1 // SPDX-License-Identifier: GPL-2.0+
2 /*
3 * comedi/drivers/comedi_test.c
4 *
5 * Generates fake waveform signals that can be read through
6 * the command interface. It does _not_ read from any board;
7 * it just generates deterministic waveforms.
8 * Useful for various testing purposes.
9 *
10 * Copyright (C) 2002 Joachim Wuttke <Joachim.Wuttke@icn.siemens.de>
11 * Copyright (C) 2002 Frank Mori Hess <fmhess@users.sourceforge.net>
12 *
13 * COMEDI - Linux Control and Measurement Device Interface
14 * Copyright (C) 2000 David A. Schleef <ds@schleef.org>
15 */
16
17 /*
18 * Driver: comedi_test
19 * Description: generates fake waveforms
20 * Author: Joachim Wuttke <Joachim.Wuttke@icn.siemens.de>, Frank Mori Hess
21 * <fmhess@users.sourceforge.net>, ds
22 * Devices:
23 * Status: works
24 * Updated: Sat, 16 Mar 2002 17:34:48 -0800
25 *
26 * This driver is mainly for testing purposes, but can also be used to
27 * generate sample waveforms on systems that don't have data acquisition
28 * hardware.
29 *
30 * Auto-configuration is the default mode if no parameter is supplied during
31 * module loading. Manual configuration requires COMEDI userspace tool.
32 * To disable auto-configuration mode, pass "noauto=1" parameter for module
33 * loading. Refer modinfo or MODULE_PARM_DESC description below for details.
34 *
35 * Auto-configuration options:
36 * Refer modinfo or MODULE_PARM_DESC description below for details.
37 *
38 * Manual configuration options:
39 * [0] - Amplitude in microvolts for fake waveforms (default 1 volt)
40 * [1] - Period in microseconds for fake waveforms (default 0.1 sec)
41 *
42 * Generates a sawtooth wave on channel 0, square wave on channel 1, additional
43 * waveforms could be added to other channels (currently they return flatline
44 * zero volts).
45 */
46
47 #include <linux/module.h>
48 #include <linux/comedi/comedidev.h>
49 #include <asm/div64.h>
50 #include <linux/timer.h>
51 #include <linux/ktime.h>
52 #include <linux/jiffies.h>
53 #include <linux/device.h>
54 #include <linux/kdev_t.h>
55
56 #define N_CHANS 8
57 #define DEV_NAME "comedi_testd"
58 #define CLASS_NAME "comedi_test"
59
60 static bool config_mode;
61 static unsigned int set_amplitude;
62 static unsigned int set_period;
63 static const struct class ctcls = {
64 .name = CLASS_NAME,
65 };
66 static struct device *ctdev;
67
68 module_param_named(noauto, config_mode, bool, 0444);
69 MODULE_PARM_DESC(noauto, "Disable auto-configuration: (1=disable [defaults to enable])");
70
71 module_param_named(amplitude, set_amplitude, uint, 0444);
72 MODULE_PARM_DESC(amplitude, "Set auto mode wave amplitude in microvolts: (defaults to 1 volt)");
73
74 module_param_named(period, set_period, uint, 0444);
75 MODULE_PARM_DESC(period, "Set auto mode wave period in microseconds: (defaults to 0.1 sec)");
76
77 /* Data unique to this driver */
78 struct waveform_private {
79 struct timer_list ai_timer; /* timer for AI commands */
80 u64 ai_convert_time; /* time of next AI conversion in usec */
81 unsigned int wf_amplitude; /* waveform amplitude in microvolts */
82 unsigned int wf_period; /* waveform period in microseconds */
83 unsigned int wf_current; /* current time in waveform period */
84 unsigned int ai_scan_period; /* AI scan period in usec */
85 unsigned int ai_convert_period; /* AI conversion period in usec */
86 struct timer_list ao_timer; /* timer for AO commands */
87 struct comedi_device *dev; /* parent comedi device */
88 u64 ao_last_scan_time; /* time of previous AO scan in usec */
89 unsigned int ao_scan_period; /* AO scan period in usec */
90 bool ai_timer_enable:1; /* should AI timer be running? */
91 bool ao_timer_enable:1; /* should AO timer be running? */
92 unsigned short ao_loopbacks[N_CHANS];
93 };
94
95 /* fake analog input ranges */
96 static const struct comedi_lrange waveform_ai_ranges = {
97 2, {
98 BIP_RANGE(10),
99 BIP_RANGE(5)
100 }
101 };
102
fake_sawtooth(struct comedi_device * dev,unsigned int range_index,unsigned int current_time)103 static unsigned short fake_sawtooth(struct comedi_device *dev,
104 unsigned int range_index,
105 unsigned int current_time)
106 {
107 struct waveform_private *devpriv = dev->private;
108 struct comedi_subdevice *s = dev->read_subdev;
109 unsigned int offset = s->maxdata / 2;
110 u64 value;
111 const struct comedi_krange *krange =
112 &s->range_table->range[range_index];
113 u64 binary_amplitude;
114
115 binary_amplitude = s->maxdata;
116 binary_amplitude *= devpriv->wf_amplitude;
117 do_div(binary_amplitude, krange->max - krange->min);
118
119 value = current_time;
120 value *= binary_amplitude * 2;
121 do_div(value, devpriv->wf_period);
122 value += offset;
123 /* get rid of sawtooth's dc offset and clamp value */
124 if (value < binary_amplitude) {
125 value = 0; /* negative saturation */
126 } else {
127 value -= binary_amplitude;
128 if (value > s->maxdata)
129 value = s->maxdata; /* positive saturation */
130 }
131
132 return value;
133 }
134
fake_squarewave(struct comedi_device * dev,unsigned int range_index,unsigned int current_time)135 static unsigned short fake_squarewave(struct comedi_device *dev,
136 unsigned int range_index,
137 unsigned int current_time)
138 {
139 struct waveform_private *devpriv = dev->private;
140 struct comedi_subdevice *s = dev->read_subdev;
141 unsigned int offset = s->maxdata / 2;
142 u64 value;
143 const struct comedi_krange *krange =
144 &s->range_table->range[range_index];
145
146 value = s->maxdata;
147 value *= devpriv->wf_amplitude;
148 do_div(value, krange->max - krange->min);
149
150 /* get one of two values for square-wave and clamp */
151 if (current_time < devpriv->wf_period / 2) {
152 if (offset < value)
153 value = 0; /* negative saturation */
154 else
155 value = offset - value;
156 } else {
157 value += offset;
158 if (value > s->maxdata)
159 value = s->maxdata; /* positive saturation */
160 }
161
162 return value;
163 }
164
fake_flatline(struct comedi_device * dev,unsigned int range_index,unsigned int current_time)165 static unsigned short fake_flatline(struct comedi_device *dev,
166 unsigned int range_index,
167 unsigned int current_time)
168 {
169 return dev->read_subdev->maxdata / 2;
170 }
171
172 /* generates a different waveform depending on what channel is read */
fake_waveform(struct comedi_device * dev,unsigned int channel,unsigned int range,unsigned int current_time)173 static unsigned short fake_waveform(struct comedi_device *dev,
174 unsigned int channel, unsigned int range,
175 unsigned int current_time)
176 {
177 enum {
178 SAWTOOTH_CHAN,
179 SQUARE_CHAN,
180 };
181 switch (channel) {
182 case SAWTOOTH_CHAN:
183 return fake_sawtooth(dev, range, current_time);
184 case SQUARE_CHAN:
185 return fake_squarewave(dev, range, current_time);
186 default:
187 break;
188 }
189
190 return fake_flatline(dev, range, current_time);
191 }
192
193 /*
194 * This is the background routine used to generate arbitrary data.
195 * It should run in the background; therefore it is scheduled by
196 * a timer mechanism.
197 */
waveform_ai_timer(struct timer_list * t)198 static void waveform_ai_timer(struct timer_list *t)
199 {
200 struct waveform_private *devpriv = timer_container_of(devpriv, t,
201 ai_timer);
202 struct comedi_device *dev = devpriv->dev;
203 struct comedi_subdevice *s = dev->read_subdev;
204 struct comedi_async *async = s->async;
205 struct comedi_cmd *cmd = &async->cmd;
206 u64 now;
207 unsigned int nsamples;
208 unsigned int time_increment;
209
210 now = ktime_to_us(ktime_get());
211 nsamples = comedi_nsamples_left(s, UINT_MAX);
212
213 while (nsamples && devpriv->ai_convert_time < now) {
214 unsigned int chanspec = cmd->chanlist[async->cur_chan];
215 unsigned short sample;
216
217 sample = fake_waveform(dev, CR_CHAN(chanspec),
218 CR_RANGE(chanspec), devpriv->wf_current);
219 if (comedi_buf_write_samples(s, &sample, 1) == 0)
220 goto overrun;
221 time_increment = devpriv->ai_convert_period;
222 if (async->scan_progress == 0) {
223 /* done last conversion in scan, so add dead time */
224 time_increment += devpriv->ai_scan_period -
225 devpriv->ai_convert_period *
226 cmd->scan_end_arg;
227 }
228 devpriv->wf_current += time_increment;
229 if (devpriv->wf_current >= devpriv->wf_period)
230 devpriv->wf_current %= devpriv->wf_period;
231 devpriv->ai_convert_time += time_increment;
232 nsamples--;
233 }
234
235 if (cmd->stop_src == TRIG_COUNT && async->scans_done >= cmd->stop_arg) {
236 async->events |= COMEDI_CB_EOA;
237 } else {
238 if (devpriv->ai_convert_time > now)
239 time_increment = devpriv->ai_convert_time - now;
240 else
241 time_increment = 1;
242 spin_lock(&dev->spinlock);
243 if (devpriv->ai_timer_enable) {
244 mod_timer(&devpriv->ai_timer,
245 jiffies + usecs_to_jiffies(time_increment));
246 }
247 spin_unlock(&dev->spinlock);
248 }
249
250 overrun:
251 comedi_handle_events(dev, s);
252 }
253
waveform_ai_cmdtest(struct comedi_device * dev,struct comedi_subdevice * s,struct comedi_cmd * cmd)254 static int waveform_ai_cmdtest(struct comedi_device *dev,
255 struct comedi_subdevice *s,
256 struct comedi_cmd *cmd)
257 {
258 int err = 0;
259 unsigned int arg, limit;
260
261 /* Step 1 : check if triggers are trivially valid */
262
263 err |= comedi_check_trigger_src(&cmd->start_src, TRIG_NOW);
264 err |= comedi_check_trigger_src(&cmd->scan_begin_src,
265 TRIG_FOLLOW | TRIG_TIMER);
266 err |= comedi_check_trigger_src(&cmd->convert_src,
267 TRIG_NOW | TRIG_TIMER);
268 err |= comedi_check_trigger_src(&cmd->scan_end_src, TRIG_COUNT);
269 err |= comedi_check_trigger_src(&cmd->stop_src, TRIG_COUNT | TRIG_NONE);
270
271 if (err)
272 return 1;
273
274 /* Step 2a : make sure trigger sources are unique */
275
276 err |= comedi_check_trigger_is_unique(cmd->convert_src);
277 err |= comedi_check_trigger_is_unique(cmd->scan_begin_src);
278 err |= comedi_check_trigger_is_unique(cmd->stop_src);
279
280 /* Step 2b : and mutually compatible */
281
282 if (cmd->scan_begin_src == TRIG_FOLLOW && cmd->convert_src == TRIG_NOW)
283 err |= -EINVAL; /* scan period would be 0 */
284
285 if (err)
286 return 2;
287
288 /* Step 3: check if arguments are trivially valid */
289
290 err |= comedi_check_trigger_arg_is(&cmd->start_arg, 0);
291
292 if (cmd->convert_src == TRIG_NOW) {
293 err |= comedi_check_trigger_arg_is(&cmd->convert_arg, 0);
294 } else { /* cmd->convert_src == TRIG_TIMER */
295 if (cmd->scan_begin_src == TRIG_FOLLOW) {
296 err |= comedi_check_trigger_arg_min(&cmd->convert_arg,
297 NSEC_PER_USEC);
298 }
299 }
300
301 if (cmd->scan_begin_src == TRIG_FOLLOW) {
302 err |= comedi_check_trigger_arg_is(&cmd->scan_begin_arg, 0);
303 } else { /* cmd->scan_begin_src == TRIG_TIMER */
304 err |= comedi_check_trigger_arg_min(&cmd->scan_begin_arg,
305 NSEC_PER_USEC);
306 }
307
308 err |= comedi_check_trigger_arg_min(&cmd->chanlist_len, 1);
309 err |= comedi_check_trigger_arg_is(&cmd->scan_end_arg,
310 cmd->chanlist_len);
311
312 if (cmd->stop_src == TRIG_COUNT)
313 err |= comedi_check_trigger_arg_min(&cmd->stop_arg, 1);
314 else /* cmd->stop_src == TRIG_NONE */
315 err |= comedi_check_trigger_arg_is(&cmd->stop_arg, 0);
316
317 if (err)
318 return 3;
319
320 /* step 4: fix up any arguments */
321
322 if (cmd->convert_src == TRIG_TIMER) {
323 /* round convert_arg to nearest microsecond */
324 arg = cmd->convert_arg;
325 arg = min(arg,
326 rounddown(UINT_MAX, (unsigned int)NSEC_PER_USEC));
327 arg = NSEC_PER_USEC * DIV_ROUND_CLOSEST(arg, NSEC_PER_USEC);
328 if (cmd->scan_begin_src == TRIG_TIMER) {
329 /* limit convert_arg to keep scan_begin_arg in range */
330 limit = UINT_MAX / cmd->scan_end_arg;
331 limit = rounddown(limit, (unsigned int)NSEC_PER_USEC);
332 arg = min(arg, limit);
333 }
334 err |= comedi_check_trigger_arg_is(&cmd->convert_arg, arg);
335 }
336
337 if (cmd->scan_begin_src == TRIG_TIMER) {
338 /* round scan_begin_arg to nearest microsecond */
339 arg = cmd->scan_begin_arg;
340 arg = min(arg,
341 rounddown(UINT_MAX, (unsigned int)NSEC_PER_USEC));
342 arg = NSEC_PER_USEC * DIV_ROUND_CLOSEST(arg, NSEC_PER_USEC);
343 if (cmd->convert_src == TRIG_TIMER) {
344 /* but ensure scan_begin_arg is large enough */
345 arg = max(arg, cmd->convert_arg * cmd->scan_end_arg);
346 }
347 err |= comedi_check_trigger_arg_is(&cmd->scan_begin_arg, arg);
348 }
349
350 if (err)
351 return 4;
352
353 return 0;
354 }
355
waveform_ai_cmd(struct comedi_device * dev,struct comedi_subdevice * s)356 static int waveform_ai_cmd(struct comedi_device *dev,
357 struct comedi_subdevice *s)
358 {
359 struct waveform_private *devpriv = dev->private;
360 struct comedi_cmd *cmd = &s->async->cmd;
361 unsigned int first_convert_time;
362 u64 wf_current;
363
364 if (cmd->flags & CMDF_PRIORITY) {
365 dev_err(dev->class_dev,
366 "commands at RT priority not supported in this driver\n");
367 return -1;
368 }
369
370 if (cmd->convert_src == TRIG_NOW)
371 devpriv->ai_convert_period = 0;
372 else /* cmd->convert_src == TRIG_TIMER */
373 devpriv->ai_convert_period = cmd->convert_arg / NSEC_PER_USEC;
374
375 if (cmd->scan_begin_src == TRIG_FOLLOW) {
376 devpriv->ai_scan_period = devpriv->ai_convert_period *
377 cmd->scan_end_arg;
378 } else { /* cmd->scan_begin_src == TRIG_TIMER */
379 devpriv->ai_scan_period = cmd->scan_begin_arg / NSEC_PER_USEC;
380 }
381
382 /*
383 * Simulate first conversion to occur at convert period after
384 * conversion timer starts. If scan_begin_src is TRIG_FOLLOW, assume
385 * the conversion timer starts immediately. If scan_begin_src is
386 * TRIG_TIMER, assume the conversion timer starts after the scan
387 * period.
388 */
389 first_convert_time = devpriv->ai_convert_period;
390 if (cmd->scan_begin_src == TRIG_TIMER)
391 first_convert_time += devpriv->ai_scan_period;
392 devpriv->ai_convert_time = ktime_to_us(ktime_get()) +
393 first_convert_time;
394
395 /* Determine time within waveform period at time of conversion. */
396 wf_current = devpriv->ai_convert_time;
397 devpriv->wf_current = do_div(wf_current, devpriv->wf_period);
398
399 /*
400 * Schedule timer to expire just after first conversion time.
401 * Seem to need an extra jiffy here, otherwise timer expires slightly
402 * early!
403 */
404 spin_lock_bh(&dev->spinlock);
405 devpriv->ai_timer_enable = true;
406 devpriv->ai_timer.expires =
407 jiffies + usecs_to_jiffies(devpriv->ai_convert_period) + 1;
408 add_timer(&devpriv->ai_timer);
409 spin_unlock_bh(&dev->spinlock);
410 return 0;
411 }
412
waveform_ai_cancel(struct comedi_device * dev,struct comedi_subdevice * s)413 static int waveform_ai_cancel(struct comedi_device *dev,
414 struct comedi_subdevice *s)
415 {
416 struct waveform_private *devpriv = dev->private;
417
418 spin_lock_bh(&dev->spinlock);
419 devpriv->ai_timer_enable = false;
420 spin_unlock_bh(&dev->spinlock);
421 if (in_softirq()) {
422 /* Assume we were called from the timer routine itself. */
423 timer_delete(&devpriv->ai_timer);
424 } else {
425 timer_delete_sync(&devpriv->ai_timer);
426 }
427 return 0;
428 }
429
waveform_ai_insn_read(struct comedi_device * dev,struct comedi_subdevice * s,struct comedi_insn * insn,unsigned int * data)430 static int waveform_ai_insn_read(struct comedi_device *dev,
431 struct comedi_subdevice *s,
432 struct comedi_insn *insn, unsigned int *data)
433 {
434 struct waveform_private *devpriv = dev->private;
435 int i, chan = CR_CHAN(insn->chanspec);
436
437 for (i = 0; i < insn->n; i++)
438 data[i] = devpriv->ao_loopbacks[chan];
439
440 return insn->n;
441 }
442
443 /*
444 * This is the background routine to handle AO commands, scheduled by
445 * a timer mechanism.
446 */
waveform_ao_timer(struct timer_list * t)447 static void waveform_ao_timer(struct timer_list *t)
448 {
449 struct waveform_private *devpriv = timer_container_of(devpriv, t,
450 ao_timer);
451 struct comedi_device *dev = devpriv->dev;
452 struct comedi_subdevice *s = dev->write_subdev;
453 struct comedi_async *async = s->async;
454 struct comedi_cmd *cmd = &async->cmd;
455 u64 now;
456 u64 scans_since;
457 unsigned int scans_avail = 0;
458
459 /* determine number of scan periods since last time */
460 now = ktime_to_us(ktime_get());
461 scans_since = now - devpriv->ao_last_scan_time;
462 do_div(scans_since, devpriv->ao_scan_period);
463 if (scans_since) {
464 unsigned int i;
465
466 /* determine scans in buffer, limit to scans to do this time */
467 scans_avail = comedi_nscans_left(s, 0);
468 if (scans_avail > scans_since)
469 scans_avail = scans_since;
470 if (scans_avail) {
471 /* skip all but the last scan to save processing time */
472 if (scans_avail > 1) {
473 unsigned int skip_bytes, nbytes;
474
475 skip_bytes =
476 comedi_samples_to_bytes(s, cmd->scan_end_arg *
477 (scans_avail - 1));
478 nbytes = comedi_buf_read_alloc(s, skip_bytes);
479 comedi_buf_read_free(s, nbytes);
480 comedi_inc_scan_progress(s, nbytes);
481 if (nbytes < skip_bytes) {
482 /* unexpected underrun! (cancelled?) */
483 async->events |= COMEDI_CB_OVERFLOW;
484 goto underrun;
485 }
486 }
487 /* output the last scan */
488 for (i = 0; i < cmd->scan_end_arg; i++) {
489 unsigned int chan = CR_CHAN(cmd->chanlist[i]);
490 unsigned short *pd;
491
492 pd = &devpriv->ao_loopbacks[chan];
493
494 if (!comedi_buf_read_samples(s, pd, 1)) {
495 /* unexpected underrun! (cancelled?) */
496 async->events |= COMEDI_CB_OVERFLOW;
497 goto underrun;
498 }
499 }
500 /* advance time of last scan */
501 devpriv->ao_last_scan_time +=
502 (u64)scans_avail * devpriv->ao_scan_period;
503 }
504 }
505 if (cmd->stop_src == TRIG_COUNT && async->scans_done >= cmd->stop_arg) {
506 async->events |= COMEDI_CB_EOA;
507 } else if (scans_avail < scans_since) {
508 async->events |= COMEDI_CB_OVERFLOW;
509 } else {
510 unsigned int time_inc = devpriv->ao_last_scan_time +
511 devpriv->ao_scan_period - now;
512
513 spin_lock(&dev->spinlock);
514 if (devpriv->ao_timer_enable) {
515 mod_timer(&devpriv->ao_timer,
516 jiffies + usecs_to_jiffies(time_inc));
517 }
518 spin_unlock(&dev->spinlock);
519 }
520
521 underrun:
522 comedi_handle_events(dev, s);
523 }
524
waveform_ao_inttrig_start(struct comedi_device * dev,struct comedi_subdevice * s,unsigned int trig_num)525 static int waveform_ao_inttrig_start(struct comedi_device *dev,
526 struct comedi_subdevice *s,
527 unsigned int trig_num)
528 {
529 struct waveform_private *devpriv = dev->private;
530 struct comedi_async *async = s->async;
531 struct comedi_cmd *cmd = &async->cmd;
532
533 if (trig_num != cmd->start_arg)
534 return -EINVAL;
535
536 async->inttrig = NULL;
537
538 devpriv->ao_last_scan_time = ktime_to_us(ktime_get());
539 spin_lock_bh(&dev->spinlock);
540 devpriv->ao_timer_enable = true;
541 devpriv->ao_timer.expires =
542 jiffies + usecs_to_jiffies(devpriv->ao_scan_period);
543 add_timer(&devpriv->ao_timer);
544 spin_unlock_bh(&dev->spinlock);
545
546 return 1;
547 }
548
waveform_ao_cmdtest(struct comedi_device * dev,struct comedi_subdevice * s,struct comedi_cmd * cmd)549 static int waveform_ao_cmdtest(struct comedi_device *dev,
550 struct comedi_subdevice *s,
551 struct comedi_cmd *cmd)
552 {
553 int err = 0;
554 unsigned int arg;
555
556 /* Step 1 : check if triggers are trivially valid */
557
558 err |= comedi_check_trigger_src(&cmd->start_src, TRIG_INT);
559 err |= comedi_check_trigger_src(&cmd->scan_begin_src, TRIG_TIMER);
560 err |= comedi_check_trigger_src(&cmd->convert_src, TRIG_NOW);
561 err |= comedi_check_trigger_src(&cmd->scan_end_src, TRIG_COUNT);
562 err |= comedi_check_trigger_src(&cmd->stop_src, TRIG_COUNT | TRIG_NONE);
563
564 if (err)
565 return 1;
566
567 /* Step 2a : make sure trigger sources are unique */
568
569 err |= comedi_check_trigger_is_unique(cmd->stop_src);
570
571 /* Step 2b : and mutually compatible */
572
573 if (err)
574 return 2;
575
576 /* Step 3: check if arguments are trivially valid */
577
578 err |= comedi_check_trigger_arg_min(&cmd->scan_begin_arg,
579 NSEC_PER_USEC);
580 err |= comedi_check_trigger_arg_is(&cmd->convert_arg, 0);
581 err |= comedi_check_trigger_arg_min(&cmd->chanlist_len, 1);
582 err |= comedi_check_trigger_arg_is(&cmd->scan_end_arg,
583 cmd->chanlist_len);
584 if (cmd->stop_src == TRIG_COUNT)
585 err |= comedi_check_trigger_arg_min(&cmd->stop_arg, 1);
586 else /* cmd->stop_src == TRIG_NONE */
587 err |= comedi_check_trigger_arg_is(&cmd->stop_arg, 0);
588
589 if (err)
590 return 3;
591
592 /* step 4: fix up any arguments */
593
594 /* round scan_begin_arg to nearest microsecond */
595 arg = cmd->scan_begin_arg;
596 arg = min(arg, rounddown(UINT_MAX, (unsigned int)NSEC_PER_USEC));
597 arg = NSEC_PER_USEC * DIV_ROUND_CLOSEST(arg, NSEC_PER_USEC);
598 err |= comedi_check_trigger_arg_is(&cmd->scan_begin_arg, arg);
599
600 if (err)
601 return 4;
602
603 return 0;
604 }
605
waveform_ao_cmd(struct comedi_device * dev,struct comedi_subdevice * s)606 static int waveform_ao_cmd(struct comedi_device *dev,
607 struct comedi_subdevice *s)
608 {
609 struct waveform_private *devpriv = dev->private;
610 struct comedi_cmd *cmd = &s->async->cmd;
611
612 if (cmd->flags & CMDF_PRIORITY) {
613 dev_err(dev->class_dev,
614 "commands at RT priority not supported in this driver\n");
615 return -1;
616 }
617
618 devpriv->ao_scan_period = cmd->scan_begin_arg / NSEC_PER_USEC;
619 s->async->inttrig = waveform_ao_inttrig_start;
620 return 0;
621 }
622
waveform_ao_cancel(struct comedi_device * dev,struct comedi_subdevice * s)623 static int waveform_ao_cancel(struct comedi_device *dev,
624 struct comedi_subdevice *s)
625 {
626 struct waveform_private *devpriv = dev->private;
627
628 s->async->inttrig = NULL;
629 spin_lock_bh(&dev->spinlock);
630 devpriv->ao_timer_enable = false;
631 spin_unlock_bh(&dev->spinlock);
632 if (in_softirq()) {
633 /* Assume we were called from the timer routine itself. */
634 timer_delete(&devpriv->ao_timer);
635 } else {
636 timer_delete_sync(&devpriv->ao_timer);
637 }
638 return 0;
639 }
640
waveform_ao_insn_write(struct comedi_device * dev,struct comedi_subdevice * s,struct comedi_insn * insn,unsigned int * data)641 static int waveform_ao_insn_write(struct comedi_device *dev,
642 struct comedi_subdevice *s,
643 struct comedi_insn *insn, unsigned int *data)
644 {
645 struct waveform_private *devpriv = dev->private;
646 int i, chan = CR_CHAN(insn->chanspec);
647
648 for (i = 0; i < insn->n; i++)
649 devpriv->ao_loopbacks[chan] = data[i];
650
651 return insn->n;
652 }
653
waveform_ai_insn_config(struct comedi_device * dev,struct comedi_subdevice * s,struct comedi_insn * insn,unsigned int * data)654 static int waveform_ai_insn_config(struct comedi_device *dev,
655 struct comedi_subdevice *s,
656 struct comedi_insn *insn,
657 unsigned int *data)
658 {
659 if (data[0] == INSN_CONFIG_GET_CMD_TIMING_CONSTRAINTS) {
660 /*
661 * input: data[1], data[2] : scan_begin_src, convert_src
662 * output: data[1], data[2] : scan_begin_min, convert_min
663 */
664 if (data[1] == TRIG_FOLLOW) {
665 /* exactly TRIG_FOLLOW case */
666 data[1] = 0;
667 data[2] = NSEC_PER_USEC;
668 } else {
669 data[1] = NSEC_PER_USEC;
670 if (data[2] & TRIG_TIMER)
671 data[2] = NSEC_PER_USEC;
672 else
673 data[2] = 0;
674 }
675 return 0;
676 }
677
678 return -EINVAL;
679 }
680
waveform_ao_insn_config(struct comedi_device * dev,struct comedi_subdevice * s,struct comedi_insn * insn,unsigned int * data)681 static int waveform_ao_insn_config(struct comedi_device *dev,
682 struct comedi_subdevice *s,
683 struct comedi_insn *insn,
684 unsigned int *data)
685 {
686 if (data[0] == INSN_CONFIG_GET_CMD_TIMING_CONSTRAINTS) {
687 /* we don't care about actual channels */
688 data[1] = NSEC_PER_USEC; /* scan_begin_min */
689 data[2] = 0; /* convert_min */
690 return 0;
691 }
692
693 return -EINVAL;
694 }
695
waveform_dio_insn_bits(struct comedi_device * dev,struct comedi_subdevice * s,struct comedi_insn * insn,unsigned int * data)696 static int waveform_dio_insn_bits(struct comedi_device *dev,
697 struct comedi_subdevice *s,
698 struct comedi_insn *insn,
699 unsigned int *data)
700 {
701 u32 driven_low;
702 u16 wires;
703
704 /* Update the channel outputs. */
705 comedi_dio_update_state(s, data);
706 /*
707 * We are modelling the outputs as NPN open collector (0 = driven low,
708 * 1 = high impedance), with the lower 16 channels wired to the upper
709 * 16 channels in pairs (0 to 16, 1 to 17, ..., 15 to 31), with a
710 * pull-up resistor on each wire. When reading back each channel, we
711 * read back the state of the wire to which it is connected.
712 *
713 * The state of each wire and the value read back from both channels
714 * connected to it will be logic 1 unless either channel connected to
715 * the wire is configured as an output in the logic 0 state.
716 */
717 driven_low = s->io_bits & ~s->state;
718 wires = 0xFFFF & ~driven_low & ~(driven_low >> 16);
719 /* Read back the state of the wires for each pair of channels. */
720 data[1] = wires | (wires << 16);
721
722 return insn->n;
723 }
724
waveform_dio_insn_config(struct comedi_device * dev,struct comedi_subdevice * s,struct comedi_insn * insn,unsigned int * data)725 static int waveform_dio_insn_config(struct comedi_device *dev,
726 struct comedi_subdevice *s,
727 struct comedi_insn *insn,
728 unsigned int *data)
729 {
730 /* configure each channel as input or output individually */
731 return comedi_dio_insn_config(dev, s, insn, data, 0);
732 }
733
waveform_common_attach(struct comedi_device * dev,int amplitude,int period)734 static int waveform_common_attach(struct comedi_device *dev,
735 int amplitude, int period)
736 {
737 struct waveform_private *devpriv;
738 struct comedi_subdevice *s;
739 int i;
740 int ret;
741
742 devpriv = comedi_alloc_devpriv(dev, sizeof(*devpriv));
743 if (!devpriv)
744 return -ENOMEM;
745
746 devpriv->wf_amplitude = amplitude;
747 devpriv->wf_period = period;
748
749 ret = comedi_alloc_subdevices(dev, 3);
750 if (ret)
751 return ret;
752
753 s = &dev->subdevices[0];
754 dev->read_subdev = s;
755 /* analog input subdevice */
756 s->type = COMEDI_SUBD_AI;
757 s->subdev_flags = SDF_READABLE | SDF_GROUND | SDF_CMD_READ;
758 s->n_chan = N_CHANS;
759 s->maxdata = 0xffff;
760 s->range_table = &waveform_ai_ranges;
761 s->len_chanlist = s->n_chan * 2;
762 s->insn_read = waveform_ai_insn_read;
763 s->do_cmd = waveform_ai_cmd;
764 s->do_cmdtest = waveform_ai_cmdtest;
765 s->cancel = waveform_ai_cancel;
766 s->insn_config = waveform_ai_insn_config;
767
768 s = &dev->subdevices[1];
769 dev->write_subdev = s;
770 /* analog output subdevice (loopback) */
771 s->type = COMEDI_SUBD_AO;
772 s->subdev_flags = SDF_WRITABLE | SDF_GROUND | SDF_CMD_WRITE;
773 s->n_chan = N_CHANS;
774 s->maxdata = 0xffff;
775 s->range_table = &waveform_ai_ranges;
776 s->len_chanlist = s->n_chan;
777 s->insn_write = waveform_ao_insn_write;
778 s->insn_read = waveform_ai_insn_read; /* do same as AI insn_read */
779 s->do_cmd = waveform_ao_cmd;
780 s->do_cmdtest = waveform_ao_cmdtest;
781 s->cancel = waveform_ao_cancel;
782 s->insn_config = waveform_ao_insn_config;
783
784 /* Our default loopback value is just a 0V flatline */
785 for (i = 0; i < s->n_chan; i++)
786 devpriv->ao_loopbacks[i] = s->maxdata / 2;
787
788 s = &dev->subdevices[2];
789 /* digital input/output subdevice */
790 s->type = COMEDI_SUBD_DIO;
791 s->subdev_flags = SDF_READABLE | SDF_WRITABLE;
792 s->n_chan = 32;
793 s->maxdata = 1;
794 s->range_table = &range_digital;
795 s->insn_bits = waveform_dio_insn_bits;
796 s->insn_config = waveform_dio_insn_config;
797
798 devpriv->dev = dev;
799 timer_setup(&devpriv->ai_timer, waveform_ai_timer, 0);
800 timer_setup(&devpriv->ao_timer, waveform_ao_timer, 0);
801
802 dev_info(dev->class_dev,
803 "%s: %u microvolt, %u microsecond waveform attached\n",
804 dev->board_name,
805 devpriv->wf_amplitude, devpriv->wf_period);
806
807 return 0;
808 }
809
waveform_attach(struct comedi_device * dev,struct comedi_devconfig * it)810 static int waveform_attach(struct comedi_device *dev,
811 struct comedi_devconfig *it)
812 {
813 int amplitude = it->options[0];
814 int period = it->options[1];
815
816 /* set default amplitude and period */
817 if (amplitude <= 0)
818 amplitude = 1000000; /* 1 volt */
819 if (period <= 0)
820 period = 100000; /* 0.1 sec */
821
822 return waveform_common_attach(dev, amplitude, period);
823 }
824
waveform_auto_attach(struct comedi_device * dev,unsigned long context_unused)825 static int waveform_auto_attach(struct comedi_device *dev,
826 unsigned long context_unused)
827 {
828 int amplitude = set_amplitude;
829 int period = set_period;
830
831 /* set default amplitude and period */
832 if (!amplitude)
833 amplitude = 1000000; /* 1 volt */
834 if (!period)
835 period = 100000; /* 0.1 sec */
836
837 return waveform_common_attach(dev, amplitude, period);
838 }
839
waveform_detach(struct comedi_device * dev)840 static void waveform_detach(struct comedi_device *dev)
841 {
842 struct waveform_private *devpriv = dev->private;
843
844 if (devpriv && dev->n_subdevices) {
845 timer_delete_sync(&devpriv->ai_timer);
846 timer_delete_sync(&devpriv->ao_timer);
847 }
848 }
849
850 static struct comedi_driver waveform_driver = {
851 .driver_name = "comedi_test",
852 .module = THIS_MODULE,
853 .attach = waveform_attach,
854 .auto_attach = waveform_auto_attach,
855 .detach = waveform_detach,
856 };
857
858 /*
859 * For auto-configuration, a device is created to stand in for a
860 * real hardware device.
861 */
comedi_test_init(void)862 static int __init comedi_test_init(void)
863 {
864 int ret;
865
866 ret = comedi_driver_register(&waveform_driver);
867 if (ret) {
868 pr_err("comedi_test: unable to register driver\n");
869 return ret;
870 }
871
872 if (!config_mode) {
873 ret = class_register(&ctcls);
874 if (ret) {
875 pr_warn("comedi_test: unable to create class\n");
876 goto clean3;
877 }
878
879 ctdev = device_create(&ctcls, NULL, MKDEV(0, 0), NULL, DEV_NAME);
880 if (IS_ERR(ctdev)) {
881 pr_warn("comedi_test: unable to create device\n");
882 goto clean2;
883 }
884
885 ret = comedi_auto_config(ctdev, &waveform_driver, 0);
886 if (ret) {
887 pr_warn("comedi_test: unable to auto-configure device\n");
888 goto clean;
889 }
890 }
891
892 return 0;
893
894 clean:
895 device_destroy(&ctcls, MKDEV(0, 0));
896 clean2:
897 class_unregister(&ctcls);
898 clean3:
899 return 0;
900 }
901 module_init(comedi_test_init);
902
comedi_test_exit(void)903 static void __exit comedi_test_exit(void)
904 {
905 if (ctdev)
906 comedi_auto_unconfig(ctdev);
907
908 if (class_is_registered(&ctcls)) {
909 device_destroy(&ctcls, MKDEV(0, 0));
910 class_unregister(&ctcls);
911 }
912
913 comedi_driver_unregister(&waveform_driver);
914 }
915 module_exit(comedi_test_exit);
916
917 MODULE_AUTHOR("Comedi https://www.comedi.org");
918 MODULE_DESCRIPTION("Comedi low-level driver");
919 MODULE_LICENSE("GPL");
920