xref: /openbmc/linux/drivers/usb/misc/adutux.c (revision 6e42a15803ddbeb3a6f8f64bf599398a0ef5912b)
103270634SSteven Haigh /*
203270634SSteven Haigh  * adutux - driver for ADU devices from Ontrak Control Systems
303270634SSteven Haigh  * This is an experimental driver. Use at your own risk.
403270634SSteven Haigh  * This driver is not supported by Ontrak Control Systems.
503270634SSteven Haigh  *
603270634SSteven Haigh  * Copyright (c) 2003 John Homppi (SCO, leave this notice here)
703270634SSteven Haigh  *
803270634SSteven Haigh  * This program is free software; you can redistribute it and/or
903270634SSteven Haigh  * modify it under the terms of the GNU General Public License as
1003270634SSteven Haigh  * published by the Free Software Foundation; either version 2 of
1103270634SSteven Haigh  * the License, or (at your option) any later version.
1203270634SSteven Haigh  *
1303270634SSteven Haigh  * derived from the Lego USB Tower driver 0.56:
1403270634SSteven Haigh  * Copyright (c) 2003 David Glance <davidgsf@sourceforge.net>
1503270634SSteven Haigh  *               2001 Juergen Stuber <stuber@loria.fr>
1603270634SSteven Haigh  * that was derived from USB Skeleton driver - 0.5
1703270634SSteven Haigh  * Copyright (c) 2001 Greg Kroah-Hartman (greg@kroah.com)
1803270634SSteven Haigh  *
1903270634SSteven Haigh  */
2003270634SSteven Haigh 
2103270634SSteven Haigh #include <linux/kernel.h>
2203270634SSteven Haigh #include <linux/errno.h>
2303270634SSteven Haigh #include <linux/init.h>
2403270634SSteven Haigh #include <linux/slab.h>
2503270634SSteven Haigh #include <linux/module.h>
2603270634SSteven Haigh #include <linux/usb.h>
278293c568SMatthias Kaehlcke #include <linux/mutex.h>
2840cf4833SLisa Nguyen #include <linux/uaccess.h>
2903270634SSteven Haigh 
3003270634SSteven Haigh #ifdef CONFIG_USB_DEBUG
3103270634SSteven Haigh static int debug = 5;
3203270634SSteven Haigh #else
3303270634SSteven Haigh static int debug = 1;
3403270634SSteven Haigh #endif
3503270634SSteven Haigh 
3603270634SSteven Haigh /* Use our own dbg macro */
3703270634SSteven Haigh #undef dbg
3803270634SSteven Haigh #define dbg(lvl, format, arg...)	\
3903270634SSteven Haigh do {								\
4003270634SSteven Haigh 	if (debug >= lvl)						\
41f45ba776SJoe Perches 		printk(KERN_DEBUG "%s: " format "\n", __FILE__, ##arg);	\
4203270634SSteven Haigh } while (0)
4303270634SSteven Haigh 
4403270634SSteven Haigh 
4503270634SSteven Haigh /* Version Information */
4603270634SSteven Haigh #define DRIVER_VERSION "v0.0.13"
4703270634SSteven Haigh #define DRIVER_AUTHOR "John Homppi"
4803270634SSteven Haigh #define DRIVER_DESC "adutux (see www.ontrak.net)"
4903270634SSteven Haigh 
5003270634SSteven Haigh /* Module parameters */
5103270634SSteven Haigh module_param(debug, int, S_IRUGO | S_IWUSR);
5203270634SSteven Haigh MODULE_PARM_DESC(debug, "Debug enabled or not");
5303270634SSteven Haigh 
5403270634SSteven Haigh /* Define these values to match your device */
5503270634SSteven Haigh #define ADU_VENDOR_ID 0x0a07
5603270634SSteven Haigh #define ADU_PRODUCT_ID 0x0064
5703270634SSteven Haigh 
5803270634SSteven Haigh /* table of devices that work with this driver */
5933b9e162SNémeth Márton static const struct usb_device_id device_table[] = {
6003270634SSteven Haigh 	{ USB_DEVICE(ADU_VENDOR_ID, ADU_PRODUCT_ID) },		/* ADU100 */
6103270634SSteven Haigh 	{ USB_DEVICE(ADU_VENDOR_ID, ADU_PRODUCT_ID+20) },	/* ADU120 */
6203270634SSteven Haigh 	{ USB_DEVICE(ADU_VENDOR_ID, ADU_PRODUCT_ID+30) },	/* ADU130 */
6303270634SSteven Haigh 	{ USB_DEVICE(ADU_VENDOR_ID, ADU_PRODUCT_ID+100) },	/* ADU200 */
6403270634SSteven Haigh 	{ USB_DEVICE(ADU_VENDOR_ID, ADU_PRODUCT_ID+108) },	/* ADU208 */
6503270634SSteven Haigh 	{ USB_DEVICE(ADU_VENDOR_ID, ADU_PRODUCT_ID+118) },	/* ADU218 */
6603270634SSteven Haigh 	{ } /* Terminating entry */
6703270634SSteven Haigh };
6803270634SSteven Haigh 
6903270634SSteven Haigh MODULE_DEVICE_TABLE(usb, device_table);
7003270634SSteven Haigh 
7103270634SSteven Haigh #ifdef CONFIG_USB_DYNAMIC_MINORS
7203270634SSteven Haigh #define ADU_MINOR_BASE	0
7303270634SSteven Haigh #else
7403270634SSteven Haigh #define ADU_MINOR_BASE	67
7503270634SSteven Haigh #endif
7603270634SSteven Haigh 
7703270634SSteven Haigh /* we can have up to this number of device plugged in at once */
7803270634SSteven Haigh #define MAX_DEVICES	16
7903270634SSteven Haigh 
8003270634SSteven Haigh #define COMMAND_TIMEOUT	(2*HZ)	/* 60 second timeout for a command */
8103270634SSteven Haigh 
82f08812d5SPete Zaitcev /*
83f08812d5SPete Zaitcev  * The locking scheme is a vanilla 3-lock:
84f08812d5SPete Zaitcev  *   adu_device.buflock: A spinlock, covers what IRQs touch.
85f08812d5SPete Zaitcev  *   adutux_mutex:       A Static lock to cover open_count. It would also cover
86f08812d5SPete Zaitcev  *                       any globals, but we don't have them in 2.6.
87f08812d5SPete Zaitcev  *   adu_device.mtx:     A mutex to hold across sleepers like copy_from_user.
88f08812d5SPete Zaitcev  *                       It covers all of adu_device, except the open_count
89f08812d5SPete Zaitcev  *                       and what .buflock covers.
90f08812d5SPete Zaitcev  */
91f08812d5SPete Zaitcev 
9203270634SSteven Haigh /* Structure to hold all of our device specific stuff */
9303270634SSteven Haigh struct adu_device {
94f08812d5SPete Zaitcev 	struct mutex		mtx;
9503270634SSteven Haigh 	struct usb_device *udev; /* save off the usb device pointer */
9603270634SSteven Haigh 	struct usb_interface *interface;
97f08812d5SPete Zaitcev 	unsigned int		minor; /* the starting minor number for this device */
9803270634SSteven Haigh 	char			serial_number[8];
9903270634SSteven Haigh 
10003270634SSteven Haigh 	int			open_count; /* number of times this port has been opened */
10103270634SSteven Haigh 
10203270634SSteven Haigh 	char		*read_buffer_primary;
10303270634SSteven Haigh 	int			read_buffer_length;
10403270634SSteven Haigh 	char		*read_buffer_secondary;
10503270634SSteven Haigh 	int			secondary_head;
10603270634SSteven Haigh 	int			secondary_tail;
10703270634SSteven Haigh 	spinlock_t		buflock;
10803270634SSteven Haigh 
10903270634SSteven Haigh 	wait_queue_head_t	read_wait;
11003270634SSteven Haigh 	wait_queue_head_t	write_wait;
11103270634SSteven Haigh 
11203270634SSteven Haigh 	char		*interrupt_in_buffer;
11303270634SSteven Haigh 	struct usb_endpoint_descriptor *interrupt_in_endpoint;
11403270634SSteven Haigh 	struct urb	*interrupt_in_urb;
11503270634SSteven Haigh 	int			read_urb_finished;
11603270634SSteven Haigh 
11703270634SSteven Haigh 	char		*interrupt_out_buffer;
11803270634SSteven Haigh 	struct usb_endpoint_descriptor *interrupt_out_endpoint;
11903270634SSteven Haigh 	struct urb	*interrupt_out_urb;
120f08812d5SPete Zaitcev 	int			out_urb_finished;
12103270634SSteven Haigh };
12203270634SSteven Haigh 
123f08812d5SPete Zaitcev static DEFINE_MUTEX(adutux_mutex);
124f08812d5SPete Zaitcev 
12503270634SSteven Haigh static struct usb_driver adu_driver;
12603270634SSteven Haigh 
12703270634SSteven Haigh static void adu_debug_data(int level, const char *function, int size,
12803270634SSteven Haigh 			   const unsigned char *data)
12903270634SSteven Haigh {
13003270634SSteven Haigh 	int i;
13103270634SSteven Haigh 
13203270634SSteven Haigh 	if (debug < level)
13303270634SSteven Haigh 		return;
13403270634SSteven Haigh 
135f45ba776SJoe Perches 	printk(KERN_DEBUG "%s: %s - length = %d, data = ",
136f45ba776SJoe Perches 	       __FILE__, function, size);
13703270634SSteven Haigh 	for (i = 0; i < size; ++i)
13803270634SSteven Haigh 		printk("%.2x ", data[i]);
13903270634SSteven Haigh 	printk("\n");
14003270634SSteven Haigh }
14103270634SSteven Haigh 
14203270634SSteven Haigh /**
14303270634SSteven Haigh  * adu_abort_transfers
14403270634SSteven Haigh  *      aborts transfers and frees associated data structures
14503270634SSteven Haigh  */
14603270634SSteven Haigh static void adu_abort_transfers(struct adu_device *dev)
14703270634SSteven Haigh {
148f08812d5SPete Zaitcev 	unsigned long flags;
14903270634SSteven Haigh 
15003270634SSteven Haigh 	if (dev->udev == NULL) {
151441b62c1SHarvey Harrison 		dbg(1, " %s : udev is null", __func__);
152*6e42a158SGreg Kroah-Hartman 		return;
15303270634SSteven Haigh 	}
15403270634SSteven Haigh 
15503270634SSteven Haigh 	/* shutdown transfer */
156f08812d5SPete Zaitcev 
157f08812d5SPete Zaitcev 	/* XXX Anchor these instead */
158f08812d5SPete Zaitcev 	spin_lock_irqsave(&dev->buflock, flags);
159f08812d5SPete Zaitcev 	if (!dev->read_urb_finished) {
160f08812d5SPete Zaitcev 		spin_unlock_irqrestore(&dev->buflock, flags);
161f08812d5SPete Zaitcev 		usb_kill_urb(dev->interrupt_in_urb);
162f08812d5SPete Zaitcev 	} else
163f08812d5SPete Zaitcev 		spin_unlock_irqrestore(&dev->buflock, flags);
164f08812d5SPete Zaitcev 
165f08812d5SPete Zaitcev 	spin_lock_irqsave(&dev->buflock, flags);
166f08812d5SPete Zaitcev 	if (!dev->out_urb_finished) {
167f08812d5SPete Zaitcev 		spin_unlock_irqrestore(&dev->buflock, flags);
168f08812d5SPete Zaitcev 		usb_kill_urb(dev->interrupt_out_urb);
169f08812d5SPete Zaitcev 	} else
170f08812d5SPete Zaitcev 		spin_unlock_irqrestore(&dev->buflock, flags);
17103270634SSteven Haigh }
17203270634SSteven Haigh 
17303270634SSteven Haigh static void adu_delete(struct adu_device *dev)
17403270634SSteven Haigh {
17503270634SSteven Haigh 	/* free data structures */
17603270634SSteven Haigh 	usb_free_urb(dev->interrupt_in_urb);
17703270634SSteven Haigh 	usb_free_urb(dev->interrupt_out_urb);
17803270634SSteven Haigh 	kfree(dev->read_buffer_primary);
17903270634SSteven Haigh 	kfree(dev->read_buffer_secondary);
18003270634SSteven Haigh 	kfree(dev->interrupt_in_buffer);
18103270634SSteven Haigh 	kfree(dev->interrupt_out_buffer);
18203270634SSteven Haigh 	kfree(dev);
18303270634SSteven Haigh }
18403270634SSteven Haigh 
1857d12e780SDavid Howells static void adu_interrupt_in_callback(struct urb *urb)
18603270634SSteven Haigh {
18703270634SSteven Haigh 	struct adu_device *dev = urb->context;
18824497a00SGreg Kroah-Hartman 	int status = urb->status;
18903270634SSteven Haigh 
190441b62c1SHarvey Harrison 	adu_debug_data(5, __func__, urb->actual_length,
19103270634SSteven Haigh 		       urb->transfer_buffer);
19203270634SSteven Haigh 
19303270634SSteven Haigh 	spin_lock(&dev->buflock);
19403270634SSteven Haigh 
19524497a00SGreg Kroah-Hartman 	if (status != 0) {
196f6c1ceaaSOliver Neukum 		if ((status != -ENOENT) && (status != -ECONNRESET) &&
197f6c1ceaaSOliver Neukum 			(status != -ESHUTDOWN)) {
19803270634SSteven Haigh 			dbg(1, " %s : nonzero status received: %d",
199441b62c1SHarvey Harrison 			    __func__, status);
20003270634SSteven Haigh 		}
20103270634SSteven Haigh 		goto exit;
20203270634SSteven Haigh 	}
20303270634SSteven Haigh 
20403270634SSteven Haigh 	if (urb->actual_length > 0 && dev->interrupt_in_buffer[0] != 0x00) {
20503270634SSteven Haigh 		if (dev->read_buffer_length <
20629cc8897SKuninori Morimoto 		    (4 * usb_endpoint_maxp(dev->interrupt_in_endpoint)) -
20703270634SSteven Haigh 		     (urb->actual_length)) {
20803270634SSteven Haigh 			memcpy (dev->read_buffer_primary +
20903270634SSteven Haigh 				dev->read_buffer_length,
21003270634SSteven Haigh 				dev->interrupt_in_buffer, urb->actual_length);
21103270634SSteven Haigh 
21203270634SSteven Haigh 			dev->read_buffer_length += urb->actual_length;
213441b62c1SHarvey Harrison 			dbg(2, " %s reading  %d ", __func__,
21403270634SSteven Haigh 			    urb->actual_length);
21503270634SSteven Haigh 		} else {
216441b62c1SHarvey Harrison 			dbg(1, " %s : read_buffer overflow", __func__);
21703270634SSteven Haigh 		}
21803270634SSteven Haigh 	}
21903270634SSteven Haigh 
22003270634SSteven Haigh exit:
22103270634SSteven Haigh 	dev->read_urb_finished = 1;
22203270634SSteven Haigh 	spin_unlock(&dev->buflock);
22303270634SSteven Haigh 	/* always wake up so we recover from errors */
22403270634SSteven Haigh 	wake_up_interruptible(&dev->read_wait);
225441b62c1SHarvey Harrison 	adu_debug_data(5, __func__, urb->actual_length,
22603270634SSteven Haigh 		       urb->transfer_buffer);
22703270634SSteven Haigh }
22803270634SSteven Haigh 
2297d12e780SDavid Howells static void adu_interrupt_out_callback(struct urb *urb)
23003270634SSteven Haigh {
23103270634SSteven Haigh 	struct adu_device *dev = urb->context;
23224497a00SGreg Kroah-Hartman 	int status = urb->status;
23303270634SSteven Haigh 
234441b62c1SHarvey Harrison 	adu_debug_data(5, __func__, urb->actual_length, urb->transfer_buffer);
23503270634SSteven Haigh 
23624497a00SGreg Kroah-Hartman 	if (status != 0) {
23724497a00SGreg Kroah-Hartman 		if ((status != -ENOENT) &&
23824497a00SGreg Kroah-Hartman 		    (status != -ECONNRESET)) {
23903270634SSteven Haigh 			dbg(1, " %s :nonzero status received: %d",
240441b62c1SHarvey Harrison 			    __func__, status);
24103270634SSteven Haigh 		}
24203270634SSteven Haigh 		goto exit;
24303270634SSteven Haigh 	}
24403270634SSteven Haigh 
245f08812d5SPete Zaitcev 	spin_lock(&dev->buflock);
246f08812d5SPete Zaitcev 	dev->out_urb_finished = 1;
247f08812d5SPete Zaitcev 	wake_up(&dev->write_wait);
248f08812d5SPete Zaitcev 	spin_unlock(&dev->buflock);
24903270634SSteven Haigh exit:
25003270634SSteven Haigh 
251441b62c1SHarvey Harrison 	adu_debug_data(5, __func__, urb->actual_length,
25203270634SSteven Haigh 		       urb->transfer_buffer);
25303270634SSteven Haigh }
25403270634SSteven Haigh 
25503270634SSteven Haigh static int adu_open(struct inode *inode, struct file *file)
25603270634SSteven Haigh {
25703270634SSteven Haigh 	struct adu_device *dev = NULL;
25803270634SSteven Haigh 	struct usb_interface *interface;
25903270634SSteven Haigh 	int subminor;
260f08812d5SPete Zaitcev 	int retval;
26103270634SSteven Haigh 
26203270634SSteven Haigh 	subminor = iminor(inode);
26303270634SSteven Haigh 
264e77c4e6aSLisa Nguyen 	retval = mutex_lock_interruptible(&adutux_mutex);
265e77c4e6aSLisa Nguyen 	if (retval) {
266441b62c1SHarvey Harrison 		dbg(2, "%s : mutex lock failed", __func__);
267f08812d5SPete Zaitcev 		goto exit_no_lock;
268f08812d5SPete Zaitcev 	}
269f08812d5SPete Zaitcev 
27003270634SSteven Haigh 	interface = usb_find_interface(&adu_driver, subminor);
27103270634SSteven Haigh 	if (!interface) {
272fd3f1917SGreg Kroah-Hartman 		printk(KERN_ERR "adutux: %s - error, can't find device for "
273fd3f1917SGreg Kroah-Hartman 		       "minor %d\n", __func__, subminor);
27403270634SSteven Haigh 		retval = -ENODEV;
27503270634SSteven Haigh 		goto exit_no_device;
27603270634SSteven Haigh 	}
27703270634SSteven Haigh 
27803270634SSteven Haigh 	dev = usb_get_intfdata(interface);
279f08812d5SPete Zaitcev 	if (!dev || !dev->udev) {
28003270634SSteven Haigh 		retval = -ENODEV;
28103270634SSteven Haigh 		goto exit_no_device;
28203270634SSteven Haigh 	}
28303270634SSteven Haigh 
284f08812d5SPete Zaitcev 	/* check that nobody else is using the device */
285f08812d5SPete Zaitcev 	if (dev->open_count) {
286f08812d5SPete Zaitcev 		retval = -EBUSY;
28703270634SSteven Haigh 		goto exit_no_device;
28803270634SSteven Haigh 	}
28903270634SSteven Haigh 
29003270634SSteven Haigh 	++dev->open_count;
291441b62c1SHarvey Harrison 	dbg(2, "%s : open count %d", __func__, dev->open_count);
29203270634SSteven Haigh 
29303270634SSteven Haigh 	/* save device in the file's private structure */
29403270634SSteven Haigh 	file->private_data = dev;
29503270634SSteven Haigh 
29603270634SSteven Haigh 	/* initialize in direction */
29703270634SSteven Haigh 	dev->read_buffer_length = 0;
29803270634SSteven Haigh 
29903270634SSteven Haigh 	/* fixup first read by having urb waiting for it */
30003270634SSteven Haigh 	usb_fill_int_urb(dev->interrupt_in_urb, dev->udev,
30103270634SSteven Haigh 			 usb_rcvintpipe(dev->udev,
30203270634SSteven Haigh 					dev->interrupt_in_endpoint->bEndpointAddress),
30303270634SSteven Haigh 			 dev->interrupt_in_buffer,
30429cc8897SKuninori Morimoto 			 usb_endpoint_maxp(dev->interrupt_in_endpoint),
30503270634SSteven Haigh 			 adu_interrupt_in_callback, dev,
30603270634SSteven Haigh 			 dev->interrupt_in_endpoint->bInterval);
30703270634SSteven Haigh 	dev->read_urb_finished = 0;
308f08812d5SPete Zaitcev 	if (usb_submit_urb(dev->interrupt_in_urb, GFP_KERNEL))
309f08812d5SPete Zaitcev 		dev->read_urb_finished = 1;
310f08812d5SPete Zaitcev 	/* we ignore failure */
311f08812d5SPete Zaitcev 	/* end of fixup for first read */
312f08812d5SPete Zaitcev 
313f08812d5SPete Zaitcev 	/* initialize out direction */
314f08812d5SPete Zaitcev 	dev->out_urb_finished = 1;
315f08812d5SPete Zaitcev 
316f08812d5SPete Zaitcev 	retval = 0;
31703270634SSteven Haigh 
31803270634SSteven Haigh exit_no_device:
319f08812d5SPete Zaitcev 	mutex_unlock(&adutux_mutex);
320f08812d5SPete Zaitcev exit_no_lock:
32103270634SSteven Haigh 	return retval;
32203270634SSteven Haigh }
32303270634SSteven Haigh 
324f08812d5SPete Zaitcev static void adu_release_internal(struct adu_device *dev)
32503270634SSteven Haigh {
32603270634SSteven Haigh 	/* decrement our usage count for the device */
32703270634SSteven Haigh 	--dev->open_count;
328441b62c1SHarvey Harrison 	dbg(2, " %s : open count %d", __func__, dev->open_count);
32903270634SSteven Haigh 	if (dev->open_count <= 0) {
33003270634SSteven Haigh 		adu_abort_transfers(dev);
33103270634SSteven Haigh 		dev->open_count = 0;
33203270634SSteven Haigh 	}
33303270634SSteven Haigh }
33403270634SSteven Haigh 
33503270634SSteven Haigh static int adu_release(struct inode *inode, struct file *file)
33603270634SSteven Haigh {
337f08812d5SPete Zaitcev 	struct adu_device *dev;
33803270634SSteven Haigh 	int retval = 0;
33903270634SSteven Haigh 
34003270634SSteven Haigh 	if (file == NULL) {
341441b62c1SHarvey Harrison 		dbg(1, " %s : file is NULL", __func__);
34203270634SSteven Haigh 		retval = -ENODEV;
34303270634SSteven Haigh 		goto exit;
34403270634SSteven Haigh 	}
34503270634SSteven Haigh 
34603270634SSteven Haigh 	dev = file->private_data;
34703270634SSteven Haigh 	if (dev == NULL) {
348441b62c1SHarvey Harrison 		dbg(1, " %s : object is NULL", __func__);
34903270634SSteven Haigh 		retval = -ENODEV;
35003270634SSteven Haigh 		goto exit;
35103270634SSteven Haigh 	}
35203270634SSteven Haigh 
353f08812d5SPete Zaitcev 	mutex_lock(&adutux_mutex); /* not interruptible */
35403270634SSteven Haigh 
35503270634SSteven Haigh 	if (dev->open_count <= 0) {
356441b62c1SHarvey Harrison 		dbg(1, " %s : device not opened", __func__);
35703270634SSteven Haigh 		retval = -ENODEV;
35846c9844cSJiri Slaby 		goto unlock;
35903270634SSteven Haigh 	}
36003270634SSteven Haigh 
361f08812d5SPete Zaitcev 	adu_release_internal(dev);
362d4ead16fSAlan Stern 	if (dev->udev == NULL) {
363d4ead16fSAlan Stern 		/* the device was unplugged before the file was released */
364f08812d5SPete Zaitcev 		if (!dev->open_count)	/* ... and we're the last user */
365d4ead16fSAlan Stern 			adu_delete(dev);
366d4ead16fSAlan Stern 	}
36746c9844cSJiri Slaby unlock:
368f08812d5SPete Zaitcev 	mutex_unlock(&adutux_mutex);
36946c9844cSJiri Slaby exit:
37003270634SSteven Haigh 	return retval;
37103270634SSteven Haigh }
37203270634SSteven Haigh 
37303270634SSteven Haigh static ssize_t adu_read(struct file *file, __user char *buffer, size_t count,
37403270634SSteven Haigh 			loff_t *ppos)
37503270634SSteven Haigh {
37603270634SSteven Haigh 	struct adu_device *dev;
37703270634SSteven Haigh 	size_t bytes_read = 0;
37803270634SSteven Haigh 	size_t bytes_to_read = count;
37903270634SSteven Haigh 	int i;
38003270634SSteven Haigh 	int retval = 0;
38103270634SSteven Haigh 	int timeout = 0;
38203270634SSteven Haigh 	int should_submit = 0;
38303270634SSteven Haigh 	unsigned long flags;
38403270634SSteven Haigh 	DECLARE_WAITQUEUE(wait, current);
38503270634SSteven Haigh 
38603270634SSteven Haigh 	dev = file->private_data;
3878293c568SMatthias Kaehlcke 	if (mutex_lock_interruptible(&dev->mtx))
38803270634SSteven Haigh 		return -ERESTARTSYS;
38903270634SSteven Haigh 
39003270634SSteven Haigh 	/* verify that the device wasn't unplugged */
391f08812d5SPete Zaitcev 	if (dev->udev == NULL) {
39203270634SSteven Haigh 		retval = -ENODEV;
393fd3f1917SGreg Kroah-Hartman 		printk(KERN_ERR "adutux: No device or device unplugged %d\n",
394fd3f1917SGreg Kroah-Hartman 		       retval);
39503270634SSteven Haigh 		goto exit;
39603270634SSteven Haigh 	}
39703270634SSteven Haigh 
39803270634SSteven Haigh 	/* verify that some data was requested */
39903270634SSteven Haigh 	if (count == 0) {
400441b62c1SHarvey Harrison 		dbg(1, " %s : read request of 0 bytes", __func__);
40103270634SSteven Haigh 		goto exit;
40203270634SSteven Haigh 	}
40303270634SSteven Haigh 
40403270634SSteven Haigh 	timeout = COMMAND_TIMEOUT;
405441b62c1SHarvey Harrison 	dbg(2, " %s : about to start looping", __func__);
40603270634SSteven Haigh 	while (bytes_to_read) {
40703270634SSteven Haigh 		int data_in_secondary = dev->secondary_tail - dev->secondary_head;
40803270634SSteven Haigh 		dbg(2, " %s : while, data_in_secondary=%d, status=%d",
409441b62c1SHarvey Harrison 		    __func__, data_in_secondary,
41003270634SSteven Haigh 		    dev->interrupt_in_urb->status);
41103270634SSteven Haigh 
41203270634SSteven Haigh 		if (data_in_secondary) {
41303270634SSteven Haigh 			/* drain secondary buffer */
41403270634SSteven Haigh 			int amount = bytes_to_read < data_in_secondary ? bytes_to_read : data_in_secondary;
41503270634SSteven Haigh 			i = copy_to_user(buffer, dev->read_buffer_secondary+dev->secondary_head, amount);
4161865a9c3SKulikov Vasiliy 			if (i) {
41703270634SSteven Haigh 				retval = -EFAULT;
41803270634SSteven Haigh 				goto exit;
41903270634SSteven Haigh 			}
42003270634SSteven Haigh 			dev->secondary_head += (amount - i);
42103270634SSteven Haigh 			bytes_read += (amount - i);
42203270634SSteven Haigh 			bytes_to_read -= (amount - i);
42303270634SSteven Haigh 			if (i) {
42403270634SSteven Haigh 				retval = bytes_read ? bytes_read : -EFAULT;
42503270634SSteven Haigh 				goto exit;
42603270634SSteven Haigh 			}
42703270634SSteven Haigh 		} else {
42803270634SSteven Haigh 			/* we check the primary buffer */
42903270634SSteven Haigh 			spin_lock_irqsave (&dev->buflock, flags);
43003270634SSteven Haigh 			if (dev->read_buffer_length) {
43103270634SSteven Haigh 				/* we secure access to the primary */
43203270634SSteven Haigh 				char *tmp;
43303270634SSteven Haigh 				dbg(2, " %s : swap, read_buffer_length = %d",
434441b62c1SHarvey Harrison 				    __func__, dev->read_buffer_length);
43503270634SSteven Haigh 				tmp = dev->read_buffer_secondary;
43603270634SSteven Haigh 				dev->read_buffer_secondary = dev->read_buffer_primary;
43703270634SSteven Haigh 				dev->read_buffer_primary = tmp;
43803270634SSteven Haigh 				dev->secondary_head = 0;
43903270634SSteven Haigh 				dev->secondary_tail = dev->read_buffer_length;
44003270634SSteven Haigh 				dev->read_buffer_length = 0;
44103270634SSteven Haigh 				spin_unlock_irqrestore(&dev->buflock, flags);
44203270634SSteven Haigh 				/* we have a free buffer so use it */
44303270634SSteven Haigh 				should_submit = 1;
44403270634SSteven Haigh 			} else {
44503270634SSteven Haigh 				/* even the primary was empty - we may need to do IO */
446f08812d5SPete Zaitcev 				if (!dev->read_urb_finished) {
44703270634SSteven Haigh 					/* somebody is doing IO */
44803270634SSteven Haigh 					spin_unlock_irqrestore(&dev->buflock, flags);
449441b62c1SHarvey Harrison 					dbg(2, " %s : submitted already", __func__);
45003270634SSteven Haigh 				} else {
45103270634SSteven Haigh 					/* we must initiate input */
452441b62c1SHarvey Harrison 					dbg(2, " %s : initiate input", __func__);
45303270634SSteven Haigh 					dev->read_urb_finished = 0;
454f08812d5SPete Zaitcev 					spin_unlock_irqrestore(&dev->buflock, flags);
45503270634SSteven Haigh 
45603270634SSteven Haigh 					usb_fill_int_urb(dev->interrupt_in_urb, dev->udev,
45703270634SSteven Haigh 							usb_rcvintpipe(dev->udev,
45803270634SSteven Haigh 								dev->interrupt_in_endpoint->bEndpointAddress),
45903270634SSteven Haigh 							 dev->interrupt_in_buffer,
46029cc8897SKuninori Morimoto 							 usb_endpoint_maxp(dev->interrupt_in_endpoint),
46103270634SSteven Haigh 							 adu_interrupt_in_callback,
46203270634SSteven Haigh 							 dev,
46303270634SSteven Haigh 							 dev->interrupt_in_endpoint->bInterval);
464f08812d5SPete Zaitcev 					retval = usb_submit_urb(dev->interrupt_in_urb, GFP_KERNEL);
465f08812d5SPete Zaitcev 					if (retval) {
466f08812d5SPete Zaitcev 						dev->read_urb_finished = 1;
46703270634SSteven Haigh 						if (retval == -ENOMEM) {
46803270634SSteven Haigh 							retval = bytes_read ? bytes_read : -ENOMEM;
46903270634SSteven Haigh 						}
470441b62c1SHarvey Harrison 						dbg(2, " %s : submit failed", __func__);
47103270634SSteven Haigh 						goto exit;
47203270634SSteven Haigh 					}
47303270634SSteven Haigh 				}
47403270634SSteven Haigh 
47503270634SSteven Haigh 				/* we wait for I/O to complete */
47603270634SSteven Haigh 				set_current_state(TASK_INTERRUPTIBLE);
47703270634SSteven Haigh 				add_wait_queue(&dev->read_wait, &wait);
478f08812d5SPete Zaitcev 				spin_lock_irqsave(&dev->buflock, flags);
479f08812d5SPete Zaitcev 				if (!dev->read_urb_finished) {
480f08812d5SPete Zaitcev 					spin_unlock_irqrestore(&dev->buflock, flags);
48103270634SSteven Haigh 					timeout = schedule_timeout(COMMAND_TIMEOUT);
482f08812d5SPete Zaitcev 				} else {
483f08812d5SPete Zaitcev 					spin_unlock_irqrestore(&dev->buflock, flags);
48403270634SSteven Haigh 					set_current_state(TASK_RUNNING);
485f08812d5SPete Zaitcev 				}
48603270634SSteven Haigh 				remove_wait_queue(&dev->read_wait, &wait);
48703270634SSteven Haigh 
48803270634SSteven Haigh 				if (timeout <= 0) {
489441b62c1SHarvey Harrison 					dbg(2, " %s : timeout", __func__);
49003270634SSteven Haigh 					retval = bytes_read ? bytes_read : -ETIMEDOUT;
49103270634SSteven Haigh 					goto exit;
49203270634SSteven Haigh 				}
49303270634SSteven Haigh 
49403270634SSteven Haigh 				if (signal_pending(current)) {
495441b62c1SHarvey Harrison 					dbg(2, " %s : signal pending", __func__);
49603270634SSteven Haigh 					retval = bytes_read ? bytes_read : -EINTR;
49703270634SSteven Haigh 					goto exit;
49803270634SSteven Haigh 				}
49903270634SSteven Haigh 			}
50003270634SSteven Haigh 		}
50103270634SSteven Haigh 	}
50203270634SSteven Haigh 
50303270634SSteven Haigh 	retval = bytes_read;
50403270634SSteven Haigh 	/* if the primary buffer is empty then use it */
505f08812d5SPete Zaitcev 	spin_lock_irqsave(&dev->buflock, flags);
506f08812d5SPete Zaitcev 	if (should_submit && dev->read_urb_finished) {
507f08812d5SPete Zaitcev 		dev->read_urb_finished = 0;
508f08812d5SPete Zaitcev 		spin_unlock_irqrestore(&dev->buflock, flags);
50903270634SSteven Haigh 		usb_fill_int_urb(dev->interrupt_in_urb, dev->udev,
51003270634SSteven Haigh 				 usb_rcvintpipe(dev->udev,
51103270634SSteven Haigh 					dev->interrupt_in_endpoint->bEndpointAddress),
51203270634SSteven Haigh 				dev->interrupt_in_buffer,
51329cc8897SKuninori Morimoto 				usb_endpoint_maxp(dev->interrupt_in_endpoint),
51403270634SSteven Haigh 				adu_interrupt_in_callback,
51503270634SSteven Haigh 				dev,
51603270634SSteven Haigh 				dev->interrupt_in_endpoint->bInterval);
517f08812d5SPete Zaitcev 		if (usb_submit_urb(dev->interrupt_in_urb, GFP_KERNEL) != 0)
518f08812d5SPete Zaitcev 			dev->read_urb_finished = 1;
51903270634SSteven Haigh 		/* we ignore failure */
520f08812d5SPete Zaitcev 	} else {
521f08812d5SPete Zaitcev 		spin_unlock_irqrestore(&dev->buflock, flags);
52203270634SSteven Haigh 	}
52303270634SSteven Haigh 
52403270634SSteven Haigh exit:
52503270634SSteven Haigh 	/* unlock the device */
5268293c568SMatthias Kaehlcke 	mutex_unlock(&dev->mtx);
52703270634SSteven Haigh 
52803270634SSteven Haigh 	return retval;
52903270634SSteven Haigh }
53003270634SSteven Haigh 
53103270634SSteven Haigh static ssize_t adu_write(struct file *file, const __user char *buffer,
53203270634SSteven Haigh 			 size_t count, loff_t *ppos)
53303270634SSteven Haigh {
534f08812d5SPete Zaitcev 	DECLARE_WAITQUEUE(waita, current);
53503270634SSteven Haigh 	struct adu_device *dev;
53603270634SSteven Haigh 	size_t bytes_written = 0;
53703270634SSteven Haigh 	size_t bytes_to_write;
53803270634SSteven Haigh 	size_t buffer_size;
539f08812d5SPete Zaitcev 	unsigned long flags;
540ebc3ac14SOliver Neukum 	int retval;
54103270634SSteven Haigh 
54203270634SSteven Haigh 	dev = file->private_data;
54303270634SSteven Haigh 
5448293c568SMatthias Kaehlcke 	retval = mutex_lock_interruptible(&dev->mtx);
545ebc3ac14SOliver Neukum 	if (retval)
546ebc3ac14SOliver Neukum 		goto exit_nolock;
54703270634SSteven Haigh 
54803270634SSteven Haigh 	/* verify that the device wasn't unplugged */
549f08812d5SPete Zaitcev 	if (dev->udev == NULL) {
55003270634SSteven Haigh 		retval = -ENODEV;
551fd3f1917SGreg Kroah-Hartman 		printk(KERN_ERR "adutux: No device or device unplugged %d\n",
552fd3f1917SGreg Kroah-Hartman 		       retval);
55303270634SSteven Haigh 		goto exit;
55403270634SSteven Haigh 	}
55503270634SSteven Haigh 
55603270634SSteven Haigh 	/* verify that we actually have some data to write */
55703270634SSteven Haigh 	if (count == 0) {
558441b62c1SHarvey Harrison 		dbg(1, " %s : write request of 0 bytes", __func__);
55903270634SSteven Haigh 		goto exit;
56003270634SSteven Haigh 	}
56103270634SSteven Haigh 
56203270634SSteven Haigh 	while (count > 0) {
563f08812d5SPete Zaitcev 		add_wait_queue(&dev->write_wait, &waita);
564f08812d5SPete Zaitcev 		set_current_state(TASK_INTERRUPTIBLE);
565f08812d5SPete Zaitcev 		spin_lock_irqsave(&dev->buflock, flags);
566f08812d5SPete Zaitcev 		if (!dev->out_urb_finished) {
567f08812d5SPete Zaitcev 			spin_unlock_irqrestore(&dev->buflock, flags);
56803270634SSteven Haigh 
569f08812d5SPete Zaitcev 			mutex_unlock(&dev->mtx);
57003270634SSteven Haigh 			if (signal_pending(current)) {
571441b62c1SHarvey Harrison 				dbg(1, " %s : interrupted", __func__);
572f08812d5SPete Zaitcev 				set_current_state(TASK_RUNNING);
57303270634SSteven Haigh 				retval = -EINTR;
574f08812d5SPete Zaitcev 				goto exit_onqueue;
57503270634SSteven Haigh 			}
576f08812d5SPete Zaitcev 			if (schedule_timeout(COMMAND_TIMEOUT) == 0) {
577441b62c1SHarvey Harrison 				dbg(1, "%s - command timed out.", __func__);
578f08812d5SPete Zaitcev 				retval = -ETIMEDOUT;
579f08812d5SPete Zaitcev 				goto exit_onqueue;
580f08812d5SPete Zaitcev 			}
581f08812d5SPete Zaitcev 			remove_wait_queue(&dev->write_wait, &waita);
5828293c568SMatthias Kaehlcke 			retval = mutex_lock_interruptible(&dev->mtx);
583ebc3ac14SOliver Neukum 			if (retval) {
584ebc3ac14SOliver Neukum 				retval = bytes_written ? bytes_written : retval;
585ebc3ac14SOliver Neukum 				goto exit_nolock;
586ebc3ac14SOliver Neukum 			}
58703270634SSteven Haigh 
588441b62c1SHarvey Harrison 			dbg(4, " %s : in progress, count = %Zd", __func__, count);
58903270634SSteven Haigh 		} else {
590f08812d5SPete Zaitcev 			spin_unlock_irqrestore(&dev->buflock, flags);
591f08812d5SPete Zaitcev 			set_current_state(TASK_RUNNING);
592f08812d5SPete Zaitcev 			remove_wait_queue(&dev->write_wait, &waita);
593441b62c1SHarvey Harrison 			dbg(4, " %s : sending, count = %Zd", __func__, count);
59403270634SSteven Haigh 
59503270634SSteven Haigh 			/* write the data into interrupt_out_buffer from userspace */
59629cc8897SKuninori Morimoto 			buffer_size = usb_endpoint_maxp(dev->interrupt_out_endpoint);
59703270634SSteven Haigh 			bytes_to_write = count > buffer_size ? buffer_size : count;
59803270634SSteven Haigh 			dbg(4, " %s : buffer_size = %Zd, count = %Zd, bytes_to_write = %Zd",
599441b62c1SHarvey Harrison 			    __func__, buffer_size, count, bytes_to_write);
60003270634SSteven Haigh 
60103270634SSteven Haigh 			if (copy_from_user(dev->interrupt_out_buffer, buffer, bytes_to_write) != 0) {
60203270634SSteven Haigh 				retval = -EFAULT;
60303270634SSteven Haigh 				goto exit;
60403270634SSteven Haigh 			}
60503270634SSteven Haigh 
60603270634SSteven Haigh 			/* send off the urb */
60703270634SSteven Haigh 			usb_fill_int_urb(
60803270634SSteven Haigh 				dev->interrupt_out_urb,
60903270634SSteven Haigh 				dev->udev,
61003270634SSteven Haigh 				usb_sndintpipe(dev->udev, dev->interrupt_out_endpoint->bEndpointAddress),
61103270634SSteven Haigh 				dev->interrupt_out_buffer,
61203270634SSteven Haigh 				bytes_to_write,
61303270634SSteven Haigh 				adu_interrupt_out_callback,
61403270634SSteven Haigh 				dev,
615f08812d5SPete Zaitcev 				dev->interrupt_out_endpoint->bInterval);
61603270634SSteven Haigh 			dev->interrupt_out_urb->actual_length = bytes_to_write;
617f08812d5SPete Zaitcev 			dev->out_urb_finished = 0;
61803270634SSteven Haigh 			retval = usb_submit_urb(dev->interrupt_out_urb, GFP_KERNEL);
61903270634SSteven Haigh 			if (retval < 0) {
620f08812d5SPete Zaitcev 				dev->out_urb_finished = 1;
621fd3f1917SGreg Kroah-Hartman 				dev_err(&dev->udev->dev, "Couldn't submit "
622fd3f1917SGreg Kroah-Hartman 					"interrupt_out_urb %d\n", retval);
62303270634SSteven Haigh 				goto exit;
62403270634SSteven Haigh 			}
62503270634SSteven Haigh 
62603270634SSteven Haigh 			buffer += bytes_to_write;
62703270634SSteven Haigh 			count -= bytes_to_write;
62803270634SSteven Haigh 
62903270634SSteven Haigh 			bytes_written += bytes_to_write;
63003270634SSteven Haigh 		}
63103270634SSteven Haigh 	}
632f08812d5SPete Zaitcev 	mutex_unlock(&dev->mtx);
633f08812d5SPete Zaitcev 	return bytes_written;
63403270634SSteven Haigh 
63503270634SSteven Haigh exit:
6368293c568SMatthias Kaehlcke 	mutex_unlock(&dev->mtx);
637ebc3ac14SOliver Neukum exit_nolock:
638f08812d5SPete Zaitcev 	return retval;
63903270634SSteven Haigh 
640f08812d5SPete Zaitcev exit_onqueue:
641f08812d5SPete Zaitcev 	remove_wait_queue(&dev->write_wait, &waita);
64203270634SSteven Haigh 	return retval;
64303270634SSteven Haigh }
64403270634SSteven Haigh 
64503270634SSteven Haigh /* file operations needed when we register this driver */
64600977a59SArjan van de Ven static const struct file_operations adu_fops = {
64703270634SSteven Haigh 	.owner = THIS_MODULE,
64803270634SSteven Haigh 	.read  = adu_read,
64903270634SSteven Haigh 	.write = adu_write,
65003270634SSteven Haigh 	.open = adu_open,
65103270634SSteven Haigh 	.release = adu_release,
6526038f373SArnd Bergmann 	.llseek = noop_llseek,
65303270634SSteven Haigh };
65403270634SSteven Haigh 
65503270634SSteven Haigh /*
65603270634SSteven Haigh  * usb class driver info in order to get a minor number from the usb core,
65703270634SSteven Haigh  * and to have the device registered with devfs and the driver core
65803270634SSteven Haigh  */
65903270634SSteven Haigh static struct usb_class_driver adu_class = {
66003270634SSteven Haigh 	.name = "usb/adutux%d",
66103270634SSteven Haigh 	.fops = &adu_fops,
66203270634SSteven Haigh 	.minor_base = ADU_MINOR_BASE,
66303270634SSteven Haigh };
66403270634SSteven Haigh 
66503270634SSteven Haigh /**
66603270634SSteven Haigh  * adu_probe
66703270634SSteven Haigh  *
66803270634SSteven Haigh  * Called by the usb core when a new device is connected that it thinks
66903270634SSteven Haigh  * this driver might be interested in.
67003270634SSteven Haigh  */
67103270634SSteven Haigh static int adu_probe(struct usb_interface *interface,
67203270634SSteven Haigh 		     const struct usb_device_id *id)
67303270634SSteven Haigh {
67403270634SSteven Haigh 	struct usb_device *udev = interface_to_usbdev(interface);
67503270634SSteven Haigh 	struct adu_device *dev = NULL;
67603270634SSteven Haigh 	struct usb_host_interface *iface_desc;
67703270634SSteven Haigh 	struct usb_endpoint_descriptor *endpoint;
67803270634SSteven Haigh 	int retval = -ENODEV;
67903270634SSteven Haigh 	int in_end_size;
68003270634SSteven Haigh 	int out_end_size;
68103270634SSteven Haigh 	int i;
68203270634SSteven Haigh 
68303270634SSteven Haigh 	if (udev == NULL) {
68403270634SSteven Haigh 		dev_err(&interface->dev, "udev is NULL.\n");
68503270634SSteven Haigh 		goto exit;
68603270634SSteven Haigh 	}
68703270634SSteven Haigh 
688b595076aSUwe Kleine-König 	/* allocate memory for our device state and initialize it */
68903270634SSteven Haigh 	dev = kzalloc(sizeof(struct adu_device), GFP_KERNEL);
69003270634SSteven Haigh 	if (dev == NULL) {
69103270634SSteven Haigh 		dev_err(&interface->dev, "Out of memory\n");
69203270634SSteven Haigh 		retval = -ENOMEM;
69303270634SSteven Haigh 		goto exit;
69403270634SSteven Haigh 	}
69503270634SSteven Haigh 
6968293c568SMatthias Kaehlcke 	mutex_init(&dev->mtx);
69703270634SSteven Haigh 	spin_lock_init(&dev->buflock);
69803270634SSteven Haigh 	dev->udev = udev;
69903270634SSteven Haigh 	init_waitqueue_head(&dev->read_wait);
70003270634SSteven Haigh 	init_waitqueue_head(&dev->write_wait);
70103270634SSteven Haigh 
70203270634SSteven Haigh 	iface_desc = &interface->altsetting[0];
70303270634SSteven Haigh 
70403270634SSteven Haigh 	/* set up the endpoint information */
70503270634SSteven Haigh 	for (i = 0; i < iface_desc->desc.bNumEndpoints; ++i) {
70603270634SSteven Haigh 		endpoint = &iface_desc->endpoint[i].desc;
70703270634SSteven Haigh 
70803270634SSteven Haigh 		if (usb_endpoint_is_int_in(endpoint))
70903270634SSteven Haigh 			dev->interrupt_in_endpoint = endpoint;
71003270634SSteven Haigh 
71103270634SSteven Haigh 		if (usb_endpoint_is_int_out(endpoint))
71203270634SSteven Haigh 			dev->interrupt_out_endpoint = endpoint;
71303270634SSteven Haigh 	}
71403270634SSteven Haigh 	if (dev->interrupt_in_endpoint == NULL) {
71503270634SSteven Haigh 		dev_err(&interface->dev, "interrupt in endpoint not found\n");
71603270634SSteven Haigh 		goto error;
71703270634SSteven Haigh 	}
71803270634SSteven Haigh 	if (dev->interrupt_out_endpoint == NULL) {
71903270634SSteven Haigh 		dev_err(&interface->dev, "interrupt out endpoint not found\n");
72003270634SSteven Haigh 		goto error;
72103270634SSteven Haigh 	}
72203270634SSteven Haigh 
72329cc8897SKuninori Morimoto 	in_end_size = usb_endpoint_maxp(dev->interrupt_in_endpoint);
72429cc8897SKuninori Morimoto 	out_end_size = usb_endpoint_maxp(dev->interrupt_out_endpoint);
72503270634SSteven Haigh 
72603270634SSteven Haigh 	dev->read_buffer_primary = kmalloc((4 * in_end_size), GFP_KERNEL);
72703270634SSteven Haigh 	if (!dev->read_buffer_primary) {
72803270634SSteven Haigh 		dev_err(&interface->dev, "Couldn't allocate read_buffer_primary\n");
72903270634SSteven Haigh 		retval = -ENOMEM;
73003270634SSteven Haigh 		goto error;
73103270634SSteven Haigh 	}
73203270634SSteven Haigh 
73303270634SSteven Haigh 	/* debug code prime the buffer */
73403270634SSteven Haigh 	memset(dev->read_buffer_primary, 'a', in_end_size);
73503270634SSteven Haigh 	memset(dev->read_buffer_primary + in_end_size, 'b', in_end_size);
73603270634SSteven Haigh 	memset(dev->read_buffer_primary + (2 * in_end_size), 'c', in_end_size);
73703270634SSteven Haigh 	memset(dev->read_buffer_primary + (3 * in_end_size), 'd', in_end_size);
73803270634SSteven Haigh 
73903270634SSteven Haigh 	dev->read_buffer_secondary = kmalloc((4 * in_end_size), GFP_KERNEL);
74003270634SSteven Haigh 	if (!dev->read_buffer_secondary) {
74103270634SSteven Haigh 		dev_err(&interface->dev, "Couldn't allocate read_buffer_secondary\n");
74203270634SSteven Haigh 		retval = -ENOMEM;
74303270634SSteven Haigh 		goto error;
74403270634SSteven Haigh 	}
74503270634SSteven Haigh 
74603270634SSteven Haigh 	/* debug code prime the buffer */
74703270634SSteven Haigh 	memset(dev->read_buffer_secondary, 'e', in_end_size);
74803270634SSteven Haigh 	memset(dev->read_buffer_secondary + in_end_size, 'f', in_end_size);
74903270634SSteven Haigh 	memset(dev->read_buffer_secondary + (2 * in_end_size), 'g', in_end_size);
75003270634SSteven Haigh 	memset(dev->read_buffer_secondary + (3 * in_end_size), 'h', in_end_size);
75103270634SSteven Haigh 
75203270634SSteven Haigh 	dev->interrupt_in_buffer = kmalloc(in_end_size, GFP_KERNEL);
75303270634SSteven Haigh 	if (!dev->interrupt_in_buffer) {
75403270634SSteven Haigh 		dev_err(&interface->dev, "Couldn't allocate interrupt_in_buffer\n");
75503270634SSteven Haigh 		goto error;
75603270634SSteven Haigh 	}
75703270634SSteven Haigh 
75803270634SSteven Haigh 	/* debug code prime the buffer */
75903270634SSteven Haigh 	memset(dev->interrupt_in_buffer, 'i', in_end_size);
76003270634SSteven Haigh 
76103270634SSteven Haigh 	dev->interrupt_in_urb = usb_alloc_urb(0, GFP_KERNEL);
76203270634SSteven Haigh 	if (!dev->interrupt_in_urb) {
76303270634SSteven Haigh 		dev_err(&interface->dev, "Couldn't allocate interrupt_in_urb\n");
76403270634SSteven Haigh 		goto error;
76503270634SSteven Haigh 	}
76603270634SSteven Haigh 	dev->interrupt_out_buffer = kmalloc(out_end_size, GFP_KERNEL);
76703270634SSteven Haigh 	if (!dev->interrupt_out_buffer) {
76803270634SSteven Haigh 		dev_err(&interface->dev, "Couldn't allocate interrupt_out_buffer\n");
76903270634SSteven Haigh 		goto error;
77003270634SSteven Haigh 	}
77103270634SSteven Haigh 	dev->interrupt_out_urb = usb_alloc_urb(0, GFP_KERNEL);
77203270634SSteven Haigh 	if (!dev->interrupt_out_urb) {
77303270634SSteven Haigh 		dev_err(&interface->dev, "Couldn't allocate interrupt_out_urb\n");
77403270634SSteven Haigh 		goto error;
77503270634SSteven Haigh 	}
77603270634SSteven Haigh 
77703270634SSteven Haigh 	if (!usb_string(udev, udev->descriptor.iSerialNumber, dev->serial_number,
77803270634SSteven Haigh 			sizeof(dev->serial_number))) {
77903270634SSteven Haigh 		dev_err(&interface->dev, "Could not retrieve serial number\n");
78003270634SSteven Haigh 		goto error;
78103270634SSteven Haigh 	}
782441b62c1SHarvey Harrison 	dbg(2, " %s : serial_number=%s", __func__, dev->serial_number);
78303270634SSteven Haigh 
78403270634SSteven Haigh 	/* we can register the device now, as it is ready */
78503270634SSteven Haigh 	usb_set_intfdata(interface, dev);
78603270634SSteven Haigh 
78703270634SSteven Haigh 	retval = usb_register_dev(interface, &adu_class);
78803270634SSteven Haigh 
78903270634SSteven Haigh 	if (retval) {
79003270634SSteven Haigh 		/* something prevented us from registering this driver */
79103270634SSteven Haigh 		dev_err(&interface->dev, "Not able to get a minor for this device.\n");
79203270634SSteven Haigh 		usb_set_intfdata(interface, NULL);
79303270634SSteven Haigh 		goto error;
79403270634SSteven Haigh 	}
79503270634SSteven Haigh 
79603270634SSteven Haigh 	dev->minor = interface->minor;
79703270634SSteven Haigh 
79803270634SSteven Haigh 	/* let the user know what node this device is now attached to */
799898eb71cSJoe Perches 	dev_info(&interface->dev, "ADU%d %s now attached to /dev/usb/adutux%d\n",
80003270634SSteven Haigh 		 udev->descriptor.idProduct, dev->serial_number,
80103270634SSteven Haigh 		 (dev->minor - ADU_MINOR_BASE));
80203270634SSteven Haigh exit:
80303270634SSteven Haigh 	return retval;
80403270634SSteven Haigh 
80503270634SSteven Haigh error:
80603270634SSteven Haigh 	adu_delete(dev);
80703270634SSteven Haigh 	return retval;
80803270634SSteven Haigh }
80903270634SSteven Haigh 
81003270634SSteven Haigh /**
81103270634SSteven Haigh  * adu_disconnect
81203270634SSteven Haigh  *
81303270634SSteven Haigh  * Called by the usb core when the device is removed from the system.
81403270634SSteven Haigh  */
81503270634SSteven Haigh static void adu_disconnect(struct usb_interface *interface)
81603270634SSteven Haigh {
81703270634SSteven Haigh 	struct adu_device *dev;
81803270634SSteven Haigh 	int minor;
81903270634SSteven Haigh 
82003270634SSteven Haigh 	dev = usb_get_intfdata(interface);
82103270634SSteven Haigh 
8228293c568SMatthias Kaehlcke 	mutex_lock(&dev->mtx);	/* not interruptible */
823f08812d5SPete Zaitcev 	dev->udev = NULL;	/* poison */
824f08812d5SPete Zaitcev 	minor = dev->minor;
825f08812d5SPete Zaitcev 	usb_deregister_dev(interface, &adu_class);
826f08812d5SPete Zaitcev 	mutex_unlock(&dev->mtx);
827f08812d5SPete Zaitcev 
828f08812d5SPete Zaitcev 	mutex_lock(&adutux_mutex);
829f08812d5SPete Zaitcev 	usb_set_intfdata(interface, NULL);
830d4ead16fSAlan Stern 
83103270634SSteven Haigh 	/* if the device is not opened, then we clean up right now */
832441b62c1SHarvey Harrison 	dbg(2, " %s : open count %d", __func__, dev->open_count);
833f08812d5SPete Zaitcev 	if (!dev->open_count)
83403270634SSteven Haigh 		adu_delete(dev);
835f08812d5SPete Zaitcev 
836f08812d5SPete Zaitcev 	mutex_unlock(&adutux_mutex);
83703270634SSteven Haigh 
838898eb71cSJoe Perches 	dev_info(&interface->dev, "ADU device adutux%d now disconnected\n",
83903270634SSteven Haigh 		 (minor - ADU_MINOR_BASE));
84003270634SSteven Haigh }
84103270634SSteven Haigh 
84203270634SSteven Haigh /* usb specific object needed to register this driver with the usb subsystem */
84303270634SSteven Haigh static struct usb_driver adu_driver = {
84403270634SSteven Haigh 	.name = "adutux",
84503270634SSteven Haigh 	.probe = adu_probe,
84603270634SSteven Haigh 	.disconnect = adu_disconnect,
84703270634SSteven Haigh 	.id_table = device_table,
84803270634SSteven Haigh };
84903270634SSteven Haigh 
85065db4305SGreg Kroah-Hartman module_usb_driver(adu_driver);
85103270634SSteven Haigh 
85203270634SSteven Haigh MODULE_AUTHOR(DRIVER_AUTHOR);
85303270634SSteven Haigh MODULE_DESCRIPTION(DRIVER_DESC);
85403270634SSteven Haigh MODULE_LICENSE("GPL");
855