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rigol-ds: Use rigol_ds_channel_start() function for legacy protocol too.
[libsigrok.git] / hardware / rigol-ds / protocol.c
1 /*
2  * This file is part of the libsigrok project.
3  *
4  * Copyright (C) 2012 Martin Ling <martin-git@earth.li>
5  * Copyright (C) 2013 Bert Vermeulen <bert@biot.com>
6  * Copyright (C) 2013 Mathias Grimmberger <mgri@zaphod.sax.de>
7  *
8  * This program is free software: you can redistribute it and/or modify
9  * it under the terms of the GNU General Public License as published by
10  * the Free Software Foundation, either version 3 of the License, or
11  * (at your option) any later version.
12  *
13  * This program is distributed in the hope that it will be useful,
14  * but WITHOUT ANY WARRANTY; without even the implied warranty of
15  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
16  * GNU General Public License for more details.
17  *
18  * You should have received a copy of the GNU General Public License
19  * along with this program.  If not, see <http://www.gnu.org/licenses/>.
20  */
21
22 #include <stdlib.h>
23 #include <stdarg.h>
24 #include <unistd.h>
25 #include <errno.h>
26 #include <string.h>
27 #include <math.h>
28 #include <ctype.h>
29 #include <time.h>
30 #include <glib.h>
31 #include "libsigrok.h"
32 #include "libsigrok-internal.h"
33 #include "protocol.h"
34
35 /*
36  * This is a unified protocol driver for the DS1000 and DS2000 series.
37  *
38  * DS1000 support tested with a Rigol DS1102D.
39  *
40  * DS2000 support tested with a Rigol DS2072 using firmware version 01.01.00.02.
41  *
42  * The Rigol DS2000 series scopes try to adhere to the IEEE 488.2 (I think)
43  * standard. If you want to read it - it costs real money...
44  *
45  * Every response from the scope has a linefeed appended because the
46  * standard says so. In principle this could be ignored because sending the
47  * next command clears the output queue of the scope. This driver tries to
48  * avoid doing that because it may cause an error being generated inside the
49  * scope and who knows what bugs the firmware has WRT this.
50  *
51  * Waveform data is transferred in a format called "arbitrary block program
52  * data" specified in IEEE 488.2. See Agilents programming manuals for their
53  * 2000/3000 series scopes for a nice description.
54  *
55  * Each data block from the scope has a header, e.g. "#900000001400".
56  * The '#' marks the start of a block.
57  * Next is one ASCII decimal digit between 1 and 9, this gives the number of
58  * ASCII decimal digits following.
59  * Last are the ASCII decimal digits giving the number of bytes (not
60  * samples!) in the block.
61  *
62  * After this header as many data bytes as indicated follow.
63  *
64  * Each data block has a trailing linefeed too.
65  */
66
67 static int get_cfg(const struct sr_dev_inst *sdi, char *cmd, char *reply, size_t maxlen);
68 static int get_cfg_int(const struct sr_dev_inst *sdi, char *cmd, int *i);
69
70 static int parse_int(const char *str, int *ret)
71 {
72         char *e;
73         long tmp;
74
75         errno = 0;
76         tmp = strtol(str, &e, 10);
77         if (e == str || *e != '\0') {
78                 sr_dbg("Failed to parse integer: '%s'", str);
79                 return SR_ERR;
80         }
81         if (errno) {
82                 sr_dbg("Failed to parse integer: '%s', numerical overflow", str);
83                 return SR_ERR;
84         }
85         if (tmp > INT_MAX || tmp < INT_MIN) {
86                 sr_dbg("Failed to parse integer: '%s', value to large/small", str);
87                 return SR_ERR;
88         }
89
90         *ret = (int)tmp;
91         return SR_OK;
92 }
93
94 /* Set the next event to wait for in rigol_ds_receive */
95 static void rigol_ds_set_wait_event(struct dev_context *devc, enum wait_events event)
96 {
97         if (event == WAIT_STOP)
98                 devc->wait_status = 2;
99         else
100                 devc->wait_status = 1;
101         devc->wait_event = event;
102 }
103
104 /*
105  * Waiting for a event will return a timeout after 2 to 3 seconds in order
106  * to not block the application.
107  */
108 static int rigol_ds_event_wait(const struct sr_dev_inst *sdi, char status1, char status2)
109 {
110         char buf[20];
111         struct dev_context *devc;
112         time_t start;
113
114         if (!(devc = sdi->priv))
115                 return SR_ERR;
116
117         start = time(NULL);
118
119         /*
120          * Trigger status may return:
121          * "TD" or "T'D" - triggered
122          * "AUTO"        - autotriggered
123          * "RUN"         - running
124          * "WAIT"        - waiting for trigger
125          * "STOP"        - stopped
126          */
127
128         if (devc->wait_status == 1) {
129                 do {
130                         if (time(NULL) - start >= 3) {
131                                 sr_dbg("Timeout waiting for trigger");
132                                 return SR_ERR_TIMEOUT;
133                         }
134
135                         if (get_cfg(sdi, ":TRIG:STAT?", buf, sizeof(buf)) != SR_OK)
136                                 return SR_ERR;
137                 } while (buf[0] == status1 || buf[0] == status2);
138
139                 devc->wait_status = 2;
140         }
141         if (devc->wait_status == 2) {
142                 do {
143                         if (time(NULL) - start >= 3) {
144                                 sr_dbg("Timeout waiting for trigger");
145                                 return SR_ERR_TIMEOUT;
146                         }
147
148                         if (get_cfg(sdi, ":TRIG:STAT?", buf, sizeof(buf)) != SR_OK)
149                                 return SR_ERR;
150                 } while (buf[0] != status1 && buf[0] != status2);
151
152                 rigol_ds_set_wait_event(devc, WAIT_NONE);
153         }
154
155         return SR_OK;
156 }
157
158 /*
159  * For live capture we need to wait for a new trigger event to ensure that
160  * sample data is not returned twice.
161  *
162  * Unfortunately this will never really work because for sufficiently fast
163  * timebases and trigger rates it just can't catch the status changes.
164  *
165  * What would be needed is a trigger event register with autoreset like the
166  * Agilents have. The Rigols don't seem to have anything like this.
167  *
168  * The workaround is to only wait for the trigger when the timebase is slow
169  * enough. Of course this means that for faster timebases sample data can be
170  * returned multiple times, this effect is mitigated somewhat by sleeping
171  * for about one sweep time in that case.
172  */
173 static int rigol_ds_trigger_wait(const struct sr_dev_inst *sdi)
174 {
175         struct dev_context *devc;
176         long s;
177
178         if (!(devc = sdi->priv))
179                 return SR_ERR;
180
181         /* 
182          * If timebase < 50 msecs/DIV just sleep about one sweep time except
183          * for really fast sweeps.
184          */
185         if (devc->timebase < 0.0499)
186         {
187                 if (devc->timebase > 0.99e-6) {
188                         /*
189                          * Timebase * num hor. divs * 85(%) * 1e6(usecs) / 100
190                          * -> 85 percent of sweep time
191                          */
192                         s = (devc->timebase * devc->model->num_horizontal_divs
193                              * 85e6) / 100L;
194                         sr_spew("Sleeping for %ld usecs instead of trigger-wait", s);
195                         g_usleep(s);
196                 }
197                 rigol_ds_set_wait_event(devc, WAIT_NONE);
198                 return SR_OK;
199         } else {
200                 return rigol_ds_event_wait(sdi, 'T', 'A');
201         }
202 }
203
204 /* Wait for scope to got to "Stop" in single shot mode */
205 static int rigol_ds_stop_wait(const struct sr_dev_inst *sdi)
206 {
207         return rigol_ds_event_wait(sdi, 'S', 'S');
208 }
209
210 /* Check that a single shot acquisition actually succeeded on the DS2000 */
211 static int rigol_ds_check_stop(const struct sr_dev_inst *sdi)
212 {
213         struct dev_context *devc;
214         int tmp;
215
216         if (!(devc = sdi->priv))
217                 return SR_ERR;
218
219         if (sr_scpi_send(sdi->conn, ":WAV:SOUR CHAN%d",
220                           devc->channel->index + 1) != SR_OK)
221                 return SR_ERR;
222         /* Check that the number of samples will be accepted */
223         if (sr_scpi_send(sdi->conn, ":WAV:POIN %d;*OPC", devc->analog_frame_size) != SR_OK)
224                 return SR_ERR;
225         if (get_cfg_int(sdi, "*ESR?", &tmp) != SR_OK)
226                 return SR_ERR;
227         /*
228          * If we get an "Execution error" the scope went from "Single" to
229          * "Stop" without actually triggering. There is no waveform
230          * displayed and trying to download one will fail - the scope thinks
231          * it has 1400 samples (like display memory) and the driver thinks
232          * it has a different number of samples.
233          *
234          * In that case just try to capture something again. Might still
235          * fail in interesting ways.
236          *
237          * Ain't firmware fun?
238          */
239         if (tmp & 0x10) {
240                 sr_warn("Single shot acquisition failed, retrying...");
241                 /* Sleep a bit, otherwise the single shot will often fail */
242                 g_usleep(500000);
243                 sr_scpi_send(sdi->conn, ":SING");
244                 rigol_ds_set_wait_event(devc, WAIT_STOP);
245                 return SR_ERR;
246         }
247
248         return SR_OK;
249 }
250
251 /* Wait for enough data becoming available in scope output buffer */
252 static int rigol_ds_block_wait(const struct sr_dev_inst *sdi)
253 {
254         char buf[30];
255         struct dev_context *devc;
256         time_t start;
257         int len;
258
259         if (!(devc = sdi->priv))
260                 return SR_ERR;
261
262         start = time(NULL);
263
264         do {
265                 if (time(NULL) - start >= 3) {
266                         sr_dbg("Timeout waiting for data block");
267                         return SR_ERR_TIMEOUT;
268                 }
269
270                 /*
271                  * The scope copies data really slowly from sample
272                  * memory to its output buffer, so try not to bother
273                  * it too much with SCPI requests but don't wait too
274                  * long for short sample frame sizes.
275                  */
276                 g_usleep(devc->analog_frame_size < 15000 ? 100000 : 1000000);
277
278                 /* "READ,nnnn" (still working) or "IDLE,nnnn" (finished) */
279                 if (get_cfg(sdi, ":WAV:STAT?", buf, sizeof(buf)) != SR_OK)
280                         return SR_ERR;
281
282                 if (parse_int(buf + 5, &len) != SR_OK)
283                         return SR_ERR;
284         } while (buf[0] == 'R' && len < 1000000);
285
286         rigol_ds_set_wait_event(devc, WAIT_NONE);
287
288         return SR_OK;
289 }
290
291 /* Start capturing a new frameset */
292 SR_PRIV int rigol_ds_capture_start(const struct sr_dev_inst *sdi)
293 {
294         struct dev_context *devc;
295
296         if (!(devc = sdi->priv))
297                 return SR_ERR;
298
299         sr_dbg("Starting data capture for frameset %lu of %lu",
300                devc->num_frames + 1, devc->limit_frames);
301
302         if (sr_scpi_send(sdi->conn, ":WAV:FORM BYTE") != SR_OK)
303                 return SR_ERR;
304         if (devc->data_source == DATA_SOURCE_LIVE) {
305                 if (sr_scpi_send(sdi->conn, ":WAV:MODE NORM") != SR_OK)
306                         return SR_ERR;
307                 rigol_ds_set_wait_event(devc, WAIT_TRIGGER);
308         } else {
309                 if (sr_scpi_send(sdi->conn, ":WAV:MODE RAW") != SR_OK)
310                         return SR_ERR;
311                 if (sr_scpi_send(sdi->conn, ":SING", devc->analog_frame_size) != SR_OK)
312                         return SR_ERR;          
313                 rigol_ds_set_wait_event(devc, WAIT_STOP);
314         }
315
316         return SR_OK;
317 }
318
319 /* Start reading data from the current channel */
320 SR_PRIV int rigol_ds_channel_start(const struct sr_dev_inst *sdi)
321 {
322         struct dev_context *devc;
323
324         if (!(devc = sdi->priv))
325                 return SR_ERR;
326
327         sr_dbg("Starting reading data from channel %d",
328                devc->channel->index + 1);
329
330         if (devc->model->protocol == PROTOCOL_LEGACY) {
331                 if (devc->channel->type == SR_DF_LOGIC) {
332                         if (sr_scpi_send(sdi->conn, ":WAV:DATA? DIG") != SR_OK)
333                                 return SR_ERR;
334                 } else {
335                         if (sr_scpi_send(sdi->conn, ":WAV:DATA? CHAN%c",
336                                         devc->channel->name[2]) != SR_OK)
337                                 return SR_ERR;
338                 }
339         } else {
340                 if (sr_scpi_send(sdi->conn, ":WAV:SOUR CHAN%d",
341                                   devc->channel->index + 1) != SR_OK)
342                         return SR_ERR;
343                 if (devc->data_source != DATA_SOURCE_LIVE) {
344                         if (sr_scpi_send(sdi->conn, ":WAV:RES") != SR_OK)
345                                 return SR_ERR;
346                         if (sr_scpi_send(sdi->conn, ":WAV:BEG") != SR_OK)
347                                 return SR_ERR;
348                         rigol_ds_set_wait_event(devc, WAIT_BLOCK);
349                 } else
350                         rigol_ds_set_wait_event(devc, WAIT_NONE);
351         }
352
353         devc->num_frame_samples = 0;
354         devc->num_block_bytes = 0;
355
356         return SR_OK;
357 }
358
359 /* Read the header of a data block */
360 static int rigol_ds_read_header(struct sr_scpi_dev_inst *scpi)
361 {
362         char start[3], length[10];
363         int len, tmp;
364
365         /* Read the hashsign and length digit. */
366         tmp = sr_scpi_read(scpi, start, 2);
367         start[2] = '\0';
368         if (tmp != 2)
369         {
370                 sr_err("Failed to read first two bytes of data block header.");
371                 return -1;
372         }
373         if (start[0] != '#' || !isdigit(start[1]) || start[1] == '0')
374         {
375                 sr_err("Received invalid data block header start '%s'.", start);
376                 return -1;
377         }
378         len = atoi(start + 1);
379
380         /* Read the data length. */
381         tmp = sr_scpi_read(scpi, length, len);
382         length[len] = '\0';
383         if (tmp != len)
384         {
385                 sr_err("Failed to read %d bytes of data block length.", len);
386                 return -1;
387         }
388         if (parse_int(length, &len) != SR_OK)
389         {
390                 sr_err("Received invalid data block length '%s'.", length);
391                 return -1;
392         }
393
394         sr_dbg("Received data block header: %s%s -> block length %d", start, length, len);
395
396         return len;
397 }
398
399 SR_PRIV int rigol_ds_receive(int fd, int revents, void *cb_data)
400 {
401         struct sr_dev_inst *sdi;
402         struct sr_scpi_dev_inst *scpi;
403         struct dev_context *devc;
404         struct sr_datafeed_packet packet;
405         struct sr_datafeed_analog analog;
406         struct sr_datafeed_logic logic;
407         double vdiv, offset;
408         int len, i, waveform_size, vref;
409         struct sr_probe *probe;
410
411         (void)fd;
412
413         if (!(sdi = cb_data))
414                 return TRUE;
415
416         if (!(devc = sdi->priv))
417                 return TRUE;
418
419         scpi = sdi->conn;
420
421         if (revents == G_IO_IN) {
422                 if (devc->model->protocol == PROTOCOL_IEEE488_2) {
423                         switch(devc->wait_event) {
424                         case WAIT_NONE:
425                                 break;
426
427                         case WAIT_TRIGGER:
428                                 if (rigol_ds_trigger_wait(sdi) != SR_OK)
429                                         return TRUE;
430                                 if (rigol_ds_channel_start(sdi) != SR_OK)
431                                         return TRUE;
432                                 break;
433
434                         case WAIT_BLOCK:
435                                 if (rigol_ds_block_wait(sdi) != SR_OK)
436                                         return TRUE;
437                                 break;
438
439                         case WAIT_STOP:
440                                 if (rigol_ds_stop_wait(sdi) != SR_OK)
441                                         return TRUE;
442                                 if (rigol_ds_check_stop(sdi) != SR_OK)
443                                         return TRUE;
444                                 if (rigol_ds_channel_start(sdi) != SR_OK)
445                                         return TRUE;
446                                 return TRUE;
447
448                         default:
449                                 sr_err("BUG: Unknown event target encountered");
450                         }
451                 
452                         if (devc->num_block_bytes == 0) {
453                                 sr_dbg("New block header expected");
454                                 if (sr_scpi_send(sdi->conn, ":WAV:DATA?") != SR_OK)
455                                         return TRUE;
456                                 len = rigol_ds_read_header(scpi);
457                                 if (len == -1)
458                                         return TRUE;
459                                 /* At slow timebases in live capture the DS2072
460                                  * sometimes returns "short" data blocks, with
461                                  * apparently no way to get the rest of the data.
462                                  * Discard these, the complete data block will
463                                  * appear eventually.
464                                  */
465                                 if (devc->data_source == DATA_SOURCE_LIVE
466                                     && (unsigned)len < devc->num_frame_samples) {
467                                         sr_dbg("Discarding short data block");
468                                         sr_scpi_read(scpi, (char *)devc->buffer, len + 1);
469                                         return TRUE;
470                                 }
471                                 devc->num_block_bytes = len;
472                                 devc->num_block_read = 0;
473                         }
474                 }
475
476                 probe = devc->channel;
477                 if (devc->model->protocol == PROTOCOL_IEEE488_2) {
478                         len = devc->num_block_bytes - devc->num_block_read;
479                         len = sr_scpi_read(scpi, (char *)devc->buffer,
480                                         len < ACQ_BUFFER_SIZE ? len : ACQ_BUFFER_SIZE);
481                 } else {
482                         waveform_size = probe->type == SR_PROBE_ANALOG ?
483                                         (devc->model->series == RIGOL_VS5000 ?
484                                                 VS5000_ANALOG_LIVE_WAVEFORM_SIZE :
485                                                 DS1000_ANALOG_LIVE_WAVEFORM_SIZE) :
486                                         DIGITAL_WAVEFORM_SIZE;
487                         len = sr_scpi_read(scpi, (char *)devc->buffer,
488                                         waveform_size - devc->num_frame_samples);
489                 }
490                 sr_dbg("Received %d bytes.", len);
491                 if (len == -1)
492                         return TRUE;
493
494                 if (devc->num_frame_samples == 0) {
495                         /* Start of a new frame. */
496                         packet.type = SR_DF_FRAME_BEGIN;
497                         sr_session_send(sdi, &packet);
498                 }
499
500                 if (probe->type == SR_PROBE_ANALOG) {
501                         if (devc->model->protocol == PROTOCOL_IEEE488_2)
502                                 devc->num_block_read += len;
503                         vref = devc->vert_reference[probe->index];
504                         vdiv = devc->vdiv[probe->index] / 25.6;
505                         offset = devc->vert_offset[probe->index];
506                         if (devc->model->protocol == PROTOCOL_IEEE488_2)
507                                 for (i = 0; i < len; i++)
508                                         devc->data[i] = ((int)devc->buffer[i] - vref) * vdiv - offset;
509                         else
510                                 for (i = 0; i < len; i++)
511                                         devc->data[i] = (128 - devc->buffer[i]) * vdiv - offset;
512                         analog.probes = g_slist_append(NULL, probe);
513                         analog.num_samples = len;
514                         analog.data = devc->data;
515                         analog.mq = SR_MQ_VOLTAGE;
516                         analog.unit = SR_UNIT_VOLT;
517                         analog.mqflags = 0;
518                         packet.type = SR_DF_ANALOG;
519                         packet.payload = &analog;
520                         sr_session_send(cb_data, &packet);
521                         g_slist_free(analog.probes);
522
523                         if (devc->model->protocol == PROTOCOL_IEEE488_2) {
524                                 if (devc->num_block_read == devc->num_block_bytes) {
525                                         sr_dbg("Block has been completed");
526                                         /* Discard the terminating linefeed and prepare for
527                                            possible next block */
528                                         sr_scpi_read(scpi, (char *)devc->buffer, 1);
529                                         devc->num_block_bytes = 0;
530                                         if (devc->data_source != DATA_SOURCE_LIVE)
531                                                 rigol_ds_set_wait_event(devc, WAIT_BLOCK);
532                                 } else
533                                         sr_dbg("%d of %d block bytes read", devc->num_block_read, devc->num_block_bytes);
534                         }
535
536                         devc->num_frame_samples += len;
537
538                         if (devc->num_frame_samples < devc->analog_frame_size)
539                                 /* Don't have the whole frame yet. */
540                                 return TRUE;
541
542                         sr_dbg("Frame completed, %d samples", devc->num_frame_samples);
543                 } else {
544                         logic.length = len - 10;
545                         logic.unitsize = 2;
546                         logic.data = devc->buffer + 10;
547                         packet.type = SR_DF_LOGIC;
548                         packet.payload = &logic;
549                         sr_session_send(cb_data, &packet);
550
551                         if (len != DIGITAL_WAVEFORM_SIZE)
552                                 /* Don't have the whole frame yet. */
553                                 return TRUE;
554                 }
555
556                 /* End of the frame. */
557                 packet.type = SR_DF_FRAME_END;
558                 sr_session_send(sdi, &packet);
559                 if (devc->model->protocol == PROTOCOL_LEGACY)
560                         devc->num_frame_samples = 0;
561                 else {
562                         /* Signal end of data download to scope */
563                         if (devc->data_source != DATA_SOURCE_LIVE)
564                                 /*
565                                  * This causes a query error, without it switching
566                                  * to the next channel causes an error. Fun with
567                                  * firmware...
568                                  */
569                                 sr_scpi_send(sdi->conn, ":WAV:END");
570                 }
571
572                 if (devc->enabled_analog_probes
573                                 && devc->channel == devc->enabled_analog_probes->data
574                                 && devc->enabled_analog_probes->next != NULL) {
575                         /* We got the frame for the first analog channel, but
576                          * there's a second analog channel. */
577                         devc->channel = devc->enabled_analog_probes->next->data;
578                         rigol_ds_channel_start(sdi);
579                 } else {
580                         /* Done with both analog channels in this frame. */
581                         if (devc->enabled_digital_probes
582                                         && devc->channel != devc->enabled_digital_probes->data) {
583                                 /* Now we need to get the digital data. */
584                                 devc->channel = devc->enabled_digital_probes->data;
585                                 rigol_ds_channel_start(sdi);
586                         } else if (++devc->num_frames == devc->limit_frames) {
587                                 /* End of last frame. */
588                                 packet.type = SR_DF_END;
589                                 sr_session_send(sdi, &packet);
590                                 sdi->driver->dev_acquisition_stop(sdi, cb_data);
591                         } else {
592                                 /* Get the next frame, starting with the first analog channel. */
593                                 if (devc->enabled_analog_probes)
594                                         devc->channel = devc->enabled_analog_probes->data;
595                                 else
596                                         devc->channel = devc->enabled_digital_probes->data;
597
598                                 if (devc->model->protocol == PROTOCOL_LEGACY)
599                                         rigol_ds_channel_start(sdi);
600                                 else
601                                         rigol_ds_capture_start(sdi);
602                         }
603                 }
604         }
605
606         return TRUE;
607 }
608
609 static int get_cfg(const struct sr_dev_inst *sdi, char *cmd, char *reply, size_t maxlen)
610 {
611         int len;
612         struct dev_context *devc = sdi->priv;
613         struct sr_scpi_dev_inst *scpi = sdi->conn;
614         char *response;
615
616         if (sr_scpi_send(scpi, cmd) != SR_OK)
617                 return SR_ERR;
618
619         if (sr_scpi_receive(scpi, &response) != SR_OK)
620                 return SR_ERR;
621
622         g_strlcpy(reply, response, maxlen);
623         g_free(response);
624         len = strlen(reply);
625
626         if (devc->model->protocol == PROTOCOL_IEEE488_2) {
627                 /* get rid of trailing linefeed */
628                 if (len >= 1 && reply[len-1] == '\n')
629                         reply[len-1] = '\0';
630         }
631
632         sr_spew("Received '%s'.", reply);
633
634         return SR_OK;
635 }
636
637 static int get_cfg_int(const struct sr_dev_inst *sdi, char *cmd, int *i)
638 {
639         char buf[32];
640
641         if (get_cfg(sdi, cmd, buf, sizeof(buf)) != SR_OK)
642                 return SR_ERR;
643
644         if (parse_int(buf, i) != SR_OK)
645                 return SR_ERR;
646
647         return SR_OK;
648 }
649
650 static int get_cfg_float(const struct sr_dev_inst *sdi, char *cmd, float *f)
651 {
652         char buf[32], *e;
653
654         if (get_cfg(sdi, cmd, buf, sizeof(buf)) != SR_OK)
655                 return SR_ERR;
656         *f = strtof(buf, &e);
657         if (e == buf || (fpclassify(*f) & (FP_ZERO | FP_NORMAL)) == 0) {
658                 sr_dbg("failed to parse response to '%s': '%s'", cmd, buf);
659                 return SR_ERR;
660         }
661
662         return SR_OK;
663 }
664
665 static int get_cfg_string(const struct sr_dev_inst *sdi, char *cmd, char **buf)
666 {
667         if (!(*buf = g_try_malloc0(256)))
668                 return SR_ERR_MALLOC;
669
670         if (get_cfg(sdi, cmd, *buf, 256) != SR_OK)
671                 return SR_ERR;
672
673         return SR_OK;
674 }
675
676 SR_PRIV int rigol_ds_get_dev_cfg(const struct sr_dev_inst *sdi)
677 {
678         struct dev_context *devc;
679         char *t_s, *cmd;
680         int i, res;
681
682         devc = sdi->priv;
683
684         /* Analog channel state. */
685         if (get_cfg_string(sdi, ":CHAN1:DISP?", &t_s) != SR_OK)
686                 return SR_ERR;
687         devc->analog_channels[0] = !strcmp(t_s, "ON") || !strcmp(t_s, "1");
688         g_free(t_s);
689         if (get_cfg_string(sdi, ":CHAN2:DISP?", &t_s) != SR_OK)
690                 return SR_ERR;
691         devc->analog_channels[1] = !strcmp(t_s, "ON") || !strcmp(t_s, "1");
692         g_free(t_s);
693         sr_dbg("Current analog channel state CH1 %s CH2 %s",
694                         devc->analog_channels[0] ? "on" : "off",
695                         devc->analog_channels[1] ? "on" : "off");
696
697         /* Digital channel state. */
698         if (devc->model->has_digital) {
699                 sr_dbg("Current digital channel state:");
700                 for (i = 0; i < 16; i++) {
701                         cmd = g_strdup_printf(":DIG%d:TURN?", i);
702                         res = get_cfg_string(sdi, cmd, &t_s);
703                         g_free(cmd);
704                         if (res != SR_OK)
705                                 return SR_ERR;
706                         devc->digital_channels[i] = !strcmp(t_s, "ON") ? TRUE : FALSE;
707                         g_free(t_s);
708                         sr_dbg("D%d: %s", i, devc->digital_channels[i] ? "on" : "off");
709                 }
710         }
711
712         /* Timebase. */
713         if (get_cfg_float(sdi, ":TIM:SCAL?", &devc->timebase) != SR_OK)
714                 return SR_ERR;
715         sr_dbg("Current timebase %g", devc->timebase);
716
717         /* Vertical gain. */
718         if (get_cfg_float(sdi, ":CHAN1:SCAL?", &devc->vdiv[0]) != SR_OK)
719                 return SR_ERR;
720         if (get_cfg_float(sdi, ":CHAN2:SCAL?", &devc->vdiv[1]) != SR_OK)
721                 return SR_ERR;
722         sr_dbg("Current vertical gain CH1 %g CH2 %g", devc->vdiv[0], devc->vdiv[1]);
723
724         if (devc->model->protocol == PROTOCOL_IEEE488_2) {
725                 /* Vertical reference - not certain if this is the place to read it. */
726                 if (sr_scpi_send(sdi->conn, ":WAV:SOUR CHAN1") != SR_OK)
727                         return SR_ERR;
728                 if (get_cfg_int(sdi, ":WAV:YREF?", &devc->vert_reference[0]) != SR_OK)
729                         return SR_ERR;
730                 if (sr_scpi_send(sdi->conn, ":WAV:SOUR CHAN2") != SR_OK)
731                         return SR_ERR;
732                 if (get_cfg_int(sdi, ":WAV:YREF?", &devc->vert_reference[1]) != SR_OK)
733                         return SR_ERR;
734                 sr_dbg("Current vertical reference CH1 %d CH2 %d",
735                                 devc->vert_reference[0], devc->vert_reference[1]);
736         }
737
738         /* Vertical offset. */
739         if (get_cfg_float(sdi, ":CHAN1:OFFS?", &devc->vert_offset[0]) != SR_OK)
740                 return SR_ERR;
741         if (get_cfg_float(sdi, ":CHAN2:OFFS?", &devc->vert_offset[1]) != SR_OK)
742                 return SR_ERR;
743         sr_dbg("Current vertical offset CH1 %g CH2 %g", devc->vert_offset[0],
744                         devc->vert_offset[1]);
745
746         /* Coupling. */
747         if (get_cfg_string(sdi, ":CHAN1:COUP?", &devc->coupling[0]) != SR_OK)
748                 return SR_ERR;
749         if (get_cfg_string(sdi, ":CHAN2:COUP?", &devc->coupling[1]) != SR_OK)
750                 return SR_ERR;
751         sr_dbg("Current coupling CH1 %s CH2 %s", devc->coupling[0],
752                         devc->coupling[1]);
753
754         /* Trigger source. */
755         if (get_cfg_string(sdi, ":TRIG:EDGE:SOUR?", &devc->trigger_source) != SR_OK)
756                 return SR_ERR;
757         sr_dbg("Current trigger source %s", devc->trigger_source);
758
759         /* Horizontal trigger position. */
760         if (get_cfg_float(sdi, ":TIM:OFFS?", &devc->horiz_triggerpos) != SR_OK)
761                 return SR_ERR;
762         sr_dbg("Current horizontal trigger position %g", devc->horiz_triggerpos);
763
764         /* Trigger slope. */
765         if (get_cfg_string(sdi, ":TRIG:EDGE:SLOP?", &devc->trigger_slope) != SR_OK)
766                 return SR_ERR;
767         sr_dbg("Current trigger slope %s", devc->trigger_slope);
768
769         return SR_OK;
770 }