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v3.1
   1/******************************************************************************
   2 *
   3 * Driver for Option High Speed Mobile Devices.
   4 *
   5 *  Copyright (C) 2008 Option International
   6 *                     Filip Aben <f.aben@option.com>
   7 *                     Denis Joseph Barrow <d.barow@option.com>
   8 *                     Jan Dumon <j.dumon@option.com>
   9 *  Copyright (C) 2007 Andrew Bird (Sphere Systems Ltd)
  10 *  			<ajb@spheresystems.co.uk>
  11 *  Copyright (C) 2008 Greg Kroah-Hartman <gregkh@suse.de>
  12 *  Copyright (C) 2008 Novell, Inc.
  13 *
  14 *  This program is free software; you can redistribute it and/or modify
  15 *  it under the terms of the GNU General Public License version 2 as
  16 *  published by the Free Software Foundation.
  17 *
  18 *  This program is distributed in the hope that it will be useful,
  19 *  but WITHOUT ANY WARRANTY; without even the implied warranty of
  20 *  MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
  21 *  GNU General Public License for more details.
  22 *
  23 *  You should have received a copy of the GNU General Public License
  24 *  along with this program; if not, write to the Free Software
  25 *  Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA  02110-1301,
  26 *  USA
  27 *
  28 *
  29 *****************************************************************************/
  30
  31/******************************************************************************
  32 *
  33 * Description of the device:
  34 *
  35 * Interface 0:	Contains the IP network interface on the bulk end points.
  36 *		The multiplexed serial ports are using the interrupt and
  37 *		control endpoints.
  38 *		Interrupt contains a bitmap telling which multiplexed
  39 *		serialport needs servicing.
  40 *
  41 * Interface 1:	Diagnostics port, uses bulk only, do not submit urbs until the
  42 *		port is opened, as this have a huge impact on the network port
  43 *		throughput.
  44 *
  45 * Interface 2:	Standard modem interface - circuit switched interface, this
  46 *		can be used to make a standard ppp connection however it
  47 *              should not be used in conjunction with the IP network interface
  48 *              enabled for USB performance reasons i.e. if using this set
  49 *              ideally disable_net=1.
  50 *
  51 *****************************************************************************/
  52
  53#include <linux/sched.h>
  54#include <linux/slab.h>
  55#include <linux/init.h>
  56#include <linux/delay.h>
  57#include <linux/netdevice.h>
  58#include <linux/module.h>
  59#include <linux/ethtool.h>
  60#include <linux/usb.h>
  61#include <linux/timer.h>
  62#include <linux/tty.h>
  63#include <linux/tty_driver.h>
  64#include <linux/tty_flip.h>
  65#include <linux/kmod.h>
  66#include <linux/rfkill.h>
  67#include <linux/ip.h>
  68#include <linux/uaccess.h>
  69#include <linux/usb/cdc.h>
  70#include <net/arp.h>
  71#include <asm/byteorder.h>
  72#include <linux/serial_core.h>
  73#include <linux/serial.h>
  74
  75
  76#define MOD_AUTHOR			"Option Wireless"
  77#define MOD_DESCRIPTION			"USB High Speed Option driver"
  78#define MOD_LICENSE			"GPL"
  79
  80#define HSO_MAX_NET_DEVICES		10
  81#define HSO__MAX_MTU			2048
  82#define DEFAULT_MTU			1500
  83#define DEFAULT_MRU			1500
  84
  85#define CTRL_URB_RX_SIZE		1024
  86#define CTRL_URB_TX_SIZE		64
  87
  88#define BULK_URB_RX_SIZE		4096
  89#define BULK_URB_TX_SIZE		8192
  90
  91#define MUX_BULK_RX_BUF_SIZE		HSO__MAX_MTU
  92#define MUX_BULK_TX_BUF_SIZE		HSO__MAX_MTU
  93#define MUX_BULK_RX_BUF_COUNT		4
  94#define USB_TYPE_OPTION_VENDOR		0x20
  95
  96/* These definitions are used with the struct hso_net flags element */
  97/* - use *_bit operations on it. (bit indices not values.) */
  98#define HSO_NET_RUNNING			0
  99
 100#define	HSO_NET_TX_TIMEOUT		(HZ*10)
 101
 102#define HSO_SERIAL_MAGIC		0x48534f31
 103
 104/* Number of ttys to handle */
 105#define HSO_SERIAL_TTY_MINORS		256
 106
 107#define MAX_RX_URBS			2
 108
 109static inline struct hso_serial *get_serial_by_tty(struct tty_struct *tty)
 110{
 111	if (tty)
 112		return tty->driver_data;
 113	return NULL;
 114}
 115
 116/*****************************************************************************/
 117/* Debugging functions                                                       */
 118/*****************************************************************************/
 119#define D__(lvl_, fmt, arg...)				\
 120	do {						\
 121		printk(lvl_ "[%d:%s]: " fmt "\n",	\
 122		       __LINE__, __func__, ## arg);	\
 123	} while (0)
 124
 125#define D_(lvl, args...)				\
 126	do {						\
 127		if (lvl & debug)			\
 128			D__(KERN_INFO, args);		\
 129	} while (0)
 130
 131#define D1(args...)	D_(0x01, ##args)
 132#define D2(args...)	D_(0x02, ##args)
 133#define D3(args...)	D_(0x04, ##args)
 134#define D4(args...)	D_(0x08, ##args)
 135#define D5(args...)	D_(0x10, ##args)
 136
 137/*****************************************************************************/
 138/* Enumerators                                                               */
 139/*****************************************************************************/
 140enum pkt_parse_state {
 141	WAIT_IP,
 142	WAIT_DATA,
 143	WAIT_SYNC
 144};
 145
 146/*****************************************************************************/
 147/* Structs                                                                   */
 148/*****************************************************************************/
 149
 150struct hso_shared_int {
 151	struct usb_endpoint_descriptor *intr_endp;
 152	void *shared_intr_buf;
 153	struct urb *shared_intr_urb;
 154	struct usb_device *usb;
 155	int use_count;
 156	int ref_count;
 157	struct mutex shared_int_lock;
 158};
 159
 160struct hso_net {
 161	struct hso_device *parent;
 162	struct net_device *net;
 163	struct rfkill *rfkill;
 164
 165	struct usb_endpoint_descriptor *in_endp;
 166	struct usb_endpoint_descriptor *out_endp;
 167
 168	struct urb *mux_bulk_rx_urb_pool[MUX_BULK_RX_BUF_COUNT];
 169	struct urb *mux_bulk_tx_urb;
 170	void *mux_bulk_rx_buf_pool[MUX_BULK_RX_BUF_COUNT];
 171	void *mux_bulk_tx_buf;
 172
 173	struct sk_buff *skb_rx_buf;
 174	struct sk_buff *skb_tx_buf;
 175
 176	enum pkt_parse_state rx_parse_state;
 177	spinlock_t net_lock;
 178
 179	unsigned short rx_buf_size;
 180	unsigned short rx_buf_missing;
 181	struct iphdr rx_ip_hdr;
 182
 183	unsigned long flags;
 184};
 185
 186enum rx_ctrl_state{
 187	RX_IDLE,
 188	RX_SENT,
 189	RX_PENDING
 190};
 191
 192#define BM_REQUEST_TYPE (0xa1)
 193#define B_NOTIFICATION  (0x20)
 194#define W_VALUE         (0x0)
 195#define W_INDEX         (0x2)
 196#define W_LENGTH        (0x2)
 197
 198#define B_OVERRUN       (0x1<<6)
 199#define B_PARITY        (0x1<<5)
 200#define B_FRAMING       (0x1<<4)
 201#define B_RING_SIGNAL   (0x1<<3)
 202#define B_BREAK         (0x1<<2)
 203#define B_TX_CARRIER    (0x1<<1)
 204#define B_RX_CARRIER    (0x1<<0)
 205
 206struct hso_serial_state_notification {
 207	u8 bmRequestType;
 208	u8 bNotification;
 209	u16 wValue;
 210	u16 wIndex;
 211	u16 wLength;
 212	u16 UART_state_bitmap;
 213} __packed;
 214
 215struct hso_tiocmget {
 216	struct mutex mutex;
 217	wait_queue_head_t waitq;
 218	int    intr_completed;
 219	struct usb_endpoint_descriptor *endp;
 220	struct urb *urb;
 221	struct hso_serial_state_notification serial_state_notification;
 222	u16    prev_UART_state_bitmap;
 223	struct uart_icount icount;
 224};
 225
 226
 227struct hso_serial {
 228	struct hso_device *parent;
 229	int magic;
 230	u8 minor;
 231
 232	struct hso_shared_int *shared_int;
 233
 234	/* rx/tx urb could be either a bulk urb or a control urb depending
 235	   on which serial port it is used on. */
 236	struct urb *rx_urb[MAX_RX_URBS];
 237	u8 num_rx_urbs;
 238	u8 *rx_data[MAX_RX_URBS];
 239	u16 rx_data_length;	/* should contain allocated length */
 240
 241	struct urb *tx_urb;
 242	u8 *tx_data;
 243	u8 *tx_buffer;
 244	u16 tx_data_length;	/* should contain allocated length */
 245	u16 tx_data_count;
 246	u16 tx_buffer_count;
 247	struct usb_ctrlrequest ctrl_req_tx;
 248	struct usb_ctrlrequest ctrl_req_rx;
 249
 250	struct usb_endpoint_descriptor *in_endp;
 251	struct usb_endpoint_descriptor *out_endp;
 252
 253	enum rx_ctrl_state rx_state;
 254	u8 rts_state;
 255	u8 dtr_state;
 256	unsigned tx_urb_used:1;
 257
 
 258	/* from usb_serial_port */
 259	struct tty_struct *tty;
 260	int open_count;
 261	spinlock_t serial_lock;
 262
 263	int (*write_data) (struct hso_serial *serial);
 264	struct hso_tiocmget  *tiocmget;
 265	/* Hacks required to get flow control
 266	 * working on the serial receive buffers
 267	 * so as not to drop characters on the floor.
 268	 */
 269	int  curr_rx_urb_idx;
 270	u16  curr_rx_urb_offset;
 271	u8   rx_urb_filled[MAX_RX_URBS];
 272	struct tasklet_struct unthrottle_tasklet;
 273	struct work_struct    retry_unthrottle_workqueue;
 274};
 275
 276struct hso_device {
 277	union {
 278		struct hso_serial *dev_serial;
 279		struct hso_net *dev_net;
 280	} port_data;
 281
 282	u32 port_spec;
 283
 284	u8 is_active;
 285	u8 usb_gone;
 286	struct work_struct async_get_intf;
 287	struct work_struct async_put_intf;
 288	struct work_struct reset_device;
 289
 290	struct usb_device *usb;
 291	struct usb_interface *interface;
 292
 293	struct device *dev;
 294	struct kref ref;
 295	struct mutex mutex;
 296};
 297
 298/* Type of interface */
 299#define HSO_INTF_MASK		0xFF00
 300#define	HSO_INTF_MUX		0x0100
 301#define	HSO_INTF_BULK   	0x0200
 302
 303/* Type of port */
 304#define HSO_PORT_MASK		0xFF
 305#define HSO_PORT_NO_PORT	0x0
 306#define	HSO_PORT_CONTROL	0x1
 307#define	HSO_PORT_APP		0x2
 308#define	HSO_PORT_GPS		0x3
 309#define	HSO_PORT_PCSC		0x4
 310#define	HSO_PORT_APP2		0x5
 311#define HSO_PORT_GPS_CONTROL	0x6
 312#define HSO_PORT_MSD		0x7
 313#define HSO_PORT_VOICE		0x8
 314#define HSO_PORT_DIAG2		0x9
 315#define	HSO_PORT_DIAG		0x10
 316#define	HSO_PORT_MODEM		0x11
 317#define	HSO_PORT_NETWORK	0x12
 318
 319/* Additional device info */
 320#define HSO_INFO_MASK		0xFF000000
 321#define HSO_INFO_CRC_BUG	0x01000000
 322
 323/*****************************************************************************/
 324/* Prototypes                                                                */
 325/*****************************************************************************/
 326/* Serial driver functions */
 327static int hso_serial_tiocmset(struct tty_struct *tty,
 328			       unsigned int set, unsigned int clear);
 329static void ctrl_callback(struct urb *urb);
 330static int put_rxbuf_data(struct urb *urb, struct hso_serial *serial);
 331static void hso_kick_transmit(struct hso_serial *serial);
 332/* Helper functions */
 333static int hso_mux_submit_intr_urb(struct hso_shared_int *mux_int,
 334				   struct usb_device *usb, gfp_t gfp);
 335static void handle_usb_error(int status, const char *function,
 336			     struct hso_device *hso_dev);
 337static struct usb_endpoint_descriptor *hso_get_ep(struct usb_interface *intf,
 338						  int type, int dir);
 339static int hso_get_mux_ports(struct usb_interface *intf, unsigned char *ports);
 340static void hso_free_interface(struct usb_interface *intf);
 341static int hso_start_serial_device(struct hso_device *hso_dev, gfp_t flags);
 342static int hso_stop_serial_device(struct hso_device *hso_dev);
 343static int hso_start_net_device(struct hso_device *hso_dev);
 344static void hso_free_shared_int(struct hso_shared_int *shared_int);
 345static int hso_stop_net_device(struct hso_device *hso_dev);
 346static void hso_serial_ref_free(struct kref *ref);
 347static void hso_std_serial_read_bulk_callback(struct urb *urb);
 348static int hso_mux_serial_read(struct hso_serial *serial);
 349static void async_get_intf(struct work_struct *data);
 350static void async_put_intf(struct work_struct *data);
 351static int hso_put_activity(struct hso_device *hso_dev);
 352static int hso_get_activity(struct hso_device *hso_dev);
 353static void tiocmget_intr_callback(struct urb *urb);
 354static void reset_device(struct work_struct *data);
 355/*****************************************************************************/
 356/* Helping functions                                                         */
 357/*****************************************************************************/
 358
 359/* #define DEBUG */
 360
 361static inline struct hso_net *dev2net(struct hso_device *hso_dev)
 362{
 363	return hso_dev->port_data.dev_net;
 364}
 365
 366static inline struct hso_serial *dev2ser(struct hso_device *hso_dev)
 367{
 368	return hso_dev->port_data.dev_serial;
 369}
 370
 371/* Debugging functions */
 372#ifdef DEBUG
 373static void dbg_dump(int line_count, const char *func_name, unsigned char *buf,
 374		     unsigned int len)
 375{
 376	static char name[255];
 377
 378	sprintf(name, "hso[%d:%s]", line_count, func_name);
 379	print_hex_dump_bytes(name, DUMP_PREFIX_NONE, buf, len);
 380}
 381
 382#define DUMP(buf_, len_)	\
 383	dbg_dump(__LINE__, __func__, (unsigned char *)buf_, len_)
 384
 385#define DUMP1(buf_, len_)			\
 386	do {					\
 387		if (0x01 & debug)		\
 388			DUMP(buf_, len_);	\
 389	} while (0)
 390#else
 391#define DUMP(buf_, len_)
 392#define DUMP1(buf_, len_)
 393#endif
 394
 395/* module parameters */
 396static int debug;
 397static int tty_major;
 398static int disable_net;
 399
 400/* driver info */
 401static const char driver_name[] = "hso";
 402static const char tty_filename[] = "ttyHS";
 403static const char *version = __FILE__ ": " MOD_AUTHOR;
 404/* the usb driver itself (registered in hso_init) */
 405static struct usb_driver hso_driver;
 406/* serial structures */
 407static struct tty_driver *tty_drv;
 408static struct hso_device *serial_table[HSO_SERIAL_TTY_MINORS];
 409static struct hso_device *network_table[HSO_MAX_NET_DEVICES];
 410static spinlock_t serial_table_lock;
 411
 412static const s32 default_port_spec[] = {
 413	HSO_INTF_MUX | HSO_PORT_NETWORK,
 414	HSO_INTF_BULK | HSO_PORT_DIAG,
 415	HSO_INTF_BULK | HSO_PORT_MODEM,
 416	0
 417};
 418
 419static const s32 icon321_port_spec[] = {
 420	HSO_INTF_MUX | HSO_PORT_NETWORK,
 421	HSO_INTF_BULK | HSO_PORT_DIAG2,
 422	HSO_INTF_BULK | HSO_PORT_MODEM,
 423	HSO_INTF_BULK | HSO_PORT_DIAG,
 424	0
 425};
 426
 427#define default_port_device(vendor, product)	\
 428	USB_DEVICE(vendor, product),	\
 429		.driver_info = (kernel_ulong_t)default_port_spec
 430
 431#define icon321_port_device(vendor, product)	\
 432	USB_DEVICE(vendor, product),	\
 433		.driver_info = (kernel_ulong_t)icon321_port_spec
 434
 435/* list of devices we support */
 436static const struct usb_device_id hso_ids[] = {
 437	{default_port_device(0x0af0, 0x6711)},
 438	{default_port_device(0x0af0, 0x6731)},
 439	{default_port_device(0x0af0, 0x6751)},
 440	{default_port_device(0x0af0, 0x6771)},
 441	{default_port_device(0x0af0, 0x6791)},
 442	{default_port_device(0x0af0, 0x6811)},
 443	{default_port_device(0x0af0, 0x6911)},
 444	{default_port_device(0x0af0, 0x6951)},
 445	{default_port_device(0x0af0, 0x6971)},
 446	{default_port_device(0x0af0, 0x7011)},
 447	{default_port_device(0x0af0, 0x7031)},
 448	{default_port_device(0x0af0, 0x7051)},
 449	{default_port_device(0x0af0, 0x7071)},
 450	{default_port_device(0x0af0, 0x7111)},
 451	{default_port_device(0x0af0, 0x7211)},
 452	{default_port_device(0x0af0, 0x7251)},
 453	{default_port_device(0x0af0, 0x7271)},
 454	{default_port_device(0x0af0, 0x7311)},
 455	{default_port_device(0x0af0, 0xc031)},	/* Icon-Edge */
 456	{icon321_port_device(0x0af0, 0xd013)},	/* Module HSxPA */
 457	{icon321_port_device(0x0af0, 0xd031)},	/* Icon-321 */
 458	{icon321_port_device(0x0af0, 0xd033)},	/* Icon-322 */
 459	{USB_DEVICE(0x0af0, 0x7301)},		/* GE40x */
 460	{USB_DEVICE(0x0af0, 0x7361)},		/* GE40x */
 461	{USB_DEVICE(0x0af0, 0x7381)},		/* GE40x */
 462	{USB_DEVICE(0x0af0, 0x7401)},		/* GI 0401 */
 463	{USB_DEVICE(0x0af0, 0x7501)},		/* GTM 382 */
 464	{USB_DEVICE(0x0af0, 0x7601)},		/* GE40x */
 465	{USB_DEVICE(0x0af0, 0x7701)},
 466	{USB_DEVICE(0x0af0, 0x7706)},
 467	{USB_DEVICE(0x0af0, 0x7801)},
 468	{USB_DEVICE(0x0af0, 0x7901)},
 469	{USB_DEVICE(0x0af0, 0x7A01)},
 470	{USB_DEVICE(0x0af0, 0x7A05)},
 471	{USB_DEVICE(0x0af0, 0x8200)},
 472	{USB_DEVICE(0x0af0, 0x8201)},
 473	{USB_DEVICE(0x0af0, 0x8300)},
 474	{USB_DEVICE(0x0af0, 0x8302)},
 475	{USB_DEVICE(0x0af0, 0x8304)},
 476	{USB_DEVICE(0x0af0, 0x8400)},
 477	{USB_DEVICE(0x0af0, 0x8600)},
 478	{USB_DEVICE(0x0af0, 0x8800)},
 479	{USB_DEVICE(0x0af0, 0x8900)},
 480	{USB_DEVICE(0x0af0, 0x9000)},
 481	{USB_DEVICE(0x0af0, 0xd035)},
 482	{USB_DEVICE(0x0af0, 0xd055)},
 483	{USB_DEVICE(0x0af0, 0xd155)},
 484	{USB_DEVICE(0x0af0, 0xd255)},
 485	{USB_DEVICE(0x0af0, 0xd057)},
 486	{USB_DEVICE(0x0af0, 0xd157)},
 487	{USB_DEVICE(0x0af0, 0xd257)},
 488	{USB_DEVICE(0x0af0, 0xd357)},
 489	{USB_DEVICE(0x0af0, 0xd058)},
 490	{USB_DEVICE(0x0af0, 0xc100)},
 491	{}
 492};
 493MODULE_DEVICE_TABLE(usb, hso_ids);
 494
 495/* Sysfs attribute */
 496static ssize_t hso_sysfs_show_porttype(struct device *dev,
 497				       struct device_attribute *attr,
 498				       char *buf)
 499{
 500	struct hso_device *hso_dev = dev_get_drvdata(dev);
 501	char *port_name;
 502
 503	if (!hso_dev)
 504		return 0;
 505
 506	switch (hso_dev->port_spec & HSO_PORT_MASK) {
 507	case HSO_PORT_CONTROL:
 508		port_name = "Control";
 509		break;
 510	case HSO_PORT_APP:
 511		port_name = "Application";
 512		break;
 513	case HSO_PORT_APP2:
 514		port_name = "Application2";
 515		break;
 516	case HSO_PORT_GPS:
 517		port_name = "GPS";
 518		break;
 519	case HSO_PORT_GPS_CONTROL:
 520		port_name = "GPS Control";
 521		break;
 522	case HSO_PORT_PCSC:
 523		port_name = "PCSC";
 524		break;
 525	case HSO_PORT_DIAG:
 526		port_name = "Diagnostic";
 527		break;
 528	case HSO_PORT_DIAG2:
 529		port_name = "Diagnostic2";
 530		break;
 531	case HSO_PORT_MODEM:
 532		port_name = "Modem";
 533		break;
 534	case HSO_PORT_NETWORK:
 535		port_name = "Network";
 536		break;
 537	default:
 538		port_name = "Unknown";
 539		break;
 540	}
 541
 542	return sprintf(buf, "%s\n", port_name);
 543}
 544static DEVICE_ATTR(hsotype, S_IRUGO, hso_sysfs_show_porttype, NULL);
 545
 546static int hso_urb_to_index(struct hso_serial *serial, struct urb *urb)
 547{
 548	int idx;
 549
 550	for (idx = 0; idx < serial->num_rx_urbs; idx++)
 551		if (serial->rx_urb[idx] == urb)
 552			return idx;
 553	dev_err(serial->parent->dev, "hso_urb_to_index failed\n");
 554	return -1;
 555}
 556
 557/* converts mux value to a port spec value */
 558static u32 hso_mux_to_port(int mux)
 559{
 560	u32 result;
 561
 562	switch (mux) {
 563	case 0x1:
 564		result = HSO_PORT_CONTROL;
 565		break;
 566	case 0x2:
 567		result = HSO_PORT_APP;
 568		break;
 569	case 0x4:
 570		result = HSO_PORT_PCSC;
 571		break;
 572	case 0x8:
 573		result = HSO_PORT_GPS;
 574		break;
 575	case 0x10:
 576		result = HSO_PORT_APP2;
 577		break;
 578	default:
 579		result = HSO_PORT_NO_PORT;
 580	}
 581	return result;
 582}
 583
 584/* converts port spec value to a mux value */
 585static u32 hso_port_to_mux(int port)
 586{
 587	u32 result;
 588
 589	switch (port & HSO_PORT_MASK) {
 590	case HSO_PORT_CONTROL:
 591		result = 0x0;
 592		break;
 593	case HSO_PORT_APP:
 594		result = 0x1;
 595		break;
 596	case HSO_PORT_PCSC:
 597		result = 0x2;
 598		break;
 599	case HSO_PORT_GPS:
 600		result = 0x3;
 601		break;
 602	case HSO_PORT_APP2:
 603		result = 0x4;
 604		break;
 605	default:
 606		result = 0x0;
 607	}
 608	return result;
 609}
 610
 611static struct hso_serial *get_serial_by_shared_int_and_type(
 612					struct hso_shared_int *shared_int,
 613					int mux)
 614{
 615	int i, port;
 616
 617	port = hso_mux_to_port(mux);
 618
 619	for (i = 0; i < HSO_SERIAL_TTY_MINORS; i++) {
 620		if (serial_table[i] &&
 621		    (dev2ser(serial_table[i])->shared_int == shared_int) &&
 622		    ((serial_table[i]->port_spec & HSO_PORT_MASK) == port)) {
 623			return dev2ser(serial_table[i]);
 624		}
 625	}
 626
 627	return NULL;
 628}
 629
 630static struct hso_serial *get_serial_by_index(unsigned index)
 631{
 632	struct hso_serial *serial = NULL;
 633	unsigned long flags;
 634
 635	spin_lock_irqsave(&serial_table_lock, flags);
 636	if (serial_table[index])
 637		serial = dev2ser(serial_table[index]);
 638	spin_unlock_irqrestore(&serial_table_lock, flags);
 639
 640	return serial;
 641}
 642
 643static int get_free_serial_index(void)
 644{
 645	int index;
 646	unsigned long flags;
 647
 648	spin_lock_irqsave(&serial_table_lock, flags);
 649	for (index = 0; index < HSO_SERIAL_TTY_MINORS; index++) {
 650		if (serial_table[index] == NULL) {
 651			spin_unlock_irqrestore(&serial_table_lock, flags);
 652			return index;
 653		}
 654	}
 655	spin_unlock_irqrestore(&serial_table_lock, flags);
 656
 657	printk(KERN_ERR "%s: no free serial devices in table\n", __func__);
 658	return -1;
 659}
 660
 661static void set_serial_by_index(unsigned index, struct hso_serial *serial)
 662{
 663	unsigned long flags;
 664
 665	spin_lock_irqsave(&serial_table_lock, flags);
 666	if (serial)
 667		serial_table[index] = serial->parent;
 668	else
 669		serial_table[index] = NULL;
 670	spin_unlock_irqrestore(&serial_table_lock, flags);
 671}
 672
 673static void handle_usb_error(int status, const char *function,
 674			     struct hso_device *hso_dev)
 675{
 676	char *explanation;
 677
 678	switch (status) {
 679	case -ENODEV:
 680		explanation = "no device";
 681		break;
 682	case -ENOENT:
 683		explanation = "endpoint not enabled";
 684		break;
 685	case -EPIPE:
 686		explanation = "endpoint stalled";
 687		break;
 688	case -ENOSPC:
 689		explanation = "not enough bandwidth";
 690		break;
 691	case -ESHUTDOWN:
 692		explanation = "device disabled";
 693		break;
 694	case -EHOSTUNREACH:
 695		explanation = "device suspended";
 696		break;
 697	case -EINVAL:
 698	case -EAGAIN:
 699	case -EFBIG:
 700	case -EMSGSIZE:
 701		explanation = "internal error";
 702		break;
 703	case -EILSEQ:
 704	case -EPROTO:
 705	case -ETIME:
 706	case -ETIMEDOUT:
 707		explanation = "protocol error";
 708		if (hso_dev)
 709			schedule_work(&hso_dev->reset_device);
 710		break;
 711	default:
 712		explanation = "unknown status";
 713		break;
 714	}
 715
 716	/* log a meaningful explanation of an USB status */
 717	D1("%s: received USB status - %s (%d)", function, explanation, status);
 718}
 719
 720/* Network interface functions */
 721
 722/* called when net interface is brought up by ifconfig */
 723static int hso_net_open(struct net_device *net)
 724{
 725	struct hso_net *odev = netdev_priv(net);
 726	unsigned long flags = 0;
 727
 728	if (!odev) {
 729		dev_err(&net->dev, "No net device !\n");
 730		return -ENODEV;
 731	}
 732
 733	odev->skb_tx_buf = NULL;
 734
 735	/* setup environment */
 736	spin_lock_irqsave(&odev->net_lock, flags);
 737	odev->rx_parse_state = WAIT_IP;
 738	odev->rx_buf_size = 0;
 739	odev->rx_buf_missing = sizeof(struct iphdr);
 740	spin_unlock_irqrestore(&odev->net_lock, flags);
 741
 742	/* We are up and running. */
 743	set_bit(HSO_NET_RUNNING, &odev->flags);
 744	hso_start_net_device(odev->parent);
 745
 746	/* Tell the kernel we are ready to start receiving from it */
 747	netif_start_queue(net);
 748
 749	return 0;
 750}
 751
 752/* called when interface is brought down by ifconfig */
 753static int hso_net_close(struct net_device *net)
 754{
 755	struct hso_net *odev = netdev_priv(net);
 756
 757	/* we don't need the queue anymore */
 758	netif_stop_queue(net);
 759	/* no longer running */
 760	clear_bit(HSO_NET_RUNNING, &odev->flags);
 761
 762	hso_stop_net_device(odev->parent);
 763
 764	/* done */
 765	return 0;
 766}
 767
 768/* USB tells is xmit done, we should start the netqueue again */
 769static void write_bulk_callback(struct urb *urb)
 770{
 771	struct hso_net *odev = urb->context;
 772	int status = urb->status;
 773
 774	/* Sanity check */
 775	if (!odev || !test_bit(HSO_NET_RUNNING, &odev->flags)) {
 776		dev_err(&urb->dev->dev, "%s: device not running\n", __func__);
 777		return;
 778	}
 779
 780	/* Do we still have a valid kernel network device? */
 781	if (!netif_device_present(odev->net)) {
 782		dev_err(&urb->dev->dev, "%s: net device not present\n",
 783			__func__);
 784		return;
 785	}
 786
 787	/* log status, but don't act on it, we don't need to resubmit anything
 788	 * anyhow */
 789	if (status)
 790		handle_usb_error(status, __func__, odev->parent);
 791
 792	hso_put_activity(odev->parent);
 793
 794	/* Tell the network interface we are ready for another frame */
 795	netif_wake_queue(odev->net);
 796}
 797
 798/* called by kernel when we need to transmit a packet */
 799static netdev_tx_t hso_net_start_xmit(struct sk_buff *skb,
 800					    struct net_device *net)
 801{
 802	struct hso_net *odev = netdev_priv(net);
 803	int result;
 804
 805	/* Tell the kernel, "No more frames 'til we are done with this one." */
 806	netif_stop_queue(net);
 807	if (hso_get_activity(odev->parent) == -EAGAIN) {
 808		odev->skb_tx_buf = skb;
 809		return NETDEV_TX_OK;
 810	}
 811
 812	/* log if asked */
 813	DUMP1(skb->data, skb->len);
 814	/* Copy it from kernel memory to OUR memory */
 815	memcpy(odev->mux_bulk_tx_buf, skb->data, skb->len);
 816	D1("len: %d/%d", skb->len, MUX_BULK_TX_BUF_SIZE);
 817
 818	/* Fill in the URB for shipping it out. */
 819	usb_fill_bulk_urb(odev->mux_bulk_tx_urb,
 820			  odev->parent->usb,
 821			  usb_sndbulkpipe(odev->parent->usb,
 822					  odev->out_endp->
 823					  bEndpointAddress & 0x7F),
 824			  odev->mux_bulk_tx_buf, skb->len, write_bulk_callback,
 825			  odev);
 826
 827	/* Deal with the Zero Length packet problem, I hope */
 828	odev->mux_bulk_tx_urb->transfer_flags |= URB_ZERO_PACKET;
 829
 830	/* Send the URB on its merry way. */
 831	result = usb_submit_urb(odev->mux_bulk_tx_urb, GFP_ATOMIC);
 832	if (result) {
 833		dev_warn(&odev->parent->interface->dev,
 834			"failed mux_bulk_tx_urb %d\n", result);
 835		net->stats.tx_errors++;
 836		netif_start_queue(net);
 837	} else {
 838		net->stats.tx_packets++;
 839		net->stats.tx_bytes += skb->len;
 840	}
 841	dev_kfree_skb(skb);
 842	/* we're done */
 843	return NETDEV_TX_OK;
 844}
 845
 846static const struct ethtool_ops ops = {
 847	.get_link = ethtool_op_get_link
 848};
 849
 850/* called when a packet did not ack after watchdogtimeout */
 851static void hso_net_tx_timeout(struct net_device *net)
 852{
 853	struct hso_net *odev = netdev_priv(net);
 854
 855	if (!odev)
 856		return;
 857
 858	/* Tell syslog we are hosed. */
 859	dev_warn(&net->dev, "Tx timed out.\n");
 860
 861	/* Tear the waiting frame off the list */
 862	if (odev->mux_bulk_tx_urb &&
 863	    (odev->mux_bulk_tx_urb->status == -EINPROGRESS))
 864		usb_unlink_urb(odev->mux_bulk_tx_urb);
 865
 866	/* Update statistics */
 867	net->stats.tx_errors++;
 868}
 869
 870/* make a real packet from the received USB buffer */
 871static void packetizeRx(struct hso_net *odev, unsigned char *ip_pkt,
 872			unsigned int count, unsigned char is_eop)
 873{
 874	unsigned short temp_bytes;
 875	unsigned short buffer_offset = 0;
 876	unsigned short frame_len;
 877	unsigned char *tmp_rx_buf;
 878
 879	/* log if needed */
 880	D1("Rx %d bytes", count);
 881	DUMP(ip_pkt, min(128, (int)count));
 882
 883	while (count) {
 884		switch (odev->rx_parse_state) {
 885		case WAIT_IP:
 886			/* waiting for IP header. */
 887			/* wanted bytes - size of ip header */
 888			temp_bytes =
 889			    (count <
 890			     odev->rx_buf_missing) ? count : odev->
 891			    rx_buf_missing;
 892
 893			memcpy(((unsigned char *)(&odev->rx_ip_hdr)) +
 894			       odev->rx_buf_size, ip_pkt + buffer_offset,
 895			       temp_bytes);
 896
 897			odev->rx_buf_size += temp_bytes;
 898			buffer_offset += temp_bytes;
 899			odev->rx_buf_missing -= temp_bytes;
 900			count -= temp_bytes;
 901
 902			if (!odev->rx_buf_missing) {
 903				/* header is complete allocate an sk_buffer and
 904				 * continue to WAIT_DATA */
 905				frame_len = ntohs(odev->rx_ip_hdr.tot_len);
 906
 907				if ((frame_len > DEFAULT_MRU) ||
 908				    (frame_len < sizeof(struct iphdr))) {
 909					dev_err(&odev->net->dev,
 910						"Invalid frame (%d) length\n",
 911						frame_len);
 912					odev->rx_parse_state = WAIT_SYNC;
 913					continue;
 914				}
 915				/* Allocate an sk_buff */
 916				odev->skb_rx_buf = netdev_alloc_skb(odev->net,
 917								    frame_len);
 918				if (!odev->skb_rx_buf) {
 919					/* We got no receive buffer. */
 920					D1("could not allocate memory");
 921					odev->rx_parse_state = WAIT_SYNC;
 922					return;
 923				}
 924
 925				/* Copy what we got so far. make room for iphdr
 926				 * after tail. */
 927				tmp_rx_buf =
 928				    skb_put(odev->skb_rx_buf,
 929					    sizeof(struct iphdr));
 930				memcpy(tmp_rx_buf, (char *)&(odev->rx_ip_hdr),
 931				       sizeof(struct iphdr));
 932
 933				/* ETH_HLEN */
 934				odev->rx_buf_size = sizeof(struct iphdr);
 935
 936				/* Filip actually use .tot_len */
 937				odev->rx_buf_missing =
 938				    frame_len - sizeof(struct iphdr);
 939				odev->rx_parse_state = WAIT_DATA;
 940			}
 941			break;
 942
 943		case WAIT_DATA:
 944			temp_bytes = (count < odev->rx_buf_missing)
 945					? count : odev->rx_buf_missing;
 946
 947			/* Copy the rest of the bytes that are left in the
 948			 * buffer into the waiting sk_buf. */
 949			/* Make room for temp_bytes after tail. */
 950			tmp_rx_buf = skb_put(odev->skb_rx_buf, temp_bytes);
 951			memcpy(tmp_rx_buf, ip_pkt + buffer_offset, temp_bytes);
 952
 953			odev->rx_buf_missing -= temp_bytes;
 954			count -= temp_bytes;
 955			buffer_offset += temp_bytes;
 956			odev->rx_buf_size += temp_bytes;
 957			if (!odev->rx_buf_missing) {
 958				/* Packet is complete. Inject into stack. */
 959				/* We have IP packet here */
 960				odev->skb_rx_buf->protocol = cpu_to_be16(ETH_P_IP);
 961				skb_reset_mac_header(odev->skb_rx_buf);
 962
 963				/* Ship it off to the kernel */
 964				netif_rx(odev->skb_rx_buf);
 965				/* No longer our buffer. */
 966				odev->skb_rx_buf = NULL;
 967
 968				/* update out statistics */
 969				odev->net->stats.rx_packets++;
 970
 971				odev->net->stats.rx_bytes += odev->rx_buf_size;
 972
 973				odev->rx_buf_size = 0;
 974				odev->rx_buf_missing = sizeof(struct iphdr);
 975				odev->rx_parse_state = WAIT_IP;
 976			}
 977			break;
 978
 979		case WAIT_SYNC:
 980			D1(" W_S");
 981			count = 0;
 982			break;
 983		default:
 984			D1(" ");
 985			count--;
 986			break;
 987		}
 988	}
 989
 990	/* Recovery mechanism for WAIT_SYNC state. */
 991	if (is_eop) {
 992		if (odev->rx_parse_state == WAIT_SYNC) {
 993			odev->rx_parse_state = WAIT_IP;
 994			odev->rx_buf_size = 0;
 995			odev->rx_buf_missing = sizeof(struct iphdr);
 996		}
 997	}
 998}
 999
1000static void fix_crc_bug(struct urb *urb, __le16 max_packet_size)
1001{
1002	static const u8 crc_check[4] = { 0xDE, 0xAD, 0xBE, 0xEF };
1003	u32 rest = urb->actual_length % le16_to_cpu(max_packet_size);
1004
1005	if (((rest == 5) || (rest == 6)) &&
1006	    !memcmp(((u8 *)urb->transfer_buffer) + urb->actual_length - 4,
1007		    crc_check, 4)) {
1008		urb->actual_length -= 4;
1009	}
1010}
1011
1012/* Moving data from usb to kernel (in interrupt state) */
1013static void read_bulk_callback(struct urb *urb)
1014{
1015	struct hso_net *odev = urb->context;
1016	struct net_device *net;
1017	int result;
1018	int status = urb->status;
1019
1020	/* is al ok?  (Filip: Who's Al ?) */
1021	if (status) {
1022		handle_usb_error(status, __func__, odev->parent);
1023		return;
1024	}
1025
1026	/* Sanity check */
1027	if (!odev || !test_bit(HSO_NET_RUNNING, &odev->flags)) {
1028		D1("BULK IN callback but driver is not active!");
1029		return;
1030	}
1031	usb_mark_last_busy(urb->dev);
1032
1033	net = odev->net;
1034
1035	if (!netif_device_present(net)) {
1036		/* Somebody killed our network interface... */
1037		return;
1038	}
1039
1040	if (odev->parent->port_spec & HSO_INFO_CRC_BUG)
1041		fix_crc_bug(urb, odev->in_endp->wMaxPacketSize);
1042
1043	/* do we even have a packet? */
1044	if (urb->actual_length) {
1045		/* Handle the IP stream, add header and push it onto network
1046		 * stack if the packet is complete. */
1047		spin_lock(&odev->net_lock);
1048		packetizeRx(odev, urb->transfer_buffer, urb->actual_length,
1049			    (urb->transfer_buffer_length >
1050			     urb->actual_length) ? 1 : 0);
1051		spin_unlock(&odev->net_lock);
1052	}
1053
1054	/* We are done with this URB, resubmit it. Prep the USB to wait for
1055	 * another frame. Reuse same as received. */
1056	usb_fill_bulk_urb(urb,
1057			  odev->parent->usb,
1058			  usb_rcvbulkpipe(odev->parent->usb,
1059					  odev->in_endp->
1060					  bEndpointAddress & 0x7F),
1061			  urb->transfer_buffer, MUX_BULK_RX_BUF_SIZE,
1062			  read_bulk_callback, odev);
1063
1064	/* Give this to the USB subsystem so it can tell us when more data
1065	 * arrives. */
1066	result = usb_submit_urb(urb, GFP_ATOMIC);
1067	if (result)
1068		dev_warn(&odev->parent->interface->dev,
1069			 "%s failed submit mux_bulk_rx_urb %d\n", __func__,
1070			 result);
1071}
1072
1073/* Serial driver functions */
1074
1075static void hso_init_termios(struct ktermios *termios)
1076{
1077	/*
1078	 * The default requirements for this device are:
1079	 */
1080	termios->c_iflag &=
1081		~(IGNBRK	/* disable ignore break */
1082		| BRKINT	/* disable break causes interrupt */
1083		| PARMRK	/* disable mark parity errors */
1084		| ISTRIP	/* disable clear high bit of input characters */
1085		| INLCR		/* disable translate NL to CR */
1086		| IGNCR		/* disable ignore CR */
1087		| ICRNL		/* disable translate CR to NL */
1088		| IXON);	/* disable enable XON/XOFF flow control */
1089
1090	/* disable postprocess output characters */
1091	termios->c_oflag &= ~OPOST;
1092
1093	termios->c_lflag &=
1094		~(ECHO		/* disable echo input characters */
1095		| ECHONL	/* disable echo new line */
1096		| ICANON	/* disable erase, kill, werase, and rprnt
1097				   special characters */
1098		| ISIG		/* disable interrupt, quit, and suspend special
1099				   characters */
1100		| IEXTEN);	/* disable non-POSIX special characters */
1101
1102	termios->c_cflag &=
1103		~(CSIZE		/* no size */
1104		| PARENB	/* disable parity bit */
1105		| CBAUD		/* clear current baud rate */
1106		| CBAUDEX);	/* clear current buad rate */
1107
1108	termios->c_cflag |= CS8;	/* character size 8 bits */
1109
1110	/* baud rate 115200 */
1111	tty_termios_encode_baud_rate(termios, 115200, 115200);
1112}
1113
1114static void _hso_serial_set_termios(struct tty_struct *tty,
1115				    struct ktermios *old)
1116{
1117	struct hso_serial *serial = get_serial_by_tty(tty);
1118	struct ktermios *termios;
1119
1120	if (!serial) {
1121		printk(KERN_ERR "%s: no tty structures", __func__);
1122		return;
1123	}
1124
1125	D4("port %d", serial->minor);
1126
1127	/*
1128	 *	Fix up unsupported bits
1129	 */
1130	termios = tty->termios;
1131	termios->c_iflag &= ~IXON; /* disable enable XON/XOFF flow control */
1132
1133	termios->c_cflag &=
1134		~(CSIZE		/* no size */
1135		| PARENB	/* disable parity bit */
1136		| CBAUD		/* clear current baud rate */
1137		| CBAUDEX);	/* clear current buad rate */
1138
1139	termios->c_cflag |= CS8;	/* character size 8 bits */
1140
1141	/* baud rate 115200 */
1142	tty_encode_baud_rate(tty, 115200, 115200);
1143}
1144
1145static void hso_resubmit_rx_bulk_urb(struct hso_serial *serial, struct urb *urb)
1146{
1147	int result;
1148	/* We are done with this URB, resubmit it. Prep the USB to wait for
1149	 * another frame */
1150	usb_fill_bulk_urb(urb, serial->parent->usb,
1151			  usb_rcvbulkpipe(serial->parent->usb,
1152					  serial->in_endp->
1153					  bEndpointAddress & 0x7F),
1154			  urb->transfer_buffer, serial->rx_data_length,
1155			  hso_std_serial_read_bulk_callback, serial);
1156	/* Give this to the USB subsystem so it can tell us when more data
1157	 * arrives. */
1158	result = usb_submit_urb(urb, GFP_ATOMIC);
1159	if (result) {
1160		dev_err(&urb->dev->dev, "%s failed submit serial rx_urb %d\n",
1161			__func__, result);
1162	}
1163}
1164
1165
1166
1167
1168static void put_rxbuf_data_and_resubmit_bulk_urb(struct hso_serial *serial)
1169{
1170	int count;
1171	struct urb *curr_urb;
1172
1173	while (serial->rx_urb_filled[serial->curr_rx_urb_idx]) {
1174		curr_urb = serial->rx_urb[serial->curr_rx_urb_idx];
1175		count = put_rxbuf_data(curr_urb, serial);
1176		if (count == -1)
1177			return;
1178		if (count == 0) {
1179			serial->curr_rx_urb_idx++;
1180			if (serial->curr_rx_urb_idx >= serial->num_rx_urbs)
1181				serial->curr_rx_urb_idx = 0;
1182			hso_resubmit_rx_bulk_urb(serial, curr_urb);
1183		}
1184	}
1185}
1186
1187static void put_rxbuf_data_and_resubmit_ctrl_urb(struct hso_serial *serial)
1188{
1189	int count = 0;
1190	struct urb *urb;
1191
1192	urb = serial->rx_urb[0];
1193	if (serial->open_count > 0) {
1194		count = put_rxbuf_data(urb, serial);
1195		if (count == -1)
1196			return;
1197	}
1198	/* Re issue a read as long as we receive data. */
1199
1200	if (count == 0 && ((urb->actual_length != 0) ||
1201			   (serial->rx_state == RX_PENDING))) {
1202		serial->rx_state = RX_SENT;
1203		hso_mux_serial_read(serial);
1204	} else
1205		serial->rx_state = RX_IDLE;
1206}
1207
1208
1209/* read callback for Diag and CS port */
1210static void hso_std_serial_read_bulk_callback(struct urb *urb)
1211{
1212	struct hso_serial *serial = urb->context;
1213	int status = urb->status;
1214
 
 
1215	/* sanity check */
1216	if (!serial) {
1217		D1("serial == NULL");
1218		return;
1219	} else if (status) {
 
1220		handle_usb_error(status, __func__, serial->parent);
1221		return;
1222	}
1223
1224	D4("\n--- Got serial_read_bulk callback %02x ---", status);
1225	D1("Actual length = %d\n", urb->actual_length);
1226	DUMP1(urb->transfer_buffer, urb->actual_length);
1227
1228	/* Anyone listening? */
1229	if (serial->open_count == 0)
1230		return;
1231
1232	if (status == 0) {
1233		if (serial->parent->port_spec & HSO_INFO_CRC_BUG)
1234			fix_crc_bug(urb, serial->in_endp->wMaxPacketSize);
1235		/* Valid data, handle RX data */
1236		spin_lock(&serial->serial_lock);
1237		serial->rx_urb_filled[hso_urb_to_index(serial, urb)] = 1;
1238		put_rxbuf_data_and_resubmit_bulk_urb(serial);
1239		spin_unlock(&serial->serial_lock);
1240	} else if (status == -ENOENT || status == -ECONNRESET) {
1241		/* Unlinked - check for throttled port. */
1242		D2("Port %d, successfully unlinked urb", serial->minor);
1243		spin_lock(&serial->serial_lock);
1244		serial->rx_urb_filled[hso_urb_to_index(serial, urb)] = 0;
1245		hso_resubmit_rx_bulk_urb(serial, urb);
1246		spin_unlock(&serial->serial_lock);
1247	} else {
1248		D2("Port %d, status = %d for read urb", serial->minor, status);
1249		return;
1250	}
1251}
1252
1253/*
1254 * This needs to be a tasklet otherwise we will
1255 * end up recursively calling this function.
1256 */
1257static void hso_unthrottle_tasklet(struct hso_serial *serial)
1258{
1259	unsigned long flags;
1260
1261	spin_lock_irqsave(&serial->serial_lock, flags);
1262	if ((serial->parent->port_spec & HSO_INTF_MUX))
1263		put_rxbuf_data_and_resubmit_ctrl_urb(serial);
1264	else
1265		put_rxbuf_data_and_resubmit_bulk_urb(serial);
1266	spin_unlock_irqrestore(&serial->serial_lock, flags);
1267}
1268
1269static	void hso_unthrottle(struct tty_struct *tty)
1270{
1271	struct hso_serial *serial = get_serial_by_tty(tty);
1272
1273	tasklet_hi_schedule(&serial->unthrottle_tasklet);
1274}
1275
1276static void hso_unthrottle_workfunc(struct work_struct *work)
1277{
1278	struct hso_serial *serial =
1279	    container_of(work, struct hso_serial,
1280			 retry_unthrottle_workqueue);
1281	hso_unthrottle_tasklet(serial);
1282}
1283
1284/* open the requested serial port */
1285static int hso_serial_open(struct tty_struct *tty, struct file *filp)
1286{
1287	struct hso_serial *serial = get_serial_by_index(tty->index);
1288	int result;
1289
1290	/* sanity check */
1291	if (serial == NULL || serial->magic != HSO_SERIAL_MAGIC) {
1292		WARN_ON(1);
1293		tty->driver_data = NULL;
1294		D1("Failed to open port");
1295		return -ENODEV;
1296	}
1297
1298	mutex_lock(&serial->parent->mutex);
1299	result = usb_autopm_get_interface(serial->parent->interface);
1300	if (result < 0)
1301		goto err_out;
1302
1303	D1("Opening %d", serial->minor);
1304	kref_get(&serial->parent->ref);
1305
1306	/* setup */
1307	spin_lock_irq(&serial->serial_lock);
1308	tty->driver_data = serial;
1309	tty_kref_put(serial->tty);
1310	serial->tty = tty_kref_get(tty);
1311	spin_unlock_irq(&serial->serial_lock);
1312
1313	/* check for port already opened, if not set the termios */
1314	serial->open_count++;
1315	if (serial->open_count == 1) {
1316		serial->rx_state = RX_IDLE;
1317		/* Force default termio settings */
1318		_hso_serial_set_termios(tty, NULL);
1319		tasklet_init(&serial->unthrottle_tasklet,
1320			     (void (*)(unsigned long))hso_unthrottle_tasklet,
1321			     (unsigned long)serial);
1322		INIT_WORK(&serial->retry_unthrottle_workqueue,
1323			  hso_unthrottle_workfunc);
1324		result = hso_start_serial_device(serial->parent, GFP_KERNEL);
1325		if (result) {
1326			hso_stop_serial_device(serial->parent);
1327			serial->open_count--;
1328			kref_put(&serial->parent->ref, hso_serial_ref_free);
1329		}
1330	} else {
1331		D1("Port was already open");
1332	}
1333
1334	usb_autopm_put_interface(serial->parent->interface);
1335
1336	/* done */
1337	if (result)
1338		hso_serial_tiocmset(tty, TIOCM_RTS | TIOCM_DTR, 0);
1339err_out:
1340	mutex_unlock(&serial->parent->mutex);
1341	return result;
1342}
1343
1344/* close the requested serial port */
1345static void hso_serial_close(struct tty_struct *tty, struct file *filp)
1346{
1347	struct hso_serial *serial = tty->driver_data;
1348	u8 usb_gone;
1349
1350	D1("Closing serial port");
1351
1352	/* Open failed, no close cleanup required */
1353	if (serial == NULL)
1354		return;
1355
1356	mutex_lock(&serial->parent->mutex);
1357	usb_gone = serial->parent->usb_gone;
1358
1359	if (!usb_gone)
1360		usb_autopm_get_interface(serial->parent->interface);
1361
1362	/* reset the rts and dtr */
1363	/* do the actual close */
1364	serial->open_count--;
1365
1366	if (serial->open_count <= 0) {
1367		serial->open_count = 0;
1368		spin_lock_irq(&serial->serial_lock);
1369		if (serial->tty == tty) {
1370			serial->tty->driver_data = NULL;
1371			serial->tty = NULL;
1372			tty_kref_put(tty);
1373		}
1374		spin_unlock_irq(&serial->serial_lock);
1375		if (!usb_gone)
1376			hso_stop_serial_device(serial->parent);
1377		tasklet_kill(&serial->unthrottle_tasklet);
1378		cancel_work_sync(&serial->retry_unthrottle_workqueue);
1379	}
1380
1381	if (!usb_gone)
1382		usb_autopm_put_interface(serial->parent->interface);
1383
1384	mutex_unlock(&serial->parent->mutex);
1385
1386	kref_put(&serial->parent->ref, hso_serial_ref_free);
1387}
1388
1389/* close the requested serial port */
1390static int hso_serial_write(struct tty_struct *tty, const unsigned char *buf,
1391			    int count)
1392{
1393	struct hso_serial *serial = get_serial_by_tty(tty);
1394	int space, tx_bytes;
1395	unsigned long flags;
1396
1397	/* sanity check */
1398	if (serial == NULL) {
1399		printk(KERN_ERR "%s: serial is NULL\n", __func__);
1400		return -ENODEV;
1401	}
1402
1403	spin_lock_irqsave(&serial->serial_lock, flags);
1404
1405	space = serial->tx_data_length - serial->tx_buffer_count;
1406	tx_bytes = (count < space) ? count : space;
1407
1408	if (!tx_bytes)
1409		goto out;
1410
1411	memcpy(serial->tx_buffer + serial->tx_buffer_count, buf, tx_bytes);
1412	serial->tx_buffer_count += tx_bytes;
1413
1414out:
1415	spin_unlock_irqrestore(&serial->serial_lock, flags);
1416
1417	hso_kick_transmit(serial);
1418	/* done */
1419	return tx_bytes;
1420}
1421
1422/* how much room is there for writing */
1423static int hso_serial_write_room(struct tty_struct *tty)
1424{
1425	struct hso_serial *serial = get_serial_by_tty(tty);
1426	int room;
1427	unsigned long flags;
1428
1429	spin_lock_irqsave(&serial->serial_lock, flags);
1430	room = serial->tx_data_length - serial->tx_buffer_count;
1431	spin_unlock_irqrestore(&serial->serial_lock, flags);
1432
1433	/* return free room */
1434	return room;
1435}
1436
1437/* setup the term */
1438static void hso_serial_set_termios(struct tty_struct *tty, struct ktermios *old)
1439{
1440	struct hso_serial *serial = get_serial_by_tty(tty);
1441	unsigned long flags;
1442
1443	if (old)
1444		D5("Termios called with: cflags new[%d] - old[%d]",
1445		   tty->termios->c_cflag, old->c_cflag);
1446
1447	/* the actual setup */
1448	spin_lock_irqsave(&serial->serial_lock, flags);
1449	if (serial->open_count)
1450		_hso_serial_set_termios(tty, old);
1451	else
1452		tty->termios = old;
1453	spin_unlock_irqrestore(&serial->serial_lock, flags);
1454
1455	/* done */
1456}
1457
1458/* how many characters in the buffer */
1459static int hso_serial_chars_in_buffer(struct tty_struct *tty)
1460{
1461	struct hso_serial *serial = get_serial_by_tty(tty);
1462	int chars;
1463	unsigned long flags;
1464
1465	/* sanity check */
1466	if (serial == NULL)
1467		return 0;
1468
1469	spin_lock_irqsave(&serial->serial_lock, flags);
1470	chars = serial->tx_buffer_count;
1471	spin_unlock_irqrestore(&serial->serial_lock, flags);
1472
1473	return chars;
1474}
1475static int tiocmget_submit_urb(struct hso_serial *serial,
1476			       struct hso_tiocmget *tiocmget,
1477			       struct usb_device *usb)
1478{
1479	int result;
1480
1481	if (serial->parent->usb_gone)
1482		return -ENODEV;
1483	usb_fill_int_urb(tiocmget->urb, usb,
1484			 usb_rcvintpipe(usb,
1485					tiocmget->endp->
1486					bEndpointAddress & 0x7F),
1487			 &tiocmget->serial_state_notification,
1488			 sizeof(struct hso_serial_state_notification),
1489			 tiocmget_intr_callback, serial,
1490			 tiocmget->endp->bInterval);
1491	result = usb_submit_urb(tiocmget->urb, GFP_ATOMIC);
1492	if (result) {
1493		dev_warn(&usb->dev, "%s usb_submit_urb failed %d\n", __func__,
1494			 result);
1495	}
1496	return result;
1497
1498}
1499
1500static void tiocmget_intr_callback(struct urb *urb)
1501{
1502	struct hso_serial *serial = urb->context;
1503	struct hso_tiocmget *tiocmget;
1504	int status = urb->status;
1505	u16 UART_state_bitmap, prev_UART_state_bitmap;
1506	struct uart_icount *icount;
1507	struct hso_serial_state_notification *serial_state_notification;
1508	struct usb_device *usb;
 
1509
1510	/* Sanity checks */
1511	if (!serial)
1512		return;
1513	if (status) {
1514		handle_usb_error(status, __func__, serial->parent);
1515		return;
1516	}
 
 
1517	tiocmget = serial->tiocmget;
1518	if (!tiocmget)
1519		return;
 
 
1520	usb = serial->parent->usb;
 
 
 
 
 
1521	serial_state_notification = &tiocmget->serial_state_notification;
1522	if (serial_state_notification->bmRequestType != BM_REQUEST_TYPE ||
1523	    serial_state_notification->bNotification != B_NOTIFICATION ||
1524	    le16_to_cpu(serial_state_notification->wValue) != W_VALUE ||
1525	    le16_to_cpu(serial_state_notification->wIndex) != W_INDEX ||
1526	    le16_to_cpu(serial_state_notification->wLength) != W_LENGTH) {
1527		dev_warn(&usb->dev,
1528			 "hso received invalid serial state notification\n");
1529		DUMP(serial_state_notification,
1530		     sizeof(struct hso_serial_state_notification));
1531	} else {
1532
1533		UART_state_bitmap = le16_to_cpu(serial_state_notification->
1534						UART_state_bitmap);
1535		prev_UART_state_bitmap = tiocmget->prev_UART_state_bitmap;
1536		icount = &tiocmget->icount;
1537		spin_lock(&serial->serial_lock);
1538		if ((UART_state_bitmap & B_OVERRUN) !=
1539		   (prev_UART_state_bitmap & B_OVERRUN))
1540			icount->parity++;
1541		if ((UART_state_bitmap & B_PARITY) !=
1542		   (prev_UART_state_bitmap & B_PARITY))
1543			icount->parity++;
1544		if ((UART_state_bitmap & B_FRAMING) !=
1545		   (prev_UART_state_bitmap & B_FRAMING))
1546			icount->frame++;
1547		if ((UART_state_bitmap & B_RING_SIGNAL) &&
1548		   !(prev_UART_state_bitmap & B_RING_SIGNAL))
1549			icount->rng++;
1550		if ((UART_state_bitmap & B_BREAK) !=
1551		   (prev_UART_state_bitmap & B_BREAK))
1552			icount->brk++;
1553		if ((UART_state_bitmap & B_TX_CARRIER) !=
1554		   (prev_UART_state_bitmap & B_TX_CARRIER))
1555			icount->dsr++;
1556		if ((UART_state_bitmap & B_RX_CARRIER) !=
1557		   (prev_UART_state_bitmap & B_RX_CARRIER))
1558			icount->dcd++;
1559		tiocmget->prev_UART_state_bitmap = UART_state_bitmap;
1560		spin_unlock(&serial->serial_lock);
1561		tiocmget->intr_completed = 1;
1562		wake_up_interruptible(&tiocmget->waitq);
1563	}
1564	memset(serial_state_notification, 0,
1565	       sizeof(struct hso_serial_state_notification));
1566	tiocmget_submit_urb(serial,
1567			    tiocmget,
1568			    serial->parent->usb);
1569}
1570
1571/*
1572 * next few functions largely stolen from drivers/serial/serial_core.c
1573 */
1574/* Wait for any of the 4 modem inputs (DCD,RI,DSR,CTS) to change
1575 * - mask passed in arg for lines of interest
1576 *   (use |'ed TIOCM_RNG/DSR/CD/CTS for masking)
1577 * Caller should use TIOCGICOUNT to see which one it was
1578 */
1579static int
1580hso_wait_modem_status(struct hso_serial *serial, unsigned long arg)
1581{
1582	DECLARE_WAITQUEUE(wait, current);
1583	struct uart_icount cprev, cnow;
1584	struct hso_tiocmget  *tiocmget;
1585	int ret;
1586
1587	tiocmget = serial->tiocmget;
1588	if (!tiocmget)
1589		return -ENOENT;
1590	/*
1591	 * note the counters on entry
1592	 */
1593	spin_lock_irq(&serial->serial_lock);
1594	memcpy(&cprev, &tiocmget->icount, sizeof(struct uart_icount));
1595	spin_unlock_irq(&serial->serial_lock);
1596	add_wait_queue(&tiocmget->waitq, &wait);
1597	for (;;) {
1598		spin_lock_irq(&serial->serial_lock);
1599		memcpy(&cnow, &tiocmget->icount, sizeof(struct uart_icount));
1600		spin_unlock_irq(&serial->serial_lock);
1601		set_current_state(TASK_INTERRUPTIBLE);
1602		if (((arg & TIOCM_RNG) && (cnow.rng != cprev.rng)) ||
1603		    ((arg & TIOCM_DSR) && (cnow.dsr != cprev.dsr)) ||
1604		    ((arg & TIOCM_CD)  && (cnow.dcd != cprev.dcd))) {
1605			ret = 0;
1606			break;
1607		}
1608		schedule();
1609		/* see if a signal did it */
1610		if (signal_pending(current)) {
1611			ret = -ERESTARTSYS;
1612			break;
1613		}
1614		cprev = cnow;
1615	}
1616	current->state = TASK_RUNNING;
1617	remove_wait_queue(&tiocmget->waitq, &wait);
1618
1619	return ret;
1620}
1621
1622/*
1623 * Get counter of input serial line interrupts (DCD,RI,DSR,CTS)
1624 * Return: write counters to the user passed counter struct
1625 * NB: both 1->0 and 0->1 transitions are counted except for
1626 *     RI where only 0->1 is counted.
1627 */
1628static int hso_get_count(struct tty_struct *tty,
1629		  struct serial_icounter_struct *icount)
1630{
1631	struct uart_icount cnow;
1632	struct hso_serial *serial = get_serial_by_tty(tty);
1633	struct hso_tiocmget  *tiocmget = serial->tiocmget;
1634
1635	memset(&icount, 0, sizeof(struct serial_icounter_struct));
1636
1637	if (!tiocmget)
1638		 return -ENOENT;
1639	spin_lock_irq(&serial->serial_lock);
1640	memcpy(&cnow, &tiocmget->icount, sizeof(struct uart_icount));
1641	spin_unlock_irq(&serial->serial_lock);
1642
1643	icount->cts         = cnow.cts;
1644	icount->dsr         = cnow.dsr;
1645	icount->rng         = cnow.rng;
1646	icount->dcd         = cnow.dcd;
1647	icount->rx          = cnow.rx;
1648	icount->tx          = cnow.tx;
1649	icount->frame       = cnow.frame;
1650	icount->overrun     = cnow.overrun;
1651	icount->parity      = cnow.parity;
1652	icount->brk         = cnow.brk;
1653	icount->buf_overrun = cnow.buf_overrun;
1654
1655	return 0;
1656}
1657
1658
1659static int hso_serial_tiocmget(struct tty_struct *tty)
1660{
1661	int retval;
1662	struct hso_serial *serial = get_serial_by_tty(tty);
1663	struct hso_tiocmget  *tiocmget;
1664	u16 UART_state_bitmap;
1665
1666	/* sanity check */
1667	if (!serial) {
1668		D1("no tty structures");
1669		return -EINVAL;
1670	}
1671	spin_lock_irq(&serial->serial_lock);
1672	retval = ((serial->rts_state) ? TIOCM_RTS : 0) |
1673	    ((serial->dtr_state) ? TIOCM_DTR : 0);
1674	tiocmget = serial->tiocmget;
1675	if (tiocmget) {
1676
1677		UART_state_bitmap = le16_to_cpu(
1678			tiocmget->prev_UART_state_bitmap);
1679		if (UART_state_bitmap & B_RING_SIGNAL)
1680			retval |=  TIOCM_RNG;
1681		if (UART_state_bitmap & B_RX_CARRIER)
1682			retval |=  TIOCM_CD;
1683		if (UART_state_bitmap & B_TX_CARRIER)
1684			retval |=  TIOCM_DSR;
1685	}
1686	spin_unlock_irq(&serial->serial_lock);
1687	return retval;
1688}
1689
1690static int hso_serial_tiocmset(struct tty_struct *tty,
1691			       unsigned int set, unsigned int clear)
1692{
1693	int val = 0;
1694	unsigned long flags;
1695	int if_num;
1696	struct hso_serial *serial = get_serial_by_tty(tty);
1697
1698	/* sanity check */
1699	if (!serial) {
1700		D1("no tty structures");
1701		return -EINVAL;
1702	}
1703
1704	if ((serial->parent->port_spec & HSO_PORT_MASK) != HSO_PORT_MODEM)
1705		return -EINVAL;
1706
1707	if_num = serial->parent->interface->altsetting->desc.bInterfaceNumber;
1708
1709	spin_lock_irqsave(&serial->serial_lock, flags);
1710	if (set & TIOCM_RTS)
1711		serial->rts_state = 1;
1712	if (set & TIOCM_DTR)
1713		serial->dtr_state = 1;
1714
1715	if (clear & TIOCM_RTS)
1716		serial->rts_state = 0;
1717	if (clear & TIOCM_DTR)
1718		serial->dtr_state = 0;
1719
1720	if (serial->dtr_state)
1721		val |= 0x01;
1722	if (serial->rts_state)
1723		val |= 0x02;
1724
1725	spin_unlock_irqrestore(&serial->serial_lock, flags);
1726
1727	return usb_control_msg(serial->parent->usb,
1728			       usb_rcvctrlpipe(serial->parent->usb, 0), 0x22,
1729			       0x21, val, if_num, NULL, 0,
1730			       USB_CTRL_SET_TIMEOUT);
1731}
1732
1733static int hso_serial_ioctl(struct tty_struct *tty,
1734			    unsigned int cmd, unsigned long arg)
1735{
1736	struct hso_serial *serial =  get_serial_by_tty(tty);
1737	int ret = 0;
1738	D4("IOCTL cmd: %d, arg: %ld", cmd, arg);
1739
1740	if (!serial)
1741		return -ENODEV;
1742	switch (cmd) {
1743	case TIOCMIWAIT:
1744		ret = hso_wait_modem_status(serial, arg);
1745		break;
1746	default:
1747		ret = -ENOIOCTLCMD;
1748		break;
1749	}
1750	return ret;
1751}
1752
1753
1754/* starts a transmit */
1755static void hso_kick_transmit(struct hso_serial *serial)
1756{
1757	u8 *temp;
1758	unsigned long flags;
1759	int res;
1760
1761	spin_lock_irqsave(&serial->serial_lock, flags);
1762	if (!serial->tx_buffer_count)
1763		goto out;
1764
1765	if (serial->tx_urb_used)
1766		goto out;
1767
1768	/* Wakeup USB interface if necessary */
1769	if (hso_get_activity(serial->parent) == -EAGAIN)
1770		goto out;
1771
1772	/* Switch pointers around to avoid memcpy */
1773	temp = serial->tx_buffer;
1774	serial->tx_buffer = serial->tx_data;
1775	serial->tx_data = temp;
1776	serial->tx_data_count = serial->tx_buffer_count;
1777	serial->tx_buffer_count = 0;
1778
1779	/* If temp is set, it means we switched buffers */
1780	if (temp && serial->write_data) {
1781		res = serial->write_data(serial);
1782		if (res >= 0)
1783			serial->tx_urb_used = 1;
1784	}
1785out:
1786	spin_unlock_irqrestore(&serial->serial_lock, flags);
1787}
1788
1789/* make a request (for reading and writing data to muxed serial port) */
1790static int mux_device_request(struct hso_serial *serial, u8 type, u16 port,
1791			      struct urb *ctrl_urb,
1792			      struct usb_ctrlrequest *ctrl_req,
1793			      u8 *ctrl_urb_data, u32 size)
1794{
1795	int result;
1796	int pipe;
1797
1798	/* Sanity check */
1799	if (!serial || !ctrl_urb || !ctrl_req) {
1800		printk(KERN_ERR "%s: Wrong arguments\n", __func__);
1801		return -EINVAL;
1802	}
1803
1804	/* initialize */
1805	ctrl_req->wValue = 0;
1806	ctrl_req->wIndex = cpu_to_le16(hso_port_to_mux(port));
1807	ctrl_req->wLength = cpu_to_le16(size);
1808
1809	if (type == USB_CDC_GET_ENCAPSULATED_RESPONSE) {
1810		/* Reading command */
1811		ctrl_req->bRequestType = USB_DIR_IN |
1812					 USB_TYPE_OPTION_VENDOR |
1813					 USB_RECIP_INTERFACE;
1814		ctrl_req->bRequest = USB_CDC_GET_ENCAPSULATED_RESPONSE;
1815		pipe = usb_rcvctrlpipe(serial->parent->usb, 0);
1816	} else {
1817		/* Writing command */
1818		ctrl_req->bRequestType = USB_DIR_OUT |
1819					 USB_TYPE_OPTION_VENDOR |
1820					 USB_RECIP_INTERFACE;
1821		ctrl_req->bRequest = USB_CDC_SEND_ENCAPSULATED_COMMAND;
1822		pipe = usb_sndctrlpipe(serial->parent->usb, 0);
1823	}
1824	/* syslog */
1825	D2("%s command (%02x) len: %d, port: %d",
1826	   type == USB_CDC_GET_ENCAPSULATED_RESPONSE ? "Read" : "Write",
1827	   ctrl_req->bRequestType, ctrl_req->wLength, port);
1828
1829	/* Load ctrl urb */
1830	ctrl_urb->transfer_flags = 0;
1831	usb_fill_control_urb(ctrl_urb,
1832			     serial->parent->usb,
1833			     pipe,
1834			     (u8 *) ctrl_req,
1835			     ctrl_urb_data, size, ctrl_callback, serial);
1836	/* Send it on merry way */
1837	result = usb_submit_urb(ctrl_urb, GFP_ATOMIC);
1838	if (result) {
1839		dev_err(&ctrl_urb->dev->dev,
1840			"%s failed submit ctrl_urb %d type %d\n", __func__,
1841			result, type);
1842		return result;
1843	}
1844
1845	/* done */
1846	return size;
1847}
1848
1849/* called by intr_callback when read occurs */
1850static int hso_mux_serial_read(struct hso_serial *serial)
1851{
1852	if (!serial)
1853		return -EINVAL;
1854
1855	/* clean data */
1856	memset(serial->rx_data[0], 0, CTRL_URB_RX_SIZE);
1857	/* make the request */
1858
1859	if (serial->num_rx_urbs != 1) {
1860		dev_err(&serial->parent->interface->dev,
1861			"ERROR: mux'd reads with multiple buffers "
1862			"not possible\n");
1863		return 0;
1864	}
1865	return mux_device_request(serial,
1866				  USB_CDC_GET_ENCAPSULATED_RESPONSE,
1867				  serial->parent->port_spec & HSO_PORT_MASK,
1868				  serial->rx_urb[0],
1869				  &serial->ctrl_req_rx,
1870				  serial->rx_data[0], serial->rx_data_length);
1871}
1872
1873/* used for muxed serial port callback (muxed serial read) */
1874static void intr_callback(struct urb *urb)
1875{
1876	struct hso_shared_int *shared_int = urb->context;
1877	struct hso_serial *serial;
1878	unsigned char *port_req;
1879	int status = urb->status;
1880	int i;
1881
1882	usb_mark_last_busy(urb->dev);
1883
1884	/* sanity check */
1885	if (!shared_int)
1886		return;
1887
1888	/* status check */
1889	if (status) {
1890		handle_usb_error(status, __func__, NULL);
1891		return;
1892	}
1893	D4("\n--- Got intr callback 0x%02X ---", status);
1894
1895	/* what request? */
1896	port_req = urb->transfer_buffer;
1897	D4(" port_req = 0x%.2X\n", *port_req);
1898	/* loop over all muxed ports to find the one sending this */
1899	for (i = 0; i < 8; i++) {
1900		/* max 8 channels on MUX */
1901		if (*port_req & (1 << i)) {
1902			serial = get_serial_by_shared_int_and_type(shared_int,
1903								   (1 << i));
1904			if (serial != NULL) {
1905				D1("Pending read interrupt on port %d\n", i);
1906				spin_lock(&serial->serial_lock);
1907				if (serial->rx_state == RX_IDLE &&
1908					serial->open_count > 0) {
1909					/* Setup and send a ctrl req read on
1910					 * port i */
1911					if (!serial->rx_urb_filled[0]) {
1912						serial->rx_state = RX_SENT;
1913						hso_mux_serial_read(serial);
1914					} else
1915						serial->rx_state = RX_PENDING;
1916				} else {
1917					D1("Already a read pending on "
1918					   "port %d or port not open\n", i);
1919				}
1920				spin_unlock(&serial->serial_lock);
1921			}
1922		}
1923	}
1924	/* Resubmit interrupt urb */
1925	hso_mux_submit_intr_urb(shared_int, urb->dev, GFP_ATOMIC);
1926}
1927
1928/* called for writing to muxed serial port */
1929static int hso_mux_serial_write_data(struct hso_serial *serial)
1930{
1931	if (NULL == serial)
1932		return -EINVAL;
1933
1934	return mux_device_request(serial,
1935				  USB_CDC_SEND_ENCAPSULATED_COMMAND,
1936				  serial->parent->port_spec & HSO_PORT_MASK,
1937				  serial->tx_urb,
1938				  &serial->ctrl_req_tx,
1939				  serial->tx_data, serial->tx_data_count);
1940}
1941
1942/* write callback for Diag and CS port */
1943static void hso_std_serial_write_bulk_callback(struct urb *urb)
1944{
1945	struct hso_serial *serial = urb->context;
1946	int status = urb->status;
1947	struct tty_struct *tty;
1948
1949	/* sanity check */
1950	if (!serial) {
1951		D1("serial == NULL");
1952		return;
1953	}
1954
1955	spin_lock(&serial->serial_lock);
1956	serial->tx_urb_used = 0;
1957	tty = tty_kref_get(serial->tty);
1958	spin_unlock(&serial->serial_lock);
1959	if (status) {
1960		handle_usb_error(status, __func__, serial->parent);
1961		tty_kref_put(tty);
1962		return;
1963	}
1964	hso_put_activity(serial->parent);
1965	if (tty) {
1966		tty_wakeup(tty);
1967		tty_kref_put(tty);
1968	}
1969	hso_kick_transmit(serial);
1970
1971	D1(" ");
1972}
1973
1974/* called for writing diag or CS serial port */
1975static int hso_std_serial_write_data(struct hso_serial *serial)
1976{
1977	int count = serial->tx_data_count;
1978	int result;
1979
1980	usb_fill_bulk_urb(serial->tx_urb,
1981			  serial->parent->usb,
1982			  usb_sndbulkpipe(serial->parent->usb,
1983					  serial->out_endp->
1984					  bEndpointAddress & 0x7F),
1985			  serial->tx_data, serial->tx_data_count,
1986			  hso_std_serial_write_bulk_callback, serial);
1987
1988	result = usb_submit_urb(serial->tx_urb, GFP_ATOMIC);
1989	if (result) {
1990		dev_warn(&serial->parent->usb->dev,
1991			 "Failed to submit urb - res %d\n", result);
1992		return result;
1993	}
1994
1995	return count;
1996}
1997
1998/* callback after read or write on muxed serial port */
1999static void ctrl_callback(struct urb *urb)
2000{
2001	struct hso_serial *serial = urb->context;
2002	struct usb_ctrlrequest *req;
2003	int status = urb->status;
2004	struct tty_struct *tty;
2005
2006	/* sanity check */
2007	if (!serial)
2008		return;
2009
2010	spin_lock(&serial->serial_lock);
2011	serial->tx_urb_used = 0;
2012	tty = tty_kref_get(serial->tty);
2013	spin_unlock(&serial->serial_lock);
2014	if (status) {
2015		handle_usb_error(status, __func__, serial->parent);
2016		tty_kref_put(tty);
2017		return;
2018	}
2019
2020	/* what request? */
2021	req = (struct usb_ctrlrequest *)(urb->setup_packet);
2022	D4("\n--- Got muxed ctrl callback 0x%02X ---", status);
2023	D4("Actual length of urb = %d\n", urb->actual_length);
2024	DUMP1(urb->transfer_buffer, urb->actual_length);
2025
2026	if (req->bRequestType ==
2027	    (USB_DIR_IN | USB_TYPE_OPTION_VENDOR | USB_RECIP_INTERFACE)) {
2028		/* response to a read command */
2029		serial->rx_urb_filled[0] = 1;
2030		spin_lock(&serial->serial_lock);
2031		put_rxbuf_data_and_resubmit_ctrl_urb(serial);
2032		spin_unlock(&serial->serial_lock);
2033	} else {
2034		hso_put_activity(serial->parent);
2035		if (tty)
2036			tty_wakeup(tty);
2037		/* response to a write command */
2038		hso_kick_transmit(serial);
2039	}
2040	tty_kref_put(tty);
2041}
2042
2043/* handle RX data for serial port */
2044static int put_rxbuf_data(struct urb *urb, struct hso_serial *serial)
2045{
2046	struct tty_struct *tty;
2047	int write_length_remaining = 0;
2048	int curr_write_len;
2049
2050	/* Sanity check */
2051	if (urb == NULL || serial == NULL) {
2052		D1("serial = NULL");
2053		return -2;
2054	}
2055
2056	/* All callers to put_rxbuf_data hold serial_lock */
2057	tty = tty_kref_get(serial->tty);
2058
2059	/* Push data to tty */
2060	if (tty) {
2061		write_length_remaining = urb->actual_length -
2062			serial->curr_rx_urb_offset;
2063		D1("data to push to tty");
2064		while (write_length_remaining) {
2065			if (test_bit(TTY_THROTTLED, &tty->flags)) {
2066				tty_kref_put(tty);
2067				return -1;
2068			}
2069			curr_write_len =  tty_insert_flip_string
2070				(tty, urb->transfer_buffer +
2071				 serial->curr_rx_urb_offset,
2072				 write_length_remaining);
2073			serial->curr_rx_urb_offset += curr_write_len;
2074			write_length_remaining -= curr_write_len;
2075			tty_flip_buffer_push(tty);
2076		}
 
 
 
 
 
 
2077	}
 
 
2078	if (write_length_remaining == 0) {
2079		serial->curr_rx_urb_offset = 0;
2080		serial->rx_urb_filled[hso_urb_to_index(serial, urb)] = 0;
2081	}
2082	tty_kref_put(tty);
2083	return write_length_remaining;
2084}
2085
2086
2087/* Base driver functions */
2088
2089static void hso_log_port(struct hso_device *hso_dev)
2090{
2091	char *port_type;
2092	char port_dev[20];
2093
2094	switch (hso_dev->port_spec & HSO_PORT_MASK) {
2095	case HSO_PORT_CONTROL:
2096		port_type = "Control";
2097		break;
2098	case HSO_PORT_APP:
2099		port_type = "Application";
2100		break;
2101	case HSO_PORT_GPS:
2102		port_type = "GPS";
2103		break;
2104	case HSO_PORT_GPS_CONTROL:
2105		port_type = "GPS control";
2106		break;
2107	case HSO_PORT_APP2:
2108		port_type = "Application2";
2109		break;
2110	case HSO_PORT_PCSC:
2111		port_type = "PCSC";
2112		break;
2113	case HSO_PORT_DIAG:
2114		port_type = "Diagnostic";
2115		break;
2116	case HSO_PORT_DIAG2:
2117		port_type = "Diagnostic2";
2118		break;
2119	case HSO_PORT_MODEM:
2120		port_type = "Modem";
2121		break;
2122	case HSO_PORT_NETWORK:
2123		port_type = "Network";
2124		break;
2125	default:
2126		port_type = "Unknown";
2127		break;
2128	}
2129	if ((hso_dev->port_spec & HSO_PORT_MASK) == HSO_PORT_NETWORK) {
2130		sprintf(port_dev, "%s", dev2net(hso_dev)->net->name);
2131	} else
2132		sprintf(port_dev, "/dev/%s%d", tty_filename,
2133			dev2ser(hso_dev)->minor);
2134
2135	dev_dbg(&hso_dev->interface->dev, "HSO: Found %s port %s\n",
2136		port_type, port_dev);
2137}
2138
2139static int hso_start_net_device(struct hso_device *hso_dev)
2140{
2141	int i, result = 0;
2142	struct hso_net *hso_net = dev2net(hso_dev);
2143
2144	if (!hso_net)
2145		return -ENODEV;
2146
2147	/* send URBs for all read buffers */
2148	for (i = 0; i < MUX_BULK_RX_BUF_COUNT; i++) {
2149
2150		/* Prep a receive URB */
2151		usb_fill_bulk_urb(hso_net->mux_bulk_rx_urb_pool[i],
2152				  hso_dev->usb,
2153				  usb_rcvbulkpipe(hso_dev->usb,
2154						  hso_net->in_endp->
2155						  bEndpointAddress & 0x7F),
2156				  hso_net->mux_bulk_rx_buf_pool[i],
2157				  MUX_BULK_RX_BUF_SIZE, read_bulk_callback,
2158				  hso_net);
2159
2160		/* Put it out there so the device can send us stuff */
2161		result = usb_submit_urb(hso_net->mux_bulk_rx_urb_pool[i],
2162					GFP_NOIO);
2163		if (result)
2164			dev_warn(&hso_dev->usb->dev,
2165				"%s failed mux_bulk_rx_urb[%d] %d\n", __func__,
2166				i, result);
2167	}
2168
2169	return result;
2170}
2171
2172static int hso_stop_net_device(struct hso_device *hso_dev)
2173{
2174	int i;
2175	struct hso_net *hso_net = dev2net(hso_dev);
2176
2177	if (!hso_net)
2178		return -ENODEV;
2179
2180	for (i = 0; i < MUX_BULK_RX_BUF_COUNT; i++) {
2181		if (hso_net->mux_bulk_rx_urb_pool[i])
2182			usb_kill_urb(hso_net->mux_bulk_rx_urb_pool[i]);
2183
2184	}
2185	if (hso_net->mux_bulk_tx_urb)
2186		usb_kill_urb(hso_net->mux_bulk_tx_urb);
2187
2188	return 0;
2189}
2190
2191static int hso_start_serial_device(struct hso_device *hso_dev, gfp_t flags)
2192{
2193	int i, result = 0;
2194	struct hso_serial *serial = dev2ser(hso_dev);
2195
2196	if (!serial)
2197		return -ENODEV;
2198
2199	/* If it is not the MUX port fill in and submit a bulk urb (already
2200	 * allocated in hso_serial_start) */
2201	if (!(serial->parent->port_spec & HSO_INTF_MUX)) {
2202		for (i = 0; i < serial->num_rx_urbs; i++) {
2203			usb_fill_bulk_urb(serial->rx_urb[i],
2204					  serial->parent->usb,
2205					  usb_rcvbulkpipe(serial->parent->usb,
2206							  serial->in_endp->
2207							  bEndpointAddress &
2208							  0x7F),
2209					  serial->rx_data[i],
2210					  serial->rx_data_length,
2211					  hso_std_serial_read_bulk_callback,
2212					  serial);
2213			result = usb_submit_urb(serial->rx_urb[i], flags);
2214			if (result) {
2215				dev_warn(&serial->parent->usb->dev,
2216					 "Failed to submit urb - res %d\n",
2217					 result);
2218				break;
2219			}
2220		}
2221	} else {
2222		mutex_lock(&serial->shared_int->shared_int_lock);
2223		if (!serial->shared_int->use_count) {
2224			result =
2225			    hso_mux_submit_intr_urb(serial->shared_int,
2226						    hso_dev->usb, flags);
2227		}
2228		serial->shared_int->use_count++;
2229		mutex_unlock(&serial->shared_int->shared_int_lock);
2230	}
2231	if (serial->tiocmget)
2232		tiocmget_submit_urb(serial,
2233				    serial->tiocmget,
2234				    serial->parent->usb);
2235	return result;
2236}
2237
2238static int hso_stop_serial_device(struct hso_device *hso_dev)
2239{
2240	int i;
2241	struct hso_serial *serial = dev2ser(hso_dev);
2242	struct hso_tiocmget  *tiocmget;
2243
2244	if (!serial)
2245		return -ENODEV;
2246
2247	for (i = 0; i < serial->num_rx_urbs; i++) {
2248		if (serial->rx_urb[i]) {
2249				usb_kill_urb(serial->rx_urb[i]);
2250				serial->rx_urb_filled[i] = 0;
2251		}
2252	}
2253	serial->curr_rx_urb_idx = 0;
2254	serial->curr_rx_urb_offset = 0;
2255
2256	if (serial->tx_urb)
2257		usb_kill_urb(serial->tx_urb);
2258
2259	if (serial->shared_int) {
2260		mutex_lock(&serial->shared_int->shared_int_lock);
2261		if (serial->shared_int->use_count &&
2262		    (--serial->shared_int->use_count == 0)) {
2263			struct urb *urb;
2264
2265			urb = serial->shared_int->shared_intr_urb;
2266			if (urb)
2267				usb_kill_urb(urb);
2268		}
2269		mutex_unlock(&serial->shared_int->shared_int_lock);
2270	}
2271	tiocmget = serial->tiocmget;
2272	if (tiocmget) {
2273		wake_up_interruptible(&tiocmget->waitq);
2274		usb_kill_urb(tiocmget->urb);
2275	}
2276
2277	return 0;
2278}
2279
2280static void hso_serial_common_free(struct hso_serial *serial)
2281{
2282	int i;
2283
2284	if (serial->parent->dev)
2285		device_remove_file(serial->parent->dev, &dev_attr_hsotype);
2286
2287	tty_unregister_device(tty_drv, serial->minor);
2288
2289	for (i = 0; i < serial->num_rx_urbs; i++) {
2290		/* unlink and free RX URB */
2291		usb_free_urb(serial->rx_urb[i]);
2292		/* free the RX buffer */
2293		kfree(serial->rx_data[i]);
2294	}
2295
2296	/* unlink and free TX URB */
2297	usb_free_urb(serial->tx_urb);
2298	kfree(serial->tx_data);
 
2299}
2300
2301static int hso_serial_common_create(struct hso_serial *serial, int num_urbs,
2302				    int rx_size, int tx_size)
2303{
2304	struct device *dev;
2305	int minor;
2306	int i;
2307
 
 
2308	minor = get_free_serial_index();
2309	if (minor < 0)
2310		goto exit;
2311
2312	/* register our minor number */
2313	serial->parent->dev = tty_register_device(tty_drv, minor,
2314					&serial->parent->interface->dev);
2315	dev = serial->parent->dev;
2316	dev_set_drvdata(dev, serial->parent);
2317	i = device_create_file(dev, &dev_attr_hsotype);
2318
2319	/* fill in specific data for later use */
2320	serial->minor = minor;
2321	serial->magic = HSO_SERIAL_MAGIC;
2322	spin_lock_init(&serial->serial_lock);
2323	serial->num_rx_urbs = num_urbs;
2324
2325	/* RX, allocate urb and initialize */
2326
2327	/* prepare our RX buffer */
2328	serial->rx_data_length = rx_size;
2329	for (i = 0; i < serial->num_rx_urbs; i++) {
2330		serial->rx_urb[i] = usb_alloc_urb(0, GFP_KERNEL);
2331		if (!serial->rx_urb[i]) {
2332			dev_err(dev, "Could not allocate urb?\n");
2333			goto exit;
2334		}
2335		serial->rx_urb[i]->transfer_buffer = NULL;
2336		serial->rx_urb[i]->transfer_buffer_length = 0;
2337		serial->rx_data[i] = kzalloc(serial->rx_data_length,
2338					     GFP_KERNEL);
2339		if (!serial->rx_data[i]) {
2340			dev_err(dev, "%s - Out of memory\n", __func__);
2341			goto exit;
2342		}
2343	}
2344
2345	/* TX, allocate urb and initialize */
2346	serial->tx_urb = usb_alloc_urb(0, GFP_KERNEL);
2347	if (!serial->tx_urb) {
2348		dev_err(dev, "Could not allocate urb?\n");
2349		goto exit;
2350	}
2351	serial->tx_urb->transfer_buffer = NULL;
2352	serial->tx_urb->transfer_buffer_length = 0;
2353	/* prepare our TX buffer */
2354	serial->tx_data_count = 0;
2355	serial->tx_buffer_count = 0;
2356	serial->tx_data_length = tx_size;
2357	serial->tx_data = kzalloc(serial->tx_data_length, GFP_KERNEL);
2358	if (!serial->tx_data) {
2359		dev_err(dev, "%s - Out of memory\n", __func__);
2360		goto exit;
2361	}
2362	serial->tx_buffer = kzalloc(serial->tx_data_length, GFP_KERNEL);
2363	if (!serial->tx_buffer) {
2364		dev_err(dev, "%s - Out of memory\n", __func__);
2365		goto exit;
2366	}
2367
2368	return 0;
2369exit:
2370	hso_serial_common_free(serial);
2371	return -1;
2372}
2373
2374/* Creates a general hso device */
2375static struct hso_device *hso_create_device(struct usb_interface *intf,
2376					    int port_spec)
2377{
2378	struct hso_device *hso_dev;
2379
2380	hso_dev = kzalloc(sizeof(*hso_dev), GFP_ATOMIC);
2381	if (!hso_dev)
2382		return NULL;
2383
2384	hso_dev->port_spec = port_spec;
2385	hso_dev->usb = interface_to_usbdev(intf);
2386	hso_dev->interface = intf;
2387	kref_init(&hso_dev->ref);
2388	mutex_init(&hso_dev->mutex);
2389
2390	INIT_WORK(&hso_dev->async_get_intf, async_get_intf);
2391	INIT_WORK(&hso_dev->async_put_intf, async_put_intf);
2392	INIT_WORK(&hso_dev->reset_device, reset_device);
2393
2394	return hso_dev;
2395}
2396
2397/* Removes a network device in the network device table */
2398static int remove_net_device(struct hso_device *hso_dev)
2399{
2400	int i;
2401
2402	for (i = 0; i < HSO_MAX_NET_DEVICES; i++) {
2403		if (network_table[i] == hso_dev) {
2404			network_table[i] = NULL;
2405			break;
2406		}
2407	}
2408	if (i == HSO_MAX_NET_DEVICES)
2409		return -1;
2410	return 0;
2411}
2412
2413/* Frees our network device */
2414static void hso_free_net_device(struct hso_device *hso_dev)
2415{
2416	int i;
2417	struct hso_net *hso_net = dev2net(hso_dev);
2418
2419	if (!hso_net)
2420		return;
2421
2422	remove_net_device(hso_net->parent);
2423
2424	if (hso_net->net)
2425		unregister_netdev(hso_net->net);
2426
2427	/* start freeing */
2428	for (i = 0; i < MUX_BULK_RX_BUF_COUNT; i++) {
2429		usb_free_urb(hso_net->mux_bulk_rx_urb_pool[i]);
2430		kfree(hso_net->mux_bulk_rx_buf_pool[i]);
2431		hso_net->mux_bulk_rx_buf_pool[i] = NULL;
2432	}
2433	usb_free_urb(hso_net->mux_bulk_tx_urb);
2434	kfree(hso_net->mux_bulk_tx_buf);
2435	hso_net->mux_bulk_tx_buf = NULL;
2436
2437	if (hso_net->net)
2438		free_netdev(hso_net->net);
2439
2440	kfree(hso_dev);
2441}
2442
2443static const struct net_device_ops hso_netdev_ops = {
2444	.ndo_open	= hso_net_open,
2445	.ndo_stop	= hso_net_close,
2446	.ndo_start_xmit = hso_net_start_xmit,
2447	.ndo_tx_timeout = hso_net_tx_timeout,
2448};
2449
2450/* initialize the network interface */
2451static void hso_net_init(struct net_device *net)
2452{
2453	struct hso_net *hso_net = netdev_priv(net);
2454
2455	D1("sizeof hso_net is %d", (int)sizeof(*hso_net));
2456
2457	/* fill in the other fields */
2458	net->netdev_ops = &hso_netdev_ops;
2459	net->watchdog_timeo = HSO_NET_TX_TIMEOUT;
2460	net->flags = IFF_POINTOPOINT | IFF_NOARP | IFF_MULTICAST;
2461	net->type = ARPHRD_NONE;
2462	net->mtu = DEFAULT_MTU - 14;
2463	net->tx_queue_len = 10;
2464	SET_ETHTOOL_OPS(net, &ops);
2465
2466	/* and initialize the semaphore */
2467	spin_lock_init(&hso_net->net_lock);
2468}
2469
2470/* Adds a network device in the network device table */
2471static int add_net_device(struct hso_device *hso_dev)
2472{
2473	int i;
2474
2475	for (i = 0; i < HSO_MAX_NET_DEVICES; i++) {
2476		if (network_table[i] == NULL) {
2477			network_table[i] = hso_dev;
2478			break;
2479		}
2480	}
2481	if (i == HSO_MAX_NET_DEVICES)
2482		return -1;
2483	return 0;
2484}
2485
2486static int hso_rfkill_set_block(void *data, bool blocked)
2487{
2488	struct hso_device *hso_dev = data;
2489	int enabled = !blocked;
2490	int rv;
2491
2492	mutex_lock(&hso_dev->mutex);
2493	if (hso_dev->usb_gone)
2494		rv = 0;
2495	else
2496		rv = usb_control_msg(hso_dev->usb, usb_rcvctrlpipe(hso_dev->usb, 0),
2497				       enabled ? 0x82 : 0x81, 0x40, 0, 0, NULL, 0,
2498				       USB_CTRL_SET_TIMEOUT);
2499	mutex_unlock(&hso_dev->mutex);
2500	return rv;
2501}
2502
2503static const struct rfkill_ops hso_rfkill_ops = {
2504	.set_block = hso_rfkill_set_block,
2505};
2506
2507/* Creates and sets up everything for rfkill */
2508static void hso_create_rfkill(struct hso_device *hso_dev,
2509			     struct usb_interface *interface)
2510{
2511	struct hso_net *hso_net = dev2net(hso_dev);
2512	struct device *dev = &hso_net->net->dev;
2513	char *rfkn;
2514
2515	rfkn = kzalloc(20, GFP_KERNEL);
2516	if (!rfkn)
2517		dev_err(dev, "%s - Out of memory\n", __func__);
2518
2519	snprintf(rfkn, 20, "hso-%d",
2520		 interface->altsetting->desc.bInterfaceNumber);
2521
2522	hso_net->rfkill = rfkill_alloc(rfkn,
2523				       &interface_to_usbdev(interface)->dev,
2524				       RFKILL_TYPE_WWAN,
2525				       &hso_rfkill_ops, hso_dev);
2526	if (!hso_net->rfkill) {
2527		dev_err(dev, "%s - Out of memory\n", __func__);
2528		kfree(rfkn);
2529		return;
2530	}
2531	if (rfkill_register(hso_net->rfkill) < 0) {
2532		rfkill_destroy(hso_net->rfkill);
2533		kfree(rfkn);
2534		hso_net->rfkill = NULL;
2535		dev_err(dev, "%s - Failed to register rfkill\n", __func__);
2536		return;
2537	}
2538}
2539
2540static struct device_type hso_type = {
2541	.name	= "wwan",
2542};
2543
2544/* Creates our network device */
2545static struct hso_device *hso_create_net_device(struct usb_interface *interface,
2546						int port_spec)
2547{
2548	int result, i;
2549	struct net_device *net;
2550	struct hso_net *hso_net;
2551	struct hso_device *hso_dev;
2552
2553	hso_dev = hso_create_device(interface, port_spec);
2554	if (!hso_dev)
2555		return NULL;
2556
2557	/* allocate our network device, then we can put in our private data */
2558	/* call hso_net_init to do the basic initialization */
2559	net = alloc_netdev(sizeof(struct hso_net), "hso%d", hso_net_init);
2560	if (!net) {
2561		dev_err(&interface->dev, "Unable to create ethernet device\n");
2562		goto exit;
2563	}
2564
2565	hso_net = netdev_priv(net);
2566
2567	hso_dev->port_data.dev_net = hso_net;
2568	hso_net->net = net;
2569	hso_net->parent = hso_dev;
2570
2571	hso_net->in_endp = hso_get_ep(interface, USB_ENDPOINT_XFER_BULK,
2572				      USB_DIR_IN);
2573	if (!hso_net->in_endp) {
2574		dev_err(&interface->dev, "Can't find BULK IN endpoint\n");
2575		goto exit;
2576	}
2577	hso_net->out_endp = hso_get_ep(interface, USB_ENDPOINT_XFER_BULK,
2578				       USB_DIR_OUT);
2579	if (!hso_net->out_endp) {
2580		dev_err(&interface->dev, "Can't find BULK OUT endpoint\n");
2581		goto exit;
2582	}
2583	SET_NETDEV_DEV(net, &interface->dev);
2584	SET_NETDEV_DEVTYPE(net, &hso_type);
2585
2586	/* registering our net device */
2587	result = register_netdev(net);
2588	if (result) {
2589		dev_err(&interface->dev, "Failed to register device\n");
2590		goto exit;
2591	}
2592
2593	/* start allocating */
2594	for (i = 0; i < MUX_BULK_RX_BUF_COUNT; i++) {
2595		hso_net->mux_bulk_rx_urb_pool[i] = usb_alloc_urb(0, GFP_KERNEL);
2596		if (!hso_net->mux_bulk_rx_urb_pool[i]) {
2597			dev_err(&interface->dev, "Could not allocate rx urb\n");
2598			goto exit;
2599		}
2600		hso_net->mux_bulk_rx_buf_pool[i] = kzalloc(MUX_BULK_RX_BUF_SIZE,
2601							   GFP_KERNEL);
2602		if (!hso_net->mux_bulk_rx_buf_pool[i]) {
2603			dev_err(&interface->dev, "Could not allocate rx buf\n");
2604			goto exit;
2605		}
2606	}
2607	hso_net->mux_bulk_tx_urb = usb_alloc_urb(0, GFP_KERNEL);
2608	if (!hso_net->mux_bulk_tx_urb) {
2609		dev_err(&interface->dev, "Could not allocate tx urb\n");
2610		goto exit;
2611	}
2612	hso_net->mux_bulk_tx_buf = kzalloc(MUX_BULK_TX_BUF_SIZE, GFP_KERNEL);
2613	if (!hso_net->mux_bulk_tx_buf) {
2614		dev_err(&interface->dev, "Could not allocate tx buf\n");
2615		goto exit;
2616	}
2617
2618	add_net_device(hso_dev);
2619
2620	hso_log_port(hso_dev);
2621
2622	hso_create_rfkill(hso_dev, interface);
2623
2624	return hso_dev;
2625exit:
2626	hso_free_net_device(hso_dev);
2627	return NULL;
2628}
2629
2630static void hso_free_tiomget(struct hso_serial *serial)
2631{
2632	struct hso_tiocmget *tiocmget;
2633	if (!serial)
2634		return;
2635	tiocmget = serial->tiocmget;
2636	if (tiocmget) {
2637		usb_free_urb(tiocmget->urb);
2638		tiocmget->urb = NULL;
2639		serial->tiocmget = NULL;
2640		kfree(tiocmget);
2641	}
2642}
2643
2644/* Frees an AT channel ( goes for both mux and non-mux ) */
2645static void hso_free_serial_device(struct hso_device *hso_dev)
2646{
2647	struct hso_serial *serial = dev2ser(hso_dev);
2648
2649	if (!serial)
2650		return;
2651	set_serial_by_index(serial->minor, NULL);
2652
2653	hso_serial_common_free(serial);
2654
2655	if (serial->shared_int) {
2656		mutex_lock(&serial->shared_int->shared_int_lock);
2657		if (--serial->shared_int->ref_count == 0)
2658			hso_free_shared_int(serial->shared_int);
2659		else
2660			mutex_unlock(&serial->shared_int->shared_int_lock);
2661	}
2662	hso_free_tiomget(serial);
2663	kfree(serial);
2664	kfree(hso_dev);
2665}
2666
2667/* Creates a bulk AT channel */
2668static struct hso_device *hso_create_bulk_serial_device(
2669			struct usb_interface *interface, int port)
2670{
2671	struct hso_device *hso_dev;
2672	struct hso_serial *serial;
2673	int num_urbs;
2674	struct hso_tiocmget *tiocmget;
2675
2676	hso_dev = hso_create_device(interface, port);
2677	if (!hso_dev)
2678		return NULL;
2679
2680	serial = kzalloc(sizeof(*serial), GFP_KERNEL);
2681	if (!serial)
2682		goto exit;
2683
2684	serial->parent = hso_dev;
2685	hso_dev->port_data.dev_serial = serial;
2686
2687	if ((port & HSO_PORT_MASK) == HSO_PORT_MODEM) {
2688		num_urbs = 2;
2689		serial->tiocmget = kzalloc(sizeof(struct hso_tiocmget),
2690					   GFP_KERNEL);
2691		/* it isn't going to break our heart if serial->tiocmget
2692		 *  allocation fails don't bother checking this.
2693		 */
2694		if (serial->tiocmget) {
2695			tiocmget = serial->tiocmget;
2696			tiocmget->urb = usb_alloc_urb(0, GFP_KERNEL);
2697			if (tiocmget->urb) {
2698				mutex_init(&tiocmget->mutex);
2699				init_waitqueue_head(&tiocmget->waitq);
2700				tiocmget->endp = hso_get_ep(
2701					interface,
2702					USB_ENDPOINT_XFER_INT,
2703					USB_DIR_IN);
2704			} else
2705				hso_free_tiomget(serial);
2706		}
2707	}
2708	else
2709		num_urbs = 1;
2710
2711	if (hso_serial_common_create(serial, num_urbs, BULK_URB_RX_SIZE,
2712				     BULK_URB_TX_SIZE))
2713		goto exit;
2714
2715	serial->in_endp = hso_get_ep(interface, USB_ENDPOINT_XFER_BULK,
2716				     USB_DIR_IN);
2717	if (!serial->in_endp) {
2718		dev_err(&interface->dev, "Failed to find BULK IN ep\n");
2719		goto exit2;
2720	}
2721
2722	if (!
2723	    (serial->out_endp =
2724	     hso_get_ep(interface, USB_ENDPOINT_XFER_BULK, USB_DIR_OUT))) {
2725		dev_err(&interface->dev, "Failed to find BULK IN ep\n");
2726		goto exit2;
2727	}
2728
2729	serial->write_data = hso_std_serial_write_data;
2730
2731	/* and record this serial */
2732	set_serial_by_index(serial->minor, serial);
2733
2734	/* setup the proc dirs and files if needed */
2735	hso_log_port(hso_dev);
2736
2737	/* done, return it */
2738	return hso_dev;
2739
2740exit2:
2741	hso_serial_common_free(serial);
2742exit:
2743	hso_free_tiomget(serial);
2744	kfree(serial);
2745	kfree(hso_dev);
2746	return NULL;
2747}
2748
2749/* Creates a multiplexed AT channel */
2750static
2751struct hso_device *hso_create_mux_serial_device(struct usb_interface *interface,
2752						int port,
2753						struct hso_shared_int *mux)
2754{
2755	struct hso_device *hso_dev;
2756	struct hso_serial *serial;
2757	int port_spec;
2758
2759	port_spec = HSO_INTF_MUX;
2760	port_spec &= ~HSO_PORT_MASK;
2761
2762	port_spec |= hso_mux_to_port(port);
2763	if ((port_spec & HSO_PORT_MASK) == HSO_PORT_NO_PORT)
2764		return NULL;
2765
2766	hso_dev = hso_create_device(interface, port_spec);
2767	if (!hso_dev)
2768		return NULL;
2769
2770	serial = kzalloc(sizeof(*serial), GFP_KERNEL);
2771	if (!serial)
2772		goto exit;
2773
2774	hso_dev->port_data.dev_serial = serial;
2775	serial->parent = hso_dev;
2776
2777	if (hso_serial_common_create
2778	    (serial, 1, CTRL_URB_RX_SIZE, CTRL_URB_TX_SIZE))
2779		goto exit;
2780
2781	serial->tx_data_length--;
2782	serial->write_data = hso_mux_serial_write_data;
2783
2784	serial->shared_int = mux;
2785	mutex_lock(&serial->shared_int->shared_int_lock);
2786	serial->shared_int->ref_count++;
2787	mutex_unlock(&serial->shared_int->shared_int_lock);
2788
2789	/* and record this serial */
2790	set_serial_by_index(serial->minor, serial);
2791
2792	/* setup the proc dirs and files if needed */
2793	hso_log_port(hso_dev);
2794
2795	/* done, return it */
2796	return hso_dev;
2797
2798exit:
2799	if (serial) {
2800		tty_unregister_device(tty_drv, serial->minor);
2801		kfree(serial);
2802	}
2803	if (hso_dev)
2804		kfree(hso_dev);
2805	return NULL;
2806
2807}
2808
2809static void hso_free_shared_int(struct hso_shared_int *mux)
2810{
2811	usb_free_urb(mux->shared_intr_urb);
2812	kfree(mux->shared_intr_buf);
2813	mutex_unlock(&mux->shared_int_lock);
2814	kfree(mux);
2815}
2816
2817static
2818struct hso_shared_int *hso_create_shared_int(struct usb_interface *interface)
2819{
2820	struct hso_shared_int *mux = kzalloc(sizeof(*mux), GFP_KERNEL);
2821
2822	if (!mux)
2823		return NULL;
2824
2825	mux->intr_endp = hso_get_ep(interface, USB_ENDPOINT_XFER_INT,
2826				    USB_DIR_IN);
2827	if (!mux->intr_endp) {
2828		dev_err(&interface->dev, "Can't find INT IN endpoint\n");
2829		goto exit;
2830	}
2831
2832	mux->shared_intr_urb = usb_alloc_urb(0, GFP_KERNEL);
2833	if (!mux->shared_intr_urb) {
2834		dev_err(&interface->dev, "Could not allocate intr urb?\n");
2835		goto exit;
2836	}
2837	mux->shared_intr_buf =
2838		kzalloc(le16_to_cpu(mux->intr_endp->wMaxPacketSize),
2839			GFP_KERNEL);
2840	if (!mux->shared_intr_buf) {
2841		dev_err(&interface->dev, "Could not allocate intr buf?\n");
2842		goto exit;
2843	}
2844
2845	mutex_init(&mux->shared_int_lock);
2846
2847	return mux;
2848
2849exit:
2850	kfree(mux->shared_intr_buf);
2851	usb_free_urb(mux->shared_intr_urb);
2852	kfree(mux);
2853	return NULL;
2854}
2855
2856/* Gets the port spec for a certain interface */
2857static int hso_get_config_data(struct usb_interface *interface)
2858{
2859	struct usb_device *usbdev = interface_to_usbdev(interface);
2860	u8 config_data[17];
2861	u32 if_num = interface->altsetting->desc.bInterfaceNumber;
2862	s32 result;
2863
 
 
2864	if (usb_control_msg(usbdev, usb_rcvctrlpipe(usbdev, 0),
2865			    0x86, 0xC0, 0, 0, config_data, 17,
2866			    USB_CTRL_SET_TIMEOUT) != 0x11) {
 
2867		return -EIO;
2868	}
2869
2870	switch (config_data[if_num]) {
2871	case 0x0:
2872		result = 0;
2873		break;
2874	case 0x1:
2875		result = HSO_PORT_DIAG;
2876		break;
2877	case 0x2:
2878		result = HSO_PORT_GPS;
2879		break;
2880	case 0x3:
2881		result = HSO_PORT_GPS_CONTROL;
2882		break;
2883	case 0x4:
2884		result = HSO_PORT_APP;
2885		break;
2886	case 0x5:
2887		result = HSO_PORT_APP2;
2888		break;
2889	case 0x6:
2890		result = HSO_PORT_CONTROL;
2891		break;
2892	case 0x7:
2893		result = HSO_PORT_NETWORK;
2894		break;
2895	case 0x8:
2896		result = HSO_PORT_MODEM;
2897		break;
2898	case 0x9:
2899		result = HSO_PORT_MSD;
2900		break;
2901	case 0xa:
2902		result = HSO_PORT_PCSC;
2903		break;
2904	case 0xb:
2905		result = HSO_PORT_VOICE;
2906		break;
2907	default:
2908		result = 0;
2909	}
2910
2911	if (result)
2912		result |= HSO_INTF_BULK;
2913
2914	if (config_data[16] & 0x1)
2915		result |= HSO_INFO_CRC_BUG;
2916
 
2917	return result;
2918}
2919
2920/* called once for each interface upon device insertion */
2921static int hso_probe(struct usb_interface *interface,
2922		     const struct usb_device_id *id)
2923{
2924	int mux, i, if_num, port_spec;
2925	unsigned char port_mask;
2926	struct hso_device *hso_dev = NULL;
2927	struct hso_shared_int *shared_int;
2928	struct hso_device *tmp_dev = NULL;
2929
 
 
 
 
 
2930	if_num = interface->altsetting->desc.bInterfaceNumber;
2931
2932	/* Get the interface/port specification from either driver_info or from
2933	 * the device itself */
2934	if (id->driver_info)
2935		port_spec = ((u32 *)(id->driver_info))[if_num];
2936	else
2937		port_spec = hso_get_config_data(interface);
2938
2939	if (interface->cur_altsetting->desc.bInterfaceClass != 0xFF) {
2940		dev_err(&interface->dev, "Not our interface\n");
2941		return -ENODEV;
2942	}
2943	/* Check if we need to switch to alt interfaces prior to port
2944	 * configuration */
2945	if (interface->num_altsetting > 1)
2946		usb_set_interface(interface_to_usbdev(interface), if_num, 1);
2947	interface->needs_remote_wakeup = 1;
2948
2949	/* Allocate new hso device(s) */
2950	switch (port_spec & HSO_INTF_MASK) {
2951	case HSO_INTF_MUX:
2952		if ((port_spec & HSO_PORT_MASK) == HSO_PORT_NETWORK) {
2953			/* Create the network device */
2954			if (!disable_net) {
2955				hso_dev = hso_create_net_device(interface,
2956								port_spec);
2957				if (!hso_dev)
2958					goto exit;
2959				tmp_dev = hso_dev;
2960			}
2961		}
2962
2963		if (hso_get_mux_ports(interface, &port_mask))
2964			/* TODO: de-allocate everything */
2965			goto exit;
2966
2967		shared_int = hso_create_shared_int(interface);
2968		if (!shared_int)
2969			goto exit;
2970
2971		for (i = 1, mux = 0; i < 0x100; i = i << 1, mux++) {
2972			if (port_mask & i) {
2973				hso_dev = hso_create_mux_serial_device(
2974						interface, i, shared_int);
2975				if (!hso_dev)
2976					goto exit;
2977			}
2978		}
2979
2980		if (tmp_dev)
2981			hso_dev = tmp_dev;
2982		break;
2983
2984	case HSO_INTF_BULK:
2985		/* It's a regular bulk interface */
2986		if ((port_spec & HSO_PORT_MASK) == HSO_PORT_NETWORK) {
2987			if (!disable_net)
2988				hso_dev =
2989				    hso_create_net_device(interface, port_spec);
2990		} else {
2991			hso_dev =
2992			    hso_create_bulk_serial_device(interface, port_spec);
2993		}
2994		if (!hso_dev)
2995			goto exit;
2996		break;
2997	default:
2998		goto exit;
2999	}
3000
3001	/* save our data pointer in this device */
3002	usb_set_intfdata(interface, hso_dev);
3003
3004	/* done */
3005	return 0;
3006exit:
3007	hso_free_interface(interface);
3008	return -ENODEV;
3009}
3010
3011/* device removed, cleaning up */
3012static void hso_disconnect(struct usb_interface *interface)
3013{
3014	hso_free_interface(interface);
3015
3016	/* remove reference of our private data */
3017	usb_set_intfdata(interface, NULL);
3018}
3019
3020static void async_get_intf(struct work_struct *data)
3021{
3022	struct hso_device *hso_dev =
3023	    container_of(data, struct hso_device, async_get_intf);
3024	usb_autopm_get_interface(hso_dev->interface);
3025}
3026
3027static void async_put_intf(struct work_struct *data)
3028{
3029	struct hso_device *hso_dev =
3030	    container_of(data, struct hso_device, async_put_intf);
3031	usb_autopm_put_interface(hso_dev->interface);
3032}
3033
3034static int hso_get_activity(struct hso_device *hso_dev)
3035{
3036	if (hso_dev->usb->state == USB_STATE_SUSPENDED) {
3037		if (!hso_dev->is_active) {
3038			hso_dev->is_active = 1;
3039			schedule_work(&hso_dev->async_get_intf);
3040		}
3041	}
3042
3043	if (hso_dev->usb->state != USB_STATE_CONFIGURED)
3044		return -EAGAIN;
3045
3046	usb_mark_last_busy(hso_dev->usb);
3047
3048	return 0;
3049}
3050
3051static int hso_put_activity(struct hso_device *hso_dev)
3052{
3053	if (hso_dev->usb->state != USB_STATE_SUSPENDED) {
3054		if (hso_dev->is_active) {
3055			hso_dev->is_active = 0;
3056			schedule_work(&hso_dev->async_put_intf);
3057			return -EAGAIN;
3058		}
3059	}
3060	hso_dev->is_active = 0;
3061	return 0;
3062}
3063
3064/* called by kernel when we need to suspend device */
3065static int hso_suspend(struct usb_interface *iface, pm_message_t message)
3066{
3067	int i, result;
3068
3069	/* Stop all serial ports */
3070	for (i = 0; i < HSO_SERIAL_TTY_MINORS; i++) {
3071		if (serial_table[i] && (serial_table[i]->interface == iface)) {
3072			result = hso_stop_serial_device(serial_table[i]);
3073			if (result)
3074				goto out;
3075		}
3076	}
3077
3078	/* Stop all network ports */
3079	for (i = 0; i < HSO_MAX_NET_DEVICES; i++) {
3080		if (network_table[i] &&
3081		    (network_table[i]->interface == iface)) {
3082			result = hso_stop_net_device(network_table[i]);
3083			if (result)
3084				goto out;
3085		}
3086	}
3087
3088out:
3089	return 0;
3090}
3091
3092/* called by kernel when we need to resume device */
3093static int hso_resume(struct usb_interface *iface)
3094{
3095	int i, result = 0;
3096	struct hso_net *hso_net;
3097
3098	/* Start all serial ports */
3099	for (i = 0; i < HSO_SERIAL_TTY_MINORS; i++) {
3100		if (serial_table[i] && (serial_table[i]->interface == iface)) {
3101			if (dev2ser(serial_table[i])->open_count) {
3102				result =
3103				    hso_start_serial_device(serial_table[i], GFP_NOIO);
3104				hso_kick_transmit(dev2ser(serial_table[i]));
3105				if (result)
3106					goto out;
3107			}
3108		}
3109	}
3110
3111	/* Start all network ports */
3112	for (i = 0; i < HSO_MAX_NET_DEVICES; i++) {
3113		if (network_table[i] &&
3114		    (network_table[i]->interface == iface)) {
3115			hso_net = dev2net(network_table[i]);
3116			if (hso_net->flags & IFF_UP) {
3117				/* First transmit any lingering data,
3118				   then restart the device. */
3119				if (hso_net->skb_tx_buf) {
3120					dev_dbg(&iface->dev,
3121						"Transmitting"
3122						" lingering data\n");
3123					hso_net_start_xmit(hso_net->skb_tx_buf,
3124							   hso_net->net);
3125					hso_net->skb_tx_buf = NULL;
3126				}
3127				result = hso_start_net_device(network_table[i]);
3128				if (result)
3129					goto out;
3130			}
3131		}
3132	}
3133
3134out:
3135	return result;
3136}
3137
3138static void reset_device(struct work_struct *data)
3139{
3140	struct hso_device *hso_dev =
3141	    container_of(data, struct hso_device, reset_device);
3142	struct usb_device *usb = hso_dev->usb;
3143	int result;
3144
3145	if (hso_dev->usb_gone) {
3146		D1("No reset during disconnect\n");
3147	} else {
3148		result = usb_lock_device_for_reset(usb, hso_dev->interface);
3149		if (result < 0)
3150			D1("unable to lock device for reset: %d\n", result);
3151		else {
3152			usb_reset_device(usb);
3153			usb_unlock_device(usb);
3154		}
3155	}
3156}
3157
3158static void hso_serial_ref_free(struct kref *ref)
3159{
3160	struct hso_device *hso_dev = container_of(ref, struct hso_device, ref);
3161
3162	hso_free_serial_device(hso_dev);
3163}
3164
3165static void hso_free_interface(struct usb_interface *interface)
3166{
3167	struct hso_serial *hso_dev;
3168	struct tty_struct *tty;
3169	int i;
3170
3171	for (i = 0; i < HSO_SERIAL_TTY_MINORS; i++) {
3172		if (serial_table[i] &&
3173		    (serial_table[i]->interface == interface)) {
3174			hso_dev = dev2ser(serial_table[i]);
3175			spin_lock_irq(&hso_dev->serial_lock);
3176			tty = tty_kref_get(hso_dev->tty);
3177			spin_unlock_irq(&hso_dev->serial_lock);
3178			if (tty)
3179				tty_hangup(tty);
3180			mutex_lock(&hso_dev->parent->mutex);
3181			tty_kref_put(tty);
3182			hso_dev->parent->usb_gone = 1;
3183			mutex_unlock(&hso_dev->parent->mutex);
3184			kref_put(&serial_table[i]->ref, hso_serial_ref_free);
3185		}
3186	}
3187
3188	for (i = 0; i < HSO_MAX_NET_DEVICES; i++) {
3189		if (network_table[i] &&
3190		    (network_table[i]->interface == interface)) {
3191			struct rfkill *rfk = dev2net(network_table[i])->rfkill;
3192			/* hso_stop_net_device doesn't stop the net queue since
3193			 * traffic needs to start it again when suspended */
3194			netif_stop_queue(dev2net(network_table[i])->net);
3195			hso_stop_net_device(network_table[i]);
3196			cancel_work_sync(&network_table[i]->async_put_intf);
3197			cancel_work_sync(&network_table[i]->async_get_intf);
3198			if (rfk) {
3199				rfkill_unregister(rfk);
3200				rfkill_destroy(rfk);
3201			}
3202			hso_free_net_device(network_table[i]);
3203		}
3204	}
3205}
3206
3207/* Helper functions */
3208
3209/* Get the endpoint ! */
3210static struct usb_endpoint_descriptor *hso_get_ep(struct usb_interface *intf,
3211						  int type, int dir)
3212{
3213	int i;
3214	struct usb_host_interface *iface = intf->cur_altsetting;
3215	struct usb_endpoint_descriptor *endp;
3216
3217	for (i = 0; i < iface->desc.bNumEndpoints; i++) {
3218		endp = &iface->endpoint[i].desc;
3219		if (((endp->bEndpointAddress & USB_ENDPOINT_DIR_MASK) == dir) &&
3220		    (usb_endpoint_type(endp) == type))
3221			return endp;
3222	}
3223
3224	return NULL;
3225}
3226
3227/* Get the byte that describes which ports are enabled */
3228static int hso_get_mux_ports(struct usb_interface *intf, unsigned char *ports)
3229{
3230	int i;
3231	struct usb_host_interface *iface = intf->cur_altsetting;
3232
3233	if (iface->extralen == 3) {
3234		*ports = iface->extra[2];
3235		return 0;
3236	}
3237
3238	for (i = 0; i < iface->desc.bNumEndpoints; i++) {
3239		if (iface->endpoint[i].extralen == 3) {
3240			*ports = iface->endpoint[i].extra[2];
3241			return 0;
3242		}
3243	}
3244
3245	return -1;
3246}
3247
3248/* interrupt urb needs to be submitted, used for serial read of muxed port */
3249static int hso_mux_submit_intr_urb(struct hso_shared_int *shared_int,
3250				   struct usb_device *usb, gfp_t gfp)
3251{
3252	int result;
3253
3254	usb_fill_int_urb(shared_int->shared_intr_urb, usb,
3255			 usb_rcvintpipe(usb,
3256				shared_int->intr_endp->bEndpointAddress & 0x7F),
3257			 shared_int->shared_intr_buf,
3258			 1,
3259			 intr_callback, shared_int,
3260			 shared_int->intr_endp->bInterval);
3261
3262	result = usb_submit_urb(shared_int->shared_intr_urb, gfp);
3263	if (result)
3264		dev_warn(&usb->dev, "%s failed mux_intr_urb %d\n", __func__,
3265			result);
3266
3267	return result;
3268}
3269
3270/* operations setup of the serial interface */
3271static const struct tty_operations hso_serial_ops = {
3272	.open = hso_serial_open,
3273	.close = hso_serial_close,
3274	.write = hso_serial_write,
3275	.write_room = hso_serial_write_room,
3276	.ioctl = hso_serial_ioctl,
3277	.set_termios = hso_serial_set_termios,
3278	.chars_in_buffer = hso_serial_chars_in_buffer,
3279	.tiocmget = hso_serial_tiocmget,
3280	.tiocmset = hso_serial_tiocmset,
3281	.get_icount = hso_get_count,
3282	.unthrottle = hso_unthrottle
3283};
3284
3285static struct usb_driver hso_driver = {
3286	.name = driver_name,
3287	.probe = hso_probe,
3288	.disconnect = hso_disconnect,
3289	.id_table = hso_ids,
3290	.suspend = hso_suspend,
3291	.resume = hso_resume,
3292	.reset_resume = hso_resume,
3293	.supports_autosuspend = 1,
 
3294};
3295
3296static int __init hso_init(void)
3297{
3298	int i;
3299	int result;
3300
3301	/* put it in the log */
3302	printk(KERN_INFO "hso: %s\n", version);
3303
3304	/* Initialise the serial table semaphore and table */
3305	spin_lock_init(&serial_table_lock);
3306	for (i = 0; i < HSO_SERIAL_TTY_MINORS; i++)
3307		serial_table[i] = NULL;
3308
3309	/* allocate our driver using the proper amount of supported minors */
3310	tty_drv = alloc_tty_driver(HSO_SERIAL_TTY_MINORS);
3311	if (!tty_drv)
3312		return -ENOMEM;
3313
3314	/* fill in all needed values */
3315	tty_drv->magic = TTY_DRIVER_MAGIC;
3316	tty_drv->owner = THIS_MODULE;
3317	tty_drv->driver_name = driver_name;
3318	tty_drv->name = tty_filename;
3319
3320	/* if major number is provided as parameter, use that one */
3321	if (tty_major)
3322		tty_drv->major = tty_major;
3323
3324	tty_drv->minor_start = 0;
3325	tty_drv->num = HSO_SERIAL_TTY_MINORS;
3326	tty_drv->type = TTY_DRIVER_TYPE_SERIAL;
3327	tty_drv->subtype = SERIAL_TYPE_NORMAL;
3328	tty_drv->flags = TTY_DRIVER_REAL_RAW | TTY_DRIVER_DYNAMIC_DEV;
3329	tty_drv->init_termios = tty_std_termios;
3330	hso_init_termios(&tty_drv->init_termios);
3331	tty_set_operations(tty_drv, &hso_serial_ops);
3332
3333	/* register the tty driver */
3334	result = tty_register_driver(tty_drv);
3335	if (result) {
3336		printk(KERN_ERR "%s - tty_register_driver failed(%d)\n",
3337			__func__, result);
3338		return result;
3339	}
3340
3341	/* register this module as an usb driver */
3342	result = usb_register(&hso_driver);
3343	if (result) {
3344		printk(KERN_ERR "Could not register hso driver? error: %d\n",
3345			result);
3346		/* cleanup serial interface */
3347		tty_unregister_driver(tty_drv);
3348		return result;
3349	}
3350
3351	/* done */
3352	return 0;
 
 
 
 
 
3353}
3354
3355static void __exit hso_exit(void)
3356{
3357	printk(KERN_INFO "hso: unloaded\n");
3358
3359	tty_unregister_driver(tty_drv);
 
3360	/* deregister the usb driver */
3361	usb_deregister(&hso_driver);
3362}
3363
3364/* Module definitions */
3365module_init(hso_init);
3366module_exit(hso_exit);
3367
3368MODULE_AUTHOR(MOD_AUTHOR);
3369MODULE_DESCRIPTION(MOD_DESCRIPTION);
3370MODULE_LICENSE(MOD_LICENSE);
3371
3372/* change the debug level (eg: insmod hso.ko debug=0x04) */
3373MODULE_PARM_DESC(debug, "Level of debug [0x01 | 0x02 | 0x04 | 0x08 | 0x10]");
3374module_param(debug, int, S_IRUGO | S_IWUSR);
3375
3376/* set the major tty number (eg: insmod hso.ko tty_major=245) */
3377MODULE_PARM_DESC(tty_major, "Set the major tty number");
3378module_param(tty_major, int, S_IRUGO | S_IWUSR);
3379
3380/* disable network interface (eg: insmod hso.ko disable_net=1) */
3381MODULE_PARM_DESC(disable_net, "Disable the network interface");
3382module_param(disable_net, int, S_IRUGO | S_IWUSR);
v3.15
   1/******************************************************************************
   2 *
   3 * Driver for Option High Speed Mobile Devices.
   4 *
   5 *  Copyright (C) 2008 Option International
   6 *                     Filip Aben <f.aben@option.com>
   7 *                     Denis Joseph Barrow <d.barow@option.com>
   8 *                     Jan Dumon <j.dumon@option.com>
   9 *  Copyright (C) 2007 Andrew Bird (Sphere Systems Ltd)
  10 *  			<ajb@spheresystems.co.uk>
  11 *  Copyright (C) 2008 Greg Kroah-Hartman <gregkh@suse.de>
  12 *  Copyright (C) 2008 Novell, Inc.
  13 *
  14 *  This program is free software; you can redistribute it and/or modify
  15 *  it under the terms of the GNU General Public License version 2 as
  16 *  published by the Free Software Foundation.
  17 *
  18 *  This program is distributed in the hope that it will be useful,
  19 *  but WITHOUT ANY WARRANTY; without even the implied warranty of
  20 *  MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
  21 *  GNU General Public License for more details.
  22 *
  23 *  You should have received a copy of the GNU General Public License
  24 *  along with this program; if not, write to the Free Software
  25 *  Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA  02110-1301,
  26 *  USA
  27 *
  28 *
  29 *****************************************************************************/
  30
  31/******************************************************************************
  32 *
  33 * Description of the device:
  34 *
  35 * Interface 0:	Contains the IP network interface on the bulk end points.
  36 *		The multiplexed serial ports are using the interrupt and
  37 *		control endpoints.
  38 *		Interrupt contains a bitmap telling which multiplexed
  39 *		serialport needs servicing.
  40 *
  41 * Interface 1:	Diagnostics port, uses bulk only, do not submit urbs until the
  42 *		port is opened, as this have a huge impact on the network port
  43 *		throughput.
  44 *
  45 * Interface 2:	Standard modem interface - circuit switched interface, this
  46 *		can be used to make a standard ppp connection however it
  47 *              should not be used in conjunction with the IP network interface
  48 *              enabled for USB performance reasons i.e. if using this set
  49 *              ideally disable_net=1.
  50 *
  51 *****************************************************************************/
  52
  53#include <linux/sched.h>
  54#include <linux/slab.h>
  55#include <linux/init.h>
  56#include <linux/delay.h>
  57#include <linux/netdevice.h>
  58#include <linux/module.h>
  59#include <linux/ethtool.h>
  60#include <linux/usb.h>
  61#include <linux/timer.h>
  62#include <linux/tty.h>
  63#include <linux/tty_driver.h>
  64#include <linux/tty_flip.h>
  65#include <linux/kmod.h>
  66#include <linux/rfkill.h>
  67#include <linux/ip.h>
  68#include <linux/uaccess.h>
  69#include <linux/usb/cdc.h>
  70#include <net/arp.h>
  71#include <asm/byteorder.h>
  72#include <linux/serial_core.h>
  73#include <linux/serial.h>
  74
  75
  76#define MOD_AUTHOR			"Option Wireless"
  77#define MOD_DESCRIPTION			"USB High Speed Option driver"
  78#define MOD_LICENSE			"GPL"
  79
  80#define HSO_MAX_NET_DEVICES		10
  81#define HSO__MAX_MTU			2048
  82#define DEFAULT_MTU			1500
  83#define DEFAULT_MRU			1500
  84
  85#define CTRL_URB_RX_SIZE		1024
  86#define CTRL_URB_TX_SIZE		64
  87
  88#define BULK_URB_RX_SIZE		4096
  89#define BULK_URB_TX_SIZE		8192
  90
  91#define MUX_BULK_RX_BUF_SIZE		HSO__MAX_MTU
  92#define MUX_BULK_TX_BUF_SIZE		HSO__MAX_MTU
  93#define MUX_BULK_RX_BUF_COUNT		4
  94#define USB_TYPE_OPTION_VENDOR		0x20
  95
  96/* These definitions are used with the struct hso_net flags element */
  97/* - use *_bit operations on it. (bit indices not values.) */
  98#define HSO_NET_RUNNING			0
  99
 100#define	HSO_NET_TX_TIMEOUT		(HZ*10)
 101
 102#define HSO_SERIAL_MAGIC		0x48534f31
 103
 104/* Number of ttys to handle */
 105#define HSO_SERIAL_TTY_MINORS		256
 106
 107#define MAX_RX_URBS			2
 108
 
 
 
 
 
 
 
 109/*****************************************************************************/
 110/* Debugging functions                                                       */
 111/*****************************************************************************/
 112#define D__(lvl_, fmt, arg...)				\
 113	do {						\
 114		printk(lvl_ "[%d:%s]: " fmt "\n",	\
 115		       __LINE__, __func__, ## arg);	\
 116	} while (0)
 117
 118#define D_(lvl, args...)				\
 119	do {						\
 120		if (lvl & debug)			\
 121			D__(KERN_INFO, args);		\
 122	} while (0)
 123
 124#define D1(args...)	D_(0x01, ##args)
 125#define D2(args...)	D_(0x02, ##args)
 126#define D3(args...)	D_(0x04, ##args)
 127#define D4(args...)	D_(0x08, ##args)
 128#define D5(args...)	D_(0x10, ##args)
 129
 130/*****************************************************************************/
 131/* Enumerators                                                               */
 132/*****************************************************************************/
 133enum pkt_parse_state {
 134	WAIT_IP,
 135	WAIT_DATA,
 136	WAIT_SYNC
 137};
 138
 139/*****************************************************************************/
 140/* Structs                                                                   */
 141/*****************************************************************************/
 142
 143struct hso_shared_int {
 144	struct usb_endpoint_descriptor *intr_endp;
 145	void *shared_intr_buf;
 146	struct urb *shared_intr_urb;
 147	struct usb_device *usb;
 148	int use_count;
 149	int ref_count;
 150	struct mutex shared_int_lock;
 151};
 152
 153struct hso_net {
 154	struct hso_device *parent;
 155	struct net_device *net;
 156	struct rfkill *rfkill;
 157
 158	struct usb_endpoint_descriptor *in_endp;
 159	struct usb_endpoint_descriptor *out_endp;
 160
 161	struct urb *mux_bulk_rx_urb_pool[MUX_BULK_RX_BUF_COUNT];
 162	struct urb *mux_bulk_tx_urb;
 163	void *mux_bulk_rx_buf_pool[MUX_BULK_RX_BUF_COUNT];
 164	void *mux_bulk_tx_buf;
 165
 166	struct sk_buff *skb_rx_buf;
 167	struct sk_buff *skb_tx_buf;
 168
 169	enum pkt_parse_state rx_parse_state;
 170	spinlock_t net_lock;
 171
 172	unsigned short rx_buf_size;
 173	unsigned short rx_buf_missing;
 174	struct iphdr rx_ip_hdr;
 175
 176	unsigned long flags;
 177};
 178
 179enum rx_ctrl_state{
 180	RX_IDLE,
 181	RX_SENT,
 182	RX_PENDING
 183};
 184
 185#define BM_REQUEST_TYPE (0xa1)
 186#define B_NOTIFICATION  (0x20)
 187#define W_VALUE         (0x0)
 
 188#define W_LENGTH        (0x2)
 189
 190#define B_OVERRUN       (0x1<<6)
 191#define B_PARITY        (0x1<<5)
 192#define B_FRAMING       (0x1<<4)
 193#define B_RING_SIGNAL   (0x1<<3)
 194#define B_BREAK         (0x1<<2)
 195#define B_TX_CARRIER    (0x1<<1)
 196#define B_RX_CARRIER    (0x1<<0)
 197
 198struct hso_serial_state_notification {
 199	u8 bmRequestType;
 200	u8 bNotification;
 201	u16 wValue;
 202	u16 wIndex;
 203	u16 wLength;
 204	u16 UART_state_bitmap;
 205} __packed;
 206
 207struct hso_tiocmget {
 208	struct mutex mutex;
 209	wait_queue_head_t waitq;
 210	int    intr_completed;
 211	struct usb_endpoint_descriptor *endp;
 212	struct urb *urb;
 213	struct hso_serial_state_notification serial_state_notification;
 214	u16    prev_UART_state_bitmap;
 215	struct uart_icount icount;
 216};
 217
 218
 219struct hso_serial {
 220	struct hso_device *parent;
 221	int magic;
 222	u8 minor;
 223
 224	struct hso_shared_int *shared_int;
 225
 226	/* rx/tx urb could be either a bulk urb or a control urb depending
 227	   on which serial port it is used on. */
 228	struct urb *rx_urb[MAX_RX_URBS];
 229	u8 num_rx_urbs;
 230	u8 *rx_data[MAX_RX_URBS];
 231	u16 rx_data_length;	/* should contain allocated length */
 232
 233	struct urb *tx_urb;
 234	u8 *tx_data;
 235	u8 *tx_buffer;
 236	u16 tx_data_length;	/* should contain allocated length */
 237	u16 tx_data_count;
 238	u16 tx_buffer_count;
 239	struct usb_ctrlrequest ctrl_req_tx;
 240	struct usb_ctrlrequest ctrl_req_rx;
 241
 242	struct usb_endpoint_descriptor *in_endp;
 243	struct usb_endpoint_descriptor *out_endp;
 244
 245	enum rx_ctrl_state rx_state;
 246	u8 rts_state;
 247	u8 dtr_state;
 248	unsigned tx_urb_used:1;
 249
 250	struct tty_port port;
 251	/* from usb_serial_port */
 
 
 252	spinlock_t serial_lock;
 253
 254	int (*write_data) (struct hso_serial *serial);
 255	struct hso_tiocmget  *tiocmget;
 256	/* Hacks required to get flow control
 257	 * working on the serial receive buffers
 258	 * so as not to drop characters on the floor.
 259	 */
 260	int  curr_rx_urb_idx;
 261	u16  curr_rx_urb_offset;
 262	u8   rx_urb_filled[MAX_RX_URBS];
 263	struct tasklet_struct unthrottle_tasklet;
 264	struct work_struct    retry_unthrottle_workqueue;
 265};
 266
 267struct hso_device {
 268	union {
 269		struct hso_serial *dev_serial;
 270		struct hso_net *dev_net;
 271	} port_data;
 272
 273	u32 port_spec;
 274
 275	u8 is_active;
 276	u8 usb_gone;
 277	struct work_struct async_get_intf;
 278	struct work_struct async_put_intf;
 279	struct work_struct reset_device;
 280
 281	struct usb_device *usb;
 282	struct usb_interface *interface;
 283
 284	struct device *dev;
 285	struct kref ref;
 286	struct mutex mutex;
 287};
 288
 289/* Type of interface */
 290#define HSO_INTF_MASK		0xFF00
 291#define	HSO_INTF_MUX		0x0100
 292#define	HSO_INTF_BULK   	0x0200
 293
 294/* Type of port */
 295#define HSO_PORT_MASK		0xFF
 296#define HSO_PORT_NO_PORT	0x0
 297#define	HSO_PORT_CONTROL	0x1
 298#define	HSO_PORT_APP		0x2
 299#define	HSO_PORT_GPS		0x3
 300#define	HSO_PORT_PCSC		0x4
 301#define	HSO_PORT_APP2		0x5
 302#define HSO_PORT_GPS_CONTROL	0x6
 303#define HSO_PORT_MSD		0x7
 304#define HSO_PORT_VOICE		0x8
 305#define HSO_PORT_DIAG2		0x9
 306#define	HSO_PORT_DIAG		0x10
 307#define	HSO_PORT_MODEM		0x11
 308#define	HSO_PORT_NETWORK	0x12
 309
 310/* Additional device info */
 311#define HSO_INFO_MASK		0xFF000000
 312#define HSO_INFO_CRC_BUG	0x01000000
 313
 314/*****************************************************************************/
 315/* Prototypes                                                                */
 316/*****************************************************************************/
 317/* Serial driver functions */
 318static int hso_serial_tiocmset(struct tty_struct *tty,
 319			       unsigned int set, unsigned int clear);
 320static void ctrl_callback(struct urb *urb);
 321static int put_rxbuf_data(struct urb *urb, struct hso_serial *serial);
 322static void hso_kick_transmit(struct hso_serial *serial);
 323/* Helper functions */
 324static int hso_mux_submit_intr_urb(struct hso_shared_int *mux_int,
 325				   struct usb_device *usb, gfp_t gfp);
 326static void handle_usb_error(int status, const char *function,
 327			     struct hso_device *hso_dev);
 328static struct usb_endpoint_descriptor *hso_get_ep(struct usb_interface *intf,
 329						  int type, int dir);
 330static int hso_get_mux_ports(struct usb_interface *intf, unsigned char *ports);
 331static void hso_free_interface(struct usb_interface *intf);
 332static int hso_start_serial_device(struct hso_device *hso_dev, gfp_t flags);
 333static int hso_stop_serial_device(struct hso_device *hso_dev);
 334static int hso_start_net_device(struct hso_device *hso_dev);
 335static void hso_free_shared_int(struct hso_shared_int *shared_int);
 336static int hso_stop_net_device(struct hso_device *hso_dev);
 337static void hso_serial_ref_free(struct kref *ref);
 338static void hso_std_serial_read_bulk_callback(struct urb *urb);
 339static int hso_mux_serial_read(struct hso_serial *serial);
 340static void async_get_intf(struct work_struct *data);
 341static void async_put_intf(struct work_struct *data);
 342static int hso_put_activity(struct hso_device *hso_dev);
 343static int hso_get_activity(struct hso_device *hso_dev);
 344static void tiocmget_intr_callback(struct urb *urb);
 345static void reset_device(struct work_struct *data);
 346/*****************************************************************************/
 347/* Helping functions                                                         */
 348/*****************************************************************************/
 349
 350/* #define DEBUG */
 351
 352static inline struct hso_net *dev2net(struct hso_device *hso_dev)
 353{
 354	return hso_dev->port_data.dev_net;
 355}
 356
 357static inline struct hso_serial *dev2ser(struct hso_device *hso_dev)
 358{
 359	return hso_dev->port_data.dev_serial;
 360}
 361
 362/* Debugging functions */
 363#ifdef DEBUG
 364static void dbg_dump(int line_count, const char *func_name, unsigned char *buf,
 365		     unsigned int len)
 366{
 367	static char name[255];
 368
 369	sprintf(name, "hso[%d:%s]", line_count, func_name);
 370	print_hex_dump_bytes(name, DUMP_PREFIX_NONE, buf, len);
 371}
 372
 373#define DUMP(buf_, len_)	\
 374	dbg_dump(__LINE__, __func__, (unsigned char *)buf_, len_)
 375
 376#define DUMP1(buf_, len_)			\
 377	do {					\
 378		if (0x01 & debug)		\
 379			DUMP(buf_, len_);	\
 380	} while (0)
 381#else
 382#define DUMP(buf_, len_)
 383#define DUMP1(buf_, len_)
 384#endif
 385
 386/* module parameters */
 387static int debug;
 388static int tty_major;
 389static int disable_net;
 390
 391/* driver info */
 392static const char driver_name[] = "hso";
 393static const char tty_filename[] = "ttyHS";
 394static const char *version = __FILE__ ": " MOD_AUTHOR;
 395/* the usb driver itself (registered in hso_init) */
 396static struct usb_driver hso_driver;
 397/* serial structures */
 398static struct tty_driver *tty_drv;
 399static struct hso_device *serial_table[HSO_SERIAL_TTY_MINORS];
 400static struct hso_device *network_table[HSO_MAX_NET_DEVICES];
 401static spinlock_t serial_table_lock;
 402
 403static const s32 default_port_spec[] = {
 404	HSO_INTF_MUX | HSO_PORT_NETWORK,
 405	HSO_INTF_BULK | HSO_PORT_DIAG,
 406	HSO_INTF_BULK | HSO_PORT_MODEM,
 407	0
 408};
 409
 410static const s32 icon321_port_spec[] = {
 411	HSO_INTF_MUX | HSO_PORT_NETWORK,
 412	HSO_INTF_BULK | HSO_PORT_DIAG2,
 413	HSO_INTF_BULK | HSO_PORT_MODEM,
 414	HSO_INTF_BULK | HSO_PORT_DIAG,
 415	0
 416};
 417
 418#define default_port_device(vendor, product)	\
 419	USB_DEVICE(vendor, product),	\
 420		.driver_info = (kernel_ulong_t)default_port_spec
 421
 422#define icon321_port_device(vendor, product)	\
 423	USB_DEVICE(vendor, product),	\
 424		.driver_info = (kernel_ulong_t)icon321_port_spec
 425
 426/* list of devices we support */
 427static const struct usb_device_id hso_ids[] = {
 428	{default_port_device(0x0af0, 0x6711)},
 429	{default_port_device(0x0af0, 0x6731)},
 430	{default_port_device(0x0af0, 0x6751)},
 431	{default_port_device(0x0af0, 0x6771)},
 432	{default_port_device(0x0af0, 0x6791)},
 433	{default_port_device(0x0af0, 0x6811)},
 434	{default_port_device(0x0af0, 0x6911)},
 435	{default_port_device(0x0af0, 0x6951)},
 436	{default_port_device(0x0af0, 0x6971)},
 437	{default_port_device(0x0af0, 0x7011)},
 438	{default_port_device(0x0af0, 0x7031)},
 439	{default_port_device(0x0af0, 0x7051)},
 440	{default_port_device(0x0af0, 0x7071)},
 441	{default_port_device(0x0af0, 0x7111)},
 442	{default_port_device(0x0af0, 0x7211)},
 443	{default_port_device(0x0af0, 0x7251)},
 444	{default_port_device(0x0af0, 0x7271)},
 445	{default_port_device(0x0af0, 0x7311)},
 446	{default_port_device(0x0af0, 0xc031)},	/* Icon-Edge */
 447	{icon321_port_device(0x0af0, 0xd013)},	/* Module HSxPA */
 448	{icon321_port_device(0x0af0, 0xd031)},	/* Icon-321 */
 449	{icon321_port_device(0x0af0, 0xd033)},	/* Icon-322 */
 450	{USB_DEVICE(0x0af0, 0x7301)},		/* GE40x */
 451	{USB_DEVICE(0x0af0, 0x7361)},		/* GE40x */
 452	{USB_DEVICE(0x0af0, 0x7381)},		/* GE40x */
 453	{USB_DEVICE(0x0af0, 0x7401)},		/* GI 0401 */
 454	{USB_DEVICE(0x0af0, 0x7501)},		/* GTM 382 */
 455	{USB_DEVICE(0x0af0, 0x7601)},		/* GE40x */
 456	{USB_DEVICE(0x0af0, 0x7701)},
 457	{USB_DEVICE(0x0af0, 0x7706)},
 458	{USB_DEVICE(0x0af0, 0x7801)},
 459	{USB_DEVICE(0x0af0, 0x7901)},
 460	{USB_DEVICE(0x0af0, 0x7A01)},
 461	{USB_DEVICE(0x0af0, 0x7A05)},
 462	{USB_DEVICE(0x0af0, 0x8200)},
 463	{USB_DEVICE(0x0af0, 0x8201)},
 464	{USB_DEVICE(0x0af0, 0x8300)},
 465	{USB_DEVICE(0x0af0, 0x8302)},
 466	{USB_DEVICE(0x0af0, 0x8304)},
 467	{USB_DEVICE(0x0af0, 0x8400)},
 468	{USB_DEVICE(0x0af0, 0x8600)},
 469	{USB_DEVICE(0x0af0, 0x8800)},
 470	{USB_DEVICE(0x0af0, 0x8900)},
 471	{USB_DEVICE(0x0af0, 0x9000)},
 472	{USB_DEVICE(0x0af0, 0xd035)},
 473	{USB_DEVICE(0x0af0, 0xd055)},
 474	{USB_DEVICE(0x0af0, 0xd155)},
 475	{USB_DEVICE(0x0af0, 0xd255)},
 476	{USB_DEVICE(0x0af0, 0xd057)},
 477	{USB_DEVICE(0x0af0, 0xd157)},
 478	{USB_DEVICE(0x0af0, 0xd257)},
 479	{USB_DEVICE(0x0af0, 0xd357)},
 480	{USB_DEVICE(0x0af0, 0xd058)},
 481	{USB_DEVICE(0x0af0, 0xc100)},
 482	{}
 483};
 484MODULE_DEVICE_TABLE(usb, hso_ids);
 485
 486/* Sysfs attribute */
 487static ssize_t hso_sysfs_show_porttype(struct device *dev,
 488				       struct device_attribute *attr,
 489				       char *buf)
 490{
 491	struct hso_device *hso_dev = dev_get_drvdata(dev);
 492	char *port_name;
 493
 494	if (!hso_dev)
 495		return 0;
 496
 497	switch (hso_dev->port_spec & HSO_PORT_MASK) {
 498	case HSO_PORT_CONTROL:
 499		port_name = "Control";
 500		break;
 501	case HSO_PORT_APP:
 502		port_name = "Application";
 503		break;
 504	case HSO_PORT_APP2:
 505		port_name = "Application2";
 506		break;
 507	case HSO_PORT_GPS:
 508		port_name = "GPS";
 509		break;
 510	case HSO_PORT_GPS_CONTROL:
 511		port_name = "GPS Control";
 512		break;
 513	case HSO_PORT_PCSC:
 514		port_name = "PCSC";
 515		break;
 516	case HSO_PORT_DIAG:
 517		port_name = "Diagnostic";
 518		break;
 519	case HSO_PORT_DIAG2:
 520		port_name = "Diagnostic2";
 521		break;
 522	case HSO_PORT_MODEM:
 523		port_name = "Modem";
 524		break;
 525	case HSO_PORT_NETWORK:
 526		port_name = "Network";
 527		break;
 528	default:
 529		port_name = "Unknown";
 530		break;
 531	}
 532
 533	return sprintf(buf, "%s\n", port_name);
 534}
 535static DEVICE_ATTR(hsotype, S_IRUGO, hso_sysfs_show_porttype, NULL);
 536
 537static int hso_urb_to_index(struct hso_serial *serial, struct urb *urb)
 538{
 539	int idx;
 540
 541	for (idx = 0; idx < serial->num_rx_urbs; idx++)
 542		if (serial->rx_urb[idx] == urb)
 543			return idx;
 544	dev_err(serial->parent->dev, "hso_urb_to_index failed\n");
 545	return -1;
 546}
 547
 548/* converts mux value to a port spec value */
 549static u32 hso_mux_to_port(int mux)
 550{
 551	u32 result;
 552
 553	switch (mux) {
 554	case 0x1:
 555		result = HSO_PORT_CONTROL;
 556		break;
 557	case 0x2:
 558		result = HSO_PORT_APP;
 559		break;
 560	case 0x4:
 561		result = HSO_PORT_PCSC;
 562		break;
 563	case 0x8:
 564		result = HSO_PORT_GPS;
 565		break;
 566	case 0x10:
 567		result = HSO_PORT_APP2;
 568		break;
 569	default:
 570		result = HSO_PORT_NO_PORT;
 571	}
 572	return result;
 573}
 574
 575/* converts port spec value to a mux value */
 576static u32 hso_port_to_mux(int port)
 577{
 578	u32 result;
 579
 580	switch (port & HSO_PORT_MASK) {
 581	case HSO_PORT_CONTROL:
 582		result = 0x0;
 583		break;
 584	case HSO_PORT_APP:
 585		result = 0x1;
 586		break;
 587	case HSO_PORT_PCSC:
 588		result = 0x2;
 589		break;
 590	case HSO_PORT_GPS:
 591		result = 0x3;
 592		break;
 593	case HSO_PORT_APP2:
 594		result = 0x4;
 595		break;
 596	default:
 597		result = 0x0;
 598	}
 599	return result;
 600}
 601
 602static struct hso_serial *get_serial_by_shared_int_and_type(
 603					struct hso_shared_int *shared_int,
 604					int mux)
 605{
 606	int i, port;
 607
 608	port = hso_mux_to_port(mux);
 609
 610	for (i = 0; i < HSO_SERIAL_TTY_MINORS; i++) {
 611		if (serial_table[i] &&
 612		    (dev2ser(serial_table[i])->shared_int == shared_int) &&
 613		    ((serial_table[i]->port_spec & HSO_PORT_MASK) == port)) {
 614			return dev2ser(serial_table[i]);
 615		}
 616	}
 617
 618	return NULL;
 619}
 620
 621static struct hso_serial *get_serial_by_index(unsigned index)
 622{
 623	struct hso_serial *serial = NULL;
 624	unsigned long flags;
 625
 626	spin_lock_irqsave(&serial_table_lock, flags);
 627	if (serial_table[index])
 628		serial = dev2ser(serial_table[index]);
 629	spin_unlock_irqrestore(&serial_table_lock, flags);
 630
 631	return serial;
 632}
 633
 634static int get_free_serial_index(void)
 635{
 636	int index;
 637	unsigned long flags;
 638
 639	spin_lock_irqsave(&serial_table_lock, flags);
 640	for (index = 0; index < HSO_SERIAL_TTY_MINORS; index++) {
 641		if (serial_table[index] == NULL) {
 642			spin_unlock_irqrestore(&serial_table_lock, flags);
 643			return index;
 644		}
 645	}
 646	spin_unlock_irqrestore(&serial_table_lock, flags);
 647
 648	printk(KERN_ERR "%s: no free serial devices in table\n", __func__);
 649	return -1;
 650}
 651
 652static void set_serial_by_index(unsigned index, struct hso_serial *serial)
 653{
 654	unsigned long flags;
 655
 656	spin_lock_irqsave(&serial_table_lock, flags);
 657	if (serial)
 658		serial_table[index] = serial->parent;
 659	else
 660		serial_table[index] = NULL;
 661	spin_unlock_irqrestore(&serial_table_lock, flags);
 662}
 663
 664static void handle_usb_error(int status, const char *function,
 665			     struct hso_device *hso_dev)
 666{
 667	char *explanation;
 668
 669	switch (status) {
 670	case -ENODEV:
 671		explanation = "no device";
 672		break;
 673	case -ENOENT:
 674		explanation = "endpoint not enabled";
 675		break;
 676	case -EPIPE:
 677		explanation = "endpoint stalled";
 678		break;
 679	case -ENOSPC:
 680		explanation = "not enough bandwidth";
 681		break;
 682	case -ESHUTDOWN:
 683		explanation = "device disabled";
 684		break;
 685	case -EHOSTUNREACH:
 686		explanation = "device suspended";
 687		break;
 688	case -EINVAL:
 689	case -EAGAIN:
 690	case -EFBIG:
 691	case -EMSGSIZE:
 692		explanation = "internal error";
 693		break;
 694	case -EILSEQ:
 695	case -EPROTO:
 696	case -ETIME:
 697	case -ETIMEDOUT:
 698		explanation = "protocol error";
 699		if (hso_dev)
 700			schedule_work(&hso_dev->reset_device);
 701		break;
 702	default:
 703		explanation = "unknown status";
 704		break;
 705	}
 706
 707	/* log a meaningful explanation of an USB status */
 708	D1("%s: received USB status - %s (%d)", function, explanation, status);
 709}
 710
 711/* Network interface functions */
 712
 713/* called when net interface is brought up by ifconfig */
 714static int hso_net_open(struct net_device *net)
 715{
 716	struct hso_net *odev = netdev_priv(net);
 717	unsigned long flags = 0;
 718
 719	if (!odev) {
 720		dev_err(&net->dev, "No net device !\n");
 721		return -ENODEV;
 722	}
 723
 724	odev->skb_tx_buf = NULL;
 725
 726	/* setup environment */
 727	spin_lock_irqsave(&odev->net_lock, flags);
 728	odev->rx_parse_state = WAIT_IP;
 729	odev->rx_buf_size = 0;
 730	odev->rx_buf_missing = sizeof(struct iphdr);
 731	spin_unlock_irqrestore(&odev->net_lock, flags);
 732
 733	/* We are up and running. */
 734	set_bit(HSO_NET_RUNNING, &odev->flags);
 735	hso_start_net_device(odev->parent);
 736
 737	/* Tell the kernel we are ready to start receiving from it */
 738	netif_start_queue(net);
 739
 740	return 0;
 741}
 742
 743/* called when interface is brought down by ifconfig */
 744static int hso_net_close(struct net_device *net)
 745{
 746	struct hso_net *odev = netdev_priv(net);
 747
 748	/* we don't need the queue anymore */
 749	netif_stop_queue(net);
 750	/* no longer running */
 751	clear_bit(HSO_NET_RUNNING, &odev->flags);
 752
 753	hso_stop_net_device(odev->parent);
 754
 755	/* done */
 756	return 0;
 757}
 758
 759/* USB tells is xmit done, we should start the netqueue again */
 760static void write_bulk_callback(struct urb *urb)
 761{
 762	struct hso_net *odev = urb->context;
 763	int status = urb->status;
 764
 765	/* Sanity check */
 766	if (!odev || !test_bit(HSO_NET_RUNNING, &odev->flags)) {
 767		dev_err(&urb->dev->dev, "%s: device not running\n", __func__);
 768		return;
 769	}
 770
 771	/* Do we still have a valid kernel network device? */
 772	if (!netif_device_present(odev->net)) {
 773		dev_err(&urb->dev->dev, "%s: net device not present\n",
 774			__func__);
 775		return;
 776	}
 777
 778	/* log status, but don't act on it, we don't need to resubmit anything
 779	 * anyhow */
 780	if (status)
 781		handle_usb_error(status, __func__, odev->parent);
 782
 783	hso_put_activity(odev->parent);
 784
 785	/* Tell the network interface we are ready for another frame */
 786	netif_wake_queue(odev->net);
 787}
 788
 789/* called by kernel when we need to transmit a packet */
 790static netdev_tx_t hso_net_start_xmit(struct sk_buff *skb,
 791					    struct net_device *net)
 792{
 793	struct hso_net *odev = netdev_priv(net);
 794	int result;
 795
 796	/* Tell the kernel, "No more frames 'til we are done with this one." */
 797	netif_stop_queue(net);
 798	if (hso_get_activity(odev->parent) == -EAGAIN) {
 799		odev->skb_tx_buf = skb;
 800		return NETDEV_TX_OK;
 801	}
 802
 803	/* log if asked */
 804	DUMP1(skb->data, skb->len);
 805	/* Copy it from kernel memory to OUR memory */
 806	memcpy(odev->mux_bulk_tx_buf, skb->data, skb->len);
 807	D1("len: %d/%d", skb->len, MUX_BULK_TX_BUF_SIZE);
 808
 809	/* Fill in the URB for shipping it out. */
 810	usb_fill_bulk_urb(odev->mux_bulk_tx_urb,
 811			  odev->parent->usb,
 812			  usb_sndbulkpipe(odev->parent->usb,
 813					  odev->out_endp->
 814					  bEndpointAddress & 0x7F),
 815			  odev->mux_bulk_tx_buf, skb->len, write_bulk_callback,
 816			  odev);
 817
 818	/* Deal with the Zero Length packet problem, I hope */
 819	odev->mux_bulk_tx_urb->transfer_flags |= URB_ZERO_PACKET;
 820
 821	/* Send the URB on its merry way. */
 822	result = usb_submit_urb(odev->mux_bulk_tx_urb, GFP_ATOMIC);
 823	if (result) {
 824		dev_warn(&odev->parent->interface->dev,
 825			"failed mux_bulk_tx_urb %d\n", result);
 826		net->stats.tx_errors++;
 827		netif_start_queue(net);
 828	} else {
 829		net->stats.tx_packets++;
 830		net->stats.tx_bytes += skb->len;
 831	}
 832	dev_kfree_skb(skb);
 833	/* we're done */
 834	return NETDEV_TX_OK;
 835}
 836
 837static const struct ethtool_ops ops = {
 838	.get_link = ethtool_op_get_link
 839};
 840
 841/* called when a packet did not ack after watchdogtimeout */
 842static void hso_net_tx_timeout(struct net_device *net)
 843{
 844	struct hso_net *odev = netdev_priv(net);
 845
 846	if (!odev)
 847		return;
 848
 849	/* Tell syslog we are hosed. */
 850	dev_warn(&net->dev, "Tx timed out.\n");
 851
 852	/* Tear the waiting frame off the list */
 853	if (odev->mux_bulk_tx_urb &&
 854	    (odev->mux_bulk_tx_urb->status == -EINPROGRESS))
 855		usb_unlink_urb(odev->mux_bulk_tx_urb);
 856
 857	/* Update statistics */
 858	net->stats.tx_errors++;
 859}
 860
 861/* make a real packet from the received USB buffer */
 862static void packetizeRx(struct hso_net *odev, unsigned char *ip_pkt,
 863			unsigned int count, unsigned char is_eop)
 864{
 865	unsigned short temp_bytes;
 866	unsigned short buffer_offset = 0;
 867	unsigned short frame_len;
 868	unsigned char *tmp_rx_buf;
 869
 870	/* log if needed */
 871	D1("Rx %d bytes", count);
 872	DUMP(ip_pkt, min(128, (int)count));
 873
 874	while (count) {
 875		switch (odev->rx_parse_state) {
 876		case WAIT_IP:
 877			/* waiting for IP header. */
 878			/* wanted bytes - size of ip header */
 879			temp_bytes =
 880			    (count <
 881			     odev->rx_buf_missing) ? count : odev->
 882			    rx_buf_missing;
 883
 884			memcpy(((unsigned char *)(&odev->rx_ip_hdr)) +
 885			       odev->rx_buf_size, ip_pkt + buffer_offset,
 886			       temp_bytes);
 887
 888			odev->rx_buf_size += temp_bytes;
 889			buffer_offset += temp_bytes;
 890			odev->rx_buf_missing -= temp_bytes;
 891			count -= temp_bytes;
 892
 893			if (!odev->rx_buf_missing) {
 894				/* header is complete allocate an sk_buffer and
 895				 * continue to WAIT_DATA */
 896				frame_len = ntohs(odev->rx_ip_hdr.tot_len);
 897
 898				if ((frame_len > DEFAULT_MRU) ||
 899				    (frame_len < sizeof(struct iphdr))) {
 900					dev_err(&odev->net->dev,
 901						"Invalid frame (%d) length\n",
 902						frame_len);
 903					odev->rx_parse_state = WAIT_SYNC;
 904					continue;
 905				}
 906				/* Allocate an sk_buff */
 907				odev->skb_rx_buf = netdev_alloc_skb(odev->net,
 908								    frame_len);
 909				if (!odev->skb_rx_buf) {
 910					/* We got no receive buffer. */
 911					D1("could not allocate memory");
 912					odev->rx_parse_state = WAIT_SYNC;
 913					return;
 914				}
 915
 916				/* Copy what we got so far. make room for iphdr
 917				 * after tail. */
 918				tmp_rx_buf =
 919				    skb_put(odev->skb_rx_buf,
 920					    sizeof(struct iphdr));
 921				memcpy(tmp_rx_buf, (char *)&(odev->rx_ip_hdr),
 922				       sizeof(struct iphdr));
 923
 924				/* ETH_HLEN */
 925				odev->rx_buf_size = sizeof(struct iphdr);
 926
 927				/* Filip actually use .tot_len */
 928				odev->rx_buf_missing =
 929				    frame_len - sizeof(struct iphdr);
 930				odev->rx_parse_state = WAIT_DATA;
 931			}
 932			break;
 933
 934		case WAIT_DATA:
 935			temp_bytes = (count < odev->rx_buf_missing)
 936					? count : odev->rx_buf_missing;
 937
 938			/* Copy the rest of the bytes that are left in the
 939			 * buffer into the waiting sk_buf. */
 940			/* Make room for temp_bytes after tail. */
 941			tmp_rx_buf = skb_put(odev->skb_rx_buf, temp_bytes);
 942			memcpy(tmp_rx_buf, ip_pkt + buffer_offset, temp_bytes);
 943
 944			odev->rx_buf_missing -= temp_bytes;
 945			count -= temp_bytes;
 946			buffer_offset += temp_bytes;
 947			odev->rx_buf_size += temp_bytes;
 948			if (!odev->rx_buf_missing) {
 949				/* Packet is complete. Inject into stack. */
 950				/* We have IP packet here */
 951				odev->skb_rx_buf->protocol = cpu_to_be16(ETH_P_IP);
 952				skb_reset_mac_header(odev->skb_rx_buf);
 953
 954				/* Ship it off to the kernel */
 955				netif_rx(odev->skb_rx_buf);
 956				/* No longer our buffer. */
 957				odev->skb_rx_buf = NULL;
 958
 959				/* update out statistics */
 960				odev->net->stats.rx_packets++;
 961
 962				odev->net->stats.rx_bytes += odev->rx_buf_size;
 963
 964				odev->rx_buf_size = 0;
 965				odev->rx_buf_missing = sizeof(struct iphdr);
 966				odev->rx_parse_state = WAIT_IP;
 967			}
 968			break;
 969
 970		case WAIT_SYNC:
 971			D1(" W_S");
 972			count = 0;
 973			break;
 974		default:
 975			D1(" ");
 976			count--;
 977			break;
 978		}
 979	}
 980
 981	/* Recovery mechanism for WAIT_SYNC state. */
 982	if (is_eop) {
 983		if (odev->rx_parse_state == WAIT_SYNC) {
 984			odev->rx_parse_state = WAIT_IP;
 985			odev->rx_buf_size = 0;
 986			odev->rx_buf_missing = sizeof(struct iphdr);
 987		}
 988	}
 989}
 990
 991static void fix_crc_bug(struct urb *urb, __le16 max_packet_size)
 992{
 993	static const u8 crc_check[4] = { 0xDE, 0xAD, 0xBE, 0xEF };
 994	u32 rest = urb->actual_length % le16_to_cpu(max_packet_size);
 995
 996	if (((rest == 5) || (rest == 6)) &&
 997	    !memcmp(((u8 *)urb->transfer_buffer) + urb->actual_length - 4,
 998		    crc_check, 4)) {
 999		urb->actual_length -= 4;
1000	}
1001}
1002
1003/* Moving data from usb to kernel (in interrupt state) */
1004static void read_bulk_callback(struct urb *urb)
1005{
1006	struct hso_net *odev = urb->context;
1007	struct net_device *net;
1008	int result;
1009	int status = urb->status;
1010
1011	/* is al ok?  (Filip: Who's Al ?) */
1012	if (status) {
1013		handle_usb_error(status, __func__, odev->parent);
1014		return;
1015	}
1016
1017	/* Sanity check */
1018	if (!odev || !test_bit(HSO_NET_RUNNING, &odev->flags)) {
1019		D1("BULK IN callback but driver is not active!");
1020		return;
1021	}
1022	usb_mark_last_busy(urb->dev);
1023
1024	net = odev->net;
1025
1026	if (!netif_device_present(net)) {
1027		/* Somebody killed our network interface... */
1028		return;
1029	}
1030
1031	if (odev->parent->port_spec & HSO_INFO_CRC_BUG)
1032		fix_crc_bug(urb, odev->in_endp->wMaxPacketSize);
1033
1034	/* do we even have a packet? */
1035	if (urb->actual_length) {
1036		/* Handle the IP stream, add header and push it onto network
1037		 * stack if the packet is complete. */
1038		spin_lock(&odev->net_lock);
1039		packetizeRx(odev, urb->transfer_buffer, urb->actual_length,
1040			    (urb->transfer_buffer_length >
1041			     urb->actual_length) ? 1 : 0);
1042		spin_unlock(&odev->net_lock);
1043	}
1044
1045	/* We are done with this URB, resubmit it. Prep the USB to wait for
1046	 * another frame. Reuse same as received. */
1047	usb_fill_bulk_urb(urb,
1048			  odev->parent->usb,
1049			  usb_rcvbulkpipe(odev->parent->usb,
1050					  odev->in_endp->
1051					  bEndpointAddress & 0x7F),
1052			  urb->transfer_buffer, MUX_BULK_RX_BUF_SIZE,
1053			  read_bulk_callback, odev);
1054
1055	/* Give this to the USB subsystem so it can tell us when more data
1056	 * arrives. */
1057	result = usb_submit_urb(urb, GFP_ATOMIC);
1058	if (result)
1059		dev_warn(&odev->parent->interface->dev,
1060			 "%s failed submit mux_bulk_rx_urb %d\n", __func__,
1061			 result);
1062}
1063
1064/* Serial driver functions */
1065
1066static void hso_init_termios(struct ktermios *termios)
1067{
1068	/*
1069	 * The default requirements for this device are:
1070	 */
1071	termios->c_iflag &=
1072		~(IGNBRK	/* disable ignore break */
1073		| BRKINT	/* disable break causes interrupt */
1074		| PARMRK	/* disable mark parity errors */
1075		| ISTRIP	/* disable clear high bit of input characters */
1076		| INLCR		/* disable translate NL to CR */
1077		| IGNCR		/* disable ignore CR */
1078		| ICRNL		/* disable translate CR to NL */
1079		| IXON);	/* disable enable XON/XOFF flow control */
1080
1081	/* disable postprocess output characters */
1082	termios->c_oflag &= ~OPOST;
1083
1084	termios->c_lflag &=
1085		~(ECHO		/* disable echo input characters */
1086		| ECHONL	/* disable echo new line */
1087		| ICANON	/* disable erase, kill, werase, and rprnt
1088				   special characters */
1089		| ISIG		/* disable interrupt, quit, and suspend special
1090				   characters */
1091		| IEXTEN);	/* disable non-POSIX special characters */
1092
1093	termios->c_cflag &=
1094		~(CSIZE		/* no size */
1095		| PARENB	/* disable parity bit */
1096		| CBAUD		/* clear current baud rate */
1097		| CBAUDEX);	/* clear current buad rate */
1098
1099	termios->c_cflag |= CS8;	/* character size 8 bits */
1100
1101	/* baud rate 115200 */
1102	tty_termios_encode_baud_rate(termios, 115200, 115200);
1103}
1104
1105static void _hso_serial_set_termios(struct tty_struct *tty,
1106				    struct ktermios *old)
1107{
1108	struct hso_serial *serial = tty->driver_data;
 
1109
1110	if (!serial) {
1111		printk(KERN_ERR "%s: no tty structures", __func__);
1112		return;
1113	}
1114
1115	D4("port %d", serial->minor);
1116
1117	/*
1118	 *	Fix up unsupported bits
1119	 */
1120	tty->termios.c_iflag &= ~IXON; /* disable enable XON/XOFF flow control */
 
1121
1122	tty->termios.c_cflag &=
1123		~(CSIZE		/* no size */
1124		| PARENB	/* disable parity bit */
1125		| CBAUD		/* clear current baud rate */
1126		| CBAUDEX);	/* clear current buad rate */
1127
1128	tty->termios.c_cflag |= CS8;	/* character size 8 bits */
1129
1130	/* baud rate 115200 */
1131	tty_encode_baud_rate(tty, 115200, 115200);
1132}
1133
1134static void hso_resubmit_rx_bulk_urb(struct hso_serial *serial, struct urb *urb)
1135{
1136	int result;
1137	/* We are done with this URB, resubmit it. Prep the USB to wait for
1138	 * another frame */
1139	usb_fill_bulk_urb(urb, serial->parent->usb,
1140			  usb_rcvbulkpipe(serial->parent->usb,
1141					  serial->in_endp->
1142					  bEndpointAddress & 0x7F),
1143			  urb->transfer_buffer, serial->rx_data_length,
1144			  hso_std_serial_read_bulk_callback, serial);
1145	/* Give this to the USB subsystem so it can tell us when more data
1146	 * arrives. */
1147	result = usb_submit_urb(urb, GFP_ATOMIC);
1148	if (result) {
1149		dev_err(&urb->dev->dev, "%s failed submit serial rx_urb %d\n",
1150			__func__, result);
1151	}
1152}
1153
1154
1155
1156
1157static void put_rxbuf_data_and_resubmit_bulk_urb(struct hso_serial *serial)
1158{
1159	int count;
1160	struct urb *curr_urb;
1161
1162	while (serial->rx_urb_filled[serial->curr_rx_urb_idx]) {
1163		curr_urb = serial->rx_urb[serial->curr_rx_urb_idx];
1164		count = put_rxbuf_data(curr_urb, serial);
1165		if (count == -1)
1166			return;
1167		if (count == 0) {
1168			serial->curr_rx_urb_idx++;
1169			if (serial->curr_rx_urb_idx >= serial->num_rx_urbs)
1170				serial->curr_rx_urb_idx = 0;
1171			hso_resubmit_rx_bulk_urb(serial, curr_urb);
1172		}
1173	}
1174}
1175
1176static void put_rxbuf_data_and_resubmit_ctrl_urb(struct hso_serial *serial)
1177{
1178	int count = 0;
1179	struct urb *urb;
1180
1181	urb = serial->rx_urb[0];
1182	if (serial->port.count > 0) {
1183		count = put_rxbuf_data(urb, serial);
1184		if (count == -1)
1185			return;
1186	}
1187	/* Re issue a read as long as we receive data. */
1188
1189	if (count == 0 && ((urb->actual_length != 0) ||
1190			   (serial->rx_state == RX_PENDING))) {
1191		serial->rx_state = RX_SENT;
1192		hso_mux_serial_read(serial);
1193	} else
1194		serial->rx_state = RX_IDLE;
1195}
1196
1197
1198/* read callback for Diag and CS port */
1199static void hso_std_serial_read_bulk_callback(struct urb *urb)
1200{
1201	struct hso_serial *serial = urb->context;
1202	int status = urb->status;
1203
1204	D4("\n--- Got serial_read_bulk callback %02x ---", status);
1205
1206	/* sanity check */
1207	if (!serial) {
1208		D1("serial == NULL");
1209		return;
1210	}
1211	if (status) {
1212		handle_usb_error(status, __func__, serial->parent);
1213		return;
1214	}
1215
 
1216	D1("Actual length = %d\n", urb->actual_length);
1217	DUMP1(urb->transfer_buffer, urb->actual_length);
1218
1219	/* Anyone listening? */
1220	if (serial->port.count == 0)
1221		return;
1222
1223	if (serial->parent->port_spec & HSO_INFO_CRC_BUG)
1224		fix_crc_bug(urb, serial->in_endp->wMaxPacketSize);
1225	/* Valid data, handle RX data */
1226	spin_lock(&serial->serial_lock);
1227	serial->rx_urb_filled[hso_urb_to_index(serial, urb)] = 1;
1228	put_rxbuf_data_and_resubmit_bulk_urb(serial);
1229	spin_unlock(&serial->serial_lock);
 
 
 
 
 
 
 
 
 
 
 
 
1230}
1231
1232/*
1233 * This needs to be a tasklet otherwise we will
1234 * end up recursively calling this function.
1235 */
1236static void hso_unthrottle_tasklet(struct hso_serial *serial)
1237{
1238	unsigned long flags;
1239
1240	spin_lock_irqsave(&serial->serial_lock, flags);
1241	if ((serial->parent->port_spec & HSO_INTF_MUX))
1242		put_rxbuf_data_and_resubmit_ctrl_urb(serial);
1243	else
1244		put_rxbuf_data_and_resubmit_bulk_urb(serial);
1245	spin_unlock_irqrestore(&serial->serial_lock, flags);
1246}
1247
1248static	void hso_unthrottle(struct tty_struct *tty)
1249{
1250	struct hso_serial *serial = tty->driver_data;
1251
1252	tasklet_hi_schedule(&serial->unthrottle_tasklet);
1253}
1254
1255static void hso_unthrottle_workfunc(struct work_struct *work)
1256{
1257	struct hso_serial *serial =
1258	    container_of(work, struct hso_serial,
1259			 retry_unthrottle_workqueue);
1260	hso_unthrottle_tasklet(serial);
1261}
1262
1263/* open the requested serial port */
1264static int hso_serial_open(struct tty_struct *tty, struct file *filp)
1265{
1266	struct hso_serial *serial = get_serial_by_index(tty->index);
1267	int result;
1268
1269	/* sanity check */
1270	if (serial == NULL || serial->magic != HSO_SERIAL_MAGIC) {
1271		WARN_ON(1);
1272		tty->driver_data = NULL;
1273		D1("Failed to open port");
1274		return -ENODEV;
1275	}
1276
1277	mutex_lock(&serial->parent->mutex);
1278	result = usb_autopm_get_interface(serial->parent->interface);
1279	if (result < 0)
1280		goto err_out;
1281
1282	D1("Opening %d", serial->minor);
1283	kref_get(&serial->parent->ref);
1284
1285	/* setup */
 
1286	tty->driver_data = serial;
1287	tty_port_tty_set(&serial->port, tty);
 
 
1288
1289	/* check for port already opened, if not set the termios */
1290	serial->port.count++;
1291	if (serial->port.count == 1) {
1292		serial->rx_state = RX_IDLE;
1293		/* Force default termio settings */
1294		_hso_serial_set_termios(tty, NULL);
1295		tasklet_init(&serial->unthrottle_tasklet,
1296			     (void (*)(unsigned long))hso_unthrottle_tasklet,
1297			     (unsigned long)serial);
1298		INIT_WORK(&serial->retry_unthrottle_workqueue,
1299			  hso_unthrottle_workfunc);
1300		result = hso_start_serial_device(serial->parent, GFP_KERNEL);
1301		if (result) {
1302			hso_stop_serial_device(serial->parent);
1303			serial->port.count--;
1304			kref_put(&serial->parent->ref, hso_serial_ref_free);
1305		}
1306	} else {
1307		D1("Port was already open");
1308	}
1309
1310	usb_autopm_put_interface(serial->parent->interface);
1311
1312	/* done */
1313	if (result)
1314		hso_serial_tiocmset(tty, TIOCM_RTS | TIOCM_DTR, 0);
1315err_out:
1316	mutex_unlock(&serial->parent->mutex);
1317	return result;
1318}
1319
1320/* close the requested serial port */
1321static void hso_serial_close(struct tty_struct *tty, struct file *filp)
1322{
1323	struct hso_serial *serial = tty->driver_data;
1324	u8 usb_gone;
1325
1326	D1("Closing serial port");
1327
1328	/* Open failed, no close cleanup required */
1329	if (serial == NULL)
1330		return;
1331
1332	mutex_lock(&serial->parent->mutex);
1333	usb_gone = serial->parent->usb_gone;
1334
1335	if (!usb_gone)
1336		usb_autopm_get_interface(serial->parent->interface);
1337
1338	/* reset the rts and dtr */
1339	/* do the actual close */
1340	serial->port.count--;
1341
1342	if (serial->port.count <= 0) {
1343		serial->port.count = 0;
1344		tty_port_tty_set(&serial->port, NULL);
 
 
 
 
 
 
1345		if (!usb_gone)
1346			hso_stop_serial_device(serial->parent);
1347		tasklet_kill(&serial->unthrottle_tasklet);
1348		cancel_work_sync(&serial->retry_unthrottle_workqueue);
1349	}
1350
1351	if (!usb_gone)
1352		usb_autopm_put_interface(serial->parent->interface);
1353
1354	mutex_unlock(&serial->parent->mutex);
1355
1356	kref_put(&serial->parent->ref, hso_serial_ref_free);
1357}
1358
1359/* close the requested serial port */
1360static int hso_serial_write(struct tty_struct *tty, const unsigned char *buf,
1361			    int count)
1362{
1363	struct hso_serial *serial = tty->driver_data;
1364	int space, tx_bytes;
1365	unsigned long flags;
1366
1367	/* sanity check */
1368	if (serial == NULL) {
1369		printk(KERN_ERR "%s: serial is NULL\n", __func__);
1370		return -ENODEV;
1371	}
1372
1373	spin_lock_irqsave(&serial->serial_lock, flags);
1374
1375	space = serial->tx_data_length - serial->tx_buffer_count;
1376	tx_bytes = (count < space) ? count : space;
1377
1378	if (!tx_bytes)
1379		goto out;
1380
1381	memcpy(serial->tx_buffer + serial->tx_buffer_count, buf, tx_bytes);
1382	serial->tx_buffer_count += tx_bytes;
1383
1384out:
1385	spin_unlock_irqrestore(&serial->serial_lock, flags);
1386
1387	hso_kick_transmit(serial);
1388	/* done */
1389	return tx_bytes;
1390}
1391
1392/* how much room is there for writing */
1393static int hso_serial_write_room(struct tty_struct *tty)
1394{
1395	struct hso_serial *serial = tty->driver_data;
1396	int room;
1397	unsigned long flags;
1398
1399	spin_lock_irqsave(&serial->serial_lock, flags);
1400	room = serial->tx_data_length - serial->tx_buffer_count;
1401	spin_unlock_irqrestore(&serial->serial_lock, flags);
1402
1403	/* return free room */
1404	return room;
1405}
1406
1407/* setup the term */
1408static void hso_serial_set_termios(struct tty_struct *tty, struct ktermios *old)
1409{
1410	struct hso_serial *serial = tty->driver_data;
1411	unsigned long flags;
1412
1413	if (old)
1414		D5("Termios called with: cflags new[%d] - old[%d]",
1415		   tty->termios.c_cflag, old->c_cflag);
1416
1417	/* the actual setup */
1418	spin_lock_irqsave(&serial->serial_lock, flags);
1419	if (serial->port.count)
1420		_hso_serial_set_termios(tty, old);
1421	else
1422		tty->termios = *old;
1423	spin_unlock_irqrestore(&serial->serial_lock, flags);
1424
1425	/* done */
1426}
1427
1428/* how many characters in the buffer */
1429static int hso_serial_chars_in_buffer(struct tty_struct *tty)
1430{
1431	struct hso_serial *serial = tty->driver_data;
1432	int chars;
1433	unsigned long flags;
1434
1435	/* sanity check */
1436	if (serial == NULL)
1437		return 0;
1438
1439	spin_lock_irqsave(&serial->serial_lock, flags);
1440	chars = serial->tx_buffer_count;
1441	spin_unlock_irqrestore(&serial->serial_lock, flags);
1442
1443	return chars;
1444}
1445static int tiocmget_submit_urb(struct hso_serial *serial,
1446			       struct hso_tiocmget *tiocmget,
1447			       struct usb_device *usb)
1448{
1449	int result;
1450
1451	if (serial->parent->usb_gone)
1452		return -ENODEV;
1453	usb_fill_int_urb(tiocmget->urb, usb,
1454			 usb_rcvintpipe(usb,
1455					tiocmget->endp->
1456					bEndpointAddress & 0x7F),
1457			 &tiocmget->serial_state_notification,
1458			 sizeof(struct hso_serial_state_notification),
1459			 tiocmget_intr_callback, serial,
1460			 tiocmget->endp->bInterval);
1461	result = usb_submit_urb(tiocmget->urb, GFP_ATOMIC);
1462	if (result) {
1463		dev_warn(&usb->dev, "%s usb_submit_urb failed %d\n", __func__,
1464			 result);
1465	}
1466	return result;
1467
1468}
1469
1470static void tiocmget_intr_callback(struct urb *urb)
1471{
1472	struct hso_serial *serial = urb->context;
1473	struct hso_tiocmget *tiocmget;
1474	int status = urb->status;
1475	u16 UART_state_bitmap, prev_UART_state_bitmap;
1476	struct uart_icount *icount;
1477	struct hso_serial_state_notification *serial_state_notification;
1478	struct usb_device *usb;
1479	int if_num;
1480
1481	/* Sanity checks */
1482	if (!serial)
1483		return;
1484	if (status) {
1485		handle_usb_error(status, __func__, serial->parent);
1486		return;
1487	}
1488
1489	/* tiocmget is only supported on HSO_PORT_MODEM */
1490	tiocmget = serial->tiocmget;
1491	if (!tiocmget)
1492		return;
1493	BUG_ON((serial->parent->port_spec & HSO_PORT_MASK) != HSO_PORT_MODEM);
1494
1495	usb = serial->parent->usb;
1496	if_num = serial->parent->interface->altsetting->desc.bInterfaceNumber;
1497
1498	/* wIndex should be the USB interface number of the port to which the
1499	 * notification applies, which should always be the Modem port.
1500	 */
1501	serial_state_notification = &tiocmget->serial_state_notification;
1502	if (serial_state_notification->bmRequestType != BM_REQUEST_TYPE ||
1503	    serial_state_notification->bNotification != B_NOTIFICATION ||
1504	    le16_to_cpu(serial_state_notification->wValue) != W_VALUE ||
1505	    le16_to_cpu(serial_state_notification->wIndex) != if_num ||
1506	    le16_to_cpu(serial_state_notification->wLength) != W_LENGTH) {
1507		dev_warn(&usb->dev,
1508			 "hso received invalid serial state notification\n");
1509		DUMP(serial_state_notification,
1510		     sizeof(struct hso_serial_state_notification));
1511	} else {
1512
1513		UART_state_bitmap = le16_to_cpu(serial_state_notification->
1514						UART_state_bitmap);
1515		prev_UART_state_bitmap = tiocmget->prev_UART_state_bitmap;
1516		icount = &tiocmget->icount;
1517		spin_lock(&serial->serial_lock);
1518		if ((UART_state_bitmap & B_OVERRUN) !=
1519		   (prev_UART_state_bitmap & B_OVERRUN))
1520			icount->parity++;
1521		if ((UART_state_bitmap & B_PARITY) !=
1522		   (prev_UART_state_bitmap & B_PARITY))
1523			icount->parity++;
1524		if ((UART_state_bitmap & B_FRAMING) !=
1525		   (prev_UART_state_bitmap & B_FRAMING))
1526			icount->frame++;
1527		if ((UART_state_bitmap & B_RING_SIGNAL) &&
1528		   !(prev_UART_state_bitmap & B_RING_SIGNAL))
1529			icount->rng++;
1530		if ((UART_state_bitmap & B_BREAK) !=
1531		   (prev_UART_state_bitmap & B_BREAK))
1532			icount->brk++;
1533		if ((UART_state_bitmap & B_TX_CARRIER) !=
1534		   (prev_UART_state_bitmap & B_TX_CARRIER))
1535			icount->dsr++;
1536		if ((UART_state_bitmap & B_RX_CARRIER) !=
1537		   (prev_UART_state_bitmap & B_RX_CARRIER))
1538			icount->dcd++;
1539		tiocmget->prev_UART_state_bitmap = UART_state_bitmap;
1540		spin_unlock(&serial->serial_lock);
1541		tiocmget->intr_completed = 1;
1542		wake_up_interruptible(&tiocmget->waitq);
1543	}
1544	memset(serial_state_notification, 0,
1545	       sizeof(struct hso_serial_state_notification));
1546	tiocmget_submit_urb(serial,
1547			    tiocmget,
1548			    serial->parent->usb);
1549}
1550
1551/*
1552 * next few functions largely stolen from drivers/serial/serial_core.c
1553 */
1554/* Wait for any of the 4 modem inputs (DCD,RI,DSR,CTS) to change
1555 * - mask passed in arg for lines of interest
1556 *   (use |'ed TIOCM_RNG/DSR/CD/CTS for masking)
1557 * Caller should use TIOCGICOUNT to see which one it was
1558 */
1559static int
1560hso_wait_modem_status(struct hso_serial *serial, unsigned long arg)
1561{
1562	DECLARE_WAITQUEUE(wait, current);
1563	struct uart_icount cprev, cnow;
1564	struct hso_tiocmget  *tiocmget;
1565	int ret;
1566
1567	tiocmget = serial->tiocmget;
1568	if (!tiocmget)
1569		return -ENOENT;
1570	/*
1571	 * note the counters on entry
1572	 */
1573	spin_lock_irq(&serial->serial_lock);
1574	memcpy(&cprev, &tiocmget->icount, sizeof(struct uart_icount));
1575	spin_unlock_irq(&serial->serial_lock);
1576	add_wait_queue(&tiocmget->waitq, &wait);
1577	for (;;) {
1578		spin_lock_irq(&serial->serial_lock);
1579		memcpy(&cnow, &tiocmget->icount, sizeof(struct uart_icount));
1580		spin_unlock_irq(&serial->serial_lock);
1581		set_current_state(TASK_INTERRUPTIBLE);
1582		if (((arg & TIOCM_RNG) && (cnow.rng != cprev.rng)) ||
1583		    ((arg & TIOCM_DSR) && (cnow.dsr != cprev.dsr)) ||
1584		    ((arg & TIOCM_CD)  && (cnow.dcd != cprev.dcd))) {
1585			ret = 0;
1586			break;
1587		}
1588		schedule();
1589		/* see if a signal did it */
1590		if (signal_pending(current)) {
1591			ret = -ERESTARTSYS;
1592			break;
1593		}
1594		cprev = cnow;
1595	}
1596	current->state = TASK_RUNNING;
1597	remove_wait_queue(&tiocmget->waitq, &wait);
1598
1599	return ret;
1600}
1601
1602/*
1603 * Get counter of input serial line interrupts (DCD,RI,DSR,CTS)
1604 * Return: write counters to the user passed counter struct
1605 * NB: both 1->0 and 0->1 transitions are counted except for
1606 *     RI where only 0->1 is counted.
1607 */
1608static int hso_get_count(struct tty_struct *tty,
1609		  struct serial_icounter_struct *icount)
1610{
1611	struct uart_icount cnow;
1612	struct hso_serial *serial = tty->driver_data;
1613	struct hso_tiocmget  *tiocmget = serial->tiocmget;
1614
1615	memset(icount, 0, sizeof(struct serial_icounter_struct));
1616
1617	if (!tiocmget)
1618		 return -ENOENT;
1619	spin_lock_irq(&serial->serial_lock);
1620	memcpy(&cnow, &tiocmget->icount, sizeof(struct uart_icount));
1621	spin_unlock_irq(&serial->serial_lock);
1622
1623	icount->cts         = cnow.cts;
1624	icount->dsr         = cnow.dsr;
1625	icount->rng         = cnow.rng;
1626	icount->dcd         = cnow.dcd;
1627	icount->rx          = cnow.rx;
1628	icount->tx          = cnow.tx;
1629	icount->frame       = cnow.frame;
1630	icount->overrun     = cnow.overrun;
1631	icount->parity      = cnow.parity;
1632	icount->brk         = cnow.brk;
1633	icount->buf_overrun = cnow.buf_overrun;
1634
1635	return 0;
1636}
1637
1638
1639static int hso_serial_tiocmget(struct tty_struct *tty)
1640{
1641	int retval;
1642	struct hso_serial *serial = tty->driver_data;
1643	struct hso_tiocmget  *tiocmget;
1644	u16 UART_state_bitmap;
1645
1646	/* sanity check */
1647	if (!serial) {
1648		D1("no tty structures");
1649		return -EINVAL;
1650	}
1651	spin_lock_irq(&serial->serial_lock);
1652	retval = ((serial->rts_state) ? TIOCM_RTS : 0) |
1653	    ((serial->dtr_state) ? TIOCM_DTR : 0);
1654	tiocmget = serial->tiocmget;
1655	if (tiocmget) {
1656
1657		UART_state_bitmap = le16_to_cpu(
1658			tiocmget->prev_UART_state_bitmap);
1659		if (UART_state_bitmap & B_RING_SIGNAL)
1660			retval |=  TIOCM_RNG;
1661		if (UART_state_bitmap & B_RX_CARRIER)
1662			retval |=  TIOCM_CD;
1663		if (UART_state_bitmap & B_TX_CARRIER)
1664			retval |=  TIOCM_DSR;
1665	}
1666	spin_unlock_irq(&serial->serial_lock);
1667	return retval;
1668}
1669
1670static int hso_serial_tiocmset(struct tty_struct *tty,
1671			       unsigned int set, unsigned int clear)
1672{
1673	int val = 0;
1674	unsigned long flags;
1675	int if_num;
1676	struct hso_serial *serial = tty->driver_data;
1677
1678	/* sanity check */
1679	if (!serial) {
1680		D1("no tty structures");
1681		return -EINVAL;
1682	}
1683
1684	if ((serial->parent->port_spec & HSO_PORT_MASK) != HSO_PORT_MODEM)
1685		return -EINVAL;
1686
1687	if_num = serial->parent->interface->altsetting->desc.bInterfaceNumber;
1688
1689	spin_lock_irqsave(&serial->serial_lock, flags);
1690	if (set & TIOCM_RTS)
1691		serial->rts_state = 1;
1692	if (set & TIOCM_DTR)
1693		serial->dtr_state = 1;
1694
1695	if (clear & TIOCM_RTS)
1696		serial->rts_state = 0;
1697	if (clear & TIOCM_DTR)
1698		serial->dtr_state = 0;
1699
1700	if (serial->dtr_state)
1701		val |= 0x01;
1702	if (serial->rts_state)
1703		val |= 0x02;
1704
1705	spin_unlock_irqrestore(&serial->serial_lock, flags);
1706
1707	return usb_control_msg(serial->parent->usb,
1708			       usb_rcvctrlpipe(serial->parent->usb, 0), 0x22,
1709			       0x21, val, if_num, NULL, 0,
1710			       USB_CTRL_SET_TIMEOUT);
1711}
1712
1713static int hso_serial_ioctl(struct tty_struct *tty,
1714			    unsigned int cmd, unsigned long arg)
1715{
1716	struct hso_serial *serial = tty->driver_data;
1717	int ret = 0;
1718	D4("IOCTL cmd: %d, arg: %ld", cmd, arg);
1719
1720	if (!serial)
1721		return -ENODEV;
1722	switch (cmd) {
1723	case TIOCMIWAIT:
1724		ret = hso_wait_modem_status(serial, arg);
1725		break;
1726	default:
1727		ret = -ENOIOCTLCMD;
1728		break;
1729	}
1730	return ret;
1731}
1732
1733
1734/* starts a transmit */
1735static void hso_kick_transmit(struct hso_serial *serial)
1736{
1737	u8 *temp;
1738	unsigned long flags;
1739	int res;
1740
1741	spin_lock_irqsave(&serial->serial_lock, flags);
1742	if (!serial->tx_buffer_count)
1743		goto out;
1744
1745	if (serial->tx_urb_used)
1746		goto out;
1747
1748	/* Wakeup USB interface if necessary */
1749	if (hso_get_activity(serial->parent) == -EAGAIN)
1750		goto out;
1751
1752	/* Switch pointers around to avoid memcpy */
1753	temp = serial->tx_buffer;
1754	serial->tx_buffer = serial->tx_data;
1755	serial->tx_data = temp;
1756	serial->tx_data_count = serial->tx_buffer_count;
1757	serial->tx_buffer_count = 0;
1758
1759	/* If temp is set, it means we switched buffers */
1760	if (temp && serial->write_data) {
1761		res = serial->write_data(serial);
1762		if (res >= 0)
1763			serial->tx_urb_used = 1;
1764	}
1765out:
1766	spin_unlock_irqrestore(&serial->serial_lock, flags);
1767}
1768
1769/* make a request (for reading and writing data to muxed serial port) */
1770static int mux_device_request(struct hso_serial *serial, u8 type, u16 port,
1771			      struct urb *ctrl_urb,
1772			      struct usb_ctrlrequest *ctrl_req,
1773			      u8 *ctrl_urb_data, u32 size)
1774{
1775	int result;
1776	int pipe;
1777
1778	/* Sanity check */
1779	if (!serial || !ctrl_urb || !ctrl_req) {
1780		printk(KERN_ERR "%s: Wrong arguments\n", __func__);
1781		return -EINVAL;
1782	}
1783
1784	/* initialize */
1785	ctrl_req->wValue = 0;
1786	ctrl_req->wIndex = cpu_to_le16(hso_port_to_mux(port));
1787	ctrl_req->wLength = cpu_to_le16(size);
1788
1789	if (type == USB_CDC_GET_ENCAPSULATED_RESPONSE) {
1790		/* Reading command */
1791		ctrl_req->bRequestType = USB_DIR_IN |
1792					 USB_TYPE_OPTION_VENDOR |
1793					 USB_RECIP_INTERFACE;
1794		ctrl_req->bRequest = USB_CDC_GET_ENCAPSULATED_RESPONSE;
1795		pipe = usb_rcvctrlpipe(serial->parent->usb, 0);
1796	} else {
1797		/* Writing command */
1798		ctrl_req->bRequestType = USB_DIR_OUT |
1799					 USB_TYPE_OPTION_VENDOR |
1800					 USB_RECIP_INTERFACE;
1801		ctrl_req->bRequest = USB_CDC_SEND_ENCAPSULATED_COMMAND;
1802		pipe = usb_sndctrlpipe(serial->parent->usb, 0);
1803	}
1804	/* syslog */
1805	D2("%s command (%02x) len: %d, port: %d",
1806	   type == USB_CDC_GET_ENCAPSULATED_RESPONSE ? "Read" : "Write",
1807	   ctrl_req->bRequestType, ctrl_req->wLength, port);
1808
1809	/* Load ctrl urb */
1810	ctrl_urb->transfer_flags = 0;
1811	usb_fill_control_urb(ctrl_urb,
1812			     serial->parent->usb,
1813			     pipe,
1814			     (u8 *) ctrl_req,
1815			     ctrl_urb_data, size, ctrl_callback, serial);
1816	/* Send it on merry way */
1817	result = usb_submit_urb(ctrl_urb, GFP_ATOMIC);
1818	if (result) {
1819		dev_err(&ctrl_urb->dev->dev,
1820			"%s failed submit ctrl_urb %d type %d\n", __func__,
1821			result, type);
1822		return result;
1823	}
1824
1825	/* done */
1826	return size;
1827}
1828
1829/* called by intr_callback when read occurs */
1830static int hso_mux_serial_read(struct hso_serial *serial)
1831{
1832	if (!serial)
1833		return -EINVAL;
1834
1835	/* clean data */
1836	memset(serial->rx_data[0], 0, CTRL_URB_RX_SIZE);
1837	/* make the request */
1838
1839	if (serial->num_rx_urbs != 1) {
1840		dev_err(&serial->parent->interface->dev,
1841			"ERROR: mux'd reads with multiple buffers "
1842			"not possible\n");
1843		return 0;
1844	}
1845	return mux_device_request(serial,
1846				  USB_CDC_GET_ENCAPSULATED_RESPONSE,
1847				  serial->parent->port_spec & HSO_PORT_MASK,
1848				  serial->rx_urb[0],
1849				  &serial->ctrl_req_rx,
1850				  serial->rx_data[0], serial->rx_data_length);
1851}
1852
1853/* used for muxed serial port callback (muxed serial read) */
1854static void intr_callback(struct urb *urb)
1855{
1856	struct hso_shared_int *shared_int = urb->context;
1857	struct hso_serial *serial;
1858	unsigned char *port_req;
1859	int status = urb->status;
1860	int i;
1861
1862	usb_mark_last_busy(urb->dev);
1863
1864	/* sanity check */
1865	if (!shared_int)
1866		return;
1867
1868	/* status check */
1869	if (status) {
1870		handle_usb_error(status, __func__, NULL);
1871		return;
1872	}
1873	D4("\n--- Got intr callback 0x%02X ---", status);
1874
1875	/* what request? */
1876	port_req = urb->transfer_buffer;
1877	D4(" port_req = 0x%.2X\n", *port_req);
1878	/* loop over all muxed ports to find the one sending this */
1879	for (i = 0; i < 8; i++) {
1880		/* max 8 channels on MUX */
1881		if (*port_req & (1 << i)) {
1882			serial = get_serial_by_shared_int_and_type(shared_int,
1883								   (1 << i));
1884			if (serial != NULL) {
1885				D1("Pending read interrupt on port %d\n", i);
1886				spin_lock(&serial->serial_lock);
1887				if (serial->rx_state == RX_IDLE &&
1888					serial->port.count > 0) {
1889					/* Setup and send a ctrl req read on
1890					 * port i */
1891					if (!serial->rx_urb_filled[0]) {
1892						serial->rx_state = RX_SENT;
1893						hso_mux_serial_read(serial);
1894					} else
1895						serial->rx_state = RX_PENDING;
1896				} else {
1897					D1("Already a read pending on "
1898					   "port %d or port not open\n", i);
1899				}
1900				spin_unlock(&serial->serial_lock);
1901			}
1902		}
1903	}
1904	/* Resubmit interrupt urb */
1905	hso_mux_submit_intr_urb(shared_int, urb->dev, GFP_ATOMIC);
1906}
1907
1908/* called for writing to muxed serial port */
1909static int hso_mux_serial_write_data(struct hso_serial *serial)
1910{
1911	if (NULL == serial)
1912		return -EINVAL;
1913
1914	return mux_device_request(serial,
1915				  USB_CDC_SEND_ENCAPSULATED_COMMAND,
1916				  serial->parent->port_spec & HSO_PORT_MASK,
1917				  serial->tx_urb,
1918				  &serial->ctrl_req_tx,
1919				  serial->tx_data, serial->tx_data_count);
1920}
1921
1922/* write callback for Diag and CS port */
1923static void hso_std_serial_write_bulk_callback(struct urb *urb)
1924{
1925	struct hso_serial *serial = urb->context;
1926	int status = urb->status;
 
1927
1928	/* sanity check */
1929	if (!serial) {
1930		D1("serial == NULL");
1931		return;
1932	}
1933
1934	spin_lock(&serial->serial_lock);
1935	serial->tx_urb_used = 0;
 
1936	spin_unlock(&serial->serial_lock);
1937	if (status) {
1938		handle_usb_error(status, __func__, serial->parent);
 
1939		return;
1940	}
1941	hso_put_activity(serial->parent);
1942	tty_port_tty_wakeup(&serial->port);
 
 
 
1943	hso_kick_transmit(serial);
1944
1945	D1(" ");
1946}
1947
1948/* called for writing diag or CS serial port */
1949static int hso_std_serial_write_data(struct hso_serial *serial)
1950{
1951	int count = serial->tx_data_count;
1952	int result;
1953
1954	usb_fill_bulk_urb(serial->tx_urb,
1955			  serial->parent->usb,
1956			  usb_sndbulkpipe(serial->parent->usb,
1957					  serial->out_endp->
1958					  bEndpointAddress & 0x7F),
1959			  serial->tx_data, serial->tx_data_count,
1960			  hso_std_serial_write_bulk_callback, serial);
1961
1962	result = usb_submit_urb(serial->tx_urb, GFP_ATOMIC);
1963	if (result) {
1964		dev_warn(&serial->parent->usb->dev,
1965			 "Failed to submit urb - res %d\n", result);
1966		return result;
1967	}
1968
1969	return count;
1970}
1971
1972/* callback after read or write on muxed serial port */
1973static void ctrl_callback(struct urb *urb)
1974{
1975	struct hso_serial *serial = urb->context;
1976	struct usb_ctrlrequest *req;
1977	int status = urb->status;
 
1978
1979	/* sanity check */
1980	if (!serial)
1981		return;
1982
1983	spin_lock(&serial->serial_lock);
1984	serial->tx_urb_used = 0;
 
1985	spin_unlock(&serial->serial_lock);
1986	if (status) {
1987		handle_usb_error(status, __func__, serial->parent);
 
1988		return;
1989	}
1990
1991	/* what request? */
1992	req = (struct usb_ctrlrequest *)(urb->setup_packet);
1993	D4("\n--- Got muxed ctrl callback 0x%02X ---", status);
1994	D4("Actual length of urb = %d\n", urb->actual_length);
1995	DUMP1(urb->transfer_buffer, urb->actual_length);
1996
1997	if (req->bRequestType ==
1998	    (USB_DIR_IN | USB_TYPE_OPTION_VENDOR | USB_RECIP_INTERFACE)) {
1999		/* response to a read command */
2000		serial->rx_urb_filled[0] = 1;
2001		spin_lock(&serial->serial_lock);
2002		put_rxbuf_data_and_resubmit_ctrl_urb(serial);
2003		spin_unlock(&serial->serial_lock);
2004	} else {
2005		hso_put_activity(serial->parent);
2006		tty_port_tty_wakeup(&serial->port);
 
2007		/* response to a write command */
2008		hso_kick_transmit(serial);
2009	}
 
2010}
2011
2012/* handle RX data for serial port */
2013static int put_rxbuf_data(struct urb *urb, struct hso_serial *serial)
2014{
2015	struct tty_struct *tty;
2016	int write_length_remaining = 0;
2017	int curr_write_len;
2018
2019	/* Sanity check */
2020	if (urb == NULL || serial == NULL) {
2021		D1("serial = NULL");
2022		return -2;
2023	}
2024
2025	tty = tty_port_tty_get(&serial->port);
 
2026
2027	/* Push data to tty */
2028	write_length_remaining = urb->actual_length -
2029		serial->curr_rx_urb_offset;
2030	D1("data to push to tty");
2031	while (write_length_remaining) {
2032		if (tty && test_bit(TTY_THROTTLED, &tty->flags)) {
2033			tty_kref_put(tty);
2034			return -1;
 
 
 
 
 
 
 
 
 
2035		}
2036		curr_write_len = tty_insert_flip_string(&serial->port,
2037			urb->transfer_buffer + serial->curr_rx_urb_offset,
2038			write_length_remaining);
2039		serial->curr_rx_urb_offset += curr_write_len;
2040		write_length_remaining -= curr_write_len;
2041		tty_flip_buffer_push(&serial->port);
2042	}
2043	tty_kref_put(tty);
2044
2045	if (write_length_remaining == 0) {
2046		serial->curr_rx_urb_offset = 0;
2047		serial->rx_urb_filled[hso_urb_to_index(serial, urb)] = 0;
2048	}
 
2049	return write_length_remaining;
2050}
2051
2052
2053/* Base driver functions */
2054
2055static void hso_log_port(struct hso_device *hso_dev)
2056{
2057	char *port_type;
2058	char port_dev[20];
2059
2060	switch (hso_dev->port_spec & HSO_PORT_MASK) {
2061	case HSO_PORT_CONTROL:
2062		port_type = "Control";
2063		break;
2064	case HSO_PORT_APP:
2065		port_type = "Application";
2066		break;
2067	case HSO_PORT_GPS:
2068		port_type = "GPS";
2069		break;
2070	case HSO_PORT_GPS_CONTROL:
2071		port_type = "GPS control";
2072		break;
2073	case HSO_PORT_APP2:
2074		port_type = "Application2";
2075		break;
2076	case HSO_PORT_PCSC:
2077		port_type = "PCSC";
2078		break;
2079	case HSO_PORT_DIAG:
2080		port_type = "Diagnostic";
2081		break;
2082	case HSO_PORT_DIAG2:
2083		port_type = "Diagnostic2";
2084		break;
2085	case HSO_PORT_MODEM:
2086		port_type = "Modem";
2087		break;
2088	case HSO_PORT_NETWORK:
2089		port_type = "Network";
2090		break;
2091	default:
2092		port_type = "Unknown";
2093		break;
2094	}
2095	if ((hso_dev->port_spec & HSO_PORT_MASK) == HSO_PORT_NETWORK) {
2096		sprintf(port_dev, "%s", dev2net(hso_dev)->net->name);
2097	} else
2098		sprintf(port_dev, "/dev/%s%d", tty_filename,
2099			dev2ser(hso_dev)->minor);
2100
2101	dev_dbg(&hso_dev->interface->dev, "HSO: Found %s port %s\n",
2102		port_type, port_dev);
2103}
2104
2105static int hso_start_net_device(struct hso_device *hso_dev)
2106{
2107	int i, result = 0;
2108	struct hso_net *hso_net = dev2net(hso_dev);
2109
2110	if (!hso_net)
2111		return -ENODEV;
2112
2113	/* send URBs for all read buffers */
2114	for (i = 0; i < MUX_BULK_RX_BUF_COUNT; i++) {
2115
2116		/* Prep a receive URB */
2117		usb_fill_bulk_urb(hso_net->mux_bulk_rx_urb_pool[i],
2118				  hso_dev->usb,
2119				  usb_rcvbulkpipe(hso_dev->usb,
2120						  hso_net->in_endp->
2121						  bEndpointAddress & 0x7F),
2122				  hso_net->mux_bulk_rx_buf_pool[i],
2123				  MUX_BULK_RX_BUF_SIZE, read_bulk_callback,
2124				  hso_net);
2125
2126		/* Put it out there so the device can send us stuff */
2127		result = usb_submit_urb(hso_net->mux_bulk_rx_urb_pool[i],
2128					GFP_NOIO);
2129		if (result)
2130			dev_warn(&hso_dev->usb->dev,
2131				"%s failed mux_bulk_rx_urb[%d] %d\n", __func__,
2132				i, result);
2133	}
2134
2135	return result;
2136}
2137
2138static int hso_stop_net_device(struct hso_device *hso_dev)
2139{
2140	int i;
2141	struct hso_net *hso_net = dev2net(hso_dev);
2142
2143	if (!hso_net)
2144		return -ENODEV;
2145
2146	for (i = 0; i < MUX_BULK_RX_BUF_COUNT; i++) {
2147		if (hso_net->mux_bulk_rx_urb_pool[i])
2148			usb_kill_urb(hso_net->mux_bulk_rx_urb_pool[i]);
2149
2150	}
2151	if (hso_net->mux_bulk_tx_urb)
2152		usb_kill_urb(hso_net->mux_bulk_tx_urb);
2153
2154	return 0;
2155}
2156
2157static int hso_start_serial_device(struct hso_device *hso_dev, gfp_t flags)
2158{
2159	int i, result = 0;
2160	struct hso_serial *serial = dev2ser(hso_dev);
2161
2162	if (!serial)
2163		return -ENODEV;
2164
2165	/* If it is not the MUX port fill in and submit a bulk urb (already
2166	 * allocated in hso_serial_start) */
2167	if (!(serial->parent->port_spec & HSO_INTF_MUX)) {
2168		for (i = 0; i < serial->num_rx_urbs; i++) {
2169			usb_fill_bulk_urb(serial->rx_urb[i],
2170					  serial->parent->usb,
2171					  usb_rcvbulkpipe(serial->parent->usb,
2172							  serial->in_endp->
2173							  bEndpointAddress &
2174							  0x7F),
2175					  serial->rx_data[i],
2176					  serial->rx_data_length,
2177					  hso_std_serial_read_bulk_callback,
2178					  serial);
2179			result = usb_submit_urb(serial->rx_urb[i], flags);
2180			if (result) {
2181				dev_warn(&serial->parent->usb->dev,
2182					 "Failed to submit urb - res %d\n",
2183					 result);
2184				break;
2185			}
2186		}
2187	} else {
2188		mutex_lock(&serial->shared_int->shared_int_lock);
2189		if (!serial->shared_int->use_count) {
2190			result =
2191			    hso_mux_submit_intr_urb(serial->shared_int,
2192						    hso_dev->usb, flags);
2193		}
2194		serial->shared_int->use_count++;
2195		mutex_unlock(&serial->shared_int->shared_int_lock);
2196	}
2197	if (serial->tiocmget)
2198		tiocmget_submit_urb(serial,
2199				    serial->tiocmget,
2200				    serial->parent->usb);
2201	return result;
2202}
2203
2204static int hso_stop_serial_device(struct hso_device *hso_dev)
2205{
2206	int i;
2207	struct hso_serial *serial = dev2ser(hso_dev);
2208	struct hso_tiocmget  *tiocmget;
2209
2210	if (!serial)
2211		return -ENODEV;
2212
2213	for (i = 0; i < serial->num_rx_urbs; i++) {
2214		if (serial->rx_urb[i]) {
2215				usb_kill_urb(serial->rx_urb[i]);
2216				serial->rx_urb_filled[i] = 0;
2217		}
2218	}
2219	serial->curr_rx_urb_idx = 0;
2220	serial->curr_rx_urb_offset = 0;
2221
2222	if (serial->tx_urb)
2223		usb_kill_urb(serial->tx_urb);
2224
2225	if (serial->shared_int) {
2226		mutex_lock(&serial->shared_int->shared_int_lock);
2227		if (serial->shared_int->use_count &&
2228		    (--serial->shared_int->use_count == 0)) {
2229			struct urb *urb;
2230
2231			urb = serial->shared_int->shared_intr_urb;
2232			if (urb)
2233				usb_kill_urb(urb);
2234		}
2235		mutex_unlock(&serial->shared_int->shared_int_lock);
2236	}
2237	tiocmget = serial->tiocmget;
2238	if (tiocmget) {
2239		wake_up_interruptible(&tiocmget->waitq);
2240		usb_kill_urb(tiocmget->urb);
2241	}
2242
2243	return 0;
2244}
2245
2246static void hso_serial_common_free(struct hso_serial *serial)
2247{
2248	int i;
2249
2250	if (serial->parent->dev)
2251		device_remove_file(serial->parent->dev, &dev_attr_hsotype);
2252
2253	tty_unregister_device(tty_drv, serial->minor);
2254
2255	for (i = 0; i < serial->num_rx_urbs; i++) {
2256		/* unlink and free RX URB */
2257		usb_free_urb(serial->rx_urb[i]);
2258		/* free the RX buffer */
2259		kfree(serial->rx_data[i]);
2260	}
2261
2262	/* unlink and free TX URB */
2263	usb_free_urb(serial->tx_urb);
2264	kfree(serial->tx_data);
2265	tty_port_destroy(&serial->port);
2266}
2267
2268static int hso_serial_common_create(struct hso_serial *serial, int num_urbs,
2269				    int rx_size, int tx_size)
2270{
2271	struct device *dev;
2272	int minor;
2273	int i;
2274
2275	tty_port_init(&serial->port);
2276
2277	minor = get_free_serial_index();
2278	if (minor < 0)
2279		goto exit;
2280
2281	/* register our minor number */
2282	serial->parent->dev = tty_port_register_device(&serial->port, tty_drv,
2283			minor, &serial->parent->interface->dev);
2284	dev = serial->parent->dev;
2285	dev_set_drvdata(dev, serial->parent);
2286	i = device_create_file(dev, &dev_attr_hsotype);
2287
2288	/* fill in specific data for later use */
2289	serial->minor = minor;
2290	serial->magic = HSO_SERIAL_MAGIC;
2291	spin_lock_init(&serial->serial_lock);
2292	serial->num_rx_urbs = num_urbs;
2293
2294	/* RX, allocate urb and initialize */
2295
2296	/* prepare our RX buffer */
2297	serial->rx_data_length = rx_size;
2298	for (i = 0; i < serial->num_rx_urbs; i++) {
2299		serial->rx_urb[i] = usb_alloc_urb(0, GFP_KERNEL);
2300		if (!serial->rx_urb[i]) {
2301			dev_err(dev, "Could not allocate urb?\n");
2302			goto exit;
2303		}
2304		serial->rx_urb[i]->transfer_buffer = NULL;
2305		serial->rx_urb[i]->transfer_buffer_length = 0;
2306		serial->rx_data[i] = kzalloc(serial->rx_data_length,
2307					     GFP_KERNEL);
2308		if (!serial->rx_data[i])
 
2309			goto exit;
 
2310	}
2311
2312	/* TX, allocate urb and initialize */
2313	serial->tx_urb = usb_alloc_urb(0, GFP_KERNEL);
2314	if (!serial->tx_urb) {
2315		dev_err(dev, "Could not allocate urb?\n");
2316		goto exit;
2317	}
2318	serial->tx_urb->transfer_buffer = NULL;
2319	serial->tx_urb->transfer_buffer_length = 0;
2320	/* prepare our TX buffer */
2321	serial->tx_data_count = 0;
2322	serial->tx_buffer_count = 0;
2323	serial->tx_data_length = tx_size;
2324	serial->tx_data = kzalloc(serial->tx_data_length, GFP_KERNEL);
2325	if (!serial->tx_data)
 
2326		goto exit;
2327
2328	serial->tx_buffer = kzalloc(serial->tx_data_length, GFP_KERNEL);
2329	if (!serial->tx_buffer)
 
2330		goto exit;
 
2331
2332	return 0;
2333exit:
2334	hso_serial_common_free(serial);
2335	return -1;
2336}
2337
2338/* Creates a general hso device */
2339static struct hso_device *hso_create_device(struct usb_interface *intf,
2340					    int port_spec)
2341{
2342	struct hso_device *hso_dev;
2343
2344	hso_dev = kzalloc(sizeof(*hso_dev), GFP_ATOMIC);
2345	if (!hso_dev)
2346		return NULL;
2347
2348	hso_dev->port_spec = port_spec;
2349	hso_dev->usb = interface_to_usbdev(intf);
2350	hso_dev->interface = intf;
2351	kref_init(&hso_dev->ref);
2352	mutex_init(&hso_dev->mutex);
2353
2354	INIT_WORK(&hso_dev->async_get_intf, async_get_intf);
2355	INIT_WORK(&hso_dev->async_put_intf, async_put_intf);
2356	INIT_WORK(&hso_dev->reset_device, reset_device);
2357
2358	return hso_dev;
2359}
2360
2361/* Removes a network device in the network device table */
2362static int remove_net_device(struct hso_device *hso_dev)
2363{
2364	int i;
2365
2366	for (i = 0; i < HSO_MAX_NET_DEVICES; i++) {
2367		if (network_table[i] == hso_dev) {
2368			network_table[i] = NULL;
2369			break;
2370		}
2371	}
2372	if (i == HSO_MAX_NET_DEVICES)
2373		return -1;
2374	return 0;
2375}
2376
2377/* Frees our network device */
2378static void hso_free_net_device(struct hso_device *hso_dev)
2379{
2380	int i;
2381	struct hso_net *hso_net = dev2net(hso_dev);
2382
2383	if (!hso_net)
2384		return;
2385
2386	remove_net_device(hso_net->parent);
2387
2388	if (hso_net->net)
2389		unregister_netdev(hso_net->net);
2390
2391	/* start freeing */
2392	for (i = 0; i < MUX_BULK_RX_BUF_COUNT; i++) {
2393		usb_free_urb(hso_net->mux_bulk_rx_urb_pool[i]);
2394		kfree(hso_net->mux_bulk_rx_buf_pool[i]);
2395		hso_net->mux_bulk_rx_buf_pool[i] = NULL;
2396	}
2397	usb_free_urb(hso_net->mux_bulk_tx_urb);
2398	kfree(hso_net->mux_bulk_tx_buf);
2399	hso_net->mux_bulk_tx_buf = NULL;
2400
2401	if (hso_net->net)
2402		free_netdev(hso_net->net);
2403
2404	kfree(hso_dev);
2405}
2406
2407static const struct net_device_ops hso_netdev_ops = {
2408	.ndo_open	= hso_net_open,
2409	.ndo_stop	= hso_net_close,
2410	.ndo_start_xmit = hso_net_start_xmit,
2411	.ndo_tx_timeout = hso_net_tx_timeout,
2412};
2413
2414/* initialize the network interface */
2415static void hso_net_init(struct net_device *net)
2416{
2417	struct hso_net *hso_net = netdev_priv(net);
2418
2419	D1("sizeof hso_net is %d", (int)sizeof(*hso_net));
2420
2421	/* fill in the other fields */
2422	net->netdev_ops = &hso_netdev_ops;
2423	net->watchdog_timeo = HSO_NET_TX_TIMEOUT;
2424	net->flags = IFF_POINTOPOINT | IFF_NOARP | IFF_MULTICAST;
2425	net->type = ARPHRD_NONE;
2426	net->mtu = DEFAULT_MTU - 14;
2427	net->tx_queue_len = 10;
2428	SET_ETHTOOL_OPS(net, &ops);
2429
2430	/* and initialize the semaphore */
2431	spin_lock_init(&hso_net->net_lock);
2432}
2433
2434/* Adds a network device in the network device table */
2435static int add_net_device(struct hso_device *hso_dev)
2436{
2437	int i;
2438
2439	for (i = 0; i < HSO_MAX_NET_DEVICES; i++) {
2440		if (network_table[i] == NULL) {
2441			network_table[i] = hso_dev;
2442			break;
2443		}
2444	}
2445	if (i == HSO_MAX_NET_DEVICES)
2446		return -1;
2447	return 0;
2448}
2449
2450static int hso_rfkill_set_block(void *data, bool blocked)
2451{
2452	struct hso_device *hso_dev = data;
2453	int enabled = !blocked;
2454	int rv;
2455
2456	mutex_lock(&hso_dev->mutex);
2457	if (hso_dev->usb_gone)
2458		rv = 0;
2459	else
2460		rv = usb_control_msg(hso_dev->usb, usb_rcvctrlpipe(hso_dev->usb, 0),
2461				       enabled ? 0x82 : 0x81, 0x40, 0, 0, NULL, 0,
2462				       USB_CTRL_SET_TIMEOUT);
2463	mutex_unlock(&hso_dev->mutex);
2464	return rv;
2465}
2466
2467static const struct rfkill_ops hso_rfkill_ops = {
2468	.set_block = hso_rfkill_set_block,
2469};
2470
2471/* Creates and sets up everything for rfkill */
2472static void hso_create_rfkill(struct hso_device *hso_dev,
2473			     struct usb_interface *interface)
2474{
2475	struct hso_net *hso_net = dev2net(hso_dev);
2476	struct device *dev = &hso_net->net->dev;
2477	char *rfkn;
2478
2479	rfkn = kzalloc(20, GFP_KERNEL);
2480	if (!rfkn)
2481		dev_err(dev, "%s - Out of memory\n", __func__);
2482
2483	snprintf(rfkn, 20, "hso-%d",
2484		 interface->altsetting->desc.bInterfaceNumber);
2485
2486	hso_net->rfkill = rfkill_alloc(rfkn,
2487				       &interface_to_usbdev(interface)->dev,
2488				       RFKILL_TYPE_WWAN,
2489				       &hso_rfkill_ops, hso_dev);
2490	if (!hso_net->rfkill) {
2491		dev_err(dev, "%s - Out of memory\n", __func__);
2492		kfree(rfkn);
2493		return;
2494	}
2495	if (rfkill_register(hso_net->rfkill) < 0) {
2496		rfkill_destroy(hso_net->rfkill);
2497		kfree(rfkn);
2498		hso_net->rfkill = NULL;
2499		dev_err(dev, "%s - Failed to register rfkill\n", __func__);
2500		return;
2501	}
2502}
2503
2504static struct device_type hso_type = {
2505	.name	= "wwan",
2506};
2507
2508/* Creates our network device */
2509static struct hso_device *hso_create_net_device(struct usb_interface *interface,
2510						int port_spec)
2511{
2512	int result, i;
2513	struct net_device *net;
2514	struct hso_net *hso_net;
2515	struct hso_device *hso_dev;
2516
2517	hso_dev = hso_create_device(interface, port_spec);
2518	if (!hso_dev)
2519		return NULL;
2520
2521	/* allocate our network device, then we can put in our private data */
2522	/* call hso_net_init to do the basic initialization */
2523	net = alloc_netdev(sizeof(struct hso_net), "hso%d", hso_net_init);
2524	if (!net) {
2525		dev_err(&interface->dev, "Unable to create ethernet device\n");
2526		goto exit;
2527	}
2528
2529	hso_net = netdev_priv(net);
2530
2531	hso_dev->port_data.dev_net = hso_net;
2532	hso_net->net = net;
2533	hso_net->parent = hso_dev;
2534
2535	hso_net->in_endp = hso_get_ep(interface, USB_ENDPOINT_XFER_BULK,
2536				      USB_DIR_IN);
2537	if (!hso_net->in_endp) {
2538		dev_err(&interface->dev, "Can't find BULK IN endpoint\n");
2539		goto exit;
2540	}
2541	hso_net->out_endp = hso_get_ep(interface, USB_ENDPOINT_XFER_BULK,
2542				       USB_DIR_OUT);
2543	if (!hso_net->out_endp) {
2544		dev_err(&interface->dev, "Can't find BULK OUT endpoint\n");
2545		goto exit;
2546	}
2547	SET_NETDEV_DEV(net, &interface->dev);
2548	SET_NETDEV_DEVTYPE(net, &hso_type);
2549
2550	/* registering our net device */
2551	result = register_netdev(net);
2552	if (result) {
2553		dev_err(&interface->dev, "Failed to register device\n");
2554		goto exit;
2555	}
2556
2557	/* start allocating */
2558	for (i = 0; i < MUX_BULK_RX_BUF_COUNT; i++) {
2559		hso_net->mux_bulk_rx_urb_pool[i] = usb_alloc_urb(0, GFP_KERNEL);
2560		if (!hso_net->mux_bulk_rx_urb_pool[i]) {
2561			dev_err(&interface->dev, "Could not allocate rx urb\n");
2562			goto exit;
2563		}
2564		hso_net->mux_bulk_rx_buf_pool[i] = kzalloc(MUX_BULK_RX_BUF_SIZE,
2565							   GFP_KERNEL);
2566		if (!hso_net->mux_bulk_rx_buf_pool[i])
 
2567			goto exit;
 
2568	}
2569	hso_net->mux_bulk_tx_urb = usb_alloc_urb(0, GFP_KERNEL);
2570	if (!hso_net->mux_bulk_tx_urb) {
2571		dev_err(&interface->dev, "Could not allocate tx urb\n");
2572		goto exit;
2573	}
2574	hso_net->mux_bulk_tx_buf = kzalloc(MUX_BULK_TX_BUF_SIZE, GFP_KERNEL);
2575	if (!hso_net->mux_bulk_tx_buf)
 
2576		goto exit;
 
2577
2578	add_net_device(hso_dev);
2579
2580	hso_log_port(hso_dev);
2581
2582	hso_create_rfkill(hso_dev, interface);
2583
2584	return hso_dev;
2585exit:
2586	hso_free_net_device(hso_dev);
2587	return NULL;
2588}
2589
2590static void hso_free_tiomget(struct hso_serial *serial)
2591{
2592	struct hso_tiocmget *tiocmget;
2593	if (!serial)
2594		return;
2595	tiocmget = serial->tiocmget;
2596	if (tiocmget) {
2597		usb_free_urb(tiocmget->urb);
2598		tiocmget->urb = NULL;
2599		serial->tiocmget = NULL;
2600		kfree(tiocmget);
2601	}
2602}
2603
2604/* Frees an AT channel ( goes for both mux and non-mux ) */
2605static void hso_free_serial_device(struct hso_device *hso_dev)
2606{
2607	struct hso_serial *serial = dev2ser(hso_dev);
2608
2609	if (!serial)
2610		return;
2611	set_serial_by_index(serial->minor, NULL);
2612
2613	hso_serial_common_free(serial);
2614
2615	if (serial->shared_int) {
2616		mutex_lock(&serial->shared_int->shared_int_lock);
2617		if (--serial->shared_int->ref_count == 0)
2618			hso_free_shared_int(serial->shared_int);
2619		else
2620			mutex_unlock(&serial->shared_int->shared_int_lock);
2621	}
2622	hso_free_tiomget(serial);
2623	kfree(serial);
2624	kfree(hso_dev);
2625}
2626
2627/* Creates a bulk AT channel */
2628static struct hso_device *hso_create_bulk_serial_device(
2629			struct usb_interface *interface, int port)
2630{
2631	struct hso_device *hso_dev;
2632	struct hso_serial *serial;
2633	int num_urbs;
2634	struct hso_tiocmget *tiocmget;
2635
2636	hso_dev = hso_create_device(interface, port);
2637	if (!hso_dev)
2638		return NULL;
2639
2640	serial = kzalloc(sizeof(*serial), GFP_KERNEL);
2641	if (!serial)
2642		goto exit;
2643
2644	serial->parent = hso_dev;
2645	hso_dev->port_data.dev_serial = serial;
2646
2647	if ((port & HSO_PORT_MASK) == HSO_PORT_MODEM) {
2648		num_urbs = 2;
2649		serial->tiocmget = kzalloc(sizeof(struct hso_tiocmget),
2650					   GFP_KERNEL);
2651		/* it isn't going to break our heart if serial->tiocmget
2652		 *  allocation fails don't bother checking this.
2653		 */
2654		if (serial->tiocmget) {
2655			tiocmget = serial->tiocmget;
2656			tiocmget->urb = usb_alloc_urb(0, GFP_KERNEL);
2657			if (tiocmget->urb) {
2658				mutex_init(&tiocmget->mutex);
2659				init_waitqueue_head(&tiocmget->waitq);
2660				tiocmget->endp = hso_get_ep(
2661					interface,
2662					USB_ENDPOINT_XFER_INT,
2663					USB_DIR_IN);
2664			} else
2665				hso_free_tiomget(serial);
2666		}
2667	}
2668	else
2669		num_urbs = 1;
2670
2671	if (hso_serial_common_create(serial, num_urbs, BULK_URB_RX_SIZE,
2672				     BULK_URB_TX_SIZE))
2673		goto exit;
2674
2675	serial->in_endp = hso_get_ep(interface, USB_ENDPOINT_XFER_BULK,
2676				     USB_DIR_IN);
2677	if (!serial->in_endp) {
2678		dev_err(&interface->dev, "Failed to find BULK IN ep\n");
2679		goto exit2;
2680	}
2681
2682	if (!
2683	    (serial->out_endp =
2684	     hso_get_ep(interface, USB_ENDPOINT_XFER_BULK, USB_DIR_OUT))) {
2685		dev_err(&interface->dev, "Failed to find BULK IN ep\n");
2686		goto exit2;
2687	}
2688
2689	serial->write_data = hso_std_serial_write_data;
2690
2691	/* and record this serial */
2692	set_serial_by_index(serial->minor, serial);
2693
2694	/* setup the proc dirs and files if needed */
2695	hso_log_port(hso_dev);
2696
2697	/* done, return it */
2698	return hso_dev;
2699
2700exit2:
2701	hso_serial_common_free(serial);
2702exit:
2703	hso_free_tiomget(serial);
2704	kfree(serial);
2705	kfree(hso_dev);
2706	return NULL;
2707}
2708
2709/* Creates a multiplexed AT channel */
2710static
2711struct hso_device *hso_create_mux_serial_device(struct usb_interface *interface,
2712						int port,
2713						struct hso_shared_int *mux)
2714{
2715	struct hso_device *hso_dev;
2716	struct hso_serial *serial;
2717	int port_spec;
2718
2719	port_spec = HSO_INTF_MUX;
2720	port_spec &= ~HSO_PORT_MASK;
2721
2722	port_spec |= hso_mux_to_port(port);
2723	if ((port_spec & HSO_PORT_MASK) == HSO_PORT_NO_PORT)
2724		return NULL;
2725
2726	hso_dev = hso_create_device(interface, port_spec);
2727	if (!hso_dev)
2728		return NULL;
2729
2730	serial = kzalloc(sizeof(*serial), GFP_KERNEL);
2731	if (!serial)
2732		goto exit;
2733
2734	hso_dev->port_data.dev_serial = serial;
2735	serial->parent = hso_dev;
2736
2737	if (hso_serial_common_create
2738	    (serial, 1, CTRL_URB_RX_SIZE, CTRL_URB_TX_SIZE))
2739		goto exit;
2740
2741	serial->tx_data_length--;
2742	serial->write_data = hso_mux_serial_write_data;
2743
2744	serial->shared_int = mux;
2745	mutex_lock(&serial->shared_int->shared_int_lock);
2746	serial->shared_int->ref_count++;
2747	mutex_unlock(&serial->shared_int->shared_int_lock);
2748
2749	/* and record this serial */
2750	set_serial_by_index(serial->minor, serial);
2751
2752	/* setup the proc dirs and files if needed */
2753	hso_log_port(hso_dev);
2754
2755	/* done, return it */
2756	return hso_dev;
2757
2758exit:
2759	if (serial) {
2760		tty_unregister_device(tty_drv, serial->minor);
2761		kfree(serial);
2762	}
2763	if (hso_dev)
2764		kfree(hso_dev);
2765	return NULL;
2766
2767}
2768
2769static void hso_free_shared_int(struct hso_shared_int *mux)
2770{
2771	usb_free_urb(mux->shared_intr_urb);
2772	kfree(mux->shared_intr_buf);
2773	mutex_unlock(&mux->shared_int_lock);
2774	kfree(mux);
2775}
2776
2777static
2778struct hso_shared_int *hso_create_shared_int(struct usb_interface *interface)
2779{
2780	struct hso_shared_int *mux = kzalloc(sizeof(*mux), GFP_KERNEL);
2781
2782	if (!mux)
2783		return NULL;
2784
2785	mux->intr_endp = hso_get_ep(interface, USB_ENDPOINT_XFER_INT,
2786				    USB_DIR_IN);
2787	if (!mux->intr_endp) {
2788		dev_err(&interface->dev, "Can't find INT IN endpoint\n");
2789		goto exit;
2790	}
2791
2792	mux->shared_intr_urb = usb_alloc_urb(0, GFP_KERNEL);
2793	if (!mux->shared_intr_urb) {
2794		dev_err(&interface->dev, "Could not allocate intr urb?\n");
2795		goto exit;
2796	}
2797	mux->shared_intr_buf =
2798		kzalloc(le16_to_cpu(mux->intr_endp->wMaxPacketSize),
2799			GFP_KERNEL);
2800	if (!mux->shared_intr_buf)
 
2801		goto exit;
 
2802
2803	mutex_init(&mux->shared_int_lock);
2804
2805	return mux;
2806
2807exit:
2808	kfree(mux->shared_intr_buf);
2809	usb_free_urb(mux->shared_intr_urb);
2810	kfree(mux);
2811	return NULL;
2812}
2813
2814/* Gets the port spec for a certain interface */
2815static int hso_get_config_data(struct usb_interface *interface)
2816{
2817	struct usb_device *usbdev = interface_to_usbdev(interface);
2818	u8 *config_data = kmalloc(17, GFP_KERNEL);
2819	u32 if_num = interface->altsetting->desc.bInterfaceNumber;
2820	s32 result;
2821
2822	if (!config_data)
2823		return -ENOMEM;
2824	if (usb_control_msg(usbdev, usb_rcvctrlpipe(usbdev, 0),
2825			    0x86, 0xC0, 0, 0, config_data, 17,
2826			    USB_CTRL_SET_TIMEOUT) != 0x11) {
2827		kfree(config_data);
2828		return -EIO;
2829	}
2830
2831	switch (config_data[if_num]) {
2832	case 0x0:
2833		result = 0;
2834		break;
2835	case 0x1:
2836		result = HSO_PORT_DIAG;
2837		break;
2838	case 0x2:
2839		result = HSO_PORT_GPS;
2840		break;
2841	case 0x3:
2842		result = HSO_PORT_GPS_CONTROL;
2843		break;
2844	case 0x4:
2845		result = HSO_PORT_APP;
2846		break;
2847	case 0x5:
2848		result = HSO_PORT_APP2;
2849		break;
2850	case 0x6:
2851		result = HSO_PORT_CONTROL;
2852		break;
2853	case 0x7:
2854		result = HSO_PORT_NETWORK;
2855		break;
2856	case 0x8:
2857		result = HSO_PORT_MODEM;
2858		break;
2859	case 0x9:
2860		result = HSO_PORT_MSD;
2861		break;
2862	case 0xa:
2863		result = HSO_PORT_PCSC;
2864		break;
2865	case 0xb:
2866		result = HSO_PORT_VOICE;
2867		break;
2868	default:
2869		result = 0;
2870	}
2871
2872	if (result)
2873		result |= HSO_INTF_BULK;
2874
2875	if (config_data[16] & 0x1)
2876		result |= HSO_INFO_CRC_BUG;
2877
2878	kfree(config_data);
2879	return result;
2880}
2881
2882/* called once for each interface upon device insertion */
2883static int hso_probe(struct usb_interface *interface,
2884		     const struct usb_device_id *id)
2885{
2886	int mux, i, if_num, port_spec;
2887	unsigned char port_mask;
2888	struct hso_device *hso_dev = NULL;
2889	struct hso_shared_int *shared_int;
2890	struct hso_device *tmp_dev = NULL;
2891
2892	if (interface->cur_altsetting->desc.bInterfaceClass != 0xFF) {
2893		dev_err(&interface->dev, "Not our interface\n");
2894		return -ENODEV;
2895	}
2896
2897	if_num = interface->altsetting->desc.bInterfaceNumber;
2898
2899	/* Get the interface/port specification from either driver_info or from
2900	 * the device itself */
2901	if (id->driver_info)
2902		port_spec = ((u32 *)(id->driver_info))[if_num];
2903	else
2904		port_spec = hso_get_config_data(interface);
2905
 
 
 
 
2906	/* Check if we need to switch to alt interfaces prior to port
2907	 * configuration */
2908	if (interface->num_altsetting > 1)
2909		usb_set_interface(interface_to_usbdev(interface), if_num, 1);
2910	interface->needs_remote_wakeup = 1;
2911
2912	/* Allocate new hso device(s) */
2913	switch (port_spec & HSO_INTF_MASK) {
2914	case HSO_INTF_MUX:
2915		if ((port_spec & HSO_PORT_MASK) == HSO_PORT_NETWORK) {
2916			/* Create the network device */
2917			if (!disable_net) {
2918				hso_dev = hso_create_net_device(interface,
2919								port_spec);
2920				if (!hso_dev)
2921					goto exit;
2922				tmp_dev = hso_dev;
2923			}
2924		}
2925
2926		if (hso_get_mux_ports(interface, &port_mask))
2927			/* TODO: de-allocate everything */
2928			goto exit;
2929
2930		shared_int = hso_create_shared_int(interface);
2931		if (!shared_int)
2932			goto exit;
2933
2934		for (i = 1, mux = 0; i < 0x100; i = i << 1, mux++) {
2935			if (port_mask & i) {
2936				hso_dev = hso_create_mux_serial_device(
2937						interface, i, shared_int);
2938				if (!hso_dev)
2939					goto exit;
2940			}
2941		}
2942
2943		if (tmp_dev)
2944			hso_dev = tmp_dev;
2945		break;
2946
2947	case HSO_INTF_BULK:
2948		/* It's a regular bulk interface */
2949		if ((port_spec & HSO_PORT_MASK) == HSO_PORT_NETWORK) {
2950			if (!disable_net)
2951				hso_dev =
2952				    hso_create_net_device(interface, port_spec);
2953		} else {
2954			hso_dev =
2955			    hso_create_bulk_serial_device(interface, port_spec);
2956		}
2957		if (!hso_dev)
2958			goto exit;
2959		break;
2960	default:
2961		goto exit;
2962	}
2963
2964	/* save our data pointer in this device */
2965	usb_set_intfdata(interface, hso_dev);
2966
2967	/* done */
2968	return 0;
2969exit:
2970	hso_free_interface(interface);
2971	return -ENODEV;
2972}
2973
2974/* device removed, cleaning up */
2975static void hso_disconnect(struct usb_interface *interface)
2976{
2977	hso_free_interface(interface);
2978
2979	/* remove reference of our private data */
2980	usb_set_intfdata(interface, NULL);
2981}
2982
2983static void async_get_intf(struct work_struct *data)
2984{
2985	struct hso_device *hso_dev =
2986	    container_of(data, struct hso_device, async_get_intf);
2987	usb_autopm_get_interface(hso_dev->interface);
2988}
2989
2990static void async_put_intf(struct work_struct *data)
2991{
2992	struct hso_device *hso_dev =
2993	    container_of(data, struct hso_device, async_put_intf);
2994	usb_autopm_put_interface(hso_dev->interface);
2995}
2996
2997static int hso_get_activity(struct hso_device *hso_dev)
2998{
2999	if (hso_dev->usb->state == USB_STATE_SUSPENDED) {
3000		if (!hso_dev->is_active) {
3001			hso_dev->is_active = 1;
3002			schedule_work(&hso_dev->async_get_intf);
3003		}
3004	}
3005
3006	if (hso_dev->usb->state != USB_STATE_CONFIGURED)
3007		return -EAGAIN;
3008
3009	usb_mark_last_busy(hso_dev->usb);
3010
3011	return 0;
3012}
3013
3014static int hso_put_activity(struct hso_device *hso_dev)
3015{
3016	if (hso_dev->usb->state != USB_STATE_SUSPENDED) {
3017		if (hso_dev->is_active) {
3018			hso_dev->is_active = 0;
3019			schedule_work(&hso_dev->async_put_intf);
3020			return -EAGAIN;
3021		}
3022	}
3023	hso_dev->is_active = 0;
3024	return 0;
3025}
3026
3027/* called by kernel when we need to suspend device */
3028static int hso_suspend(struct usb_interface *iface, pm_message_t message)
3029{
3030	int i, result;
3031
3032	/* Stop all serial ports */
3033	for (i = 0; i < HSO_SERIAL_TTY_MINORS; i++) {
3034		if (serial_table[i] && (serial_table[i]->interface == iface)) {
3035			result = hso_stop_serial_device(serial_table[i]);
3036			if (result)
3037				goto out;
3038		}
3039	}
3040
3041	/* Stop all network ports */
3042	for (i = 0; i < HSO_MAX_NET_DEVICES; i++) {
3043		if (network_table[i] &&
3044		    (network_table[i]->interface == iface)) {
3045			result = hso_stop_net_device(network_table[i]);
3046			if (result)
3047				goto out;
3048		}
3049	}
3050
3051out:
3052	return 0;
3053}
3054
3055/* called by kernel when we need to resume device */
3056static int hso_resume(struct usb_interface *iface)
3057{
3058	int i, result = 0;
3059	struct hso_net *hso_net;
3060
3061	/* Start all serial ports */
3062	for (i = 0; i < HSO_SERIAL_TTY_MINORS; i++) {
3063		if (serial_table[i] && (serial_table[i]->interface == iface)) {
3064			if (dev2ser(serial_table[i])->port.count) {
3065				result =
3066				    hso_start_serial_device(serial_table[i], GFP_NOIO);
3067				hso_kick_transmit(dev2ser(serial_table[i]));
3068				if (result)
3069					goto out;
3070			}
3071		}
3072	}
3073
3074	/* Start all network ports */
3075	for (i = 0; i < HSO_MAX_NET_DEVICES; i++) {
3076		if (network_table[i] &&
3077		    (network_table[i]->interface == iface)) {
3078			hso_net = dev2net(network_table[i]);
3079			if (hso_net->flags & IFF_UP) {
3080				/* First transmit any lingering data,
3081				   then restart the device. */
3082				if (hso_net->skb_tx_buf) {
3083					dev_dbg(&iface->dev,
3084						"Transmitting"
3085						" lingering data\n");
3086					hso_net_start_xmit(hso_net->skb_tx_buf,
3087							   hso_net->net);
3088					hso_net->skb_tx_buf = NULL;
3089				}
3090				result = hso_start_net_device(network_table[i]);
3091				if (result)
3092					goto out;
3093			}
3094		}
3095	}
3096
3097out:
3098	return result;
3099}
3100
3101static void reset_device(struct work_struct *data)
3102{
3103	struct hso_device *hso_dev =
3104	    container_of(data, struct hso_device, reset_device);
3105	struct usb_device *usb = hso_dev->usb;
3106	int result;
3107
3108	if (hso_dev->usb_gone) {
3109		D1("No reset during disconnect\n");
3110	} else {
3111		result = usb_lock_device_for_reset(usb, hso_dev->interface);
3112		if (result < 0)
3113			D1("unable to lock device for reset: %d\n", result);
3114		else {
3115			usb_reset_device(usb);
3116			usb_unlock_device(usb);
3117		}
3118	}
3119}
3120
3121static void hso_serial_ref_free(struct kref *ref)
3122{
3123	struct hso_device *hso_dev = container_of(ref, struct hso_device, ref);
3124
3125	hso_free_serial_device(hso_dev);
3126}
3127
3128static void hso_free_interface(struct usb_interface *interface)
3129{
3130	struct hso_serial *hso_dev;
 
3131	int i;
3132
3133	for (i = 0; i < HSO_SERIAL_TTY_MINORS; i++) {
3134		if (serial_table[i] &&
3135		    (serial_table[i]->interface == interface)) {
3136			hso_dev = dev2ser(serial_table[i]);
3137			tty_port_tty_hangup(&hso_dev->port, false);
 
 
 
 
3138			mutex_lock(&hso_dev->parent->mutex);
 
3139			hso_dev->parent->usb_gone = 1;
3140			mutex_unlock(&hso_dev->parent->mutex);
3141			kref_put(&serial_table[i]->ref, hso_serial_ref_free);
3142		}
3143	}
3144
3145	for (i = 0; i < HSO_MAX_NET_DEVICES; i++) {
3146		if (network_table[i] &&
3147		    (network_table[i]->interface == interface)) {
3148			struct rfkill *rfk = dev2net(network_table[i])->rfkill;
3149			/* hso_stop_net_device doesn't stop the net queue since
3150			 * traffic needs to start it again when suspended */
3151			netif_stop_queue(dev2net(network_table[i])->net);
3152			hso_stop_net_device(network_table[i]);
3153			cancel_work_sync(&network_table[i]->async_put_intf);
3154			cancel_work_sync(&network_table[i]->async_get_intf);
3155			if (rfk) {
3156				rfkill_unregister(rfk);
3157				rfkill_destroy(rfk);
3158			}
3159			hso_free_net_device(network_table[i]);
3160		}
3161	}
3162}
3163
3164/* Helper functions */
3165
3166/* Get the endpoint ! */
3167static struct usb_endpoint_descriptor *hso_get_ep(struct usb_interface *intf,
3168						  int type, int dir)
3169{
3170	int i;
3171	struct usb_host_interface *iface = intf->cur_altsetting;
3172	struct usb_endpoint_descriptor *endp;
3173
3174	for (i = 0; i < iface->desc.bNumEndpoints; i++) {
3175		endp = &iface->endpoint[i].desc;
3176		if (((endp->bEndpointAddress & USB_ENDPOINT_DIR_MASK) == dir) &&
3177		    (usb_endpoint_type(endp) == type))
3178			return endp;
3179	}
3180
3181	return NULL;
3182}
3183
3184/* Get the byte that describes which ports are enabled */
3185static int hso_get_mux_ports(struct usb_interface *intf, unsigned char *ports)
3186{
3187	int i;
3188	struct usb_host_interface *iface = intf->cur_altsetting;
3189
3190	if (iface->extralen == 3) {
3191		*ports = iface->extra[2];
3192		return 0;
3193	}
3194
3195	for (i = 0; i < iface->desc.bNumEndpoints; i++) {
3196		if (iface->endpoint[i].extralen == 3) {
3197			*ports = iface->endpoint[i].extra[2];
3198			return 0;
3199		}
3200	}
3201
3202	return -1;
3203}
3204
3205/* interrupt urb needs to be submitted, used for serial read of muxed port */
3206static int hso_mux_submit_intr_urb(struct hso_shared_int *shared_int,
3207				   struct usb_device *usb, gfp_t gfp)
3208{
3209	int result;
3210
3211	usb_fill_int_urb(shared_int->shared_intr_urb, usb,
3212			 usb_rcvintpipe(usb,
3213				shared_int->intr_endp->bEndpointAddress & 0x7F),
3214			 shared_int->shared_intr_buf,
3215			 1,
3216			 intr_callback, shared_int,
3217			 shared_int->intr_endp->bInterval);
3218
3219	result = usb_submit_urb(shared_int->shared_intr_urb, gfp);
3220	if (result)
3221		dev_warn(&usb->dev, "%s failed mux_intr_urb %d\n", __func__,
3222			result);
3223
3224	return result;
3225}
3226
3227/* operations setup of the serial interface */
3228static const struct tty_operations hso_serial_ops = {
3229	.open = hso_serial_open,
3230	.close = hso_serial_close,
3231	.write = hso_serial_write,
3232	.write_room = hso_serial_write_room,
3233	.ioctl = hso_serial_ioctl,
3234	.set_termios = hso_serial_set_termios,
3235	.chars_in_buffer = hso_serial_chars_in_buffer,
3236	.tiocmget = hso_serial_tiocmget,
3237	.tiocmset = hso_serial_tiocmset,
3238	.get_icount = hso_get_count,
3239	.unthrottle = hso_unthrottle
3240};
3241
3242static struct usb_driver hso_driver = {
3243	.name = driver_name,
3244	.probe = hso_probe,
3245	.disconnect = hso_disconnect,
3246	.id_table = hso_ids,
3247	.suspend = hso_suspend,
3248	.resume = hso_resume,
3249	.reset_resume = hso_resume,
3250	.supports_autosuspend = 1,
3251	.disable_hub_initiated_lpm = 1,
3252};
3253
3254static int __init hso_init(void)
3255{
3256	int i;
3257	int result;
3258
3259	/* put it in the log */
3260	printk(KERN_INFO "hso: %s\n", version);
3261
3262	/* Initialise the serial table semaphore and table */
3263	spin_lock_init(&serial_table_lock);
3264	for (i = 0; i < HSO_SERIAL_TTY_MINORS; i++)
3265		serial_table[i] = NULL;
3266
3267	/* allocate our driver using the proper amount of supported minors */
3268	tty_drv = alloc_tty_driver(HSO_SERIAL_TTY_MINORS);
3269	if (!tty_drv)
3270		return -ENOMEM;
3271
3272	/* fill in all needed values */
 
 
3273	tty_drv->driver_name = driver_name;
3274	tty_drv->name = tty_filename;
3275
3276	/* if major number is provided as parameter, use that one */
3277	if (tty_major)
3278		tty_drv->major = tty_major;
3279
3280	tty_drv->minor_start = 0;
 
3281	tty_drv->type = TTY_DRIVER_TYPE_SERIAL;
3282	tty_drv->subtype = SERIAL_TYPE_NORMAL;
3283	tty_drv->flags = TTY_DRIVER_REAL_RAW | TTY_DRIVER_DYNAMIC_DEV;
3284	tty_drv->init_termios = tty_std_termios;
3285	hso_init_termios(&tty_drv->init_termios);
3286	tty_set_operations(tty_drv, &hso_serial_ops);
3287
3288	/* register the tty driver */
3289	result = tty_register_driver(tty_drv);
3290	if (result) {
3291		printk(KERN_ERR "%s - tty_register_driver failed(%d)\n",
3292			__func__, result);
3293		goto err_free_tty;
3294	}
3295
3296	/* register this module as an usb driver */
3297	result = usb_register(&hso_driver);
3298	if (result) {
3299		printk(KERN_ERR "Could not register hso driver? error: %d\n",
3300			result);
3301		goto err_unreg_tty;
 
 
3302	}
3303
3304	/* done */
3305	return 0;
3306err_unreg_tty:
3307	tty_unregister_driver(tty_drv);
3308err_free_tty:
3309	put_tty_driver(tty_drv);
3310	return result;
3311}
3312
3313static void __exit hso_exit(void)
3314{
3315	printk(KERN_INFO "hso: unloaded\n");
3316
3317	tty_unregister_driver(tty_drv);
3318	put_tty_driver(tty_drv);
3319	/* deregister the usb driver */
3320	usb_deregister(&hso_driver);
3321}
3322
3323/* Module definitions */
3324module_init(hso_init);
3325module_exit(hso_exit);
3326
3327MODULE_AUTHOR(MOD_AUTHOR);
3328MODULE_DESCRIPTION(MOD_DESCRIPTION);
3329MODULE_LICENSE(MOD_LICENSE);
3330
3331/* change the debug level (eg: insmod hso.ko debug=0x04) */
3332MODULE_PARM_DESC(debug, "Level of debug [0x01 | 0x02 | 0x04 | 0x08 | 0x10]");
3333module_param(debug, int, S_IRUGO | S_IWUSR);
3334
3335/* set the major tty number (eg: insmod hso.ko tty_major=245) */
3336MODULE_PARM_DESC(tty_major, "Set the major tty number");
3337module_param(tty_major, int, S_IRUGO | S_IWUSR);
3338
3339/* disable network interface (eg: insmod hso.ko disable_net=1) */
3340MODULE_PARM_DESC(disable_net, "Disable the network interface");
3341module_param(disable_net, int, S_IRUGO | S_IWUSR);