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sr_dev_clear(): Always free sdi->priv (devc).
[libsigrok.git] / src / hardware / scpi-pps / api.c
CommitLineData
ca1a7cb5
BV
1/*
2 * This file is part of the libsigrok project.
3 *
4 * Copyright (C) 2014 Bert Vermeulen <bert@biot.com>
5 *
6 * This program is free software: you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License as published by
8 * the Free Software Foundation, either version 3 of the License, or
9 * (at your option) any later version.
10 *
11 * This program is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 * GNU General Public License for more details.
15 *
16 * You should have received a copy of the GNU General Public License
17 * along with this program. If not, see <http://www.gnu.org/licenses/>.
18 */
19
6ec6c43b 20#include <config.h>
9e45cd41 21#include <string.h>
ba464a12 22#include <strings.h>
91ef511d 23#include "scpi.h"
ca1a7cb5
BV
24#include "protocol.h"
25
dd5c48a6 26static struct sr_dev_driver scpi_pps_driver_info;
c2af709b 27static struct sr_dev_driver hp_ib_pps_driver_info;
9e45cd41 28
584560f1 29static const uint32_t scanopts[] = {
9e45cd41
BV
30 SR_CONF_CONN,
31 SR_CONF_SERIALCOMM,
32};
ca1a7cb5 33
9d9cf1c4 34static const uint32_t drvopts[] = {
a258204e 35 SR_CONF_POWER_SUPPLY,
a258204e
BV
36};
37
329733d9 38static const struct pps_channel_instance pci[] = {
01b0257a
BV
39 { SR_MQ_VOLTAGE, SCPI_CMD_GET_MEAS_VOLTAGE, "V" },
40 { SR_MQ_CURRENT, SCPI_CMD_GET_MEAS_CURRENT, "I" },
41 { SR_MQ_POWER, SCPI_CMD_GET_MEAS_POWER, "P" },
4264f1c0 42 { SR_MQ_FREQUENCY, SCPI_CMD_GET_MEAS_FREQUENCY, "F" },
01b0257a
BV
43};
44
c2af709b 45static struct sr_dev_inst *probe_device(struct sr_scpi_dev_inst *scpi,
d9251a2c
UH
46 int (*get_hw_id)(struct sr_scpi_dev_inst *scpi,
47 struct sr_scpi_hw_info **scpi_response))
ca1a7cb5 48{
9e45cd41
BV
49 struct dev_context *devc;
50 struct sr_dev_inst *sdi;
51 struct sr_scpi_hw_info *hw_info;
52 struct sr_channel_group *cg;
53 struct sr_channel *ch;
54 const struct scpi_pps *device;
01b0257a 55 struct pps_channel *pch;
4a471029
BV
56 struct channel_spec *channels;
57 struct channel_group_spec *channel_groups, *cgs;
9e45cd41 58 struct pps_channel_group *pcg;
58b77c41
BV
59 GRegex *model_re;
60 GMatchInfo *model_mi;
01b0257a 61 GSList *l;
9e45cd41 62 uint64_t mask;
4a471029
BV
63 unsigned int num_channels, num_channel_groups, ch_num, ch_idx, i, j;
64 int ret;
22c18b03 65 const char *vendor;
01b0257a 66 char ch_name[16];
9e45cd41 67
c2af709b 68 if (get_hw_id(scpi, &hw_info) != SR_OK) {
9e45cd41
BV
69 sr_info("Couldn't get IDN response.");
70 return NULL;
71 }
72
73 device = NULL;
74 for (i = 0; i < num_pps_profiles; i++) {
91ef511d 75 vendor = sr_vendor_alias(hw_info->manufacturer);
34577da6 76 if (g_ascii_strcasecmp(vendor, pps_profiles[i].vendor))
22c18b03 77 continue;
58b77c41
BV
78 model_re = g_regex_new(pps_profiles[i].model, 0, 0, NULL);
79 if (g_regex_match(model_re, hw_info->model, 0, &model_mi))
9e45cd41 80 device = &pps_profiles[i];
58b77c41
BV
81 g_match_info_unref(model_mi);
82 g_regex_unref(model_re);
83 if (device)
9e45cd41 84 break;
9e45cd41
BV
85 }
86 if (!device) {
87 sr_scpi_hw_info_free(hw_info);
88 return NULL;
89 }
90
aac29cc1 91 sdi = g_malloc0(sizeof(struct sr_dev_inst));
0af636be
UH
92 sdi->vendor = g_strdup(vendor);
93 sdi->model = g_strdup(hw_info->model);
94 sdi->version = g_strdup(hw_info->firmware_version);
9e45cd41 95 sdi->conn = scpi;
4f840ce9 96 sdi->driver = &scpi_pps_driver_info;
9e45cd41 97 sdi->inst_type = SR_INST_SCPI;
d08667c5
SA
98 sdi->serial_num = g_strdup(hw_info->serial_number);
99
9e45cd41
BV
100 devc = g_malloc0(sizeof(struct dev_context));
101 devc->device = device;
102 sdi->priv = devc;
103
4a471029
BV
104 if (device->num_channels) {
105 /* Static channels and groups. */
329733d9 106 channels = (struct channel_spec *)device->channels;
4a471029 107 num_channels = device->num_channels;
329733d9 108 channel_groups = (struct channel_group_spec *)device->channel_groups;
4a471029
BV
109 num_channel_groups = device->num_channel_groups;
110 } else {
111 /* Channels and groups need to be probed. */
112 ret = device->probe_channels(sdi, hw_info, &channels, &num_channels,
113 &channel_groups, &num_channel_groups);
114 if (ret != SR_OK) {
115 sr_err("Failed to probe for channels.");
116 return NULL;
117 }
118 /*
119 * Since these were dynamically allocated, we'll need to free them
120 * later.
121 */
122 devc->channels = channels;
123 devc->channel_groups = channel_groups;
124 }
125
01b0257a 126 ch_idx = 0;
4a471029 127 for (ch_num = 0; ch_num < num_channels; ch_num++) {
01b0257a 128 /* Create one channel per measurable output unit. */
01b0257a 129 for (i = 0; i < ARRAY_SIZE(pci); i++) {
91ef511d 130 if (!scpi_cmd_get(devc->device->commands, pci[i].command))
01b0257a
BV
131 continue;
132 g_snprintf(ch_name, 16, "%s%s", pci[i].prefix,
4a471029 133 channels[ch_num].name);
5e23fcab
ML
134 ch = sr_channel_new(sdi, ch_idx++, SR_CHANNEL_ANALOG, TRUE,
135 ch_name);
01b0257a
BV
136 pch = g_malloc0(sizeof(struct pps_channel));
137 pch->hw_output_idx = ch_num;
4a471029 138 pch->hwname = channels[ch_num].name;
01b0257a
BV
139 pch->mq = pci[i].mq;
140 ch->priv = pch;
01b0257a 141 }
9e45cd41 142 }
ca1a7cb5 143
4a471029
BV
144 for (i = 0; i < num_channel_groups; i++) {
145 cgs = &channel_groups[i];
9e45cd41
BV
146 cg = g_malloc0(sizeof(struct sr_channel_group));
147 cg->name = g_strdup(cgs->name);
148 for (j = 0, mask = 1; j < 64; j++, mask <<= 1) {
149 if (cgs->channel_index_mask & mask) {
01b0257a
BV
150 for (l = sdi->channels; l; l = l->next) {
151 ch = l->data;
152 pch = ch->priv;
153 if (pch->hw_output_idx == j)
154 cg->channels = g_slist_append(cg->channels, ch);
155 }
9e45cd41
BV
156 }
157 }
158 pcg = g_malloc0(sizeof(struct pps_channel_group));
159 pcg->features = cgs->features;
160 cg->priv = pcg;
161 sdi->channel_groups = g_slist_append(sdi->channel_groups, cg);
162 }
ca1a7cb5 163
4a471029
BV
164 sr_scpi_hw_info_free(hw_info);
165 hw_info = NULL;
166
91ef511d 167 scpi_cmd(sdi, devc->device->commands, SCPI_CMD_LOCAL);
ca1a7cb5 168
9e45cd41
BV
169 return sdi;
170}
ca1a7cb5 171
c2af709b 172static gchar *hpib_get_revision(struct sr_scpi_dev_inst *scpi)
9e45cd41 173{
c2af709b
AG
174 int ret;
175 gboolean matches;
176 char *response;
177 GRegex *version_regex;
178
179 ret = sr_scpi_get_string(scpi, "ROM?", &response);
180 if (ret != SR_OK && !response)
181 return NULL;
182
183 /* Example version string: "B01 B01" */
184 version_regex = g_regex_new("[A-Z][0-9]{2} [A-Z][0-9]{2}", 0, 0, NULL);
185 matches = g_regex_match(version_regex, response, 0, NULL);
186 g_regex_unref(version_regex);
187
188 if (!matches) {
189 /* Not a valid version string. Ignore it. */
190 g_free(response);
191 response = NULL;
192 } else {
193 /* Replace space with dot. */
194 response[3] = '.';
195 }
196
197 return response;
198}
199
200/*
201 * This function assumes the response is in the form "HP<model_number>"
202 *
203 * HP made many GPIB (then called HP-IB) instruments before the SCPI command
204 * set was introduced into the standard. We haven't seen any non-HP instruments
205 * which respond to the "ID?" query, so assume all are HP for now.
206 */
207static int hpib_get_hw_id(struct sr_scpi_dev_inst *scpi,
208 struct sr_scpi_hw_info **scpi_response)
209{
210 int ret;
211 char *response;
212 struct sr_scpi_hw_info *hw_info;
213
214 ret = sr_scpi_get_string(scpi, "ID?", &response);
215 if ((ret != SR_OK) || !response)
216 return SR_ERR;
217
218 hw_info = g_malloc0(sizeof(struct sr_scpi_hw_info));
219
220 *scpi_response = hw_info;
221 hw_info->model = response;
222 hw_info->firmware_version = hpib_get_revision(scpi);
223 hw_info->manufacturer = g_strdup("HP");
224
225 return SR_OK;
226}
227
228static struct sr_dev_inst *probe_scpi_pps_device(struct sr_scpi_dev_inst *scpi)
229{
230 return probe_device(scpi, sr_scpi_get_hw_id);
231}
232
233static struct sr_dev_inst *probe_hpib_pps_device(struct sr_scpi_dev_inst *scpi)
234{
235 return probe_device(scpi, hpib_get_hw_id);
236}
237
238static GSList *scan_scpi_pps(struct sr_dev_driver *di, GSList *options)
239{
240 return sr_scpi_scan(di->context, options, probe_scpi_pps_device);
241}
242
243static GSList *scan_hpib_pps(struct sr_dev_driver *di, GSList *options)
244{
245 return sr_scpi_scan(di->context, options, probe_hpib_pps_device);
ca1a7cb5
BV
246}
247
ca1a7cb5
BV
248static int dev_open(struct sr_dev_inst *sdi)
249{
ee2860ee 250 struct dev_context *devc;
9e45cd41 251 struct sr_scpi_dev_inst *scpi;
ee2860ee 252 GVariant *beeper;
9e45cd41 253
9e45cd41
BV
254 scpi = sdi->conn;
255 if (sr_scpi_open(scpi) < 0)
256 return SR_ERR;
ca1a7cb5 257
91ef511d
BV
258 devc = sdi->priv;
259 scpi_cmd(sdi, devc->device->commands, SCPI_CMD_REMOTE);
ee2860ee 260 devc->beeper_was_set = FALSE;
91ef511d
BV
261 if (scpi_cmd_resp(sdi, devc->device->commands, &beeper,
262 G_VARIANT_TYPE_BOOLEAN, SCPI_CMD_BEEPER) == SR_OK) {
ee2860ee
BV
263 if (g_variant_get_boolean(beeper)) {
264 devc->beeper_was_set = TRUE;
91ef511d 265 scpi_cmd(sdi, devc->device->commands, SCPI_CMD_BEEPER_DISABLE);
ee2860ee
BV
266 }
267 g_variant_unref(beeper);
268 }
60475cd7 269
ca1a7cb5
BV
270 return SR_OK;
271}
272
273static int dev_close(struct sr_dev_inst *sdi)
274{
9e45cd41 275 struct sr_scpi_dev_inst *scpi;
ee2860ee 276 struct dev_context *devc;
ca1a7cb5 277
ee2860ee 278 devc = sdi->priv;
9e45cd41 279 scpi = sdi->conn;
ca1a7cb5 280
f1ba6b4b
UH
281 if (!scpi)
282 return SR_ERR_BUG;
283
284 if (devc->beeper_was_set)
285 scpi_cmd(sdi, devc->device->commands, SCPI_CMD_BEEPER_ENABLE);
286 scpi_cmd(sdi, devc->device->commands, SCPI_CMD_LOCAL);
287
288 return sr_scpi_close(scpi);
ca1a7cb5
BV
289}
290
4a471029
BV
291static void clear_helper(void *priv)
292{
293 struct dev_context *devc;
294
295 devc = priv;
296 g_free(devc->channels);
297 g_free(devc->channel_groups);
4a471029
BV
298}
299
1e726f56 300static int dev_clear(const struct sr_dev_driver *di)
ca1a7cb5 301{
6e43c3d5 302 return std_dev_clear_with_callback(di, clear_helper);
ca1a7cb5
BV
303}
304
584560f1 305static int config_get(uint32_t key, GVariant **data, const struct sr_dev_inst *sdi,
ca1a7cb5
BV
306 const struct sr_channel_group *cg)
307{
9e45cd41 308 struct dev_context *devc;
478c8d92
BV
309 const GVariantType *gvtype;
310 unsigned int i;
311 int cmd, ret;
069d9f25 312 const char *s;
ca1a7cb5 313
9e45cd41
BV
314 if (!sdi)
315 return SR_ERR_ARG;
316
317 devc = sdi->priv;
ca1a7cb5 318
478c8d92 319 if (cg) {
9e45cd41
BV
320 /*
321 * These options only apply to channel groups with a single
322 * channel -- they're per-channel settings for the device.
323 */
478c8d92
BV
324
325 /*
326 * Config keys are handled below depending on whether a channel
327 * group was provided by the frontend. However some of these
328 * take a CG on one PPS but not on others. Check the device's
329 * profile for that here, and NULL out the channel group as needed.
330 */
331 for (i = 0; i < devc->device->num_devopts; i++) {
332 if (devc->device->devopts[i] == key) {
333 cg = NULL;
334 break;
335 }
336 }
478c8d92 337 }
9e45cd41 338
478c8d92
BV
339 gvtype = NULL;
340 cmd = -1;
341 switch (key) {
7a0b98b5 342 case SR_CONF_ENABLED:
478c8d92
BV
343 gvtype = G_VARIANT_TYPE_BOOLEAN;
344 cmd = SCPI_CMD_GET_OUTPUT_ENABLED;
345 break;
7a0b98b5 346 case SR_CONF_VOLTAGE:
478c8d92
BV
347 gvtype = G_VARIANT_TYPE_DOUBLE;
348 cmd = SCPI_CMD_GET_MEAS_VOLTAGE;
349 break;
7a0b98b5 350 case SR_CONF_VOLTAGE_TARGET:
478c8d92 351 gvtype = G_VARIANT_TYPE_DOUBLE;
ca95e90f 352 cmd = SCPI_CMD_GET_VOLTAGE_TARGET;
478c8d92 353 break;
4264f1c0
AG
354 case SR_CONF_OUTPUT_FREQUENCY:
355 gvtype = G_VARIANT_TYPE_DOUBLE;
356 cmd = SCPI_CMD_GET_MEAS_FREQUENCY;
357 break;
358 case SR_CONF_OUTPUT_FREQUENCY_TARGET:
359 gvtype = G_VARIANT_TYPE_DOUBLE;
360 cmd = SCPI_CMD_GET_FREQUENCY_TARGET;
361 break;
7a0b98b5 362 case SR_CONF_CURRENT:
478c8d92
BV
363 gvtype = G_VARIANT_TYPE_DOUBLE;
364 cmd = SCPI_CMD_GET_MEAS_CURRENT;
365 break;
7a0b98b5 366 case SR_CONF_CURRENT_LIMIT:
478c8d92 367 gvtype = G_VARIANT_TYPE_DOUBLE;
ca95e90f 368 cmd = SCPI_CMD_GET_CURRENT_LIMIT;
478c8d92
BV
369 break;
370 case SR_CONF_OVER_VOLTAGE_PROTECTION_ENABLED:
371 gvtype = G_VARIANT_TYPE_BOOLEAN;
372 cmd = SCPI_CMD_GET_OVER_VOLTAGE_PROTECTION_ENABLED;
373 break;
374 case SR_CONF_OVER_VOLTAGE_PROTECTION_ACTIVE:
375 gvtype = G_VARIANT_TYPE_BOOLEAN;
376 cmd = SCPI_CMD_GET_OVER_VOLTAGE_PROTECTION_ACTIVE;
377 break;
378 case SR_CONF_OVER_VOLTAGE_PROTECTION_THRESHOLD:
379 gvtype = G_VARIANT_TYPE_DOUBLE;
380 cmd = SCPI_CMD_GET_OVER_VOLTAGE_PROTECTION_THRESHOLD;
381 break;
382 case SR_CONF_OVER_CURRENT_PROTECTION_ENABLED:
383 gvtype = G_VARIANT_TYPE_BOOLEAN;
384 cmd = SCPI_CMD_GET_OVER_CURRENT_PROTECTION_ENABLED;
385 break;
386 case SR_CONF_OVER_CURRENT_PROTECTION_ACTIVE:
387 gvtype = G_VARIANT_TYPE_BOOLEAN;
388 cmd = SCPI_CMD_GET_OVER_CURRENT_PROTECTION_ACTIVE;
389 break;
390 case SR_CONF_OVER_CURRENT_PROTECTION_THRESHOLD:
391 gvtype = G_VARIANT_TYPE_DOUBLE;
392 cmd = SCPI_CMD_GET_OVER_CURRENT_PROTECTION_THRESHOLD;
393 break;
394 case SR_CONF_OVER_TEMPERATURE_PROTECTION:
395 gvtype = G_VARIANT_TYPE_BOOLEAN;
396 cmd = SCPI_CMD_GET_OVER_TEMPERATURE_PROTECTION;
397 break;
7a0b98b5 398 case SR_CONF_REGULATION:
60475cd7
BV
399 gvtype = G_VARIANT_TYPE_STRING;
400 cmd = SCPI_CMD_GET_OUTPUT_REGULATION;
478c8d92 401 }
91ef511d
BV
402 if (!gvtype)
403 return SR_ERR_NA;
404
405 if (cg)
406 select_channel(sdi, cg->channels->data);
407 ret = scpi_cmd_resp(sdi, devc->device->commands, data, gvtype, cmd);
408
409 if (cmd == SCPI_CMD_GET_OUTPUT_REGULATION) {
410 /*
411 * The Rigol DP800 series return CV/CC/UR, Philips PM2800
412 * return VOLT/CURR. We always return a GVariant string in
413 * the Rigol notation.
414 */
d66c93cc 415 s = g_variant_get_string(*data, NULL);
069d9f25
AJ
416 if (!strcmp(s, "VOLT")) {
417 g_variant_unref(*data);
91ef511d 418 *data = g_variant_new_string("CV");
069d9f25
AJ
419 } else if (!strcmp(s, "CURR")) {
420 g_variant_unref(*data);
91ef511d 421 *data = g_variant_new_string("CC");
069d9f25
AJ
422 }
423
424 s = g_variant_get_string(*data, NULL);
425 if (strcmp(s, "CV") && strcmp(s, "CC") && strcmp(s, "UR")) {
91ef511d
BV
426 sr_dbg("Unknown response to SCPI_CMD_GET_OUTPUT_REGULATION: %s", s);
427 ret = SR_ERR_DATA;
428 }
91ef511d 429 }
ca1a7cb5
BV
430
431 return ret;
432}
433
584560f1 434static int config_set(uint32_t key, GVariant *data, const struct sr_dev_inst *sdi,
ca1a7cb5
BV
435 const struct sr_channel_group *cg)
436{
91ef511d 437 struct dev_context *devc;
9e45cd41 438 double d;
ca1a7cb5 439 int ret;
ca1a7cb5 440
fdedbfcd
BV
441 if (!sdi)
442 return SR_ERR_ARG;
443
60475cd7 444 if (cg)
9e45cd41 445 /* Channel group specified. */
60475cd7
BV
446 select_channel(sdi, cg->channels->data);
447
91ef511d 448 devc = sdi->priv;
e57057ae 449
60475cd7 450 switch (key) {
7a0b98b5 451 case SR_CONF_ENABLED:
60475cd7 452 if (g_variant_get_boolean(data))
91ef511d
BV
453 ret = scpi_cmd(sdi, devc->device->commands,
454 SCPI_CMD_SET_OUTPUT_ENABLE);
60475cd7 455 else
91ef511d
BV
456 ret = scpi_cmd(sdi, devc->device->commands,
457 SCPI_CMD_SET_OUTPUT_DISABLE);
60475cd7 458 break;
7a0b98b5 459 case SR_CONF_VOLTAGE_TARGET:
60475cd7 460 d = g_variant_get_double(data);
91ef511d
BV
461 ret = scpi_cmd(sdi, devc->device->commands,
462 SCPI_CMD_SET_VOLTAGE_TARGET, d);
60475cd7 463 break;
4264f1c0
AG
464 case SR_CONF_OUTPUT_FREQUENCY_TARGET:
465 d = g_variant_get_double(data);
91ef511d
BV
466 ret = scpi_cmd(sdi, devc->device->commands,
467 SCPI_CMD_SET_FREQUENCY_TARGET, d);
4264f1c0 468 break;
7a0b98b5 469 case SR_CONF_CURRENT_LIMIT:
60475cd7 470 d = g_variant_get_double(data);
91ef511d
BV
471 ret = scpi_cmd(sdi, devc->device->commands,
472 SCPI_CMD_SET_CURRENT_LIMIT, d);
60475cd7
BV
473 break;
474 case SR_CONF_OVER_VOLTAGE_PROTECTION_ENABLED:
475 if (g_variant_get_boolean(data))
91ef511d
BV
476 ret = scpi_cmd(sdi, devc->device->commands,
477 SCPI_CMD_SET_OVER_VOLTAGE_PROTECTION_ENABLE);
60475cd7 478 else
91ef511d
BV
479 ret = scpi_cmd(sdi, devc->device->commands,
480 SCPI_CMD_SET_OVER_VOLTAGE_PROTECTION_DISABLE);
60475cd7
BV
481 break;
482 case SR_CONF_OVER_VOLTAGE_PROTECTION_THRESHOLD:
483 d = g_variant_get_double(data);
91ef511d
BV
484 ret = scpi_cmd(sdi, devc->device->commands,
485 SCPI_CMD_SET_OVER_VOLTAGE_PROTECTION_THRESHOLD, d);
60475cd7
BV
486 break;
487 case SR_CONF_OVER_CURRENT_PROTECTION_ENABLED:
488 if (g_variant_get_boolean(data))
91ef511d
BV
489 ret = scpi_cmd(sdi, devc->device->commands,
490 SCPI_CMD_SET_OVER_CURRENT_PROTECTION_ENABLE);
60475cd7 491 else
91ef511d
BV
492 ret = scpi_cmd(sdi, devc->device->commands,
493 SCPI_CMD_SET_OVER_CURRENT_PROTECTION_DISABLE);
60475cd7
BV
494 break;
495 case SR_CONF_OVER_CURRENT_PROTECTION_THRESHOLD:
496 d = g_variant_get_double(data);
91ef511d
BV
497 ret = scpi_cmd(sdi, devc->device->commands,
498 SCPI_CMD_SET_OVER_CURRENT_PROTECTION_THRESHOLD, d);
60475cd7
BV
499 break;
500 case SR_CONF_OVER_TEMPERATURE_PROTECTION:
501 if (g_variant_get_boolean(data))
91ef511d
BV
502 ret = scpi_cmd(sdi, devc->device->commands,
503 SCPI_CMD_SET_OVER_TEMPERATURE_PROTECTION_ENABLE);
60475cd7 504 else
91ef511d
BV
505 ret = scpi_cmd(sdi, devc->device->commands,
506 SCPI_CMD_SET_OVER_TEMPERATURE_PROTECTION_DISABLE);
60475cd7
BV
507 break;
508 default:
509 ret = SR_ERR_NA;
ca1a7cb5
BV
510 }
511
512 return ret;
513}
514
584560f1 515static int config_list(uint32_t key, GVariant **data, const struct sr_dev_inst *sdi,
ca1a7cb5
BV
516 const struct sr_channel_group *cg)
517{
9e45cd41
BV
518 struct dev_context *devc;
519 struct sr_channel *ch;
329733d9 520 const struct channel_spec *ch_spec;
9e45cd41
BV
521 GVariant *gvar;
522 GVariantBuilder gvb;
523 int ret, i;
524 const char *s[16];
525
526 /* Always available, even without sdi. */
527 if (key == SR_CONF_SCAN_OPTIONS) {
584560f1
BV
528 *data = g_variant_new_fixed_array(G_VARIANT_TYPE_UINT32,
529 scanopts, ARRAY_SIZE(scanopts), sizeof(uint32_t));
9e45cd41 530 return SR_OK;
a258204e
BV
531 } else if (key == SR_CONF_DEVICE_OPTIONS && !sdi) {
532 *data = g_variant_new_fixed_array(G_VARIANT_TYPE_UINT32,
9d9cf1c4 533 drvopts, ARRAY_SIZE(drvopts), sizeof(uint32_t));
a258204e 534 return SR_OK;
9e45cd41 535 }
ca1a7cb5 536
9e45cd41
BV
537 if (!sdi)
538 return SR_ERR_ARG;
539 devc = sdi->priv;
ca1a7cb5
BV
540
541 ret = SR_OK;
9e45cd41
BV
542 if (!cg) {
543 /* No channel group: global options. */
544 switch (key) {
545 case SR_CONF_DEVICE_OPTIONS:
584560f1 546 *data = g_variant_new_fixed_array(G_VARIANT_TYPE_UINT32,
9e45cd41 547 devc->device->devopts, devc->device->num_devopts,
584560f1 548 sizeof(uint32_t));
9e45cd41 549 break;
7a0b98b5 550 case SR_CONF_CHANNEL_CONFIG:
478c8d92 551 /* Not used. */
9e45cd41
BV
552 i = 0;
553 if (devc->device->features & PPS_INDEPENDENT)
554 s[i++] = "Independent";
555 if (devc->device->features & PPS_SERIES)
556 s[i++] = "Series";
557 if (devc->device->features & PPS_PARALLEL)
558 s[i++] = "Parallel";
559 if (i == 0) {
560 /*
561 * Shouldn't happen: independent-only devices
562 * shouldn't advertise this option at all.
563 */
564 return SR_ERR_NA;
565 }
566 *data = g_variant_new_strv(s, i);
567 break;
568 default:
569 return SR_ERR_NA;
570 }
571 } else {
572 /* Channel group specified. */
9e45cd41
BV
573 /*
574 * Per-channel-group options depending on a channel are actually
575 * done with the first channel. Channel groups in PPS can have
576 * more than one channel, but they will typically be of equal
01b0257a 577 * specification for use in series or parallel mode.
9e45cd41 578 */
9e45cd41
BV
579 ch = cg->channels->data;
580
581 switch (key) {
582 case SR_CONF_DEVICE_OPTIONS:
584560f1 583 *data = g_variant_new_fixed_array(G_VARIANT_TYPE_UINT32,
9e45cd41 584 devc->device->devopts_cg, devc->device->num_devopts_cg,
584560f1 585 sizeof(uint32_t));
9e45cd41 586 break;
7a0b98b5 587 case SR_CONF_VOLTAGE_TARGET:
9e45cd41
BV
588 ch_spec = &(devc->device->channels[ch->index]);
589 g_variant_builder_init(&gvb, G_VARIANT_TYPE_ARRAY);
590 /* Min, max, write resolution. */
591 for (i = 0; i < 3; i++) {
592 gvar = g_variant_new_double(ch_spec->voltage[i]);
593 g_variant_builder_add_value(&gvb, gvar);
594 }
595 *data = g_variant_builder_end(&gvb);
596 break;
4264f1c0
AG
597 case SR_CONF_OUTPUT_FREQUENCY_TARGET:
598 ch_spec = &(devc->device->channels[ch->index]);
599 g_variant_builder_init(&gvb, G_VARIANT_TYPE_ARRAY);
600 /* Min, max, write resolution. */
601 for (i = 0; i < 3; i++) {
602 gvar = g_variant_new_double(ch_spec->frequency[i]);
603 g_variant_builder_add_value(&gvb, gvar);
604 }
605 *data = g_variant_builder_end(&gvb);
606 break;
7a0b98b5 607 case SR_CONF_CURRENT_LIMIT:
9e45cd41
BV
608 g_variant_builder_init(&gvb, G_VARIANT_TYPE_ARRAY);
609 /* Min, max, step. */
610 for (i = 0; i < 3; i++) {
611 ch_spec = &(devc->device->channels[ch->index]);
612 gvar = g_variant_new_double(ch_spec->current[i]);
613 g_variant_builder_add_value(&gvb, gvar);
614 }
615 *data = g_variant_builder_end(&gvb);
616 break;
617 default:
618 return SR_ERR_NA;
619 }
ca1a7cb5
BV
620 }
621
622 return ret;
623}
624
695dc859 625static int dev_acquisition_start(const struct sr_dev_inst *sdi)
ca1a7cb5 626{
9e45cd41
BV
627 struct dev_context *devc;
628 struct sr_scpi_dev_inst *scpi;
629 struct sr_channel *ch;
01b0257a
BV
630 struct pps_channel *pch;
631 int cmd, ret;
ca1a7cb5 632
9e45cd41
BV
633 devc = sdi->priv;
634 scpi = sdi->conn;
9e45cd41 635
01b0257a 636 if ((ret = sr_scpi_source_add(sdi->session, scpi, G_IO_IN, 10,
9e45cd41
BV
637 scpi_pps_receive_data, (void *)sdi)) != SR_OK)
638 return ret;
bee2b016 639 std_session_send_df_header(sdi);
9e45cd41 640
01b0257a 641 /* Prime the pipe with the first channel's fetch. */
9c24d16a 642 ch = sr_next_enabled_channel(sdi, NULL);
01b0257a 643 pch = ch->priv;
c1603f45 644 if ((ret = select_channel(sdi, ch)) < 0)
984e4b0d 645 return ret;
01b0257a
BV
646 if (pch->mq == SR_MQ_VOLTAGE)
647 cmd = SCPI_CMD_GET_MEAS_VOLTAGE;
4264f1c0
AG
648 else if (pch->mq == SR_MQ_FREQUENCY)
649 cmd = SCPI_CMD_GET_MEAS_FREQUENCY;
01b0257a
BV
650 else if (pch->mq == SR_MQ_CURRENT)
651 cmd = SCPI_CMD_GET_MEAS_CURRENT;
652 else if (pch->mq == SR_MQ_POWER)
653 cmd = SCPI_CMD_GET_MEAS_POWER;
654 else
655 return SR_ERR;
91ef511d 656 scpi_cmd(sdi, devc->device->commands, cmd, pch->hwname);
ca1a7cb5
BV
657
658 return SR_OK;
659}
660
695dc859 661static int dev_acquisition_stop(struct sr_dev_inst *sdi)
ca1a7cb5 662{
9e45cd41
BV
663 struct sr_scpi_dev_inst *scpi;
664 float f;
665
9e45cd41
BV
666 scpi = sdi->conn;
667
668 /*
669 * A requested value is certainly on the way. Retrieve it now,
670 * to avoid leaving the device in a state where it's not expecting
671 * commands.
672 */
673 sr_scpi_get_float(scpi, NULL, &f);
674 sr_scpi_source_remove(sdi->session, scpi);
675
bee2b016 676 std_session_send_df_end(sdi);
bf48cceb 677
ca1a7cb5
BV
678 return SR_OK;
679}
680
dd5c48a6 681static struct sr_dev_driver scpi_pps_driver_info = {
ca1a7cb5
BV
682 .name = "scpi-pps",
683 .longname = "SCPI PPS",
684 .api_version = 1,
c2fdcc25 685 .init = std_init,
700d6b64 686 .cleanup = std_cleanup,
c2af709b
AG
687 .scan = scan_scpi_pps,
688 .dev_list = std_dev_list,
689 .dev_clear = dev_clear,
690 .config_get = config_get,
691 .config_set = config_set,
692 .config_list = config_list,
693 .dev_open = dev_open,
694 .dev_close = dev_close,
695 .dev_acquisition_start = dev_acquisition_start,
696 .dev_acquisition_stop = dev_acquisition_stop,
697 .context = NULL,
698};
699
700static struct sr_dev_driver hp_ib_pps_driver_info = {
701 .name = "hpib-pps",
702 .longname = "HP-IB PPS",
703 .api_version = 1,
704 .init = std_init,
705 .cleanup = std_cleanup,
706 .scan = scan_hpib_pps,
c01bf34c 707 .dev_list = std_dev_list,
ca1a7cb5
BV
708 .dev_clear = dev_clear,
709 .config_get = config_get,
710 .config_set = config_set,
711 .config_list = config_list,
712 .dev_open = dev_open,
713 .dev_close = dev_close,
714 .dev_acquisition_start = dev_acquisition_start,
715 .dev_acquisition_stop = dev_acquisition_stop,
41812aca 716 .context = NULL,
ca1a7cb5 717};
dd5c48a6 718SR_REGISTER_DEV_DRIVER(scpi_pps_driver_info);
c2af709b 719SR_REGISTER_DEV_DRIVER(hp_ib_pps_driver_info);