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1 /*
2 * Digi AccelePort USB-4 and USB-2 Serial Converters
3 *
4 * Copyright 2000 by Digi International
5 *
6 * This program is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License as published by
8 * the Free Software Foundation; either version 2 of the License, or
9 * (at your option) any later version.
10 *
11 * Shamelessly based on Brian Warner's keyspan_pda.c and Greg Kroah-Hartman's
12 * usb-serial driver.
13 *
14 * Peter Berger (pberger@brimson.com)
15 * Al Borchers (borchers@steinerpoint.com)
16 *
17 * (12/03/2001) gkh
18 * switched to using port->open_count instead of private version.
19 * Removed port->active
20 *
21 * (04/08/2001) gb
22 * Identify version on module load.
23 *
24 * (11/01/2000) Adam J. Richter
25 * usb_device_id table support
26 *
27 * (11/01/2000) pberger and borchers
28 * -- Turned off the USB_DISABLE_SPD flag for write bulk urbs--it caused
29 * USB 4 ports to hang on startup.
30 * -- Serialized access to write urbs by adding the dp_write_urb_in_use
31 * flag; otherwise, the driver caused SMP system hangs. Watching the
32 * urb status is not sufficient.
33 *
34 * (10/05/2000) gkh
35 * -- Fixed bug with urb->dev not being set properly, now that the usb
36 * core needs it.
37 *
38 * (8/8/2000) pberger and borchers
39 * -- Fixed close so that
40 * - it can timeout while waiting for transmit idle, if needed;
41 * - it ignores interrupts when flushing the port, turning
42 * of modem signalling, and so on;
43 * - it waits for the flush to really complete before returning.
44 * -- Read_bulk_callback and write_bulk_callback check for a closed
45 * port before using the tty struct or writing to the port.
46 * -- The two changes above fix the oops caused by interrupted closes.
47 * -- Added interruptible args to write_oob_command and set_modem_signals
48 * and added a timeout arg to transmit_idle; needed for fixes to
49 * close.
50 * -- Added code for rx_throttle and rx_unthrottle so that input flow
51 * control works.
52 * -- Added code to set overrun, parity, framing, and break errors
53 * (untested).
54 * -- Set USB_DISABLE_SPD flag for write bulk urbs, so no 0 length
55 * bulk writes are done. These hung the Digi USB device. The
56 * 0 length bulk writes were a new feature of usb-uhci added in
57 * the 2.4.0-test6 kernels.
58 * -- Fixed mod inc race in open; do mod inc before sleeping to wait
59 * for a close to finish.
60 *
61 * (7/31/2000) pberger
62 * -- Fixed bugs with hardware handshaking:
63 * - Added code to set/clear tty->hw_stopped in digi_read_oob_callback()
64 * and digi_set_termios()
65 * -- Added code in digi_set_termios() to
66 * - add conditional in code handling transition from B0 to only
67 * set RTS if RTS/CTS flow control is either not in use or if
68 * the port is not currently throttled.
69 * - handle turning off CRTSCTS.
70 *
71 * (7/30/2000) borchers
72 * -- Added support for more than one Digi USB device by moving
73 * globals to a private structure in the pointed to from the
74 * usb_serial structure.
75 * -- Moved the modem change and transmit idle wait queues into
76 * the port private structure, so each port has its own queue
77 * rather than sharing global queues.
78 * -- Added support for break signals.
79 *
80 * (7/25/2000) pberger
81 * -- Added USB-2 support. Note: the USB-2 supports 3 devices: two
82 * serial and a parallel port. The parallel port is implemented
83 * as a serial-to-parallel converter. That is, the driver actually
84 * presents all three USB-2 interfaces as serial ports, but the third
85 * one physically connects to a parallel device. Thus, for example,
86 * one could plug a parallel printer into the USB-2's third port,
87 * but from the kernel's (and userland's) point of view what's
88 * actually out there is a serial device.
89 *
90 * (7/15/2000) borchers
91 * -- Fixed race in open when a close is in progress.
92 * -- Keep count of opens and dec the module use count for each
93 * outstanding open when shutdown is called (on disconnect).
94 * -- Fixed sanity checks in read_bulk_callback and write_bulk_callback
95 * so pointers are checked before use.
96 * -- Split read bulk callback into in band and out of band
97 * callbacks, and no longer restart read chains if there is
98 * a status error or a sanity error. This fixed the seg
99 * faults and other errors we used to get on disconnect.
100 * -- Port->active is once again a flag as usb-serial intended it
101 * to be, not a count. Since it was only a char it would
102 * have been limited to 256 simultaneous opens. Now the open
103 * count is kept in the port private structure in dp_open_count.
104 * -- Added code for modularization of the digi_acceleport driver.
105 *
106 * (6/27/2000) pberger and borchers
107 * -- Zeroed out sync field in the wakeup_task before first use;
108 * otherwise the uninitialized value might prevent the task from
109 * being scheduled.
110 * -- Initialized ret value to 0 in write_bulk_callback, otherwise
111 * the uninitialized value could cause a spurious debugging message.
112 *
113 * (6/22/2000) pberger and borchers
114 * -- Made cond_wait_... inline--apparently on SPARC the flags arg
115 * to spin_lock_irqsave cannot be passed to another function
116 * to call spin_unlock_irqrestore. Thanks to Pauline Middelink.
117 * -- In digi_set_modem_signals the inner nested spin locks use just
118 * spin_lock() rather than spin_lock_irqsave(). The old code
119 * mistakenly left interrupts off. Thanks to Pauline Middelink.
120 * -- copy_from_user (which can sleep) is no longer called while a
121 * spinlock is held. We copy to a local buffer before getting
122 * the spinlock--don't like the extra copy but the code is simpler.
123 * -- Printk and dbg are no longer called while a spin lock is held.
124 *
125 * (6/4/2000) pberger and borchers
126 * -- Replaced separate calls to spin_unlock_irqrestore and
127 * interruptible_sleep_on_timeout with a new function
128 * cond_wait_interruptible_timeout_irqrestore. This eliminates
129 * the race condition where the wake up could happen after
130 * the unlock and before the sleep.
131 * -- Close now waits for output to drain.
132 * -- Open waits until any close in progress is finished.
133 * -- All out of band responses are now processed, not just the
134 * first in a USB packet.
135 * -- Fixed a bug that prevented the driver from working when the
136 * first Digi port was not the first USB serial port--the driver
137 * was mistakenly using the external USB serial port number to
138 * try to index into its internal ports.
139 * -- Fixed an SMP bug -- write_bulk_callback is called directly from
140 * an interrupt, so spin_lock_irqsave/spin_unlock_irqrestore are
141 * needed for locks outside write_bulk_callback that are also
142 * acquired by write_bulk_callback to prevent deadlocks.
143 * -- Fixed support for select() by making digi_chars_in_buffer()
144 * return 256 when -EINPROGRESS is set, as the line discipline
145 * code in n_tty.c expects.
146 * -- Fixed an include file ordering problem that prevented debugging
147 * messages from working.
148 * -- Fixed an intermittent timeout problem that caused writes to
149 * sometimes get stuck on some machines on some kernels. It turns
150 * out in these circumstances write_chan() (in n_tty.c) was
151 * asleep waiting for our wakeup call. Even though we call
152 * wake_up_interruptible() in digi_write_bulk_callback(), there is
153 * a race condition that could cause the wakeup to fail: if our
154 * wake_up_interruptible() call occurs between the time that our
155 * driver write routine finishes and write_chan() sets current->state
156 * to TASK_INTERRUPTIBLE, the effect of our wakeup setting the state
157 * to TASK_RUNNING will be lost and write_chan's subsequent call to
158 * schedule() will never return (unless it catches a signal).
159 * This race condition occurs because write_bulk_callback() (and thus
160 * the wakeup) are called asynchronously from an interrupt, rather than
161 * from the scheduler. We can avoid the race by calling the wakeup
162 * from the scheduler queue and that's our fix: Now, at the end of
163 * write_bulk_callback() we queue up a wakeup call on the scheduler
164 * task queue. We still also invoke the wakeup directly since that
165 * squeezes a bit more performance out of the driver, and any lost
166 * race conditions will get cleaned up at the next scheduler run.
167 *
168 * NOTE: The problem also goes away if you comment out
169 * the two code lines in write_chan() where current->state
170 * is set to TASK_RUNNING just before calling driver.write() and to
171 * TASK_INTERRUPTIBLE immediately afterwards. This is why the
172 * problem did not show up with the 2.2 kernels -- they do not
173 * include that code.
174 *
175 * (5/16/2000) pberger and borchers
176 * -- Added timeouts to sleeps, to defend against lost wake ups.
177 * -- Handle transition to/from B0 baud rate in digi_set_termios.
178 *
179 * (5/13/2000) pberger and borchers
180 * -- All commands now sent on out of band port, using
181 * digi_write_oob_command.
182 * -- Get modem control signals whenever they change, support TIOCMGET/
183 * SET/BIS/BIC ioctls.
184 * -- digi_set_termios now supports parity, word size, stop bits, and
185 * receive enable.
186 * -- Cleaned up open and close, use digi_set_termios and
187 * digi_write_oob_command to set port parameters.
188 * -- Added digi_startup_device to start read chains on all ports.
189 * -- Write buffer is only used when count==1, to be sure put_char can
190 * write a char (unless the buffer is full).
191 *
192 * (5/10/2000) pberger and borchers
193 * -- Added MOD_INC_USE_COUNT/MOD_DEC_USE_COUNT calls on open/close.
194 * -- Fixed problem where the first incoming character is lost on
195 * port opens after the first close on that port. Now we keep
196 * the read_urb chain open until shutdown.
197 * -- Added more port conditioning calls in digi_open and digi_close.
198 * -- Convert port->active to a use count so that we can deal with multiple
199 * opens and closes properly.
200 * -- Fixed some problems with the locking code.
201 *
202 * (5/3/2000) pberger and borchers
203 * -- First alpha version of the driver--many known limitations and bugs.
204 *
205 *
206 * Locking and SMP
207 *
208 * - Each port, including the out-of-band port, has a lock used to
209 * serialize all access to the port's private structure.
210 * - The port lock is also used to serialize all writes and access to
211 * the port's URB.
212 * - The port lock is also used for the port write_wait condition
213 * variable. Holding the port lock will prevent a wake up on the
214 * port's write_wait; this can be used with cond_wait_... to be sure
215 * the wake up is not lost in a race when dropping the lock and
216 * sleeping waiting for the wakeup.
217 * - digi_write() does not sleep, since it is sometimes called on
218 * interrupt time.
219 * - digi_write_bulk_callback() and digi_read_bulk_callback() are
220 * called directly from interrupts. Hence spin_lock_irqsave()
221 * and spin_unlock_irqrestore() are used in the rest of the code
222 * for any locks they acquire.
223 * - digi_write_bulk_callback() gets the port lock before waking up
224 * processes sleeping on the port write_wait. It also schedules
225 * wake ups so they happen from the scheduler, because the tty
226 * system can miss wake ups from interrupts.
227 * - All sleeps use a timeout of DIGI_RETRY_TIMEOUT before looping to
228 * recheck the condition they are sleeping on. This is defensive,
229 * in case a wake up is lost.
230 * - Following Documentation/DocBook/kernel-locking.pdf no spin locks
231 * are held when calling copy_to/from_user or printk.
232 *
233 * $Id: digi_acceleport.c,v 1.80.1.2 2000/11/02 05:45:08 root Exp $
234 */
235
236 #include <linux/kernel.h>
237 #include <linux/errno.h>
238 #include <linux/init.h>
239 #include <linux/slab.h>
240 #include <linux/tty.h>
241 #include <linux/tty_driver.h>
242 #include <linux/tty_flip.h>
243 #include <linux/module.h>
244 #include <linux/spinlock.h>
245 #include <linux/workqueue.h>
246 #include <asm/uaccess.h>
247 #include <linux/usb.h>
248 #include <linux/wait.h>
249 #include <linux/usb/serial.h>
250
251 /* Defines */
252
253 /*
254 * Version Information
255 */
256 #define DRIVER_VERSION "v1.80.1.2"
257 #define DRIVER_AUTHOR "Peter Berger <pberger@brimson.com>, Al Borchers <borchers@steinerpoint.com>"
258 #define DRIVER_DESC "Digi AccelePort USB-2/USB-4 Serial Converter driver"
259
260 /* port output buffer length -- must be <= transfer buffer length - 2 */
261 /* so we can be sure to send the full buffer in one urb */
262 #define DIGI_OUT_BUF_SIZE 8
263
264 /* port input buffer length -- must be >= transfer buffer length - 3 */
265 /* so we can be sure to hold at least one full buffer from one urb */
266 #define DIGI_IN_BUF_SIZE 64
267
268 /* retry timeout while sleeping */
269 #define DIGI_RETRY_TIMEOUT (HZ/10)
270
271 /* timeout while waiting for tty output to drain in close */
272 /* this delay is used twice in close, so the total delay could */
273 /* be twice this value */
274 #define DIGI_CLOSE_TIMEOUT (5*HZ)
275
276
277 /* AccelePort USB Defines */
278
279 /* ids */
280 #define DIGI_VENDOR_ID 0x05c5
281 #define DIGI_2_ID 0x0002 /* USB-2 */
282 #define DIGI_4_ID 0x0004 /* USB-4 */
283
284 /* commands
285 * "INB": can be used on the in-band endpoint
286 * "OOB": can be used on the out-of-band endpoint
287 */
288 #define DIGI_CMD_SET_BAUD_RATE 0 /* INB, OOB */
289 #define DIGI_CMD_SET_WORD_SIZE 1 /* INB, OOB */
290 #define DIGI_CMD_SET_PARITY 2 /* INB, OOB */
291 #define DIGI_CMD_SET_STOP_BITS 3 /* INB, OOB */
292 #define DIGI_CMD_SET_INPUT_FLOW_CONTROL 4 /* INB, OOB */
293 #define DIGI_CMD_SET_OUTPUT_FLOW_CONTROL 5 /* INB, OOB */
294 #define DIGI_CMD_SET_DTR_SIGNAL 6 /* INB, OOB */
295 #define DIGI_CMD_SET_RTS_SIGNAL 7 /* INB, OOB */
296 #define DIGI_CMD_READ_INPUT_SIGNALS 8 /* OOB */
297 #define DIGI_CMD_IFLUSH_FIFO 9 /* OOB */
298 #define DIGI_CMD_RECEIVE_ENABLE 10 /* INB, OOB */
299 #define DIGI_CMD_BREAK_CONTROL 11 /* INB, OOB */
300 #define DIGI_CMD_LOCAL_LOOPBACK 12 /* INB, OOB */
301 #define DIGI_CMD_TRANSMIT_IDLE 13 /* INB, OOB */
302 #define DIGI_CMD_READ_UART_REGISTER 14 /* OOB */
303 #define DIGI_CMD_WRITE_UART_REGISTER 15 /* INB, OOB */
304 #define DIGI_CMD_AND_UART_REGISTER 16 /* INB, OOB */
305 #define DIGI_CMD_OR_UART_REGISTER 17 /* INB, OOB */
306 #define DIGI_CMD_SEND_DATA 18 /* INB */
307 #define DIGI_CMD_RECEIVE_DATA 19 /* INB */
308 #define DIGI_CMD_RECEIVE_DISABLE 20 /* INB */
309 #define DIGI_CMD_GET_PORT_TYPE 21 /* OOB */
310
311 /* baud rates */
312 #define DIGI_BAUD_50 0
313 #define DIGI_BAUD_75 1
314 #define DIGI_BAUD_110 2
315 #define DIGI_BAUD_150 3
316 #define DIGI_BAUD_200 4
317 #define DIGI_BAUD_300 5
318 #define DIGI_BAUD_600 6
319 #define DIGI_BAUD_1200 7
320 #define DIGI_BAUD_1800 8
321 #define DIGI_BAUD_2400 9
322 #define DIGI_BAUD_4800 10
323 #define DIGI_BAUD_7200 11
324 #define DIGI_BAUD_9600 12
325 #define DIGI_BAUD_14400 13
326 #define DIGI_BAUD_19200 14
327 #define DIGI_BAUD_28800 15
328 #define DIGI_BAUD_38400 16
329 #define DIGI_BAUD_57600 17
330 #define DIGI_BAUD_76800 18
331 #define DIGI_BAUD_115200 19
332 #define DIGI_BAUD_153600 20
333 #define DIGI_BAUD_230400 21
334 #define DIGI_BAUD_460800 22
335
336 /* arguments */
337 #define DIGI_WORD_SIZE_5 0
338 #define DIGI_WORD_SIZE_6 1
339 #define DIGI_WORD_SIZE_7 2
340 #define DIGI_WORD_SIZE_8 3
341
342 #define DIGI_PARITY_NONE 0
343 #define DIGI_PARITY_ODD 1
344 #define DIGI_PARITY_EVEN 2
345 #define DIGI_PARITY_MARK 3
346 #define DIGI_PARITY_SPACE 4
347
348 #define DIGI_STOP_BITS_1 0
349 #define DIGI_STOP_BITS_2 1
350
351 #define DIGI_INPUT_FLOW_CONTROL_XON_XOFF 1
352 #define DIGI_INPUT_FLOW_CONTROL_RTS 2
353 #define DIGI_INPUT_FLOW_CONTROL_DTR 4
354
355 #define DIGI_OUTPUT_FLOW_CONTROL_XON_XOFF 1
356 #define DIGI_OUTPUT_FLOW_CONTROL_CTS 2
357 #define DIGI_OUTPUT_FLOW_CONTROL_DSR 4
358
359 #define DIGI_DTR_INACTIVE 0
360 #define DIGI_DTR_ACTIVE 1
361 #define DIGI_DTR_INPUT_FLOW_CONTROL 2
362
363 #define DIGI_RTS_INACTIVE 0
364 #define DIGI_RTS_ACTIVE 1
365 #define DIGI_RTS_INPUT_FLOW_CONTROL 2
366 #define DIGI_RTS_TOGGLE 3
367
368 #define DIGI_FLUSH_TX 1
369 #define DIGI_FLUSH_RX 2
370 #define DIGI_RESUME_TX 4 /* clears xoff condition */
371
372 #define DIGI_TRANSMIT_NOT_IDLE 0
373 #define DIGI_TRANSMIT_IDLE 1
374
375 #define DIGI_DISABLE 0
376 #define DIGI_ENABLE 1
377
378 #define DIGI_DEASSERT 0
379 #define DIGI_ASSERT 1
380
381 /* in band status codes */
382 #define DIGI_OVERRUN_ERROR 4
383 #define DIGI_PARITY_ERROR 8
384 #define DIGI_FRAMING_ERROR 16
385 #define DIGI_BREAK_ERROR 32
386
387 /* out of band status */
388 #define DIGI_NO_ERROR 0
389 #define DIGI_BAD_FIRST_PARAMETER 1
390 #define DIGI_BAD_SECOND_PARAMETER 2
391 #define DIGI_INVALID_LINE 3
392 #define DIGI_INVALID_OPCODE 4
393
394 /* input signals */
395 #define DIGI_READ_INPUT_SIGNALS_SLOT 1
396 #define DIGI_READ_INPUT_SIGNALS_ERR 2
397 #define DIGI_READ_INPUT_SIGNALS_BUSY 4
398 #define DIGI_READ_INPUT_SIGNALS_PE 8
399 #define DIGI_READ_INPUT_SIGNALS_CTS 16
400 #define DIGI_READ_INPUT_SIGNALS_DSR 32
401 #define DIGI_READ_INPUT_SIGNALS_RI 64
402 #define DIGI_READ_INPUT_SIGNALS_DCD 128
403
404
405 /* Structures */
406
407 struct digi_serial {
408 spinlock_t ds_serial_lock;
409 struct usb_serial_port *ds_oob_port; /* out-of-band port */
410 int ds_oob_port_num; /* index of out-of-band port */
411 int ds_device_started;
412 };
413
414 struct digi_port {
415 spinlock_t dp_port_lock;
416 int dp_port_num;
417 int dp_out_buf_len;
418 unsigned char dp_out_buf[DIGI_OUT_BUF_SIZE];
419 int dp_write_urb_in_use;
420 unsigned int dp_modem_signals;
421 wait_queue_head_t dp_modem_change_wait;
422 int dp_transmit_idle;
423 wait_queue_head_t dp_transmit_idle_wait;
424 int dp_throttled;
425 int dp_throttle_restart;
426 wait_queue_head_t dp_flush_wait;
427 int dp_in_close; /* close in progress */
428 wait_queue_head_t dp_close_wait; /* wait queue for close */
429 struct work_struct dp_wakeup_work;
430 struct usb_serial_port *dp_port;
431 };
432
433
434 /* Local Function Declarations */
435
436 static void digi_wakeup_write( struct usb_serial_port *port );
437 static void digi_wakeup_write_lock(struct work_struct *work);
438 static int digi_write_oob_command( struct usb_serial_port *port,
439 unsigned char *buf, int count, int interruptible );
440 static int digi_write_inb_command( struct usb_serial_port *port,
441 unsigned char *buf, int count, unsigned long timeout );
442 static int digi_set_modem_signals( struct usb_serial_port *port,
443 unsigned int modem_signals, int interruptible );
444 static int digi_transmit_idle( struct usb_serial_port *port,
445 unsigned long timeout );
446 static void digi_rx_throttle (struct usb_serial_port *port);
447 static void digi_rx_unthrottle (struct usb_serial_port *port);
448 static void digi_set_termios( struct usb_serial_port *port,
449 struct ktermios *old_termios );
450 static void digi_break_ctl( struct usb_serial_port *port, int break_state );
451 static int digi_ioctl( struct usb_serial_port *port, struct file *file,
452 unsigned int cmd, unsigned long arg );
453 static int digi_tiocmget( struct usb_serial_port *port, struct file *file );
454 static int digi_tiocmset( struct usb_serial_port *port, struct file *file,
455 unsigned int set, unsigned int clear );
456 static int digi_write( struct usb_serial_port *port, const unsigned char *buf, int count );
457 static void digi_write_bulk_callback( struct urb *urb );
458 static int digi_write_room( struct usb_serial_port *port );
459 static int digi_chars_in_buffer( struct usb_serial_port *port );
460 static int digi_open( struct usb_serial_port *port, struct file *filp );
461 static void digi_close( struct usb_serial_port *port, struct file *filp );
462 static int digi_startup_device( struct usb_serial *serial );
463 static int digi_startup( struct usb_serial *serial );
464 static void digi_shutdown( struct usb_serial *serial );
465 static void digi_read_bulk_callback( struct urb *urb );
466 static int digi_read_inb_callback( struct urb *urb );
467 static int digi_read_oob_callback( struct urb *urb );
468
469
470 /* Statics */
471
472 static int debug;
473
474 static struct usb_device_id id_table_combined [] = {
475 { USB_DEVICE(DIGI_VENDOR_ID, DIGI_2_ID) },
476 { USB_DEVICE(DIGI_VENDOR_ID, DIGI_4_ID) },
477 { } /* Terminating entry */
478 };
479
480 static struct usb_device_id id_table_2 [] = {
481 { USB_DEVICE(DIGI_VENDOR_ID, DIGI_2_ID) },
482 { } /* Terminating entry */
483 };
484
485 static struct usb_device_id id_table_4 [] = {
486 { USB_DEVICE(DIGI_VENDOR_ID, DIGI_4_ID) },
487 { } /* Terminating entry */
488 };
489
490 MODULE_DEVICE_TABLE (usb, id_table_combined);
491
492 static struct usb_driver digi_driver = {
493 .name = "digi_acceleport",
494 .probe = usb_serial_probe,
495 .disconnect = usb_serial_disconnect,
496 .id_table = id_table_combined,
497 .no_dynamic_id = 1,
498 };
499
500
501 /* device info needed for the Digi serial converter */
502
503 static struct usb_serial_driver digi_acceleport_2_device = {
504 .driver = {
505 .owner = THIS_MODULE,
506 .name = "digi_2",
507 },
508 .description = "Digi 2 port USB adapter",
509 .usb_driver = &digi_driver,
510 .id_table = id_table_2,
511 .num_interrupt_in = 0,
512 .num_bulk_in = 4,
513 .num_bulk_out = 4,
514 .num_ports = 3,
515 .open = digi_open,
516 .close = digi_close,
517 .write = digi_write,
518 .write_room = digi_write_room,
519 .write_bulk_callback = digi_write_bulk_callback,
520 .read_bulk_callback = digi_read_bulk_callback,
521 .chars_in_buffer = digi_chars_in_buffer,
522 .throttle = digi_rx_throttle,
523 .unthrottle = digi_rx_unthrottle,
524 .ioctl = digi_ioctl,
525 .set_termios = digi_set_termios,
526 .break_ctl = digi_break_ctl,
527 .tiocmget = digi_tiocmget,
528 .tiocmset = digi_tiocmset,
529 .attach = digi_startup,
530 .shutdown = digi_shutdown,
531 };
532
533 static struct usb_serial_driver digi_acceleport_4_device = {
534 .driver = {
535 .owner = THIS_MODULE,
536 .name = "digi_4",
537 },
538 .description = "Digi 4 port USB adapter",
539 .usb_driver = &digi_driver,
540 .id_table = id_table_4,
541 .num_interrupt_in = 0,
542 .num_bulk_in = 5,
543 .num_bulk_out = 5,
544 .num_ports = 4,
545 .open = digi_open,
546 .close = digi_close,
547 .write = digi_write,
548 .write_room = digi_write_room,
549 .write_bulk_callback = digi_write_bulk_callback,
550 .read_bulk_callback = digi_read_bulk_callback,
551 .chars_in_buffer = digi_chars_in_buffer,
552 .throttle = digi_rx_throttle,
553 .unthrottle = digi_rx_unthrottle,
554 .ioctl = digi_ioctl,
555 .set_termios = digi_set_termios,
556 .break_ctl = digi_break_ctl,
557 .tiocmget = digi_tiocmget,
558 .tiocmset = digi_tiocmset,
559 .attach = digi_startup,
560 .shutdown = digi_shutdown,
561 };
562
563
564 /* Functions */
565
566 /*
567 * Cond Wait Interruptible Timeout Irqrestore
568 *
569 * Do spin_unlock_irqrestore and interruptible_sleep_on_timeout
570 * so that wake ups are not lost if they occur between the unlock
571 * and the sleep. In other words, spin_unlock_irqrestore and
572 * interruptible_sleep_on_timeout are "atomic" with respect to
573 * wake ups. This is used to implement condition variables.
574 *
575 * interruptible_sleep_on_timeout is deprecated and has been replaced
576 * with the equivalent code.
577 */
578
579 static inline long cond_wait_interruptible_timeout_irqrestore(
580 wait_queue_head_t *q, long timeout,
581 spinlock_t *lock, unsigned long flags )
582 {
583 DEFINE_WAIT(wait);
584
585 prepare_to_wait(q, &wait, TASK_INTERRUPTIBLE);
586 spin_unlock_irqrestore(lock, flags);
587 timeout = schedule_timeout(timeout);
588 finish_wait(q, &wait);
589
590 return timeout;
591 }
592
593
594 /*
595 * Digi Wakeup Write
596 *
597 * Wake up port, line discipline, and tty processes sleeping
598 * on writes.
599 */
600
601 static void digi_wakeup_write_lock(struct work_struct *work)
602 {
603 struct digi_port *priv =
604 container_of(work, struct digi_port, dp_wakeup_work);
605 struct usb_serial_port *port = priv->dp_port;
606 unsigned long flags;
607
608
609 spin_lock_irqsave( &priv->dp_port_lock, flags );
610 digi_wakeup_write( port );
611 spin_unlock_irqrestore( &priv->dp_port_lock, flags );
612 }
613
614 static void digi_wakeup_write( struct usb_serial_port *port )
615 {
616 tty_wakeup(port->tty);
617 }
618
619
620 /*
621 * Digi Write OOB Command
622 *
623 * Write commands on the out of band port. Commands are 4
624 * bytes each, multiple commands can be sent at once, and
625 * no command will be split across USB packets. Returns 0
626 * if successful, -EINTR if interrupted while sleeping and
627 * the interruptible flag is true, or a negative error
628 * returned by usb_submit_urb.
629 */
630
631 static int digi_write_oob_command( struct usb_serial_port *port,
632 unsigned char *buf, int count, int interruptible )
633 {
634
635 int ret = 0;
636 int len;
637 struct usb_serial_port *oob_port = (struct usb_serial_port *)((struct digi_serial *)(usb_get_serial_data(port->serial)))->ds_oob_port;
638 struct digi_port *oob_priv = usb_get_serial_port_data(oob_port);
639 unsigned long flags = 0;
640
641
642 dbg( "digi_write_oob_command: TOP: port=%d, count=%d", oob_priv->dp_port_num, count );
643
644 spin_lock_irqsave( &oob_priv->dp_port_lock, flags );
645
646 while( count > 0 ) {
647
648 while( oob_port->write_urb->status == -EINPROGRESS
649 || oob_priv->dp_write_urb_in_use ) {
650 cond_wait_interruptible_timeout_irqrestore(
651 &oob_port->write_wait, DIGI_RETRY_TIMEOUT,
652 &oob_priv->dp_port_lock, flags );
653 if( interruptible && signal_pending(current) ) {
654 return( -EINTR );
655 }
656 spin_lock_irqsave( &oob_priv->dp_port_lock, flags );
657 }
658
659 /* len must be a multiple of 4, so commands are not split */
660 len = min(count, oob_port->bulk_out_size );
661 if( len > 4 )
662 len &= ~3;
663
664 memcpy( oob_port->write_urb->transfer_buffer, buf, len );
665 oob_port->write_urb->transfer_buffer_length = len;
666 oob_port->write_urb->dev = port->serial->dev;
667
668 if( (ret=usb_submit_urb(oob_port->write_urb, GFP_ATOMIC)) == 0 ) {
669 oob_priv->dp_write_urb_in_use = 1;
670 count -= len;
671 buf += len;
672 }
673
674 }
675
676 spin_unlock_irqrestore( &oob_priv->dp_port_lock, flags );
677
678 if( ret ) {
679 err("%s: usb_submit_urb failed, ret=%d", __FUNCTION__,
680 ret );
681 }
682
683 return( ret );
684
685 }
686
687
688 /*
689 * Digi Write In Band Command
690 *
691 * Write commands on the given port. Commands are 4
692 * bytes each, multiple commands can be sent at once, and
693 * no command will be split across USB packets. If timeout
694 * is non-zero, write in band command will return after
695 * waiting unsuccessfully for the URB status to clear for
696 * timeout ticks. Returns 0 if successful, or a negative
697 * error returned by digi_write.
698 */
699
700 static int digi_write_inb_command( struct usb_serial_port *port,
701 unsigned char *buf, int count, unsigned long timeout )
702 {
703
704 int ret = 0;
705 int len;
706 struct digi_port *priv = usb_get_serial_port_data(port);
707 unsigned char *data = port->write_urb->transfer_buffer;
708 unsigned long flags = 0;
709
710
711 dbg( "digi_write_inb_command: TOP: port=%d, count=%d", priv->dp_port_num,
712 count );
713
714 if( timeout )
715 timeout += jiffies;
716 else
717 timeout = ULONG_MAX;
718
719 spin_lock_irqsave( &priv->dp_port_lock, flags );
720
721 while( count > 0 && ret == 0 ) {
722
723 while( (port->write_urb->status == -EINPROGRESS
724 || priv->dp_write_urb_in_use) && time_before(jiffies, timeout)) {
725 cond_wait_interruptible_timeout_irqrestore(
726 &port->write_wait, DIGI_RETRY_TIMEOUT,
727 &priv->dp_port_lock, flags );
728 if( signal_pending(current) ) {
729 return( -EINTR );
730 }
731 spin_lock_irqsave( &priv->dp_port_lock, flags );
732 }
733
734 /* len must be a multiple of 4 and small enough to */
735 /* guarantee the write will send buffered data first, */
736 /* so commands are in order with data and not split */
737 len = min(count, port->bulk_out_size-2-priv->dp_out_buf_len );
738 if( len > 4 )
739 len &= ~3;
740
741 /* write any buffered data first */
742 if( priv->dp_out_buf_len > 0 ) {
743 data[0] = DIGI_CMD_SEND_DATA;
744 data[1] = priv->dp_out_buf_len;
745 memcpy( data+2, priv->dp_out_buf,
746 priv->dp_out_buf_len );
747 memcpy( data+2+priv->dp_out_buf_len, buf, len );
748 port->write_urb->transfer_buffer_length
749 = priv->dp_out_buf_len+2+len;
750 } else {
751 memcpy( data, buf, len );
752 port->write_urb->transfer_buffer_length = len;
753 }
754 port->write_urb->dev = port->serial->dev;
755
756 if( (ret=usb_submit_urb(port->write_urb, GFP_ATOMIC)) == 0 ) {
757 priv->dp_write_urb_in_use = 1;
758 priv->dp_out_buf_len = 0;
759 count -= len;
760 buf += len;
761 }
762
763 }
764
765 spin_unlock_irqrestore( &priv->dp_port_lock, flags );
766
767 if( ret ) {
768 err("%s: usb_submit_urb failed, ret=%d, port=%d", __FUNCTION__,
769 ret, priv->dp_port_num );
770 }
771
772 return( ret );
773
774 }
775
776
777 /*
778 * Digi Set Modem Signals
779 *
780 * Sets or clears DTR and RTS on the port, according to the
781 * modem_signals argument. Use TIOCM_DTR and TIOCM_RTS flags
782 * for the modem_signals argument. Returns 0 if successful,
783 * -EINTR if interrupted while sleeping, or a non-zero error
784 * returned by usb_submit_urb.
785 */
786
787 static int digi_set_modem_signals( struct usb_serial_port *port,
788 unsigned int modem_signals, int interruptible )
789 {
790
791 int ret;
792 struct digi_port *port_priv = usb_get_serial_port_data(port);
793 struct usb_serial_port *oob_port = (struct usb_serial_port *)((struct digi_serial *)(usb_get_serial_data(port->serial)))->ds_oob_port;
794 struct digi_port *oob_priv = usb_get_serial_port_data(oob_port);
795 unsigned char *data = oob_port->write_urb->transfer_buffer;
796 unsigned long flags = 0;
797
798
799 dbg( "digi_set_modem_signals: TOP: port=%d, modem_signals=0x%x",
800 port_priv->dp_port_num, modem_signals );
801
802 spin_lock_irqsave( &oob_priv->dp_port_lock, flags );
803 spin_lock( &port_priv->dp_port_lock );
804
805 while( oob_port->write_urb->status == -EINPROGRESS
806 || oob_priv->dp_write_urb_in_use ) {
807 spin_unlock( &port_priv->dp_port_lock );
808 cond_wait_interruptible_timeout_irqrestore(
809 &oob_port->write_wait, DIGI_RETRY_TIMEOUT,
810 &oob_priv->dp_port_lock, flags );
811 if( interruptible && signal_pending(current) ) {
812 return( -EINTR );
813 }
814 spin_lock_irqsave( &oob_priv->dp_port_lock, flags );
815 spin_lock( &port_priv->dp_port_lock );
816 }
817
818 data[0] = DIGI_CMD_SET_DTR_SIGNAL;
819 data[1] = port_priv->dp_port_num;
820 data[2] = (modem_signals&TIOCM_DTR) ?
821 DIGI_DTR_ACTIVE : DIGI_DTR_INACTIVE;
822 data[3] = 0;
823
824 data[4] = DIGI_CMD_SET_RTS_SIGNAL;
825 data[5] = port_priv->dp_port_num;
826 data[6] = (modem_signals&TIOCM_RTS) ?
827 DIGI_RTS_ACTIVE : DIGI_RTS_INACTIVE;
828 data[7] = 0;
829
830 oob_port->write_urb->transfer_buffer_length = 8;
831 oob_port->write_urb->dev = port->serial->dev;
832
833 if( (ret=usb_submit_urb(oob_port->write_urb, GFP_ATOMIC)) == 0 ) {
834 oob_priv->dp_write_urb_in_use = 1;
835 port_priv->dp_modem_signals =
836 (port_priv->dp_modem_signals&~(TIOCM_DTR|TIOCM_RTS))
837 | (modem_signals&(TIOCM_DTR|TIOCM_RTS));
838 }
839
840 spin_unlock( &port_priv->dp_port_lock );
841 spin_unlock_irqrestore( &oob_priv->dp_port_lock, flags );
842
843 if( ret ) {
844 err("%s: usb_submit_urb failed, ret=%d", __FUNCTION__,
845 ret );
846 }
847
848 return( ret );
849
850 }
851
852
853 /*
854 * Digi Transmit Idle
855 *
856 * Digi transmit idle waits, up to timeout ticks, for the transmitter
857 * to go idle. It returns 0 if successful or a negative error.
858 *
859 * There are race conditions here if more than one process is calling
860 * digi_transmit_idle on the same port at the same time. However, this
861 * is only called from close, and only one process can be in close on a
862 * port at a time, so its ok.
863 */
864
865 static int digi_transmit_idle( struct usb_serial_port *port,
866 unsigned long timeout )
867 {
868
869 int ret;
870 unsigned char buf[2];
871 struct digi_port *priv = usb_get_serial_port_data(port);
872 unsigned long flags = 0;
873
874
875 spin_lock_irqsave( &priv->dp_port_lock, flags );
876 priv->dp_transmit_idle = 0;
877 spin_unlock_irqrestore( &priv->dp_port_lock, flags );
878
879 buf[0] = DIGI_CMD_TRANSMIT_IDLE;
880 buf[1] = 0;
881
882 timeout += jiffies;
883
884 if( (ret=digi_write_inb_command( port, buf, 2, timeout-jiffies )) != 0 )
885 return( ret );
886
887 spin_lock_irqsave( &priv->dp_port_lock, flags );
888
889 while( time_before(jiffies, timeout) && !priv->dp_transmit_idle ) {
890 cond_wait_interruptible_timeout_irqrestore(
891 &priv->dp_transmit_idle_wait, DIGI_RETRY_TIMEOUT,
892 &priv->dp_port_lock, flags );
893 if( signal_pending(current) ) {
894 return( -EINTR );
895 }
896 spin_lock_irqsave( &priv->dp_port_lock, flags );
897 }
898
899 priv->dp_transmit_idle = 0;
900 spin_unlock_irqrestore( &priv->dp_port_lock, flags );
901
902 return( 0 );
903
904 }
905
906
907 static void digi_rx_throttle( struct usb_serial_port *port )
908 {
909
910 unsigned long flags;
911 struct digi_port *priv = usb_get_serial_port_data(port);
912
913
914 dbg( "digi_rx_throttle: TOP: port=%d", priv->dp_port_num );
915
916 /* stop receiving characters by not resubmitting the read urb */
917 spin_lock_irqsave( &priv->dp_port_lock, flags );
918 priv->dp_throttled = 1;
919 priv->dp_throttle_restart = 0;
920 spin_unlock_irqrestore( &priv->dp_port_lock, flags );
921
922 }
923
924
925 static void digi_rx_unthrottle( struct usb_serial_port *port )
926 {
927
928 int ret = 0;
929 unsigned long flags;
930 struct digi_port *priv = usb_get_serial_port_data(port);
931
932 dbg( "digi_rx_unthrottle: TOP: port=%d", priv->dp_port_num );
933
934 spin_lock_irqsave( &priv->dp_port_lock, flags );
935
936 /* turn throttle off */
937 priv->dp_throttled = 0;
938 priv->dp_throttle_restart = 0;
939
940 /* restart read chain */
941 if( priv->dp_throttle_restart ) {
942 port->read_urb->dev = port->serial->dev;
943 ret = usb_submit_urb( port->read_urb, GFP_ATOMIC );
944 }
945
946 spin_unlock_irqrestore( &priv->dp_port_lock, flags );
947
948 if( ret ) {
949 err("%s: usb_submit_urb failed, ret=%d, port=%d", __FUNCTION__,
950 ret, priv->dp_port_num );
951 }
952
953 }
954
955
956 static void digi_set_termios( struct usb_serial_port *port,
957 struct ktermios *old_termios )
958 {
959
960 struct digi_port *priv = usb_get_serial_port_data(port);
961 unsigned int iflag = port->tty->termios->c_iflag;
962 unsigned int cflag = port->tty->termios->c_cflag;
963 unsigned int old_iflag = old_termios->c_iflag;
964 unsigned int old_cflag = old_termios->c_cflag;
965 unsigned char buf[32];
966 unsigned int modem_signals;
967 int arg,ret;
968 int i = 0;
969
970
971 dbg( "digi_set_termios: TOP: port=%d, iflag=0x%x, old_iflag=0x%x, cflag=0x%x, old_cflag=0x%x", priv->dp_port_num, iflag, old_iflag, cflag, old_cflag );
972
973 /* set baud rate */
974 if( (cflag&CBAUD) != (old_cflag&CBAUD) ) {
975
976 arg = -1;
977
978 /* reassert DTR and (maybe) RTS on transition from B0 */
979 if( (old_cflag&CBAUD) == B0 ) {
980 /* don't set RTS if using hardware flow control */
981 /* and throttling input */
982 modem_signals = TIOCM_DTR;
983 if( !(port->tty->termios->c_cflag & CRTSCTS) ||
984 !test_bit(TTY_THROTTLED, &port->tty->flags) ) {
985 modem_signals |= TIOCM_RTS;
986 }
987 digi_set_modem_signals( port, modem_signals, 1 );
988 }
989
990 switch( (cflag&CBAUD) ) {
991 /* drop DTR and RTS on transition to B0 */
992 case B0: digi_set_modem_signals( port, 0, 1 ); break;
993 case B50: arg = DIGI_BAUD_50; break;
994 case B75: arg = DIGI_BAUD_75; break;
995 case B110: arg = DIGI_BAUD_110; break;
996 case B150: arg = DIGI_BAUD_150; break;
997 case B200: arg = DIGI_BAUD_200; break;
998 case B300: arg = DIGI_BAUD_300; break;
999 case B600: arg = DIGI_BAUD_600; break;
1000 case B1200: arg = DIGI_BAUD_1200; break;
1001 case B1800: arg = DIGI_BAUD_1800; break;
1002 case B2400: arg = DIGI_BAUD_2400; break;
1003 case B4800: arg = DIGI_BAUD_4800; break;
1004 case B9600: arg = DIGI_BAUD_9600; break;
1005 case B19200: arg = DIGI_BAUD_19200; break;
1006 case B38400: arg = DIGI_BAUD_38400; break;
1007 case B57600: arg = DIGI_BAUD_57600; break;
1008 case B115200: arg = DIGI_BAUD_115200; break;
1009 case B230400: arg = DIGI_BAUD_230400; break;
1010 case B460800: arg = DIGI_BAUD_460800; break;
1011 default:
1012 dbg( "digi_set_termios: can't handle baud rate 0x%x",
1013 (cflag&CBAUD) );
1014 break;
1015 }
1016
1017 if( arg != -1 ) {
1018 buf[i++] = DIGI_CMD_SET_BAUD_RATE;
1019 buf[i++] = priv->dp_port_num;
1020 buf[i++] = arg;
1021 buf[i++] = 0;
1022 }
1023
1024 }
1025
1026 /* set parity */
1027 if( (cflag&(PARENB|PARODD)) != (old_cflag&(PARENB|PARODD)) ) {
1028
1029 if( (cflag&PARENB) ) {
1030 if( (cflag&PARODD) )
1031 arg = DIGI_PARITY_ODD;
1032 else
1033 arg = DIGI_PARITY_EVEN;
1034 } else {
1035 arg = DIGI_PARITY_NONE;
1036 }
1037
1038 buf[i++] = DIGI_CMD_SET_PARITY;
1039 buf[i++] = priv->dp_port_num;
1040 buf[i++] = arg;
1041 buf[i++] = 0;
1042
1043 }
1044
1045 /* set word size */
1046 if( (cflag&CSIZE) != (old_cflag&CSIZE) ) {
1047
1048 arg = -1;
1049
1050 switch( (cflag&CSIZE) ) {
1051 case CS5: arg = DIGI_WORD_SIZE_5; break;
1052 case CS6: arg = DIGI_WORD_SIZE_6; break;
1053 case CS7: arg = DIGI_WORD_SIZE_7; break;
1054 case CS8: arg = DIGI_WORD_SIZE_8; break;
1055 default:
1056 dbg( "digi_set_termios: can't handle word size %d",
1057 (cflag&CSIZE) );
1058 break;
1059 }
1060
1061 if( arg != -1 ) {
1062 buf[i++] = DIGI_CMD_SET_WORD_SIZE;
1063 buf[i++] = priv->dp_port_num;
1064 buf[i++] = arg;
1065 buf[i++] = 0;
1066 }
1067
1068 }
1069
1070 /* set stop bits */
1071 if( (cflag&CSTOPB) != (old_cflag&CSTOPB) ) {
1072
1073 if( (cflag&CSTOPB) )
1074 arg = DIGI_STOP_BITS_2;
1075 else
1076 arg = DIGI_STOP_BITS_1;
1077
1078 buf[i++] = DIGI_CMD_SET_STOP_BITS;
1079 buf[i++] = priv->dp_port_num;
1080 buf[i++] = arg;
1081 buf[i++] = 0;
1082
1083 }
1084
1085 /* set input flow control */
1086 if( (iflag&IXOFF) != (old_iflag&IXOFF)
1087 || (cflag&CRTSCTS) != (old_cflag&CRTSCTS) ) {
1088
1089 arg = 0;
1090
1091 if( (iflag&IXOFF) )
1092 arg |= DIGI_INPUT_FLOW_CONTROL_XON_XOFF;
1093 else
1094 arg &= ~DIGI_INPUT_FLOW_CONTROL_XON_XOFF;
1095
1096 if( (cflag&CRTSCTS) ) {
1097
1098 arg |= DIGI_INPUT_FLOW_CONTROL_RTS;
1099
1100 /* On USB-4 it is necessary to assert RTS prior */
1101 /* to selecting RTS input flow control. */
1102 buf[i++] = DIGI_CMD_SET_RTS_SIGNAL;
1103 buf[i++] = priv->dp_port_num;
1104 buf[i++] = DIGI_RTS_ACTIVE;
1105 buf[i++] = 0;
1106
1107 } else {
1108 arg &= ~DIGI_INPUT_FLOW_CONTROL_RTS;
1109 }
1110
1111 buf[i++] = DIGI_CMD_SET_INPUT_FLOW_CONTROL;
1112 buf[i++] = priv->dp_port_num;
1113 buf[i++] = arg;
1114 buf[i++] = 0;
1115
1116 }
1117
1118 /* set output flow control */
1119 if( (iflag&IXON) != (old_iflag&IXON)
1120 || (cflag&CRTSCTS) != (old_cflag&CRTSCTS) ) {
1121
1122 arg = 0;
1123
1124 if( (iflag&IXON) )
1125 arg |= DIGI_OUTPUT_FLOW_CONTROL_XON_XOFF;
1126 else
1127 arg &= ~DIGI_OUTPUT_FLOW_CONTROL_XON_XOFF;
1128
1129 if( (cflag&CRTSCTS) ) {
1130 arg |= DIGI_OUTPUT_FLOW_CONTROL_CTS;
1131 } else {
1132 arg &= ~DIGI_OUTPUT_FLOW_CONTROL_CTS;
1133 port->tty->hw_stopped = 0;
1134 }
1135
1136 buf[i++] = DIGI_CMD_SET_OUTPUT_FLOW_CONTROL;
1137 buf[i++] = priv->dp_port_num;
1138 buf[i++] = arg;
1139 buf[i++] = 0;
1140
1141 }
1142
1143 /* set receive enable/disable */
1144 if( (cflag&CREAD) != (old_cflag&CREAD) ) {
1145
1146 if( (cflag&CREAD) )
1147 arg = DIGI_ENABLE;
1148 else
1149 arg = DIGI_DISABLE;
1150
1151 buf[i++] = DIGI_CMD_RECEIVE_ENABLE;
1152 buf[i++] = priv->dp_port_num;
1153 buf[i++] = arg;
1154 buf[i++] = 0;
1155
1156 }
1157
1158 if( (ret=digi_write_oob_command( port, buf, i, 1 )) != 0 )
1159 dbg( "digi_set_termios: write oob failed, ret=%d", ret );
1160
1161 }
1162
1163
1164 static void digi_break_ctl( struct usb_serial_port *port, int break_state )
1165 {
1166
1167 unsigned char buf[4];
1168
1169
1170 buf[0] = DIGI_CMD_BREAK_CONTROL;
1171 buf[1] = 2; /* length */
1172 buf[2] = break_state ? 1 : 0;
1173 buf[3] = 0; /* pad */
1174
1175 digi_write_inb_command( port, buf, 4, 0 );
1176
1177 }
1178
1179
1180 static int digi_tiocmget( struct usb_serial_port *port, struct file *file )
1181 {
1182 struct digi_port *priv = usb_get_serial_port_data(port);
1183 unsigned int val;
1184 unsigned long flags;
1185
1186 dbg("%s: TOP: port=%d", __FUNCTION__, priv->dp_port_num);
1187
1188 spin_lock_irqsave( &priv->dp_port_lock, flags );
1189 val = priv->dp_modem_signals;
1190 spin_unlock_irqrestore( &priv->dp_port_lock, flags );
1191 return val;
1192 }
1193
1194
1195 static int digi_tiocmset( struct usb_serial_port *port, struct file *file,
1196 unsigned int set, unsigned int clear )
1197 {
1198 struct digi_port *priv = usb_get_serial_port_data(port);
1199 unsigned int val;
1200 unsigned long flags;
1201
1202 dbg("%s: TOP: port=%d", __FUNCTION__, priv->dp_port_num);
1203
1204 spin_lock_irqsave( &priv->dp_port_lock, flags );
1205 val = (priv->dp_modem_signals & ~clear) | set;
1206 spin_unlock_irqrestore( &priv->dp_port_lock, flags );
1207 return digi_set_modem_signals( port, val, 1 );
1208 }
1209
1210
1211 static int digi_ioctl( struct usb_serial_port *port, struct file *file,
1212 unsigned int cmd, unsigned long arg )
1213 {
1214
1215 struct digi_port *priv = usb_get_serial_port_data(port);
1216
1217 dbg( "digi_ioctl: TOP: port=%d, cmd=0x%x", priv->dp_port_num, cmd );
1218
1219 switch (cmd) {
1220
1221 case TIOCMIWAIT:
1222 /* wait for any of the 4 modem inputs (DCD,RI,DSR,CTS)*/
1223 /* TODO */
1224 return( 0 );
1225
1226 case TIOCGICOUNT:
1227 /* return count of modemline transitions */
1228 /* TODO */
1229 return 0;
1230
1231 }
1232
1233 return( -ENOIOCTLCMD );
1234
1235 }
1236
1237
1238 static int digi_write( struct usb_serial_port *port, const unsigned char *buf, int count )
1239 {
1240
1241 int ret,data_len,new_len;
1242 struct digi_port *priv = usb_get_serial_port_data(port);
1243 unsigned char *data = port->write_urb->transfer_buffer;
1244 unsigned long flags = 0;
1245
1246
1247 dbg( "digi_write: TOP: port=%d, count=%d, in_interrupt=%ld",
1248 priv->dp_port_num, count, in_interrupt() );
1249
1250 /* copy user data (which can sleep) before getting spin lock */
1251 count = min( count, port->bulk_out_size-2 );
1252 count = min( 64, count);
1253
1254 /* be sure only one write proceeds at a time */
1255 /* there are races on the port private buffer */
1256 /* and races to check write_urb->status */
1257 spin_lock_irqsave( &priv->dp_port_lock, flags );
1258
1259 /* wait for urb status clear to submit another urb */
1260 if( port->write_urb->status == -EINPROGRESS
1261 || priv->dp_write_urb_in_use ) {
1262
1263 /* buffer data if count is 1 (probably put_char) if possible */
1264 if( count == 1 && priv->dp_out_buf_len < DIGI_OUT_BUF_SIZE ) {
1265 priv->dp_out_buf[priv->dp_out_buf_len++] = *buf;
1266 new_len = 1;
1267 } else {
1268 new_len = 0;
1269 }
1270
1271 spin_unlock_irqrestore( &priv->dp_port_lock, flags );
1272
1273 return( new_len );
1274
1275 }
1276
1277 /* allow space for any buffered data and for new data, up to */
1278 /* transfer buffer size - 2 (for command and length bytes) */
1279 new_len = min(count, port->bulk_out_size-2-priv->dp_out_buf_len);
1280 data_len = new_len + priv->dp_out_buf_len;
1281
1282 if( data_len == 0 ) {
1283 spin_unlock_irqrestore( &priv->dp_port_lock, flags );
1284 return( 0 );
1285 }
1286
1287 port->write_urb->transfer_buffer_length = data_len+2;
1288 port->write_urb->dev = port->serial->dev;
1289
1290 *data++ = DIGI_CMD_SEND_DATA;
1291 *data++ = data_len;
1292
1293 /* copy in buffered data first */
1294 memcpy( data, priv->dp_out_buf, priv->dp_out_buf_len );
1295 data += priv->dp_out_buf_len;
1296
1297 /* copy in new data */
1298 memcpy( data, buf, new_len );
1299
1300 if( (ret=usb_submit_urb(port->write_urb, GFP_ATOMIC)) == 0 ) {
1301 priv->dp_write_urb_in_use = 1;
1302 ret = new_len;
1303 priv->dp_out_buf_len = 0;
1304 }
1305
1306 /* return length of new data written, or error */
1307 spin_unlock_irqrestore( &priv->dp_port_lock, flags );
1308 if( ret < 0 ) {
1309 err("%s: usb_submit_urb failed, ret=%d, port=%d", __FUNCTION__,
1310 ret, priv->dp_port_num );
1311 }
1312
1313 dbg( "digi_write: returning %d", ret );
1314 return( ret );
1315
1316 }
1317
1318
1319 static void digi_write_bulk_callback( struct urb *urb )
1320 {
1321
1322 struct usb_serial_port *port = (struct usb_serial_port *)urb->context;
1323 struct usb_serial *serial;
1324 struct digi_port *priv;
1325 struct digi_serial *serial_priv;
1326 int ret = 0;
1327 int status = urb->status;
1328
1329
1330 dbg("digi_write_bulk_callback: TOP, urb status=%d", status);
1331
1332 /* port and serial sanity check */
1333 if( port == NULL || (priv=usb_get_serial_port_data(port)) == NULL ) {
1334 err("%s: port or port->private is NULL, status=%d",
1335 __FUNCTION__, status);
1336 return;
1337 }
1338 serial = port->serial;
1339 if( serial == NULL || (serial_priv=usb_get_serial_data(serial)) == NULL ) {
1340 err("%s: serial or serial->private is NULL, status=%d",
1341 __FUNCTION__, status);
1342 return;
1343 }
1344
1345 /* handle oob callback */
1346 if( priv->dp_port_num == serial_priv->ds_oob_port_num ) {
1347 dbg( "digi_write_bulk_callback: oob callback" );
1348 spin_lock( &priv->dp_port_lock );
1349 priv->dp_write_urb_in_use = 0;
1350 wake_up_interruptible( &port->write_wait );
1351 spin_unlock( &priv->dp_port_lock );
1352 return;
1353 }
1354
1355 /* try to send any buffered data on this port, if it is open */
1356 spin_lock( &priv->dp_port_lock );
1357 priv->dp_write_urb_in_use = 0;
1358 if( port->open_count && port->write_urb->status != -EINPROGRESS
1359 && priv->dp_out_buf_len > 0 ) {
1360
1361 *((unsigned char *)(port->write_urb->transfer_buffer))
1362 = (unsigned char)DIGI_CMD_SEND_DATA;
1363 *((unsigned char *)(port->write_urb->transfer_buffer)+1)
1364 = (unsigned char)priv->dp_out_buf_len;
1365
1366 port->write_urb->transfer_buffer_length
1367 = priv->dp_out_buf_len+2;
1368 port->write_urb->dev = serial->dev;
1369
1370 memcpy( port->write_urb->transfer_buffer+2, priv->dp_out_buf,
1371 priv->dp_out_buf_len );
1372
1373 if( (ret=usb_submit_urb(port->write_urb, GFP_ATOMIC)) == 0 ) {
1374 priv->dp_write_urb_in_use = 1;
1375 priv->dp_out_buf_len = 0;
1376 }
1377
1378 }
1379
1380 /* wake up processes sleeping on writes immediately */
1381 digi_wakeup_write( port );
1382
1383 /* also queue up a wakeup at scheduler time, in case we */
1384 /* lost the race in write_chan(). */
1385 schedule_work(&priv->dp_wakeup_work);
1386
1387 spin_unlock( &priv->dp_port_lock );
1388
1389 if( ret ) {
1390 err("%s: usb_submit_urb failed, ret=%d, port=%d", __FUNCTION__,
1391 ret, priv->dp_port_num );
1392 }
1393
1394 }
1395
1396
1397 static int digi_write_room( struct usb_serial_port *port )
1398 {
1399
1400 int room;
1401 struct digi_port *priv = usb_get_serial_port_data(port);
1402 unsigned long flags = 0;
1403
1404
1405 spin_lock_irqsave( &priv->dp_port_lock, flags );
1406
1407 if( port->write_urb->status == -EINPROGRESS
1408 || priv->dp_write_urb_in_use )
1409 room = 0;
1410 else
1411 room = port->bulk_out_size - 2 - priv->dp_out_buf_len;
1412
1413 spin_unlock_irqrestore( &priv->dp_port_lock, flags );
1414
1415 dbg( "digi_write_room: port=%d, room=%d", priv->dp_port_num, room );
1416 return( room );
1417
1418 }
1419
1420
1421 static int digi_chars_in_buffer( struct usb_serial_port *port )
1422 {
1423
1424 struct digi_port *priv = usb_get_serial_port_data(port);
1425
1426
1427 if( port->write_urb->status == -EINPROGRESS
1428 || priv->dp_write_urb_in_use ) {
1429 dbg( "digi_chars_in_buffer: port=%d, chars=%d", priv->dp_port_num, port->bulk_out_size - 2 );
1430 /* return( port->bulk_out_size - 2 ); */
1431 return( 256 );
1432 } else {
1433 dbg( "digi_chars_in_buffer: port=%d, chars=%d", priv->dp_port_num, priv->dp_out_buf_len );
1434 return( priv->dp_out_buf_len );
1435 }
1436
1437 }
1438
1439
1440 static int digi_open( struct usb_serial_port *port, struct file *filp )
1441 {
1442
1443 int ret;
1444 unsigned char buf[32];
1445 struct digi_port *priv = usb_get_serial_port_data(port);
1446 struct ktermios not_termios;
1447 unsigned long flags = 0;
1448
1449
1450 dbg( "digi_open: TOP: port=%d, open_count=%d", priv->dp_port_num, port->open_count );
1451
1452 /* be sure the device is started up */
1453 if( digi_startup_device( port->serial ) != 0 )
1454 return( -ENXIO );
1455
1456 spin_lock_irqsave( &priv->dp_port_lock, flags );
1457
1458 /* don't wait on a close in progress for non-blocking opens */
1459 if( priv->dp_in_close && (filp->f_flags&(O_NDELAY|O_NONBLOCK)) == 0 ) {
1460 spin_unlock_irqrestore( &priv->dp_port_lock, flags );
1461 return( -EAGAIN );
1462 }
1463
1464 /* wait for a close in progress to finish */
1465 while( priv->dp_in_close ) {
1466 cond_wait_interruptible_timeout_irqrestore(
1467 &priv->dp_close_wait, DIGI_RETRY_TIMEOUT,
1468 &priv->dp_port_lock, flags );
1469 if( signal_pending(current) ) {
1470 return( -EINTR );
1471 }
1472 spin_lock_irqsave( &priv->dp_port_lock, flags );
1473 }
1474
1475 spin_unlock_irqrestore( &priv->dp_port_lock, flags );
1476
1477 /* read modem signals automatically whenever they change */
1478 buf[0] = DIGI_CMD_READ_INPUT_SIGNALS;
1479 buf[1] = priv->dp_port_num;
1480 buf[2] = DIGI_ENABLE;
1481 buf[3] = 0;
1482
1483 /* flush fifos */
1484 buf[4] = DIGI_CMD_IFLUSH_FIFO;
1485 buf[5] = priv->dp_port_num;
1486 buf[6] = DIGI_FLUSH_TX | DIGI_FLUSH_RX;
1487 buf[7] = 0;
1488
1489 if( (ret=digi_write_oob_command( port, buf, 8, 1 )) != 0 )
1490 dbg( "digi_open: write oob failed, ret=%d", ret );
1491
1492 /* set termios settings */
1493 not_termios.c_cflag = ~port->tty->termios->c_cflag;
1494 not_termios.c_iflag = ~port->tty->termios->c_iflag;
1495 digi_set_termios( port, &not_termios );
1496
1497 /* set DTR and RTS */
1498 digi_set_modem_signals( port, TIOCM_DTR|TIOCM_RTS, 1 );
1499
1500 return( 0 );
1501
1502 }
1503
1504
1505 static void digi_close( struct usb_serial_port *port, struct file *filp )
1506 {
1507 DEFINE_WAIT(wait);
1508 int ret;
1509 unsigned char buf[32];
1510 struct tty_struct *tty = port->tty;
1511 struct digi_port *priv = usb_get_serial_port_data(port);
1512 unsigned long flags = 0;
1513
1514
1515 dbg( "digi_close: TOP: port=%d, open_count=%d", priv->dp_port_num, port->open_count );
1516
1517
1518 /* if disconnected, just clear flags */
1519 if (!usb_get_intfdata(port->serial->interface))
1520 goto exit;
1521
1522 /* do cleanup only after final close on this port */
1523 spin_lock_irqsave( &priv->dp_port_lock, flags );
1524 priv->dp_in_close = 1;
1525 spin_unlock_irqrestore( &priv->dp_port_lock, flags );
1526
1527 /* tell line discipline to process only XON/XOFF */
1528 tty->closing = 1;
1529
1530 /* wait for output to drain */
1531 if( (filp->f_flags&(O_NDELAY|O_NONBLOCK)) == 0 ) {
1532 tty_wait_until_sent( tty, DIGI_CLOSE_TIMEOUT );
1533 }
1534
1535 /* flush driver and line discipline buffers */
1536 if( tty->driver->flush_buffer )
1537 tty->driver->flush_buffer( tty );
1538 tty_ldisc_flush(tty);
1539
1540 if (port->serial->dev) {
1541 /* wait for transmit idle */
1542 if( (filp->f_flags&(O_NDELAY|O_NONBLOCK)) == 0 ) {
1543 digi_transmit_idle( port, DIGI_CLOSE_TIMEOUT );
1544 }
1545
1546 /* drop DTR and RTS */
1547 digi_set_modem_signals( port, 0, 0 );
1548
1549 /* disable input flow control */
1550 buf[0] = DIGI_CMD_SET_INPUT_FLOW_CONTROL;
1551 buf[1] = priv->dp_port_num;
1552 buf[2] = DIGI_DISABLE;
1553 buf[3] = 0;
1554
1555 /* disable output flow control */
1556 buf[4] = DIGI_CMD_SET_OUTPUT_FLOW_CONTROL;
1557 buf[5] = priv->dp_port_num;
1558 buf[6] = DIGI_DISABLE;
1559 buf[7] = 0;
1560
1561 /* disable reading modem signals automatically */
1562 buf[8] = DIGI_CMD_READ_INPUT_SIGNALS;
1563 buf[9] = priv->dp_port_num;
1564 buf[10] = DIGI_DISABLE;
1565 buf[11] = 0;
1566
1567 /* disable receive */
1568 buf[12] = DIGI_CMD_RECEIVE_ENABLE;
1569 buf[13] = priv->dp_port_num;
1570 buf[14] = DIGI_DISABLE;
1571 buf[15] = 0;
1572
1573 /* flush fifos */
1574 buf[16] = DIGI_CMD_IFLUSH_FIFO;
1575 buf[17] = priv->dp_port_num;
1576 buf[18] = DIGI_FLUSH_TX | DIGI_FLUSH_RX;
1577 buf[19] = 0;
1578
1579 if( (ret=digi_write_oob_command( port, buf, 20, 0 )) != 0 )
1580 dbg( "digi_close: write oob failed, ret=%d", ret );
1581
1582 /* wait for final commands on oob port to complete */
1583 prepare_to_wait(&priv->dp_flush_wait, &wait, TASK_INTERRUPTIBLE);
1584 schedule_timeout(DIGI_CLOSE_TIMEOUT);
1585 finish_wait(&priv->dp_flush_wait, &wait);
1586
1587 /* shutdown any outstanding bulk writes */
1588 usb_kill_urb(port->write_urb);
1589 }
1590
1591 tty->closing = 0;
1592
1593 exit:
1594 spin_lock_irqsave( &priv->dp_port_lock, flags );
1595 priv->dp_write_urb_in_use = 0;
1596 priv->dp_in_close = 0;
1597 wake_up_interruptible( &priv->dp_close_wait );
1598 spin_unlock_irqrestore( &priv->dp_port_lock, flags );
1599
1600 dbg( "digi_close: done" );
1601 }
1602
1603
1604 /*
1605 * Digi Startup Device
1606 *
1607 * Starts reads on all ports. Must be called AFTER startup, with
1608 * urbs initialized. Returns 0 if successful, non-zero error otherwise.
1609 */
1610
1611 static int digi_startup_device( struct usb_serial *serial )
1612 {
1613
1614 int i,ret = 0;
1615 struct digi_serial *serial_priv = usb_get_serial_data(serial);
1616 struct usb_serial_port *port;
1617
1618
1619 /* be sure this happens exactly once */
1620 spin_lock( &serial_priv->ds_serial_lock );
1621 if( serial_priv->ds_device_started ) {
1622 spin_unlock( &serial_priv->ds_serial_lock );
1623 return( 0 );
1624 }
1625 serial_priv->ds_device_started = 1;
1626 spin_unlock( &serial_priv->ds_serial_lock );
1627
1628 /* start reading from each bulk in endpoint for the device */
1629 /* set USB_DISABLE_SPD flag for write bulk urbs */
1630 for( i=0; i<serial->type->num_ports+1; i++ ) {
1631
1632 port = serial->port[i];
1633
1634 port->write_urb->dev = port->serial->dev;
1635
1636 if( (ret=usb_submit_urb(port->read_urb, GFP_KERNEL)) != 0 ) {
1637 err("%s: usb_submit_urb failed, ret=%d, port=%d", __FUNCTION__,
1638 ret, i );
1639 break;
1640 }
1641
1642 }
1643
1644 return( ret );
1645
1646 }
1647
1648
1649 static int digi_startup( struct usb_serial *serial )
1650 {
1651
1652 int i;
1653 struct digi_port *priv;
1654 struct digi_serial *serial_priv;
1655
1656
1657 dbg( "digi_startup: TOP" );
1658
1659 /* allocate the private data structures for all ports */
1660 /* number of regular ports + 1 for the out-of-band port */
1661 for( i=0; i<serial->type->num_ports+1; i++ ) {
1662
1663 /* allocate port private structure */
1664 priv = kmalloc( sizeof(struct digi_port),
1665 GFP_KERNEL );
1666 if( priv == (struct digi_port *)0 ) {
1667 while( --i >= 0 )
1668 kfree( usb_get_serial_port_data(serial->port[i]) );
1669 return( 1 ); /* error */
1670 }
1671
1672 /* initialize port private structure */
1673 spin_lock_init( &priv->dp_port_lock );
1674 priv->dp_port_num = i;
1675 priv->dp_out_buf_len = 0;
1676 priv->dp_write_urb_in_use = 0;
1677 priv->dp_modem_signals = 0;
1678 init_waitqueue_head( &priv->dp_modem_change_wait );
1679 priv->dp_transmit_idle = 0;
1680 init_waitqueue_head( &priv->dp_transmit_idle_wait );
1681 priv->dp_throttled = 0;
1682 priv->dp_throttle_restart = 0;
1683 init_waitqueue_head( &priv->dp_flush_wait );
1684 priv->dp_in_close = 0;
1685 init_waitqueue_head( &priv->dp_close_wait );
1686 INIT_WORK(&priv->dp_wakeup_work, digi_wakeup_write_lock);
1687 priv->dp_port = serial->port[i];
1688
1689 /* initialize write wait queue for this port */
1690 init_waitqueue_head( &serial->port[i]->write_wait );
1691
1692 usb_set_serial_port_data(serial->port[i], priv);
1693 }
1694
1695 /* allocate serial private structure */
1696 serial_priv = kmalloc( sizeof(struct digi_serial),
1697 GFP_KERNEL );
1698 if( serial_priv == (struct digi_serial *)0 ) {
1699 for( i=0; i<serial->type->num_ports+1; i++ )
1700 kfree( usb_get_serial_port_data(serial->port[i]) );
1701 return( 1 ); /* error */
1702 }
1703
1704 /* initialize serial private structure */
1705 spin_lock_init( &serial_priv->ds_serial_lock );
1706 serial_priv->ds_oob_port_num = serial->type->num_ports;
1707 serial_priv->ds_oob_port = serial->port[serial_priv->ds_oob_port_num];
1708 serial_priv->ds_device_started = 0;
1709 usb_set_serial_data(serial, serial_priv);
1710
1711 return( 0 );
1712
1713 }
1714
1715
1716 static void digi_shutdown( struct usb_serial *serial )
1717 {
1718
1719 int i;
1720
1721
1722 dbg( "digi_shutdown: TOP, in_interrupt()=%ld", in_interrupt() );
1723
1724 /* stop reads and writes on all ports */
1725 for( i=0; i<serial->type->num_ports+1; i++ ) {
1726 usb_kill_urb(serial->port[i]->read_urb);
1727 usb_kill_urb(serial->port[i]->write_urb);
1728 }
1729
1730 /* free the private data structures for all ports */
1731 /* number of regular ports + 1 for the out-of-band port */
1732 for( i=0; i<serial->type->num_ports+1; i++ )
1733 kfree( usb_get_serial_port_data(serial->port[i]) );
1734 kfree( usb_get_serial_data(serial) );
1735 }
1736
1737
1738 static void digi_read_bulk_callback( struct urb *urb )
1739 {
1740
1741 struct usb_serial_port *port = (struct usb_serial_port *)urb->context;
1742 struct digi_port *priv;
1743 struct digi_serial *serial_priv;
1744 int ret;
1745 int status = urb->status;
1746
1747
1748 dbg( "digi_read_bulk_callback: TOP" );
1749
1750 /* port sanity check, do not resubmit if port is not valid */
1751 if( port == NULL || (priv=usb_get_serial_port_data(port)) == NULL ) {
1752 err("%s: port or port->private is NULL, status=%d",
1753 __FUNCTION__, status);
1754 return;
1755 }
1756 if( port->serial == NULL
1757 || (serial_priv=usb_get_serial_data(port->serial)) == NULL ) {
1758 err("%s: serial is bad or serial->private is NULL, status=%d",
1759 __FUNCTION__, status);
1760 return;
1761 }
1762
1763 /* do not resubmit urb if it has any status error */
1764 if (status) {
1765 err("%s: nonzero read bulk status: status=%d, port=%d",
1766 __FUNCTION__, status, priv->dp_port_num);
1767 return;
1768 }
1769
1770 /* handle oob or inb callback, do not resubmit if error */
1771 if( priv->dp_port_num == serial_priv->ds_oob_port_num ) {
1772 if( digi_read_oob_callback( urb ) != 0 )
1773 return;
1774 } else {
1775 if( digi_read_inb_callback( urb ) != 0 )
1776 return;
1777 }
1778
1779 /* continue read */
1780 urb->dev = port->serial->dev;
1781 if( (ret=usb_submit_urb(urb, GFP_ATOMIC)) != 0 ) {
1782 err("%s: failed resubmitting urb, ret=%d, port=%d", __FUNCTION__,
1783 ret, priv->dp_port_num );
1784 }
1785
1786 }
1787
1788
1789 /*
1790 * Digi Read INB Callback
1791 *
1792 * Digi Read INB Callback handles reads on the in band ports, sending
1793 * the data on to the tty subsystem. When called we know port and
1794 * port->private are not NULL and port->serial has been validated.
1795 * It returns 0 if successful, 1 if successful but the port is
1796 * throttled, and -1 if the sanity checks failed.
1797 */
1798
1799 static int digi_read_inb_callback( struct urb *urb )
1800 {
1801
1802 struct usb_serial_port *port = (struct usb_serial_port *)urb->context;
1803 struct tty_struct *tty = port->tty;
1804 struct digi_port *priv = usb_get_serial_port_data(port);
1805 int opcode = ((unsigned char *)urb->transfer_buffer)[0];
1806 int len = ((unsigned char *)urb->transfer_buffer)[1];
1807 int port_status = ((unsigned char *)urb->transfer_buffer)[2];
1808 unsigned char *data = ((unsigned char *)urb->transfer_buffer)+3;
1809 int flag,throttled;
1810 int i;
1811 int status = urb->status;
1812
1813 /* do not process callbacks on closed ports */
1814 /* but do continue the read chain */
1815 if( port->open_count == 0 )
1816 return( 0 );
1817
1818 /* short/multiple packet check */
1819 if( urb->actual_length != len + 2 ) {
1820 err("%s: INCOMPLETE OR MULTIPLE PACKET, urb status=%d, "
1821 "port=%d, opcode=%d, len=%d, actual_length=%d, "
1822 "port_status=%d", __FUNCTION__, status, priv->dp_port_num,
1823 opcode, len, urb->actual_length, port_status);
1824 return( -1 );
1825 }
1826
1827 spin_lock( &priv->dp_port_lock );
1828
1829 /* check for throttle; if set, do not resubmit read urb */
1830 /* indicate the read chain needs to be restarted on unthrottle */
1831 throttled = priv->dp_throttled;
1832 if( throttled )
1833 priv->dp_throttle_restart = 1;
1834
1835 /* receive data */
1836 if( opcode == DIGI_CMD_RECEIVE_DATA ) {
1837
1838 /* get flag from port_status */
1839 flag = 0;
1840
1841 /* overrun is special, not associated with a char */
1842 if (port_status & DIGI_OVERRUN_ERROR) {
1843 tty_insert_flip_char( tty, 0, TTY_OVERRUN );
1844 }
1845
1846 /* break takes precedence over parity, */
1847 /* which takes precedence over framing errors */
1848 if (port_status & DIGI_BREAK_ERROR) {
1849 flag = TTY_BREAK;
1850 } else if (port_status & DIGI_PARITY_ERROR) {
1851 flag = TTY_PARITY;
1852 } else if (port_status & DIGI_FRAMING_ERROR) {
1853 flag = TTY_FRAME;
1854 }
1855
1856 /* data length is len-1 (one byte of len is port_status) */
1857 --len;
1858
1859 len = tty_buffer_request_room(tty, len);
1860 if( len > 0 ) {
1861 /* Hot path */
1862 if(flag == TTY_NORMAL)
1863 tty_insert_flip_string(tty, data, len);
1864 else {
1865 for(i = 0; i < len; i++)
1866 tty_insert_flip_char(tty, data[i], flag);
1867 }
1868 tty_flip_buffer_push( tty );
1869 }
1870 }
1871
1872 spin_unlock( &priv->dp_port_lock );
1873
1874 if( opcode == DIGI_CMD_RECEIVE_DISABLE ) {
1875 dbg("%s: got RECEIVE_DISABLE", __FUNCTION__ );
1876 } else if( opcode != DIGI_CMD_RECEIVE_DATA ) {
1877 dbg("%s: unknown opcode: %d", __FUNCTION__, opcode );
1878 }
1879
1880 return( throttled ? 1 : 0 );
1881
1882 }
1883
1884
1885 /*
1886 * Digi Read OOB Callback
1887 *
1888 * Digi Read OOB Callback handles reads on the out of band port.
1889 * When called we know port and port->private are not NULL and
1890 * the port->serial is valid. It returns 0 if successful, and
1891 * -1 if the sanity checks failed.
1892 */
1893
1894 static int digi_read_oob_callback( struct urb *urb )
1895 {
1896
1897 struct usb_serial_port *port = (struct usb_serial_port *)urb->context;
1898 struct usb_serial *serial = port->serial;
1899 struct digi_port *priv = usb_get_serial_port_data(port);
1900 int opcode, line, status, val;
1901 int i;
1902
1903
1904 dbg( "digi_read_oob_callback: port=%d, len=%d", priv->dp_port_num,
1905 urb->actual_length );
1906
1907 /* handle each oob command */
1908 for( i=0; i<urb->actual_length-3; ) {
1909
1910 opcode = ((unsigned char *)urb->transfer_buffer)[i++];
1911 line = ((unsigned char *)urb->transfer_buffer)[i++];
1912 status = ((unsigned char *)urb->transfer_buffer)[i++];
1913 val = ((unsigned char *)urb->transfer_buffer)[i++];
1914
1915 dbg( "digi_read_oob_callback: opcode=%d, line=%d, status=%d, val=%d",
1916 opcode, line, status, val );
1917
1918 if( status != 0 || line >= serial->type->num_ports )
1919 continue;
1920
1921 port = serial->port[line];
1922
1923 if ((priv=usb_get_serial_port_data(port)) == NULL )
1924 return -1;
1925
1926 if( opcode == DIGI_CMD_READ_INPUT_SIGNALS ) {
1927
1928 spin_lock( &priv->dp_port_lock );
1929
1930 /* convert from digi flags to termiox flags */
1931 if( val & DIGI_READ_INPUT_SIGNALS_CTS ) {
1932 priv->dp_modem_signals |= TIOCM_CTS;
1933 /* port must be open to use tty struct */
1934 if( port->open_count
1935 && port->tty->termios->c_cflag & CRTSCTS ) {
1936 port->tty->hw_stopped = 0;
1937 digi_wakeup_write( port );
1938 }
1939 } else {
1940 priv->dp_modem_signals &= ~TIOCM_CTS;
1941 /* port must be open to use tty struct */
1942 if( port->open_count
1943 && port->tty->termios->c_cflag & CRTSCTS ) {
1944 port->tty->hw_stopped = 1;
1945 }
1946 }
1947 if( val & DIGI_READ_INPUT_SIGNALS_DSR )
1948 priv->dp_modem_signals |= TIOCM_DSR;
1949 else
1950 priv->dp_modem_signals &= ~TIOCM_DSR;
1951 if( val & DIGI_READ_INPUT_SIGNALS_RI )
1952 priv->dp_modem_signals |= TIOCM_RI;
1953 else
1954 priv->dp_modem_signals &= ~TIOCM_RI;
1955 if( val & DIGI_READ_INPUT_SIGNALS_DCD )
1956 priv->dp_modem_signals |= TIOCM_CD;
1957 else
1958 priv->dp_modem_signals &= ~TIOCM_CD;
1959
1960 wake_up_interruptible( &priv->dp_modem_change_wait );
1961 spin_unlock( &priv->dp_port_lock );
1962
1963 } else if( opcode == DIGI_CMD_TRANSMIT_IDLE ) {
1964
1965 spin_lock( &priv->dp_port_lock );
1966 priv->dp_transmit_idle = 1;
1967 wake_up_interruptible( &priv->dp_transmit_idle_wait );
1968 spin_unlock( &priv->dp_port_lock );
1969
1970 } else if( opcode == DIGI_CMD_IFLUSH_FIFO ) {
1971
1972 wake_up_interruptible( &priv->dp_flush_wait );
1973
1974 }
1975
1976 }
1977
1978 return( 0 );
1979
1980 }
1981
1982
1983 static int __init digi_init (void)
1984 {
1985 int retval;
1986 retval = usb_serial_register(&digi_acceleport_2_device);
1987 if (retval)
1988 goto failed_acceleport_2_device;
1989 retval = usb_serial_register(&digi_acceleport_4_device);
1990 if (retval)
1991 goto failed_acceleport_4_device;
1992 retval = usb_register(&digi_driver);
1993 if (retval)
1994 goto failed_usb_register;
1995 info(DRIVER_VERSION ":" DRIVER_DESC);
1996 return 0;
1997 failed_usb_register:
1998 usb_serial_deregister(&digi_acceleport_4_device);
1999 failed_acceleport_4_device:
2000 usb_serial_deregister(&digi_acceleport_2_device);
2001 failed_acceleport_2_device:
2002 return retval;
2003 }
2004
2005
2006 static void __exit digi_exit (void)
2007 {
2008 usb_deregister (&digi_driver);
2009 usb_serial_deregister (&digi_acceleport_2_device);
2010 usb_serial_deregister (&digi_acceleport_4_device);
2011 }
2012
2013
2014 module_init(digi_init);
2015 module_exit(digi_exit);
2016
2017
2018 MODULE_AUTHOR( DRIVER_AUTHOR );
2019 MODULE_DESCRIPTION( DRIVER_DESC );
2020 MODULE_LICENSE("GPL");
2021
2022 module_param(debug, bool, S_IRUGO | S_IWUSR);
2023 MODULE_PARM_DESC(debug, "Debug enabled or not");