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serial-dmm: more DMM parser callbacks (open, var length, config, start)
[libsigrok.git] / src / hardware / serial-dmm / api.c
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1/*
2 * This file is part of the libsigrok project.
3 *
4 * Copyright (C) 2012 Bert Vermeulen <bert@biot.com>
5 * Copyright (C) 2012 Alexandru Gagniuc <mr.nuke.me@gmail.com>
6 * Copyright (C) 2012 Uwe Hermann <uwe@hermann-uwe.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 <config.h>
23#include <sys/types.h>
24#include <sys/stat.h>
25#include <fcntl.h>
26#include <string.h>
27#include <glib.h>
28#include <libsigrok/libsigrok.h>
29#include "libsigrok-internal.h"
30#include "protocol.h"
31
32static const uint32_t scanopts[] = {
33 SR_CONF_CONN,
34 SR_CONF_SERIALCOMM,
35};
36
37static const uint32_t drvopts[] = {
38 SR_CONF_MULTIMETER,
39};
40
41static const uint32_t devopts[] = {
42 SR_CONF_CONTINUOUS,
43 SR_CONF_LIMIT_SAMPLES | SR_CONF_GET | SR_CONF_SET,
44 SR_CONF_LIMIT_MSEC | SR_CONF_GET | SR_CONF_SET,
45};
46
47static GSList *scan(struct sr_dev_driver *di, GSList *options)
48{
49 struct dmm_info *dmm;
50 struct sr_config *src;
51 GSList *l, *devices;
52 const char *conn, *serialcomm;
53 struct sr_dev_inst *sdi;
54 struct dev_context *devc;
55 struct sr_serial_dev_inst *serial;
56 int ret;
57 size_t dropped, len, packet_len;
58 uint8_t buf[128];
59 size_t ch_idx;
60 char ch_name[12];
61
62 dmm = (struct dmm_info *)di;
63
64 conn = dmm->conn;
65 serialcomm = dmm->serialcomm;
66 for (l = options; l; l = l->next) {
67 src = l->data;
68 switch (src->key) {
69 case SR_CONF_CONN:
70 conn = g_variant_get_string(src->data, NULL);
71 break;
72 case SR_CONF_SERIALCOMM:
73 serialcomm = g_variant_get_string(src->data, NULL);
74 break;
75 }
76 }
77 if (!conn)
78 return NULL;
79
80 serial = sr_serial_dev_inst_new(conn, serialcomm);
81
82 if (serial_open(serial, SERIAL_RDWR) != SR_OK)
83 return NULL;
84 sr_info("Probing serial port %s.", conn);
85
86 if (dmm->after_open) {
87 ret = dmm->after_open(serial);
88 if (ret != SR_OK) {
89 sr_err("Activity after port open failed: %d.", ret);
90 return NULL;
91 }
92 }
93
94 devices = NULL;
95
96 /* Request a packet if the DMM requires this. */
97 if (dmm->packet_request) {
98 if ((ret = dmm->packet_request(serial)) < 0) {
99 sr_err("Failed to request packet: %d.", ret);
100 return NULL;
101 }
102 }
103
104 /*
105 * There's no way to get an ID from the multimeter. It just sends data
106 * periodically (or upon request), so the best we can do is check if
107 * the packets match the expected format.
108 *
109 * If we dropped more than two packets worth of data, something is
110 * wrong. We shouldn't quit however, since the dropped bytes might be
111 * just zeroes at the beginning of the stream. Those can occur as a
112 * combination of the nonstandard cable that ships with some devices
113 * and the serial port or USB to serial adapter.
114 */
115 len = sizeof(buf);
116 ret = serial_stream_detect(serial, buf, &len, dmm->packet_size,
117 dmm->packet_valid, dmm->packet_valid_len, &packet_len, 3000);
118 if (ret != SR_OK)
119 goto scan_cleanup;
120 dropped = len - dmm->packet_size;
121 if (dropped > 2 * packet_len)
122 sr_warn("Packet search dropped a lot of data.");
123 sr_info("Found device on port %s.", conn);
124
125 /*
126 * Setup optional additional callbacks when sub device drivers
127 * happen to provide them. (This is a compromise to do it here,
128 * and not extend the DMM_CONN() et al set of macros.)
129 */
130 if (dmm->dmm_state_init)
131 dmm->dmm_state = dmm->dmm_state_init();
132
133 /* Setup the device instance. */
134 sdi = g_malloc0(sizeof(*sdi));
135 sdi->status = SR_ST_INACTIVE;
136 sdi->vendor = g_strdup(dmm->vendor);
137 sdi->model = g_strdup(dmm->device);
138 devc = g_malloc0(sizeof(*devc));
139 sr_sw_limits_init(&devc->limits);
140 sdi->inst_type = SR_INST_SERIAL;
141 sdi->conn = serial;
142 sdi->priv = devc;
143
144 /* Create (optionally device dependent) channel(s). */
145 dmm->channel_count = 1;
146 if (dmm->packet_parse == sr_brymen_bm52x_parse)
147 dmm->channel_count = BRYMEN_BM52X_DISPLAY_COUNT;
148 if (dmm->packet_parse == sr_brymen_bm86x_parse)
149 dmm->channel_count = BRYMEN_BM86X_DISPLAY_COUNT;
150 if (dmm->packet_parse == sr_eev121gw_3displays_parse) {
151 dmm->channel_count = EEV121GW_DISPLAY_COUNT;
152 dmm->channel_formats = eev121gw_channel_formats;
153 }
154 if (dmm->packet_parse == sr_metex14_4packets_parse)
155 dmm->channel_count = 4;
156 if (dmm->packet_parse == sr_ms2115b_parse) {
157 dmm->channel_count = MS2115B_DISPLAY_COUNT;
158 dmm->channel_formats = ms2115b_channel_formats;
159 }
160 for (ch_idx = 0; ch_idx < dmm->channel_count; ch_idx++) {
161 size_t ch_num;
162 const char *fmt;
163 fmt = "P%zu";
164 if (dmm->channel_formats && dmm->channel_formats[ch_idx])
165 fmt = dmm->channel_formats[ch_idx];
166 ch_num = ch_idx + 1;
167 snprintf(ch_name, sizeof(ch_name), fmt, ch_num);
168 sr_channel_new(sdi, ch_idx, SR_CHANNEL_ANALOG, TRUE, ch_name);
169 }
170
171 /* Add found device to result set. */
172 devices = g_slist_append(devices, sdi);
173
174scan_cleanup:
175 serial_close(serial);
176
177 return std_scan_complete(di, devices);
178}
179
180static int config_get(uint32_t key, GVariant **data,
181 const struct sr_dev_inst *sdi, const struct sr_channel_group *cg)
182{
183 struct dev_context *devc;
184 struct dmm_info *dmm;
185
186 if (!sdi)
187 return SR_ERR_ARG;
188 devc = sdi->priv;
189
190 switch (key) {
191 case SR_CONF_LIMIT_SAMPLES:
192 case SR_CONF_LIMIT_FRAMES:
193 case SR_CONF_LIMIT_MSEC:
194 return sr_sw_limits_config_get(&devc->limits, key, data);
195 default:
196 dmm = (struct dmm_info *)sdi->driver;
197 if (!dmm || !dmm->config_get)
198 return SR_ERR_NA;
199 return dmm->config_get(dmm->dmm_state, key, data, sdi, cg);
200 }
201 /* UNREACH */
202}
203
204static int config_set(uint32_t key, GVariant *data,
205 const struct sr_dev_inst *sdi, const struct sr_channel_group *cg)
206{
207 struct dev_context *devc;
208 struct dmm_info *dmm;
209
210 if (!sdi)
211 return SR_ERR_ARG;
212 devc = sdi->priv;
213 (void)cg;
214
215 switch (key) {
216 case SR_CONF_LIMIT_SAMPLES:
217 case SR_CONF_LIMIT_FRAMES:
218 case SR_CONF_LIMIT_MSEC:
219 return sr_sw_limits_config_set(&devc->limits, key, data);
220 default:
221 dmm = (struct dmm_info *)sdi->driver;
222 if (!dmm || !dmm->config_set)
223 return SR_ERR_NA;
224 return dmm->config_set(dmm->dmm_state, key, data, sdi, cg);
225 }
226}
227
228static int config_list(uint32_t key, GVariant **data,
229 const struct sr_dev_inst *sdi, const struct sr_channel_group *cg)
230{
231 struct dmm_info *dmm;
232 int ret;
233
234 /* Use common logic for standard keys. */
235 if (!sdi)
236 return STD_CONFIG_LIST(key, data, sdi, cg, scanopts, drvopts, devopts);
237
238 /*
239 * Check for device specific config_list handler. ERR N/A from
240 * that handler is non-fatal, just falls back to common logic.
241 */
242 dmm = (struct dmm_info *)sdi->driver;
243 if (dmm && dmm->config_list) {
244 ret = dmm->config_list(dmm->dmm_state, key, data, sdi, cg);
245 if (ret != SR_ERR_NA)
246 return ret;
247 }
248
249 return STD_CONFIG_LIST(key, data, sdi, cg, scanopts, drvopts, devopts);
250}
251
252static int dev_acquisition_start(const struct sr_dev_inst *sdi)
253{
254 struct dev_context *devc;
255 struct dmm_info *dmm;
256 sr_receive_data_callback cb_func;
257 void *cb_data;
258 int ret;
259 struct sr_serial_dev_inst *serial;
260
261 devc = sdi->priv;
262
263 sr_sw_limits_acquisition_start(&devc->limits);
264 std_session_send_df_header(sdi);
265
266 cb_func = receive_data;
267 cb_data = (void *)sdi;
268 dmm = (struct dmm_info *)sdi->driver;
269 if (dmm && dmm->acquire_start) {
270 ret = dmm->acquire_start(dmm->dmm_state, sdi,
271 &cb_func, &cb_data);
272 if (ret < 0)
273 return ret;
274 }
275
276 serial = sdi->conn;
277 serial_source_add(sdi->session, serial, G_IO_IN, 50,
278 cb_func, cb_data);
279
280 return SR_OK;
281}
282
283#define DMM_ENTRY(ID, CHIPSET, VENDOR, MODEL, \
284 CONN, SERIALCOMM, PACKETSIZE, TIMEOUT, DELAY, \
285 OPEN, REQUEST, VALID, PARSE, DETAILS, \
286 INIT_STATE, FREE_STATE, VALID_LEN, PARSE_LEN, \
287 CFG_GET, CFG_SET, CFG_LIST, ACQ_START) \
288 &((struct dmm_info) { \
289 { \
290 .name = ID, \
291 .longname = VENDOR " " MODEL, \
292 .api_version = 1, \
293 .init = std_init, \
294 .cleanup = std_cleanup, \
295 .scan = scan, \
296 .dev_list = std_dev_list, \
297 .dev_clear = std_dev_clear, \
298 .config_get = config_get, \
299 .config_set = config_set, \
300 .config_list = config_list, \
301 .dev_open = std_serial_dev_open, \
302 .dev_close = std_serial_dev_close, \
303 .dev_acquisition_start = dev_acquisition_start, \
304 .dev_acquisition_stop = std_serial_dev_acquisition_stop, \
305 .context = NULL, \
306 }, \
307 VENDOR, MODEL, CONN, SERIALCOMM, PACKETSIZE, TIMEOUT, DELAY, \
308 REQUEST, 1, NULL, VALID, PARSE, DETAILS, \
309 sizeof(struct CHIPSET##_info), \
310 NULL, INIT_STATE, FREE_STATE, \
311 OPEN, VALID_LEN, PARSE_LEN, \
312 CFG_GET, CFG_SET, CFG_LIST, ACQ_START, \
313 }).di
314
315#define DMM_CONN(ID, CHIPSET, VENDOR, MODEL, \
316 CONN, SERIALCOMM, PACKETSIZE, TIMEOUT, DELAY, \
317 REQUEST, VALID, PARSE, DETAILS) \
318 DMM_ENTRY(ID, CHIPSET, VENDOR, MODEL, \
319 CONN, SERIALCOMM, PACKETSIZE, TIMEOUT, DELAY, \
320 NULL, REQUEST, VALID, PARSE, DETAILS, \
321 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL)
322
323#define DMM(ID, CHIPSET, VENDOR, MODEL, SERIALCOMM, PACKETSIZE, TIMEOUT, \
324 DELAY, REQUEST, VALID, PARSE, DETAILS) \
325 DMM_CONN(ID, CHIPSET, VENDOR, MODEL, \
326 NULL, SERIALCOMM, PACKETSIZE, TIMEOUT, DELAY, \
327 REQUEST, VALID, PARSE, DETAILS)
328
329#define DMM_LEN(ID, CHIPSET, VENDOR, MODEL, \
330 CONN, SERIALCOMM, PACKETSIZE, TIMEOUT, DELAY, \
331 INIT, FREE, OPEN, REQUEST, VALID, PARSE, DETAILS) \
332 DMM_ENTRY(ID, CHIPSET, VENDOR, MODEL, \
333 CONN, SERIALCOMM, PACKETSIZE, TIMEOUT, DELAY, \
334 OPEN, REQUEST, NULL, NULL, DETAILS, \
335 INIT, FREE, VALID, PARSE, NULL, NULL, NULL, NULL)
336
337SR_REGISTER_DEV_DRIVER_LIST(serial_dmm_drivers,
338 /*
339 * The items are sorted by chipset first and then model name.
340 *
341 * This reflects the developer's perspective and is preferrable
342 * during maintenance, as a vendor/product based sort order does
343 * not work well for rebranded models, and from a support point
344 * of view it's more important to identify similarities between
345 * models and compatible devices.
346 *
347 * Fold marks {{{ }}} with matching braces were added, to further
348 * speed up navigation in the long list.
349 */
350 /* asycii based meters {{{ */
351 DMM(
352 "metrix-mx56c", asycii, "Metrix", "MX56C",
353 "2400/8n1", ASYCII_PACKET_SIZE, 0, 0, NULL,
354 sr_asycii_packet_valid, sr_asycii_parse, NULL
355 ),
356 /* }}} */
357 /* bm25x based meters {{{ */
358 DMM(
359 "brymen-bm25x", bm25x,
360 "Brymen", "BM25x", "9600/8n1/rts=1/dtr=1",
361 BRYMEN_BM25X_PACKET_SIZE, 0, 0, NULL,
362 sr_brymen_bm25x_packet_valid, sr_brymen_bm25x_parse,
363 NULL
364 ),
365 /* }}} */
366 /* bm52x based meters {{{ */
367 DMM_CONN(
368 "brymen-bm52x", brymen_bm52x, "Brymen", "BM52x",
369 "hid/bu86x", NULL, BRYMEN_BM52X_PACKET_SIZE, 4000, 500,
370 sr_brymen_bm52x_packet_request,
371 sr_brymen_bm52x_packet_valid, sr_brymen_bm52x_parse,
372 NULL
373 ),
374 /* }}} */
375 /* bm86x based meters {{{ */
376 DMM_CONN(
377 "brymen-bm86x", brymen_bm86x, "Brymen", "BM86x",
378 "hid/bu86x", NULL, BRYMEN_BM86X_PACKET_SIZE, 500, 100,
379 sr_brymen_bm86x_packet_request,
380 sr_brymen_bm86x_packet_valid, sr_brymen_bm86x_parse,
381 NULL
382 ),
383 /* }}} */
384 /* dtm0660 based meters {{{ */
385 DMM(
386 "peaktech-3415", dtm0660,
387 "PeakTech", "3415", "2400/8n1/rts=0/dtr=1",
388 DTM0660_PACKET_SIZE, 0, 0, NULL,
389 sr_dtm0660_packet_valid, sr_dtm0660_parse, NULL
390 ),
391 DMM(
392 "velleman-dvm4100", dtm0660,
393 "Velleman", "DVM4100", "2400/8n1/rts=0/dtr=1",
394 DTM0660_PACKET_SIZE, 0, 0, NULL,
395 sr_dtm0660_packet_valid, sr_dtm0660_parse, NULL
396 ),
397 /* }}} */
398 /* eev121gw based meters {{{ */
399 DMM(
400 "eevblog-121gw", eev121gw, "EEVblog", "121GW",
401 "115200/8n1", EEV121GW_PACKET_SIZE, 0, 0, NULL,
402 sr_eev121gw_packet_valid, sr_eev121gw_3displays_parse, NULL
403 ),
404 /* }}} */
405 /* es519xx based meters {{{ */
406 DMM(
407 "iso-tech-idm103n", es519xx,
408 "ISO-TECH", "IDM103N", "2400/7o1/rts=0/dtr=1",
409 ES519XX_11B_PACKET_SIZE, 0, 0, NULL,
410 sr_es519xx_2400_11b_packet_valid, sr_es519xx_2400_11b_parse,
411 NULL
412 ),
413 /*
414 * Note: ES51922 and ES51986 baudrate is actually 19230. This is
415 * "out" by .15%, and so is well within the typical 1% margin
416 * that is considered acceptable in UART communication, and thus
417 * should not cause an issue.
418 *
419 * However, using 19230 as baudrate here will not work, as most DMM
420 * cables do not support that baudrate!
421 */
422 DMM(
423 "tenma-72-7750-ser", es519xx,
424 "Tenma", "72-7750 (UT-D02 cable)", "19200/7o1/rts=0/dtr=1",
425 ES519XX_11B_PACKET_SIZE, 0, 0, NULL,
426 sr_es519xx_19200_11b_packet_valid, sr_es519xx_19200_11b_parse,
427 NULL
428 ),
429 DMM(
430 "uni-t-ut60g-ser", es519xx,
431 "UNI-T", "UT60G (UT-D02 cable)", "19200/7o1/rts=0/dtr=1",
432 ES519XX_11B_PACKET_SIZE, 0, 0, NULL,
433 sr_es519xx_19200_11b_packet_valid, sr_es519xx_19200_11b_parse,
434 NULL
435 ),
436 DMM(
437 "uni-t-ut61e-ser", es519xx,
438 "UNI-T", "UT61E (UT-D02 cable)", "19200/7o1/rts=0/dtr=1",
439 ES519XX_14B_PACKET_SIZE, 0, 0, NULL,
440 sr_es519xx_19200_14b_packet_valid, sr_es519xx_19200_14b_parse,
441 NULL
442 ),
443 /* }}} */
444 /* fs9721 based meters {{{ */
445 DMM(
446 "digitek-dt4000zc", fs9721,
447 "Digitek", "DT4000ZC", "2400/8n1/dtr=1",
448 FS9721_PACKET_SIZE, 0, 0, NULL,
449 sr_fs9721_packet_valid, sr_fs9721_parse,
450 sr_fs9721_10_temp_c
451 ),
452 DMM(
453 "mastech-ms8250b", fs9721,
454 "MASTECH", "MS8250B", "2400/8n1/rts=0/dtr=1",
455 FS9721_PACKET_SIZE, 0, 0, NULL,
456 sr_fs9721_packet_valid, sr_fs9721_parse,
457 NULL
458 ),
459 DMM(
460 "pce-pce-dm32", fs9721,
461 "PCE", "PCE-DM32", "2400/8n1",
462 FS9721_PACKET_SIZE, 0, 0, NULL,
463 sr_fs9721_packet_valid, sr_fs9721_parse,
464 sr_fs9721_01_10_temp_f_c
465 ),
466 DMM(
467 "peaktech-3330", fs9721,
468 "PeakTech", "3330", "2400/8n1/dtr=1",
469 FS9721_PACKET_SIZE, 0, 0, NULL,
470 sr_fs9721_packet_valid, sr_fs9721_parse,
471 sr_fs9721_01_10_temp_f_c
472 ),
473 DMM(
474 "tecpel-dmm-8061-ser", fs9721,
475 "Tecpel", "DMM-8061 (UT-D02 cable)", "2400/8n1/rts=0/dtr=1",
476 FS9721_PACKET_SIZE, 0, 0, NULL,
477 sr_fs9721_packet_valid, sr_fs9721_parse,
478 sr_fs9721_00_temp_c
479 ),
480 DMM(
481 "tekpower-tp4000ZC", fs9721,
482 "TekPower", "TP4000ZC", "2400/8n1/dtr=1",
483 FS9721_PACKET_SIZE, 0, 0, NULL,
484 sr_fs9721_packet_valid, sr_fs9721_parse,
485 sr_fs9721_10_temp_c
486 ),
487 DMM(
488 "tenma-72-7745-ser", fs9721,
489 "Tenma", "72-7745 (UT-D02 cable)", "2400/8n1/rts=0/dtr=1",
490 FS9721_PACKET_SIZE, 0, 0, NULL,
491 sr_fs9721_packet_valid, sr_fs9721_parse,
492 sr_fs9721_00_temp_c
493 ),
494 DMM(
495 "uni-t-ut60a-ser", fs9721,
496 "UNI-T", "UT60A (UT-D02 cable)", "2400/8n1/rts=0/dtr=1",
497 FS9721_PACKET_SIZE, 0, 0, NULL,
498 sr_fs9721_packet_valid, sr_fs9721_parse,
499 NULL
500 ),
501 DMM(
502 "uni-t-ut60e-ser", fs9721,
503 "UNI-T", "UT60E (UT-D02 cable)", "2400/8n1/rts=0/dtr=1",
504 FS9721_PACKET_SIZE, 0, 0, NULL,
505 sr_fs9721_packet_valid, sr_fs9721_parse,
506 sr_fs9721_00_temp_c
507 ),
508 DMM(
509 "va-va18b", fs9721,
510 "V&A", "VA18B", "2400/8n1",
511 FS9721_PACKET_SIZE, 0, 0, NULL,
512 sr_fs9721_packet_valid, sr_fs9721_parse,
513 sr_fs9721_01_temp_c
514 ),
515 DMM(
516 "va-va40b", fs9721,
517 "V&A", "VA40B", "2400/8n1",
518 FS9721_PACKET_SIZE, 0, 0, NULL,
519 sr_fs9721_packet_valid, sr_fs9721_parse,
520 sr_fs9721_max_c_min
521 ),
522 DMM(
523 "voltcraft-vc820-ser", fs9721,
524 "Voltcraft", "VC-820 (UT-D02 cable)", "2400/8n1/rts=0/dtr=1",
525 FS9721_PACKET_SIZE, 0, 0, NULL,
526 sr_fs9721_packet_valid, sr_fs9721_parse,
527 NULL
528 ),
529 DMM(
530 "voltcraft-vc840-ser", fs9721,
531 "Voltcraft", "VC-840 (UT-D02 cable)", "2400/8n1/rts=0/dtr=1",
532 FS9721_PACKET_SIZE, 0, 0, NULL,
533 sr_fs9721_packet_valid, sr_fs9721_parse,
534 sr_fs9721_00_temp_c
535 ),
536 /* }}} */
537 /* fs9922 based meters {{{ */
538 DMM(
539 "gwinstek-gdm-397", fs9922,
540 "GW Instek", "GDM-397", "2400/8n1/rts=0/dtr=1",
541 FS9922_PACKET_SIZE, 0, 0, NULL,
542 sr_fs9922_packet_valid, sr_fs9922_parse, NULL
543 ),
544 DMM(
545 "sparkfun-70c", fs9922,
546 "SparkFun", "70C", "2400/8n1/rts=0/dtr=1",
547 FS9922_PACKET_SIZE, 0, 0, NULL,
548 sr_fs9922_packet_valid, sr_fs9922_parse, NULL
549 ),
550 DMM(
551 "uni-t-ut61b-ser", fs9922,
552 "UNI-T", "UT61B (UT-D02 cable)", "2400/8n1/rts=0/dtr=1",
553 FS9922_PACKET_SIZE, 0, 0, NULL,
554 sr_fs9922_packet_valid, sr_fs9922_parse, NULL
555 ),
556 DMM(
557 "uni-t-ut61c-ser", fs9922,
558 "UNI-T", "UT61C (UT-D02 cable)", "2400/8n1/rts=0/dtr=1",
559 FS9922_PACKET_SIZE, 0, 0, NULL,
560 sr_fs9922_packet_valid, sr_fs9922_parse, NULL
561 ),
562 DMM(
563 "uni-t-ut61d-ser", fs9922,
564 "UNI-T", "UT61D (UT-D02 cable)", "2400/8n1/rts=0/dtr=1",
565 FS9922_PACKET_SIZE, 0, 0, NULL,
566 sr_fs9922_packet_valid, sr_fs9922_parse, NULL
567 ),
568 DMM_CONN(
569 "victor-dmm", fs9922, "Victor", "Victor DMMs",
570 "hid/victor", "2400/8n1", FS9922_PACKET_SIZE, 0, 0, NULL,
571 sr_fs9922_packet_valid, sr_fs9922_parse, NULL
572 ),
573 DMM(
574 /*
575 * Note: The VC830 doesn't set the 'volt' and 'diode' bits of
576 * the FS9922 protocol. Instead, it only sets the user-defined
577 * bit "z1" to indicate "diode mode" and "voltage".
578 */
579 "voltcraft-vc830-ser", fs9922,
580 "Voltcraft", "VC-830 (UT-D02 cable)", "2400/8n1/rts=0/dtr=1",
581 FS9922_PACKET_SIZE, 0, 0, NULL,
582 sr_fs9922_packet_valid, sr_fs9922_parse,
583 &sr_fs9922_z1_diode
584 ),
585 /* }}} */
586 /* m2110 based meters {{{ */
587 DMM(
588 "bbcgm-2010", m2110,
589 "BBC Goertz Metrawatt", "M2110", "1200/7n2",
590 BBCGM_M2110_PACKET_SIZE, 0, 0, NULL,
591 sr_m2110_packet_valid, sr_m2110_parse,
592 NULL
593 ),
594 /* }}} */
595 /* ms2115b based meters {{{ */
596 DMM(
597 "mastech-ms2115b", ms2115b,
598 "MASTECH", "MS2115B", "1200/8n1",
599 MS2115B_PACKET_SIZE, 0, 0, NULL,
600 sr_ms2115b_packet_valid, sr_ms2115b_parse,
601 NULL
602 ),
603 /* }}} */
604 /* ms8250d based meters {{{ */
605 DMM(
606 "mastech-ms8250d", ms8250d,
607 "MASTECH", "MS8250D", "2400/8n1/rts=0/dtr=1",
608 MS8250D_PACKET_SIZE, 0, 0, NULL,
609 sr_ms8250d_packet_valid, sr_ms8250d_parse,
610 NULL
611 ),
612 /* }}} */
613 /* metex14 based meters {{{ */
614 DMM(
615 "mastech-mas345", metex14,
616 "MASTECH", "MAS345", "600/7n2/rts=0/dtr=1",
617 METEX14_PACKET_SIZE, 0, 0, sr_metex14_packet_request,
618 sr_metex14_packet_valid, sr_metex14_parse,
619 NULL
620 ),
621 DMM(
622 "metex-m3640d", metex14,
623 "Metex", "M-3640D", "1200/7n2/rts=0/dtr=1",
624 METEX14_PACKET_SIZE, 0, 0, sr_metex14_packet_request,
625 sr_metex14_packet_valid, sr_metex14_parse,
626 NULL
627 ),
628 DMM(
629 "metex-m3860m", metex14,
630 "Metex", "M-3860M", "9600/7n2/rts=0/dtr=1",
631 4 * METEX14_PACKET_SIZE, 0, 0, sr_metex14_packet_request,
632 sr_metex14_4packets_valid, sr_metex14_4packets_parse,
633 NULL
634 ),
635 DMM(
636 "metex-m4650cr", metex14,
637 "Metex", "M-4650CR", "1200/7n2/rts=0/dtr=1",
638 METEX14_PACKET_SIZE, 0, 0, sr_metex14_packet_request,
639 sr_metex14_packet_valid, sr_metex14_parse,
640 NULL
641 ),
642 DMM(
643 "metex-me21", metex14,
644 "Metex", "ME-21", "2400/7n2/rts=0/dtr=1",
645 METEX14_PACKET_SIZE, 0, 0, sr_metex14_packet_request,
646 sr_metex14_packet_valid, sr_metex14_parse,
647 NULL
648 ),
649 DMM(
650 "metex-me31", metex14,
651 "Metex", "ME-31", "600/7n2/rts=0/dtr=1",
652 METEX14_PACKET_SIZE, 0, 0, sr_metex14_packet_request,
653 sr_metex14_packet_valid, sr_metex14_parse,
654 NULL
655 ),
656 DMM(
657 "peaktech-3410", metex14,
658 "PeakTech", "3410", "600/7n2/rts=0/dtr=1",
659 METEX14_PACKET_SIZE, 0, 0, sr_metex14_packet_request,
660 sr_metex14_packet_valid, sr_metex14_parse,
661 NULL
662 ),
663 DMM(
664 "peaktech-4370", metex14,
665 "PeakTech", "4370", "1200/7n2/rts=0/dtr=1",
666 METEX14_PACKET_SIZE, 0, 0, sr_metex14_packet_request,
667 sr_metex14_packet_valid, sr_metex14_parse,
668 NULL
669 ),
670 DMM(
671 "peaktech-4390a", metex14,
672 "PeakTech", "4390A", "9600/7n2/rts=0/dtr=1",
673 4 * METEX14_PACKET_SIZE, 0, 0, sr_metex14_packet_request,
674 sr_metex14_4packets_valid, sr_metex14_4packets_parse,
675 NULL
676 ),
677 DMM(
678 "radioshack-22-168", metex14,
679 "RadioShack", "22-168", "1200/7n2/rts=0/dtr=1",
680 METEX14_PACKET_SIZE, 0, 0, sr_metex14_packet_request,
681 sr_metex14_packet_valid, sr_metex14_parse,
682 NULL
683 ),
684 DMM(
685 "radioshack-22-805", metex14,
686 "RadioShack", "22-805", "600/7n2/rts=0/dtr=1",
687 METEX14_PACKET_SIZE, 0, 0, sr_metex14_packet_request,
688 sr_metex14_packet_valid, sr_metex14_parse,
689 NULL
690 ),
691 DMM(
692 "voltcraft-m3650cr", metex14,
693 "Voltcraft", "M-3650CR", "1200/7n2/rts=0/dtr=1",
694 METEX14_PACKET_SIZE, 150, 20, sr_metex14_packet_request,
695 sr_metex14_packet_valid, sr_metex14_parse,
696 NULL
697 ),
698 DMM(
699 "voltcraft-m3650d", metex14,
700 "Voltcraft", "M-3650D", "1200/7n2/rts=0/dtr=1",
701 METEX14_PACKET_SIZE, 0, 0, sr_metex14_packet_request,
702 sr_metex14_packet_valid, sr_metex14_parse,
703 NULL
704 ),
705 DMM(
706 "voltcraft-m4650cr", metex14,
707 "Voltcraft", "M-4650CR", "1200/7n2/rts=0/dtr=1",
708 METEX14_PACKET_SIZE, 0, 0, sr_metex14_packet_request,
709 sr_metex14_packet_valid, sr_metex14_parse,
710 NULL
711 ),
712 DMM(
713 "voltcraft-me42", metex14,
714 "Voltcraft", "ME-42", "600/7n2/rts=0/dtr=1",
715 METEX14_PACKET_SIZE, 250, 60, sr_metex14_packet_request,
716 sr_metex14_packet_valid, sr_metex14_parse,
717 NULL
718 ),
719 /* }}} */
720 /* rs9lcd based meters {{{ */
721 DMM(
722 "radioshack-22-812", rs9lcd,
723 "RadioShack", "22-812", "4800/8n1/rts=0/dtr=1",
724 RS9LCD_PACKET_SIZE, 0, 0, NULL,
725 sr_rs9lcd_packet_valid, sr_rs9lcd_parse,
726 NULL
727 ),
728 /* }}} */
729 /* ut71x based meters {{{ */
730 DMM(
731 "tenma-72-7730-ser", ut71x,
732 "Tenma", "72-7730 (UT-D02 cable)", "2400/7o1/rts=0/dtr=1",
733 UT71X_PACKET_SIZE, 0, 0, NULL,
734 sr_ut71x_packet_valid, sr_ut71x_parse, NULL
735 ),
736 DMM(
737 "tenma-72-7732-ser", ut71x,
738 "Tenma", "72-7732 (UT-D02 cable)", "2400/7o1/rts=0/dtr=1",
739 UT71X_PACKET_SIZE, 0, 0, NULL,
740 sr_ut71x_packet_valid, sr_ut71x_parse, NULL
741 ),
742 DMM(
743 "tenma-72-9380a-ser", ut71x,
744 "Tenma", "72-9380A (UT-D02 cable)", "2400/7o1/rts=0/dtr=1",
745 UT71X_PACKET_SIZE, 0, 0, NULL,
746 sr_ut71x_packet_valid, sr_ut71x_parse, NULL
747 ),
748 DMM(
749 "uni-t-ut71a-ser", ut71x,
750 "UNI-T", "UT71A (UT-D02 cable)", "2400/7o1/rts=0/dtr=1",
751 UT71X_PACKET_SIZE, 0, 0, NULL,
752 sr_ut71x_packet_valid, sr_ut71x_parse, NULL
753 ),
754 DMM(
755 "uni-t-ut71b-ser", ut71x,
756 "UNI-T", "UT71B (UT-D02 cable)", "2400/7o1/rts=0/dtr=1",
757 UT71X_PACKET_SIZE, 0, 0, NULL,
758 sr_ut71x_packet_valid, sr_ut71x_parse, NULL
759 ),
760 DMM(
761 "uni-t-ut71c-ser", ut71x,
762 "UNI-T", "UT71C (UT-D02 cable)", "2400/7o1/rts=0/dtr=1",
763 UT71X_PACKET_SIZE, 0, 0, NULL,
764 sr_ut71x_packet_valid, sr_ut71x_parse, NULL
765 ),
766 DMM(
767 "uni-t-ut71d-ser", ut71x,
768 "UNI-T", "UT71D (UT-D02 cable)", "2400/7o1/rts=0/dtr=1",
769 UT71X_PACKET_SIZE, 0, 0, NULL,
770 sr_ut71x_packet_valid, sr_ut71x_parse, NULL
771 ),
772 DMM(
773 "uni-t-ut71e-ser", ut71x,
774 "UNI-T", "UT71E (UT-D02 cable)", "2400/7o1/rts=0/dtr=1",
775 UT71X_PACKET_SIZE, 0, 0, NULL,
776 sr_ut71x_packet_valid, sr_ut71x_parse, NULL
777 ),
778 DMM(
779 "uni-t-ut804-ser", ut71x,
780 "UNI-T", "UT804", "2400/7o1/rts=0/dtr=1",
781 UT71X_PACKET_SIZE, 0, 0, NULL,
782 sr_ut71x_packet_valid, sr_ut71x_parse, NULL
783 ),
784 DMM(
785 "voltcraft-vc920-ser", ut71x,
786 "Voltcraft", "VC-920 (UT-D02 cable)", "2400/7o1/rts=0/dtr=1",
787 UT71X_PACKET_SIZE, 0, 0, NULL,
788 sr_ut71x_packet_valid, sr_ut71x_parse, NULL
789 ),
790 DMM(
791 "voltcraft-vc940-ser", ut71x,
792 "Voltcraft", "VC-940 (UT-D02 cable)", "2400/7o1/rts=0/dtr=1",
793 UT71X_PACKET_SIZE, 0, 0, NULL,
794 sr_ut71x_packet_valid, sr_ut71x_parse, NULL
795 ),
796 DMM(
797 "voltcraft-vc960-ser", ut71x,
798 "Voltcraft", "VC-960 (UT-D02 cable)", "2400/7o1/rts=0/dtr=1",
799 UT71X_PACKET_SIZE, 0, 0, NULL,
800 sr_ut71x_packet_valid, sr_ut71x_parse, NULL
801 ),
802 /* }}} */
803 /* vc870 based meters {{{ */
804 DMM(
805 "voltcraft-vc870-ser", vc870,
806 "Voltcraft", "VC-870 (UT-D02 cable)", "9600/8n1/rts=0/dtr=1",
807 VC870_PACKET_SIZE, 0, 0, NULL,
808 sr_vc870_packet_valid, sr_vc870_parse, NULL
809 ),
810 /* }}} */
811 /* vc96 based meters {{{ */
812 DMM(
813 "voltcraft-vc96", vc96,
814 "Voltcraft", "VC-96", "1200/8n2",
815 VC96_PACKET_SIZE, 0, 0, NULL,
816 sr_vc96_packet_valid, sr_vc96_parse,
817 NULL
818 ),
819 /* }}} */
820 /*
821 * The list is sorted. Add new items in the respective chip's group.
822 */
823);