Merge branch 'for-linus' of git://git.kernel.org/pub/scm/linux/kernel/git/jikos/hid
[sfrench/cifs-2.6.git] / drivers / staging / comedi / drivers / adl_pci9111.c
1 /*
2
3    comedi/drivers/adl_pci9111.c
4
5    Hardware driver for PCI9111 ADLink cards:
6
7      PCI-9111HR
8
9    Copyright (C) 2002-2005 Emmanuel Pacaud <emmanuel.pacaud@univ-poitiers.fr>
10
11     This program is free software; you can redistribute it and/or modify
12     it under the terms of the GNU General Public License as published by
13     the Free Software Foundation; either version 2 of the License, or
14     (at your option) any later version.
15
16     This program is distributed in the hope that it will be useful,
17     but WITHOUT ANY WARRANTY; without even the implied warranty of
18     MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
19     GNU General Public License for more details.
20
21     You should have received a copy of the GNU General Public License
22     along with this program; if not, write to the Free Software
23     Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
24 */
25
26 /*
27 Driver: adl_pci9111
28 Description: Adlink PCI-9111HR
29 Author: Emmanuel Pacaud <emmanuel.pacaud@univ-poitiers.fr>
30 Devices: [ADLink] PCI-9111HR (adl_pci9111)
31 Status: experimental
32
33 Supports:
34
35   - ai_insn read
36   - ao_insn read/write
37   - di_insn read
38   - do_insn read/write
39   - ai_do_cmd mode with the following sources:
40
41     - start_src                 TRIG_NOW
42     - scan_begin_src            TRIG_FOLLOW     TRIG_TIMER      TRIG_EXT
43     - convert_src                               TRIG_TIMER      TRIG_EXT
44     - scan_end_src              TRIG_COUNT
45     - stop_src                  TRIG_COUNT      TRIG_NONE
46
47     The scanned channels must be consecutive and start from 0. They must
48     all have the same range and aref.
49
50 Configuration options:
51
52     [0] - PCI bus number (optional)
53     [1] - PCI slot number (optional)
54
55     If bus/slot is not specified, the first available PCI
56     device will be used.
57
58 */
59
60 /*
61 CHANGELOG:
62
63   2005/02/17 Extend AI streaming capabilities. Now, scan_begin_arg can be
64   a multiple of chanlist_len*convert_arg.
65   2002/02/19 Fixed the two's complement conversion in pci9111_(hr_)ai_get_data.
66   2002/02/18 Added external trigger support for analog input.
67
68 TODO:
69
70   - Really test implemented functionality.
71   - Add support for the PCI-9111DG with a probe routine to identify the card type
72     (perhaps with the help of the channel number readback of the A/D Data register).
73   - Add external multiplexer support.
74
75 */
76
77 #include "../comedidev.h"
78
79 #include <linux/delay.h>
80 #include <linux/interrupt.h>
81
82 #include "8253.h"
83 #include "comedi_pci.h"
84 #include "comedi_fc.h"
85
86 #define PCI9111_DRIVER_NAME     "adl_pci9111"
87 #define PCI9111_HR_DEVICE_ID    0x9111
88
89 /*  TODO: Add other pci9111 board id */
90
91 #define PCI9111_IO_RANGE        0x0100
92
93 #define PCI9111_FIFO_HALF_SIZE  512
94
95 #define PCI9111_AI_CHANNEL_NBR                  16
96
97 #define PCI9111_AI_RESOLUTION                   12
98 #define PCI9111_AI_RESOLUTION_MASK              0x0FFF
99 #define PCI9111_AI_RESOLUTION_2_CMP_BIT         0x0800
100
101 #define PCI9111_HR_AI_RESOLUTION                16
102 #define PCI9111_HR_AI_RESOLUTION_MASK           0xFFFF
103 #define PCI9111_HR_AI_RESOLUTION_2_CMP_BIT      0x8000
104
105 #define PCI9111_AI_ACQUISITION_PERIOD_MIN_NS    10000
106 #define PCI9111_AO_CHANNEL_NBR                  1
107 #define PCI9111_AO_RESOLUTION                   12
108 #define PCI9111_AO_RESOLUTION_MASK              0x0FFF
109 #define PCI9111_DI_CHANNEL_NBR                  16
110 #define PCI9111_DO_CHANNEL_NBR                  16
111 #define PCI9111_DO_MASK                         0xFFFF
112
113 #define PCI9111_RANGE_SETTING_DELAY             10
114 #define PCI9111_AI_INSTANT_READ_UDELAY_US       2
115 #define PCI9111_AI_INSTANT_READ_TIMEOUT         100
116
117 #define PCI9111_8254_CLOCK_PERIOD_NS            500
118
119 #define PCI9111_8254_COUNTER_0                  0x00
120 #define PCI9111_8254_COUNTER_1                  0x40
121 #define PCI9111_8254_COUNTER_2                  0x80
122 #define PCI9111_8254_COUNTER_LATCH              0x00
123 #define PCI9111_8254_READ_LOAD_LSB_ONLY         0x10
124 #define PCI9111_8254_READ_LOAD_MSB_ONLY         0x20
125 #define PCI9111_8254_READ_LOAD_LSB_MSB          0x30
126 #define PCI9111_8254_MODE_0                     0x00
127 #define PCI9111_8254_MODE_1                     0x02
128 #define PCI9111_8254_MODE_2                     0x04
129 #define PCI9111_8254_MODE_3                     0x06
130 #define PCI9111_8254_MODE_4                     0x08
131 #define PCI9111_8254_MODE_5                     0x0A
132 #define PCI9111_8254_BINARY_COUNTER             0x00
133 #define PCI9111_8254_BCD_COUNTER                0x01
134
135 /* IO address map */
136
137 #define PCI9111_REGISTER_AD_FIFO_VALUE                  0x00    /*  AD Data stored in FIFO */
138 #define PCI9111_REGISTER_DA_OUTPUT                      0x00
139 #define PCI9111_REGISTER_DIGITAL_IO                     0x02
140 #define PCI9111_REGISTER_EXTENDED_IO_PORTS              0x04
141 #define PCI9111_REGISTER_AD_CHANNEL_CONTROL             0x06    /*  Channel selection */
142 #define PCI9111_REGISTER_AD_CHANNEL_READBACK            0x06
143 #define PCI9111_REGISTER_INPUT_SIGNAL_RANGE             0x08
144 #define PCI9111_REGISTER_RANGE_STATUS_READBACK          0x08
145 #define PCI9111_REGISTER_TRIGGER_MODE_CONTROL           0x0A
146 #define PCI9111_REGISTER_AD_MODE_INTERRUPT_READBACK     0x0A
147 #define PCI9111_REGISTER_SOFTWARE_TRIGGER               0x0E
148 #define PCI9111_REGISTER_INTERRUPT_CONTROL              0x0C
149 #define PCI9111_REGISTER_8254_COUNTER_0                 0x40
150 #define PCI9111_REGISTER_8254_COUNTER_1                 0x42
151 #define PCI9111_REGISTER_8254_COUNTER_2                 0X44
152 #define PCI9111_REGISTER_8254_CONTROL                   0x46
153 #define PCI9111_REGISTER_INTERRUPT_CLEAR                0x48
154
155 #define PCI9111_TRIGGER_MASK                            0x0F
156 #define PCI9111_PTRG_OFF                                (0 << 3)
157 #define PCI9111_PTRG_ON                                 (1 << 3)
158 #define PCI9111_EITS_EXTERNAL                           (1 << 2)
159 #define PCI9111_EITS_INTERNAL                           (0 << 2)
160 #define PCI9111_TPST_SOFTWARE_TRIGGER                   (0 << 1)
161 #define PCI9111_TPST_TIMER_PACER                        (1 << 1)
162 #define PCI9111_ASCAN_ON                                (1 << 0)
163 #define PCI9111_ASCAN_OFF                               (0 << 0)
164
165 #define PCI9111_ISC0_SET_IRQ_ON_ENDING_OF_AD_CONVERSION (0 << 0)
166 #define PCI9111_ISC0_SET_IRQ_ON_FIFO_HALF_FULL          (1 << 0)
167 #define PCI9111_ISC1_SET_IRQ_ON_TIMER_TICK              (0 << 1)
168 #define PCI9111_ISC1_SET_IRQ_ON_EXT_TRG                 (1 << 1)
169 #define PCI9111_FFEN_SET_FIFO_ENABLE                    (0 << 2)
170 #define PCI9111_FFEN_SET_FIFO_DISABLE                   (1 << 2)
171
172 #define PCI9111_CHANNEL_MASK                            0x0F
173
174 #define PCI9111_RANGE_MASK                              0x07
175 #define PCI9111_FIFO_EMPTY_MASK                         0x10
176 #define PCI9111_FIFO_HALF_FULL_MASK                     0x20
177 #define PCI9111_FIFO_FULL_MASK                          0x40
178 #define PCI9111_AD_BUSY_MASK                            0x80
179
180 #define PCI9111_IO_BASE dev->iobase
181
182 /*
183  * Define inlined function
184  */
185
186 #define pci9111_trigger_and_autoscan_get() \
187   (inb(PCI9111_IO_BASE+PCI9111_REGISTER_AD_MODE_INTERRUPT_READBACK)&0x0F)
188
189 #define pci9111_trigger_and_autoscan_set(flags) \
190   outb(flags, PCI9111_IO_BASE+PCI9111_REGISTER_TRIGGER_MODE_CONTROL)
191
192 #define pci9111_interrupt_and_fifo_get() \
193   ((inb(PCI9111_IO_BASE+PCI9111_REGISTER_AD_MODE_INTERRUPT_READBACK) >> 4) &0x03)
194
195 #define pci9111_interrupt_and_fifo_set(flags) \
196   outb(flags, PCI9111_IO_BASE+PCI9111_REGISTER_INTERRUPT_CONTROL)
197
198 #define pci9111_interrupt_clear() \
199   outb(0, PCI9111_IO_BASE+PCI9111_REGISTER_INTERRUPT_CLEAR)
200
201 #define pci9111_software_trigger() \
202   outb(0, PCI9111_IO_BASE+PCI9111_REGISTER_SOFTWARE_TRIGGER)
203
204 #define pci9111_fifo_reset() \
205   outb(PCI9111_FFEN_SET_FIFO_ENABLE, PCI9111_IO_BASE+PCI9111_REGISTER_INTERRUPT_CONTROL); \
206   outb(PCI9111_FFEN_SET_FIFO_DISABLE, PCI9111_IO_BASE+PCI9111_REGISTER_INTERRUPT_CONTROL); \
207   outb(PCI9111_FFEN_SET_FIFO_ENABLE, PCI9111_IO_BASE+PCI9111_REGISTER_INTERRUPT_CONTROL)
208
209 #define pci9111_is_fifo_full() \
210   ((inb(PCI9111_IO_BASE+PCI9111_REGISTER_RANGE_STATUS_READBACK)& \
211     PCI9111_FIFO_FULL_MASK)==0)
212
213 #define pci9111_is_fifo_half_full() \
214   ((inb(PCI9111_IO_BASE+PCI9111_REGISTER_RANGE_STATUS_READBACK)& \
215     PCI9111_FIFO_HALF_FULL_MASK)==0)
216
217 #define pci9111_is_fifo_empty() \
218   ((inb(PCI9111_IO_BASE+PCI9111_REGISTER_RANGE_STATUS_READBACK)& \
219     PCI9111_FIFO_EMPTY_MASK)==0)
220
221 #define pci9111_ai_channel_set(channel) \
222   outb((channel)&PCI9111_CHANNEL_MASK, PCI9111_IO_BASE+PCI9111_REGISTER_AD_CHANNEL_CONTROL)
223
224 #define pci9111_ai_channel_get() \
225   inb(PCI9111_IO_BASE+PCI9111_REGISTER_AD_CHANNEL_READBACK)&PCI9111_CHANNEL_MASK
226
227 #define pci9111_ai_range_set(range) \
228   outb((range)&PCI9111_RANGE_MASK, PCI9111_IO_BASE+PCI9111_REGISTER_INPUT_SIGNAL_RANGE)
229
230 #define pci9111_ai_range_get() \
231   inb(PCI9111_IO_BASE+PCI9111_REGISTER_RANGE_STATUS_READBACK)&PCI9111_RANGE_MASK
232
233 #define pci9111_ai_get_data() \
234   ((inw(PCI9111_IO_BASE+PCI9111_REGISTER_AD_FIFO_VALUE)>>4)&PCI9111_AI_RESOLUTION_MASK) \
235   ^ PCI9111_AI_RESOLUTION_2_CMP_BIT
236
237 #define pci9111_hr_ai_get_data() \
238   (inw(PCI9111_IO_BASE+PCI9111_REGISTER_AD_FIFO_VALUE) & PCI9111_HR_AI_RESOLUTION_MASK) \
239   ^ PCI9111_HR_AI_RESOLUTION_2_CMP_BIT
240
241 #define pci9111_ao_set_data(data) \
242   outw(data&PCI9111_AO_RESOLUTION_MASK, PCI9111_IO_BASE+PCI9111_REGISTER_DA_OUTPUT)
243
244 #define pci9111_di_get_bits() \
245   inw(PCI9111_IO_BASE+PCI9111_REGISTER_DIGITAL_IO)
246
247 #define pci9111_do_set_bits(bits) \
248   outw(bits, PCI9111_IO_BASE+PCI9111_REGISTER_DIGITAL_IO)
249
250 #define pci9111_8254_control_set(flags) \
251   outb(flags, PCI9111_IO_BASE+PCI9111_REGISTER_8254_CONTROL)
252
253 #define pci9111_8254_counter_0_set(data) \
254   outb(data & 0xFF, PCI9111_IO_BASE+PCI9111_REGISTER_8254_COUNTER_0); \
255   outb((data >> 8) & 0xFF, PCI9111_IO_BASE+PCI9111_REGISTER_8254_COUNTER_0)
256
257 #define pci9111_8254_counter_1_set(data) \
258   outb(data & 0xFF, PCI9111_IO_BASE+PCI9111_REGISTER_8254_COUNTER_1); \
259   outb((data >> 8) & 0xFF, PCI9111_IO_BASE+PCI9111_REGISTER_8254_COUNTER_1)
260
261 #define pci9111_8254_counter_2_set(data) \
262   outb(data & 0xFF, PCI9111_IO_BASE+PCI9111_REGISTER_8254_COUNTER_2); \
263   outb((data >> 8) & 0xFF, PCI9111_IO_BASE+PCI9111_REGISTER_8254_COUNTER_2)
264
265 /*  Function prototypes */
266
267 static int pci9111_attach(struct comedi_device *dev,
268                           struct comedi_devconfig *it);
269 static int pci9111_detach(struct comedi_device *dev);
270 static void pci9111_ai_munge(struct comedi_device *dev,
271                              struct comedi_subdevice *s, void *data,
272                              unsigned int num_bytes,
273                              unsigned int start_chan_index);
274
275 static const struct comedi_lrange pci9111_hr_ai_range = {
276         5,
277         {
278          BIP_RANGE(10),
279          BIP_RANGE(5),
280          BIP_RANGE(2.5),
281          BIP_RANGE(1.25),
282          BIP_RANGE(0.625)
283          }
284 };
285
286 static DEFINE_PCI_DEVICE_TABLE(pci9111_pci_table) = {
287         {
288         PCI_VENDOR_ID_ADLINK, PCI9111_HR_DEVICE_ID, PCI_ANY_ID,
289                     PCI_ANY_ID, 0, 0, 0},
290             /* { PCI_VENDOR_ID_ADLINK, PCI9111_HG_DEVICE_ID, PCI_ANY_ID, PCI_ANY_ID, 0, 0, 0 }, */
291         {
292         0}
293 };
294
295 MODULE_DEVICE_TABLE(pci, pci9111_pci_table);
296
297 /*  */
298 /*  Board specification structure */
299 /*  */
300
301 struct pci9111_board {
302         const char *name;       /*  driver name */
303         int device_id;
304         int ai_channel_nbr;     /*  num of A/D chans */
305         int ao_channel_nbr;     /*  num of D/A chans */
306         int ai_resolution;      /*  resolution of A/D */
307         int ai_resolution_mask;
308         int ao_resolution;      /*  resolution of D/A */
309         int ao_resolution_mask;
310         const struct comedi_lrange *ai_range_list;      /*  rangelist for A/D */
311         const struct comedi_lrange *ao_range_list;      /*  rangelist for D/A */
312         unsigned int ai_acquisition_period_min_ns;
313 };
314
315 static const struct pci9111_board pci9111_boards[] = {
316         {
317          .name = "pci9111_hr",
318          .device_id = PCI9111_HR_DEVICE_ID,
319          .ai_channel_nbr = PCI9111_AI_CHANNEL_NBR,
320          .ao_channel_nbr = PCI9111_AO_CHANNEL_NBR,
321          .ai_resolution = PCI9111_HR_AI_RESOLUTION,
322          .ai_resolution_mask = PCI9111_HR_AI_RESOLUTION_MASK,
323          .ao_resolution = PCI9111_AO_RESOLUTION,
324          .ao_resolution_mask = PCI9111_AO_RESOLUTION_MASK,
325          .ai_range_list = &pci9111_hr_ai_range,
326          .ao_range_list = &range_bipolar10,
327          .ai_acquisition_period_min_ns = PCI9111_AI_ACQUISITION_PERIOD_MIN_NS}
328 };
329
330 #define pci9111_board_nbr \
331   (sizeof(pci9111_boards)/sizeof(struct pci9111_board))
332
333 static struct comedi_driver pci9111_driver = {
334         .driver_name = PCI9111_DRIVER_NAME,
335         .module = THIS_MODULE,
336         .attach = pci9111_attach,
337         .detach = pci9111_detach,
338 };
339
340 COMEDI_PCI_INITCLEANUP(pci9111_driver, pci9111_pci_table);
341
342 /*  Private data structure */
343
344 struct pci9111_private_data {
345         struct pci_dev *pci_device;
346         unsigned long io_range; /*  PCI6503 io range */
347
348         unsigned long lcr_io_base;      /*  Local configuration register base address */
349         unsigned long lcr_io_range;
350
351         int stop_counter;
352         int stop_is_none;
353
354         unsigned int scan_delay;
355         unsigned int chanlist_len;
356         unsigned int chunk_counter;
357         unsigned int chunk_num_samples;
358
359         int ao_readback;        /*  Last written analog output data */
360
361         unsigned int timer_divisor_1;   /*  Divisor values for the 8254 timer pacer */
362         unsigned int timer_divisor_2;
363
364         int is_valid;           /*  Is device valid */
365
366         short ai_bounce_buffer[2 * PCI9111_FIFO_HALF_SIZE];
367 };
368
369 #define dev_private     ((struct pci9111_private_data *)dev->private)
370
371 /*  ------------------------------------------------------------------ */
372 /*  PLX9050 SECTION */
373 /*  ------------------------------------------------------------------ */
374
375 #define PLX9050_REGISTER_INTERRUPT_CONTROL 0x4c
376
377 #define PLX9050_LINTI1_ENABLE           (1 << 0)
378 #define PLX9050_LINTI1_ACTIVE_HIGH      (1 << 1)
379 #define PLX9050_LINTI1_STATUS           (1 << 2)
380 #define PLX9050_LINTI2_ENABLE           (1 << 3)
381 #define PLX9050_LINTI2_ACTIVE_HIGH      (1 << 4)
382 #define PLX9050_LINTI2_STATUS           (1 << 5)
383 #define PLX9050_PCI_INTERRUPT_ENABLE    (1 << 6)
384 #define PLX9050_SOFTWARE_INTERRUPT      (1 << 7)
385
386 static void plx9050_interrupt_control(unsigned long io_base,
387                                       bool LINTi1_enable,
388                                       bool LINTi1_active_high,
389                                       bool LINTi2_enable,
390                                       bool LINTi2_active_high,
391                                       bool interrupt_enable)
392 {
393         int flags = 0;
394
395         if (LINTi1_enable)
396                 flags |= PLX9050_LINTI1_ENABLE;
397         if (LINTi1_active_high)
398                 flags |= PLX9050_LINTI1_ACTIVE_HIGH;
399         if (LINTi2_enable)
400                 flags |= PLX9050_LINTI2_ENABLE;
401         if (LINTi2_active_high)
402                 flags |= PLX9050_LINTI2_ACTIVE_HIGH;
403
404         if (interrupt_enable)
405                 flags |= PLX9050_PCI_INTERRUPT_ENABLE;
406
407         outb(flags, io_base + PLX9050_REGISTER_INTERRUPT_CONTROL);
408 }
409
410 /*  ------------------------------------------------------------------ */
411 /*  MISCELLANEOUS SECTION */
412 /*  ------------------------------------------------------------------ */
413
414 /*  8254 timer */
415
416 static void pci9111_timer_set(struct comedi_device *dev)
417 {
418         pci9111_8254_control_set(PCI9111_8254_COUNTER_0 |
419                                  PCI9111_8254_READ_LOAD_LSB_MSB |
420                                  PCI9111_8254_MODE_0 |
421                                  PCI9111_8254_BINARY_COUNTER);
422
423         pci9111_8254_control_set(PCI9111_8254_COUNTER_1 |
424                                  PCI9111_8254_READ_LOAD_LSB_MSB |
425                                  PCI9111_8254_MODE_2 |
426                                  PCI9111_8254_BINARY_COUNTER);
427
428         pci9111_8254_control_set(PCI9111_8254_COUNTER_2 |
429                                  PCI9111_8254_READ_LOAD_LSB_MSB |
430                                  PCI9111_8254_MODE_2 |
431                                  PCI9111_8254_BINARY_COUNTER);
432
433         udelay(1);
434
435         pci9111_8254_counter_2_set(dev_private->timer_divisor_2);
436         pci9111_8254_counter_1_set(dev_private->timer_divisor_1);
437 }
438
439 enum pci9111_trigger_sources {
440         software,
441         timer_pacer,
442         external
443 };
444
445 static void pci9111_trigger_source_set(struct comedi_device *dev,
446                                        enum pci9111_trigger_sources source)
447 {
448         int flags;
449
450         flags = pci9111_trigger_and_autoscan_get() & 0x09;
451
452         switch (source) {
453         case software:
454                 flags |= PCI9111_EITS_INTERNAL | PCI9111_TPST_SOFTWARE_TRIGGER;
455                 break;
456
457         case timer_pacer:
458                 flags |= PCI9111_EITS_INTERNAL | PCI9111_TPST_TIMER_PACER;
459                 break;
460
461         case external:
462                 flags |= PCI9111_EITS_EXTERNAL;
463                 break;
464         }
465
466         pci9111_trigger_and_autoscan_set(flags);
467 }
468
469 static void pci9111_pretrigger_set(struct comedi_device *dev, bool pretrigger)
470 {
471         int flags;
472
473         flags = pci9111_trigger_and_autoscan_get() & 0x07;
474
475         if (pretrigger)
476                 flags |= PCI9111_PTRG_ON;
477
478         pci9111_trigger_and_autoscan_set(flags);
479 }
480
481 static void pci9111_autoscan_set(struct comedi_device *dev, bool autoscan)
482 {
483         int flags;
484
485         flags = pci9111_trigger_and_autoscan_get() & 0x0e;
486
487         if (autoscan)
488                 flags |= PCI9111_ASCAN_ON;
489
490         pci9111_trigger_and_autoscan_set(flags);
491 }
492
493 enum pci9111_ISC0_sources {
494         irq_on_eoc,
495         irq_on_fifo_half_full
496 };
497
498 enum pci9111_ISC1_sources {
499         irq_on_timer_tick,
500         irq_on_external_trigger
501 };
502
503 static void pci9111_interrupt_source_set(struct comedi_device *dev,
504                                          enum pci9111_ISC0_sources irq_0_source,
505                                          enum pci9111_ISC1_sources irq_1_source)
506 {
507         int flags;
508
509         flags = pci9111_interrupt_and_fifo_get() & 0x04;
510
511         if (irq_0_source == irq_on_fifo_half_full)
512                 flags |= PCI9111_ISC0_SET_IRQ_ON_FIFO_HALF_FULL;
513
514         if (irq_1_source == irq_on_external_trigger)
515                 flags |= PCI9111_ISC1_SET_IRQ_ON_EXT_TRG;
516
517         pci9111_interrupt_and_fifo_set(flags);
518 }
519
520 /*  ------------------------------------------------------------------ */
521 /*  HARDWARE TRIGGERED ANALOG INPUT SECTION */
522 /*  ------------------------------------------------------------------ */
523
524 /*  Cancel analog input autoscan */
525
526 #undef AI_DO_CMD_DEBUG
527
528 static int pci9111_ai_cancel(struct comedi_device *dev,
529                              struct comedi_subdevice *s)
530 {
531         /*  Disable interrupts */
532
533         plx9050_interrupt_control(dev_private->lcr_io_base, true, true, true,
534                                   true, false);
535
536         pci9111_trigger_source_set(dev, software);
537
538         pci9111_autoscan_set(dev, false);
539
540         pci9111_fifo_reset();
541
542 #ifdef AI_DO_CMD_DEBUG
543         printk(PCI9111_DRIVER_NAME ": ai_cancel\n");
544 #endif
545
546         return 0;
547 }
548
549 /*  Test analog input command */
550
551 #define pci9111_check_trigger_src(src, flags) \
552   tmp = src; \
553   src &= flags; \
554   if (!src || tmp != src) error++
555
556 static int
557 pci9111_ai_do_cmd_test(struct comedi_device *dev,
558                        struct comedi_subdevice *s, struct comedi_cmd *cmd)
559 {
560         int tmp;
561         int error = 0;
562         int range, reference;
563         int i;
564         struct pci9111_board *board = (struct pci9111_board *)dev->board_ptr;
565
566         /*  Step 1 : check if trigger are trivialy valid */
567
568         pci9111_check_trigger_src(cmd->start_src, TRIG_NOW);
569         pci9111_check_trigger_src(cmd->scan_begin_src,
570                                   TRIG_TIMER | TRIG_FOLLOW | TRIG_EXT);
571         pci9111_check_trigger_src(cmd->convert_src, TRIG_TIMER | TRIG_EXT);
572         pci9111_check_trigger_src(cmd->scan_end_src, TRIG_COUNT);
573         pci9111_check_trigger_src(cmd->stop_src, TRIG_COUNT | TRIG_NONE);
574
575         if (error)
576                 return 1;
577
578         /*  step 2 : make sure trigger sources are unique and mutually compatible */
579
580         if (cmd->start_src != TRIG_NOW)
581                 error++;
582
583         if ((cmd->scan_begin_src != TRIG_TIMER) &&
584             (cmd->scan_begin_src != TRIG_FOLLOW) &&
585             (cmd->scan_begin_src != TRIG_EXT))
586                 error++;
587
588         if ((cmd->convert_src != TRIG_TIMER) && (cmd->convert_src != TRIG_EXT))
589                 error++;
590         if ((cmd->convert_src == TRIG_TIMER) &&
591             !((cmd->scan_begin_src == TRIG_TIMER) ||
592               (cmd->scan_begin_src == TRIG_FOLLOW)))
593                 error++;
594         if ((cmd->convert_src == TRIG_EXT) &&
595             !((cmd->scan_begin_src == TRIG_EXT) ||
596               (cmd->scan_begin_src == TRIG_FOLLOW)))
597                 error++;
598
599
600         if (cmd->scan_end_src != TRIG_COUNT)
601                 error++;
602         if ((cmd->stop_src != TRIG_COUNT) && (cmd->stop_src != TRIG_NONE))
603                 error++;
604
605         if (error)
606                 return 2;
607
608         /*  Step 3 : make sure arguments are trivialy compatible */
609
610         if (cmd->chanlist_len < 1) {
611                 cmd->chanlist_len = 1;
612                 error++;
613         }
614
615         if (cmd->chanlist_len > board->ai_channel_nbr) {
616                 cmd->chanlist_len = board->ai_channel_nbr;
617                 error++;
618         }
619
620         if ((cmd->start_src == TRIG_NOW) && (cmd->start_arg != 0)) {
621                 cmd->start_arg = 0;
622                 error++;
623         }
624
625         if ((cmd->convert_src == TRIG_TIMER) &&
626             (cmd->convert_arg < board->ai_acquisition_period_min_ns)) {
627                 cmd->convert_arg = board->ai_acquisition_period_min_ns;
628                 error++;
629         }
630         if ((cmd->convert_src == TRIG_EXT) && (cmd->convert_arg != 0)) {
631                 cmd->convert_arg = 0;
632                 error++;
633         }
634
635         if ((cmd->scan_begin_src == TRIG_TIMER) &&
636             (cmd->scan_begin_arg < board->ai_acquisition_period_min_ns)) {
637                 cmd->scan_begin_arg = board->ai_acquisition_period_min_ns;
638                 error++;
639         }
640         if ((cmd->scan_begin_src == TRIG_FOLLOW) && (cmd->scan_begin_arg != 0)) {
641                 cmd->scan_begin_arg = 0;
642                 error++;
643         }
644         if ((cmd->scan_begin_src == TRIG_EXT) && (cmd->scan_begin_arg != 0)) {
645                 cmd->scan_begin_arg = 0;
646                 error++;
647         }
648
649         if ((cmd->scan_end_src == TRIG_COUNT) &&
650             (cmd->scan_end_arg != cmd->chanlist_len)) {
651                 cmd->scan_end_arg = cmd->chanlist_len;
652                 error++;
653         }
654
655         if ((cmd->stop_src == TRIG_COUNT) && (cmd->stop_arg < 1)) {
656                 cmd->stop_arg = 1;
657                 error++;
658         }
659         if ((cmd->stop_src == TRIG_NONE) && (cmd->stop_arg != 0)) {
660                 cmd->stop_arg = 0;
661                 error++;
662         }
663
664         if (error)
665                 return 3;
666
667         /*  Step 4 : fix up any arguments */
668
669         if (cmd->convert_src == TRIG_TIMER) {
670                 tmp = cmd->convert_arg;
671                 i8253_cascade_ns_to_timer_2div(PCI9111_8254_CLOCK_PERIOD_NS,
672                                                &(dev_private->timer_divisor_1),
673                                                &(dev_private->timer_divisor_2),
674                                                &(cmd->convert_arg),
675                                                cmd->flags & TRIG_ROUND_MASK);
676                 if (tmp != cmd->convert_arg)
677                         error++;
678         }
679         /*  There's only one timer on this card, so the scan_begin timer must */
680         /*  be a multiple of chanlist_len*convert_arg */
681
682         if (cmd->scan_begin_src == TRIG_TIMER) {
683
684                 unsigned int scan_begin_min;
685                 unsigned int scan_begin_arg;
686                 unsigned int scan_factor;
687
688                 scan_begin_min = cmd->chanlist_len * cmd->convert_arg;
689
690                 if (cmd->scan_begin_arg != scan_begin_min) {
691                         if (scan_begin_min < cmd->scan_begin_arg) {
692                                 scan_factor =
693                                     cmd->scan_begin_arg / scan_begin_min;
694                                 scan_begin_arg = scan_factor * scan_begin_min;
695                                 if (cmd->scan_begin_arg != scan_begin_arg) {
696                                         cmd->scan_begin_arg = scan_begin_arg;
697                                         error++;
698                                 }
699                         } else {
700                                 cmd->scan_begin_arg = scan_begin_min;
701                                 error++;
702                         }
703                 }
704         }
705
706         if (error)
707                 return 4;
708
709         /*  Step 5 : check channel list */
710
711         if (cmd->chanlist) {
712
713                 range = CR_RANGE(cmd->chanlist[0]);
714                 reference = CR_AREF(cmd->chanlist[0]);
715
716                 if (cmd->chanlist_len > 1) {
717                         for (i = 0; i < cmd->chanlist_len; i++) {
718                                 if (CR_CHAN(cmd->chanlist[i]) != i) {
719                                         comedi_error(dev,
720                                                      "entries in chanlist must be consecutive "
721                                                      "channels,counting upwards from 0\n");
722                                         error++;
723                                 }
724                                 if (CR_RANGE(cmd->chanlist[i]) != range) {
725                                         comedi_error(dev,
726                                                      "entries in chanlist must all have the same gain\n");
727                                         error++;
728                                 }
729                                 if (CR_AREF(cmd->chanlist[i]) != reference) {
730                                         comedi_error(dev,
731                                                      "entries in chanlist must all have the same reference\n");
732                                         error++;
733                                 }
734                         }
735                 } else {
736                         if ((CR_CHAN(cmd->chanlist[0]) >
737                              (board->ai_channel_nbr - 1))
738                             || (CR_CHAN(cmd->chanlist[0]) < 0)) {
739                                 comedi_error(dev,
740                                              "channel number is out of limits\n");
741                                 error++;
742                         }
743                 }
744         }
745
746         if (error)
747                 return 5;
748
749         return 0;
750
751 }
752
753 /*  Analog input command */
754
755 static int pci9111_ai_do_cmd(struct comedi_device *dev,
756                              struct comedi_subdevice *subdevice)
757 {
758         struct comedi_cmd *async_cmd = &subdevice->async->cmd;
759
760         if (!dev->irq) {
761                 comedi_error(dev,
762                              "no irq assigned for PCI9111, cannot do hardware conversion");
763                 return -1;
764         }
765         /*  Set channel scan limit */
766         /*  PCI9111 allows only scanning from channel 0 to channel n */
767         /*  TODO: handle the case of an external multiplexer */
768
769         if (async_cmd->chanlist_len > 1) {
770                 pci9111_ai_channel_set((async_cmd->chanlist_len) - 1);
771                 pci9111_autoscan_set(dev, true);
772         } else {
773                 pci9111_ai_channel_set(CR_CHAN(async_cmd->chanlist[0]));
774                 pci9111_autoscan_set(dev, false);
775         }
776
777         /*  Set gain */
778         /*  This is the same gain on every channel */
779
780         pci9111_ai_range_set(CR_RANGE(async_cmd->chanlist[0]));
781
782         /* Set counter */
783
784         switch (async_cmd->stop_src) {
785         case TRIG_COUNT:
786                 dev_private->stop_counter =
787                     async_cmd->stop_arg * async_cmd->chanlist_len;
788                 dev_private->stop_is_none = 0;
789                 break;
790
791         case TRIG_NONE:
792                 dev_private->stop_counter = 0;
793                 dev_private->stop_is_none = 1;
794                 break;
795
796         default:
797                 comedi_error(dev, "Invalid stop trigger");
798                 return -1;
799         }
800
801         /*  Set timer pacer */
802
803         dev_private->scan_delay = 0;
804         switch (async_cmd->convert_src) {
805         case TRIG_TIMER:
806                 i8253_cascade_ns_to_timer_2div(PCI9111_8254_CLOCK_PERIOD_NS,
807                                                &(dev_private->timer_divisor_1),
808                                                &(dev_private->timer_divisor_2),
809                                                &(async_cmd->convert_arg),
810                                                async_cmd->
811                                                flags & TRIG_ROUND_MASK);
812 #ifdef AI_DO_CMD_DEBUG
813                 printk(PCI9111_DRIVER_NAME ": divisors = %d, %d\n",
814                        dev_private->timer_divisor_1,
815                        dev_private->timer_divisor_2);
816 #endif
817
818                 pci9111_trigger_source_set(dev, software);
819                 pci9111_timer_set(dev);
820                 pci9111_fifo_reset();
821                 pci9111_interrupt_source_set(dev, irq_on_fifo_half_full,
822                                              irq_on_timer_tick);
823                 pci9111_trigger_source_set(dev, timer_pacer);
824                 plx9050_interrupt_control(dev_private->lcr_io_base, true, true,
825                                           false, true, true);
826
827                 dev_private->scan_delay =
828                     (async_cmd->scan_begin_arg / (async_cmd->convert_arg *
829                                                   async_cmd->chanlist_len)) - 1;
830
831                 break;
832
833         case TRIG_EXT:
834
835                 pci9111_trigger_source_set(dev, external);
836                 pci9111_fifo_reset();
837                 pci9111_interrupt_source_set(dev, irq_on_fifo_half_full,
838                                              irq_on_timer_tick);
839                 plx9050_interrupt_control(dev_private->lcr_io_base, true, true,
840                                           false, true, true);
841
842                 break;
843
844         default:
845                 comedi_error(dev, "Invalid convert trigger");
846                 return -1;
847         }
848
849         dev_private->stop_counter *= (1 + dev_private->scan_delay);
850         dev_private->chanlist_len = async_cmd->chanlist_len;
851         dev_private->chunk_counter = 0;
852         dev_private->chunk_num_samples =
853             dev_private->chanlist_len * (1 + dev_private->scan_delay);
854
855 #ifdef AI_DO_CMD_DEBUG
856         printk(PCI9111_DRIVER_NAME ": start interruptions!\n");
857         printk(PCI9111_DRIVER_NAME ": trigger source = %2x\n",
858                pci9111_trigger_and_autoscan_get());
859         printk(PCI9111_DRIVER_NAME ": irq source     = %2x\n",
860                pci9111_interrupt_and_fifo_get());
861         printk(PCI9111_DRIVER_NAME ": ai_do_cmd\n");
862         printk(PCI9111_DRIVER_NAME ": stop counter   = %d\n",
863                dev_private->stop_counter);
864         printk(PCI9111_DRIVER_NAME ": scan delay     = %d\n",
865                dev_private->scan_delay);
866         printk(PCI9111_DRIVER_NAME ": chanlist_len   = %d\n",
867                dev_private->chanlist_len);
868         printk(PCI9111_DRIVER_NAME ": chunk num samples = %d\n",
869                dev_private->chunk_num_samples);
870 #endif
871
872         return 0;
873 }
874
875 static void pci9111_ai_munge(struct comedi_device *dev,
876                              struct comedi_subdevice *s, void *data,
877                              unsigned int num_bytes,
878                              unsigned int start_chan_index)
879 {
880         unsigned int i, num_samples = num_bytes / sizeof(short);
881         short *array = data;
882         int resolution =
883             ((struct pci9111_board *)dev->board_ptr)->ai_resolution;
884
885         for (i = 0; i < num_samples; i++) {
886                 if (resolution == PCI9111_HR_AI_RESOLUTION)
887                         array[i] =
888                             (array[i] & PCI9111_HR_AI_RESOLUTION_MASK) ^
889                             PCI9111_HR_AI_RESOLUTION_2_CMP_BIT;
890                 else
891                         array[i] =
892                             ((array[i] >> 4) & PCI9111_AI_RESOLUTION_MASK) ^
893                             PCI9111_AI_RESOLUTION_2_CMP_BIT;
894         }
895 }
896
897 /*  ------------------------------------------------------------------ */
898 /*  INTERRUPT SECTION */
899 /*  ------------------------------------------------------------------ */
900
901 #undef INTERRUPT_DEBUG
902
903 static irqreturn_t pci9111_interrupt(int irq, void *p_device)
904 {
905         struct comedi_device *dev = p_device;
906         struct comedi_subdevice *subdevice = dev->read_subdev;
907         struct comedi_async *async;
908         unsigned long irq_flags;
909         unsigned char intcsr;
910
911         if (!dev->attached) {
912                 /*  Ignore interrupt before device fully attached. */
913                 /*  Might not even have allocated subdevices yet! */
914                 return IRQ_NONE;
915         }
916
917         async = subdevice->async;
918
919         spin_lock_irqsave(&dev->spinlock, irq_flags);
920
921         /*  Check if we are source of interrupt */
922         intcsr = inb(dev_private->lcr_io_base +
923                      PLX9050_REGISTER_INTERRUPT_CONTROL);
924         if (!(((intcsr & PLX9050_PCI_INTERRUPT_ENABLE) != 0)
925               && (((intcsr & (PLX9050_LINTI1_ENABLE | PLX9050_LINTI1_STATUS))
926                    == (PLX9050_LINTI1_ENABLE | PLX9050_LINTI1_STATUS))
927                   || ((intcsr & (PLX9050_LINTI2_ENABLE | PLX9050_LINTI2_STATUS))
928                       == (PLX9050_LINTI2_ENABLE | PLX9050_LINTI2_STATUS))))) {
929                 /*  Not the source of the interrupt. */
930                 /*  (N.B. not using PLX9050_SOFTWARE_INTERRUPT) */
931                 spin_unlock_irqrestore(&dev->spinlock, irq_flags);
932                 return IRQ_NONE;
933         }
934
935         if ((intcsr & (PLX9050_LINTI1_ENABLE | PLX9050_LINTI1_STATUS)) ==
936             (PLX9050_LINTI1_ENABLE | PLX9050_LINTI1_STATUS)) {
937                 /*  Interrupt comes from fifo_half-full signal */
938
939                 if (pci9111_is_fifo_full()) {
940                         spin_unlock_irqrestore(&dev->spinlock, irq_flags);
941                         comedi_error(dev, PCI9111_DRIVER_NAME " fifo overflow");
942                         pci9111_interrupt_clear();
943                         pci9111_ai_cancel(dev, subdevice);
944                         async->events |= COMEDI_CB_ERROR | COMEDI_CB_EOA;
945                         comedi_event(dev, subdevice);
946
947                         return IRQ_HANDLED;
948                 }
949
950                 if (pci9111_is_fifo_half_full()) {
951                         unsigned int num_samples;
952                         unsigned int bytes_written = 0;
953
954 #ifdef INTERRUPT_DEBUG
955                         printk(PCI9111_DRIVER_NAME ": fifo is half full\n");
956 #endif
957
958                         num_samples =
959                             PCI9111_FIFO_HALF_SIZE >
960                             dev_private->stop_counter
961                             && !dev_private->
962                             stop_is_none ? dev_private->stop_counter :
963                             PCI9111_FIFO_HALF_SIZE;
964                         insw(PCI9111_IO_BASE + PCI9111_REGISTER_AD_FIFO_VALUE,
965                              dev_private->ai_bounce_buffer, num_samples);
966
967                         if (dev_private->scan_delay < 1) {
968                                 bytes_written =
969                                     cfc_write_array_to_buffer(subdevice,
970                                                               dev_private->
971                                                               ai_bounce_buffer,
972                                                               num_samples *
973                                                               sizeof(short));
974                         } else {
975                                 int position = 0;
976                                 int to_read;
977
978                                 while (position < num_samples) {
979                                         if (dev_private->chunk_counter <
980                                             dev_private->chanlist_len) {
981                                                 to_read =
982                                                     dev_private->chanlist_len -
983                                                     dev_private->chunk_counter;
984
985                                                 if (to_read >
986                                                     num_samples - position)
987                                                         to_read =
988                                                             num_samples -
989                                                             position;
990
991                                                 bytes_written +=
992                                                     cfc_write_array_to_buffer
993                                                     (subdevice,
994                                                      dev_private->ai_bounce_buffer
995                                                      + position,
996                                                      to_read * sizeof(short));
997                                         } else {
998                                                 to_read =
999                                                     dev_private->chunk_num_samples
1000                                                     -
1001                                                     dev_private->chunk_counter;
1002                                                 if (to_read >
1003                                                     num_samples - position)
1004                                                         to_read =
1005                                                             num_samples -
1006                                                             position;
1007
1008                                                 bytes_written +=
1009                                                     sizeof(short) * to_read;
1010                                         }
1011
1012                                         position += to_read;
1013                                         dev_private->chunk_counter += to_read;
1014
1015                                         if (dev_private->chunk_counter >=
1016                                             dev_private->chunk_num_samples)
1017                                                 dev_private->chunk_counter = 0;
1018                                 }
1019                         }
1020
1021                         dev_private->stop_counter -=
1022                             bytes_written / sizeof(short);
1023                 }
1024         }
1025
1026         if ((dev_private->stop_counter == 0) && (!dev_private->stop_is_none)) {
1027                 async->events |= COMEDI_CB_EOA;
1028                 pci9111_ai_cancel(dev, subdevice);
1029         }
1030
1031         /* Very important, otherwise another interrupt request will be inserted
1032          * and will cause driver hangs on processing interrupt event. */
1033
1034         pci9111_interrupt_clear();
1035
1036         spin_unlock_irqrestore(&dev->spinlock, irq_flags);
1037
1038         comedi_event(dev, subdevice);
1039
1040         return IRQ_HANDLED;
1041 }
1042
1043 /*  ------------------------------------------------------------------ */
1044 /*  INSTANT ANALOG INPUT OUTPUT SECTION */
1045 /*  ------------------------------------------------------------------ */
1046
1047 /*  analog instant input */
1048
1049 #undef AI_INSN_DEBUG
1050
1051 static int pci9111_ai_insn_read(struct comedi_device *dev,
1052                                 struct comedi_subdevice *subdevice,
1053                                 struct comedi_insn *insn, unsigned int *data)
1054 {
1055         int resolution =
1056             ((struct pci9111_board *)dev->board_ptr)->ai_resolution;
1057
1058         int timeout, i;
1059
1060 #ifdef AI_INSN_DEBUG
1061         printk(PCI9111_DRIVER_NAME ": ai_insn set c/r/n = %2x/%2x/%2x\n",
1062                CR_CHAN((&insn->chanspec)[0]),
1063                CR_RANGE((&insn->chanspec)[0]), insn->n);
1064 #endif
1065
1066         pci9111_ai_channel_set(CR_CHAN((&insn->chanspec)[0]));
1067
1068         if ((pci9111_ai_range_get()) != CR_RANGE((&insn->chanspec)[0]))
1069                 pci9111_ai_range_set(CR_RANGE((&insn->chanspec)[0]));
1070
1071         pci9111_fifo_reset();
1072
1073         for (i = 0; i < insn->n; i++) {
1074                 pci9111_software_trigger();
1075
1076                 timeout = PCI9111_AI_INSTANT_READ_TIMEOUT;
1077
1078                 while (timeout--) {
1079                         if (!pci9111_is_fifo_empty())
1080                                 goto conversion_done;
1081                 }
1082
1083                 comedi_error(dev, "A/D read timeout");
1084                 data[i] = 0;
1085                 pci9111_fifo_reset();
1086                 return -ETIME;
1087
1088 conversion_done:
1089
1090                 if (resolution == PCI9111_HR_AI_RESOLUTION)
1091                         data[i] = pci9111_hr_ai_get_data();
1092                 else
1093                         data[i] = pci9111_ai_get_data();
1094         }
1095
1096 #ifdef AI_INSN_DEBUG
1097         printk(PCI9111_DRIVER_NAME ": ai_insn get c/r/t = %2x/%2x/%2x\n",
1098                pci9111_ai_channel_get(),
1099                pci9111_ai_range_get(), pci9111_trigger_and_autoscan_get());
1100 #endif
1101
1102         return i;
1103 }
1104
1105 /*  Analog instant output */
1106
1107 static int
1108 pci9111_ao_insn_write(struct comedi_device *dev,
1109                       struct comedi_subdevice *s, struct comedi_insn *insn,
1110                       unsigned int *data)
1111 {
1112         int i;
1113
1114         for (i = 0; i < insn->n; i++) {
1115                 pci9111_ao_set_data(data[i]);
1116                 dev_private->ao_readback = data[i];
1117         }
1118
1119         return i;
1120 }
1121
1122 /*  Analog output readback */
1123
1124 static int pci9111_ao_insn_read(struct comedi_device *dev,
1125                                 struct comedi_subdevice *s,
1126                                 struct comedi_insn *insn, unsigned int *data)
1127 {
1128         int i;
1129
1130         for (i = 0; i < insn->n; i++)
1131                 data[i] = dev_private->ao_readback & PCI9111_AO_RESOLUTION_MASK;
1132
1133         return i;
1134 }
1135
1136 /*  ------------------------------------------------------------------ */
1137 /*  DIGITAL INPUT OUTPUT SECTION */
1138 /*  ------------------------------------------------------------------ */
1139
1140 /*  Digital inputs */
1141
1142 static int pci9111_di_insn_bits(struct comedi_device *dev,
1143                                 struct comedi_subdevice *subdevice,
1144                                 struct comedi_insn *insn, unsigned int *data)
1145 {
1146         unsigned int bits;
1147
1148         bits = pci9111_di_get_bits();
1149         data[1] = bits;
1150
1151         return 2;
1152 }
1153
1154 /*  Digital outputs */
1155
1156 static int pci9111_do_insn_bits(struct comedi_device *dev,
1157                                 struct comedi_subdevice *subdevice,
1158                                 struct comedi_insn *insn, unsigned int *data)
1159 {
1160         unsigned int bits;
1161
1162         /*  Only set bits that have been masked */
1163         /*  data[0] = mask */
1164         /*  data[1] = bit state */
1165
1166         data[0] &= PCI9111_DO_MASK;
1167
1168         bits = subdevice->state;
1169         bits &= ~data[0];
1170         bits |= data[0] & data[1];
1171         subdevice->state = bits;
1172
1173         pci9111_do_set_bits(bits);
1174
1175         data[1] = bits;
1176
1177         return 2;
1178 }
1179
1180 /*  ------------------------------------------------------------------ */
1181 /*  INITIALISATION SECTION */
1182 /*  ------------------------------------------------------------------ */
1183
1184 /*  Reset device */
1185
1186 static int pci9111_reset(struct comedi_device *dev)
1187 {
1188         /*  Set trigger source to software */
1189
1190         plx9050_interrupt_control(dev_private->lcr_io_base, true, true, true,
1191                                   true, false);
1192
1193         pci9111_trigger_source_set(dev, software);
1194         pci9111_pretrigger_set(dev, false);
1195         pci9111_autoscan_set(dev, false);
1196
1197         /*  Reset 8254 chip */
1198
1199         dev_private->timer_divisor_1 = 0;
1200         dev_private->timer_divisor_2 = 0;
1201
1202         pci9111_timer_set(dev);
1203
1204         return 0;
1205 }
1206
1207 /*  Attach */
1208 /*       - Register PCI device */
1209 /*       - Declare device driver capability */
1210
1211 static int pci9111_attach(struct comedi_device *dev,
1212                           struct comedi_devconfig *it)
1213 {
1214         struct comedi_subdevice *subdevice;
1215         unsigned long io_base, io_range, lcr_io_base, lcr_io_range;
1216         struct pci_dev *pci_device;
1217         int error, i;
1218         const struct pci9111_board *board;
1219
1220         if (alloc_private(dev, sizeof(struct pci9111_private_data)) < 0)
1221                 return -ENOMEM;
1222         /*  Probe the device to determine what device in the series it is. */
1223
1224         printk("comedi%d: " PCI9111_DRIVER_NAME " driver\n", dev->minor);
1225
1226         for (pci_device = pci_get_device(PCI_ANY_ID, PCI_ANY_ID, NULL);
1227              pci_device != NULL;
1228              pci_device = pci_get_device(PCI_ANY_ID, PCI_ANY_ID, pci_device)) {
1229                 if (pci_device->vendor == PCI_VENDOR_ID_ADLINK) {
1230                         for (i = 0; i < pci9111_board_nbr; i++) {
1231                                 if (pci9111_boards[i].device_id ==
1232                                     pci_device->device) {
1233                                         /*  was a particular bus/slot requested? */
1234                                         if ((it->options[0] != 0)
1235                                             || (it->options[1] != 0)) {
1236                                                 /*  are we on the wrong bus/slot? */
1237                                                 if (pci_device->bus->number !=
1238                                                     it->options[0]
1239                                                     ||
1240                                                     PCI_SLOT(pci_device->devfn)
1241                                                     != it->options[1]) {
1242                                                         continue;
1243                                                 }
1244                                         }
1245
1246                                         dev->board_ptr = pci9111_boards + i;
1247                                         board =
1248                                             (struct pci9111_board *)
1249                                             dev->board_ptr;
1250                                         dev_private->pci_device = pci_device;
1251                                         goto found;
1252                                 }
1253                         }
1254                 }
1255         }
1256
1257         printk("comedi%d: no supported board found! (req. bus/slot : %d/%d)\n",
1258                dev->minor, it->options[0], it->options[1]);
1259         return -EIO;
1260
1261 found:
1262
1263         printk("comedi%d: found %s (b:s:f=%d:%d:%d) , irq=%d\n",
1264                dev->minor,
1265                pci9111_boards[i].name,
1266                pci_device->bus->number,
1267                PCI_SLOT(pci_device->devfn),
1268                PCI_FUNC(pci_device->devfn), pci_device->irq);
1269
1270         /*  TODO: Warn about non-tested boards. */
1271
1272         /*  Read local configuration register base address [PCI_BASE_ADDRESS #1]. */
1273
1274         lcr_io_base = pci_resource_start(pci_device, 1);
1275         lcr_io_range = pci_resource_len(pci_device, 1);
1276
1277         printk
1278             ("comedi%d: local configuration registers at address 0x%4lx [0x%4lx]\n",
1279              dev->minor, lcr_io_base, lcr_io_range);
1280
1281         /*  Enable PCI device and request regions */
1282         if (comedi_pci_enable(pci_device, PCI9111_DRIVER_NAME) < 0) {
1283                 printk
1284                     ("comedi%d: Failed to enable PCI device and request regions\n",
1285                      dev->minor);
1286                 return -EIO;
1287         }
1288         /*  Read PCI6308 register base address [PCI_BASE_ADDRESS #2]. */
1289
1290         io_base = pci_resource_start(pci_device, 2);
1291         io_range = pci_resource_len(pci_device, 2);
1292
1293         printk("comedi%d: 6503 registers at address 0x%4lx [0x%4lx]\n",
1294                dev->minor, io_base, io_range);
1295
1296         dev->iobase = io_base;
1297         dev->board_name = board->name;
1298         dev_private->io_range = io_range;
1299         dev_private->is_valid = 0;
1300         dev_private->lcr_io_base = lcr_io_base;
1301         dev_private->lcr_io_range = lcr_io_range;
1302
1303         pci9111_reset(dev);
1304
1305         /*  Irq setup */
1306
1307         dev->irq = 0;
1308         if (pci_device->irq > 0) {
1309                 if (request_irq(pci_device->irq, pci9111_interrupt,
1310                                 IRQF_SHARED, PCI9111_DRIVER_NAME, dev) != 0) {
1311                         printk("comedi%d: unable to allocate irq  %u\n",
1312                                dev->minor, pci_device->irq);
1313                         return -EINVAL;
1314                 }
1315         }
1316         dev->irq = pci_device->irq;
1317
1318         /*  TODO: Add external multiplexer setup (according to option[2]). */
1319
1320         error = alloc_subdevices(dev, 4);
1321         if (error < 0)
1322                 return error;
1323
1324         subdevice = dev->subdevices + 0;
1325         dev->read_subdev = subdevice;
1326
1327         subdevice->type = COMEDI_SUBD_AI;
1328         subdevice->subdev_flags = SDF_READABLE | SDF_COMMON | SDF_CMD_READ;
1329
1330         /*  TODO: Add external multiplexer data */
1331         /*     if (devpriv->usemux) { subdevice->n_chan = devpriv->usemux; } */
1332         /*     else { subdevice->n_chan = this_board->n_aichan; } */
1333
1334         subdevice->n_chan = board->ai_channel_nbr;
1335         subdevice->maxdata = board->ai_resolution_mask;
1336         subdevice->len_chanlist = board->ai_channel_nbr;
1337         subdevice->range_table = board->ai_range_list;
1338         subdevice->cancel = pci9111_ai_cancel;
1339         subdevice->insn_read = pci9111_ai_insn_read;
1340         subdevice->do_cmdtest = pci9111_ai_do_cmd_test;
1341         subdevice->do_cmd = pci9111_ai_do_cmd;
1342         subdevice->munge = pci9111_ai_munge;
1343
1344         subdevice = dev->subdevices + 1;
1345         subdevice->type = COMEDI_SUBD_AO;
1346         subdevice->subdev_flags = SDF_WRITABLE | SDF_COMMON;
1347         subdevice->n_chan = board->ao_channel_nbr;
1348         subdevice->maxdata = board->ao_resolution_mask;
1349         subdevice->len_chanlist = board->ao_channel_nbr;
1350         subdevice->range_table = board->ao_range_list;
1351         subdevice->insn_write = pci9111_ao_insn_write;
1352         subdevice->insn_read = pci9111_ao_insn_read;
1353
1354         subdevice = dev->subdevices + 2;
1355         subdevice->type = COMEDI_SUBD_DI;
1356         subdevice->subdev_flags = SDF_READABLE;
1357         subdevice->n_chan = PCI9111_DI_CHANNEL_NBR;
1358         subdevice->maxdata = 1;
1359         subdevice->range_table = &range_digital;
1360         subdevice->insn_bits = pci9111_di_insn_bits;
1361
1362         subdevice = dev->subdevices + 3;
1363         subdevice->type = COMEDI_SUBD_DO;
1364         subdevice->subdev_flags = SDF_READABLE | SDF_WRITABLE;
1365         subdevice->n_chan = PCI9111_DO_CHANNEL_NBR;
1366         subdevice->maxdata = 1;
1367         subdevice->range_table = &range_digital;
1368         subdevice->insn_bits = pci9111_do_insn_bits;
1369
1370         dev_private->is_valid = 1;
1371
1372         return 0;
1373 }
1374
1375 /*  Detach */
1376
1377 static int pci9111_detach(struct comedi_device *dev)
1378 {
1379         /*  Reset device */
1380
1381         if (dev->private != NULL) {
1382                 if (dev_private->is_valid)
1383                         pci9111_reset(dev);
1384
1385         }
1386         /*  Release previously allocated irq */
1387
1388         if (dev->irq != 0)
1389                 free_irq(dev->irq, dev);
1390
1391         if (dev_private != NULL && dev_private->pci_device != NULL) {
1392                 if (dev->iobase)
1393                         comedi_pci_disable(dev_private->pci_device);
1394                 pci_dev_put(dev_private->pci_device);
1395         }
1396
1397         return 0;
1398 }