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		printk(KERN_ERR "ide-tape: (IO,CoD != (0,1) while issuing "
				"a packet command, retrying\n");
		udelay(100);
1027
		ireason = hwif->INB(hwif->io_ports[IDE_IREASON_OFFSET]);
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		if (retries == 0) {
			printk(KERN_ERR "ide-tape: (IO,CoD != (0,1) while "
					"issuing a packet command, ignoring\n");
1031 1032
			ireason |= CD;
			ireason &= ~IO;
L
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1033 1034
		}
	}
1035
	if ((ireason & CD) == 0 || (ireason & IO)) {
L
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1036 1037 1038 1039 1040 1041 1042 1043
		printk(KERN_ERR "ide-tape: (IO,CoD) != (0,1) while issuing "
				"a packet command\n");
		return ide_do_reset(drive);
	}
	/* Set the interrupt routine */
	ide_set_handler(drive, &idetape_pc_intr, IDETAPE_WAIT_CMD, NULL);
#ifdef CONFIG_BLK_DEV_IDEDMA
	/* Begin DMA, if necessary */
1044
	if (pc->flags & PC_FLAG_DMA_IN_PROGRESS)
1045
		hwif->dma_ops->dma_start(drive);
L
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1046 1047 1048 1049 1050 1051
#endif
	/* Send the actual packet */
	HWIF(drive)->atapi_output_bytes(drive, pc->c, 12);
	return ide_started;
}

1052 1053
static ide_startstop_t idetape_issue_pc(ide_drive_t *drive,
		struct ide_atapi_pc *pc)
L
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1054 1055 1056 1057
{
	ide_hwif_t *hwif = drive->hwif;
	idetape_tape_t *tape = drive->driver_data;
	int dma_ok = 0;
1058
	u16 bcount;
L
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1059

1060 1061
	if (tape->pc->c[0] == REQUEST_SENSE &&
	    pc->c[0] == REQUEST_SENSE) {
L
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1062 1063 1064 1065
		printk(KERN_ERR "ide-tape: possible ide-tape.c bug - "
			"Two request sense in serial were issued\n");
	}

1066
	if (tape->failed_pc == NULL && pc->c[0] != REQUEST_SENSE)
L
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1067 1068 1069 1070 1071
		tape->failed_pc = pc;
	/* Set the current packet command */
	tape->pc = pc;

	if (pc->retries > IDETAPE_MAX_PC_RETRIES ||
1072
		(pc->flags & PC_FLAG_ABORT)) {
L
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1073
		/*
1074 1075 1076
		 * We will "abort" retrying a packet command in case legitimate
		 * error code was received (crossing a filemark, or end of the
		 * media, for example).
L
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1077
		 */
1078
		if (!(pc->flags & PC_FLAG_ABORT)) {
1079
			if (!(pc->c[0] == TEST_UNIT_READY &&
L
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1080 1081 1082 1083 1084 1085 1086 1087 1088 1089 1090 1091 1092
			      tape->sense_key == 2 && tape->asc == 4 &&
			     (tape->ascq == 1 || tape->ascq == 8))) {
				printk(KERN_ERR "ide-tape: %s: I/O error, "
						"pc = %2x, key = %2x, "
						"asc = %2x, ascq = %2x\n",
						tape->name, pc->c[0],
						tape->sense_key, tape->asc,
						tape->ascq);
			}
			/* Giving up */
			pc->error = IDETAPE_ERROR_GENERAL;
		}
		tape->failed_pc = NULL;
1093
		return pc->idetape_callback(drive);
L
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1094
	}
1095
	debug_log(DBG_SENSE, "Retry #%d, cmd = %02X\n", pc->retries, pc->c[0]);
L
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1096 1097 1098

	pc->retries++;
	/* We haven't transferred any data yet */
1099 1100
	pc->xferred = 0;
	pc->cur_pos = pc->buf;
L
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1101
	/* Request to transfer the entire buffer at once */
1102
	bcount = pc->req_xfer;
L
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1103

1104 1105
	if (pc->flags & PC_FLAG_DMA_ERROR) {
		pc->flags &= ~PC_FLAG_DMA_ERROR;
L
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1106 1107
		printk(KERN_WARNING "ide-tape: DMA disabled, "
				"reverting to PIO\n");
1108
		ide_dma_off(drive);
L
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1109
	}
1110
	if ((pc->flags & PC_FLAG_DMA_RECOMMENDED) && drive->using_dma)
1111
		dma_ok = !hwif->dma_ops->dma_setup(drive);
L
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1112

1113 1114 1115
	ide_pktcmd_tf_load(drive, IDE_TFLAG_NO_SELECT_MASK |
			   IDE_TFLAG_OUT_DEVICE, bcount, dma_ok);

1116 1117 1118 1119
	if (dma_ok)
		/* Will begin DMA later */
		pc->flags |= PC_FLAG_DMA_IN_PROGRESS;
	if (test_bit(IDETAPE_FLAG_DRQ_INTERRUPT, &tape->flags)) {
1120 1121
		ide_execute_command(drive, WIN_PACKETCMD, &idetape_transfer_pc,
				    IDETAPE_WAIT_CMD, NULL);
L
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1122 1123
		return ide_started;
	} else {
1124
		hwif->OUTB(WIN_PACKETCMD, hwif->io_ports[IDE_COMMAND_OFFSET]);
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1125 1126 1127 1128
		return idetape_transfer_pc(drive);
	}
}

1129
static ide_startstop_t idetape_pc_callback(ide_drive_t *drive)
L
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1130 1131
{
	idetape_tape_t *tape = drive->driver_data;
1132 1133

	debug_log(DBG_PROCS, "Enter %s\n", __func__);
L
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1134 1135 1136 1137 1138

	idetape_end_request(drive, tape->pc->error ? 0 : 1, 0);
	return ide_stopped;
}

1139
/* A mode sense command is used to "sense" tape parameters. */
1140
static void idetape_create_mode_sense_cmd(struct ide_atapi_pc *pc, u8 page_code)
L
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1141 1142
{
	idetape_init_pc(pc);
1143
	pc->c[0] = MODE_SENSE;
L
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1144
	if (page_code != IDETAPE_BLOCK_DESCRIPTOR)
1145 1146
		/* DBD = 1 - Don't return block descriptors */
		pc->c[1] = 8;
L
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1147 1148 1149 1150 1151 1152 1153 1154 1155
	pc->c[2] = page_code;
	/*
	 * Changed pc->c[3] to 0 (255 will at best return unused info).
	 *
	 * For SCSI this byte is defined as subpage instead of high byte
	 * of length and some IDE drives seem to interpret it this way
	 * and return an error when 255 is used.
	 */
	pc->c[3] = 0;
1156 1157
	/* We will just discard data in that case */
	pc->c[4] = 255;
L
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1158
	if (page_code == IDETAPE_BLOCK_DESCRIPTOR)
1159
		pc->req_xfer = 12;
L
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1160
	else if (page_code == IDETAPE_CAPABILITIES_PAGE)
1161
		pc->req_xfer = 24;
L
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1162
	else
1163 1164
		pc->req_xfer = 50;
	pc->idetape_callback = &idetape_pc_callback;
L
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1165 1166
}

1167
static ide_startstop_t idetape_media_access_finished(ide_drive_t *drive)
L
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1168 1169
{
	idetape_tape_t *tape = drive->driver_data;
1170
	struct ide_atapi_pc *pc = tape->pc;
1171
	u8 stat;
L
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1172

1173 1174
	stat = ide_read_status(drive);

1175 1176
	if (stat & SEEK_STAT) {
		if (stat & ERR_STAT) {
L
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1177
			/* Error detected */
1178
			if (pc->c[0] != TEST_UNIT_READY)
L
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1179 1180 1181 1182 1183 1184 1185 1186 1187 1188 1189 1190
				printk(KERN_ERR "ide-tape: %s: I/O error, ",
						tape->name);
			/* Retry operation */
			return idetape_retry_pc(drive);
		}
		pc->error = 0;
		if (tape->failed_pc == pc)
			tape->failed_pc = NULL;
	} else {
		pc->error = IDETAPE_ERROR_GENERAL;
		tape->failed_pc = NULL;
	}
1191
	return pc->idetape_callback(drive);
L
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1192 1193
}

1194
static ide_startstop_t idetape_rw_callback(ide_drive_t *drive)
L
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1195 1196 1197
{
	idetape_tape_t *tape = drive->driver_data;
	struct request *rq = HWGROUP(drive)->rq;
1198
	int blocks = tape->pc->xferred / tape->blk_size;
L
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1199

1200 1201
	tape->avg_size += blocks * tape->blk_size;
	tape->insert_size += blocks * tape->blk_size;
L
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1202 1203 1204 1205 1206 1207 1208 1209
	if (tape->insert_size > 1024 * 1024)
		tape->measure_insert_time = 1;
	if (tape->measure_insert_time) {
		tape->measure_insert_time = 0;
		tape->insert_time = jiffies;
		tape->insert_size = 0;
	}
	if (time_after(jiffies, tape->insert_time))
1210 1211
		tape->insert_speed = tape->insert_size / 1024 * HZ /
					(jiffies - tape->insert_time);
1212
	if (time_after_eq(jiffies, tape->avg_time + HZ)) {
1213 1214
		tape->avg_speed = tape->avg_size * HZ /
				(jiffies - tape->avg_time) / 1024;
L
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1215 1216 1217
		tape->avg_size = 0;
		tape->avg_time = jiffies;
	}
1218
	debug_log(DBG_PROCS, "Enter %s\n", __func__);
L
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1219

1220
	tape->first_frame += blocks;
L
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1221 1222 1223 1224 1225 1226 1227 1228 1229
	rq->current_nr_sectors -= blocks;

	if (!tape->pc->error)
		idetape_end_request(drive, 1, 0);
	else
		idetape_end_request(drive, tape->pc->error, 0);
	return ide_stopped;
}

1230 1231
static void idetape_create_read_cmd(idetape_tape_t *tape,
		struct ide_atapi_pc *pc,
1232
		unsigned int length, struct idetape_bh *bh)
L
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1233 1234
{
	idetape_init_pc(pc);
1235
	pc->c[0] = READ_6;
1236
	put_unaligned(cpu_to_be32(length), (unsigned int *) &pc->c[1]);
L
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1237
	pc->c[1] = 1;
1238
	pc->idetape_callback = &idetape_rw_callback;
L
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1239 1240
	pc->bh = bh;
	atomic_set(&bh->b_count, 0);
1241 1242 1243 1244
	pc->buf = NULL;
	pc->buf_size = length * tape->blk_size;
	pc->req_xfer = pc->buf_size;
	if (pc->req_xfer == tape->stage_size)
1245
		pc->flags |= PC_FLAG_DMA_RECOMMENDED;
L
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1246 1247
}

1248 1249
static void idetape_create_write_cmd(idetape_tape_t *tape,
		struct ide_atapi_pc *pc,
1250
		unsigned int length, struct idetape_bh *bh)
L
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1251 1252
{
	idetape_init_pc(pc);
1253
	pc->c[0] = WRITE_6;
1254
	put_unaligned(cpu_to_be32(length), (unsigned int *) &pc->c[1]);
L
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1255
	pc->c[1] = 1;
1256
	pc->idetape_callback = &idetape_rw_callback;
1257
	pc->flags |= PC_FLAG_WRITING;
L
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1258 1259 1260
	pc->bh = bh;
	pc->b_data = bh->b_data;
	pc->b_count = atomic_read(&bh->b_count);
1261 1262 1263 1264
	pc->buf = NULL;
	pc->buf_size = length * tape->blk_size;
	pc->req_xfer = pc->buf_size;
	if (pc->req_xfer == tape->stage_size)
1265
		pc->flags |= PC_FLAG_DMA_RECOMMENDED;
L
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1266 1267 1268 1269 1270 1271
}

static ide_startstop_t idetape_do_request(ide_drive_t *drive,
					  struct request *rq, sector_t block)
{
	idetape_tape_t *tape = drive->driver_data;
1272
	struct ide_atapi_pc *pc = NULL;
L
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1273
	struct request *postponed_rq = tape->postponed_rq;
1274
	u8 stat;
L
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1275

1276 1277
	debug_log(DBG_SENSE, "sector: %ld, nr_sectors: %ld,"
			" current_nr_sectors: %d\n",
L
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1278 1279
			rq->sector, rq->nr_sectors, rq->current_nr_sectors);

1280
	if (!blk_special_request(rq)) {
1281
		/* We do not support buffer cache originated requests. */
L
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1282
		printk(KERN_NOTICE "ide-tape: %s: Unsupported request in "
1283
			"request queue (%d)\n", drive->name, rq->cmd_type);
L
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1284 1285 1286 1287
		ide_end_request(drive, 0, 0);
		return ide_stopped;
	}

1288
	/* Retry a failed packet command */
1289
	if (tape->failed_pc && tape->pc->c[0] == REQUEST_SENSE)
1290
		return idetape_issue_pc(drive, tape->failed_pc);
1291

L
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1292 1293 1294 1295 1296 1297 1298 1299 1300 1301 1302 1303 1304 1305
	if (postponed_rq != NULL)
		if (rq != postponed_rq) {
			printk(KERN_ERR "ide-tape: ide-tape.c bug - "
					"Two DSC requests were queued\n");
			idetape_end_request(drive, 0, 0);
			return ide_stopped;
		}

	tape->postponed_rq = NULL;

	/*
	 * If the tape is still busy, postpone our request and service
	 * the other device meanwhile.
	 */
1306
	stat = ide_read_status(drive);
L
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1307 1308

	if (!drive->dsc_overlap && !(rq->cmd[0] & REQ_IDETAPE_PC2))
1309
		set_bit(IDETAPE_FLAG_IGNORE_DSC, &tape->flags);
L
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1310 1311

	if (drive->post_reset == 1) {
1312
		set_bit(IDETAPE_FLAG_IGNORE_DSC, &tape->flags);
L
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1313 1314 1315 1316
		drive->post_reset = 0;
	}

	if (time_after(jiffies, tape->insert_time))
1317 1318
		tape->insert_speed = tape->insert_size / 1024 * HZ /
					(jiffies - tape->insert_time);
1319
	if (!test_and_clear_bit(IDETAPE_FLAG_IGNORE_DSC, &tape->flags) &&
1320
	    (stat & SEEK_STAT) == 0) {
L
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1321 1322
		if (postponed_rq == NULL) {
			tape->dsc_polling_start = jiffies;
1323
			tape->dsc_poll_freq = tape->best_dsc_rw_freq;
L
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1324 1325 1326 1327 1328 1329 1330 1331 1332 1333
			tape->dsc_timeout = jiffies + IDETAPE_DSC_RW_TIMEOUT;
		} else if (time_after(jiffies, tape->dsc_timeout)) {
			printk(KERN_ERR "ide-tape: %s: DSC timeout\n",
				tape->name);
			if (rq->cmd[0] & REQ_IDETAPE_PC2) {
				idetape_media_access_finished(drive);
				return ide_stopped;
			} else {
				return ide_do_reset(drive);
			}
1334 1335 1336
		} else if (time_after(jiffies,
					tape->dsc_polling_start +
					IDETAPE_DSC_MA_THRESHOLD))
1337
			tape->dsc_poll_freq = IDETAPE_DSC_MA_SLOW;
L
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1338 1339 1340 1341 1342 1343
		idetape_postpone_request(drive);
		return ide_stopped;
	}
	if (rq->cmd[0] & REQ_IDETAPE_READ) {
		tape->postpone_cnt = 0;
		pc = idetape_next_pc_storage(drive);
1344 1345
		idetape_create_read_cmd(tape, pc, rq->current_nr_sectors,
					(struct idetape_bh *)rq->special);
L
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1346 1347 1348 1349 1350
		goto out;
	}
	if (rq->cmd[0] & REQ_IDETAPE_WRITE) {
		tape->postpone_cnt = 0;
		pc = idetape_next_pc_storage(drive);
1351 1352
		idetape_create_write_cmd(tape, pc, rq->current_nr_sectors,
					 (struct idetape_bh *)rq->special);
L
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1353 1354 1355
		goto out;
	}
	if (rq->cmd[0] & REQ_IDETAPE_PC1) {
1356
		pc = (struct ide_atapi_pc *) rq->buffer;
L
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1357 1358 1359 1360 1361 1362 1363 1364 1365 1366
		rq->cmd[0] &= ~(REQ_IDETAPE_PC1);
		rq->cmd[0] |= REQ_IDETAPE_PC2;
		goto out;
	}
	if (rq->cmd[0] & REQ_IDETAPE_PC2) {
		idetape_media_access_finished(drive);
		return ide_stopped;
	}
	BUG();
out:
1367
	return idetape_issue_pc(drive, pc);
L
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1368 1369
}

1370
/* Pipeline related functions */
L
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1371 1372

/*
1373 1374 1375 1376
 * The function below uses __get_free_page to allocate a pipeline stage, along
 * with all the necessary small buffers which together make a buffer of size
 * tape->stage_size (or a bit more). We attempt to combine sequential pages as
 * much as possible.
L
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1377
 *
1378 1379
 * It returns a pointer to the new allocated stage, or NULL if we can't (or
 * don't want to) allocate a stage.
L
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1380
 *
1381 1382
 * Pipeline stages are optional and are used to increase performance. If we
 * can't allocate them, we'll manage without them.
L
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1383
 */
1384 1385
static idetape_stage_t *__idetape_kmalloc_stage(idetape_tape_t *tape, int full,
						int clear)
L
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1386 1387 1388 1389 1390 1391
{
	idetape_stage_t *stage;
	struct idetape_bh *prev_bh, *bh;
	int pages = tape->pages_per_stage;
	char *b_data = NULL;

1392 1393
	stage = kmalloc(sizeof(idetape_stage_t), GFP_KERNEL);
	if (!stage)
L
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1394 1395 1396
		return NULL;
	stage->next = NULL;

1397 1398
	stage->bh = kmalloc(sizeof(struct idetape_bh), GFP_KERNEL);
	bh = stage->bh;
L
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1399 1400 1401
	if (bh == NULL)
		goto abort;
	bh->b_reqnext = NULL;
1402 1403
	bh->b_data = (char *) __get_free_page(GFP_KERNEL);
	if (!bh->b_data)
L
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1404 1405 1406 1407 1408 1409 1410
		goto abort;
	if (clear)
		memset(bh->b_data, 0, PAGE_SIZE);
	bh->b_size = PAGE_SIZE;
	atomic_set(&bh->b_count, full ? bh->b_size : 0);

	while (--pages) {
1411 1412
		b_data = (char *) __get_free_page(GFP_KERNEL);
		if (!b_data)
L
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1413 1414 1415 1416 1417 1418 1419 1420 1421 1422 1423 1424 1425 1426 1427 1428 1429
			goto abort;
		if (clear)
			memset(b_data, 0, PAGE_SIZE);
		if (bh->b_data == b_data + PAGE_SIZE) {
			bh->b_size += PAGE_SIZE;
			bh->b_data -= PAGE_SIZE;
			if (full)
				atomic_add(PAGE_SIZE, &bh->b_count);
			continue;
		}
		if (b_data == bh->b_data + bh->b_size) {
			bh->b_size += PAGE_SIZE;
			if (full)
				atomic_add(PAGE_SIZE, &bh->b_count);
			continue;
		}
		prev_bh = bh;
1430 1431
		bh = kmalloc(sizeof(struct idetape_bh), GFP_KERNEL);
		if (!bh) {
L
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1432 1433 1434 1435 1436 1437 1438 1439 1440 1441 1442 1443 1444 1445 1446 1447 1448 1449
			free_page((unsigned long) b_data);
			goto abort;
		}
		bh->b_reqnext = NULL;
		bh->b_data = b_data;
		bh->b_size = PAGE_SIZE;
		atomic_set(&bh->b_count, full ? bh->b_size : 0);
		prev_bh->b_reqnext = bh;
	}
	bh->b_size -= tape->excess_bh_size;
	if (full)
		atomic_sub(tape->excess_bh_size, &bh->b_count);
	return stage;
abort:
	__idetape_kfree_stage(stage);
	return NULL;
}

1450
static int idetape_copy_stage_from_user(idetape_tape_t *tape,
1451
					const char __user *buf, int n)
L
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1452 1453 1454
{
	struct idetape_bh *bh = tape->bh;
	int count;
1455
	int ret = 0;
L
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	while (n) {
		if (bh == NULL) {
1459 1460
			printk(KERN_ERR "ide-tape: bh == NULL in %s\n",
					__func__);
1461
			return 1;
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		}
1463 1464 1465 1466 1467
		count = min((unsigned int)
				(bh->b_size - atomic_read(&bh->b_count)),
				(unsigned int)n);
		if (copy_from_user(bh->b_data + atomic_read(&bh->b_count), buf,
				count))
1468
			ret = 1;
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		n -= count;
		atomic_add(count, &bh->b_count);
		buf += count;
		if (atomic_read(&bh->b_count) == bh->b_size) {
			bh = bh->b_reqnext;
			if (bh)
				atomic_set(&bh->b_count, 0);
		}
	}
	tape->bh = bh;
1479
	return ret;
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}

1482
static int idetape_copy_stage_to_user(idetape_tape_t *tape, char __user *buf,
1483
				      int n)
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{
	struct idetape_bh *bh = tape->bh;
	int count;
1487
	int ret = 0;
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	while (n) {
		if (bh == NULL) {
1491 1492
			printk(KERN_ERR "ide-tape: bh == NULL in %s\n",
					__func__);
1493
			return 1;
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		}
		count = min(tape->b_count, n);
1496 1497
		if  (copy_to_user(buf, tape->b_data, count))
			ret = 1;
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		n -= count;
		tape->b_data += count;
		tape->b_count -= count;
		buf += count;
		if (!tape->b_count) {
1503 1504
			bh = bh->b_reqnext;
			tape->bh = bh;
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			if (bh) {
				tape->b_data = bh->b_data;
				tape->b_count = atomic_read(&bh->b_count);
			}
		}
	}
1511
	return ret;
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}

1514
static void idetape_init_merge_stage(idetape_tape_t *tape)
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{
	struct idetape_bh *bh = tape->merge_stage->bh;
1517

L
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	tape->bh = bh;
1519
	if (tape->chrdev_dir == IDETAPE_DIR_WRITE)
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		atomic_set(&bh->b_count, 0);
	else {
		tape->b_data = bh->b_data;
		tape->b_count = atomic_read(&bh->b_count);
	}
}

1527
static ide_startstop_t idetape_read_position_callback(ide_drive_t *drive)
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{
	idetape_tape_t *tape = drive->driver_data;
1530
	u8 *readpos = tape->pc->buf;
1531 1532

	debug_log(DBG_PROCS, "Enter %s\n", __func__);
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	if (!tape->pc->error) {
1535 1536 1537 1538 1539 1540 1541 1542
		debug_log(DBG_SENSE, "BOP - %s\n",
				(readpos[0] & 0x80) ? "Yes" : "No");
		debug_log(DBG_SENSE, "EOP - %s\n",
				(readpos[0] & 0x40) ? "Yes" : "No");

		if (readpos[0] & 0x4) {
			printk(KERN_INFO "ide-tape: Block location is unknown"
					 "to the tape\n");
1543
			clear_bit(IDETAPE_FLAG_ADDRESS_VALID, &tape->flags);
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			idetape_end_request(drive, 0, 0);
		} else {
1546
			debug_log(DBG_SENSE, "Block Location - %u\n",
1547 1548 1549
					be32_to_cpu(*(u32 *)&readpos[4]));

			tape->partition = readpos[1];
1550
			tape->first_frame =
1551
				be32_to_cpu(*(u32 *)&readpos[4]);
1552
			set_bit(IDETAPE_FLAG_ADDRESS_VALID, &tape->flags);
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			idetape_end_request(drive, 1, 0);
		}
	} else {
		idetape_end_request(drive, 0, 0);
	}
	return ide_stopped;
}

/*
1562 1563
 * Write a filemark if write_filemark=1. Flush the device buffers without
 * writing a filemark otherwise.
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 */
1565
static void idetape_create_write_filemark_cmd(ide_drive_t *drive,
1566
		struct ide_atapi_pc *pc, int write_filemark)
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{
	idetape_init_pc(pc);
1569
	pc->c[0] = WRITE_FILEMARKS;
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	pc->c[4] = write_filemark;
1571
	pc->flags |= PC_FLAG_WAIT_FOR_DSC;
1572
	pc->idetape_callback = &idetape_pc_callback;
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}

1575
static void idetape_create_test_unit_ready_cmd(struct ide_atapi_pc *pc)
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{
	idetape_init_pc(pc);
1578
	pc->c[0] = TEST_UNIT_READY;
1579
	pc->idetape_callback = &idetape_pc_callback;
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}

/*
1583 1584 1585 1586 1587 1588
 * We add a special packet command request to the tail of the request queue, and
 * wait for it to be serviced. This is not to be called from within the request
 * handling part of the driver! We allocate here data on the stack and it is
 * valid until the request is finished. This is not the case for the bottom part
 * of the driver, where we are always leaving the functions to wait for an
 * interrupt or a timer event.
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 *
1590 1591 1592 1593
 * From the bottom part of the driver, we should allocate safe memory using
 * idetape_next_pc_storage() and ide_tape_next_rq_storage(), and add the request
 * to the request list without waiting for it to be serviced! In that case, we
 * usually use idetape_queue_pc_head().
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 */
1595
static int idetape_queue_pc_tail(ide_drive_t *drive, struct ide_atapi_pc *pc)
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1596 1597 1598 1599 1600 1601 1602 1603 1604 1605
{
	struct ide_tape_obj *tape = drive->driver_data;
	struct request rq;

	idetape_init_rq(&rq, REQ_IDETAPE_PC1);
	rq.buffer = (char *) pc;
	rq.rq_disk = tape->disk;
	return ide_do_drive_cmd(drive, &rq, ide_wait);
}

1606 1607
static void idetape_create_load_unload_cmd(ide_drive_t *drive,
		struct ide_atapi_pc *pc, int cmd)
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{
	idetape_init_pc(pc);
1610
	pc->c[0] = START_STOP;
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	pc->c[4] = cmd;
1612
	pc->flags |= PC_FLAG_WAIT_FOR_DSC;
1613
	pc->idetape_callback = &idetape_pc_callback;
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}

static int idetape_wait_ready(ide_drive_t *drive, unsigned long timeout)
{
	idetape_tape_t *tape = drive->driver_data;
1619
	struct ide_atapi_pc pc;
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	int load_attempted = 0;

1622
	/* Wait for the tape to become ready */
1623
	set_bit(IDETAPE_FLAG_MEDIUM_PRESENT, &tape->flags);
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	timeout += jiffies;
	while (time_before(jiffies, timeout)) {
		idetape_create_test_unit_ready_cmd(&pc);
1627
		if (!idetape_queue_pc_tail(drive, &pc))
L
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			return 0;
		if ((tape->sense_key == 2 && tape->asc == 4 && tape->ascq == 2)
1630 1631
		    || (tape->asc == 0x3A)) {
			/* no media */
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			if (load_attempted)
				return -ENOMEDIUM;
1634 1635
			idetape_create_load_unload_cmd(drive, &pc,
							IDETAPE_LU_LOAD_MASK);
1636
			idetape_queue_pc_tail(drive, &pc);
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1637 1638 1639 1640 1641
			load_attempted = 1;
		/* not about to be ready */
		} else if (!(tape->sense_key == 2 && tape->asc == 4 &&
			     (tape->ascq == 1 || tape->ascq == 8)))
			return -EIO;
1642
		msleep(100);
L
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	}
	return -EIO;
}

1647
static int idetape_flush_tape_buffers(ide_drive_t *drive)
L
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{
1649
	struct ide_atapi_pc pc;
L
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	int rc;

	idetape_create_write_filemark_cmd(drive, &pc, 0);
1653 1654
	rc = idetape_queue_pc_tail(drive, &pc);
	if (rc)
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		return rc;
	idetape_wait_ready(drive, 60 * 5 * HZ);
	return 0;
}

1660
static void idetape_create_read_position_cmd(struct ide_atapi_pc *pc)
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{
	idetape_init_pc(pc);
1663
	pc->c[0] = READ_POSITION;
1664 1665
	pc->req_xfer = 20;
	pc->idetape_callback = &idetape_read_position_callback;
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}

1668
static int idetape_read_position(ide_drive_t *drive)
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{
	idetape_tape_t *tape = drive->driver_data;
1671
	struct ide_atapi_pc pc;
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	int position;

1674
	debug_log(DBG_PROCS, "Enter %s\n", __func__);
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	idetape_create_read_position_cmd(&pc);
	if (idetape_queue_pc_tail(drive, &pc))
		return -1;
1679
	position = tape->first_frame;
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	return position;
}

1683 1684
static void idetape_create_locate_cmd(ide_drive_t *drive,
		struct ide_atapi_pc *pc,
1685
		unsigned int block, u8 partition, int skip)
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{
	idetape_init_pc(pc);
1688
	pc->c[0] = POSITION_TO_ELEMENT;
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	pc->c[1] = 2;
1690
	put_unaligned(cpu_to_be32(block), (unsigned int *) &pc->c[3]);
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	pc->c[8] = partition;
1692
	pc->flags |= PC_FLAG_WAIT_FOR_DSC;
1693
	pc->idetape_callback = &idetape_pc_callback;
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}

1696 1697
static int idetape_create_prevent_cmd(ide_drive_t *drive,
		struct ide_atapi_pc *pc, int prevent)
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{
	idetape_tape_t *tape = drive->driver_data;

1701 1702
	/* device supports locking according to capabilities page */
	if (!(tape->caps[6] & 0x01))
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		return 0;

	idetape_init_pc(pc);
1706
	pc->c[0] = ALLOW_MEDIUM_REMOVAL;
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	pc->c[4] = prevent;
1708
	pc->idetape_callback = &idetape_pc_callback;
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	return 1;
}

1712
static int __idetape_discard_read_pipeline(ide_drive_t *drive)
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{
	idetape_tape_t *tape = drive->driver_data;
	unsigned long flags;
	int cnt;

1718
	if (tape->chrdev_dir != IDETAPE_DIR_READ)
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		return 0;

	/* Remove merge stage. */
1722
	cnt = tape->merge_stage_size / tape->blk_size;
1723
	if (test_and_clear_bit(IDETAPE_FLAG_FILEMARK, &tape->flags))
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		++cnt;		/* Filemarks count as 1 sector */
	tape->merge_stage_size = 0;
	if (tape->merge_stage != NULL) {
		__idetape_kfree_stage(tape->merge_stage);
		tape->merge_stage = NULL;
	}

	/* Clear pipeline flags. */
1732
	clear_bit(IDETAPE_FLAG_PIPELINE_ERR, &tape->flags);
1733
	tape->chrdev_dir = IDETAPE_DIR_NONE;
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	/* Remove pipeline stages. */
	if (tape->first_stage == NULL)
		return 0;

1739
	spin_lock_irqsave(&tape->lock, flags);
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	tape->next_stage = NULL;
1741
	spin_unlock_irqrestore(&tape->lock, flags);
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	while (tape->first_stage != NULL) {
		struct request *rq_ptr = &tape->first_stage->rq;

1746
		cnt += rq_ptr->nr_sectors - rq_ptr->current_nr_sectors;
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		if (rq_ptr->errors == IDETAPE_ERROR_FILEMARK)
			++cnt;
	}
	tape->nr_pending_stages = 0;
	tape->max_stages = tape->min_pipeline;
	return cnt;
}

/*
1756 1757 1758 1759
 * Position the tape to the requested block using the LOCATE packet command.
 * A READ POSITION command is then issued to check where we are positioned. Like
 * all higher level operations, we queue the commands at the tail of the request
 * queue and wait for their completion.
L
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 */
1761 1762
static int idetape_position_tape(ide_drive_t *drive, unsigned int block,
		u8 partition, int skip)
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{
	idetape_tape_t *tape = drive->driver_data;
	int retval;
1766
	struct ide_atapi_pc pc;
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1767

1768
	if (tape->chrdev_dir == IDETAPE_DIR_READ)
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		__idetape_discard_read_pipeline(drive);
	idetape_wait_ready(drive, 60 * 5 * HZ);
	idetape_create_locate_cmd(drive, &pc, block, partition, skip);
	retval = idetape_queue_pc_tail(drive, &pc);
	if (retval)
		return (retval);

	idetape_create_read_position_cmd(&pc);
	return (idetape_queue_pc_tail(drive, &pc));
}

1780 1781
static void idetape_discard_read_pipeline(ide_drive_t *drive,
					  int restore_position)
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{
	idetape_tape_t *tape = drive->driver_data;
	int cnt;
	int seek, position;

	cnt = __idetape_discard_read_pipeline(drive);
	if (restore_position) {
		position = idetape_read_position(drive);
		seek = position > cnt ? position - cnt : 0;
		if (idetape_position_tape(drive, seek, 0, 0)) {
1792 1793
			printk(KERN_INFO "ide-tape: %s: position_tape failed in"
					 " discard_pipeline()\n", tape->name);
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			return;
		}
	}
}

/*
1800 1801
 * Generate a read/write request for the block device interface and wait for it
 * to be serviced.
L
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 */
1803 1804
static int idetape_queue_rw_tail(ide_drive_t *drive, int cmd, int blocks,
				 struct idetape_bh *bh)
L
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1805 1806 1807 1808
{
	idetape_tape_t *tape = drive->driver_data;
	struct request rq;

1809 1810
	debug_log(DBG_SENSE, "%s: cmd=%d\n", __func__, cmd);

1811
	if (test_bit(IDETAPE_FLAG_PIPELINE_ACTIVE, &tape->flags)) {
1812 1813
		printk(KERN_ERR "ide-tape: bug: the pipeline is active in %s\n",
				__func__);
L
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1814 1815 1816 1817 1818 1819
		return (0);
	}

	idetape_init_rq(&rq, cmd);
	rq.rq_disk = tape->disk;
	rq.special = (void *)bh;
1820
	rq.sector = tape->first_frame;
1821 1822
	rq.nr_sectors		= blocks;
	rq.current_nr_sectors	= blocks;
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1823 1824 1825 1826 1827 1828 1829 1830 1831
	(void) ide_do_drive_cmd(drive, &rq, ide_wait);

	if ((cmd & (REQ_IDETAPE_READ | REQ_IDETAPE_WRITE)) == 0)
		return 0;

	if (tape->merge_stage)
		idetape_init_merge_stage(tape);
	if (rq.errors == IDETAPE_ERROR_GENERAL)
		return -EIO;
1832
	return (tape->blk_size * (blocks-rq.current_nr_sectors));
L
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1833 1834
}

1835
static void idetape_create_inquiry_cmd(struct ide_atapi_pc *pc)
L
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1836 1837
{
	idetape_init_pc(pc);
1838
	pc->c[0] = INQUIRY;
1839
	pc->c[4] = 254;
1840 1841
	pc->req_xfer = 254;
	pc->idetape_callback = &idetape_pc_callback;
L
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1842 1843
}

1844 1845
static void idetape_create_rewind_cmd(ide_drive_t *drive,
		struct ide_atapi_pc *pc)
L
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1846 1847
{
	idetape_init_pc(pc);
1848
	pc->c[0] = REZERO_UNIT;
1849
	pc->flags |= PC_FLAG_WAIT_FOR_DSC;
1850
	pc->idetape_callback = &idetape_pc_callback;
L
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1851 1852
}

1853
static void idetape_create_erase_cmd(struct ide_atapi_pc *pc)
L
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1854 1855
{
	idetape_init_pc(pc);
1856
	pc->c[0] = ERASE;
L
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1857
	pc->c[1] = 1;
1858
	pc->flags |= PC_FLAG_WAIT_FOR_DSC;
1859
	pc->idetape_callback = &idetape_pc_callback;
L
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}

1862
static void idetape_create_space_cmd(struct ide_atapi_pc *pc, int count, u8 cmd)
L
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1863 1864
{
	idetape_init_pc(pc);
1865
	pc->c[0] = SPACE;
1866
	put_unaligned(cpu_to_be32(count), (unsigned int *) &pc->c[1]);
L
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	pc->c[1] = cmd;
1868
	pc->flags |= PC_FLAG_WAIT_FOR_DSC;
1869
	pc->idetape_callback = &idetape_pc_callback;
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}

1872
/* Queue up a character device originated write request. */
1873
static int idetape_add_chrdev_write_request(ide_drive_t *drive, int blocks)
L
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{
	idetape_tape_t *tape = drive->driver_data;

1877
	debug_log(DBG_CHRDEV, "Enter %s\n", __func__);
L
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1879 1880
	return idetape_queue_rw_tail(drive, REQ_IDETAPE_WRITE,
				     blocks, tape->merge_stage->bh);
L
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}

1883
static void idetape_empty_write_pipeline(ide_drive_t *drive)
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{
	idetape_tape_t *tape = drive->driver_data;
	int blocks, min;
	struct idetape_bh *bh;
1888

1889
	if (tape->chrdev_dir != IDETAPE_DIR_WRITE) {
1890 1891
		printk(KERN_ERR "ide-tape: bug: Trying to empty write pipeline,"
				" but we are not writing.\n");
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		return;
	}
	if (tape->merge_stage_size > tape->stage_size) {
		printk(KERN_ERR "ide-tape: bug: merge_buffer too big\n");
		tape->merge_stage_size = tape->stage_size;
	}
	if (tape->merge_stage_size) {
1899 1900
		blocks = tape->merge_stage_size / tape->blk_size;
		if (tape->merge_stage_size % tape->blk_size) {
L
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			unsigned int i;

			blocks++;
1904 1905
			i = tape->blk_size - tape->merge_stage_size %
				tape->blk_size;
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			bh = tape->bh->b_reqnext;
			while (bh) {
				atomic_set(&bh->b_count, 0);
				bh = bh->b_reqnext;
			}
			bh = tape->bh;
			while (i) {
				if (bh == NULL) {
1914 1915
					printk(KERN_INFO "ide-tape: bug,"
							 " bh NULL\n");
L
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1916 1917
					break;
				}
1918 1919 1920 1921
				min = min(i, (unsigned int)(bh->b_size -
						atomic_read(&bh->b_count)));
				memset(bh->b_data + atomic_read(&bh->b_count),
						0, min);
L
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1922 1923 1924 1925 1926 1927 1928 1929 1930 1931 1932 1933
				atomic_add(min, &bh->b_count);
				i -= min;
				bh = bh->b_reqnext;
			}
		}
		(void) idetape_add_chrdev_write_request(drive, blocks);
		tape->merge_stage_size = 0;
	}
	if (tape->merge_stage != NULL) {
		__idetape_kfree_stage(tape->merge_stage);
		tape->merge_stage = NULL;
	}
1934
	clear_bit(IDETAPE_FLAG_PIPELINE_ERR, &tape->flags);
1935
	tape->chrdev_dir = IDETAPE_DIR_NONE;
L
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1936 1937

	/*
1938 1939 1940 1941
	 * On the next backup, perform the feedback loop again. (I don't want to
	 * keep sense information between backups, as some systems are
	 * constantly on, and the system load can be totally different on the
	 * next backup).
L
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1942 1943 1944 1945 1946 1947 1948 1949 1950 1951 1952 1953 1954 1955
	 */
	tape->max_stages = tape->min_pipeline;
	if (tape->first_stage != NULL ||
	    tape->next_stage != NULL ||
	    tape->last_stage != NULL ||
	    tape->nr_stages != 0) {
		printk(KERN_ERR "ide-tape: ide-tape pipeline bug, "
			"first_stage %p, next_stage %p, "
			"last_stage %p, nr_stages %d\n",
			tape->first_stage, tape->next_stage,
			tape->last_stage, tape->nr_stages);
	}
}

1956
static int idetape_init_read(ide_drive_t *drive, int max_stages)
L
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1957 1958 1959 1960 1961
{
	idetape_tape_t *tape = drive->driver_data;
	int bytes_read;

	/* Initialize read operation */
1962 1963
	if (tape->chrdev_dir != IDETAPE_DIR_READ) {
		if (tape->chrdev_dir == IDETAPE_DIR_WRITE) {
L
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1964 1965 1966 1967
			idetape_empty_write_pipeline(drive);
			idetape_flush_tape_buffers(drive);
		}
		if (tape->merge_stage || tape->merge_stage_size) {
1968 1969
			printk(KERN_ERR "ide-tape: merge_stage_size should be"
					 " 0 now\n");
L
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1970 1971
			tape->merge_stage_size = 0;
		}
1972 1973
		tape->merge_stage = __idetape_kmalloc_stage(tape, 0, 0);
		if (!tape->merge_stage)
L
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1974
			return -ENOMEM;
1975
		tape->chrdev_dir = IDETAPE_DIR_READ;
L
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1976 1977

		/*
1978 1979 1980 1981
		 * Issue a read 0 command to ensure that DSC handshake is
		 * switched from completion mode to buffer available mode.
		 * No point in issuing this if DSC overlap isn't supported, some
		 * drives (Seagate STT3401A) will return an error.
L
Linus Torvalds 已提交
1982 1983
		 */
		if (drive->dsc_overlap) {
1984 1985 1986
			bytes_read = idetape_queue_rw_tail(drive,
							REQ_IDETAPE_READ, 0,
							tape->merge_stage->bh);
L
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1987 1988 1989
			if (bytes_read < 0) {
				__idetape_kfree_stage(tape->merge_stage);
				tape->merge_stage = NULL;
1990
				tape->chrdev_dir = IDETAPE_DIR_NONE;
L
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1991 1992 1993 1994
				return bytes_read;
			}
		}
	}
1995

1996
	if (!test_bit(IDETAPE_FLAG_PIPELINE_ACTIVE, &tape->flags)) {
L
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1997 1998 1999 2000 2001 2002 2003 2004 2005 2006 2007
		if (tape->nr_pending_stages >= 3 * max_stages / 4) {
			tape->measure_insert_time = 1;
			tape->insert_time = jiffies;
			tape->insert_size = 0;
			tape->insert_speed = 0;
		}
	}
	return 0;
}

/*
2008 2009
 * Called from idetape_chrdev_read() to service a character device read request
 * and add read-ahead requests to our pipeline.
L
Linus Torvalds 已提交
2010
 */
2011
static int idetape_add_chrdev_read_request(ide_drive_t *drive, int blocks)
L
Linus Torvalds 已提交
2012 2013 2014
{
	idetape_tape_t *tape = drive->driver_data;

2015
	debug_log(DBG_PROCS, "Enter %s, %d blocks\n", __func__, blocks);
L
Linus Torvalds 已提交
2016

2017
	/* If we are at a filemark, return a read length of 0 */
2018
	if (test_bit(IDETAPE_FLAG_FILEMARK, &tape->flags))
L
Linus Torvalds 已提交
2019 2020
		return 0;

2021
	idetape_init_read(drive, tape->max_stages);
2022 2023

	if (test_bit(IDETAPE_FLAG_PIPELINE_ERR, &tape->flags))
L
Linus Torvalds 已提交
2024
		return 0;
2025 2026 2027

	return idetape_queue_rw_tail(drive, REQ_IDETAPE_READ, blocks,
				     tape->merge_stage->bh);
L
Linus Torvalds 已提交
2028 2029
}

2030
static void idetape_pad_zeros(ide_drive_t *drive, int bcount)
L
Linus Torvalds 已提交
2031 2032 2033 2034
{
	idetape_tape_t *tape = drive->driver_data;
	struct idetape_bh *bh;
	int blocks;
2035

L
Linus Torvalds 已提交
2036 2037 2038 2039 2040 2041
	while (bcount) {
		unsigned int count;

		bh = tape->merge_stage->bh;
		count = min(tape->stage_size, bcount);
		bcount -= count;
2042
		blocks = count / tape->blk_size;
L
Linus Torvalds 已提交
2043
		while (count) {
2044 2045
			atomic_set(&bh->b_count,
				   min(count, (unsigned int)bh->b_size));
L
Linus Torvalds 已提交
2046 2047 2048 2049
			memset(bh->b_data, 0, atomic_read(&bh->b_count));
			count -= atomic_read(&bh->b_count);
			bh = bh->b_reqnext;
		}
2050 2051
		idetape_queue_rw_tail(drive, REQ_IDETAPE_WRITE, blocks,
				      tape->merge_stage->bh);
L
Linus Torvalds 已提交
2052 2053 2054 2055
	}
}

/*
2056 2057 2058
 * Rewinds the tape to the Beginning Of the current Partition (BOP). We
 * currently support only one partition.
 */
2059
static int idetape_rewind_tape(ide_drive_t *drive)
L
Linus Torvalds 已提交
2060 2061
{
	int retval;
2062
	struct ide_atapi_pc pc;
2063 2064 2065 2066 2067
	idetape_tape_t *tape;
	tape = drive->driver_data;

	debug_log(DBG_SENSE, "Enter %s\n", __func__);

L
Linus Torvalds 已提交
2068 2069 2070 2071 2072 2073 2074 2075 2076 2077 2078 2079
	idetape_create_rewind_cmd(drive, &pc);
	retval = idetape_queue_pc_tail(drive, &pc);
	if (retval)
		return retval;

	idetape_create_read_position_cmd(&pc);
	retval = idetape_queue_pc_tail(drive, &pc);
	if (retval)
		return retval;
	return 0;
}

2080
/* mtio.h compatible commands should be issued to the chrdev interface. */
2081 2082
static int idetape_blkdev_ioctl(ide_drive_t *drive, unsigned int cmd,
				unsigned long arg)
L
Linus Torvalds 已提交
2083 2084 2085 2086
{
	idetape_tape_t *tape = drive->driver_data;
	void __user *argp = (void __user *)arg;

2087 2088 2089 2090 2091 2092
	struct idetape_config {
		int dsc_rw_frequency;
		int dsc_media_access_frequency;
		int nr_stages;
	} config;

2093 2094
	debug_log(DBG_PROCS, "Enter %s\n", __func__);

L
Linus Torvalds 已提交
2095
	switch (cmd) {
2096 2097 2098 2099 2100 2101 2102 2103 2104 2105 2106 2107 2108 2109
	case 0x0340:
		if (copy_from_user(&config, argp, sizeof(config)))
			return -EFAULT;
		tape->best_dsc_rw_freq = config.dsc_rw_frequency;
		tape->max_stages = config.nr_stages;
		break;
	case 0x0350:
		config.dsc_rw_frequency = (int) tape->best_dsc_rw_freq;
		config.nr_stages = tape->max_stages;
		if (copy_to_user(argp, &config, sizeof(config)))
			return -EFAULT;
		break;
	default:
		return -EIO;
L
Linus Torvalds 已提交
2110 2111 2112 2113
	}
	return 0;
}

2114 2115
static int idetape_space_over_filemarks(ide_drive_t *drive, short mt_op,
					int mt_count)
L
Linus Torvalds 已提交
2116 2117
{
	idetape_tape_t *tape = drive->driver_data;
2118
	struct ide_atapi_pc pc;
2119
	int retval, count = 0;
2120
	int sprev = !!(tape->caps[4] & 0x20);
L
Linus Torvalds 已提交
2121 2122 2123 2124

	if (mt_count == 0)
		return 0;
	if (MTBSF == mt_op || MTBSFM == mt_op) {
2125
		if (!sprev)
L
Linus Torvalds 已提交
2126
			return -EIO;
2127
		mt_count = -mt_count;
L
Linus Torvalds 已提交
2128 2129
	}

2130
	if (tape->chrdev_dir == IDETAPE_DIR_READ) {
L
Linus Torvalds 已提交
2131
		tape->merge_stage_size = 0;
2132
		if (test_and_clear_bit(IDETAPE_FLAG_FILEMARK, &tape->flags))
L
Linus Torvalds 已提交
2133 2134 2135 2136 2137
			++count;
		idetape_discard_read_pipeline(drive, 0);
	}

	/*
2138 2139
	 * The filemark was not found in our internal pipeline;	now we can issue
	 * the space command.
L
Linus Torvalds 已提交
2140 2141
	 */
	switch (mt_op) {
2142 2143 2144 2145 2146 2147 2148 2149 2150 2151 2152 2153 2154 2155 2156 2157 2158 2159 2160
	case MTFSF:
	case MTBSF:
		idetape_create_space_cmd(&pc, mt_count - count,
					 IDETAPE_SPACE_OVER_FILEMARK);
		return idetape_queue_pc_tail(drive, &pc);
	case MTFSFM:
	case MTBSFM:
		if (!sprev)
			return -EIO;
		retval = idetape_space_over_filemarks(drive, MTFSF,
						      mt_count - count);
		if (retval)
			return retval;
		count = (MTBSFM == mt_op ? 1 : -1);
		return idetape_space_over_filemarks(drive, MTFSF, count);
	default:
		printk(KERN_ERR "ide-tape: MTIO operation %d not supported\n",
				mt_op);
		return -EIO;
L
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2161 2162 2163 2164
	}
}

/*
2165
 * Our character device read / write functions.
L
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2166
 *
2167 2168 2169
 * The tape is optimized to maximize throughput when it is transferring an
 * integral number of the "continuous transfer limit", which is a parameter of
 * the specific tape (26kB on my particular tape, 32kB for Onstream).
L
Linus Torvalds 已提交
2170
 *
2171 2172 2173 2174 2175 2176 2177
 * As of version 1.3 of the driver, the character device provides an abstract
 * continuous view of the media - any mix of block sizes (even 1 byte) on the
 * same backup/restore procedure is supported. The driver will internally
 * convert the requests to the recommended transfer unit, so that an unmatch
 * between the user's block size to the recommended size will only result in a
 * (slightly) increased driver overhead, but will no longer hit performance.
 * This is not applicable to Onstream.
L
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2178
 */
2179 2180
static ssize_t idetape_chrdev_read(struct file *file, char __user *buf,
				   size_t count, loff_t *ppos)
L
Linus Torvalds 已提交
2181 2182 2183
{
	struct ide_tape_obj *tape = ide_tape_f(file);
	ide_drive_t *drive = tape->drive;
2184
	ssize_t bytes_read, temp, actually_read = 0, rc;
2185
	ssize_t ret = 0;
2186
	u16 ctl = *(u16 *)&tape->caps[12];
L
Linus Torvalds 已提交
2187

2188
	debug_log(DBG_CHRDEV, "Enter %s, count %Zd\n", __func__, count);
L
Linus Torvalds 已提交
2189

2190
	if (tape->chrdev_dir != IDETAPE_DIR_READ) {
2191
		if (test_bit(IDETAPE_FLAG_DETECT_BS, &tape->flags))
2192 2193 2194
			if (count > tape->blk_size &&
			    (count % tape->blk_size) == 0)
				tape->user_bs_factor = count / tape->blk_size;
L
Linus Torvalds 已提交
2195
	}
2196 2197
	rc = idetape_init_read(drive, tape->max_stages);
	if (rc < 0)
L
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2198 2199 2200 2201
		return rc;
	if (count == 0)
		return (0);
	if (tape->merge_stage_size) {
2202 2203
		actually_read = min((unsigned int)(tape->merge_stage_size),
				    (unsigned int)count);
2204
		if (idetape_copy_stage_to_user(tape, buf, actually_read))
2205
			ret = -EFAULT;
L
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2206 2207 2208 2209 2210
		buf += actually_read;
		tape->merge_stage_size -= actually_read;
		count -= actually_read;
	}
	while (count >= tape->stage_size) {
2211
		bytes_read = idetape_add_chrdev_read_request(drive, ctl);
L
Linus Torvalds 已提交
2212 2213
		if (bytes_read <= 0)
			goto finish;
2214
		if (idetape_copy_stage_to_user(tape, buf, bytes_read))
2215
			ret = -EFAULT;
L
Linus Torvalds 已提交
2216 2217 2218 2219 2220
		buf += bytes_read;
		count -= bytes_read;
		actually_read += bytes_read;
	}
	if (count) {
2221
		bytes_read = idetape_add_chrdev_read_request(drive, ctl);
L
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2222 2223 2224
		if (bytes_read <= 0)
			goto finish;
		temp = min((unsigned long)count, (unsigned long)bytes_read);
2225
		if (idetape_copy_stage_to_user(tape, buf, temp))
2226
			ret = -EFAULT;
L
Linus Torvalds 已提交
2227 2228 2229 2230
		actually_read += temp;
		tape->merge_stage_size = bytes_read-temp;
	}
finish:
2231
	if (!actually_read && test_bit(IDETAPE_FLAG_FILEMARK, &tape->flags)) {
2232 2233
		debug_log(DBG_SENSE, "%s: spacing over filemark\n", tape->name);

L
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2234 2235 2236
		idetape_space_over_filemarks(drive, MTFSF, 1);
		return 0;
	}
2237

2238
	return ret ? ret : actually_read;
L
Linus Torvalds 已提交
2239 2240
}

2241
static ssize_t idetape_chrdev_write(struct file *file, const char __user *buf,
L
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2242 2243 2244 2245
				     size_t count, loff_t *ppos)
{
	struct ide_tape_obj *tape = ide_tape_f(file);
	ide_drive_t *drive = tape->drive;
2246 2247
	ssize_t actually_written = 0;
	ssize_t ret = 0;
2248
	u16 ctl = *(u16 *)&tape->caps[12];
L
Linus Torvalds 已提交
2249 2250 2251 2252 2253

	/* The drive is write protected. */
	if (tape->write_prot)
		return -EACCES;

2254
	debug_log(DBG_CHRDEV, "Enter %s, count %Zd\n", __func__, count);
L
Linus Torvalds 已提交
2255 2256

	/* Initialize write operation */
2257 2258
	if (tape->chrdev_dir != IDETAPE_DIR_WRITE) {
		if (tape->chrdev_dir == IDETAPE_DIR_READ)
L
Linus Torvalds 已提交
2259 2260 2261 2262 2263 2264
			idetape_discard_read_pipeline(drive, 1);
		if (tape->merge_stage || tape->merge_stage_size) {
			printk(KERN_ERR "ide-tape: merge_stage_size "
				"should be 0 now\n");
			tape->merge_stage_size = 0;
		}
2265 2266
		tape->merge_stage = __idetape_kmalloc_stage(tape, 0, 0);
		if (!tape->merge_stage)
L
Linus Torvalds 已提交
2267
			return -ENOMEM;
2268
		tape->chrdev_dir = IDETAPE_DIR_WRITE;
L
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2269 2270 2271
		idetape_init_merge_stage(tape);

		/*
2272 2273 2274 2275
		 * Issue a write 0 command to ensure that DSC handshake is
		 * switched from completion mode to buffer available mode. No
		 * point in issuing this if DSC overlap isn't supported, some
		 * drives (Seagate STT3401A) will return an error.
L
Linus Torvalds 已提交
2276 2277
		 */
		if (drive->dsc_overlap) {
2278 2279 2280
			ssize_t retval = idetape_queue_rw_tail(drive,
							REQ_IDETAPE_WRITE, 0,
							tape->merge_stage->bh);
L
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2281 2282 2283
			if (retval < 0) {
				__idetape_kfree_stage(tape->merge_stage);
				tape->merge_stage = NULL;
2284
				tape->chrdev_dir = IDETAPE_DIR_NONE;
L
Linus Torvalds 已提交
2285 2286 2287 2288 2289 2290 2291 2292
				return retval;
			}
		}
	}
	if (count == 0)
		return (0);
	if (tape->merge_stage_size) {
		if (tape->merge_stage_size >= tape->stage_size) {
2293
			printk(KERN_ERR "ide-tape: bug: merge buf too big\n");
L
Linus Torvalds 已提交
2294 2295
			tape->merge_stage_size = 0;
		}
2296 2297 2298
		actually_written = min((unsigned int)
				(tape->stage_size - tape->merge_stage_size),
				(unsigned int)count);
2299
		if (idetape_copy_stage_from_user(tape, buf, actually_written))
2300
				ret = -EFAULT;
L
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2301 2302 2303 2304 2305
		buf += actually_written;
		tape->merge_stage_size += actually_written;
		count -= actually_written;

		if (tape->merge_stage_size == tape->stage_size) {
2306
			ssize_t retval;
L
Linus Torvalds 已提交
2307
			tape->merge_stage_size = 0;
2308
			retval = idetape_add_chrdev_write_request(drive, ctl);
L
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2309 2310 2311 2312 2313
			if (retval <= 0)
				return (retval);
		}
	}
	while (count >= tape->stage_size) {
2314
		ssize_t retval;
2315
		if (idetape_copy_stage_from_user(tape, buf, tape->stage_size))
2316
			ret = -EFAULT;
L
Linus Torvalds 已提交
2317 2318
		buf += tape->stage_size;
		count -= tape->stage_size;
2319
		retval = idetape_add_chrdev_write_request(drive, ctl);
L
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2320 2321 2322 2323 2324 2325
		actually_written += tape->stage_size;
		if (retval <= 0)
			return (retval);
	}
	if (count) {
		actually_written += count;
2326
		if (idetape_copy_stage_from_user(tape, buf, count))
2327
			ret = -EFAULT;
L
Linus Torvalds 已提交
2328 2329
		tape->merge_stage_size += count;
	}
2330
	return ret ? ret : actually_written;
L
Linus Torvalds 已提交
2331 2332
}

2333
static int idetape_write_filemark(ide_drive_t *drive)
L
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2334
{
2335
	struct ide_atapi_pc pc;
L
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2336 2337 2338 2339 2340 2341 2342 2343 2344 2345 2346

	/* Write a filemark */
	idetape_create_write_filemark_cmd(drive, &pc, 1);
	if (idetape_queue_pc_tail(drive, &pc)) {
		printk(KERN_ERR "ide-tape: Couldn't write a filemark\n");
		return -EIO;
	}
	return 0;
}

/*
2347 2348
 * Called from idetape_chrdev_ioctl when the general mtio MTIOCTOP ioctl is
 * requested.
L
Linus Torvalds 已提交
2349
 *
2350 2351 2352 2353
 * Note: MTBSF and MTBSFM are not supported when the tape doesn't support
 * spacing over filemarks in the reverse direction. In this case, MTFSFM is also
 * usually not supported (it is supported in the rare case in which we crossed
 * the filemark during our read-ahead pipelined operation mode).
L
Linus Torvalds 已提交
2354
 *
2355
 * The following commands are currently not supported:
L
Linus Torvalds 已提交
2356
 *
2357 2358
 * MTFSS, MTBSS, MTWSM, MTSETDENSITY, MTSETDRVBUFFER, MT_ST_BOOLEANS,
 * MT_ST_WRITE_THRESHOLD.
L
Linus Torvalds 已提交
2359
 */
2360
static int idetape_mtioctop(ide_drive_t *drive, short mt_op, int mt_count)
L
Linus Torvalds 已提交
2361 2362
{
	idetape_tape_t *tape = drive->driver_data;
2363
	struct ide_atapi_pc pc;
2364
	int i, retval;
L
Linus Torvalds 已提交
2365

2366 2367
	debug_log(DBG_ERR, "Handling MTIOCTOP ioctl: mt_op=%d, mt_count=%d\n",
			mt_op, mt_count);
2368

2369
	/* Commands which need our pipelined read-ahead stages. */
L
Linus Torvalds 已提交
2370
	switch (mt_op) {
2371 2372 2373 2374 2375 2376 2377 2378 2379
	case MTFSF:
	case MTFSFM:
	case MTBSF:
	case MTBSFM:
		if (!mt_count)
			return 0;
		return idetape_space_over_filemarks(drive, mt_op, mt_count);
	default:
		break;
L
Linus Torvalds 已提交
2380
	}
2381

L
Linus Torvalds 已提交
2382
	switch (mt_op) {
2383 2384 2385 2386 2387 2388 2389 2390 2391 2392 2393 2394 2395 2396 2397 2398 2399 2400 2401 2402 2403 2404 2405 2406 2407 2408 2409 2410 2411 2412 2413 2414 2415 2416 2417 2418
	case MTWEOF:
		if (tape->write_prot)
			return -EACCES;
		idetape_discard_read_pipeline(drive, 1);
		for (i = 0; i < mt_count; i++) {
			retval = idetape_write_filemark(drive);
			if (retval)
				return retval;
		}
		return 0;
	case MTREW:
		idetape_discard_read_pipeline(drive, 0);
		if (idetape_rewind_tape(drive))
			return -EIO;
		return 0;
	case MTLOAD:
		idetape_discard_read_pipeline(drive, 0);
		idetape_create_load_unload_cmd(drive, &pc,
					       IDETAPE_LU_LOAD_MASK);
		return idetape_queue_pc_tail(drive, &pc);
	case MTUNLOAD:
	case MTOFFL:
		/*
		 * If door is locked, attempt to unlock before
		 * attempting to eject.
		 */
		if (tape->door_locked) {
			if (idetape_create_prevent_cmd(drive, &pc, 0))
				if (!idetape_queue_pc_tail(drive, &pc))
					tape->door_locked = DOOR_UNLOCKED;
		}
		idetape_discard_read_pipeline(drive, 0);
		idetape_create_load_unload_cmd(drive, &pc,
					      !IDETAPE_LU_LOAD_MASK);
		retval = idetape_queue_pc_tail(drive, &pc);
		if (!retval)
2419
			clear_bit(IDETAPE_FLAG_MEDIUM_PRESENT, &tape->flags);
2420 2421 2422 2423 2424 2425 2426 2427 2428 2429 2430 2431 2432 2433 2434 2435 2436 2437 2438 2439
		return retval;
	case MTNOP:
		idetape_discard_read_pipeline(drive, 0);
		return idetape_flush_tape_buffers(drive);
	case MTRETEN:
		idetape_discard_read_pipeline(drive, 0);
		idetape_create_load_unload_cmd(drive, &pc,
			IDETAPE_LU_RETENSION_MASK | IDETAPE_LU_LOAD_MASK);
		return idetape_queue_pc_tail(drive, &pc);
	case MTEOM:
		idetape_create_space_cmd(&pc, 0, IDETAPE_SPACE_TO_EOD);
		return idetape_queue_pc_tail(drive, &pc);
	case MTERASE:
		(void)idetape_rewind_tape(drive);
		idetape_create_erase_cmd(&pc);
		return idetape_queue_pc_tail(drive, &pc);
	case MTSETBLK:
		if (mt_count) {
			if (mt_count < tape->blk_size ||
			    mt_count % tape->blk_size)
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2440
				return -EIO;
2441
			tape->user_bs_factor = mt_count / tape->blk_size;
2442
			clear_bit(IDETAPE_FLAG_DETECT_BS, &tape->flags);
2443
		} else
2444
			set_bit(IDETAPE_FLAG_DETECT_BS, &tape->flags);
2445 2446 2447 2448 2449 2450 2451 2452 2453 2454 2455 2456
		return 0;
	case MTSEEK:
		idetape_discard_read_pipeline(drive, 0);
		return idetape_position_tape(drive,
			mt_count * tape->user_bs_factor, tape->partition, 0);
	case MTSETPART:
		idetape_discard_read_pipeline(drive, 0);
		return idetape_position_tape(drive, 0, mt_count, 0);
	case MTFSR:
	case MTBSR:
	case MTLOCK:
		if (!idetape_create_prevent_cmd(drive, &pc, 1))
L
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2457
			return 0;
2458 2459
		retval = idetape_queue_pc_tail(drive, &pc);
		if (retval)
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2460
			return retval;
2461 2462 2463 2464
		tape->door_locked = DOOR_EXPLICITLY_LOCKED;
		return 0;
	case MTUNLOCK:
		if (!idetape_create_prevent_cmd(drive, &pc, 0))
L
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2465
			return 0;
2466 2467 2468 2469 2470 2471 2472 2473 2474
		retval = idetape_queue_pc_tail(drive, &pc);
		if (retval)
			return retval;
		tape->door_locked = DOOR_UNLOCKED;
		return 0;
	default:
		printk(KERN_ERR "ide-tape: MTIO operation %d not supported\n",
				mt_op);
		return -EIO;
L
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2475 2476 2477 2478
	}
}

/*
2479 2480 2481
 * Our character device ioctls. General mtio.h magnetic io commands are
 * supported here, and not in the corresponding block interface. Our own
 * ide-tape ioctls are supported on both interfaces.
L
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2482
 */
2483 2484
static int idetape_chrdev_ioctl(struct inode *inode, struct file *file,
				unsigned int cmd, unsigned long arg)
L
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2485 2486 2487 2488 2489 2490
{
	struct ide_tape_obj *tape = ide_tape_f(file);
	ide_drive_t *drive = tape->drive;
	struct mtop mtop;
	struct mtget mtget;
	struct mtpos mtpos;
2491
	int block_offset = 0, position = tape->first_frame;
L
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2492 2493
	void __user *argp = (void __user *)arg;

2494
	debug_log(DBG_CHRDEV, "Enter %s, cmd=%u\n", __func__, cmd);
L
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2495

2496
	if (tape->chrdev_dir == IDETAPE_DIR_WRITE) {
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2497 2498 2499 2500
		idetape_empty_write_pipeline(drive);
		idetape_flush_tape_buffers(drive);
	}
	if (cmd == MTIOCGET || cmd == MTIOCPOS) {
2501
		block_offset = tape->merge_stage_size /
2502
			(tape->blk_size * tape->user_bs_factor);
2503 2504
		position = idetape_read_position(drive);
		if (position < 0)
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2505 2506 2507
			return -EIO;
	}
	switch (cmd) {
2508 2509 2510 2511 2512 2513 2514 2515 2516 2517 2518 2519 2520 2521 2522 2523 2524 2525 2526 2527 2528 2529 2530 2531 2532 2533 2534
	case MTIOCTOP:
		if (copy_from_user(&mtop, argp, sizeof(struct mtop)))
			return -EFAULT;
		return idetape_mtioctop(drive, mtop.mt_op, mtop.mt_count);
	case MTIOCGET:
		memset(&mtget, 0, sizeof(struct mtget));
		mtget.mt_type = MT_ISSCSI2;
		mtget.mt_blkno = position / tape->user_bs_factor - block_offset;
		mtget.mt_dsreg =
			((tape->blk_size * tape->user_bs_factor)
			 << MT_ST_BLKSIZE_SHIFT) & MT_ST_BLKSIZE_MASK;

		if (tape->drv_write_prot)
			mtget.mt_gstat |= GMT_WR_PROT(0xffffffff);

		if (copy_to_user(argp, &mtget, sizeof(struct mtget)))
			return -EFAULT;
		return 0;
	case MTIOCPOS:
		mtpos.mt_blkno = position / tape->user_bs_factor - block_offset;
		if (copy_to_user(argp, &mtpos, sizeof(struct mtpos)))
			return -EFAULT;
		return 0;
	default:
		if (tape->chrdev_dir == IDETAPE_DIR_READ)
			idetape_discard_read_pipeline(drive, 1);
		return idetape_blkdev_ioctl(drive, cmd, arg);
L
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2535 2536 2537
	}
}

2538 2539 2540 2541 2542 2543 2544
/*
 * Do a mode sense page 0 with block descriptor and if it succeeds set the tape
 * block size with the reported value.
 */
static void ide_tape_get_bsize_from_bdesc(ide_drive_t *drive)
{
	idetape_tape_t *tape = drive->driver_data;
2545
	struct ide_atapi_pc pc;
2546 2547 2548 2549

	idetape_create_mode_sense_cmd(&pc, IDETAPE_BLOCK_DESCRIPTOR);
	if (idetape_queue_pc_tail(drive, &pc)) {
		printk(KERN_ERR "ide-tape: Can't get block descriptor\n");
2550
		if (tape->blk_size == 0) {
2551 2552
			printk(KERN_WARNING "ide-tape: Cannot deal with zero "
					    "block size, assuming 32k\n");
2553
			tape->blk_size = 32768;
2554 2555 2556
		}
		return;
	}
2557 2558 2559 2560
	tape->blk_size = (pc.buf[4 + 5] << 16) +
				(pc.buf[4 + 6] << 8)  +
				 pc.buf[4 + 7];
	tape->drv_write_prot = (pc.buf[2] & 0x80) >> 7;
2561
}
L
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2562

2563
static int idetape_chrdev_open(struct inode *inode, struct file *filp)
L
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2564 2565 2566 2567
{
	unsigned int minor = iminor(inode), i = minor & ~0xc0;
	ide_drive_t *drive;
	idetape_tape_t *tape;
2568
	struct ide_atapi_pc pc;
L
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2569 2570
	int retval;

2571 2572 2573 2574 2575 2576 2577 2578 2579
	if (i >= MAX_HWIFS * MAX_DRIVES)
		return -ENXIO;

	tape = ide_tape_chrdev_get(i);
	if (!tape)
		return -ENXIO;

	debug_log(DBG_CHRDEV, "Enter %s\n", __func__);

L
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2580 2581 2582 2583 2584 2585 2586 2587 2588 2589 2590
	/*
	 * We really want to do nonseekable_open(inode, filp); here, but some
	 * versions of tar incorrectly call lseek on tapes and bail out if that
	 * fails.  So we disallow pread() and pwrite(), but permit lseeks.
	 */
	filp->f_mode &= ~(FMODE_PREAD | FMODE_PWRITE);

	drive = tape->drive;

	filp->private_data = tape;

2591
	if (test_and_set_bit(IDETAPE_FLAG_BUSY, &tape->flags)) {
L
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2592 2593 2594 2595 2596 2597
		retval = -EBUSY;
		goto out_put_tape;
	}

	retval = idetape_wait_ready(drive, 60 * HZ);
	if (retval) {
2598
		clear_bit(IDETAPE_FLAG_BUSY, &tape->flags);
L
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2599 2600 2601 2602 2603
		printk(KERN_ERR "ide-tape: %s: drive not ready\n", tape->name);
		goto out_put_tape;
	}

	idetape_read_position(drive);
2604
	if (!test_bit(IDETAPE_FLAG_ADDRESS_VALID, &tape->flags))
L
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2605 2606
		(void)idetape_rewind_tape(drive);

2607
	if (tape->chrdev_dir != IDETAPE_DIR_READ)
2608
		clear_bit(IDETAPE_FLAG_PIPELINE_ERR, &tape->flags);
L
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2609 2610

	/* Read block size and write protect status from drive. */
2611
	ide_tape_get_bsize_from_bdesc(drive);
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2612 2613 2614 2615 2616 2617 2618 2619 2620 2621 2622

	/* Set write protect flag if device is opened as read-only. */
	if ((filp->f_flags & O_ACCMODE) == O_RDONLY)
		tape->write_prot = 1;
	else
		tape->write_prot = tape->drv_write_prot;

	/* Make sure drive isn't write protected if user wants to write. */
	if (tape->write_prot) {
		if ((filp->f_flags & O_ACCMODE) == O_WRONLY ||
		    (filp->f_flags & O_ACCMODE) == O_RDWR) {
2623
			clear_bit(IDETAPE_FLAG_BUSY, &tape->flags);
L
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2624 2625 2626 2627 2628
			retval = -EROFS;
			goto out_put_tape;
		}
	}

2629
	/* Lock the tape drive door so user can't eject. */
2630
	if (tape->chrdev_dir == IDETAPE_DIR_NONE) {
L
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2631 2632 2633 2634 2635 2636 2637 2638 2639 2640 2641 2642 2643 2644
		if (idetape_create_prevent_cmd(drive, &pc, 1)) {
			if (!idetape_queue_pc_tail(drive, &pc)) {
				if (tape->door_locked != DOOR_EXPLICITLY_LOCKED)
					tape->door_locked = DOOR_LOCKED;
			}
		}
	}
	return 0;

out_put_tape:
	ide_tape_put(tape);
	return retval;
}

2645
static void idetape_write_release(ide_drive_t *drive, unsigned int minor)
L
Linus Torvalds 已提交
2646 2647 2648 2649 2650 2651
{
	idetape_tape_t *tape = drive->driver_data;

	idetape_empty_write_pipeline(drive);
	tape->merge_stage = __idetape_kmalloc_stage(tape, 1, 0);
	if (tape->merge_stage != NULL) {
2652 2653
		idetape_pad_zeros(drive, tape->blk_size *
				(tape->user_bs_factor - 1));
L
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2654 2655 2656 2657 2658 2659 2660 2661
		__idetape_kfree_stage(tape->merge_stage);
		tape->merge_stage = NULL;
	}
	idetape_write_filemark(drive);
	idetape_flush_tape_buffers(drive);
	idetape_flush_tape_buffers(drive);
}

2662
static int idetape_chrdev_release(struct inode *inode, struct file *filp)
L
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2663 2664 2665
{
	struct ide_tape_obj *tape = ide_tape_f(filp);
	ide_drive_t *drive = tape->drive;
2666
	struct ide_atapi_pc pc;
L
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2667 2668 2669 2670
	unsigned int minor = iminor(inode);

	lock_kernel();
	tape = drive->driver_data;
2671 2672

	debug_log(DBG_CHRDEV, "Enter %s\n", __func__);
L
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2673

2674
	if (tape->chrdev_dir == IDETAPE_DIR_WRITE)
L
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2675
		idetape_write_release(drive, minor);
2676
	if (tape->chrdev_dir == IDETAPE_DIR_READ) {
L
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2677 2678 2679
		if (minor < 128)
			idetape_discard_read_pipeline(drive, 1);
	}
2680

2681
	if (minor < 128 && test_bit(IDETAPE_FLAG_MEDIUM_PRESENT, &tape->flags))
L
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2682
		(void) idetape_rewind_tape(drive);
2683
	if (tape->chrdev_dir == IDETAPE_DIR_NONE) {
L
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2684 2685 2686 2687 2688 2689 2690
		if (tape->door_locked == DOOR_LOCKED) {
			if (idetape_create_prevent_cmd(drive, &pc, 0)) {
				if (!idetape_queue_pc_tail(drive, &pc))
					tape->door_locked = DOOR_UNLOCKED;
			}
		}
	}
2691
	clear_bit(IDETAPE_FLAG_BUSY, &tape->flags);
L
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2692 2693 2694 2695 2696 2697
	ide_tape_put(tape);
	unlock_kernel();
	return 0;
}

/*
2698
 * check the contents of the ATAPI IDENTIFY command results. We return:
L
Linus Torvalds 已提交
2699
 *
2700 2701
 * 1 - If the tape can be supported by us, based on the information we have so
 * far.
L
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2702
 *
2703
 * 0 - If this tape driver is not currently supported by us.
L
Linus Torvalds 已提交
2704
 */
2705
static int idetape_identify_device(ide_drive_t *drive)
L
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2706
{
2707
	u8 gcw[2], protocol, device_type, removable, packet_size;
L
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2708 2709 2710 2711

	if (drive->id_read == 0)
		return 1;

2712
	*((unsigned short *) &gcw) = drive->id->config;
L
Linus Torvalds 已提交
2713

2714 2715 2716 2717
	protocol	=   (gcw[1] & 0xC0) >> 6;
	device_type	=    gcw[1] & 0x1F;
	removable	= !!(gcw[0] & 0x80);
	packet_size	=    gcw[0] & 0x3;
L
Linus Torvalds 已提交
2718

2719 2720
	/* Check that we can support this device */
	if (protocol != 2)
2721
		printk(KERN_ERR "ide-tape: Protocol (0x%02x) is not ATAPI\n",
2722 2723
				protocol);
	else if (device_type != 1)
2724
		printk(KERN_ERR "ide-tape: Device type (0x%02x) is not set "
2725 2726
				"to tape\n", device_type);
	else if (!removable)
L
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2727
		printk(KERN_ERR "ide-tape: The removable flag is not set\n");
2728
	else if (packet_size != 0) {
2729 2730
		printk(KERN_ERR "ide-tape: Packet size (0x%02x) is not 12"
				" bytes\n", packet_size);
L
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2731 2732 2733 2734 2735
	} else
		return 1;
	return 0;
}

2736
static void idetape_get_inquiry_results(ide_drive_t *drive)
L
Linus Torvalds 已提交
2737 2738
{
	idetape_tape_t *tape = drive->driver_data;
2739
	struct ide_atapi_pc pc;
2740
	char fw_rev[6], vendor_id[10], product_id[18];
2741

L
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2742 2743
	idetape_create_inquiry_cmd(&pc);
	if (idetape_queue_pc_tail(drive, &pc)) {
2744 2745
		printk(KERN_ERR "ide-tape: %s: can't get INQUIRY results\n",
				tape->name);
L
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2746 2747
		return;
	}
2748 2749 2750
	memcpy(vendor_id, &pc.buf[8], 8);
	memcpy(product_id, &pc.buf[16], 16);
	memcpy(fw_rev, &pc.buf[32], 4);
2751 2752 2753 2754 2755

	ide_fixstring(vendor_id, 10, 0);
	ide_fixstring(product_id, 18, 0);
	ide_fixstring(fw_rev, 6, 0);

2756
	printk(KERN_INFO "ide-tape: %s <-> %s: %s %s rev %s\n",
2757
			drive->name, tape->name, vendor_id, product_id, fw_rev);
L
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2758 2759 2760
}

/*
2761 2762
 * Ask the tape about its various parameters. In particular, we will adjust our
 * data transfer buffer	size to the recommended value as returned by the tape.
L
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2763
 */
2764
static void idetape_get_mode_sense_results(ide_drive_t *drive)
L
Linus Torvalds 已提交
2765 2766
{
	idetape_tape_t *tape = drive->driver_data;
2767
	struct ide_atapi_pc pc;
2768 2769
	u8 *caps;
	u8 speed, max_speed;
2770

L
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2771 2772
	idetape_create_mode_sense_cmd(&pc, IDETAPE_CAPABILITIES_PAGE);
	if (idetape_queue_pc_tail(drive, &pc)) {
2773 2774
		printk(KERN_ERR "ide-tape: Can't get tape parameters - assuming"
				" some default values\n");
2775
		tape->blk_size = 512;
2776 2777 2778
		put_unaligned(52,   (u16 *)&tape->caps[12]);
		put_unaligned(540,  (u16 *)&tape->caps[14]);
		put_unaligned(6*52, (u16 *)&tape->caps[16]);
L
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2779 2780
		return;
	}
2781
	caps = pc.buf + 4 + pc.buf[3];
2782 2783 2784 2785

	/* convert to host order and save for later use */
	speed = be16_to_cpu(*(u16 *)&caps[14]);
	max_speed = be16_to_cpu(*(u16 *)&caps[8]);
L
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2786

2787 2788 2789 2790
	put_unaligned(max_speed, (u16 *)&caps[8]);
	put_unaligned(be16_to_cpu(*(u16 *)&caps[12]), (u16 *)&caps[12]);
	put_unaligned(speed, (u16 *)&caps[14]);
	put_unaligned(be16_to_cpu(*(u16 *)&caps[16]), (u16 *)&caps[16]);
L
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2791

2792 2793 2794 2795
	if (!speed) {
		printk(KERN_INFO "ide-tape: %s: invalid tape speed "
				"(assuming 650KB/sec)\n", drive->name);
		put_unaligned(650, (u16 *)&caps[14]);
L
Linus Torvalds 已提交
2796
	}
2797 2798 2799 2800
	if (!max_speed) {
		printk(KERN_INFO "ide-tape: %s: invalid max_speed "
				"(assuming 650KB/sec)\n", drive->name);
		put_unaligned(650, (u16 *)&caps[8]);
L
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2801 2802
	}

2803 2804
	memcpy(&tape->caps, caps, 20);
	if (caps[7] & 0x02)
2805
		tape->blk_size = 512;
2806
	else if (caps[7] & 0x04)
2807
		tape->blk_size = 1024;
L
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2808 2809
}

2810
#ifdef CONFIG_IDE_PROC_FS
2811
static void idetape_add_settings(ide_drive_t *drive)
L
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2812 2813 2814
{
	idetape_tape_t *tape = drive->driver_data;

2815 2816
	ide_add_setting(drive, "buffer", SETTING_READ, TYPE_SHORT, 0, 0xffff,
			1, 2, (u16 *)&tape->caps[16], NULL);
2817 2818 2819 2820 2821 2822 2823 2824 2825 2826 2827 2828
	ide_add_setting(drive, "pipeline_min", SETTING_RW, TYPE_INT, 1, 0xffff,
			tape->stage_size / 1024, 1, &tape->min_pipeline, NULL);
	ide_add_setting(drive, "pipeline", SETTING_RW, TYPE_INT, 1, 0xffff,
			tape->stage_size / 1024, 1, &tape->max_stages, NULL);
	ide_add_setting(drive, "pipeline_max", SETTING_RW, TYPE_INT, 1,	0xffff,
			tape->stage_size / 1024, 1, &tape->max_pipeline, NULL);
	ide_add_setting(drive, "pipeline_used",	SETTING_READ, TYPE_INT, 0,
			0xffff,	tape->stage_size / 1024, 1, &tape->nr_stages,
			NULL);
	ide_add_setting(drive, "pipeline_pending", SETTING_READ, TYPE_INT, 0,
			0xffff, tape->stage_size / 1024, 1,
			&tape->nr_pending_stages, NULL);
2829 2830
	ide_add_setting(drive, "speed", SETTING_READ, TYPE_SHORT, 0, 0xffff,
			1, 1, (u16 *)&tape->caps[14], NULL);
2831 2832 2833 2834 2835
	ide_add_setting(drive, "stage", SETTING_READ, TYPE_INT,	0, 0xffff, 1,
			1024, &tape->stage_size, NULL);
	ide_add_setting(drive, "tdsc", SETTING_RW, TYPE_INT, IDETAPE_DSC_RW_MIN,
			IDETAPE_DSC_RW_MAX, 1000, HZ, &tape->best_dsc_rw_freq,
			NULL);
2836 2837 2838 2839
	ide_add_setting(drive, "dsc_overlap", SETTING_RW, TYPE_BYTE, 0, 1, 1,
			1, &drive->dsc_overlap, NULL);
	ide_add_setting(drive, "avg_speed", SETTING_READ, TYPE_INT, 0, 0xffff,
			1, 1, &tape->avg_speed, NULL);
2840 2841
	ide_add_setting(drive, "debug_mask", SETTING_RW, TYPE_INT, 0, 0xffff, 1,
			1, &tape->debug_mask, NULL);
L
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2842
}
2843 2844 2845
#else
static inline void idetape_add_settings(ide_drive_t *drive) { ; }
#endif
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2846 2847

/*
2848
 * The function below is called to:
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2849
 *
2850 2851 2852 2853
 * 1. Initialize our various state variables.
 * 2. Ask the tape for its capabilities.
 * 3. Allocate a buffer which will be used for data transfer. The buffer size
 * is chosen based on the recommendation which we received in step 2.
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2854
 *
2855 2856
 * Note that at this point ide.c already assigned us an irq, so that we can
 * queue requests here and wait for their completion.
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2857
 */
2858
static void idetape_setup(ide_drive_t *drive, idetape_tape_t *tape, int minor)
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{
	unsigned long t1, tmid, tn, t;
	int speed;
	int stage_size;
2863
	u8 gcw[2];
L
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2864
	struct sysinfo si;
2865
	u16 *ctl = (u16 *)&tape->caps[12];
L
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2866

2867
	spin_lock_init(&tape->lock);
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2868
	drive->dsc_overlap = 1;
2869 2870 2871 2872
	if (drive->hwif->host_flags & IDE_HFLAG_NO_DSC) {
		printk(KERN_INFO "ide-tape: %s: disabling DSC overlap\n",
				 tape->name);
		drive->dsc_overlap = 0;
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2873 2874 2875 2876 2877 2878 2879 2880
	}
	/* Seagate Travan drives do not support DSC overlap. */
	if (strstr(drive->id->model, "Seagate STT3401"))
		drive->dsc_overlap = 0;
	tape->minor = minor;
	tape->name[0] = 'h';
	tape->name[1] = 't';
	tape->name[2] = '0' + minor;
2881
	tape->chrdev_dir = IDETAPE_DIR_NONE;
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2882 2883
	tape->pc = tape->pc_stack;
	*((unsigned short *) &gcw) = drive->id->config;
2884 2885 2886

	/* Command packet DRQ type */
	if (((gcw[0] & 0x60) >> 5) == 1)
2887
		set_bit(IDETAPE_FLAG_DRQ_INTERRUPT, &tape->flags);
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2888

2889 2890 2891
	tape->min_pipeline = 10;
	tape->max_pipeline = 10;
	tape->max_stages   = 10;
2892

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2893 2894
	idetape_get_inquiry_results(drive);
	idetape_get_mode_sense_results(drive);
2895
	ide_tape_get_bsize_from_bdesc(drive);
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2896
	tape->user_bs_factor = 1;
2897
	tape->stage_size = *ctl * tape->blk_size;
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2898 2899
	while (tape->stage_size > 0xffff) {
		printk(KERN_NOTICE "ide-tape: decreasing stage size\n");
2900
		*ctl /= 2;
2901
		tape->stage_size = *ctl * tape->blk_size;
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2902 2903 2904 2905 2906 2907 2908 2909
	}
	stage_size = tape->stage_size;
	tape->pages_per_stage = stage_size / PAGE_SIZE;
	if (stage_size % PAGE_SIZE) {
		tape->pages_per_stage++;
		tape->excess_bh_size = PAGE_SIZE - stage_size % PAGE_SIZE;
	}

2910 2911
	/* Select the "best" DSC read/write polling freq and pipeline size. */
	speed = max(*(u16 *)&tape->caps[14], *(u16 *)&tape->caps[8]);
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2912 2913 2914

	tape->max_stages = speed * 1000 * 10 / tape->stage_size;

2915
	/* Limit memory use for pipeline to 10% of physical memory */
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2916
	si_meminfo(&si);
2917 2918 2919 2920 2921
	if (tape->max_stages * tape->stage_size >
			si.totalram * si.mem_unit / 10)
		tape->max_stages =
			si.totalram * si.mem_unit / (10 * tape->stage_size);

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2922 2923
	tape->max_stages   = min(tape->max_stages, IDETAPE_MAX_PIPELINE_STAGES);
	tape->min_pipeline = min(tape->max_stages, IDETAPE_MIN_PIPELINE_STAGES);
2924 2925 2926 2927 2928 2929 2930
	tape->max_pipeline =
		min(tape->max_stages * 2, IDETAPE_MAX_PIPELINE_STAGES);
	if (tape->max_stages == 0) {
		tape->max_stages   = 1;
		tape->min_pipeline = 1;
		tape->max_pipeline = 1;
	}
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2931 2932

	t1 = (tape->stage_size * HZ) / (speed * 1000);
2933
	tmid = (*(u16 *)&tape->caps[16] * 32 * HZ) / (speed * 125);
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2934 2935 2936 2937 2938 2939 2940 2941
	tn = (IDETAPE_FIFO_THRESHOLD * tape->stage_size * HZ) / (speed * 1000);

	if (tape->max_stages)
		t = tn;
	else
		t = t1;

	/*
2942 2943
	 * Ensure that the number we got makes sense; limit it within
	 * IDETAPE_DSC_RW_MIN and IDETAPE_DSC_RW_MAX.
L
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2944
	 */
2945 2946 2947
	tape->best_dsc_rw_freq = max_t(unsigned long,
				min_t(unsigned long, t, IDETAPE_DSC_RW_MAX),
				IDETAPE_DSC_RW_MIN);
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2948 2949
	printk(KERN_INFO "ide-tape: %s <-> %s: %dKBps, %d*%dkB buffer, "
		"%dkB pipeline, %lums tDSC%s\n",
2950 2951
		drive->name, tape->name, *(u16 *)&tape->caps[14],
		(*(u16 *)&tape->caps[16] * 512) / tape->stage_size,
L
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2952 2953
		tape->stage_size / 1024,
		tape->max_stages * tape->stage_size / 1024,
2954
		tape->best_dsc_rw_freq * 1000 / HZ,
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2955 2956 2957 2958 2959
		drive->using_dma ? ", DMA":"");

	idetape_add_settings(drive);
}

2960
static void ide_tape_remove(ide_drive_t *drive)
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2961 2962 2963
{
	idetape_tape_t *tape = drive->driver_data;

2964
	ide_proc_unregister_driver(drive, tape->driver);
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2965 2966 2967 2968 2969 2970 2971 2972 2973 2974 2975 2976

	ide_unregister_region(tape->disk);

	ide_tape_put(tape);
}

static void ide_tape_release(struct kref *kref)
{
	struct ide_tape_obj *tape = to_ide_tape(kref);
	ide_drive_t *drive = tape->drive;
	struct gendisk *g = tape->disk;

2977 2978
	BUG_ON(tape->first_stage != NULL || tape->merge_stage_size);

L
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2979 2980
	drive->dsc_overlap = 0;
	drive->driver_data = NULL;
2981
	device_destroy(idetape_sysfs_class, MKDEV(IDETAPE_MAJOR, tape->minor));
2982 2983
	device_destroy(idetape_sysfs_class,
			MKDEV(IDETAPE_MAJOR, tape->minor + 128));
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2984 2985 2986 2987 2988 2989
	idetape_devs[tape->minor] = NULL;
	g->private_data = NULL;
	put_disk(g);
	kfree(tape);
}

2990
#ifdef CONFIG_IDE_PROC_FS
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2991 2992 2993 2994 2995 2996 2997 2998 2999 3000 3001 3002 3003 3004 3005 3006 3007 3008 3009
static int proc_idetape_read_name
	(char *page, char **start, off_t off, int count, int *eof, void *data)
{
	ide_drive_t	*drive = (ide_drive_t *) data;
	idetape_tape_t	*tape = drive->driver_data;
	char		*out = page;
	int		len;

	len = sprintf(out, "%s\n", tape->name);
	PROC_IDE_READ_RETURN(page, start, off, count, eof, len);
}

static ide_proc_entry_t idetape_proc[] = {
	{ "capacity",	S_IFREG|S_IRUGO,	proc_ide_read_capacity, NULL },
	{ "name",	S_IFREG|S_IRUGO,	proc_idetape_read_name,	NULL },
	{ NULL, 0, NULL, NULL }
};
#endif

3010
static int ide_tape_probe(ide_drive_t *);
L
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3011 3012

static ide_driver_t idetape_driver = {
3013
	.gen_driver = {
3014
		.owner		= THIS_MODULE,
3015 3016 3017
		.name		= "ide-tape",
		.bus		= &ide_bus_type,
	},
3018 3019
	.probe			= ide_tape_probe,
	.remove			= ide_tape_remove,
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3020 3021 3022 3023 3024 3025 3026
	.version		= IDETAPE_VERSION,
	.media			= ide_tape,
	.supports_dsc_overlap 	= 1,
	.do_request		= idetape_do_request,
	.end_request		= idetape_end_request,
	.error			= __ide_error,
	.abort			= __ide_abort,
3027
#ifdef CONFIG_IDE_PROC_FS
L
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3028
	.proc			= idetape_proc,
3029
#endif
L
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3030 3031
};

3032
/* Our character device supporting functions, passed to register_chrdev. */
3033
static const struct file_operations idetape_fops = {
L
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3034 3035 3036 3037 3038 3039 3040 3041 3042 3043 3044 3045 3046
	.owner		= THIS_MODULE,
	.read		= idetape_chrdev_read,
	.write		= idetape_chrdev_write,
	.ioctl		= idetape_chrdev_ioctl,
	.open		= idetape_chrdev_open,
	.release	= idetape_chrdev_release,
};

static int idetape_open(struct inode *inode, struct file *filp)
{
	struct gendisk *disk = inode->i_bdev->bd_disk;
	struct ide_tape_obj *tape;

3047 3048
	tape = ide_tape_get(disk);
	if (!tape)
L
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3049 3050 3051 3052 3053 3054 3055 3056 3057 3058 3059 3060 3061 3062 3063 3064 3065 3066 3067 3068 3069 3070 3071 3072 3073 3074 3075 3076 3077 3078 3079 3080 3081 3082
		return -ENXIO;

	return 0;
}

static int idetape_release(struct inode *inode, struct file *filp)
{
	struct gendisk *disk = inode->i_bdev->bd_disk;
	struct ide_tape_obj *tape = ide_tape_g(disk);

	ide_tape_put(tape);

	return 0;
}

static int idetape_ioctl(struct inode *inode, struct file *file,
			unsigned int cmd, unsigned long arg)
{
	struct block_device *bdev = inode->i_bdev;
	struct ide_tape_obj *tape = ide_tape_g(bdev->bd_disk);
	ide_drive_t *drive = tape->drive;
	int err = generic_ide_ioctl(drive, file, bdev, cmd, arg);
	if (err == -EINVAL)
		err = idetape_blkdev_ioctl(drive, cmd, arg);
	return err;
}

static struct block_device_operations idetape_block_ops = {
	.owner		= THIS_MODULE,
	.open		= idetape_open,
	.release	= idetape_release,
	.ioctl		= idetape_ioctl,
};

3083
static int ide_tape_probe(ide_drive_t *drive)
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3084 3085 3086 3087 3088 3089 3090 3091 3092 3093 3094
{
	idetape_tape_t *tape;
	struct gendisk *g;
	int minor;

	if (!strstr("ide-tape", drive->driver_req))
		goto failed;
	if (!drive->present)
		goto failed;
	if (drive->media != ide_tape)
		goto failed;
3095 3096 3097
	if (!idetape_identify_device(drive)) {
		printk(KERN_ERR "ide-tape: %s: not supported by this version of"
				" the driver\n", drive->name);
L
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3098 3099 3100
		goto failed;
	}
	if (drive->scsi) {
3101 3102
		printk(KERN_INFO "ide-tape: passing drive %s to ide-scsi"
				 " emulation.\n", drive->name);
L
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3103 3104
		goto failed;
	}
3105
	tape = kzalloc(sizeof(idetape_tape_t), GFP_KERNEL);
L
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3106
	if (tape == NULL) {
3107 3108
		printk(KERN_ERR "ide-tape: %s: Can't allocate a tape struct\n",
				drive->name);
L
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3109 3110 3111 3112 3113 3114 3115 3116 3117
		goto failed;
	}

	g = alloc_disk(1 << PARTN_BITS);
	if (!g)
		goto out_free_tape;

	ide_init_disk(g, drive);

3118
	ide_proc_register_driver(drive, &idetape_driver);
L
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3119 3120 3121 3122 3123 3124 3125 3126 3127 3128 3129

	kref_init(&tape->kref);

	tape->drive = drive;
	tape->driver = &idetape_driver;
	tape->disk = g;

	g->private_data = &tape->driver;

	drive->driver_data = tape;

3130
	mutex_lock(&idetape_ref_mutex);
L
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3131 3132 3133
	for (minor = 0; idetape_devs[minor]; minor++)
		;
	idetape_devs[minor] = tape;
3134
	mutex_unlock(&idetape_ref_mutex);
L
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3135 3136 3137

	idetape_setup(drive, tape, minor);

3138 3139 3140 3141
	device_create(idetape_sysfs_class, &drive->gendev,
		      MKDEV(IDETAPE_MAJOR, minor), "%s", tape->name);
	device_create(idetape_sysfs_class, &drive->gendev,
			MKDEV(IDETAPE_MAJOR, minor + 128), "n%s", tape->name);
3142

L
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3143 3144 3145 3146
	g->fops = &idetape_block_ops;
	ide_register_region(g);

	return 0;
3147

L
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3148 3149 3150
out_free_tape:
	kfree(tape);
failed:
3151
	return -ENODEV;
L
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3152 3153
}

3154
static void __exit idetape_exit(void)
L
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3155
{
3156
	driver_unregister(&idetape_driver.gen_driver);
3157
	class_destroy(idetape_sysfs_class);
L
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3158 3159 3160
	unregister_chrdev(IDETAPE_MAJOR, "ht");
}

3161
static int __init idetape_init(void)
L
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3162
{
3163 3164 3165 3166 3167 3168 3169 3170 3171
	int error = 1;
	idetape_sysfs_class = class_create(THIS_MODULE, "ide_tape");
	if (IS_ERR(idetape_sysfs_class)) {
		idetape_sysfs_class = NULL;
		printk(KERN_ERR "Unable to create sysfs class for ide tapes\n");
		error = -EBUSY;
		goto out;
	}

L
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3172
	if (register_chrdev(IDETAPE_MAJOR, "ht", &idetape_fops)) {
3173 3174
		printk(KERN_ERR "ide-tape: Failed to register chrdev"
				" interface\n");
3175 3176
		error = -EBUSY;
		goto out_free_class;
L
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3177
	}
3178 3179 3180 3181 3182 3183 3184 3185 3186 3187 3188 3189 3190

	error = driver_register(&idetape_driver.gen_driver);
	if (error)
		goto out_free_driver;

	return 0;

out_free_driver:
	driver_unregister(&idetape_driver.gen_driver);
out_free_class:
	class_destroy(idetape_sysfs_class);
out:
	return error;
L
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3191 3192
}

3193
MODULE_ALIAS("ide:*m-tape*");
L
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3194 3195 3196
module_init(idetape_init);
module_exit(idetape_exit);
MODULE_ALIAS_CHARDEV_MAJOR(IDETAPE_MAJOR);
3197 3198
MODULE_DESCRIPTION("ATAPI Streaming TAPE Driver");
MODULE_LICENSE("GPL");