MOXA linux-2.6.x / linux-2.6.9-uc0 from sdlinux-moxaart.tgz
[linux-2.6.9-moxart.git] / drivers / char / cyclades.c
blob6ceaee64b2697f00286642cdf4cee2aae2d7eb4e
1 #undef BLOCKMOVE
2 #define Z_WAKE
3 #undef Z_EXT_CHARS_IN_BUFFER
4 static char rcsid[] =
5 "$Revision: 2.3.2.20 $$Date: 2004/02/25 18:14:16 $";
7 /*
8 * linux/drivers/char/cyclades.c
10 * This file contains the driver for the Cyclades async multiport
11 * serial boards.
13 * Initially written by Randolph Bentson <bentson@grieg.seaslug.org>.
14 * Modified and maintained by Marcio Saito <marcio@cyclades.com>.
15 * Currently maintained by Cyclades team <async@cyclades.com>.
17 * For Technical support and installation problems, please send e-mail
18 * to support@cyclades.com.
20 * Much of the design and some of the code came from serial.c
21 * which was copyright (C) 1991, 1992 Linus Torvalds. It was
22 * extensively rewritten by Theodore Ts'o, 8/16/92 -- 9/14/92,
23 * and then fixed as suggested by Michael K. Johnson 12/12/92.
25 * This version supports shared IRQ's (only for PCI boards).
27 * $Log: cyclades.c,v $
28 * Prevent users from opening non-existing Z ports.
30 * Revision 2.3.2.8 2000/07/06 18:14:16 ivan
31 * Fixed the PCI detection function to work properly on Alpha systems.
32 * Implemented support for TIOCSERGETLSR ioctl.
33 * Implemented full support for non-standard baud rates.
35 * Revision 2.3.2.7 2000/06/01 18:26:34 ivan
36 * Request PLX I/O region, although driver doesn't use it, to avoid
37 * problems with other drivers accessing it.
38 * Removed count for on-board buffer characters in cy_chars_in_buffer
39 * (Cyclades-Z only).
41 * Revision 2.3.2.6 2000/05/05 13:56:05 ivan
42 * Driver now reports physical instead of virtual memory addresses.
43 * Masks were added to some Cyclades-Z read accesses.
44 * Implemented workaround for PLX9050 bug that would cause a system lockup
45 * in certain systems, depending on the MMIO addresses allocated to the
46 * board.
47 * Changed the Tx interrupt programming in the CD1400 chips to boost up
48 * performance (Cyclom-Y only).
49 * Code is now compliant with the new module interface (module_[init|exit]).
50 * Make use of the PCI helper functions to access PCI resources.
51 * Did some code "housekeeping".
53 * Revision 2.3.2.5 2000/01/19 14:35:33 ivan
54 * Fixed bug in cy_set_termios on CRTSCTS flag turnoff.
56 * Revision 2.3.2.4 2000/01/17 09:19:40 ivan
57 * Fixed SMP locking in Cyclom-Y interrupt handler.
59 * Revision 2.3.2.3 1999/12/28 12:11:39 ivan
60 * Added a new cyclades_card field called nports to allow the driver to
61 * know the exact number of ports found by the Z firmware after its load;
62 * RX buffer contention prevention logic on interrupt op mode revisited
63 * (Cyclades-Z only);
64 * Revisited printk's for Z debug;
65 * Driver now makes sure that the constant SERIAL_XMIT_SIZE is defined;
67 * Revision 2.3.2.2 1999/10/01 11:27:43 ivan
68 * Fixed bug in cyz_poll that would make all ports but port 0
69 * unable to transmit/receive data (Cyclades-Z only);
70 * Implemented logic to prevent the RX buffer from being stuck with data
71 * due to a driver / firmware race condition in interrupt op mode
72 * (Cyclades-Z only);
73 * Fixed bug in block_til_ready logic that would lead to a system crash;
74 * Revisited cy_close spinlock usage;
76 * Revision 2.3.2.1 1999/09/28 11:01:22 ivan
77 * Revisited CONFIG_PCI conditional compilation for PCI board support;
78 * Implemented TIOCGICOUNT and TIOCMIWAIT ioctl support;
79 * _Major_ cleanup on the Cyclades-Z interrupt support code / logic;
80 * Removed CTS handling from the driver -- this is now completely handled
81 * by the firmware (Cyclades-Z only);
82 * Flush RX on-board buffers on a port open (Cyclades-Z only);
83 * Fixed handling of ASYNC_SPD_* TTY flags;
84 * Module unload now unmaps all memory area allocated by ioremap;
86 * Revision 2.3.1.1 1999/07/15 16:45:53 ivan
87 * Removed CY_PROC conditional compilation;
88 * Implemented SMP-awareness for the driver;
89 * Implemented a new ISA IRQ autoprobe that uses the irq_probe_[on|off]
90 * functions;
91 * The driver now accepts memory addresses (maddr=0xMMMMM) and IRQs
92 * (irq=NN) as parameters (only for ISA boards);
93 * Fixed bug in set_line_char that would prevent the Cyclades-Z
94 * ports from being configured at speeds above 115.2Kbps;
95 * Fixed bug in cy_set_termios that would prevent XON/XOFF flow control
96 * switching from working properly;
97 * The driver now only prints IRQ info for the Cyclades-Z if it's
98 * configured to work in interrupt mode;
100 * Revision 2.2.2.3 1999/06/28 11:13:29 ivan
101 * Added support for interrupt mode operation for the Z cards;
102 * Removed the driver inactivity control for the Z;
103 * Added a missing MOD_DEC_USE_COUNT in the cy_open function for when
104 * the Z firmware is not loaded yet;
105 * Replaced the "manual" Z Tx flush buffer by a call to a FW command of
106 * same functionality;
107 * Implemented workaround for IRQ setting loss on the PCI configuration
108 * registers after a PCI bridge EEPROM reload (affects PLX9060 only);
110 * Revision 2.2.2.2 1999/05/14 17:18:15 ivan
111 * /proc entry location changed to /proc/tty/driver/cyclades;
112 * Added support to shared IRQ's (only for PCI boards);
113 * Added support for Cobalt Qube2 systems;
114 * IRQ [de]allocation scheme revisited;
115 * BREAK implementation changed in order to make use of the 'break_ctl'
116 * TTY facility;
117 * Fixed typo in TTY structure field 'driver_name';
118 * Included a PCI bridge reset and EEPROM reload in the board
119 * initialization code (for both Y and Z series).
121 * Revision 2.2.2.1 1999/04/08 16:17:43 ivan
122 * Fixed a bug in cy_wait_until_sent that was preventing the port to be
123 * closed properly after a SIGINT;
124 * Module usage counter scheme revisited;
125 * Added support to the upcoming Y PCI boards (i.e., support to additional
126 * PCI Device ID's).
128 * Revision 2.2.1.10 1999/01/20 16:14:29 ivan
129 * Removed all unnecessary page-alignement operations in ioremap calls
130 * (ioremap is currently safe for these operations).
132 * Revision 2.2.1.9 1998/12/30 18:18:30 ivan
133 * Changed access to PLX PCI bridge registers from I/O to MMIO, in
134 * order to make PLX9050-based boards work with certain motherboards.
136 * Revision 2.2.1.8 1998/11/13 12:46:20 ivan
137 * cy_close function now resets (correctly) the tty->closing flag;
138 * JIFFIES_DIFF macro fixed.
140 * Revision 2.2.1.7 1998/09/03 12:07:28 ivan
141 * Fixed bug in cy_close function, which was not informing HW of
142 * which port should have the reception disabled before doing so;
143 * fixed Cyclom-8YoP hardware detection bug.
145 * Revision 2.2.1.6 1998/08/20 17:15:39 ivan
146 * Fixed bug in cy_close function, which causes malfunction
147 * of one of the first 4 ports when a higher port is closed
148 * (Cyclom-Y only).
150 * Revision 2.2.1.5 1998/08/10 18:10:28 ivan
151 * Fixed Cyclom-4Yo hardware detection bug.
153 * Revision 2.2.1.4 1998/08/04 11:02:50 ivan
154 * /proc/cyclades implementation with great collaboration of
155 * Marc Lewis <marc@blarg.net>;
156 * cyy_interrupt was changed to avoid occurrence of kernel oopses
157 * during PPP operation.
159 * Revision 2.2.1.3 1998/06/01 12:09:10 ivan
160 * General code review in order to comply with 2.1 kernel standards;
161 * data loss prevention for slow devices revisited (cy_wait_until_sent
162 * was created);
163 * removed conditional compilation for new/old PCI structure support
164 * (now the driver only supports the new PCI structure).
166 * Revision 2.2.1.1 1998/03/19 16:43:12 ivan
167 * added conditional compilation for new/old PCI structure support;
168 * removed kernel series (2.0.x / 2.1.x) conditional compilation.
170 * Revision 2.1.1.3 1998/03/16 18:01:12 ivan
171 * cleaned up the data loss fix;
172 * fixed XON/XOFF handling once more (Cyclades-Z);
173 * general review of the driver routines;
174 * introduction of a mechanism to prevent data loss with slow
175 * printers, by forcing a delay before closing the port.
177 * Revision 2.1.1.2 1998/02/17 16:50:00 ivan
178 * fixed detection/handling of new CD1400 in Ye boards;
179 * fixed XON/XOFF handling (Cyclades-Z);
180 * fixed data loss caused by a premature port close;
181 * introduction of a flag that holds the CD1400 version ID per port
182 * (used by the CYGETCD1400VER new ioctl).
184 * Revision 2.1.1.1 1997/12/03 17:31:19 ivan
185 * Code review for the module cleanup routine;
186 * fixed RTS and DTR status report for new CD1400's in get_modem_info;
187 * includes anonymous changes regarding signal_pending.
189 * Revision 2.1 1997/11/01 17:42:41 ivan
190 * Changes in the driver to support Alpha systems (except 8Zo V_1);
191 * BREAK fix for the Cyclades-Z boards;
192 * driver inactivity control by FW implemented;
193 * introduction of flag that allows driver to take advantage of
194 * a special CD1400 feature related to HW flow control;
195 * added support for the CD1400 rev. J (Cyclom-Y boards);
196 * introduction of ioctls to:
197 * - control the rtsdtr_inv flag (Cyclom-Y);
198 * - control the rflow flag (Cyclom-Y);
199 * - adjust the polling interval (Cyclades-Z);
201 * Revision 1.36.4.33 1997/06/27 19:00:00 ivan
202 * Fixes related to kernel version conditional
203 * compilation.
205 * Revision 1.36.4.32 1997/06/14 19:30:00 ivan
206 * Compatibility issues between kernels 2.0.x and
207 * 2.1.x (mainly related to clear_bit function).
209 * Revision 1.36.4.31 1997/06/03 15:30:00 ivan
210 * Changes to define the memory window according to the
211 * board type.
213 * Revision 1.36.4.30 1997/05/16 15:30:00 daniel
214 * Changes to support new cycladesZ boards.
216 * Revision 1.36.4.29 1997/05/12 11:30:00 daniel
217 * Merge of Bentson's and Daniel's version 1.36.4.28.
218 * Corrects bug in cy_detect_pci: check if there are more
219 * ports than the number of static structs allocated.
220 * Warning message during initialization if this driver is
221 * used with the new generation of cycladesZ boards. Those
222 * will be supported only in next release of the driver.
223 * Corrects bug in cy_detect_pci and cy_detect_isa that
224 * returned wrong number of VALID boards, when a cyclomY
225 * was found with no serial modules connected.
226 * Changes to use current (2.1.x) kernel subroutine names
227 * and created macros for compilation with 2.0.x kernel,
228 * instead of the other way around.
230 * Revision 1.36.4.28 1997/05/?? ??:00:00 bentson
231 * Change queue_task_irq_off to queue_task_irq.
232 * The inline function queue_task_irq_off (tqueue.h)
233 * was removed from latest releases of 2.1.x kernel.
234 * Use of macro __init to mark the initialization
235 * routines, so memory can be reused.
236 * Also incorporate implementation of critical region
237 * in function cleanup_module() created by anonymous
238 * linuxer.
240 * Revision 1.36.4.28 1997/04/25 16:00:00 daniel
241 * Change to support new firmware that solves DCD problem:
242 * application could fail to receive SIGHUP signal when DCD
243 * varying too fast.
245 * Revision 1.36.4.27 1997/03/26 10:30:00 daniel
246 * Changed for support linux versions 2.1.X.
247 * Backward compatible with linux versions 2.0.X.
248 * Corrected illegal use of filler field in
249 * CH_CTRL struct.
250 * Deleted some debug messages.
252 * Revision 1.36.4.26 1997/02/27 12:00:00 daniel
253 * Included check for NULL tty pointer in cyz_poll.
255 * Revision 1.36.4.25 1997/02/26 16:28:30 bentson
256 * Bill Foster at Blarg! Online services noticed that
257 * some of the switch elements of -Z modem control
258 * lacked a closing "break;"
260 * Revision 1.36.4.24 1997/02/24 11:00:00 daniel
261 * Changed low water threshold for buffer xmit_buf
263 * Revision 1.36.4.23 1996/12/02 21:50:16 bentson
264 * Marcio provided fix to modem status fetch for -Z
266 * Revision 1.36.4.22 1996/10/28 22:41:17 bentson
267 * improve mapping of -Z control page (thanks to Steve
268 * Price <stevep@fa.tdktca.com> for help on this)
270 * Revision 1.36.4.21 1996/09/10 17:00:10 bentson
271 * shift from CPU-bound to memcopy in cyz_polling operation
273 * Revision 1.36.4.20 1996/09/09 18:30:32 Bentson
274 * Added support to set and report higher speeds.
276 * Revision 1.36.4.19c 1996/08/09 10:00:00 Marcio Saito
277 * Some fixes in the HW flow control for the BETA release.
278 * Don't try to register the IRQ.
280 * Revision 1.36.4.19 1996/08/08 16:23:18 Bentson
281 * make sure "cyc" appears in all kernel messages; all soft interrupts
282 * handled by same routine; recognize out-of-band reception; comment
283 * out some diagnostic messages; leave RTS/CTS flow control to hardware;
284 * fix race condition in -Z buffer management; only -Y needs to explictly
285 * flush chars; tidy up some startup messages;
287 * Revision 1.36.4.18 1996/07/25 18:57:31 bentson
288 * shift MOD_INC_USE_COUNT location to match
289 * serial.c; purge some diagnostic messages;
291 * Revision 1.36.4.17 1996/07/25 18:01:08 bentson
292 * enable modem status messages and fetch & process them; note
293 * time of last activity type for each port; set_line_char now
294 * supports more than line 0 and treats 0 baud correctly;
295 * get_modem_info senses rs_status;
297 * Revision 1.36.4.16 1996/07/20 08:43:15 bentson
298 * barely works--now's time to turn on
299 * more features 'til it breaks
301 * Revision 1.36.4.15 1996/07/19 22:30:06 bentson
302 * check more -Z board status; shorten boot message
304 * Revision 1.36.4.14 1996/07/19 22:20:37 bentson
305 * fix reference to ch_ctrl in startup; verify return
306 * values from cyz_issue_cmd and cyz_update_channel;
307 * more stuff to get modem control correct;
309 * Revision 1.36.4.13 1996/07/11 19:53:33 bentson
310 * more -Z stuff folded in; re-order changes to put -Z stuff
311 * after -Y stuff (to make changes clearer)
313 * Revision 1.36.4.12 1996/07/11 15:40:55 bentson
314 * Add code to poll Cyclades-Z. Add code to get & set RS-232 control.
315 * Add code to send break. Clear firmware ID word at startup (so
316 * that other code won't talk to inactive board).
318 * Revision 1.36.4.11 1996/07/09 05:28:29 bentson
319 * add code for -Z in set_line_char
321 * Revision 1.36.4.10 1996/07/08 19:28:37 bentson
322 * fold more -Z stuff (or in some cases, error messages)
323 * into driver; add text to "don't know what to do" messages.
325 * Revision 1.36.4.9 1996/07/08 18:38:38 bentson
326 * moved compile-time flags near top of file; cosmetic changes
327 * to narrow text (to allow 2-up printing); changed many declarations
328 * to "static" to limit external symbols; shuffled code order to
329 * coalesce -Y and -Z specific code, also to put internal functions
330 * in order of tty_driver structure; added code to recognize -Z
331 * ports (and for moment, do nothing or report error); add cy_startup
332 * to parse boot command line for extra base addresses for ISA probes;
334 * Revision 1.36.4.8 1996/06/25 17:40:19 bentson
335 * reorder some code, fix types of some vars (int vs. long),
336 * add cy_setup to support user declared ISA addresses
338 * Revision 1.36.4.7 1996/06/21 23:06:18 bentson
339 * dump ioctl based firmware load (it's now a user level
340 * program); ensure uninitialzed ports cannot be used
342 * Revision 1.36.4.6 1996/06/20 23:17:19 bentson
343 * rename vars and restructure some code
345 * Revision 1.36.4.5 1996/06/14 15:09:44 bentson
346 * get right status back after boot load
348 * Revision 1.36.4.4 1996/06/13 19:51:44 bentson
349 * successfully loads firmware
351 * Revision 1.36.4.3 1996/06/13 06:08:33 bentson
352 * add more of the code for the boot/load ioctls
354 * Revision 1.36.4.2 1996/06/11 21:00:51 bentson
355 * start to add Z functionality--starting with ioctl
356 * for loading firmware
358 * Revision 1.36.4.1 1996/06/10 18:03:02 bentson
359 * added code to recognize Z/PCI card at initialization; report
360 * presence, but card is not initialized (because firmware needs
361 * to be loaded)
363 * Revision 1.36.3.8 1996/06/07 16:29:00 bentson
364 * starting minor number at zero; added missing verify_area
365 * as noted by Heiko Eissfeldt <heiko@colossus.escape.de>
367 * Revision 1.36.3.7 1996/04/19 21:06:18 bentson
368 * remove unneeded boot message & fix CLOCAL hardware flow
369 * control (Miquel van Smoorenburg <miquels@Q.cistron.nl>);
370 * remove unused diagnostic statements; minor 0 is first;
372 * Revision 1.36.3.6 1996/03/13 13:21:17 marcio
373 * The kernel function vremap (available only in later 1.3.xx kernels)
374 * allows the access to memory addresses above the RAM. This revision
375 * of the driver supports PCI boards below 1Mb (device id 0x100) and
376 * above 1Mb (device id 0x101).
378 * Revision 1.36.3.5 1996/03/07 15:20:17 bentson
379 * Some global changes to interrupt handling spilled into
380 * this driver--mostly unused arguments in system function
381 * calls. Also added change by Marcio Saito which should
382 * reduce lost interrupts at startup by fast processors.
384 * Revision 1.36.3.4 1995/11/13 20:45:10 bentson
385 * Changes by Corey Minyard <minyard@wf-rch.cirr.com> distributed
386 * in 1.3.41 kernel to remove a possible race condition, extend
387 * some error messages, and let the driver run as a loadable module
388 * Change by Alan Wendt <alan@ez0.ezlink.com> to remove a
389 * possible race condition.
390 * Change by Marcio Saito <marcio@cyclades.com> to fix PCI addressing.
392 * Revision 1.36.3.3 1995/11/13 19:44:48 bentson
393 * Changes by Linus Torvalds in 1.3.33 kernel distribution
394 * required due to reordering of driver initialization.
395 * Drivers are now initialized *after* memory management.
397 * Revision 1.36.3.2 1995/09/08 22:07:14 bentson
398 * remove printk from ISR; fix typo
400 * Revision 1.36.3.1 1995/09/01 12:00:42 marcio
401 * Minor fixes in the PCI board support. PCI function calls in
402 * conditional compilation (CONFIG_PCI). Thanks to Jim Duncan
403 * <duncan@okay.com>. "bad serial count" message removed.
405 * Revision 1.36.3 1995/08/22 09:19:42 marcio
406 * Cyclom-Y/PCI support added. Changes in the cy_init routine and
407 * board initialization. Changes in the boot messages. The driver
408 * supports up to 4 boards and 64 ports by default.
410 * Revision 1.36.1.4 1995/03/29 06:14:14 bentson
411 * disambiguate between Cyclom-16Y and Cyclom-32Ye;
413 * Revision 1.36.1.3 1995/03/23 22:15:35 bentson
414 * add missing break in modem control block in ioctl switch statement
415 * (discovered by Michael Edward Chastain <mec@jobe.shell.portal.com>);
417 * Revision 1.36.1.2 1995/03/22 19:16:22 bentson
418 * make sure CTS flow control is set as soon as possible (thanks
419 * to note from David Lambert <lambert@chesapeake.rps.slb.com>);
421 * Revision 1.36.1.1 1995/03/13 15:44:43 bentson
422 * initialize defaults for receive threshold and stale data timeout;
423 * cosmetic changes;
425 * Revision 1.36 1995/03/10 23:33:53 bentson
426 * added support of chips 4-7 in 32 port Cyclom-Ye;
427 * fix cy_interrupt pointer dereference problem
428 * (Joe Portman <baron@aa.net>);
429 * give better error response if open is attempted on non-existent port
430 * (Zachariah Vaum <jchryslr@netcom.com>);
431 * correct command timeout (Kenneth Lerman <lerman@@seltd.newnet.com>);
432 * conditional compilation for -16Y on systems with fast, noisy bus;
433 * comment out diagnostic print function;
434 * cleaned up table of base addresses;
435 * set receiver time-out period register to correct value,
436 * set receive threshold to better default values,
437 * set chip timer to more accurate 200 Hz ticking,
438 * add code to monitor and modify receive parameters
439 * (Rik Faith <faith@cs.unc.edu> Nick Simicich
440 * <njs@scifi.emi.net>);
442 * Revision 1.35 1994/12/16 13:54:18 steffen
443 * additional patch by Marcio Saito for board detection
444 * Accidently left out in 1.34
446 * Revision 1.34 1994/12/10 12:37:12 steffen
447 * This is the corrected version as suggested by Marcio Saito
449 * Revision 1.33 1994/12/01 22:41:18 bentson
450 * add hooks to support more high speeds directly; add tytso
451 * patch regarding CLOCAL wakeups
453 * Revision 1.32 1994/11/23 19:50:04 bentson
454 * allow direct kernel control of higher signalling rates;
455 * look for cards at additional locations
457 * Revision 1.31 1994/11/16 04:33:28 bentson
458 * ANOTHER fix from Corey Minyard, minyard@wf-rch.cirr.com--
459 * a problem in chars_in_buffer has been resolved by some
460 * small changes; this should yield smoother output
462 * Revision 1.30 1994/11/16 04:28:05 bentson
463 * Fix from Corey Minyard, Internet: minyard@metronet.com,
464 * UUCP: minyard@wf-rch.cirr.com, WORK: minyardbnr.ca, to
465 * cy_hangup that appears to clear up much (all?) of the
466 * DTR glitches; also he's added/cleaned-up diagnostic messages
468 * Revision 1.29 1994/11/16 04:16:07 bentson
469 * add change proposed by Ralph Sims, ralphs@halcyon.com, to
470 * operate higher speeds in same way as other serial ports;
471 * add more serial ports (for up to two 16-port muxes).
473 * Revision 1.28 1994/11/04 00:13:16 root
474 * turn off diagnostic messages
476 * Revision 1.27 1994/11/03 23:46:37 root
477 * bunch of changes to bring driver into greater conformance
478 * with the serial.c driver (looking for missed fixes)
480 * Revision 1.26 1994/11/03 22:40:36 root
481 * automatic interrupt probing fixed.
483 * Revision 1.25 1994/11/03 20:17:02 root
484 * start to implement auto-irq
486 * Revision 1.24 1994/11/03 18:01:55 root
487 * still working on modem signals--trying not to drop DTR
488 * during the getty/login processes
490 * Revision 1.23 1994/11/03 17:51:36 root
491 * extend baud rate support; set receive threshold as function
492 * of baud rate; fix some problems with RTS/CTS;
494 * Revision 1.22 1994/11/02 18:05:35 root
495 * changed arguments to udelay to type long to get
496 * delays to be of correct duration
498 * Revision 1.21 1994/11/02 17:37:30 root
499 * employ udelay (after calibrating loops_per_second earlier
500 * in init/main.c) instead of using home-grown delay routines
502 * Revision 1.20 1994/11/02 03:11:38 root
503 * cy_chars_in_buffer forces a return value of 0 to let
504 * login work (don't know why it does); some functions
505 * that were returning EFAULT, now executes the code;
506 * more work on deciding when to disable xmit interrupts;
508 * Revision 1.19 1994/11/01 20:10:14 root
509 * define routine to start transmission interrupts (by enabling
510 * transmit interrupts); directly enable/disable modem interrupts;
512 * Revision 1.18 1994/11/01 18:40:45 bentson
513 * Don't always enable transmit interrupts in startup; interrupt on
514 * TxMpty instead of TxRdy to help characters get out before shutdown;
515 * restructure xmit interrupt to check for chars first and quit if
516 * none are ready to go; modem status (MXVRx) is upright, _not_ inverted
517 * (to my view);
519 * Revision 1.17 1994/10/30 04:39:45 bentson
520 * rename serial_driver and callout_driver to cy_serial_driver and
521 * cy_callout_driver to avoid linkage interference; initialize
522 * info->type to PORT_CIRRUS; ruggedize paranoia test; elide ->port
523 * from cyclades_port structure; add paranoia check to cy_close;
525 * Revision 1.16 1994/10/30 01:14:33 bentson
526 * change major numbers; add some _early_ return statements;
528 * Revision 1.15 1994/10/29 06:43:15 bentson
529 * final tidying up for clean compile; enable some error reporting
531 * Revision 1.14 1994/10/28 20:30:22 Bentson
532 * lots of changes to drag the driver towards the new tty_io
533 * structures and operation. not expected to work, but may
534 * compile cleanly.
536 * Revision 1.13 1994/07/21 23:08:57 Bentson
537 * add some diagnostic cruft; support 24 lines (for testing
538 * both -8Y and -16Y cards; be more thorough in servicing all
539 * chips during interrupt; add "volatile" a few places to
540 * circumvent compiler optimizations; fix base & offset
541 * computations in block_til_ready (was causing chip 0 to
542 * stop operation)
544 * Revision 1.12 1994/07/19 16:42:11 Bentson
545 * add some hackery for kernel version 1.1.8; expand
546 * error messages; refine timing for delay loops and
547 * declare loop params volatile
549 * Revision 1.11 1994/06/11 21:53:10 bentson
550 * get use of save_car right in transmit interrupt service
552 * Revision 1.10.1.1 1994/06/11 21:31:18 bentson
553 * add some diagnostic printing; try to fix save_car stuff
555 * Revision 1.10 1994/06/11 20:36:08 bentson
556 * clean up compiler warnings
558 * Revision 1.9 1994/06/11 19:42:46 bentson
559 * added a bunch of code to support modem signalling
561 * Revision 1.8 1994/06/11 17:57:07 bentson
562 * recognize break & parity error
564 * Revision 1.7 1994/06/05 05:51:34 bentson
565 * Reorder baud table to be monotonic; add cli to CP; discard
566 * incoming characters and status if the line isn't open; start to
567 * fold code into cy_throttle; start to port get_serial_info,
568 * set_serial_info, get_modem_info, set_modem_info, and send_break
569 * from serial.c; expand cy_ioctl; relocate and expand config_setup;
570 * get flow control characters from tty struct; invalidate ports w/o
571 * hardware;
573 * Revision 1.6 1994/05/31 18:42:21 bentson
574 * add a loop-breaker in the interrupt service routine;
575 * note when port is initialized so that it can be shut
576 * down under the right conditions; receive works without
577 * any obvious errors
579 * Revision 1.5 1994/05/30 00:55:02 bentson
580 * transmit works without obvious errors
582 * Revision 1.4 1994/05/27 18:46:27 bentson
583 * incorporated more code from lib_y.c; can now print short
584 * strings under interrupt control to port zero; seems to
585 * select ports/channels/lines correctly
587 * Revision 1.3 1994/05/25 22:12:44 bentson
588 * shifting from multi-port on a card to proper multiplexor
589 * data structures; added skeletons of most routines
591 * Revision 1.2 1994/05/19 13:21:43 bentson
592 * start to crib from other sources
596 /* If you need to install more boards than NR_CARDS, change the constant
597 in the definition below. No other change is necessary to support up to
598 eight boards. Beyond that you'll have to extend cy_isa_addresses. */
600 #define NR_CARDS 4
603 If the total number of ports is larger than NR_PORTS, change this
604 constant in the definition below. No other change is necessary to
605 support more boards/ports. */
607 #define NR_PORTS 256
609 #define ZE_V1_NPORTS 64
610 #define ZO_V1 0
611 #define ZO_V2 1
612 #define ZE_V1 2
614 #define SERIAL_PARANOIA_CHECK
615 #undef CY_DEBUG_OPEN
616 #undef CY_DEBUG_THROTTLE
617 #undef CY_DEBUG_OTHER
618 #undef CY_DEBUG_IO
619 #undef CY_DEBUG_COUNT
620 #undef CY_DEBUG_DTR
621 #undef CY_DEBUG_WAIT_UNTIL_SENT
622 #undef CY_DEBUG_INTERRUPTS
623 #undef CY_16Y_HACK
624 #undef CY_ENABLE_MONITORING
625 #undef CY_PCI_DEBUG
627 #if 0
628 #define PAUSE __asm__("nop");
629 #else
630 #define PAUSE ;
631 #endif
634 * Include section
636 #include <linux/config.h>
637 #include <linux/module.h>
638 #include <linux/errno.h>
639 #include <linux/signal.h>
640 #include <linux/sched.h>
641 #include <linux/timer.h>
642 #include <linux/interrupt.h>
643 #include <linux/tty.h>
644 #include <linux/serial.h>
645 #include <linux/major.h>
646 #include <linux/string.h>
647 #include <linux/fcntl.h>
648 #include <linux/ptrace.h>
649 #include <linux/cyclades.h>
650 #include <linux/mm.h>
651 #include <linux/ioport.h>
652 #include <linux/init.h>
653 #include <linux/delay.h>
654 #include <linux/spinlock.h>
656 #include <asm/system.h>
657 #include <asm/io.h>
658 #include <asm/irq.h>
659 #include <asm/uaccess.h>
660 #include <asm/bitops.h>
662 #define CY_LOCK(info,flags) \
663 do { \
664 spin_lock_irqsave(&cy_card[info->card].card_lock, flags); \
665 } while (0)
667 #define CY_UNLOCK(info,flags) \
668 do { \
669 spin_unlock_irqrestore(&cy_card[info->card].card_lock, flags); \
670 } while (0)
672 #include <linux/types.h>
673 #include <linux/kernel.h>
674 #include <linux/pci.h>
676 #include <linux/stat.h>
677 #include <linux/proc_fs.h>
679 static void cy_throttle (struct tty_struct *tty);
680 static void cy_send_xchar (struct tty_struct *tty, char ch);
682 #define IS_CYC_Z(card) ((card).num_chips == -1)
684 #define Z_FPGA_CHECK(card) \
685 ((cy_readl(&((struct RUNTIME_9060 __iomem *) \
686 ((card).ctl_addr))->init_ctrl) & (1<<17)) != 0)
688 #define ISZLOADED(card) (((ZO_V1==cy_readl(&((struct RUNTIME_9060 __iomem *) \
689 ((card).ctl_addr))->mail_box_0)) || \
690 Z_FPGA_CHECK(card)) && \
691 (ZFIRM_ID==cy_readl(&((struct FIRM_ID __iomem *) \
692 ((card).base_addr+ID_ADDRESS))->signature)))
694 #ifndef SERIAL_XMIT_SIZE
695 #define SERIAL_XMIT_SIZE (min(PAGE_SIZE, 4096))
696 #endif
697 #define WAKEUP_CHARS 256
699 #define STD_COM_FLAGS (0)
701 #define JIFFIES_DIFF(n, j) ((j) - (n))
703 static struct tty_driver *cy_serial_driver;
705 #ifdef CONFIG_ISA
706 /* This is the address lookup table. The driver will probe for
707 Cyclom-Y/ISA boards at all addresses in here. If you want the
708 driver to probe addresses at a different address, add it to
709 this table. If the driver is probing some other board and
710 causing problems, remove the offending address from this table.
711 The cy_setup function extracts additional addresses from the
712 boot options line. The form is "cyclades=address,address..."
715 static unsigned int cy_isa_addresses[] = {
716 0xD0000,
717 0xD2000,
718 0xD4000,
719 0xD6000,
720 0xD8000,
721 0xDA000,
722 0xDC000,
723 0xDE000,
724 0,0,0,0,0,0,0,0
726 #define NR_ISA_ADDRS (sizeof(cy_isa_addresses)/sizeof(unsigned char*))
728 #ifdef MODULE
729 static long maddr[NR_CARDS] = { 0, };
730 static int irq[NR_CARDS] = { 0, };
732 MODULE_PARM(maddr, "1-" __MODULE_STRING(NR_CARDS) "l");
733 MODULE_PARM(irq, "1-" __MODULE_STRING(NR_CARDS) "i");
734 #endif
736 #endif /* CONFIG_ISA */
738 /* This is the per-card data structure containing address, irq, number of
739 channels, etc. This driver supports a maximum of NR_CARDS cards.
741 static struct cyclades_card cy_card[NR_CARDS];
743 /* This is the per-channel data structure containing pointers, flags
744 and variables for the port. This driver supports a maximum of NR_PORTS.
746 static struct cyclades_port cy_port[NR_PORTS];
748 static int cy_next_channel; /* next minor available */
751 * tmp_buf is used as a temporary buffer by serial_write. We need to
752 * lock it in case the copy_from_user blocks while swapping in a page,
753 * and some other program tries to do a serial write at the same time.
754 * Since the lock will only come under contention when the system is
755 * swapping and available memory is low, it makes sense to share one
756 * buffer across all the serial ports, since it significantly saves
757 * memory if large numbers of serial ports are open. This buffer is
758 * allocated when the first cy_open occurs.
760 static unsigned char *tmp_buf;
761 DECLARE_MUTEX(tmp_buf_sem);
764 * This is used to look up the divisor speeds and the timeouts
765 * We're normally limited to 15 distinct baud rates. The extra
766 * are accessed via settings in info->flags.
767 * 0, 1, 2, 3, 4, 5, 6, 7, 8, 9,
768 * 10, 11, 12, 13, 14, 15, 16, 17, 18, 19,
769 * HI VHI
770 * 20
772 static int baud_table[] = {
773 0, 50, 75, 110, 134, 150, 200, 300, 600, 1200,
774 1800, 2400, 4800, 9600, 19200, 38400, 57600, 76800,115200,150000,
775 230400, 0};
777 static char baud_co_25[] = { /* 25 MHz clock option table */
778 /* value => 00 01 02 03 04 */
779 /* divide by 8 32 128 512 2048 */
780 0x00, 0x04, 0x04, 0x04, 0x04, 0x04, 0x03, 0x03, 0x03, 0x02,
781 0x02, 0x02, 0x01, 0x01, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00};
783 static char baud_bpr_25[] = { /* 25 MHz baud rate period table */
784 0x00, 0xf5, 0xa3, 0x6f, 0x5c, 0x51, 0xf5, 0xa3, 0x51, 0xa3,
785 0x6d, 0x51, 0xa3, 0x51, 0xa3, 0x51, 0x36, 0x29, 0x1b, 0x15};
787 static char baud_co_60[] = { /* 60 MHz clock option table (CD1400 J) */
788 /* value => 00 01 02 03 04 */
789 /* divide by 8 32 128 512 2048 */
790 0x00, 0x00, 0x00, 0x04, 0x04, 0x04, 0x04, 0x04, 0x03, 0x03,
791 0x03, 0x02, 0x02, 0x01, 0x01, 0x00, 0x00, 0x00, 0x00, 0x00,
792 0x00};
794 static char baud_bpr_60[] = { /* 60 MHz baud rate period table (CD1400 J) */
795 0x00, 0x82, 0x21, 0xff, 0xdb, 0xc3, 0x92, 0x62, 0xc3, 0x62,
796 0x41, 0xc3, 0x62, 0xc3, 0x62, 0xc3, 0x82, 0x62, 0x41, 0x32,
797 0x21};
799 static char baud_cor3[] = { /* receive threshold */
800 0x0a, 0x0a, 0x0a, 0x0a, 0x0a, 0x0a, 0x0a, 0x0a, 0x0a, 0x0a,
801 0x0a, 0x0a, 0x0a, 0x09, 0x09, 0x08, 0x08, 0x08, 0x08, 0x07,
802 0x07};
805 * The Cyclades driver implements HW flow control as any serial driver.
806 * The cyclades_port structure member rflow and the vector rflow_thr
807 * allows us to take advantage of a special feature in the CD1400 to avoid
808 * data loss even when the system interrupt latency is too high. These flags
809 * are to be used only with very special applications. Setting these flags
810 * requires the use of a special cable (DTR and RTS reversed). In the new
811 * CD1400-based boards (rev. 6.00 or later), there is no need for special
812 * cables.
815 static char rflow_thr[] = { /* rflow threshold */
816 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
817 0x00, 0x00, 0x00, 0x0a, 0x0a, 0x0a, 0x0a, 0x0a, 0x0a, 0x0a,
818 0x0a};
820 /* The Cyclom-Ye has placed the sequential chips in non-sequential
821 * address order. This look-up table overcomes that problem.
823 static int cy_chip_offset [] =
824 { 0x0000,
825 0x0400,
826 0x0800,
827 0x0C00,
828 0x0200,
829 0x0600,
830 0x0A00,
831 0x0E00
834 /* PCI related definitions */
836 static unsigned short cy_pci_nboard;
837 static unsigned short cy_isa_nboard;
838 static unsigned short cy_nboard;
839 #ifdef CONFIG_PCI
840 static unsigned short cy_pci_dev_id[] = {
841 PCI_DEVICE_ID_CYCLOM_Y_Lo, /* PCI < 1Mb */
842 PCI_DEVICE_ID_CYCLOM_Y_Hi, /* PCI > 1Mb */
843 PCI_DEVICE_ID_CYCLOM_4Y_Lo, /* 4Y PCI < 1Mb */
844 PCI_DEVICE_ID_CYCLOM_4Y_Hi, /* 4Y PCI > 1Mb */
845 PCI_DEVICE_ID_CYCLOM_8Y_Lo, /* 8Y PCI < 1Mb */
846 PCI_DEVICE_ID_CYCLOM_8Y_Hi, /* 8Y PCI > 1Mb */
847 PCI_DEVICE_ID_CYCLOM_Z_Lo, /* Z PCI < 1Mb */
848 PCI_DEVICE_ID_CYCLOM_Z_Hi, /* Z PCI > 1Mb */
849 0 /* end of table */
851 #endif
853 static void cy_start(struct tty_struct *);
854 static void set_line_char(struct cyclades_port *);
855 static int cyz_issue_cmd(struct cyclades_card *, uclong, ucchar, uclong);
856 #ifdef CONFIG_ISA
857 static unsigned detect_isa_irq(void __iomem *);
858 #endif /* CONFIG_ISA */
860 static int cyclades_get_proc_info(char *, char **, off_t , int , int *, void *);
862 #ifndef CONFIG_CYZ_INTR
863 static void cyz_poll(unsigned long);
865 /* The Cyclades-Z polling cycle is defined by this variable */
866 static long cyz_polling_cycle = CZ_DEF_POLL;
868 static int cyz_timeron = 0;
869 static struct timer_list cyz_timerlist = TIMER_INITIALIZER(cyz_poll, 0, 0);
871 #else /* CONFIG_CYZ_INTR */
872 static void cyz_rx_restart(unsigned long);
873 static struct timer_list cyz_rx_full_timer[NR_PORTS];
874 #endif /* CONFIG_CYZ_INTR */
876 static inline int
877 serial_paranoia_check(struct cyclades_port *info,
878 char *name, const char *routine)
880 #ifdef SERIAL_PARANOIA_CHECK
881 static const char *badmagic =
882 "cyc Warning: bad magic number for serial struct (%s) in %s\n";
883 static const char *badinfo =
884 "cyc Warning: null cyclades_port for (%s) in %s\n";
885 static const char *badrange =
886 "cyc Warning: cyclades_port out of range for (%s) in %s\n";
888 if (!info) {
889 printk(badinfo, name, routine);
890 return 1;
893 if( (long)info < (long)(&cy_port[0])
894 || (long)(&cy_port[NR_PORTS]) < (long)info ){
895 printk(badrange, name, routine);
896 return 1;
899 if (info->magic != CYCLADES_MAGIC) {
900 printk(badmagic, name, routine);
901 return 1;
903 #endif
904 return 0;
905 } /* serial_paranoia_check */
908 * This routine is used by the interrupt handler to schedule
909 * processing in the software interrupt portion of the driver
910 * (also known as the "bottom half"). This can be called any
911 * number of times for any channel without harm.
913 static inline void
914 cy_sched_event(struct cyclades_port *info, int event)
916 info->event |= 1 << event; /* remember what kind of event and who */
917 schedule_work(&info->tqueue);
918 } /* cy_sched_event */
922 * This routine is used to handle the "bottom half" processing for the
923 * serial driver, known also the "software interrupt" processing.
924 * This processing is done at the kernel interrupt level, after the
925 * cy#/_interrupt() has returned, BUT WITH INTERRUPTS TURNED ON. This
926 * is where time-consuming activities which can not be done in the
927 * interrupt driver proper are done; the interrupt driver schedules
928 * them using cy_sched_event(), and they get done here.
930 * This is done through one level of indirection--the task queue.
931 * When a hardware interrupt service routine wants service by the
932 * driver's bottom half, it enqueues the appropriate tq_struct (one
933 * per port) to the keventd work queue and sets a request flag
934 * that the work queue be processed.
936 * Although this may seem unwieldy, it gives the system a way to
937 * pass an argument (in this case the pointer to the cyclades_port
938 * structure) to the bottom half of the driver. Previous kernels
939 * had to poll every port to see if that port needed servicing.
941 static void
942 do_softint(void *private_)
944 struct cyclades_port *info = (struct cyclades_port *) private_;
945 struct tty_struct *tty;
947 tty = info->tty;
948 if (!tty)
949 return;
951 if (test_and_clear_bit(Cy_EVENT_HANGUP, &info->event)) {
952 tty_hangup(info->tty);
953 wake_up_interruptible(&info->open_wait);
954 info->flags &= ~ASYNC_NORMAL_ACTIVE;
956 if (test_and_clear_bit(Cy_EVENT_OPEN_WAKEUP, &info->event)) {
957 wake_up_interruptible(&info->open_wait);
959 #ifdef CONFIG_CYZ_INTR
960 if (test_and_clear_bit(Cy_EVENT_Z_RX_FULL, &info->event)) {
961 if (cyz_rx_full_timer[info->line].function == NULL) {
962 cyz_rx_full_timer[info->line].expires = jiffies + 1;
963 cyz_rx_full_timer[info->line].function = cyz_rx_restart;
964 cyz_rx_full_timer[info->line].data = (unsigned long)info;
965 add_timer(&cyz_rx_full_timer[info->line]);
968 #endif
969 if (test_and_clear_bit(Cy_EVENT_DELTA_WAKEUP, &info->event)) {
970 wake_up_interruptible(&info->delta_msr_wait);
972 if (test_and_clear_bit(Cy_EVENT_WRITE_WAKEUP, &info->event)) {
973 tty_wakeup(tty);
974 wake_up_interruptible(&tty->write_wait);
976 #ifdef Z_WAKE
977 if (test_and_clear_bit(Cy_EVENT_SHUTDOWN_WAKEUP, &info->event)) {
978 wake_up_interruptible(&info->shutdown_wait);
980 #endif
981 } /* do_softint */
984 /***********************************************************/
985 /********* Start of block of Cyclom-Y specific code ********/
987 /* This routine waits up to 1000 micro-seconds for the previous
988 command to the Cirrus chip to complete and then issues the
989 new command. An error is returned if the previous command
990 didn't finish within the time limit.
992 This function is only called from inside spinlock-protected code.
994 static int
995 cyy_issue_cmd(void __iomem *base_addr, u_char cmd, int index)
997 volatile int i;
999 /* Check to see that the previous command has completed */
1000 for(i = 0 ; i < 100 ; i++){
1001 if (cy_readb(base_addr+(CyCCR<<index)) == 0){
1002 break;
1004 udelay(10L);
1006 /* if the CCR never cleared, the previous command
1007 didn't finish within the "reasonable time" */
1008 if (i == 100) return (-1);
1010 /* Issue the new command */
1011 cy_writeb(base_addr+(CyCCR<<index), cmd);
1013 return(0);
1014 } /* cyy_issue_cmd */
1016 #ifdef CONFIG_ISA
1017 /* ISA interrupt detection code */
1018 static unsigned
1019 detect_isa_irq(void __iomem *address)
1021 int irq;
1022 unsigned long irqs, flags;
1023 int save_xir, save_car;
1024 int index = 0; /* IRQ probing is only for ISA */
1026 /* forget possible initially masked and pending IRQ */
1027 irq = probe_irq_off(probe_irq_on());
1029 /* Clear interrupts on the board first */
1030 cy_writeb(address + (Cy_ClrIntr<<index), 0);
1031 /* Cy_ClrIntr is 0x1800 */
1033 irqs = probe_irq_on();
1034 /* Wait ... */
1035 udelay(5000L);
1037 /* Enable the Tx interrupts on the CD1400 */
1038 local_irq_save(flags);
1039 cy_writeb(address + (CyCAR<<index), 0);
1040 cyy_issue_cmd(address, CyCHAN_CTL|CyENB_XMTR, index);
1042 cy_writeb(address + (CyCAR<<index), 0);
1043 cy_writeb(address + (CySRER<<index),
1044 cy_readb(address + (CySRER<<index)) | CyTxRdy);
1045 local_irq_restore(flags);
1047 /* Wait ... */
1048 udelay(5000L);
1050 /* Check which interrupt is in use */
1051 irq = probe_irq_off(irqs);
1053 /* Clean up */
1054 save_xir = (u_char) cy_readb(address + (CyTIR<<index));
1055 save_car = cy_readb(address + (CyCAR<<index));
1056 cy_writeb(address + (CyCAR<<index), (save_xir & 0x3));
1057 cy_writeb(address + (CySRER<<index),
1058 cy_readb(address + (CySRER<<index)) & ~CyTxRdy);
1059 cy_writeb(address + (CyTIR<<index), (save_xir & 0x3f));
1060 cy_writeb(address + (CyCAR<<index), (save_car));
1061 cy_writeb(address + (Cy_ClrIntr<<index), 0);
1062 /* Cy_ClrIntr is 0x1800 */
1064 return (irq > 0)? irq : 0;
1066 #endif /* CONFIG_ISA */
1068 /* The real interrupt service routine is called
1069 whenever the card wants its hand held--chars
1070 received, out buffer empty, modem change, etc.
1072 static irqreturn_t
1073 cyy_interrupt(int irq, void *dev_id, struct pt_regs *regs)
1075 struct tty_struct *tty;
1076 int status;
1077 struct cyclades_card *cinfo;
1078 struct cyclades_port *info;
1079 void __iomem *base_addr, *card_base_addr;
1080 int chip;
1081 int save_xir, channel, save_car;
1082 char data;
1083 volatile int char_count;
1084 int outch;
1085 int i,j,index;
1086 int too_many;
1087 int had_work;
1088 int mdm_change;
1089 int mdm_status;
1091 if((cinfo = (struct cyclades_card *)dev_id) == 0){
1092 #ifdef CY_DEBUG_INTERRUPTS
1093 printk("cyy_interrupt: spurious interrupt %d\n\r", irq);
1094 #endif
1095 return IRQ_NONE; /* spurious interrupt */
1098 card_base_addr = cinfo->base_addr;
1099 index = cinfo->bus_index;
1102 /* This loop checks all chips in the card. Make a note whenever
1103 _any_ chip had some work to do, as this is considered an
1104 indication that there will be more to do. Only when no chip
1105 has any work does this outermost loop exit.
1108 had_work = 0;
1109 for ( chip = 0 ; chip < cinfo->num_chips ; chip ++) {
1110 base_addr = cinfo->base_addr + (cy_chip_offset[chip]<<index);
1111 too_many = 0;
1112 while ( (status = cy_readb(base_addr+(CySVRR<<index))) != 0x00) {
1113 had_work++;
1114 /* The purpose of the following test is to ensure that
1115 no chip can monopolize the driver. This forces the
1116 chips to be checked in a round-robin fashion (after
1117 draining each of a bunch (1000) of characters).
1119 if(1000<too_many++){
1120 break;
1122 if (status & CySRReceive) { /* reception interrupt */
1123 #ifdef CY_DEBUG_INTERRUPTS
1124 printk("cyy_interrupt: rcvd intr, chip %d\n\r", chip);
1125 #endif
1126 /* determine the channel & change to that context */
1127 spin_lock(&cinfo->card_lock);
1128 save_xir = (u_char) cy_readb(base_addr+(CyRIR<<index));
1129 channel = (u_short ) (save_xir & CyIRChannel);
1130 i = channel + chip * 4 + cinfo->first_line;
1131 info = &cy_port[i];
1132 info->last_active = jiffies;
1133 save_car = cy_readb(base_addr+(CyCAR<<index));
1134 cy_writeb(base_addr+(CyCAR<<index), save_xir);
1136 /* if there is nowhere to put the data, discard it */
1137 if(info->tty == 0){
1138 j = (cy_readb(base_addr+(CyRIVR<<index)) & CyIVRMask);
1139 if ( j == CyIVRRxEx ) { /* exception */
1140 data = cy_readb(base_addr+(CyRDSR<<index));
1141 } else { /* normal character reception */
1142 char_count = cy_readb(base_addr+(CyRDCR<<index));
1143 while(char_count--){
1144 data = cy_readb(base_addr+(CyRDSR<<index));
1147 }else{ /* there is an open port for this data */
1148 tty = info->tty;
1149 j = (cy_readb(base_addr+(CyRIVR<<index)) & CyIVRMask);
1150 if ( j == CyIVRRxEx ) { /* exception */
1151 data = cy_readb(base_addr+(CyRDSR<<index));
1153 /* For statistics only */
1154 if (data & CyBREAK)
1155 info->icount.brk++;
1156 else if(data & CyFRAME)
1157 info->icount.frame++;
1158 else if(data & CyPARITY)
1159 info->icount.parity++;
1160 else if(data & CyOVERRUN)
1161 info->icount.overrun++;
1163 if(data & info->ignore_status_mask){
1164 info->icount.rx++;
1165 continue;
1167 if (tty->flip.count < TTY_FLIPBUF_SIZE){
1168 tty->flip.count++;
1169 if (data & info->read_status_mask){
1170 if(data & CyBREAK){
1171 *tty->flip.flag_buf_ptr++ =
1172 TTY_BREAK;
1173 *tty->flip.char_buf_ptr++ =
1174 cy_readb(base_addr+(CyRDSR<<index));
1175 info->icount.rx++;
1176 if (info->flags & ASYNC_SAK){
1177 do_SAK(tty);
1179 }else if(data & CyFRAME){
1180 *tty->flip.flag_buf_ptr++ =
1181 TTY_FRAME;
1182 *tty->flip.char_buf_ptr++ =
1183 cy_readb(base_addr+(CyRDSR<<index));
1184 info->icount.rx++;
1185 info->idle_stats.frame_errs++;
1186 }else if(data & CyPARITY){
1187 *tty->flip.flag_buf_ptr++ =
1188 TTY_PARITY;
1189 *tty->flip.char_buf_ptr++ =
1190 cy_readb(base_addr+(CyRDSR<<index));
1191 info->icount.rx++;
1192 info->idle_stats.parity_errs++;
1193 }else if(data & CyOVERRUN){
1194 *tty->flip.flag_buf_ptr++ =
1195 TTY_OVERRUN;
1196 *tty->flip.char_buf_ptr++ = 0;
1197 info->icount.rx++;
1198 /* If the flip buffer itself is
1199 overflowing, we still lose
1200 the next incoming character.
1202 if(tty->flip.count
1203 < TTY_FLIPBUF_SIZE){
1204 tty->flip.count++;
1205 *tty->flip.flag_buf_ptr++ =
1206 TTY_NORMAL;
1207 *tty->flip.char_buf_ptr++ =
1208 cy_readb(base_addr+(CyRDSR<<index));
1209 info->icount.rx++;
1211 info->idle_stats.overruns++;
1212 /* These two conditions may imply */
1213 /* a normal read should be done. */
1214 /* }else if(data & CyTIMEOUT){ */
1215 /* }else if(data & CySPECHAR){ */
1216 }else{
1217 *tty->flip.flag_buf_ptr++ = 0;
1218 *tty->flip.char_buf_ptr++ = 0;
1219 info->icount.rx++;
1221 }else{
1222 *tty->flip.flag_buf_ptr++ = 0;
1223 *tty->flip.char_buf_ptr++ = 0;
1224 info->icount.rx++;
1226 }else{
1227 /* there was a software buffer
1228 overrun and nothing could be
1229 done about it!!! */
1230 info->icount.buf_overrun++;
1231 info->idle_stats.overruns++;
1233 } else { /* normal character reception */
1234 /* load # chars available from the chip */
1235 char_count = cy_readb(base_addr+(CyRDCR<<index));
1237 #ifdef CY_ENABLE_MONITORING
1238 ++info->mon.int_count;
1239 info->mon.char_count += char_count;
1240 if (char_count > info->mon.char_max)
1241 info->mon.char_max = char_count;
1242 info->mon.char_last = char_count;
1243 #endif
1244 while(char_count--){
1245 if (tty->flip.count >= TTY_FLIPBUF_SIZE){
1246 break;
1248 tty->flip.count++;
1249 data = cy_readb(base_addr+(CyRDSR<<index));
1250 *tty->flip.flag_buf_ptr++ = TTY_NORMAL;
1251 *tty->flip.char_buf_ptr++ = data;
1252 info->idle_stats.recv_bytes++;
1253 info->icount.rx++;
1254 #ifdef CY_16Y_HACK
1255 udelay(10L);
1256 #endif
1258 info->idle_stats.recv_idle = jiffies;
1260 schedule_delayed_work(&tty->flip.work, 1);
1262 /* end of service */
1263 cy_writeb(base_addr+(CyRIR<<index), (save_xir & 0x3f));
1264 cy_writeb(base_addr+(CyCAR<<index), (save_car));
1265 spin_unlock(&cinfo->card_lock);
1269 if (status & CySRTransmit) { /* transmission interrupt */
1270 /* Since we only get here when the transmit buffer
1271 is empty, we know we can always stuff a dozen
1272 characters. */
1273 #ifdef CY_DEBUG_INTERRUPTS
1274 printk("cyy_interrupt: xmit intr, chip %d\n\r", chip);
1275 #endif
1277 /* determine the channel & change to that context */
1278 spin_lock(&cinfo->card_lock);
1279 save_xir = (u_char) cy_readb(base_addr+(CyTIR<<index));
1280 channel = (u_short ) (save_xir & CyIRChannel);
1281 i = channel + chip * 4 + cinfo->first_line;
1282 save_car = cy_readb(base_addr+(CyCAR<<index));
1283 cy_writeb(base_addr+(CyCAR<<index), save_xir);
1285 /* validate the port# (as configured and open) */
1286 if( (i < 0) || (NR_PORTS <= i) ){
1287 cy_writeb(base_addr+(CySRER<<index),
1288 cy_readb(base_addr+(CySRER<<index)) & ~CyTxRdy);
1289 goto txend;
1291 info = &cy_port[i];
1292 info->last_active = jiffies;
1293 if(info->tty == 0){
1294 cy_writeb(base_addr+(CySRER<<index),
1295 cy_readb(base_addr+(CySRER<<index)) & ~CyTxRdy);
1296 goto txdone;
1299 /* load the on-chip space for outbound data */
1300 char_count = info->xmit_fifo_size;
1302 if(info->x_char) { /* send special char */
1303 outch = info->x_char;
1304 cy_writeb(base_addr+(CyTDR<<index), outch);
1305 char_count--;
1306 info->icount.tx++;
1307 info->x_char = 0;
1310 if (info->breakon || info->breakoff) {
1311 if (info->breakon) {
1312 cy_writeb(base_addr + (CyTDR<<index), 0);
1313 cy_writeb(base_addr + (CyTDR<<index), 0x81);
1314 info->breakon = 0;
1315 char_count -= 2;
1317 if (info->breakoff) {
1318 cy_writeb(base_addr + (CyTDR<<index), 0);
1319 cy_writeb(base_addr + (CyTDR<<index), 0x83);
1320 info->breakoff = 0;
1321 char_count -= 2;
1325 while (char_count-- > 0){
1326 if (!info->xmit_cnt){
1327 if (cy_readb(base_addr+(CySRER<<index))&CyTxMpty) {
1328 cy_writeb(base_addr+(CySRER<<index),
1329 cy_readb(base_addr+(CySRER<<index)) &
1330 ~CyTxMpty);
1331 } else {
1332 cy_writeb(base_addr+(CySRER<<index),
1333 ((cy_readb(base_addr+(CySRER<<index))
1334 & ~CyTxRdy)
1335 | CyTxMpty));
1337 goto txdone;
1339 if (info->xmit_buf == 0){
1340 cy_writeb(base_addr+(CySRER<<index),
1341 cy_readb(base_addr+(CySRER<<index)) &
1342 ~CyTxRdy);
1343 goto txdone;
1345 if (info->tty->stopped || info->tty->hw_stopped){
1346 cy_writeb(base_addr+(CySRER<<index),
1347 cy_readb(base_addr+(CySRER<<index)) &
1348 ~CyTxRdy);
1349 goto txdone;
1351 /* Because the Embedded Transmit Commands have
1352 been enabled, we must check to see if the
1353 escape character, NULL, is being sent. If it
1354 is, we must ensure that there is room for it
1355 to be doubled in the output stream. Therefore
1356 we no longer advance the pointer when the
1357 character is fetched, but rather wait until
1358 after the check for a NULL output character.
1359 This is necessary because there may not be
1360 room for the two chars needed to send a NULL.)
1362 outch = info->xmit_buf[info->xmit_tail];
1363 if( outch ){
1364 info->xmit_cnt--;
1365 info->xmit_tail = (info->xmit_tail + 1)
1366 & (SERIAL_XMIT_SIZE - 1);
1367 cy_writeb(base_addr+(CyTDR<<index), outch);
1368 info->icount.tx++;
1369 }else{
1370 if(char_count > 1){
1371 info->xmit_cnt--;
1372 info->xmit_tail = (info->xmit_tail + 1)
1373 & (SERIAL_XMIT_SIZE - 1);
1374 cy_writeb(base_addr+(CyTDR<<index),
1375 outch);
1376 cy_writeb(base_addr+(CyTDR<<index), 0);
1377 info->icount.tx++;
1378 char_count--;
1379 }else{
1384 txdone:
1385 if (info->xmit_cnt < WAKEUP_CHARS) {
1386 cy_sched_event(info, Cy_EVENT_WRITE_WAKEUP);
1388 txend:
1389 /* end of service */
1390 cy_writeb(base_addr+(CyTIR<<index),
1391 (save_xir & 0x3f));
1392 cy_writeb(base_addr+(CyCAR<<index), (save_car));
1393 spin_unlock(&cinfo->card_lock);
1396 if (status & CySRModem) { /* modem interrupt */
1398 /* determine the channel & change to that context */
1399 spin_lock(&cinfo->card_lock);
1400 save_xir = (u_char) cy_readb(base_addr+(CyMIR<<index));
1401 channel = (u_short ) (save_xir & CyIRChannel);
1402 info = &cy_port[channel + chip * 4
1403 + cinfo->first_line];
1404 info->last_active = jiffies;
1405 save_car = cy_readb(base_addr+(CyCAR<<index));
1406 cy_writeb(base_addr+(CyCAR<<index), save_xir);
1408 mdm_change = cy_readb(base_addr+(CyMISR<<index));
1409 mdm_status = cy_readb(base_addr+(CyMSVR1<<index));
1411 if(info->tty == 0){/* no place for data, ignore it*/
1413 }else{
1414 if (mdm_change & CyANY_DELTA) {
1415 /* For statistics only */
1416 if (mdm_change & CyDCD) info->icount.dcd++;
1417 if (mdm_change & CyCTS) info->icount.cts++;
1418 if (mdm_change & CyDSR) info->icount.dsr++;
1419 if (mdm_change & CyRI) info->icount.rng++;
1421 cy_sched_event(info, Cy_EVENT_DELTA_WAKEUP);
1424 if((mdm_change & CyDCD)
1425 && (info->flags & ASYNC_CHECK_CD)){
1426 if(mdm_status & CyDCD){
1427 cy_sched_event(info,
1428 Cy_EVENT_OPEN_WAKEUP);
1429 }else{
1430 cy_sched_event(info,
1431 Cy_EVENT_HANGUP);
1434 if((mdm_change & CyCTS)
1435 && (info->flags & ASYNC_CTS_FLOW)){
1436 if(info->tty->hw_stopped){
1437 if(mdm_status & CyCTS){
1438 /* cy_start isn't used
1439 because... !!! */
1440 info->tty->hw_stopped = 0;
1441 cy_writeb(base_addr+(CySRER<<index),
1442 cy_readb(base_addr+(CySRER<<index)) |
1443 CyTxRdy);
1444 cy_sched_event(info,
1445 Cy_EVENT_WRITE_WAKEUP);
1447 }else{
1448 if(!(mdm_status & CyCTS)){
1449 /* cy_stop isn't used
1450 because ... !!! */
1451 info->tty->hw_stopped = 1;
1452 cy_writeb(base_addr+(CySRER<<index),
1453 cy_readb(base_addr+(CySRER<<index)) &
1454 ~CyTxRdy);
1458 if(mdm_change & CyDSR){
1460 if(mdm_change & CyRI){
1463 /* end of service */
1464 cy_writeb(base_addr+(CyMIR<<index),
1465 (save_xir & 0x3f));
1466 cy_writeb(base_addr+(CyCAR<<index), save_car);
1467 spin_unlock(&cinfo->card_lock);
1469 } /* end while status != 0 */
1470 } /* end loop for chips... */
1471 } while(had_work);
1473 /* clear interrupts */
1474 spin_lock(&cinfo->card_lock);
1475 cy_writeb(card_base_addr + (Cy_ClrIntr<<index), 0);
1476 /* Cy_ClrIntr is 0x1800 */
1477 spin_unlock(&cinfo->card_lock);
1478 return IRQ_HANDLED;
1479 } /* cyy_interrupt */
1481 /***********************************************************/
1482 /********* End of block of Cyclom-Y specific code **********/
1483 /******** Start of block of Cyclades-Z specific code *********/
1484 /***********************************************************/
1486 static int
1487 cyz_fetch_msg( struct cyclades_card *cinfo,
1488 uclong *channel, ucchar *cmd, uclong *param)
1490 struct FIRM_ID __iomem *firm_id;
1491 struct ZFW_CTRL __iomem *zfw_ctrl;
1492 struct BOARD_CTRL __iomem *board_ctrl;
1493 unsigned long loc_doorbell;
1495 firm_id = cinfo->base_addr + ID_ADDRESS;
1496 if (!ISZLOADED(*cinfo)){
1497 return (-1);
1499 zfw_ctrl = cinfo->base_addr + (cy_readl(&firm_id->zfwctrl_addr) & 0xfffff);
1500 board_ctrl = &zfw_ctrl->board_ctrl;
1502 loc_doorbell = cy_readl(&((struct RUNTIME_9060 __iomem *)
1503 (cinfo->ctl_addr))->loc_doorbell);
1504 if (loc_doorbell){
1505 *cmd = (char)(0xff & loc_doorbell);
1506 *channel = cy_readl(&board_ctrl->fwcmd_channel);
1507 *param = (uclong)cy_readl(&board_ctrl->fwcmd_param);
1508 cy_writel(&((struct RUNTIME_9060 __iomem *)(cinfo->ctl_addr))->loc_doorbell,
1509 0xffffffff);
1510 return 1;
1512 return 0;
1513 } /* cyz_fetch_msg */
1515 static int
1516 cyz_issue_cmd( struct cyclades_card *cinfo,
1517 uclong channel, ucchar cmd, uclong param)
1519 struct FIRM_ID __iomem *firm_id;
1520 struct ZFW_CTRL __iomem *zfw_ctrl;
1521 struct BOARD_CTRL __iomem *board_ctrl;
1522 unsigned long __iomem *pci_doorbell;
1523 int index;
1525 firm_id = cinfo->base_addr + ID_ADDRESS;
1526 if (!ISZLOADED(*cinfo)){
1527 return (-1);
1529 zfw_ctrl = cinfo->base_addr + (cy_readl(&firm_id->zfwctrl_addr) & 0xfffff);
1530 board_ctrl = &zfw_ctrl->board_ctrl;
1532 index = 0;
1533 pci_doorbell = &((struct RUNTIME_9060 __iomem *) (cinfo->ctl_addr))->pci_doorbell;
1534 while( (cy_readl(pci_doorbell) & 0xff) != 0){
1535 if (index++ == 1000){
1536 return((int)(cy_readl(pci_doorbell) & 0xff));
1538 udelay(50L);
1540 cy_writel(&board_ctrl->hcmd_channel, channel);
1541 cy_writel(&board_ctrl->hcmd_param , param);
1542 cy_writel(pci_doorbell, (long)cmd);
1544 return(0);
1545 } /* cyz_issue_cmd */
1547 static void
1548 cyz_handle_rx(struct cyclades_port *info,
1549 volatile struct CH_CTRL __iomem *ch_ctrl,
1550 volatile struct BUF_CTRL __iomem *buf_ctrl)
1552 struct cyclades_card *cinfo = &cy_card[info->card];
1553 struct tty_struct *tty = info->tty;
1554 volatile int char_count;
1555 #ifdef BLOCKMOVE
1556 int small_count;
1557 #else
1558 char data;
1559 #endif
1560 volatile uclong rx_put, rx_get, new_rx_get, rx_bufsize, rx_bufaddr;
1562 rx_get = new_rx_get = cy_readl(&buf_ctrl->rx_get);
1563 rx_put = cy_readl(&buf_ctrl->rx_put);
1564 rx_bufsize = cy_readl(&buf_ctrl->rx_bufsize);
1565 rx_bufaddr = cy_readl(&buf_ctrl->rx_bufaddr);
1566 if (rx_put >= rx_get)
1567 char_count = rx_put - rx_get;
1568 else
1569 char_count = rx_put - rx_get + rx_bufsize;
1571 if ( char_count ) {
1572 info->last_active = jiffies;
1573 info->jiffies[1] = jiffies;
1575 #ifdef CY_ENABLE_MONITORING
1576 info->mon.int_count++;
1577 info->mon.char_count += char_count;
1578 if (char_count > info->mon.char_max)
1579 info->mon.char_max = char_count;
1580 info->mon.char_last = char_count;
1581 #endif
1582 if(tty == 0){
1583 /* flush received characters */
1584 new_rx_get = (new_rx_get + char_count) & (rx_bufsize - 1);
1585 info->rflush_count++;
1586 }else{
1587 #ifdef BLOCKMOVE
1588 /* we'd like to use memcpy(t, f, n) and memset(s, c, count)
1589 for performance, but because of buffer boundaries, there
1590 may be several steps to the operation */
1591 while(0 < (small_count =
1592 min_t(unsigned int, (rx_bufsize - new_rx_get),
1593 min_t(unsigned int, (TTY_FLIPBUF_SIZE - tty->flip.count), char_count))
1594 )) {
1595 memcpy_fromio(tty->flip.char_buf_ptr,
1596 (char *)(cinfo->base_addr
1597 + rx_bufaddr + new_rx_get),
1598 small_count);
1600 tty->flip.char_buf_ptr += small_count;
1601 memset(tty->flip.flag_buf_ptr, TTY_NORMAL, small_count);
1602 tty->flip.flag_buf_ptr += small_count;
1603 new_rx_get = (new_rx_get + small_count) & (rx_bufsize - 1);
1604 char_count -= small_count;
1605 info->icount.rx += small_count;
1606 info->idle_stats.recv_bytes += small_count;
1607 tty->flip.count += small_count;
1609 #else
1610 while(char_count--){
1611 if (tty->flip.count >= N_TTY_BUF_SIZE - tty->read_cnt)
1612 break;
1614 if (tty->flip.count >= TTY_FLIPBUF_SIZE)
1615 break;
1617 data = cy_readb(cinfo->base_addr + rx_bufaddr + new_rx_get);
1618 new_rx_get = (new_rx_get + 1) & (rx_bufsize - 1);
1619 tty->flip.count++;
1620 *tty->flip.flag_buf_ptr++ = TTY_NORMAL;
1621 *tty->flip.char_buf_ptr++ = data;
1622 info->idle_stats.recv_bytes++;
1623 info->icount.rx++;
1625 #endif
1626 #ifdef CONFIG_CYZ_INTR
1627 /* Recalculate the number of chars in the RX buffer and issue
1628 a cmd in case it's higher than the RX high water mark */
1629 rx_put = cy_readl(&buf_ctrl->rx_put);
1630 if (rx_put >= rx_get)
1631 char_count = rx_put - rx_get;
1632 else
1633 char_count = rx_put - rx_get + rx_bufsize;
1634 if(char_count >= cy_readl(&buf_ctrl->rx_threshold)) {
1635 cy_sched_event(info, Cy_EVENT_Z_RX_FULL);
1637 #endif
1638 info->idle_stats.recv_idle = jiffies;
1639 schedule_delayed_work(&tty->flip.work, 1);
1641 /* Update rx_get */
1642 cy_writel(&buf_ctrl->rx_get, new_rx_get);
1646 static void
1647 cyz_handle_tx(struct cyclades_port *info,
1648 volatile struct CH_CTRL __iomem *ch_ctrl,
1649 volatile struct BUF_CTRL __iomem *buf_ctrl)
1651 struct cyclades_card *cinfo = &cy_card[info->card];
1652 struct tty_struct *tty = info->tty;
1653 char data;
1654 volatile int char_count;
1655 #ifdef BLOCKMOVE
1656 int small_count;
1657 #endif
1658 volatile uclong tx_put, tx_get, tx_bufsize, tx_bufaddr;
1660 if (info->xmit_cnt <= 0) /* Nothing to transmit */
1661 return;
1663 tx_get = cy_readl(&buf_ctrl->tx_get);
1664 tx_put = cy_readl(&buf_ctrl->tx_put);
1665 tx_bufsize = cy_readl(&buf_ctrl->tx_bufsize);
1666 tx_bufaddr = cy_readl(&buf_ctrl->tx_bufaddr);
1667 if (tx_put >= tx_get)
1668 char_count = tx_get - tx_put - 1 + tx_bufsize;
1669 else
1670 char_count = tx_get - tx_put - 1;
1672 if ( char_count ) {
1674 if( tty == 0 ){
1675 goto ztxdone;
1678 if(info->x_char) { /* send special char */
1679 data = info->x_char;
1681 cy_writeb((cinfo->base_addr + tx_bufaddr + tx_put), data);
1682 tx_put = (tx_put + 1) & (tx_bufsize - 1);
1683 info->x_char = 0;
1684 char_count--;
1685 info->icount.tx++;
1686 info->last_active = jiffies;
1687 info->jiffies[2] = jiffies;
1689 #ifdef BLOCKMOVE
1690 while(0 < (small_count =
1691 min_t(unsigned int, (tx_bufsize - tx_put),
1692 min_t(unsigned int, (SERIAL_XMIT_SIZE - info->xmit_tail),
1693 min_t(unsigned int, info->xmit_cnt, char_count))))) {
1695 memcpy_toio((char *)(cinfo->base_addr + tx_bufaddr + tx_put),
1696 &info->xmit_buf[info->xmit_tail],
1697 small_count);
1699 tx_put = (tx_put + small_count) & (tx_bufsize - 1);
1700 char_count -= small_count;
1701 info->icount.tx += small_count;
1702 info->xmit_cnt -= small_count;
1703 info->xmit_tail =
1704 (info->xmit_tail + small_count) & (SERIAL_XMIT_SIZE - 1);
1705 info->last_active = jiffies;
1706 info->jiffies[2] = jiffies;
1708 #else
1709 while (info->xmit_cnt && char_count){
1710 data = info->xmit_buf[info->xmit_tail];
1711 info->xmit_cnt--;
1712 info->xmit_tail = (info->xmit_tail + 1) & (SERIAL_XMIT_SIZE - 1);
1714 cy_writeb(cinfo->base_addr + tx_bufaddr + tx_put, data);
1715 tx_put = (tx_put + 1) & (tx_bufsize - 1);
1716 char_count--;
1717 info->icount.tx++;
1718 info->last_active = jiffies;
1719 info->jiffies[2] = jiffies;
1721 #endif
1722 ztxdone:
1723 if (info->xmit_cnt < WAKEUP_CHARS) {
1724 cy_sched_event(info, Cy_EVENT_WRITE_WAKEUP);
1726 /* Update tx_put */
1727 cy_writel(&buf_ctrl->tx_put, tx_put);
1731 static void
1732 cyz_handle_cmd(struct cyclades_card *cinfo)
1734 struct tty_struct *tty;
1735 struct cyclades_port *info;
1736 static volatile struct FIRM_ID __iomem *firm_id;
1737 static volatile struct ZFW_CTRL __iomem *zfw_ctrl;
1738 static volatile struct BOARD_CTRL __iomem *board_ctrl;
1739 static volatile struct CH_CTRL __iomem *ch_ctrl;
1740 static volatile struct BUF_CTRL __iomem *buf_ctrl;
1741 uclong channel;
1742 ucchar cmd;
1743 uclong param;
1744 uclong hw_ver, fw_ver;
1745 int special_count;
1746 int delta_count;
1748 firm_id = cinfo->base_addr + ID_ADDRESS;
1749 zfw_ctrl = cinfo->base_addr + (cy_readl(&firm_id->zfwctrl_addr) & 0xfffff);
1750 board_ctrl = &zfw_ctrl->board_ctrl;
1751 fw_ver = cy_readl(&board_ctrl->fw_version);
1752 hw_ver = cy_readl(&((struct RUNTIME_9060 __iomem *)(cinfo->ctl_addr))->mail_box_0);
1755 while(cyz_fetch_msg(cinfo, &channel, &cmd, &param) == 1) {
1756 special_count = 0;
1757 delta_count = 0;
1758 info = &cy_port[channel + cinfo->first_line];
1759 if((tty = info->tty) == 0) {
1760 continue;
1762 ch_ctrl = &(zfw_ctrl->ch_ctrl[channel]);
1763 buf_ctrl = &(zfw_ctrl->buf_ctrl[channel]);
1765 switch(cmd) {
1766 case C_CM_PR_ERROR:
1767 tty->flip.count++;
1768 *tty->flip.flag_buf_ptr++ = TTY_PARITY;
1769 *tty->flip.char_buf_ptr++ = 0;
1770 info->icount.rx++;
1771 special_count++;
1772 break;
1773 case C_CM_FR_ERROR:
1774 tty->flip.count++;
1775 *tty->flip.flag_buf_ptr++ = TTY_FRAME;
1776 *tty->flip.char_buf_ptr++ = 0;
1777 info->icount.rx++;
1778 special_count++;
1779 break;
1780 case C_CM_RXBRK:
1781 tty->flip.count++;
1782 *tty->flip.flag_buf_ptr++ = TTY_BREAK;
1783 *tty->flip.char_buf_ptr++ = 0;
1784 info->icount.rx++;
1785 special_count++;
1786 break;
1787 case C_CM_MDCD:
1788 info->icount.dcd++;
1789 delta_count++;
1790 if (info->flags & ASYNC_CHECK_CD){
1791 if ((fw_ver > 241 ?
1792 ((u_long)param) :
1793 cy_readl(&ch_ctrl->rs_status)) & C_RS_DCD) {
1794 cy_sched_event(info, Cy_EVENT_OPEN_WAKEUP);
1795 }else{
1796 cy_sched_event(info, Cy_EVENT_HANGUP);
1799 break;
1800 case C_CM_MCTS:
1801 info->icount.cts++;
1802 delta_count++;
1803 break;
1804 case C_CM_MRI:
1805 info->icount.rng++;
1806 delta_count++;
1807 break;
1808 case C_CM_MDSR:
1809 info->icount.dsr++;
1810 delta_count++;
1811 break;
1812 #ifdef Z_WAKE
1813 case C_CM_IOCTLW:
1814 cy_sched_event(info, Cy_EVENT_SHUTDOWN_WAKEUP);
1815 break;
1816 #endif
1817 #ifdef CONFIG_CYZ_INTR
1818 case C_CM_RXHIWM:
1819 case C_CM_RXNNDT:
1820 case C_CM_INTBACK2:
1821 /* Reception Interrupt */
1822 #ifdef CY_DEBUG_INTERRUPTS
1823 printk("cyz_interrupt: rcvd intr, card %d, port %ld\n\r",
1824 info->card, channel);
1825 #endif
1826 cyz_handle_rx(info, ch_ctrl, buf_ctrl);
1827 break;
1828 case C_CM_TXBEMPTY:
1829 case C_CM_TXLOWWM:
1830 case C_CM_INTBACK:
1831 /* Transmission Interrupt */
1832 #ifdef CY_DEBUG_INTERRUPTS
1833 printk("cyz_interrupt: xmit intr, card %d, port %ld\n\r",
1834 info->card, channel);
1835 #endif
1836 cyz_handle_tx(info, ch_ctrl, buf_ctrl);
1837 break;
1838 #endif /* CONFIG_CYZ_INTR */
1839 case C_CM_FATAL:
1840 /* should do something with this !!! */
1841 break;
1842 default:
1843 break;
1845 if(delta_count)
1846 cy_sched_event(info, Cy_EVENT_DELTA_WAKEUP);
1847 if(special_count)
1848 schedule_delayed_work(&tty->flip.work, 1);
1852 #ifdef CONFIG_CYZ_INTR
1853 static irqreturn_t
1854 cyz_interrupt(int irq, void *dev_id, struct pt_regs *regs)
1856 struct cyclades_card *cinfo;
1858 if((cinfo = (struct cyclades_card *)dev_id) == 0){
1859 #ifdef CY_DEBUG_INTERRUPTS
1860 printk("cyz_interrupt: spurious interrupt %d\n\r", irq);
1861 #endif
1862 return IRQ_NONE; /* spurious interrupt */
1865 if (!ISZLOADED(*cinfo)) {
1866 #ifdef CY_DEBUG_INTERRUPTS
1867 printk("cyz_interrupt: board not yet loaded (IRQ%d).\n\r", irq);
1868 #endif
1869 return IRQ_NONE;
1872 /* Handle the interrupts */
1873 cyz_handle_cmd(cinfo);
1875 return IRQ_HANDLED;
1876 } /* cyz_interrupt */
1878 static void
1879 cyz_rx_restart(unsigned long arg)
1881 struct cyclades_port *info = (struct cyclades_port *)arg;
1882 int retval;
1883 int card = info->card;
1884 uclong channel = (info->line) - (cy_card[card].first_line);
1885 unsigned long flags;
1887 CY_LOCK(info, flags);
1888 retval = cyz_issue_cmd(&cy_card[card], channel, C_CM_INTBACK2, 0L);
1889 if (retval != 0){
1890 printk("cyc:cyz_rx_restart retval on ttyC%d was %x\n",
1891 info->line, retval);
1893 cyz_rx_full_timer[info->line].function = NULL;
1894 CY_UNLOCK(info, flags);
1897 #else /* CONFIG_CYZ_INTR */
1899 static void
1900 cyz_poll(unsigned long arg)
1902 struct cyclades_card *cinfo;
1903 struct cyclades_port *info;
1904 struct tty_struct *tty;
1905 static volatile struct FIRM_ID *firm_id;
1906 static volatile struct ZFW_CTRL *zfw_ctrl;
1907 static volatile struct BOARD_CTRL *board_ctrl;
1908 static volatile struct CH_CTRL *ch_ctrl;
1909 static volatile struct BUF_CTRL *buf_ctrl;
1910 int card, port;
1912 cyz_timerlist.expires = jiffies + (HZ);
1913 for (card = 0 ; card < NR_CARDS ; card++){
1914 cinfo = &cy_card[card];
1916 if (!IS_CYC_Z(*cinfo)) continue;
1917 if (!ISZLOADED(*cinfo)) continue;
1919 firm_id = cinfo->base_addr + ID_ADDRESS;
1920 zfw_ctrl = cinfo->base_addr + (cy_readl(&firm_id->zfwctrl_addr) & 0xfffff);
1921 board_ctrl = &(zfw_ctrl->board_ctrl);
1923 /* Skip first polling cycle to avoid racing conditions with the FW */
1924 if (!cinfo->intr_enabled) {
1925 cinfo->nports = (int) cy_readl(&board_ctrl->n_channel);
1926 cinfo->intr_enabled = 1;
1927 continue;
1930 cyz_handle_cmd(cinfo);
1932 for (port = 0 ; port < cinfo->nports ; port++) {
1933 info = &cy_port[ port + cinfo->first_line ];
1934 tty = info->tty;
1935 ch_ctrl = &(zfw_ctrl->ch_ctrl[port]);
1936 buf_ctrl = &(zfw_ctrl->buf_ctrl[port]);
1938 if (!info->throttle)
1939 cyz_handle_rx(info, ch_ctrl, buf_ctrl);
1940 cyz_handle_tx(info, ch_ctrl, buf_ctrl);
1942 /* poll every 'cyz_polling_cycle' period */
1943 cyz_timerlist.expires = jiffies + cyz_polling_cycle;
1945 add_timer(&cyz_timerlist);
1947 return;
1948 } /* cyz_poll */
1950 #endif /* CONFIG_CYZ_INTR */
1952 /********** End of block of Cyclades-Z specific code *********/
1953 /***********************************************************/
1956 /* This is called whenever a port becomes active;
1957 interrupts are enabled and DTR & RTS are turned on.
1959 static int
1960 startup(struct cyclades_port * info)
1962 unsigned long flags;
1963 int retval = 0;
1964 void __iomem *base_addr;
1965 int card,chip,channel,index;
1966 unsigned long page;
1968 card = info->card;
1969 channel = (info->line) - (cy_card[card].first_line);
1971 page = get_zeroed_page(GFP_KERNEL);
1972 if (!page)
1973 return -ENOMEM;
1975 CY_LOCK(info, flags);
1977 if (info->flags & ASYNC_INITIALIZED){
1978 free_page(page);
1979 goto errout;
1982 if (!info->type){
1983 if (info->tty){
1984 set_bit(TTY_IO_ERROR, &info->tty->flags);
1986 free_page(page);
1987 goto errout;
1990 if (info->xmit_buf)
1991 free_page(page);
1992 else
1993 info->xmit_buf = (unsigned char *) page;
1995 CY_UNLOCK(info, flags);
1997 set_line_char(info);
1999 if (!IS_CYC_Z(cy_card[card])) {
2000 chip = channel>>2;
2001 channel &= 0x03;
2002 index = cy_card[card].bus_index;
2003 base_addr = cy_card[card].base_addr + (cy_chip_offset[chip]<<index);
2005 #ifdef CY_DEBUG_OPEN
2006 printk("cyc startup card %d, chip %d, channel %d, base_addr %lx\n",
2007 card, chip, channel, (long)base_addr);/**/
2008 #endif
2010 CY_LOCK(info, flags);
2012 cy_writeb(base_addr+(CyCAR<<index), (u_char)channel);
2014 cy_writeb(base_addr+(CyRTPR<<index), (info->default_timeout
2015 ? info->default_timeout : 0x02)); /* 10ms rx timeout */
2017 cyy_issue_cmd(base_addr,CyCHAN_CTL|CyENB_RCVR|CyENB_XMTR,index);
2019 cy_writeb(base_addr+(CyCAR<<index), (u_char)channel);
2020 cy_writeb(base_addr+(CyMSVR1<<index), CyRTS);
2021 cy_writeb(base_addr+(CyMSVR2<<index), CyDTR);
2023 #ifdef CY_DEBUG_DTR
2024 printk("cyc:startup raising DTR\n");
2025 printk(" status: 0x%x, 0x%x\n",
2026 cy_readb(base_addr+(CyMSVR1<<index)),
2027 cy_readb(base_addr+(CyMSVR2<<index)));
2028 #endif
2030 cy_writeb(base_addr+(CySRER<<index),
2031 cy_readb(base_addr+(CySRER<<index)) | CyRxData);
2032 info->flags |= ASYNC_INITIALIZED;
2034 if (info->tty){
2035 clear_bit(TTY_IO_ERROR, &info->tty->flags);
2037 info->xmit_cnt = info->xmit_head = info->xmit_tail = 0;
2038 info->breakon = info->breakoff = 0;
2039 memset((char *)&info->idle_stats, 0, sizeof(info->idle_stats));
2040 info->idle_stats.in_use =
2041 info->idle_stats.recv_idle =
2042 info->idle_stats.xmit_idle = jiffies;
2044 CY_UNLOCK(info, flags);
2046 } else {
2047 struct FIRM_ID __iomem *firm_id;
2048 struct ZFW_CTRL __iomem *zfw_ctrl;
2049 struct BOARD_CTRL __iomem *board_ctrl;
2050 struct CH_CTRL __iomem *ch_ctrl;
2051 int retval;
2053 base_addr = cy_card[card].base_addr;
2055 firm_id = base_addr + ID_ADDRESS;
2056 if (!ISZLOADED(cy_card[card])){
2057 return -ENODEV;
2060 zfw_ctrl = cy_card[card].base_addr + (cy_readl(&firm_id->zfwctrl_addr) & 0xfffff);
2061 board_ctrl = &zfw_ctrl->board_ctrl;
2062 ch_ctrl = zfw_ctrl->ch_ctrl;
2064 #ifdef CY_DEBUG_OPEN
2065 printk("cyc startup Z card %d, channel %d, base_addr %lx\n",
2066 card, channel, (long)base_addr);/**/
2067 #endif
2069 CY_LOCK(info, flags);
2071 cy_writel(&ch_ctrl[channel].op_mode, C_CH_ENABLE);
2072 #ifdef Z_WAKE
2073 #ifdef CONFIG_CYZ_INTR
2074 cy_writel(&ch_ctrl[channel].intr_enable,
2075 C_IN_TXBEMPTY|C_IN_TXLOWWM|C_IN_RXHIWM|C_IN_RXNNDT|
2076 C_IN_IOCTLW|
2077 C_IN_MDCD);
2078 #else
2079 cy_writel(&ch_ctrl[channel].intr_enable,
2080 C_IN_IOCTLW|
2081 C_IN_MDCD);
2082 #endif /* CONFIG_CYZ_INTR */
2083 #else
2084 #ifdef CONFIG_CYZ_INTR
2085 cy_writel(&ch_ctrl[channel].intr_enable,
2086 C_IN_TXBEMPTY|C_IN_TXLOWWM|C_IN_RXHIWM|C_IN_RXNNDT|
2087 C_IN_MDCD);
2088 #else
2089 cy_writel(&ch_ctrl[channel].intr_enable,
2090 C_IN_MDCD);
2091 #endif /* CONFIG_CYZ_INTR */
2092 #endif /* Z_WAKE */
2094 retval = cyz_issue_cmd(&cy_card[card], channel, C_CM_IOCTL, 0L);
2095 if (retval != 0){
2096 printk("cyc:startup(1) retval on ttyC%d was %x\n",
2097 info->line, retval);
2100 /* Flush RX buffers before raising DTR and RTS */
2101 retval = cyz_issue_cmd(&cy_card[card], channel, C_CM_FLUSH_RX, 0L);
2102 if (retval != 0){
2103 printk("cyc:startup(2) retval on ttyC%d was %x\n",
2104 info->line, retval);
2107 /* set timeout !!! */
2108 /* set RTS and DTR !!! */
2109 cy_writel(&ch_ctrl[channel].rs_control,
2110 cy_readl(&ch_ctrl[channel].rs_control) | C_RS_RTS | C_RS_DTR) ;
2111 retval = cyz_issue_cmd(&cy_card[info->card],
2112 channel, C_CM_IOCTLM, 0L);
2113 if (retval != 0){
2114 printk("cyc:startup(3) retval on ttyC%d was %x\n",
2115 info->line, retval);
2117 #ifdef CY_DEBUG_DTR
2118 printk("cyc:startup raising Z DTR\n");
2119 #endif
2121 /* enable send, recv, modem !!! */
2123 info->flags |= ASYNC_INITIALIZED;
2124 if (info->tty){
2125 clear_bit(TTY_IO_ERROR, &info->tty->flags);
2127 info->xmit_cnt = info->xmit_head = info->xmit_tail = 0;
2128 info->breakon = info->breakoff = 0;
2129 memset((char *)&info->idle_stats, 0, sizeof(info->idle_stats));
2130 info->idle_stats.in_use =
2131 info->idle_stats.recv_idle =
2132 info->idle_stats.xmit_idle = jiffies;
2134 CY_UNLOCK(info, flags);
2137 #ifdef CY_DEBUG_OPEN
2138 printk(" cyc startup done\n");
2139 #endif
2140 return 0;
2142 errout:
2143 CY_UNLOCK(info, flags);
2144 return retval;
2145 } /* startup */
2148 static void
2149 start_xmit( struct cyclades_port *info )
2151 unsigned long flags;
2152 void __iomem *base_addr;
2153 int card,chip,channel,index;
2155 card = info->card;
2156 channel = (info->line) - (cy_card[card].first_line);
2157 if (!IS_CYC_Z(cy_card[card])) {
2158 chip = channel>>2;
2159 channel &= 0x03;
2160 index = cy_card[card].bus_index;
2161 base_addr = cy_card[card].base_addr + (cy_chip_offset[chip]<<index);
2163 CY_LOCK(info, flags);
2164 cy_writeb(base_addr+(CyCAR<<index), channel);
2165 cy_writeb(base_addr+(CySRER<<index),
2166 cy_readb(base_addr+(CySRER<<index)) | CyTxRdy);
2167 CY_UNLOCK(info, flags);
2168 } else {
2169 #ifdef CONFIG_CYZ_INTR
2170 int retval;
2172 CY_LOCK(info, flags);
2173 retval = cyz_issue_cmd(&cy_card[card], channel, C_CM_INTBACK, 0L);
2174 if (retval != 0){
2175 printk("cyc:start_xmit retval on ttyC%d was %x\n",
2176 info->line, retval);
2178 CY_UNLOCK(info, flags);
2179 #else /* CONFIG_CYZ_INTR */
2180 /* Don't have to do anything at this time */
2181 #endif /* CONFIG_CYZ_INTR */
2183 } /* start_xmit */
2186 * This routine shuts down a serial port; interrupts are disabled,
2187 * and DTR is dropped if the hangup on close termio flag is on.
2189 static void
2190 shutdown(struct cyclades_port * info)
2192 unsigned long flags;
2193 void __iomem *base_addr;
2194 int card,chip,channel,index;
2196 if (!(info->flags & ASYNC_INITIALIZED)){
2197 return;
2200 card = info->card;
2201 channel = info->line - cy_card[card].first_line;
2202 if (!IS_CYC_Z(cy_card[card])) {
2203 chip = channel>>2;
2204 channel &= 0x03;
2205 index = cy_card[card].bus_index;
2206 base_addr = cy_card[card].base_addr + (cy_chip_offset[chip]<<index);
2208 #ifdef CY_DEBUG_OPEN
2209 printk("cyc shutdown Y card %d, chip %d, channel %d, base_addr %lx\n",
2210 card, chip, channel, (long)base_addr);
2211 #endif
2213 CY_LOCK(info, flags);
2215 /* Clear delta_msr_wait queue to avoid mem leaks. */
2216 wake_up_interruptible(&info->delta_msr_wait);
2218 if (info->xmit_buf){
2219 unsigned char * temp;
2220 temp = info->xmit_buf;
2221 info->xmit_buf = NULL;
2222 free_page((unsigned long) temp);
2224 cy_writeb(base_addr+(CyCAR<<index), (u_char)channel);
2225 if (!info->tty || (info->tty->termios->c_cflag & HUPCL)) {
2226 cy_writeb(base_addr+(CyMSVR1<<index), ~CyRTS);
2227 cy_writeb(base_addr+(CyMSVR2<<index), ~CyDTR);
2228 #ifdef CY_DEBUG_DTR
2229 printk("cyc shutdown dropping DTR\n");
2230 printk(" status: 0x%x, 0x%x\n",
2231 cy_readb(base_addr+(CyMSVR1<<index)),
2232 cy_readb(base_addr+(CyMSVR2<<index)));
2233 #endif
2235 cyy_issue_cmd(base_addr,CyCHAN_CTL|CyDIS_RCVR,index);
2236 /* it may be appropriate to clear _XMIT at
2237 some later date (after testing)!!! */
2239 if (info->tty){
2240 set_bit(TTY_IO_ERROR, &info->tty->flags);
2242 info->flags &= ~ASYNC_INITIALIZED;
2243 CY_UNLOCK(info, flags);
2244 } else {
2245 struct FIRM_ID __iomem *firm_id;
2246 struct ZFW_CTRL __iomem *zfw_ctrl;
2247 struct BOARD_CTRL __iomem *board_ctrl;
2248 struct CH_CTRL __iomem *ch_ctrl;
2249 int retval;
2251 base_addr = cy_card[card].base_addr;
2252 #ifdef CY_DEBUG_OPEN
2253 printk("cyc shutdown Z card %d, channel %d, base_addr %lx\n",
2254 card, channel, (long)base_addr);
2255 #endif
2257 firm_id = base_addr + ID_ADDRESS;
2258 if (!ISZLOADED(cy_card[card])) {
2259 return;
2262 zfw_ctrl = cy_card[card].base_addr + (cy_readl(&firm_id->zfwctrl_addr) & 0xfffff);
2263 board_ctrl = &zfw_ctrl->board_ctrl;
2264 ch_ctrl = zfw_ctrl->ch_ctrl;
2266 CY_LOCK(info, flags);
2268 if (info->xmit_buf){
2269 unsigned char * temp;
2270 temp = info->xmit_buf;
2271 info->xmit_buf = NULL;
2272 free_page((unsigned long) temp);
2275 if (!info->tty || (info->tty->termios->c_cflag & HUPCL)) {
2276 cy_writel(&ch_ctrl[channel].rs_control,
2277 (uclong)(cy_readl(&ch_ctrl[channel].rs_control) &
2278 ~(C_RS_RTS | C_RS_DTR)));
2279 retval = cyz_issue_cmd(&cy_card[info->card],
2280 channel, C_CM_IOCTLM, 0L);
2281 if (retval != 0){
2282 printk("cyc:shutdown retval on ttyC%d was %x\n",
2283 info->line, retval);
2285 #ifdef CY_DEBUG_DTR
2286 printk("cyc:shutdown dropping Z DTR\n");
2287 #endif
2290 if (info->tty){
2291 set_bit(TTY_IO_ERROR, &info->tty->flags);
2293 info->flags &= ~ASYNC_INITIALIZED;
2295 CY_UNLOCK(info, flags);
2298 #ifdef CY_DEBUG_OPEN
2299 printk(" cyc shutdown done\n");
2300 #endif
2301 return;
2302 } /* shutdown */
2306 * ------------------------------------------------------------
2307 * cy_open() and friends
2308 * ------------------------------------------------------------
2311 static int
2312 block_til_ready(struct tty_struct *tty, struct file * filp,
2313 struct cyclades_port *info)
2315 DECLARE_WAITQUEUE(wait, current);
2316 struct cyclades_card *cinfo;
2317 unsigned long flags;
2318 int chip, channel,index;
2319 int retval;
2320 void __iomem *base_addr;
2322 cinfo = &cy_card[info->card];
2323 channel = info->line - cinfo->first_line;
2326 * If the device is in the middle of being closed, then block
2327 * until it's done, and then try again.
2329 if (tty_hung_up_p(filp) || (info->flags & ASYNC_CLOSING)) {
2330 if (info->flags & ASYNC_CLOSING) {
2331 interruptible_sleep_on(&info->close_wait);
2333 return ((info->flags & ASYNC_HUP_NOTIFY) ? -EAGAIN : -ERESTARTSYS);
2337 * If non-blocking mode is set, then make the check up front
2338 * and then exit.
2340 if ((filp->f_flags & O_NONBLOCK) ||
2341 (tty->flags & (1 << TTY_IO_ERROR))) {
2342 info->flags |= ASYNC_NORMAL_ACTIVE;
2343 return 0;
2347 * Block waiting for the carrier detect and the line to become
2348 * free (i.e., not in use by the callout). While we are in
2349 * this loop, info->count is dropped by one, so that
2350 * cy_close() knows when to free things. We restore it upon
2351 * exit, either normal or abnormal.
2353 retval = 0;
2354 add_wait_queue(&info->open_wait, &wait);
2355 #ifdef CY_DEBUG_OPEN
2356 printk("cyc block_til_ready before block: ttyC%d, count = %d\n",
2357 info->line, info->count);/**/
2358 #endif
2359 CY_LOCK(info, flags);
2360 if (!tty_hung_up_p(filp))
2361 info->count--;
2362 CY_UNLOCK(info, flags);
2363 #ifdef CY_DEBUG_COUNT
2364 printk("cyc block_til_ready: (%d): decrementing count to %d\n",
2365 current->pid, info->count);
2366 #endif
2367 info->blocked_open++;
2369 if (!IS_CYC_Z(*cinfo)) {
2370 chip = channel>>2;
2371 channel &= 0x03;
2372 index = cinfo->bus_index;
2373 base_addr = cinfo->base_addr + (cy_chip_offset[chip]<<index);
2375 while (1) {
2376 CY_LOCK(info, flags);
2377 if ((tty->termios->c_cflag & CBAUD)){
2378 cy_writeb(base_addr+(CyCAR<<index), (u_char)channel);
2379 cy_writeb(base_addr+(CyMSVR1<<index), CyRTS);
2380 cy_writeb(base_addr+(CyMSVR2<<index), CyDTR);
2381 #ifdef CY_DEBUG_DTR
2382 printk("cyc:block_til_ready raising DTR\n");
2383 printk(" status: 0x%x, 0x%x\n",
2384 cy_readb(base_addr+(CyMSVR1<<index)),
2385 cy_readb(base_addr+(CyMSVR2<<index)));
2386 #endif
2388 CY_UNLOCK(info, flags);
2390 set_current_state(TASK_INTERRUPTIBLE);
2391 if (tty_hung_up_p(filp)
2392 || !(info->flags & ASYNC_INITIALIZED) ){
2393 retval = ((info->flags & ASYNC_HUP_NOTIFY) ?
2394 -EAGAIN : -ERESTARTSYS);
2395 break;
2398 CY_LOCK(info, flags);
2399 cy_writeb(base_addr+(CyCAR<<index), (u_char)channel);
2400 if (!(info->flags & ASYNC_CLOSING)
2401 && (C_CLOCAL(tty)
2402 || (cy_readb(base_addr+(CyMSVR1<<index)) & CyDCD))) {
2403 CY_UNLOCK(info, flags);
2404 break;
2406 CY_UNLOCK(info, flags);
2408 if (signal_pending(current)) {
2409 retval = -ERESTARTSYS;
2410 break;
2412 #ifdef CY_DEBUG_OPEN
2413 printk("cyc block_til_ready blocking: ttyC%d, count = %d\n",
2414 info->line, info->count);/**/
2415 #endif
2416 schedule();
2418 } else {
2419 struct FIRM_ID __iomem *firm_id;
2420 struct ZFW_CTRL __iomem *zfw_ctrl;
2421 struct BOARD_CTRL __iomem *board_ctrl;
2422 struct CH_CTRL __iomem *ch_ctrl;
2423 int retval;
2425 base_addr = cinfo->base_addr;
2426 firm_id = base_addr + ID_ADDRESS;
2427 if (!ISZLOADED(*cinfo)){
2428 current->state = TASK_RUNNING;
2429 remove_wait_queue(&info->open_wait, &wait);
2430 return -EINVAL;
2433 zfw_ctrl = base_addr + (cy_readl(&firm_id->zfwctrl_addr) & 0xfffff);
2434 board_ctrl = &zfw_ctrl->board_ctrl;
2435 ch_ctrl = zfw_ctrl->ch_ctrl;
2437 while (1) {
2438 if ((tty->termios->c_cflag & CBAUD)){
2439 cy_writel(&ch_ctrl[channel].rs_control,
2440 cy_readl(&ch_ctrl[channel].rs_control) |
2441 (C_RS_RTS | C_RS_DTR));
2442 retval = cyz_issue_cmd(&cy_card[info->card],
2443 channel, C_CM_IOCTLM, 0L);
2444 if (retval != 0){
2445 printk("cyc:block_til_ready retval on ttyC%d was %x\n",
2446 info->line, retval);
2448 #ifdef CY_DEBUG_DTR
2449 printk("cyc:block_til_ready raising Z DTR\n");
2450 #endif
2453 set_current_state(TASK_INTERRUPTIBLE);
2454 if (tty_hung_up_p(filp)
2455 || !(info->flags & ASYNC_INITIALIZED) ){
2456 retval = ((info->flags & ASYNC_HUP_NOTIFY) ?
2457 -EAGAIN : -ERESTARTSYS);
2458 break;
2460 if (!(info->flags & ASYNC_CLOSING)
2461 && (C_CLOCAL(tty)
2462 || (cy_readl(&ch_ctrl[channel].rs_status) & C_RS_DCD))) {
2463 break;
2465 if (signal_pending(current)) {
2466 retval = -ERESTARTSYS;
2467 break;
2469 #ifdef CY_DEBUG_OPEN
2470 printk("cyc block_til_ready blocking: ttyC%d, count = %d\n",
2471 info->line, info->count);/**/
2472 #endif
2473 schedule();
2476 current->state = TASK_RUNNING;
2477 remove_wait_queue(&info->open_wait, &wait);
2478 if (!tty_hung_up_p(filp)){
2479 info->count++;
2480 #ifdef CY_DEBUG_COUNT
2481 printk("cyc:block_til_ready (%d): incrementing count to %d\n",
2482 current->pid, info->count);
2483 #endif
2485 info->blocked_open--;
2486 #ifdef CY_DEBUG_OPEN
2487 printk("cyc:block_til_ready after blocking: ttyC%d, count = %d\n",
2488 info->line, info->count);/**/
2489 #endif
2490 if (retval)
2491 return retval;
2492 info->flags |= ASYNC_NORMAL_ACTIVE;
2493 return 0;
2494 } /* block_til_ready */
2498 * This routine is called whenever a serial port is opened. It
2499 * performs the serial-specific initialization for the tty structure.
2501 static int
2502 cy_open(struct tty_struct *tty, struct file * filp)
2504 struct cyclades_port *info;
2505 int retval, line;
2506 unsigned long page;
2508 line = tty->index;
2509 if ((line < 0) || (NR_PORTS <= line)){
2510 return -ENODEV;
2512 info = &cy_port[line];
2513 if (info->line < 0){
2514 return -ENODEV;
2517 /* If the card's firmware hasn't been loaded,
2518 treat it as absent from the system. This
2519 will make the user pay attention.
2521 if (IS_CYC_Z(cy_card[info->card])) {
2522 struct cyclades_card *cinfo = &cy_card[info->card];
2523 struct FIRM_ID __iomem *firm_id = cinfo->base_addr + ID_ADDRESS;
2525 if (!ISZLOADED(*cinfo)) {
2526 if (((ZE_V1 ==cy_readl(&((struct RUNTIME_9060 __iomem *)
2527 (cinfo->ctl_addr))->mail_box_0)) &&
2528 Z_FPGA_CHECK (*cinfo)) &&
2529 (ZFIRM_HLT == cy_readl (&firm_id->signature)))
2531 printk ("cyc:Cyclades-Z Error: you need an external power supply for this number of ports.\n\rFirmware halted.\r\n");
2532 } else {
2533 printk("cyc:Cyclades-Z firmware not yet loaded\n");
2535 return -ENODEV;
2537 #ifdef CONFIG_CYZ_INTR
2538 else {
2539 /* In case this Z board is operating in interrupt mode, its
2540 interrupts should be enabled as soon as the first open happens
2541 to one of its ports. */
2542 if (!cinfo->intr_enabled) {
2543 struct ZFW_CTRL __iomem *zfw_ctrl;
2544 struct BOARD_CTRL __iomem *board_ctrl;
2546 zfw_ctrl = cinfo->base_addr + (cy_readl (&firm_id->zfwctrl_addr) & 0xfffff);
2548 board_ctrl = &zfw_ctrl->board_ctrl;
2550 /* Enable interrupts on the PLX chip */
2551 cy_writew(cinfo->ctl_addr+0x68,
2552 cy_readw(cinfo->ctl_addr+0x68)|0x0900);
2553 /* Enable interrupts on the FW */
2554 retval = cyz_issue_cmd(cinfo,
2555 0, C_CM_IRQ_ENBL, 0L);
2556 if (retval != 0){
2557 printk("cyc:IRQ enable retval was %x\n", retval);
2559 cinfo->nports = (int) cy_readl (&board_ctrl->n_channel);
2560 cinfo->intr_enabled = 1;
2563 #endif /* CONFIG_CYZ_INTR */
2564 /* Make sure this Z port really exists in hardware */
2565 if (info->line > (cinfo->first_line + cinfo->nports - 1))
2566 return -ENODEV;
2568 #ifdef CY_DEBUG_OTHER
2569 printk("cyc:cy_open ttyC%d\n", info->line); /* */
2570 #endif
2571 tty->driver_data = info;
2572 info->tty = tty;
2573 if (serial_paranoia_check(info, tty->name, "cy_open")){
2574 return -ENODEV;
2576 #ifdef CY_DEBUG_OPEN
2577 printk("cyc:cy_open ttyC%d, count = %d\n",
2578 info->line, info->count);/**/
2579 #endif
2580 info->count++;
2581 #ifdef CY_DEBUG_COUNT
2582 printk("cyc:cy_open (%d): incrementing count to %d\n",
2583 current->pid, info->count);
2584 #endif
2585 if (!tmp_buf) {
2586 page = get_zeroed_page(GFP_KERNEL);
2587 if (!page)
2588 return -ENOMEM;
2589 if (tmp_buf)
2590 free_page(page);
2591 else
2592 tmp_buf = (unsigned char *) page;
2596 * If the port is the middle of closing, bail out now
2598 if (tty_hung_up_p(filp) || (info->flags & ASYNC_CLOSING)) {
2599 if (info->flags & ASYNC_CLOSING)
2600 interruptible_sleep_on(&info->close_wait);
2601 return ((info->flags & ASYNC_HUP_NOTIFY) ? -EAGAIN : -ERESTARTSYS);
2605 * Start up serial port
2607 retval = startup(info);
2608 if (retval){
2609 return retval;
2612 retval = block_til_ready(tty, filp, info);
2613 if (retval) {
2614 #ifdef CY_DEBUG_OPEN
2615 printk("cyc:cy_open returning after block_til_ready with %d\n",
2616 retval);
2617 #endif
2618 return retval;
2621 info->throttle = 0;
2623 #ifdef CY_DEBUG_OPEN
2624 printk(" cyc:cy_open done\n");/**/
2625 #endif
2627 return 0;
2628 } /* cy_open */
2632 * cy_wait_until_sent() --- wait until the transmitter is empty
2634 static void
2635 cy_wait_until_sent(struct tty_struct *tty, int timeout)
2637 struct cyclades_port * info = (struct cyclades_port *)tty->driver_data;
2638 void __iomem *base_addr;
2639 int card,chip,channel,index;
2640 unsigned long orig_jiffies;
2641 int char_time;
2643 if (serial_paranoia_check(info, tty->name, "cy_wait_until_sent"))
2644 return;
2646 if (info->xmit_fifo_size == 0)
2647 return; /* Just in case.... */
2650 orig_jiffies = jiffies;
2652 * Set the check interval to be 1/5 of the estimated time to
2653 * send a single character, and make it at least 1. The check
2654 * interval should also be less than the timeout.
2656 * Note: we have to use pretty tight timings here to satisfy
2657 * the NIST-PCTS.
2659 char_time = (info->timeout - HZ/50) / info->xmit_fifo_size;
2660 char_time = char_time / 5;
2661 if (char_time <= 0)
2662 char_time = 1;
2663 if (timeout < 0)
2664 timeout = 0;
2665 if (timeout)
2666 char_time = min(char_time, timeout);
2668 * If the transmitter hasn't cleared in twice the approximate
2669 * amount of time to send the entire FIFO, it probably won't
2670 * ever clear. This assumes the UART isn't doing flow
2671 * control, which is currently the case. Hence, if it ever
2672 * takes longer than info->timeout, this is probably due to a
2673 * UART bug of some kind. So, we clamp the timeout parameter at
2674 * 2*info->timeout.
2676 if (!timeout || timeout > 2*info->timeout)
2677 timeout = 2*info->timeout;
2678 #ifdef CY_DEBUG_WAIT_UNTIL_SENT
2679 printk("In cy_wait_until_sent(%d) check=%lu...", timeout, char_time);
2680 printk("jiff=%lu...", jiffies);
2681 #endif
2682 card = info->card;
2683 channel = (info->line) - (cy_card[card].first_line);
2684 if (!IS_CYC_Z(cy_card[card])) {
2685 chip = channel>>2;
2686 channel &= 0x03;
2687 index = cy_card[card].bus_index;
2688 base_addr = cy_card[card].base_addr + (cy_chip_offset[chip]<<index);
2689 while (cy_readb(base_addr+(CySRER<<index)) & CyTxRdy) {
2690 #ifdef CY_DEBUG_WAIT_UNTIL_SENT
2691 printk("Not clean (jiff=%lu)...", jiffies);
2692 #endif
2693 current->state = TASK_INTERRUPTIBLE;
2694 schedule_timeout(char_time);
2695 if (signal_pending(current))
2696 break;
2697 if (timeout && time_after(jiffies, orig_jiffies + timeout))
2698 break;
2700 current->state = TASK_RUNNING;
2701 } else {
2702 // Nothing to do!
2704 /* Run one more char cycle */
2705 current->state = TASK_INTERRUPTIBLE;
2706 schedule_timeout(char_time * 5);
2707 #ifdef CY_DEBUG_WAIT_UNTIL_SENT
2708 printk("Clean (jiff=%lu)...done\n", jiffies);
2709 #endif
2713 * This routine is called when a particular tty device is closed.
2715 static void
2716 cy_close(struct tty_struct *tty, struct file *filp)
2718 struct cyclades_port *info = (struct cyclades_port *)tty->driver_data;
2719 unsigned long flags;
2721 #ifdef CY_DEBUG_OTHER
2722 printk("cyc:cy_close ttyC%d\n", info->line);
2723 #endif
2725 if (!info || serial_paranoia_check(info, tty->name, "cy_close")){
2726 return;
2729 CY_LOCK(info, flags);
2730 /* If the TTY is being hung up, nothing to do */
2731 if (tty_hung_up_p(filp)) {
2732 CY_UNLOCK(info, flags);
2733 return;
2736 #ifdef CY_DEBUG_OPEN
2737 printk("cyc:cy_close ttyC%d, count = %d\n", info->line, info->count);
2738 #endif
2739 if ((tty->count == 1) && (info->count != 1)) {
2741 * Uh, oh. tty->count is 1, which means that the tty
2742 * structure will be freed. Info->count should always
2743 * be one in these conditions. If it's greater than
2744 * one, we've got real problems, since it means the
2745 * serial port won't be shutdown.
2747 printk("cyc:cy_close: bad serial port count; tty->count is 1, "
2748 "info->count is %d\n", info->count);
2749 info->count = 1;
2751 #ifdef CY_DEBUG_COUNT
2752 printk("cyc:cy_close at (%d): decrementing count to %d\n",
2753 current->pid, info->count - 1);
2754 #endif
2755 if (--info->count < 0) {
2756 #ifdef CY_DEBUG_COUNT
2757 printk("cyc:cyc_close setting count to 0\n");
2758 #endif
2759 info->count = 0;
2761 if (info->count) {
2762 CY_UNLOCK(info, flags);
2763 return;
2765 info->flags |= ASYNC_CLOSING;
2768 * Now we wait for the transmit buffer to clear; and we notify
2769 * the line discipline to only process XON/XOFF characters.
2771 tty->closing = 1;
2772 CY_UNLOCK(info, flags);
2773 if (info->closing_wait != CY_CLOSING_WAIT_NONE) {
2774 tty_wait_until_sent(tty, info->closing_wait);
2776 CY_LOCK(info, flags);
2778 if (!IS_CYC_Z(cy_card[info->card])) {
2779 int channel = info->line - cy_card[info->card].first_line;
2780 int index = cy_card[info->card].bus_index;
2781 void __iomem *base_addr = cy_card[info->card].base_addr + (cy_chip_offset[channel>>2] << index);
2782 /* Stop accepting input */
2783 channel &= 0x03;
2784 cy_writeb(base_addr+(CyCAR<<index), (u_char)channel);
2785 cy_writeb(base_addr+(CySRER<<index),
2786 cy_readb(base_addr+(CySRER<<index)) & ~CyRxData);
2787 if (info->flags & ASYNC_INITIALIZED) {
2788 /* Waiting for on-board buffers to be empty before closing
2789 the port */
2790 CY_UNLOCK(info, flags);
2791 cy_wait_until_sent(tty, info->timeout);
2792 CY_LOCK(info, flags);
2794 } else {
2795 #ifdef Z_WAKE
2796 /* Waiting for on-board buffers to be empty before closing the port */
2797 void __iomem *base_addr = cy_card[info->card].base_addr;
2798 struct FIRM_ID __iomem *firm_id = base_addr + ID_ADDRESS;
2799 struct ZFW_CTRL __iomem *zfw_ctrl = base_addr + (cy_readl(&firm_id->zfwctrl_addr) & 0xfffff);
2800 struct CH_CTRL __iomem *ch_ctrl = zfw_ctrl->ch_ctrl;
2801 int channel = info->line - cy_card[info->card].first_line;
2802 int retval;
2804 if (cy_readl(&ch_ctrl[channel].flow_status) != C_FS_TXIDLE) {
2805 retval = cyz_issue_cmd(&cy_card[info->card], channel,
2806 C_CM_IOCTLW, 0L);
2807 if (retval != 0){
2808 printk("cyc:cy_close retval on ttyC%d was %x\n",
2809 info->line, retval);
2811 CY_UNLOCK(info, flags);
2812 interruptible_sleep_on(&info->shutdown_wait);
2813 CY_LOCK(info, flags);
2815 #endif
2818 CY_UNLOCK(info, flags);
2819 shutdown(info);
2820 if (tty->driver->flush_buffer)
2821 tty->driver->flush_buffer(tty);
2822 tty_ldisc_flush(tty);
2823 CY_LOCK(info, flags);
2825 tty->closing = 0;
2826 info->event = 0;
2827 info->tty = NULL;
2828 if (info->blocked_open) {
2829 CY_UNLOCK(info, flags);
2830 if (info->close_delay) {
2831 current->state = TASK_INTERRUPTIBLE;
2832 schedule_timeout(info->close_delay);
2834 wake_up_interruptible(&info->open_wait);
2835 CY_LOCK(info, flags);
2837 info->flags &= ~(ASYNC_NORMAL_ACTIVE|ASYNC_CLOSING);
2838 wake_up_interruptible(&info->close_wait);
2840 #ifdef CY_DEBUG_OTHER
2841 printk(" cyc:cy_close done\n");
2842 #endif
2844 CY_UNLOCK(info, flags);
2845 return;
2846 } /* cy_close */
2849 /* This routine gets called when tty_write has put something into
2850 * the write_queue. The characters may come from user space or
2851 * kernel space.
2853 * This routine will return the number of characters actually
2854 * accepted for writing.
2856 * If the port is not already transmitting stuff, start it off by
2857 * enabling interrupts. The interrupt service routine will then
2858 * ensure that the characters are sent.
2859 * If the port is already active, there is no need to kick it.
2862 static int
2863 cy_write(struct tty_struct * tty, int from_user,
2864 const unsigned char *buf, int count)
2866 struct cyclades_port *info = (struct cyclades_port *)tty->driver_data;
2867 unsigned long flags;
2868 int c, ret = 0;
2870 #ifdef CY_DEBUG_IO
2871 printk("cyc:cy_write ttyC%d\n", info->line); /* */
2872 #endif
2874 if (serial_paranoia_check(info, tty->name, "cy_write")){
2875 return 0;
2878 if (!tty || !info->xmit_buf || !tmp_buf){
2879 return 0;
2882 if (from_user) {
2883 down(&tmp_buf_sem);
2884 while (1) {
2885 int c1;
2887 c = min(count, min((int)(SERIAL_XMIT_SIZE - info->xmit_cnt - 1),
2888 (int)(SERIAL_XMIT_SIZE - info->xmit_head)));
2889 if (c <= 0)
2890 break;
2892 c -= copy_from_user(tmp_buf, buf, c);
2893 if (!c) {
2894 if (!ret) {
2895 ret = -EFAULT;
2897 break;
2899 CY_LOCK(info, flags);
2900 c1 = min(c, min((int)(SERIAL_XMIT_SIZE - info->xmit_cnt - 1),
2901 (int)(SERIAL_XMIT_SIZE - info->xmit_head)));
2903 if (c1 < c)
2904 c = c1;
2905 memcpy(info->xmit_buf + info->xmit_head, tmp_buf, c);
2906 info->xmit_head = ((info->xmit_head + c) & (SERIAL_XMIT_SIZE-1));
2907 info->xmit_cnt += c;
2908 CY_UNLOCK(info, flags);
2909 buf += c;
2910 count -= c;
2911 ret += c;
2913 up(&tmp_buf_sem);
2914 } else {
2915 CY_LOCK(info, flags);
2916 while (1) {
2917 c = min(count, min((int)(SERIAL_XMIT_SIZE - info->xmit_cnt - 1),
2918 (int)(SERIAL_XMIT_SIZE - info->xmit_head)));
2920 if (c <= 0)
2921 break;
2923 memcpy(info->xmit_buf + info->xmit_head, buf, c);
2924 info->xmit_head = (info->xmit_head + c) & (SERIAL_XMIT_SIZE-1);
2925 info->xmit_cnt += c;
2926 buf += c;
2927 count -= c;
2928 ret += c;
2930 CY_UNLOCK(info, flags);
2933 info->idle_stats.xmit_bytes += ret;
2934 info->idle_stats.xmit_idle = jiffies;
2936 if (info->xmit_cnt && !tty->stopped && !tty->hw_stopped) {
2937 start_xmit(info);
2939 return ret;
2940 } /* cy_write */
2944 * This routine is called by the kernel to write a single
2945 * character to the tty device. If the kernel uses this routine,
2946 * it must call the flush_chars() routine (if defined) when it is
2947 * done stuffing characters into the driver. If there is no room
2948 * in the queue, the character is ignored.
2950 static void
2951 cy_put_char(struct tty_struct *tty, unsigned char ch)
2953 struct cyclades_port *info = (struct cyclades_port *)tty->driver_data;
2954 unsigned long flags;
2956 #ifdef CY_DEBUG_IO
2957 printk("cyc:cy_put_char ttyC%d\n", info->line);
2958 #endif
2960 if (serial_paranoia_check(info, tty->name, "cy_put_char"))
2961 return;
2963 if (!tty || !info->xmit_buf)
2964 return;
2966 CY_LOCK(info, flags);
2967 if (info->xmit_cnt >= SERIAL_XMIT_SIZE - 1) {
2968 CY_UNLOCK(info, flags);
2969 return;
2972 info->xmit_buf[info->xmit_head++] = ch;
2973 info->xmit_head &= SERIAL_XMIT_SIZE - 1;
2974 info->xmit_cnt++;
2975 info->idle_stats.xmit_bytes++;
2976 info->idle_stats.xmit_idle = jiffies;
2977 CY_UNLOCK(info, flags);
2978 } /* cy_put_char */
2982 * This routine is called by the kernel after it has written a
2983 * series of characters to the tty device using put_char().
2985 static void
2986 cy_flush_chars(struct tty_struct *tty)
2988 struct cyclades_port *info = (struct cyclades_port *)tty->driver_data;
2990 #ifdef CY_DEBUG_IO
2991 printk("cyc:cy_flush_chars ttyC%d\n", info->line); /* */
2992 #endif
2994 if (serial_paranoia_check(info, tty->name, "cy_flush_chars"))
2995 return;
2997 if (info->xmit_cnt <= 0 || tty->stopped
2998 || tty->hw_stopped || !info->xmit_buf)
2999 return;
3001 start_xmit(info);
3002 } /* cy_flush_chars */
3006 * This routine returns the numbers of characters the tty driver
3007 * will accept for queuing to be written. This number is subject
3008 * to change as output buffers get emptied, or if the output flow
3009 * control is activated.
3011 static int
3012 cy_write_room(struct tty_struct *tty)
3014 struct cyclades_port *info = (struct cyclades_port *)tty->driver_data;
3015 int ret;
3017 #ifdef CY_DEBUG_IO
3018 printk("cyc:cy_write_room ttyC%d\n", info->line); /* */
3019 #endif
3021 if (serial_paranoia_check(info, tty->name, "cy_write_room"))
3022 return 0;
3023 ret = SERIAL_XMIT_SIZE - info->xmit_cnt - 1;
3024 if (ret < 0)
3025 ret = 0;
3026 return ret;
3027 } /* cy_write_room */
3030 static int
3031 cy_chars_in_buffer(struct tty_struct *tty)
3033 struct cyclades_port *info = (struct cyclades_port *)tty->driver_data;
3034 int card, channel;
3036 if (serial_paranoia_check(info, tty->name, "cy_chars_in_buffer"))
3037 return 0;
3039 card = info->card;
3040 channel = (info->line) - (cy_card[card].first_line);
3042 #ifdef Z_EXT_CHARS_IN_BUFFER
3043 if (!IS_CYC_Z(cy_card[card])) {
3044 #endif /* Z_EXT_CHARS_IN_BUFFER */
3045 #ifdef CY_DEBUG_IO
3046 printk("cyc:cy_chars_in_buffer ttyC%d %d\n",
3047 info->line, info->xmit_cnt); /* */
3048 #endif
3049 return info->xmit_cnt;
3050 #ifdef Z_EXT_CHARS_IN_BUFFER
3051 } else {
3052 static volatile struct FIRM_ID *firm_id;
3053 static volatile struct ZFW_CTRL *zfw_ctrl;
3054 static volatile struct CH_CTRL *ch_ctrl;
3055 static volatile struct BUF_CTRL *buf_ctrl;
3056 int char_count;
3057 volatile uclong tx_put, tx_get, tx_bufsize;
3059 firm_id = cy_card[card].base_addr + ID_ADDRESS;
3060 zfw_ctrl = cy_card[card].base_addr + (cy_readl(&firm_id->zfwctrl_addr) & 0xfffff);
3061 ch_ctrl = &(zfw_ctrl->ch_ctrl[channel]);
3062 buf_ctrl = &(zfw_ctrl->buf_ctrl[channel]);
3064 tx_get = cy_readl(&buf_ctrl->tx_get);
3065 tx_put = cy_readl(&buf_ctrl->tx_put);
3066 tx_bufsize = cy_readl(&buf_ctrl->tx_bufsize);
3067 if (tx_put >= tx_get)
3068 char_count = tx_put - tx_get;
3069 else
3070 char_count = tx_put - tx_get + tx_bufsize;
3071 #ifdef CY_DEBUG_IO
3072 printk("cyc:cy_chars_in_buffer ttyC%d %d\n",
3073 info->line, info->xmit_cnt + char_count); /* */
3074 #endif
3075 return (info->xmit_cnt + char_count);
3077 #endif /* Z_EXT_CHARS_IN_BUFFER */
3078 } /* cy_chars_in_buffer */
3082 * ------------------------------------------------------------
3083 * cy_ioctl() and friends
3084 * ------------------------------------------------------------
3087 static void
3088 cyy_baud_calc(struct cyclades_port *info, uclong baud)
3090 int co, co_val, bpr;
3091 uclong cy_clock = ((info->chip_rev >= CD1400_REV_J) ? 60000000 : 25000000);
3093 if (baud == 0) {
3094 info->tbpr = info->tco = info->rbpr = info->rco = 0;
3095 return;
3098 /* determine which prescaler to use */
3099 for (co = 4, co_val = 2048; co; co--, co_val >>= 2) {
3100 if (cy_clock / co_val / baud > 63)
3101 break;
3104 bpr = (cy_clock / co_val * 2 / baud + 1) / 2;
3105 if (bpr > 255)
3106 bpr = 255;
3108 info->tbpr = info->rbpr = bpr;
3109 info->tco = info->rco = co;
3113 * This routine finds or computes the various line characteristics.
3114 * It used to be called config_setup
3116 static void
3117 set_line_char(struct cyclades_port * info)
3119 unsigned long flags;
3120 void __iomem *base_addr;
3121 int card,chip,channel,index;
3122 unsigned cflag, iflag;
3123 unsigned short chip_number;
3124 int baud, baud_rate = 0;
3125 int i;
3128 if (!info->tty || !info->tty->termios){
3129 return;
3131 if (info->line == -1){
3132 return;
3134 cflag = info->tty->termios->c_cflag;
3135 iflag = info->tty->termios->c_iflag;
3138 * Set up the tty->alt_speed kludge
3140 if (info->tty) {
3141 if ((info->flags & ASYNC_SPD_MASK) == ASYNC_SPD_HI)
3142 info->tty->alt_speed = 57600;
3143 if ((info->flags & ASYNC_SPD_MASK) == ASYNC_SPD_VHI)
3144 info->tty->alt_speed = 115200;
3145 if ((info->flags & ASYNC_SPD_MASK) == ASYNC_SPD_SHI)
3146 info->tty->alt_speed = 230400;
3147 if ((info->flags & ASYNC_SPD_MASK) == ASYNC_SPD_WARP)
3148 info->tty->alt_speed = 460800;
3151 card = info->card;
3152 channel = (info->line) - (cy_card[card].first_line);
3153 chip_number = channel / 4;
3155 if (!IS_CYC_Z(cy_card[card])) {
3157 index = cy_card[card].bus_index;
3159 /* baud rate */
3160 baud = tty_get_baud_rate(info->tty);
3161 if ((baud == 38400) &&
3162 ((info->flags & ASYNC_SPD_MASK) == ASYNC_SPD_CUST)) {
3163 if (info->custom_divisor)
3164 baud_rate = info->baud / info->custom_divisor;
3165 else
3166 baud_rate = info->baud;
3167 } else if (baud > CD1400_MAX_SPEED) {
3168 baud = CD1400_MAX_SPEED;
3170 /* find the baud index */
3171 for (i = 0; i < 20; i++) {
3172 if (baud == baud_table[i]) {
3173 break;
3176 if (i == 20) {
3177 i = 19; /* CD1400_MAX_SPEED */
3180 if ((baud == 38400) &&
3181 ((info->flags & ASYNC_SPD_MASK) == ASYNC_SPD_CUST)) {
3182 cyy_baud_calc(info, baud_rate);
3183 } else {
3184 if(info->chip_rev >= CD1400_REV_J) {
3185 /* It is a CD1400 rev. J or later */
3186 info->tbpr = baud_bpr_60[i]; /* Tx BPR */
3187 info->tco = baud_co_60[i]; /* Tx CO */
3188 info->rbpr = baud_bpr_60[i]; /* Rx BPR */
3189 info->rco = baud_co_60[i]; /* Rx CO */
3190 } else {
3191 info->tbpr = baud_bpr_25[i]; /* Tx BPR */
3192 info->tco = baud_co_25[i]; /* Tx CO */
3193 info->rbpr = baud_bpr_25[i]; /* Rx BPR */
3194 info->rco = baud_co_25[i]; /* Rx CO */
3197 if (baud_table[i] == 134) {
3198 /* get it right for 134.5 baud */
3199 info->timeout = (info->xmit_fifo_size*HZ*30/269) + 2;
3200 } else if ((baud == 38400) &&
3201 ((info->flags & ASYNC_SPD_MASK) == ASYNC_SPD_CUST)) {
3202 info->timeout = (info->xmit_fifo_size*HZ*15/baud_rate) + 2;
3203 } else if (baud_table[i]) {
3204 info->timeout = (info->xmit_fifo_size*HZ*15/baud_table[i]) + 2;
3205 /* this needs to be propagated into the card info */
3206 } else {
3207 info->timeout = 0;
3209 /* By tradition (is it a standard?) a baud rate of zero
3210 implies the line should be/has been closed. A bit
3211 later in this routine such a test is performed. */
3213 /* byte size and parity */
3214 info->cor5 = 0;
3215 info->cor4 = 0;
3216 info->cor3 = (info->default_threshold
3217 ? info->default_threshold
3218 : baud_cor3[i]); /* receive threshold */
3219 info->cor2 = CyETC;
3220 switch(cflag & CSIZE){
3221 case CS5:
3222 info->cor1 = Cy_5_BITS;
3223 break;
3224 case CS6:
3225 info->cor1 = Cy_6_BITS;
3226 break;
3227 case CS7:
3228 info->cor1 = Cy_7_BITS;
3229 break;
3230 case CS8:
3231 info->cor1 = Cy_8_BITS;
3232 break;
3234 if(cflag & CSTOPB){
3235 info->cor1 |= Cy_2_STOP;
3237 if (cflag & PARENB){
3238 if (cflag & PARODD){
3239 info->cor1 |= CyPARITY_O;
3240 }else{
3241 info->cor1 |= CyPARITY_E;
3243 }else{
3244 info->cor1 |= CyPARITY_NONE;
3247 /* CTS flow control flag */
3248 if (cflag & CRTSCTS){
3249 info->flags |= ASYNC_CTS_FLOW;
3250 info->cor2 |= CyCtsAE;
3251 }else{
3252 info->flags &= ~ASYNC_CTS_FLOW;
3253 info->cor2 &= ~CyCtsAE;
3255 if (cflag & CLOCAL)
3256 info->flags &= ~ASYNC_CHECK_CD;
3257 else
3258 info->flags |= ASYNC_CHECK_CD;
3260 /***********************************************
3261 The hardware option, CyRtsAO, presents RTS when
3262 the chip has characters to send. Since most modems
3263 use RTS as reverse (inbound) flow control, this
3264 option is not used. If inbound flow control is
3265 necessary, DTR can be programmed to provide the
3266 appropriate signals for use with a non-standard
3267 cable. Contact Marcio Saito for details.
3268 ***********************************************/
3270 chip = channel>>2;
3271 channel &= 0x03;
3272 base_addr = cy_card[card].base_addr + (cy_chip_offset[chip]<<index);
3274 CY_LOCK(info, flags);
3275 cy_writeb(base_addr+(CyCAR<<index), (u_char)channel);
3277 /* tx and rx baud rate */
3279 cy_writeb(base_addr+(CyTCOR<<index), info->tco);
3280 cy_writeb(base_addr+(CyTBPR<<index), info->tbpr);
3281 cy_writeb(base_addr+(CyRCOR<<index), info->rco);
3282 cy_writeb(base_addr+(CyRBPR<<index), info->rbpr);
3284 /* set line characteristics according configuration */
3286 cy_writeb(base_addr+(CySCHR1<<index),
3287 START_CHAR(info->tty));
3288 cy_writeb(base_addr+(CySCHR2<<index),
3289 STOP_CHAR(info->tty));
3290 cy_writeb(base_addr+(CyCOR1<<index), info->cor1);
3291 cy_writeb(base_addr+(CyCOR2<<index), info->cor2);
3292 cy_writeb(base_addr+(CyCOR3<<index), info->cor3);
3293 cy_writeb(base_addr+(CyCOR4<<index), info->cor4);
3294 cy_writeb(base_addr+(CyCOR5<<index), info->cor5);
3296 cyy_issue_cmd(base_addr,
3297 CyCOR_CHANGE|CyCOR1ch|CyCOR2ch|CyCOR3ch,index);
3299 cy_writeb(base_addr+(CyCAR<<index),
3300 (u_char)channel); /* !!! Is this needed? */
3301 cy_writeb(base_addr+(CyRTPR<<index), (info->default_timeout
3302 ? info->default_timeout
3303 : 0x02)); /* 10ms rx timeout */
3305 if (C_CLOCAL(info->tty)) {
3306 /* without modem intr */
3307 cy_writeb(base_addr+(CySRER<<index),
3308 cy_readb(base_addr+(CySRER<<index)) | CyMdmCh);
3309 /* act on 1->0 modem transitions */
3310 if ((cflag & CRTSCTS) && info->rflow) {
3311 cy_writeb(base_addr+(CyMCOR1<<index),
3312 (CyCTS|rflow_thr[i]));
3313 } else {
3314 cy_writeb(base_addr+(CyMCOR1<<index), CyCTS);
3316 /* act on 0->1 modem transitions */
3317 cy_writeb(base_addr+(CyMCOR2<<index), CyCTS);
3318 } else {
3319 /* without modem intr */
3320 cy_writeb(base_addr+(CySRER<<index),
3321 cy_readb(base_addr+(CySRER<<index)) | CyMdmCh);
3322 /* act on 1->0 modem transitions */
3323 if ((cflag & CRTSCTS) && info->rflow) {
3324 cy_writeb(base_addr+(CyMCOR1<<index),
3325 (CyDSR|CyCTS|CyRI|CyDCD|rflow_thr[i]));
3326 } else {
3327 cy_writeb(base_addr+(CyMCOR1<<index),
3328 CyDSR|CyCTS|CyRI|CyDCD);
3330 /* act on 0->1 modem transitions */
3331 cy_writeb(base_addr+(CyMCOR2<<index),
3332 CyDSR|CyCTS|CyRI|CyDCD);
3335 if(i == 0){ /* baud rate is zero, turn off line */
3336 if (info->rtsdtr_inv) {
3337 cy_writeb(base_addr+(CyMSVR1<<index), ~CyRTS);
3338 } else {
3339 cy_writeb(base_addr+(CyMSVR2<<index), ~CyDTR);
3341 #ifdef CY_DEBUG_DTR
3342 printk("cyc:set_line_char dropping DTR\n");
3343 printk(" status: 0x%x, 0x%x\n",
3344 cy_readb(base_addr+(CyMSVR1<<index)),
3345 cy_readb(base_addr+(CyMSVR2<<index)));
3346 #endif
3347 }else{
3348 if (info->rtsdtr_inv) {
3349 cy_writeb(base_addr+(CyMSVR1<<index), CyRTS);
3350 } else {
3351 cy_writeb(base_addr+(CyMSVR2<<index), CyDTR);
3353 #ifdef CY_DEBUG_DTR
3354 printk("cyc:set_line_char raising DTR\n");
3355 printk(" status: 0x%x, 0x%x\n",
3356 cy_readb(base_addr+(CyMSVR1<<index)),
3357 cy_readb(base_addr+(CyMSVR2<<index)));
3358 #endif
3361 if (info->tty){
3362 clear_bit(TTY_IO_ERROR, &info->tty->flags);
3364 CY_UNLOCK(info, flags);
3366 } else {
3367 struct FIRM_ID __iomem *firm_id;
3368 struct ZFW_CTRL __iomem *zfw_ctrl;
3369 struct BOARD_CTRL __iomem *board_ctrl;
3370 struct CH_CTRL __iomem *ch_ctrl;
3371 struct BUF_CTRL __iomem *buf_ctrl;
3372 uclong sw_flow;
3373 int retval;
3375 firm_id = cy_card[card].base_addr + ID_ADDRESS;
3376 if (!ISZLOADED(cy_card[card])) {
3377 return;
3380 zfw_ctrl = cy_card[card].base_addr + (cy_readl(&firm_id->zfwctrl_addr) & 0xfffff);
3381 board_ctrl = &zfw_ctrl->board_ctrl;
3382 ch_ctrl = &(zfw_ctrl->ch_ctrl[channel]);
3383 buf_ctrl = &zfw_ctrl->buf_ctrl[channel];
3385 /* baud rate */
3386 baud = tty_get_baud_rate(info->tty);
3387 if ((baud == 38400) &&
3388 ((info->flags & ASYNC_SPD_MASK) == ASYNC_SPD_CUST)) {
3389 if (info->custom_divisor)
3390 baud_rate = info->baud / info->custom_divisor;
3391 else
3392 baud_rate = info->baud;
3393 } else if (baud > CYZ_MAX_SPEED) {
3394 baud = CYZ_MAX_SPEED;
3396 cy_writel(&ch_ctrl->comm_baud , baud);
3398 if (baud == 134) {
3399 /* get it right for 134.5 baud */
3400 info->timeout = (info->xmit_fifo_size*HZ*30/269) + 2;
3401 } else if ((baud == 38400) &&
3402 ((info->flags & ASYNC_SPD_MASK) == ASYNC_SPD_CUST)) {
3403 info->timeout = (info->xmit_fifo_size*HZ*15/baud_rate) + 2;
3404 } else if (baud) {
3405 info->timeout = (info->xmit_fifo_size*HZ*15/baud) + 2;
3406 /* this needs to be propagated into the card info */
3407 } else {
3408 info->timeout = 0;
3411 /* byte size and parity */
3412 switch(cflag & CSIZE){
3413 case CS5: cy_writel(&ch_ctrl->comm_data_l , C_DL_CS5); break;
3414 case CS6: cy_writel(&ch_ctrl->comm_data_l , C_DL_CS6); break;
3415 case CS7: cy_writel(&ch_ctrl->comm_data_l , C_DL_CS7); break;
3416 case CS8: cy_writel(&ch_ctrl->comm_data_l , C_DL_CS8); break;
3418 if(cflag & CSTOPB){
3419 cy_writel(&ch_ctrl->comm_data_l,
3420 cy_readl(&ch_ctrl->comm_data_l) | C_DL_2STOP);
3421 }else{
3422 cy_writel(&ch_ctrl->comm_data_l,
3423 cy_readl(&ch_ctrl->comm_data_l) | C_DL_1STOP);
3425 if (cflag & PARENB){
3426 if (cflag & PARODD){
3427 cy_writel(&ch_ctrl->comm_parity , C_PR_ODD);
3428 }else{
3429 cy_writel(&ch_ctrl->comm_parity , C_PR_EVEN);
3431 }else{
3432 cy_writel(&ch_ctrl->comm_parity , C_PR_NONE);
3435 /* CTS flow control flag */
3436 if (cflag & CRTSCTS){
3437 cy_writel(&ch_ctrl->hw_flow,
3438 cy_readl(&ch_ctrl->hw_flow) | C_RS_CTS | C_RS_RTS);
3439 }else{
3440 cy_writel(&ch_ctrl->hw_flow,
3441 cy_readl(&ch_ctrl->hw_flow) & ~(C_RS_CTS | C_RS_RTS));
3443 /* As the HW flow control is done in firmware, the driver doesn't
3444 need to care about it */
3445 info->flags &= ~ASYNC_CTS_FLOW;
3447 /* XON/XOFF/XANY flow control flags */
3448 sw_flow = 0;
3449 if (iflag & IXON){
3450 sw_flow |= C_FL_OXX;
3451 if (iflag & IXANY)
3452 sw_flow |= C_FL_OIXANY;
3454 cy_writel(&ch_ctrl->sw_flow, sw_flow);
3456 retval = cyz_issue_cmd(&cy_card[card], channel, C_CM_IOCTL, 0L);
3457 if (retval != 0){
3458 printk("cyc:set_line_char retval on ttyC%d was %x\n",
3459 info->line, retval);
3462 /* CD sensitivity */
3463 if (cflag & CLOCAL){
3464 info->flags &= ~ASYNC_CHECK_CD;
3465 }else{
3466 info->flags |= ASYNC_CHECK_CD;
3469 if(baud == 0){ /* baud rate is zero, turn off line */
3470 cy_writel(&ch_ctrl->rs_control,
3471 cy_readl(&ch_ctrl->rs_control) & ~C_RS_DTR);
3472 #ifdef CY_DEBUG_DTR
3473 printk("cyc:set_line_char dropping Z DTR\n");
3474 #endif
3475 }else{
3476 cy_writel(&ch_ctrl->rs_control,
3477 cy_readl(&ch_ctrl->rs_control) | C_RS_DTR);
3478 #ifdef CY_DEBUG_DTR
3479 printk("cyc:set_line_char raising Z DTR\n");
3480 #endif
3483 retval = cyz_issue_cmd( &cy_card[card], channel, C_CM_IOCTLM, 0L);
3484 if (retval != 0){
3485 printk("cyc:set_line_char(2) retval on ttyC%d was %x\n",
3486 info->line, retval);
3489 if (info->tty){
3490 clear_bit(TTY_IO_ERROR, &info->tty->flags);
3493 } /* set_line_char */
3496 static int
3497 get_serial_info(struct cyclades_port * info,
3498 struct serial_struct __user * retinfo)
3500 struct serial_struct tmp;
3501 struct cyclades_card *cinfo = &cy_card[info->card];
3503 if (!retinfo)
3504 return -EFAULT;
3505 memset(&tmp, 0, sizeof(tmp));
3506 tmp.type = info->type;
3507 tmp.line = info->line;
3508 tmp.port = info->card * 0x100 + info->line - cinfo->first_line;
3509 tmp.irq = cinfo->irq;
3510 tmp.flags = info->flags;
3511 tmp.close_delay = info->close_delay;
3512 tmp.baud_base = info->baud;
3513 tmp.custom_divisor = info->custom_divisor;
3514 tmp.hub6 = 0; /*!!!*/
3515 return copy_to_user(retinfo,&tmp,sizeof(*retinfo))?-EFAULT:0;
3516 } /* get_serial_info */
3519 static int
3520 set_serial_info(struct cyclades_port * info,
3521 struct serial_struct __user * new_info)
3523 struct serial_struct new_serial;
3524 struct cyclades_port old_info;
3526 if (copy_from_user(&new_serial,new_info,sizeof(new_serial)))
3527 return -EFAULT;
3528 old_info = *info;
3530 if (!capable(CAP_SYS_ADMIN)) {
3531 if ((new_serial.close_delay != info->close_delay) ||
3532 (new_serial.baud_base != info->baud) ||
3533 ((new_serial.flags & ASYNC_FLAGS & ~ASYNC_USR_MASK) !=
3534 (info->flags & ASYNC_FLAGS & ~ASYNC_USR_MASK)))
3535 return -EPERM;
3536 info->flags = ((info->flags & ~ASYNC_USR_MASK) |
3537 (new_serial.flags & ASYNC_USR_MASK));
3538 info->baud = new_serial.baud_base;
3539 info->custom_divisor = new_serial.custom_divisor;
3540 goto check_and_exit;
3545 * OK, past this point, all the error checking has been done.
3546 * At this point, we start making changes.....
3549 info->baud = new_serial.baud_base;
3550 info->custom_divisor = new_serial.custom_divisor;
3551 info->flags = ((info->flags & ~ASYNC_FLAGS) |
3552 (new_serial.flags & ASYNC_FLAGS));
3553 info->close_delay = new_serial.close_delay * HZ/100;
3554 info->closing_wait = new_serial.closing_wait * HZ/100;
3556 check_and_exit:
3557 if (info->flags & ASYNC_INITIALIZED){
3558 set_line_char(info);
3559 return 0;
3560 }else{
3561 return startup(info);
3563 } /* set_serial_info */
3566 * get_lsr_info - get line status register info
3568 * Purpose: Let user call ioctl() to get info when the UART physically
3569 * is emptied. On bus types like RS485, the transmitter must
3570 * release the bus after transmitting. This must be done when
3571 * the transmit shift register is empty, not be done when the
3572 * transmit holding register is empty. This functionality
3573 * allows an RS485 driver to be written in user space.
3575 static int get_lsr_info(struct cyclades_port *info, unsigned int __user *value)
3577 int card, chip, channel, index;
3578 unsigned char status;
3579 unsigned int result;
3580 unsigned long flags;
3581 void __iomem *base_addr;
3583 card = info->card;
3584 channel = (info->line) - (cy_card[card].first_line);
3585 if (!IS_CYC_Z(cy_card[card])) {
3586 chip = channel>>2;
3587 channel &= 0x03;
3588 index = cy_card[card].bus_index;
3589 base_addr = cy_card[card].base_addr + (cy_chip_offset[chip]<<index);
3591 CY_LOCK(info, flags);
3592 status = cy_readb(base_addr+(CySRER<<index)) & (CyTxRdy|CyTxMpty);
3593 CY_UNLOCK(info, flags);
3594 result = (status ? 0 : TIOCSER_TEMT);
3595 } else {
3596 /* Not supported yet */
3597 return -EINVAL;
3599 return put_user(result, (unsigned long __user *) value);
3602 static int
3603 cy_tiocmget(struct tty_struct *tty, struct file *file)
3605 struct cyclades_port * info = (struct cyclades_port *)tty->driver_data;
3606 int card,chip,channel,index;
3607 void __iomem *base_addr;
3608 unsigned long flags;
3609 unsigned char status;
3610 unsigned long lstatus;
3611 unsigned int result;
3612 struct FIRM_ID __iomem *firm_id;
3613 struct ZFW_CTRL __iomem *zfw_ctrl;
3614 struct BOARD_CTRL __iomem *board_ctrl;
3615 struct CH_CTRL __iomem *ch_ctrl;
3617 if (serial_paranoia_check(info, tty->name, __FUNCTION__))
3618 return -ENODEV;
3620 card = info->card;
3621 channel = (info->line) - (cy_card[card].first_line);
3622 if (!IS_CYC_Z(cy_card[card])) {
3623 chip = channel>>2;
3624 channel &= 0x03;
3625 index = cy_card[card].bus_index;
3626 base_addr = cy_card[card].base_addr + (cy_chip_offset[chip]<<index);
3628 CY_LOCK(info, flags);
3629 cy_writeb(base_addr+(CyCAR<<index), (u_char)channel);
3630 status = cy_readb(base_addr+(CyMSVR1<<index));
3631 status |= cy_readb(base_addr+(CyMSVR2<<index));
3632 CY_UNLOCK(info, flags);
3634 if (info->rtsdtr_inv) {
3635 result = ((status & CyRTS) ? TIOCM_DTR : 0)
3636 | ((status & CyDTR) ? TIOCM_RTS : 0);
3637 } else {
3638 result = ((status & CyRTS) ? TIOCM_RTS : 0)
3639 | ((status & CyDTR) ? TIOCM_DTR : 0);
3641 result |= ((status & CyDCD) ? TIOCM_CAR : 0)
3642 | ((status & CyRI) ? TIOCM_RNG : 0)
3643 | ((status & CyDSR) ? TIOCM_DSR : 0)
3644 | ((status & CyCTS) ? TIOCM_CTS : 0);
3645 } else {
3646 base_addr = cy_card[card].base_addr;
3648 if (cy_card[card].num_chips != -1){
3649 return -EINVAL;
3652 firm_id = cy_card[card].base_addr + ID_ADDRESS;
3653 if (ISZLOADED(cy_card[card])) {
3654 zfw_ctrl = cy_card[card].base_addr + (cy_readl(&firm_id->zfwctrl_addr) & 0xfffff);
3655 board_ctrl = &zfw_ctrl->board_ctrl;
3656 ch_ctrl = zfw_ctrl->ch_ctrl;
3657 lstatus = cy_readl(&ch_ctrl[channel].rs_status);
3658 result = ((lstatus & C_RS_RTS) ? TIOCM_RTS : 0)
3659 | ((lstatus & C_RS_DTR) ? TIOCM_DTR : 0)
3660 | ((lstatus & C_RS_DCD) ? TIOCM_CAR : 0)
3661 | ((lstatus & C_RS_RI) ? TIOCM_RNG : 0)
3662 | ((lstatus & C_RS_DSR) ? TIOCM_DSR : 0)
3663 | ((lstatus & C_RS_CTS) ? TIOCM_CTS : 0);
3664 }else{
3665 result = 0;
3666 return -ENODEV;
3670 return result;
3671 } /* cy_tiomget */
3674 static int
3675 cy_tiocmset(struct tty_struct *tty, struct file *file,
3676 unsigned int set, unsigned int clear)
3678 struct cyclades_port * info = (struct cyclades_port *)tty->driver_data;
3679 int card,chip,channel,index;
3680 void __iomem *base_addr;
3681 unsigned long flags;
3682 struct FIRM_ID __iomem *firm_id;
3683 struct ZFW_CTRL __iomem *zfw_ctrl;
3684 struct BOARD_CTRL __iomem *board_ctrl;
3685 struct CH_CTRL __iomem *ch_ctrl;
3686 int retval;
3688 if (serial_paranoia_check(info, tty->name, __FUNCTION__))
3689 return -ENODEV;
3691 card = info->card;
3692 channel = (info->line) - (cy_card[card].first_line);
3693 if (!IS_CYC_Z(cy_card[card])) {
3694 chip = channel>>2;
3695 channel &= 0x03;
3696 index = cy_card[card].bus_index;
3697 base_addr = cy_card[card].base_addr + (cy_chip_offset[chip]<<index);
3699 if (set & TIOCM_RTS){
3700 CY_LOCK(info, flags);
3701 cy_writeb(base_addr+(CyCAR<<index), (u_char)channel);
3702 if (info->rtsdtr_inv) {
3703 cy_writeb(base_addr+(CyMSVR2<<index), CyDTR);
3704 } else {
3705 cy_writeb(base_addr+(CyMSVR1<<index), CyRTS);
3707 CY_UNLOCK(info, flags);
3709 if (clear & TIOCM_RTS) {
3710 CY_LOCK(info, flags);
3711 cy_writeb(base_addr+(CyCAR<<index), (u_char)channel);
3712 if (info->rtsdtr_inv) {
3713 cy_writeb(base_addr+(CyMSVR2<<index), ~CyDTR);
3714 } else {
3715 cy_writeb(base_addr+(CyMSVR1<<index), ~CyRTS);
3717 CY_UNLOCK(info, flags);
3719 if (set & TIOCM_DTR){
3720 CY_LOCK(info, flags);
3721 cy_writeb(base_addr+(CyCAR<<index), (u_char)channel);
3722 if (info->rtsdtr_inv) {
3723 cy_writeb(base_addr+(CyMSVR1<<index), CyRTS);
3724 } else {
3725 cy_writeb(base_addr+(CyMSVR2<<index), CyDTR);
3727 #ifdef CY_DEBUG_DTR
3728 printk("cyc:set_modem_info raising DTR\n");
3729 printk(" status: 0x%x, 0x%x\n",
3730 cy_readb(base_addr+(CyMSVR1<<index)),
3731 cy_readb(base_addr+(CyMSVR2<<index)));
3732 #endif
3733 CY_UNLOCK(info, flags);
3735 if (clear & TIOCM_DTR) {
3736 CY_LOCK(info, flags);
3737 cy_writeb(base_addr+(CyCAR<<index), (u_char)channel);
3738 if (info->rtsdtr_inv) {
3739 cy_writeb(base_addr+(CyMSVR1<<index), ~CyRTS);
3740 } else {
3741 cy_writeb(base_addr+(CyMSVR2<<index), ~CyDTR);
3744 #ifdef CY_DEBUG_DTR
3745 printk("cyc:set_modem_info dropping DTR\n");
3746 printk(" status: 0x%x, 0x%x\n",
3747 cy_readb(base_addr+(CyMSVR1<<index)),
3748 cy_readb(base_addr+(CyMSVR2<<index)));
3749 #endif
3750 CY_UNLOCK(info, flags);
3752 } else {
3753 base_addr = cy_card[card].base_addr;
3755 firm_id = cy_card[card].base_addr + ID_ADDRESS;
3756 if (ISZLOADED(cy_card[card])) {
3757 zfw_ctrl = cy_card[card].base_addr + (cy_readl(&firm_id->zfwctrl_addr) & 0xfffff);
3758 board_ctrl = &zfw_ctrl->board_ctrl;
3759 ch_ctrl = zfw_ctrl->ch_ctrl;
3761 if (set & TIOCM_RTS){
3762 CY_LOCK(info, flags);
3763 cy_writel(&ch_ctrl[channel].rs_control,
3764 cy_readl(&ch_ctrl[channel].rs_control) | C_RS_RTS);
3765 CY_UNLOCK(info, flags);
3767 if (clear & TIOCM_RTS) {
3768 CY_LOCK(info, flags);
3769 cy_writel(&ch_ctrl[channel].rs_control,
3770 cy_readl(&ch_ctrl[channel].rs_control) & ~C_RS_RTS);
3771 CY_UNLOCK(info, flags);
3773 if (set & TIOCM_DTR){
3774 CY_LOCK(info, flags);
3775 cy_writel(&ch_ctrl[channel].rs_control,
3776 cy_readl(&ch_ctrl[channel].rs_control) | C_RS_DTR);
3777 #ifdef CY_DEBUG_DTR
3778 printk("cyc:set_modem_info raising Z DTR\n");
3779 #endif
3780 CY_UNLOCK(info, flags);
3782 if (clear & TIOCM_DTR) {
3783 CY_LOCK(info, flags);
3784 cy_writel(&ch_ctrl[channel].rs_control,
3785 cy_readl(&ch_ctrl[channel].rs_control) & ~C_RS_DTR);
3786 #ifdef CY_DEBUG_DTR
3787 printk("cyc:set_modem_info clearing Z DTR\n");
3788 #endif
3789 CY_UNLOCK(info, flags);
3791 }else{
3792 return -ENODEV;
3794 CY_LOCK(info, flags);
3795 retval = cyz_issue_cmd(&cy_card[info->card],
3796 channel, C_CM_IOCTLM,0L);
3797 if (retval != 0){
3798 printk("cyc:set_modem_info retval on ttyC%d was %x\n",
3799 info->line, retval);
3801 CY_UNLOCK(info, flags);
3803 return 0;
3804 } /* cy_tiocmset */
3807 * cy_break() --- routine which turns the break handling on or off
3809 static void
3810 cy_break(struct tty_struct *tty, int break_state)
3812 struct cyclades_port * info = (struct cyclades_port *)tty->driver_data;
3813 unsigned long flags;
3815 if (serial_paranoia_check(info, tty->name, "cy_break"))
3816 return;
3818 CY_LOCK(info, flags);
3819 if (!IS_CYC_Z(cy_card[info->card])) {
3820 /* Let the transmit ISR take care of this (since it
3821 requires stuffing characters into the output stream).
3823 if (break_state == -1) {
3824 if (!info->breakon) {
3825 info->breakon = 1;
3826 if (!info->xmit_cnt) {
3827 CY_UNLOCK(info, flags);
3828 start_xmit(info);
3829 CY_LOCK(info, flags);
3832 } else {
3833 if (!info->breakoff) {
3834 info->breakoff = 1;
3835 if (!info->xmit_cnt) {
3836 CY_UNLOCK(info, flags);
3837 start_xmit(info);
3838 CY_LOCK(info, flags);
3842 } else {
3843 int retval;
3845 if (break_state == -1) {
3846 retval = cyz_issue_cmd(&cy_card[info->card],
3847 (info->line) - (cy_card[info->card].first_line),
3848 C_CM_SET_BREAK, 0L);
3849 if (retval != 0) {
3850 printk("cyc:cy_break (set) retval on ttyC%d was %x\n",
3851 info->line, retval);
3853 } else {
3854 retval = cyz_issue_cmd(&cy_card[info->card],
3855 (info->line) - (cy_card[info->card].first_line),
3856 C_CM_CLR_BREAK, 0L);
3857 if (retval != 0) {
3858 printk("cyc:cy_break (clr) retval on ttyC%d was %x\n",
3859 info->line, retval);
3863 CY_UNLOCK(info, flags);
3864 } /* cy_break */
3866 static int
3867 get_mon_info(struct cyclades_port * info, struct cyclades_monitor __user * mon)
3870 if(copy_to_user(mon, &info->mon, sizeof(struct cyclades_monitor)))
3871 return -EFAULT;
3872 info->mon.int_count = 0;
3873 info->mon.char_count = 0;
3874 info->mon.char_max = 0;
3875 info->mon.char_last = 0;
3876 return 0;
3877 }/* get_mon_info */
3880 static int
3881 set_threshold(struct cyclades_port * info, unsigned long value)
3883 void __iomem *base_addr;
3884 int card,channel,chip,index;
3885 unsigned long flags;
3887 card = info->card;
3888 channel = info->line - cy_card[card].first_line;
3889 if (!IS_CYC_Z(cy_card[card])) {
3890 chip = channel>>2;
3891 channel &= 0x03;
3892 index = cy_card[card].bus_index;
3893 base_addr = cy_card[card].base_addr + (cy_chip_offset[chip]<<index);
3895 info->cor3 &= ~CyREC_FIFO;
3896 info->cor3 |= value & CyREC_FIFO;
3898 CY_LOCK(info, flags);
3899 cy_writeb(base_addr+(CyCOR3<<index), info->cor3);
3900 cyy_issue_cmd(base_addr,CyCOR_CHANGE|CyCOR3ch,index);
3901 CY_UNLOCK(info, flags);
3902 } else {
3903 // Nothing to do!
3905 return 0;
3906 }/* set_threshold */
3909 static int
3910 get_threshold(struct cyclades_port * info, unsigned long __user *value)
3912 void __iomem *base_addr;
3913 int card,channel,chip,index;
3914 unsigned long tmp;
3916 card = info->card;
3917 channel = info->line - cy_card[card].first_line;
3918 if (!IS_CYC_Z(cy_card[card])) {
3919 chip = channel>>2;
3920 channel &= 0x03;
3921 index = cy_card[card].bus_index;
3922 base_addr = cy_card[card].base_addr + (cy_chip_offset[chip]<<index);
3924 tmp = cy_readb(base_addr+(CyCOR3<<index)) & CyREC_FIFO;
3925 return put_user(tmp,value);
3926 } else {
3927 // Nothing to do!
3928 return 0;
3930 }/* get_threshold */
3933 static int
3934 set_default_threshold(struct cyclades_port * info, unsigned long value)
3936 info->default_threshold = value & 0x0f;
3937 return 0;
3938 }/* set_default_threshold */
3941 static int
3942 get_default_threshold(struct cyclades_port * info, unsigned long __user *value)
3944 return put_user(info->default_threshold,value);
3945 }/* get_default_threshold */
3948 static int
3949 set_timeout(struct cyclades_port * info, unsigned long value)
3951 void __iomem *base_addr;
3952 int card,channel,chip,index;
3953 unsigned long flags;
3955 card = info->card;
3956 channel = info->line - cy_card[card].first_line;
3957 if (!IS_CYC_Z(cy_card[card])) {
3958 chip = channel>>2;
3959 channel &= 0x03;
3960 index = cy_card[card].bus_index;
3961 base_addr = cy_card[card].base_addr + (cy_chip_offset[chip]<<index);
3963 CY_LOCK(info, flags);
3964 cy_writeb(base_addr+(CyRTPR<<index), value & 0xff);
3965 CY_UNLOCK(info, flags);
3966 } else {
3967 // Nothing to do!
3969 return 0;
3970 }/* set_timeout */
3973 static int
3974 get_timeout(struct cyclades_port * info, unsigned long __user *value)
3976 void __iomem *base_addr;
3977 int card,channel,chip,index;
3978 unsigned long tmp;
3980 card = info->card;
3981 channel = info->line - cy_card[card].first_line;
3982 if (!IS_CYC_Z(cy_card[card])) {
3983 chip = channel>>2;
3984 channel &= 0x03;
3985 index = cy_card[card].bus_index;
3986 base_addr = cy_card[card].base_addr + (cy_chip_offset[chip]<<index);
3988 tmp = cy_readb(base_addr+(CyRTPR<<index));
3989 return put_user(tmp,value);
3990 } else {
3991 // Nothing to do!
3992 return 0;
3994 }/* get_timeout */
3997 static int
3998 set_default_timeout(struct cyclades_port * info, unsigned long value)
4000 info->default_timeout = value & 0xff;
4001 return 0;
4002 }/* set_default_timeout */
4005 static int
4006 get_default_timeout(struct cyclades_port * info, unsigned long __user *value)
4008 return put_user(info->default_timeout,value);
4009 }/* get_default_timeout */
4012 * This routine allows the tty driver to implement device-
4013 * specific ioctl's. If the ioctl number passed in cmd is
4014 * not recognized by the driver, it should return ENOIOCTLCMD.
4016 static int
4017 cy_ioctl(struct tty_struct *tty, struct file * file,
4018 unsigned int cmd, unsigned long arg)
4020 struct cyclades_port * info = (struct cyclades_port *)tty->driver_data;
4021 struct cyclades_icount cprev, cnow; /* kernel counter temps */
4022 struct serial_icounter_struct __user *p_cuser; /* user space */
4023 int ret_val = 0;
4024 unsigned long flags;
4025 void __user *argp = (void __user *)arg;
4027 if (serial_paranoia_check(info, tty->name, "cy_ioctl"))
4028 return -ENODEV;
4030 #ifdef CY_DEBUG_OTHER
4031 printk("cyc:cy_ioctl ttyC%d, cmd = %x arg = %lx\n",
4032 info->line, cmd, arg); /* */
4033 #endif
4035 switch (cmd) {
4036 case CYGETMON:
4037 ret_val = get_mon_info(info, argp);
4038 break;
4039 case CYGETTHRESH:
4040 ret_val = get_threshold(info, argp);
4041 break;
4042 case CYSETTHRESH:
4043 ret_val = set_threshold(info, arg);
4044 break;
4045 case CYGETDEFTHRESH:
4046 ret_val = get_default_threshold(info, argp);
4047 break;
4048 case CYSETDEFTHRESH:
4049 ret_val = set_default_threshold(info, arg);
4050 break;
4051 case CYGETTIMEOUT:
4052 ret_val = get_timeout(info, argp);
4053 break;
4054 case CYSETTIMEOUT:
4055 ret_val = set_timeout(info, arg);
4056 break;
4057 case CYGETDEFTIMEOUT:
4058 ret_val = get_default_timeout(info, argp);
4059 break;
4060 case CYSETDEFTIMEOUT:
4061 ret_val = set_default_timeout(info, arg);
4062 break;
4063 case CYSETRFLOW:
4064 info->rflow = (int)arg;
4065 ret_val = 0;
4066 break;
4067 case CYGETRFLOW:
4068 ret_val = info->rflow;
4069 break;
4070 case CYSETRTSDTR_INV:
4071 info->rtsdtr_inv = (int)arg;
4072 ret_val = 0;
4073 break;
4074 case CYGETRTSDTR_INV:
4075 ret_val = info->rtsdtr_inv;
4076 break;
4077 case CYGETCARDINFO:
4078 if (copy_to_user(argp, &cy_card[info->card],
4079 sizeof (struct cyclades_card))) {
4080 ret_val = -EFAULT;
4081 break;
4083 ret_val = 0;
4084 break;
4085 case CYGETCD1400VER:
4086 ret_val = info->chip_rev;
4087 break;
4088 #ifndef CONFIG_CYZ_INTR
4089 case CYZSETPOLLCYCLE:
4090 cyz_polling_cycle = (arg * HZ) / 1000;
4091 ret_val = 0;
4092 break;
4093 case CYZGETPOLLCYCLE:
4094 ret_val = (cyz_polling_cycle * 1000) / HZ;
4095 break;
4096 #endif /* CONFIG_CYZ_INTR */
4097 case CYSETWAIT:
4098 info->closing_wait = (unsigned short)arg * HZ/100;
4099 ret_val = 0;
4100 break;
4101 case CYGETWAIT:
4102 ret_val = info->closing_wait / (HZ/100);
4103 break;
4104 case TIOCGSERIAL:
4105 ret_val = get_serial_info(info, argp);
4106 break;
4107 case TIOCSSERIAL:
4108 ret_val = set_serial_info(info, argp);
4109 break;
4110 case TIOCSERGETLSR: /* Get line status register */
4111 ret_val = get_lsr_info(info, argp);
4112 break;
4114 * Wait for any of the 4 modem inputs (DCD,RI,DSR,CTS) to change
4115 * - mask passed in arg for lines of interest
4116 * (use |'ed TIOCM_RNG/DSR/CD/CTS for masking)
4117 * Caller should use TIOCGICOUNT to see which one it was
4119 case TIOCMIWAIT:
4120 CY_LOCK(info, flags);
4121 /* note the counters on entry */
4122 cprev = info->icount;
4123 CY_UNLOCK(info, flags);
4124 while (1) {
4125 interruptible_sleep_on(&info->delta_msr_wait);
4126 /* see if a signal did it */
4127 if (signal_pending(current)) {
4128 return -ERESTARTSYS;
4131 CY_LOCK(info, flags);
4132 cnow = info->icount; /* atomic copy */
4133 CY_UNLOCK(info, flags);
4135 if (cnow.rng == cprev.rng && cnow.dsr == cprev.dsr &&
4136 cnow.dcd == cprev.dcd && cnow.cts == cprev.cts) {
4137 return -EIO; /* no change => error */
4139 if ( ((arg & TIOCM_RNG) && (cnow.rng != cprev.rng)) ||
4140 ((arg & TIOCM_DSR) && (cnow.dsr != cprev.dsr)) ||
4141 ((arg & TIOCM_CD) && (cnow.dcd != cprev.dcd)) ||
4142 ((arg & TIOCM_CTS) && (cnow.cts != cprev.cts)) ) {
4143 return 0;
4145 cprev = cnow;
4147 /* NOTREACHED */
4150 * Get counter of input serial line interrupts (DCD,RI,DSR,CTS)
4151 * Return: write counters to the user passed counter struct
4152 * NB: both 1->0 and 0->1 transitions are counted except for
4153 * RI where only 0->1 is counted.
4155 case TIOCGICOUNT:
4156 CY_LOCK(info, flags);
4157 cnow = info->icount;
4158 CY_UNLOCK(info, flags);
4159 p_cuser = argp;
4160 ret_val = put_user(cnow.cts, &p_cuser->cts);
4161 if (ret_val) return ret_val;
4162 ret_val = put_user(cnow.dsr, &p_cuser->dsr);
4163 if (ret_val) return ret_val;
4164 ret_val = put_user(cnow.rng, &p_cuser->rng);
4165 if (ret_val) return ret_val;
4166 ret_val = put_user(cnow.dcd, &p_cuser->dcd);
4167 if (ret_val) return ret_val;
4168 ret_val = put_user(cnow.rx, &p_cuser->rx);
4169 if (ret_val) return ret_val;
4170 ret_val = put_user(cnow.tx, &p_cuser->tx);
4171 if (ret_val) return ret_val;
4172 ret_val = put_user(cnow.frame, &p_cuser->frame);
4173 if (ret_val) return ret_val;
4174 ret_val = put_user(cnow.overrun, &p_cuser->overrun);
4175 if (ret_val) return ret_val;
4176 ret_val = put_user(cnow.parity, &p_cuser->parity);
4177 if (ret_val) return ret_val;
4178 ret_val = put_user(cnow.brk, &p_cuser->brk);
4179 if (ret_val) return ret_val;
4180 ret_val = put_user(cnow.buf_overrun, &p_cuser->buf_overrun);
4181 if (ret_val) return ret_val;
4182 ret_val = 0;
4183 break;
4184 default:
4185 ret_val = -ENOIOCTLCMD;
4188 #ifdef CY_DEBUG_OTHER
4189 printk(" cyc:cy_ioctl done\n");
4190 #endif
4192 return ret_val;
4193 } /* cy_ioctl */
4197 * This routine allows the tty driver to be notified when
4198 * device's termios settings have changed. Note that a
4199 * well-designed tty driver should be prepared to accept the case
4200 * where old == NULL, and try to do something rational.
4202 static void
4203 cy_set_termios(struct tty_struct *tty, struct termios * old_termios)
4205 struct cyclades_port *info = (struct cyclades_port *)tty->driver_data;
4207 #ifdef CY_DEBUG_OTHER
4208 printk("cyc:cy_set_termios ttyC%d\n", info->line);
4209 #endif
4211 if ((tty->termios->c_cflag == old_termios->c_cflag) &&
4212 ((tty->termios->c_iflag & (IXON|IXANY)) ==
4213 (old_termios->c_iflag & (IXON|IXANY))))
4214 return;
4215 set_line_char(info);
4217 if ((old_termios->c_cflag & CRTSCTS) &&
4218 !(tty->termios->c_cflag & CRTSCTS)) {
4219 tty->hw_stopped = 0;
4220 cy_start(tty);
4222 #if 0
4224 * No need to wake up processes in open wait, since they
4225 * sample the CLOCAL flag once, and don't recheck it.
4226 * XXX It's not clear whether the current behavior is correct
4227 * or not. Hence, this may change.....
4229 if (!(old_termios->c_cflag & CLOCAL) &&
4230 (tty->termios->c_cflag & CLOCAL))
4231 wake_up_interruptible(&info->open_wait);
4232 #endif
4234 return;
4235 } /* cy_set_termios */
4237 /* This function is used to send a high-priority XON/XOFF character to
4238 the device.
4240 static void
4241 cy_send_xchar (struct tty_struct *tty, char ch)
4243 struct cyclades_port *info = (struct cyclades_port *) tty->driver_data;
4244 int card, channel;
4246 if (serial_paranoia_check (info, tty->name, "cy_send_xchar"))
4247 return;
4249 info->x_char = ch;
4251 if (ch)
4252 cy_start (tty);
4254 card = info->card;
4255 channel = info->line - cy_card[card].first_line;
4257 if (IS_CYC_Z (cy_card[card])) {
4258 if (ch == STOP_CHAR (tty))
4259 cyz_issue_cmd (&cy_card[card], channel, C_CM_SENDXOFF, 0L);
4260 else if (ch == START_CHAR (tty))
4261 cyz_issue_cmd (&cy_card[card], channel, C_CM_SENDXON, 0L);
4265 /* This routine is called by the upper-layer tty layer to signal
4266 that incoming characters should be throttled because the input
4267 buffers are close to full.
4269 static void
4270 cy_throttle(struct tty_struct * tty)
4272 struct cyclades_port *info = (struct cyclades_port *)tty->driver_data;
4273 unsigned long flags;
4274 void __iomem *base_addr;
4275 int card,chip,channel,index;
4277 #ifdef CY_DEBUG_THROTTLE
4278 char buf[64];
4280 printk("cyc:throttle %s: %d....ttyC%d\n",
4281 tty_name(tty, buf),
4282 tty->ldisc.chars_in_buffer(tty), info->line);
4283 #endif
4285 if (serial_paranoia_check(info, tty->name, "cy_throttle")){
4286 return;
4289 card = info->card;
4291 if (I_IXOFF(tty)) {
4292 if (!IS_CYC_Z (cy_card[card]))
4293 cy_send_xchar (tty, STOP_CHAR (tty));
4294 else
4295 info->throttle = 1;
4298 if (tty->termios->c_cflag & CRTSCTS) {
4299 channel = info->line - cy_card[card].first_line;
4300 if (!IS_CYC_Z(cy_card[card])) {
4301 chip = channel>>2;
4302 channel &= 0x03;
4303 index = cy_card[card].bus_index;
4304 base_addr = cy_card[card].base_addr + (cy_chip_offset[chip]<<index);
4306 CY_LOCK(info, flags);
4307 cy_writeb(base_addr+(CyCAR<<index), (u_char)channel);
4308 if (info->rtsdtr_inv) {
4309 cy_writeb(base_addr+(CyMSVR2<<index), ~CyDTR);
4310 } else {
4311 cy_writeb(base_addr+(CyMSVR1<<index), ~CyRTS);
4313 CY_UNLOCK(info, flags);
4314 } else {
4315 info->throttle = 1;
4319 return;
4320 } /* cy_throttle */
4324 * This routine notifies the tty driver that it should signal
4325 * that characters can now be sent to the tty without fear of
4326 * overrunning the input buffers of the line disciplines.
4328 static void
4329 cy_unthrottle(struct tty_struct * tty)
4331 struct cyclades_port *info = (struct cyclades_port *)tty->driver_data;
4332 unsigned long flags;
4333 void __iomem *base_addr;
4334 int card,chip,channel,index;
4336 #ifdef CY_DEBUG_THROTTLE
4337 char buf[64];
4339 printk("cyc:unthrottle %s: %d....ttyC%d\n",
4340 tty_name(tty, buf),
4341 tty->ldisc.chars_in_buffer(tty), info->line);
4342 #endif
4344 if (serial_paranoia_check(info, tty->name, "cy_unthrottle")){
4345 return;
4348 if (I_IXOFF(tty)) {
4349 if (info->x_char)
4350 info->x_char = 0;
4351 else
4352 cy_send_xchar (tty, START_CHAR (tty));
4355 if (tty->termios->c_cflag & CRTSCTS) {
4356 card = info->card;
4357 channel = info->line - cy_card[card].first_line;
4358 if (!IS_CYC_Z(cy_card[card])) {
4359 chip = channel>>2;
4360 channel &= 0x03;
4361 index = cy_card[card].bus_index;
4362 base_addr = cy_card[card].base_addr + (cy_chip_offset[chip]<<index);
4364 CY_LOCK(info, flags);
4365 cy_writeb(base_addr+(CyCAR<<index), (u_char)channel);
4366 if (info->rtsdtr_inv) {
4367 cy_writeb(base_addr+(CyMSVR2<<index), CyDTR);
4368 } else {
4369 cy_writeb(base_addr+(CyMSVR1<<index), CyRTS);
4371 CY_UNLOCK(info, flags);
4372 } else {
4373 info->throttle = 0;
4377 return;
4378 } /* cy_unthrottle */
4381 /* cy_start and cy_stop provide software output flow control as a
4382 function of XON/XOFF, software CTS, and other such stuff.
4384 static void
4385 cy_stop(struct tty_struct *tty)
4387 struct cyclades_card *cinfo;
4388 struct cyclades_port *info = (struct cyclades_port *)tty->driver_data;
4389 void __iomem *base_addr;
4390 int chip,channel,index;
4391 unsigned long flags;
4393 #ifdef CY_DEBUG_OTHER
4394 printk("cyc:cy_stop ttyC%d\n", info->line); /* */
4395 #endif
4397 if (serial_paranoia_check(info, tty->name, "cy_stop"))
4398 return;
4400 cinfo = &cy_card[info->card];
4401 channel = info->line - cinfo->first_line;
4402 if (!IS_CYC_Z(*cinfo)) {
4403 index = cinfo->bus_index;
4404 chip = channel>>2;
4405 channel &= 0x03;
4406 base_addr = cy_card[info->card].base_addr + (cy_chip_offset[chip]<<index);
4408 CY_LOCK(info, flags);
4409 cy_writeb(base_addr+(CyCAR<<index),
4410 (u_char)(channel & 0x0003)); /* index channel */
4411 cy_writeb(base_addr+(CySRER<<index),
4412 cy_readb(base_addr+(CySRER<<index)) & ~CyTxRdy);
4413 CY_UNLOCK(info, flags);
4414 } else {
4415 // Nothing to do!
4418 return;
4419 } /* cy_stop */
4422 static void
4423 cy_start(struct tty_struct *tty)
4425 struct cyclades_card *cinfo;
4426 struct cyclades_port *info = (struct cyclades_port *)tty->driver_data;
4427 void __iomem *base_addr;
4428 int chip,channel,index;
4429 unsigned long flags;
4431 #ifdef CY_DEBUG_OTHER
4432 printk("cyc:cy_start ttyC%d\n", info->line); /* */
4433 #endif
4435 if (serial_paranoia_check(info, tty->name, "cy_start"))
4436 return;
4438 cinfo = &cy_card[info->card];
4439 channel = info->line - cinfo->first_line;
4440 index = cinfo->bus_index;
4441 if (!IS_CYC_Z(*cinfo)) {
4442 chip = channel>>2;
4443 channel &= 0x03;
4444 base_addr = cy_card[info->card].base_addr + (cy_chip_offset[chip]<<index);
4446 CY_LOCK(info, flags);
4447 cy_writeb(base_addr+(CyCAR<<index),
4448 (u_char)(channel & 0x0003)); /* index channel */
4449 cy_writeb(base_addr+(CySRER<<index),
4450 cy_readb(base_addr+(CySRER<<index)) | CyTxRdy);
4451 CY_UNLOCK(info, flags);
4452 } else {
4453 // Nothing to do!
4456 return;
4457 } /* cy_start */
4460 static void
4461 cy_flush_buffer(struct tty_struct *tty)
4463 struct cyclades_port *info = (struct cyclades_port *)tty->driver_data;
4464 int card, channel, retval;
4465 unsigned long flags;
4467 #ifdef CY_DEBUG_IO
4468 printk("cyc:cy_flush_buffer ttyC%d\n", info->line); /* */
4469 #endif
4471 if (serial_paranoia_check(info, tty->name, "cy_flush_buffer"))
4472 return;
4474 card = info->card;
4475 channel = (info->line) - (cy_card[card].first_line);
4477 CY_LOCK(info, flags);
4478 info->xmit_cnt = info->xmit_head = info->xmit_tail = 0;
4479 CY_UNLOCK(info, flags);
4481 if (IS_CYC_Z(cy_card[card])) { /* If it is a Z card, flush the on-board
4482 buffers as well */
4483 CY_LOCK(info, flags);
4484 retval = cyz_issue_cmd(&cy_card[card], channel, C_CM_FLUSH_TX, 0L);
4485 if (retval != 0) {
4486 printk("cyc: flush_buffer retval on ttyC%d was %x\n",
4487 info->line, retval);
4489 CY_UNLOCK(info, flags);
4491 tty_wakeup(tty);
4492 wake_up_interruptible(&tty->write_wait);
4493 } /* cy_flush_buffer */
4497 * cy_hangup() --- called by tty_hangup() when a hangup is signaled.
4499 static void
4500 cy_hangup(struct tty_struct *tty)
4502 struct cyclades_port * info = (struct cyclades_port *)tty->driver_data;
4504 #ifdef CY_DEBUG_OTHER
4505 printk("cyc:cy_hangup ttyC%d\n", info->line); /* */
4506 #endif
4508 if (serial_paranoia_check(info, tty->name, "cy_hangup"))
4509 return;
4511 cy_flush_buffer(tty);
4512 shutdown(info);
4513 info->event = 0;
4514 info->count = 0;
4515 #ifdef CY_DEBUG_COUNT
4516 printk("cyc:cy_hangup (%d): setting count to 0\n", current->pid);
4517 #endif
4518 info->tty = NULL;
4519 info->flags &= ~ASYNC_NORMAL_ACTIVE;
4520 wake_up_interruptible(&info->open_wait);
4521 } /* cy_hangup */
4525 * ---------------------------------------------------------------------
4526 * cy_init() and friends
4528 * cy_init() is called at boot-time to initialize the serial driver.
4529 * ---------------------------------------------------------------------
4532 /* initialize chips on Cyclom-Y card -- return number of valid
4533 chips (which is number of ports/4) */
4534 static unsigned short __init
4535 cyy_init_card(void __iomem *true_base_addr,int index)
4537 unsigned int chip_number;
4538 void __iomem *base_addr;
4540 cy_writeb(true_base_addr+(Cy_HwReset<<index), 0);
4541 /* Cy_HwReset is 0x1400 */
4542 cy_writeb(true_base_addr+(Cy_ClrIntr<<index), 0);
4543 /* Cy_ClrIntr is 0x1800 */
4544 udelay(500L);
4546 for(chip_number=0; chip_number<CyMAX_CHIPS_PER_CARD; chip_number++){
4547 base_addr = true_base_addr + (cy_chip_offset[chip_number]<<index);
4548 mdelay(1);
4549 if(cy_readb(base_addr+(CyCCR<<index)) != 0x00){
4550 /*************
4551 printk(" chip #%d at %#6lx is never idle (CCR != 0)\n",
4552 chip_number, (unsigned long)base_addr);
4553 *************/
4554 return chip_number;
4557 cy_writeb(base_addr+(CyGFRCR<<index), 0);
4558 udelay(10L);
4560 /* The Cyclom-16Y does not decode address bit 9 and therefore
4561 cannot distinguish between references to chip 0 and a non-
4562 existent chip 4. If the preceding clearing of the supposed
4563 chip 4 GFRCR register appears at chip 0, there is no chip 4
4564 and this must be a Cyclom-16Y, not a Cyclom-32Ye.
4566 if (chip_number == 4
4567 && cy_readb(true_base_addr
4568 + (cy_chip_offset[0]<<index)
4569 + (CyGFRCR<<index)) == 0){
4570 return chip_number;
4573 cy_writeb(base_addr+(CyCCR<<index), CyCHIP_RESET);
4574 mdelay(1);
4576 if(cy_readb(base_addr+(CyGFRCR<<index)) == 0x00){
4578 printk(" chip #%d at %#6lx is not responding ",
4579 chip_number, (unsigned long)base_addr);
4580 printk("(GFRCR stayed 0)\n",
4582 return chip_number;
4584 if((0xf0 & (cy_readb(base_addr+(CyGFRCR<<index)))) != 0x40){
4586 printk(" chip #%d at %#6lx is not valid (GFRCR == %#2x)\n",
4587 chip_number, (unsigned long)base_addr,
4588 base_addr[CyGFRCR<<index]);
4590 return chip_number;
4592 cy_writeb(base_addr+(CyGCR<<index), CyCH0_SERIAL);
4593 if (cy_readb(base_addr+(CyGFRCR<<index)) >= CD1400_REV_J){
4594 /* It is a CD1400 rev. J or later */
4595 /* Impossible to reach 5ms with this chip.
4596 Changed to 2ms instead (f = 500 Hz). */
4597 cy_writeb(base_addr+(CyPPR<<index), CyCLOCK_60_2MS);
4598 } else {
4599 /* f = 200 Hz */
4600 cy_writeb(base_addr+(CyPPR<<index), CyCLOCK_25_5MS);
4604 printk(" chip #%d at %#6lx is rev 0x%2x\n",
4605 chip_number, (unsigned long)base_addr,
4606 cy_readb(base_addr+(CyGFRCR<<index)));
4609 return chip_number;
4610 } /* cyy_init_card */
4613 * ---------------------------------------------------------------------
4614 * cy_detect_isa() - Probe for Cyclom-Y/ISA boards.
4615 * sets global variables and return the number of ISA boards found.
4616 * ---------------------------------------------------------------------
4618 static int __init
4619 cy_detect_isa(void)
4621 #ifdef CONFIG_ISA
4622 unsigned short cy_isa_irq,nboard;
4623 void __iomem *cy_isa_address;
4624 unsigned short i,j,cy_isa_nchan;
4625 #ifdef MODULE
4626 int isparam = 0;
4627 #endif
4629 nboard = 0;
4631 #ifdef MODULE
4632 /* Check for module parameters */
4633 for(i = 0 ; i < NR_CARDS; i++) {
4634 if (maddr[i] || i) {
4635 isparam = 1;
4636 cy_isa_addresses[i] = maddr[i];
4638 if (!maddr[i])
4639 break;
4641 #endif
4643 /* scan the address table probing for Cyclom-Y/ISA boards */
4644 for (i = 0 ; i < NR_ISA_ADDRS ; i++) {
4645 unsigned int isa_address = cy_isa_addresses[i];
4646 if (isa_address == 0x0000) {
4647 return(nboard);
4650 /* probe for CD1400... */
4651 cy_isa_address = ioremap(isa_address, CyISA_Ywin);
4652 cy_isa_nchan = CyPORTS_PER_CHIP *
4653 cyy_init_card(cy_isa_address,0);
4654 if (cy_isa_nchan == 0) {
4655 continue;
4658 #ifdef MODULE
4659 if (isparam && irq[i])
4660 cy_isa_irq = irq[i];
4661 else
4662 #endif
4663 /* find out the board's irq by probing */
4664 cy_isa_irq = detect_isa_irq(cy_isa_address);
4665 if (cy_isa_irq == 0) {
4666 printk("Cyclom-Y/ISA found at 0x%lx ",
4667 (unsigned long) cy_isa_address);
4668 printk("but the IRQ could not be detected.\n");
4669 continue;
4672 if((cy_next_channel+cy_isa_nchan) > NR_PORTS) {
4673 printk("Cyclom-Y/ISA found at 0x%lx ",
4674 (unsigned long) cy_isa_address);
4675 printk("but no more channels are available.\n");
4676 printk("Change NR_PORTS in cyclades.c and recompile kernel.\n");
4677 return(nboard);
4679 /* fill the next cy_card structure available */
4680 for (j = 0 ; j < NR_CARDS ; j++) {
4681 if (cy_card[j].base_addr == 0) break;
4683 if (j == NR_CARDS) { /* no more cy_cards available */
4684 printk("Cyclom-Y/ISA found at 0x%lx ",
4685 (unsigned long) cy_isa_address);
4686 printk("but no more cards can be used .\n");
4687 printk("Change NR_CARDS in cyclades.c and recompile kernel.\n");
4688 return(nboard);
4691 /* allocate IRQ */
4692 if(request_irq(cy_isa_irq, cyy_interrupt,
4693 SA_INTERRUPT, "Cyclom-Y", &cy_card[j]))
4695 printk("Cyclom-Y/ISA found at 0x%lx ",
4696 (unsigned long) cy_isa_address);
4697 printk("but could not allocate IRQ#%d.\n",
4698 cy_isa_irq);
4699 return(nboard);
4702 /* set cy_card */
4703 cy_card[j].base_addr = cy_isa_address;
4704 cy_card[j].ctl_addr = NULL;
4705 cy_card[j].irq = (int) cy_isa_irq;
4706 cy_card[j].bus_index = 0;
4707 cy_card[j].first_line = cy_next_channel;
4708 cy_card[j].num_chips = cy_isa_nchan/4;
4709 nboard++;
4711 /* print message */
4712 printk("Cyclom-Y/ISA #%d: 0x%lx-0x%lx, IRQ%d, ",
4713 j+1, (unsigned long) cy_isa_address,
4714 (unsigned long)(cy_isa_address + (CyISA_Ywin - 1)),
4715 cy_isa_irq);
4716 printk("%d channels starting from port %d.\n",
4717 cy_isa_nchan, cy_next_channel);
4718 cy_next_channel += cy_isa_nchan;
4720 return(nboard);
4721 #else
4722 return(0);
4723 #endif /* CONFIG_ISA */
4724 } /* cy_detect_isa */
4726 static void
4727 plx_init(void __iomem *addr, uclong initctl)
4729 /* Reset PLX */
4730 cy_writel(addr + initctl, cy_readl(addr + initctl) | 0x40000000);
4731 udelay(100L);
4732 cy_writel(addr + initctl, cy_readl(addr + initctl) & ~0x40000000);
4734 /* Reload Config. Registers from EEPROM */
4735 cy_writel(addr + initctl, cy_readl(addr + initctl) | 0x20000000);
4736 udelay(100L);
4737 cy_writel(addr + initctl, cy_readl(addr + initctl) & ~0x20000000);
4741 * ---------------------------------------------------------------------
4742 * cy_detect_pci() - Test PCI bus presence and Cyclom-Ye/PCI.
4743 * sets global variables and return the number of PCI boards found.
4744 * ---------------------------------------------------------------------
4746 static int __init
4747 cy_detect_pci(void)
4749 #ifdef CONFIG_PCI
4751 struct pci_dev *pdev = NULL;
4752 unsigned char cyy_rev_id;
4753 unsigned char cy_pci_irq = 0;
4754 uclong cy_pci_phys0, cy_pci_phys2;
4755 void __iomem *cy_pci_addr0, *cy_pci_addr2;
4756 unsigned short i,j,cy_pci_nchan, plx_ver;
4757 unsigned short device_id,dev_index = 0;
4758 uclong mailbox;
4759 uclong ZeIndex = 0;
4760 void __iomem *Ze_addr0[NR_CARDS], *Ze_addr2[NR_CARDS];
4761 uclong Ze_phys0[NR_CARDS], Ze_phys2[NR_CARDS];
4762 unsigned char Ze_irq[NR_CARDS];
4763 struct pci_dev *Ze_pdev[NR_CARDS];
4765 for (i = 0; i < NR_CARDS; i++) {
4766 /* look for a Cyclades card by vendor and device id */
4767 while((device_id = cy_pci_dev_id[dev_index]) != 0) {
4768 if((pdev = pci_find_device(PCI_VENDOR_ID_CYCLADES,
4769 device_id, pdev)) == NULL) {
4770 dev_index++; /* try next device id */
4771 } else {
4772 break; /* found a board */
4776 if (device_id == 0)
4777 break;
4779 if (pci_enable_device(pdev))
4780 continue;
4782 /* read PCI configuration area */
4783 cy_pci_irq = pdev->irq;
4784 cy_pci_phys0 = pci_resource_start(pdev, 0);
4785 cy_pci_phys2 = pci_resource_start(pdev, 2);
4786 pci_read_config_byte(pdev, PCI_REVISION_ID, &cyy_rev_id);
4788 device_id &= ~PCI_DEVICE_ID_MASK;
4790 if ((device_id == PCI_DEVICE_ID_CYCLOM_Y_Lo)
4791 || (device_id == PCI_DEVICE_ID_CYCLOM_Y_Hi)){
4792 #ifdef CY_PCI_DEBUG
4793 printk("Cyclom-Y/PCI (bus=0x0%x, pci_id=0x%x, ",
4794 pdev->bus->number, pdev->devfn);
4795 printk("rev_id=%d) IRQ%d\n",
4796 cyy_rev_id, (int)cy_pci_irq);
4797 printk("Cyclom-Y/PCI:found winaddr=0x%lx ctladdr=0x%lx\n",
4798 (ulong)cy_pci_phys2, (ulong)cy_pci_phys0);
4799 #endif
4801 if (pci_resource_flags(pdev, 2) & IORESOURCE_IO) {
4802 printk(" Warning: PCI I/O bit incorrectly set. "
4803 "Ignoring it...\n");
4804 pdev->resource[2].flags &= ~IORESOURCE_IO;
4807 /* Although we don't use this I/O region, we should
4808 request it from the kernel anyway, to avoid problems
4809 with other drivers accessing it. */
4810 if (pci_request_regions(pdev, "Cyclom-Y") != 0) {
4811 printk(KERN_ERR "cyclades: failed to reserve PCI resources\n");
4812 continue;
4815 #if defined(__alpha__)
4816 if (device_id == PCI_DEVICE_ID_CYCLOM_Y_Lo) { /* below 1M? */
4817 printk("Cyclom-Y/PCI (bus=0x0%x, pci_id=0x%x, ",
4818 pdev->bus->number, pdev->devfn);
4819 printk("rev_id=%d) IRQ%d\n",
4820 cyy_rev_id, (int)cy_pci_irq);
4821 printk("Cyclom-Y/PCI:found winaddr=0x%lx ctladdr=0x%lx\n",
4822 (ulong)cy_pci_phys2, (ulong)cy_pci_phys0);
4823 printk("Cyclom-Y/PCI not supported for low addresses in "
4824 "Alpha systems.\n");
4825 i--;
4826 continue;
4828 #endif
4829 cy_pci_addr0 = ioremap(cy_pci_phys0, CyPCI_Yctl);
4830 cy_pci_addr2 = ioremap(cy_pci_phys2, CyPCI_Ywin);
4832 #ifdef CY_PCI_DEBUG
4833 printk("Cyclom-Y/PCI: relocate winaddr=0x%lx ctladdr=0x%lx\n",
4834 (u_long)cy_pci_addr2, (u_long)cy_pci_addr0);
4835 #endif
4836 cy_pci_nchan = (unsigned short)(CyPORTS_PER_CHIP *
4837 cyy_init_card(cy_pci_addr2, 1));
4838 if(cy_pci_nchan == 0) {
4839 printk("Cyclom-Y PCI host card with ");
4840 printk("no Serial-Modules at 0x%lx.\n",
4841 (ulong) cy_pci_phys2);
4842 i--;
4843 continue;
4845 if((cy_next_channel+cy_pci_nchan) > NR_PORTS) {
4846 printk("Cyclom-Y/PCI found at 0x%lx ",
4847 (ulong) cy_pci_phys2);
4848 printk("but no channels are available.\n");
4849 printk("Change NR_PORTS in cyclades.c and recompile kernel.\n");
4850 return(i);
4852 /* fill the next cy_card structure available */
4853 for (j = 0 ; j < NR_CARDS ; j++) {
4854 if (cy_card[j].base_addr == 0) break;
4856 if (j == NR_CARDS) { /* no more cy_cards available */
4857 printk("Cyclom-Y/PCI found at 0x%lx ",
4858 (ulong) cy_pci_phys2);
4859 printk("but no more cards can be used.\n");
4860 printk("Change NR_CARDS in cyclades.c and recompile kernel.\n");
4861 return(i);
4864 /* allocate IRQ */
4865 if(request_irq(cy_pci_irq, cyy_interrupt,
4866 SA_SHIRQ, "Cyclom-Y", &cy_card[j]))
4868 printk("Cyclom-Y/PCI found at 0x%lx ",
4869 (ulong) cy_pci_phys2);
4870 printk("but could not allocate IRQ%d.\n",
4871 cy_pci_irq);
4872 return(i);
4875 /* set cy_card */
4876 cy_card[j].base_phys = (ulong)cy_pci_phys2;
4877 cy_card[j].ctl_phys = (ulong)cy_pci_phys0;
4878 cy_card[j].base_addr = cy_pci_addr2;
4879 cy_card[j].ctl_addr = cy_pci_addr0;
4880 cy_card[j].irq = (int) cy_pci_irq;
4881 cy_card[j].bus_index = 1;
4882 cy_card[j].first_line = cy_next_channel;
4883 cy_card[j].num_chips = cy_pci_nchan/4;
4884 cy_card[j].pdev = pdev;
4886 /* enable interrupts in the PCI interface */
4887 plx_ver = cy_readb(cy_pci_addr2 + CyPLX_VER) & 0x0f;
4888 switch (plx_ver) {
4889 case PLX_9050:
4891 cy_writeb(cy_pci_addr0+0x4c, 0x43);
4892 break;
4894 case PLX_9060:
4895 case PLX_9080:
4896 default: /* Old boards, use PLX_9060 */
4898 plx_init(cy_pci_addr0, 0x6c);
4899 /* For some yet unknown reason, once the PLX9060 reloads
4900 the EEPROM, the IRQ is lost and, thus, we have to
4901 re-write it to the PCI config. registers.
4902 This will remain here until we find a permanent fix. */
4903 pci_write_config_byte(pdev, PCI_INTERRUPT_LINE, cy_pci_irq);
4905 cy_writew(cy_pci_addr0+0x68,
4906 cy_readw(cy_pci_addr0+0x68)|0x0900);
4907 break;
4910 /* print message */
4911 printk("Cyclom-Y/PCI #%d: 0x%lx-0x%lx, IRQ%d, ",
4912 j+1,
4913 (ulong)cy_pci_phys2,
4914 (ulong)(cy_pci_phys2 + CyPCI_Ywin - 1),
4915 (int)cy_pci_irq);
4916 printk("%d channels starting from port %d.\n",
4917 cy_pci_nchan, cy_next_channel);
4919 cy_next_channel += cy_pci_nchan;
4920 }else if (device_id == PCI_DEVICE_ID_CYCLOM_Z_Lo){
4921 /* print message */
4922 printk("Cyclades-Z/PCI (bus=0x0%x, pci_id=0x%x, ",
4923 pdev->bus->number, pdev->devfn);
4924 printk("rev_id=%d) IRQ%d\n",
4925 cyy_rev_id, (int)cy_pci_irq);
4926 printk("Cyclades-Z/PCI: found winaddr=0x%lx ctladdr=0x%lx\n",
4927 (ulong)cy_pci_phys2, (ulong)cy_pci_phys0);
4928 printk("Cyclades-Z/PCI not supported for low addresses\n");
4929 break;
4930 }else if (device_id == PCI_DEVICE_ID_CYCLOM_Z_Hi){
4931 #ifdef CY_PCI_DEBUG
4932 printk("Cyclades-Z/PCI (bus=0x0%x, pci_id=0x%x, ",
4933 pdev->bus->number, pdev->devfn);
4934 printk("rev_id=%d) IRQ%d\n",
4935 cyy_rev_id, (int)cy_pci_irq);
4936 printk("Cyclades-Z/PCI: found winaddr=0x%lx ctladdr=0x%lx\n",
4937 (ulong)cy_pci_phys2, (ulong)cy_pci_phys0);
4938 #endif
4939 cy_pci_addr0 = ioremap(cy_pci_phys0, CyPCI_Zctl);
4941 /* Disable interrupts on the PLX before resetting it */
4942 cy_writew(cy_pci_addr0+0x68,
4943 cy_readw(cy_pci_addr0+0x68) & ~0x0900);
4945 plx_init(cy_pci_addr0, 0x6c);
4946 /* For some yet unknown reason, once the PLX9060 reloads
4947 the EEPROM, the IRQ is lost and, thus, we have to
4948 re-write it to the PCI config. registers.
4949 This will remain here until we find a permanent fix. */
4950 pci_write_config_byte(pdev, PCI_INTERRUPT_LINE, cy_pci_irq);
4952 mailbox = (uclong)cy_readl(&((struct RUNTIME_9060 __iomem *)
4953 cy_pci_addr0)->mail_box_0);
4955 if (pci_resource_flags(pdev, 2) & IORESOURCE_IO) {
4956 printk(" Warning: PCI I/O bit incorrectly set. "
4957 "Ignoring it...\n");
4958 pdev->resource[2].flags &= ~IORESOURCE_IO;
4961 /* Although we don't use this I/O region, we should
4962 request it from the kernel anyway, to avoid problems
4963 with other drivers accessing it. */
4964 if (pci_request_regions(pdev, "Cyclades-Z") != 0) {
4965 printk(KERN_ERR "cyclades: failed to reserve PCI resources\n");
4966 continue;
4969 if (mailbox == ZE_V1) {
4970 cy_pci_addr2 = ioremap(cy_pci_phys2, CyPCI_Ze_win);
4971 if (ZeIndex == NR_CARDS) {
4972 printk("Cyclades-Ze/PCI found at 0x%lx ",
4973 (ulong)cy_pci_phys2);
4974 printk("but no more cards can be used.\n");
4975 printk("Change NR_CARDS in cyclades.c and recompile kernel.\n");
4976 } else {
4977 Ze_phys0[ZeIndex] = cy_pci_phys0;
4978 Ze_phys2[ZeIndex] = cy_pci_phys2;
4979 Ze_addr0[ZeIndex] = cy_pci_addr0;
4980 Ze_addr2[ZeIndex] = cy_pci_addr2;
4981 Ze_irq[ZeIndex] = cy_pci_irq;
4982 Ze_pdev[ZeIndex] = pdev;
4983 ZeIndex++;
4985 i--;
4986 continue;
4987 } else {
4988 cy_pci_addr2 = ioremap(cy_pci_phys2, CyPCI_Zwin);
4991 #ifdef CY_PCI_DEBUG
4992 printk("Cyclades-Z/PCI: relocate winaddr=0x%lx ctladdr=0x%lx\n",
4993 (ulong)cy_pci_addr2, (ulong)cy_pci_addr0);
4994 if (mailbox == ZO_V1) {
4995 cy_writel(&((struct RUNTIME_9060 *)
4996 (cy_pci_addr0))->loc_addr_base, WIN_CREG);
4997 PAUSE
4998 printk("Cyclades-8Zo/PCI: FPGA id %lx, ver %lx\n",
4999 (ulong)(0xff & cy_readl(&((struct CUSTOM_REG *)
5000 (cy_pci_addr2))->fpga_id)),
5001 (ulong)(0xff & cy_readl(&((struct CUSTOM_REG *)
5002 (cy_pci_addr2))->fpga_version)));
5003 cy_writel(&((struct RUNTIME_9060 *)
5004 (cy_pci_addr0))->loc_addr_base, WIN_RAM);
5005 } else {
5006 printk("Cyclades-Z/PCI: New Cyclades-Z board. FPGA not loaded\n");
5008 #endif
5009 /* The following clears the firmware id word. This ensures
5010 that the driver will not attempt to talk to the board
5011 until it has been properly initialized.
5013 PAUSE
5014 if ((mailbox == ZO_V1) || (mailbox == ZO_V2))
5015 cy_writel(cy_pci_addr2 + ID_ADDRESS, 0L);
5017 /* This must be a Cyclades-8Zo/PCI. The extendable
5018 version will have a different device_id and will
5019 be allocated its maximum number of ports. */
5020 cy_pci_nchan = 8;
5022 if((cy_next_channel+cy_pci_nchan) > NR_PORTS) {
5023 printk("Cyclades-8Zo/PCI found at 0x%lx ",
5024 (ulong)cy_pci_phys2);
5025 printk("but no channels are available.\n");
5026 printk("Change NR_PORTS in cyclades.c and recompile kernel.\n");
5027 return(i);
5030 /* fill the next cy_card structure available */
5031 for (j = 0 ; j < NR_CARDS ; j++) {
5032 if (cy_card[j].base_addr == 0) break;
5034 if (j == NR_CARDS) { /* no more cy_cards available */
5035 printk("Cyclades-8Zo/PCI found at 0x%lx ",
5036 (ulong)cy_pci_phys2);
5037 printk("but no more cards can be used.\n");
5038 printk("Change NR_CARDS in cyclades.c and recompile kernel.\n");
5039 return(i);
5042 #ifdef CONFIG_CYZ_INTR
5043 /* allocate IRQ only if board has an IRQ */
5044 if( (cy_pci_irq != 0) && (cy_pci_irq != 255) ) {
5045 if(request_irq(cy_pci_irq, cyz_interrupt,
5046 SA_SHIRQ, "Cyclades-Z", &cy_card[j]))
5048 printk("Cyclom-8Zo/PCI found at 0x%lx ",
5049 (ulong) cy_pci_phys2);
5050 printk("but could not allocate IRQ%d.\n",
5051 cy_pci_irq);
5052 return(i);
5055 #endif /* CONFIG_CYZ_INTR */
5058 /* set cy_card */
5059 cy_card[j].base_phys = cy_pci_phys2;
5060 cy_card[j].ctl_phys = cy_pci_phys0;
5061 cy_card[j].base_addr = cy_pci_addr2;
5062 cy_card[j].ctl_addr = cy_pci_addr0;
5063 cy_card[j].irq = (int) cy_pci_irq;
5064 cy_card[j].bus_index = 1;
5065 cy_card[j].first_line = cy_next_channel;
5066 cy_card[j].num_chips = -1;
5067 cy_card[j].pdev = pdev;
5069 /* print message */
5070 #ifdef CONFIG_CYZ_INTR
5071 /* don't report IRQ if board is no IRQ */
5072 if( (cy_pci_irq != 0) && (cy_pci_irq != 255) )
5073 printk("Cyclades-8Zo/PCI #%d: 0x%lx-0x%lx, IRQ%d, ",
5074 j+1,(ulong)cy_pci_phys2,
5075 (ulong)(cy_pci_phys2 + CyPCI_Zwin - 1),
5076 (int)cy_pci_irq);
5077 else
5078 #endif /* CONFIG_CYZ_INTR */
5079 printk("Cyclades-8Zo/PCI #%d: 0x%lx-0x%lx, ",
5080 j+1,(ulong)cy_pci_phys2,
5081 (ulong)(cy_pci_phys2 + CyPCI_Zwin - 1));
5083 printk("%d channels starting from port %d.\n",
5084 cy_pci_nchan,cy_next_channel);
5085 cy_next_channel += cy_pci_nchan;
5089 for (; ZeIndex != 0 && i < NR_CARDS; i++) {
5090 cy_pci_phys0 = Ze_phys0[0];
5091 cy_pci_phys2 = Ze_phys2[0];
5092 cy_pci_addr0 = Ze_addr0[0];
5093 cy_pci_addr2 = Ze_addr2[0];
5094 cy_pci_irq = Ze_irq[0];
5095 pdev = Ze_pdev[0];
5096 for (j = 0 ; j < ZeIndex-1 ; j++) {
5097 Ze_phys0[j] = Ze_phys0[j+1];
5098 Ze_phys2[j] = Ze_phys2[j+1];
5099 Ze_addr0[j] = Ze_addr0[j+1];
5100 Ze_addr2[j] = Ze_addr2[j+1];
5101 Ze_irq[j] = Ze_irq[j+1];
5102 Ze_pdev[j] = Ze_pdev[j+1];
5104 ZeIndex--;
5105 mailbox = (uclong)cy_readl(&((struct RUNTIME_9060 __iomem *)
5106 cy_pci_addr0)->mail_box_0);
5107 #ifdef CY_PCI_DEBUG
5108 printk("Cyclades-Z/PCI: relocate winaddr=0x%lx ctladdr=0x%lx\n",
5109 (ulong)cy_pci_addr2, (ulong)cy_pci_addr0);
5110 printk("Cyclades-Z/PCI: New Cyclades-Z board. FPGA not loaded\n");
5111 #endif
5112 PAUSE
5113 /* This must be the new Cyclades-Ze/PCI. */
5114 cy_pci_nchan = ZE_V1_NPORTS;
5116 if((cy_next_channel+cy_pci_nchan) > NR_PORTS) {
5117 printk("Cyclades-Ze/PCI found at 0x%lx ",
5118 (ulong)cy_pci_phys2);
5119 printk("but no channels are available.\n");
5120 printk("Change NR_PORTS in cyclades.c and recompile kernel.\n");
5121 return(i);
5124 /* fill the next cy_card structure available */
5125 for (j = 0 ; j < NR_CARDS ; j++) {
5126 if (cy_card[j].base_addr == 0) break;
5128 if (j == NR_CARDS) { /* no more cy_cards available */
5129 printk("Cyclades-Ze/PCI found at 0x%lx ",
5130 (ulong)cy_pci_phys2);
5131 printk("but no more cards can be used.\n");
5132 printk("Change NR_CARDS in cyclades.c and recompile kernel.\n");
5133 return(i);
5136 #ifdef CONFIG_CYZ_INTR
5137 /* allocate IRQ only if board has an IRQ */
5138 if( (cy_pci_irq != 0) && (cy_pci_irq != 255) ) {
5139 if(request_irq(cy_pci_irq, cyz_interrupt,
5140 SA_SHIRQ, "Cyclades-Z", &cy_card[j]))
5142 printk("Cyclom-Ze/PCI found at 0x%lx ",
5143 (ulong) cy_pci_phys2);
5144 printk("but could not allocate IRQ%d.\n",
5145 cy_pci_irq);
5146 return(i);
5149 #endif /* CONFIG_CYZ_INTR */
5151 /* set cy_card */
5152 cy_card[j].base_phys = cy_pci_phys2;
5153 cy_card[j].ctl_phys = cy_pci_phys0;
5154 cy_card[j].base_addr = cy_pci_addr2;
5155 cy_card[j].ctl_addr = cy_pci_addr0;
5156 cy_card[j].irq = (int) cy_pci_irq;
5157 cy_card[j].bus_index = 1;
5158 cy_card[j].first_line = cy_next_channel;
5159 cy_card[j].num_chips = -1;
5160 cy_card[j].pdev = pdev;
5162 /* print message */
5163 #ifdef CONFIG_CYZ_INTR
5164 /* don't report IRQ if board is no IRQ */
5165 if( (cy_pci_irq != 0) && (cy_pci_irq != 255) )
5166 printk("Cyclades-Ze/PCI #%d: 0x%lx-0x%lx, IRQ%d, ",
5167 j+1,(ulong)cy_pci_phys2,
5168 (ulong)(cy_pci_phys2 + CyPCI_Ze_win - 1),
5169 (int)cy_pci_irq);
5170 else
5171 #endif /* CONFIG_CYZ_INTR */
5172 printk("Cyclades-Ze/PCI #%d: 0x%lx-0x%lx, ",
5173 j+1,(ulong)cy_pci_phys2,
5174 (ulong)(cy_pci_phys2 + CyPCI_Ze_win - 1));
5176 printk("%d channels starting from port %d.\n",
5177 cy_pci_nchan,cy_next_channel);
5178 cy_next_channel += cy_pci_nchan;
5180 if (ZeIndex != 0) {
5181 printk("Cyclades-Ze/PCI found at 0x%x ",
5182 (unsigned int) Ze_phys2[0]);
5183 printk("but no more cards can be used.\n");
5184 printk("Change NR_CARDS in cyclades.c and recompile kernel.\n");
5186 return(i);
5187 #else
5188 return(0);
5189 #endif /* ifdef CONFIG_PCI */
5190 } /* cy_detect_pci */
5194 * This routine prints out the appropriate serial driver version number
5195 * and identifies which options were configured into this driver.
5197 static inline void
5198 show_version(void)
5200 char *rcsvers, *rcsdate, *tmp;
5201 rcsvers = strchr(rcsid, ' '); rcsvers++;
5202 tmp = strchr(rcsvers, ' '); *tmp++ = '\0';
5203 rcsdate = strchr(tmp, ' '); rcsdate++;
5204 tmp = strrchr(rcsdate, ' '); *tmp = '\0';
5205 printk("Cyclades driver %s %s\n",
5206 rcsvers, rcsdate);
5207 printk(" built %s %s\n",
5208 __DATE__, __TIME__);
5209 } /* show_version */
5211 static int
5212 cyclades_get_proc_info(char *buf, char **start, off_t offset, int length,
5213 int *eof, void *data)
5215 struct cyclades_port *info;
5216 int i;
5217 int len=0;
5218 off_t begin=0;
5219 off_t pos=0;
5220 int size;
5221 __u32 cur_jifs = jiffies;
5223 size = sprintf(buf, "Dev TimeOpen BytesOut IdleOut BytesIn IdleIn Overruns Ldisc\n");
5225 pos += size;
5226 len += size;
5228 /* Output one line for each known port */
5229 for (i = 0; i < NR_PORTS && cy_port[i].line >= 0; i++) {
5230 info = &cy_port[i];
5232 if (info->count)
5233 size = sprintf(buf+len,
5234 "%3d %8lu %10lu %8lu %10lu %8lu %9lu %6ld\n",
5235 info->line,
5236 JIFFIES_DIFF(info->idle_stats.in_use, cur_jifs) / HZ,
5237 info->idle_stats.xmit_bytes,
5238 JIFFIES_DIFF(info->idle_stats.xmit_idle, cur_jifs) / HZ,
5239 info->idle_stats.recv_bytes,
5240 JIFFIES_DIFF(info->idle_stats.recv_idle, cur_jifs) / HZ,
5241 info->idle_stats.overruns,
5242 (long) info->tty->ldisc.num);
5243 else
5244 size = sprintf(buf+len,
5245 "%3d %8lu %10lu %8lu %10lu %8lu %9lu %6ld\n",
5246 info->line, 0L, 0L, 0L, 0L, 0L, 0L, 0L);
5247 len += size;
5248 pos = begin + len;
5250 if (pos < offset) {
5251 len = 0;
5252 begin = pos;
5254 if (pos > offset + length)
5255 goto done;
5257 *eof = 1;
5258 done:
5259 *start = buf + (offset - begin); /* Start of wanted data */
5260 len -= (offset - begin); /* Start slop */
5261 if (len > length)
5262 len = length; /* Ending slop */
5263 if (len < 0)
5264 len = 0;
5265 return len;
5268 /* The serial driver boot-time initialization code!
5269 Hardware I/O ports are mapped to character special devices on a
5270 first found, first allocated manner. That is, this code searches
5271 for Cyclom cards in the system. As each is found, it is probed
5272 to discover how many chips (and thus how many ports) are present.
5273 These ports are mapped to the tty ports 32 and upward in monotonic
5274 fashion. If an 8-port card is replaced with a 16-port card, the
5275 port mapping on a following card will shift.
5277 This approach is different from what is used in the other serial
5278 device driver because the Cyclom is more properly a multiplexer,
5279 not just an aggregation of serial ports on one card.
5281 If there are more cards with more ports than have been
5282 statically allocated above, a warning is printed and the
5283 extra ports are ignored.
5286 static struct tty_operations cy_ops = {
5287 .open = cy_open,
5288 .close = cy_close,
5289 .write = cy_write,
5290 .put_char = cy_put_char,
5291 .flush_chars = cy_flush_chars,
5292 .write_room = cy_write_room,
5293 .chars_in_buffer = cy_chars_in_buffer,
5294 .flush_buffer = cy_flush_buffer,
5295 .ioctl = cy_ioctl,
5296 .throttle = cy_throttle,
5297 .unthrottle = cy_unthrottle,
5298 .set_termios = cy_set_termios,
5299 .stop = cy_stop,
5300 .start = cy_start,
5301 .hangup = cy_hangup,
5302 .break_ctl = cy_break,
5303 .wait_until_sent = cy_wait_until_sent,
5304 .read_proc = cyclades_get_proc_info,
5305 .tiocmget = cy_tiocmget,
5306 .tiocmset = cy_tiocmset,
5309 static int __init
5310 cy_init(void)
5312 struct cyclades_port *info;
5313 struct cyclades_card *cinfo;
5314 int number_z_boards = 0;
5315 int board,port,i,index;
5316 unsigned long mailbox;
5317 unsigned short chip_number;
5318 int nports;
5320 cy_serial_driver = alloc_tty_driver(NR_PORTS);
5321 if (!cy_serial_driver)
5322 return -ENOMEM;
5323 show_version();
5325 /* Initialize the tty_driver structure */
5327 cy_serial_driver->owner = THIS_MODULE;
5328 cy_serial_driver->driver_name = "cyclades";
5329 cy_serial_driver->name = "ttyC";
5330 cy_serial_driver->devfs_name = "tts/C";
5331 cy_serial_driver->major = CYCLADES_MAJOR;
5332 cy_serial_driver->minor_start = 0;
5333 cy_serial_driver->type = TTY_DRIVER_TYPE_SERIAL;
5334 cy_serial_driver->subtype = SERIAL_TYPE_NORMAL;
5335 cy_serial_driver->init_termios = tty_std_termios;
5336 cy_serial_driver->init_termios.c_cflag =
5337 B9600 | CS8 | CREAD | HUPCL | CLOCAL;
5338 cy_serial_driver->flags = TTY_DRIVER_REAL_RAW;
5339 tty_set_operations(cy_serial_driver, &cy_ops);
5341 if (tty_register_driver(cy_serial_driver))
5342 panic("Couldn't register Cyclades serial driver\n");
5344 for (i = 0; i < NR_CARDS; i++) {
5345 /* base_addr=0 indicates board not found */
5346 cy_card[i].base_addr = NULL;
5349 /* the code below is responsible to find the boards. Each different
5350 type of board has its own detection routine. If a board is found,
5351 the next cy_card structure available is set by the detection
5352 routine. These functions are responsible for checking the
5353 availability of cy_card and cy_port data structures and updating
5354 the cy_next_channel. */
5356 /* look for isa boards */
5357 cy_isa_nboard = cy_detect_isa();
5359 /* look for pci boards */
5360 cy_pci_nboard = cy_detect_pci();
5362 cy_nboard = cy_isa_nboard + cy_pci_nboard;
5364 /* invalidate remaining cy_card structures */
5365 for (i = 0 ; i < NR_CARDS ; i++) {
5366 if (cy_card[i].base_addr == 0) {
5367 cy_card[i].first_line = -1;
5368 cy_card[i].ctl_addr = NULL;
5369 cy_card[i].irq = 0;
5370 cy_card[i].bus_index = 0;
5371 cy_card[i].first_line = 0;
5372 cy_card[i].num_chips = 0;
5375 /* invalidate remaining cy_port structures */
5376 for (i = cy_next_channel ; i < NR_PORTS ; i++) {
5377 cy_port[i].line = -1;
5378 cy_port[i].magic = -1;
5381 /* initialize per-port data structures for each valid board found */
5382 for (board = 0 ; board < cy_nboard ; board++) {
5383 cinfo = &cy_card[board];
5384 if (cinfo->num_chips == -1) { /* Cyclades-Z */
5385 number_z_boards++;
5386 mailbox = cy_readl(&((struct RUNTIME_9060 __iomem *)
5387 cy_card[board].ctl_addr)->mail_box_0);
5388 nports = (mailbox == ZE_V1) ? ZE_V1_NPORTS : 8;
5389 cinfo->intr_enabled = 0;
5390 cinfo->nports = 0; /* Will be correctly set later, after
5391 Z FW is loaded */
5392 spin_lock_init(&cinfo->card_lock);
5393 for (port = cinfo->first_line ;
5394 port < cinfo->first_line + nports;
5395 port++)
5397 info = &cy_port[port];
5398 info->magic = CYCLADES_MAGIC;
5399 info->type = PORT_STARTECH;
5400 info->card = board;
5401 info->line = port;
5402 info->chip_rev = 0;
5403 info->flags = STD_COM_FLAGS;
5404 info->tty = NULL;
5405 if (mailbox == ZO_V1)
5406 info->xmit_fifo_size = CYZ_FIFO_SIZE;
5407 else
5408 info->xmit_fifo_size = 4 * CYZ_FIFO_SIZE;
5409 info->cor1 = 0;
5410 info->cor2 = 0;
5411 info->cor3 = 0;
5412 info->cor4 = 0;
5413 info->cor5 = 0;
5414 info->tbpr = 0;
5415 info->tco = 0;
5416 info->rbpr = 0;
5417 info->rco = 0;
5418 info->custom_divisor = 0;
5419 info->close_delay = 5*HZ/10;
5420 info->closing_wait = CLOSING_WAIT_DELAY;
5421 info->icount.cts = info->icount.dsr =
5422 info->icount.rng = info->icount.dcd = 0;
5423 info->icount.rx = info->icount.tx = 0;
5424 info->icount.frame = info->icount.parity = 0;
5425 info->icount.overrun = info->icount.brk = 0;
5426 info->x_char = 0;
5427 info->event = 0;
5428 info->count = 0;
5429 info->blocked_open = 0;
5430 info->default_threshold = 0;
5431 info->default_timeout = 0;
5432 INIT_WORK(&info->tqueue, do_softint, info);
5433 init_waitqueue_head(&info->open_wait);
5434 init_waitqueue_head(&info->close_wait);
5435 init_waitqueue_head(&info->shutdown_wait);
5436 init_waitqueue_head(&info->delta_msr_wait);
5437 /* info->session */
5438 /* info->pgrp */
5439 info->read_status_mask = 0;
5440 /* info->timeout */
5441 /* Bentson's vars */
5442 info->jiffies[0] = 0;
5443 info->jiffies[1] = 0;
5444 info->jiffies[2] = 0;
5445 info->rflush_count = 0;
5446 #ifdef CONFIG_CYZ_INTR
5447 init_timer(&cyz_rx_full_timer[port]);
5448 cyz_rx_full_timer[port].function = NULL;
5449 #endif
5451 continue;
5452 }else{ /* Cyclom-Y of some kind*/
5453 index = cinfo->bus_index;
5454 spin_lock_init(&cinfo->card_lock);
5455 cinfo->nports = CyPORTS_PER_CHIP * cinfo->num_chips;
5456 for (port = cinfo->first_line ;
5457 port < cinfo->first_line + cinfo->nports ;
5458 port++)
5460 info = &cy_port[port];
5461 info->magic = CYCLADES_MAGIC;
5462 info->type = PORT_CIRRUS;
5463 info->card = board;
5464 info->line = port;
5465 info->flags = STD_COM_FLAGS;
5466 info->tty = NULL;
5467 info->xmit_fifo_size = CyMAX_CHAR_FIFO;
5468 info->cor1 = CyPARITY_NONE|Cy_1_STOP|Cy_8_BITS;
5469 info->cor2 = CyETC;
5470 info->cor3 = 0x08; /* _very_ small rcv threshold */
5471 info->cor4 = 0;
5472 info->cor5 = 0;
5473 info->custom_divisor = 0;
5474 info->close_delay = 5*HZ/10;
5475 info->closing_wait = CLOSING_WAIT_DELAY;
5476 info->icount.cts = info->icount.dsr =
5477 info->icount.rng = info->icount.dcd = 0;
5478 info->icount.rx = info->icount.tx = 0;
5479 info->icount.frame = info->icount.parity = 0;
5480 info->icount.overrun = info->icount.brk = 0;
5481 chip_number = (port - cinfo->first_line) / 4;
5482 if ((info->chip_rev =
5483 cy_readb(cinfo->base_addr +
5484 (cy_chip_offset[chip_number]<<index) +
5485 (CyGFRCR<<index))) >= CD1400_REV_J) {
5486 /* It is a CD1400 rev. J or later */
5487 info->tbpr = baud_bpr_60[13]; /* Tx BPR */
5488 info->tco = baud_co_60[13]; /* Tx CO */
5489 info->rbpr = baud_bpr_60[13]; /* Rx BPR */
5490 info->rco = baud_co_60[13]; /* Rx CO */
5491 info->rflow = 0;
5492 info->rtsdtr_inv = 1;
5493 } else {
5494 info->tbpr = baud_bpr_25[13]; /* Tx BPR */
5495 info->tco = baud_co_25[13]; /* Tx CO */
5496 info->rbpr = baud_bpr_25[13]; /* Rx BPR */
5497 info->rco = baud_co_25[13]; /* Rx CO */
5498 info->rflow = 0;
5499 info->rtsdtr_inv = 0;
5501 info->x_char = 0;
5502 info->event = 0;
5503 info->count = 0;
5504 info->blocked_open = 0;
5505 info->default_threshold = 0;
5506 info->default_timeout = 0;
5507 INIT_WORK(&info->tqueue, do_softint, info);
5508 init_waitqueue_head(&info->open_wait);
5509 init_waitqueue_head(&info->close_wait);
5510 init_waitqueue_head(&info->shutdown_wait);
5511 init_waitqueue_head(&info->delta_msr_wait);
5512 /* info->session */
5513 /* info->pgrp */
5514 info->read_status_mask =
5515 CyTIMEOUT| CySPECHAR| CyBREAK
5516 | CyPARITY| CyFRAME| CyOVERRUN;
5517 /* info->timeout */
5522 #ifndef CONFIG_CYZ_INTR
5523 if (number_z_boards && !cyz_timeron){
5524 cyz_timeron++;
5525 cyz_timerlist.expires = jiffies + 1;
5526 add_timer(&cyz_timerlist);
5527 #ifdef CY_PCI_DEBUG
5528 printk("Cyclades-Z polling initialized\n");
5529 #endif
5531 #endif /* CONFIG_CYZ_INTR */
5533 return 0;
5535 } /* cy_init */
5537 static void __exit
5538 cy_cleanup_module(void)
5540 int i, e1;
5542 #ifndef CONFIG_CYZ_INTR
5543 if (cyz_timeron){
5544 cyz_timeron = 0;
5545 del_timer(&cyz_timerlist);
5547 #endif /* CONFIG_CYZ_INTR */
5549 if ((e1 = tty_unregister_driver(cy_serial_driver)))
5550 printk("cyc: failed to unregister Cyclades serial driver(%d)\n",
5551 e1);
5553 put_tty_driver(cy_serial_driver);
5555 for (i = 0; i < NR_CARDS; i++) {
5556 if (cy_card[i].base_addr) {
5557 iounmap(cy_card[i].base_addr);
5558 if (cy_card[i].ctl_addr)
5559 iounmap(cy_card[i].ctl_addr);
5560 if (cy_card[i].irq
5561 #ifndef CONFIG_CYZ_INTR
5562 && cy_card[i].num_chips != -1 /* not a Z card */
5563 #endif /* CONFIG_CYZ_INTR */
5565 free_irq(cy_card[i].irq, &cy_card[i]);
5566 #ifdef CONFIG_PCI
5567 if (cy_card[i].pdev)
5568 pci_release_regions(cy_card[i].pdev);
5569 #endif
5572 if (tmp_buf) {
5573 free_page((unsigned long) tmp_buf);
5574 tmp_buf = NULL;
5576 } /* cy_cleanup_module */
5578 module_init(cy_init);
5579 module_exit(cy_cleanup_module);
5581 #ifndef MODULE
5582 /* called by linux/init/main.c to parse command line options */
5583 void
5584 cy_setup(char *str, int *ints)
5586 #ifdef CONFIG_ISA
5587 int i, j;
5589 for (i = 0 ; i < NR_ISA_ADDRS ; i++) {
5590 if (cy_isa_addresses[i] == 0) break;
5592 for (j = 1; j <= ints[0]; j++){
5593 if ( i < NR_ISA_ADDRS ){
5594 cy_isa_addresses[i++] = (unsigned char *)(ints[j]);
5597 #endif /* CONFIG_ISA */
5598 } /* cy_setup */
5599 #endif /* MODULE */
5601 MODULE_LICENSE("GPL");