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1/*
2 * This file is part of the libsigrok project.
3 *
4 * Copyright (C) 2012-2013 Uwe Hermann <uwe@hermann-uwe.de>
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 2 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
20/**
21 * @file
22 *
23 * Metex 14-bytes ASCII protocol parser.
24 *
25 * This should work for various multimeters which use this kind of protocol,
26 * even though there is some variation in which modes each DMM supports.
27 *
28 * It does _not_ work for all Metex DMMs, some use a quite different protocol.
29 */
30
31#include <config.h>
32#include <string.h>
33#include <strings.h>
34#include <ctype.h>
35#include <math.h>
36#include <glib.h>
37#include <libsigrok/libsigrok.h>
38#include "libsigrok-internal.h"
39
40#define LOG_PREFIX "metex14"
41
42/** Parse value from buf, byte 2-8. */
43static int parse_value(const uint8_t *buf, struct metex14_info *info,
44 float *result, int *exponent)
45{
46 int i, is_ol, cnt, dot_pos;
47 char valstr[7 + 1];
48
49 /* Strip all spaces from bytes 2-8. */
50 memset(&valstr, 0, 7 + 1);
51 for (i = 0, cnt = 0; i < 7; i++) {
52 if (buf[2 + i] != ' ')
53 valstr[cnt++] = buf[2 + i];
54 }
55
56 /* Bytes 5-7: Over limit (various forms) */
57 is_ol = 0;
58 is_ol += (!g_ascii_strcasecmp((const char *)&valstr, ".OL")) ? 1 : 0;
59 is_ol += (!g_ascii_strcasecmp((const char *)&valstr, "O.L")) ? 1 : 0;
60 is_ol += (!g_ascii_strcasecmp((const char *)&valstr, "OL.")) ? 1 : 0;
61 is_ol += (!g_ascii_strcasecmp((const char *)&valstr, "OL")) ? 1 : 0;
62 is_ol += (!g_ascii_strcasecmp((const char *)&valstr, "-.OL")) ? 1 : 0;
63 is_ol += (!g_ascii_strcasecmp((const char *)&valstr, "-O.L")) ? 1 : 0;
64 is_ol += (!g_ascii_strcasecmp((const char *)&valstr, "-OL.")) ? 1 : 0;
65 is_ol += (!g_ascii_strcasecmp((const char *)&valstr, "-OL")) ? 1 : 0;
66 if (is_ol != 0) {
67 sr_spew("Over limit.");
68 *result = INFINITY;
69 return SR_OK;
70 }
71
72 /* Logic functions */
73 if (!strcmp((const char *)&valstr, "READY") ||
74 !strcmp((const char *)&valstr, "FLOAT")) {
75 *result = INFINITY;
76 info->is_logic = TRUE;
77 } else if (!strcmp((const char *)&valstr, "Hi")) {
78 *result = 1.0;
79 info->is_logic = TRUE;
80 } else if (!strcmp((const char *)&valstr, "Lo")) {
81 *result = 0.0;
82 info->is_logic = TRUE;
83 }
84 if (info->is_logic)
85 return SR_OK;
86
87 /* Bytes 2-8: Sign, value (up to 5 digits) and decimal point */
88 sr_atof_ascii((const char *)&valstr, result);
89
90 dot_pos = strcspn(valstr, ".");
91 if (dot_pos < cnt)
92 *exponent = -(cnt - dot_pos - 1);
93 else
94 *exponent = 0;
95
96 sr_spew("The display value is %f.", *result);
97
98 return SR_OK;
99}
100
101static void parse_flags(const char *buf, struct metex14_info *info)
102{
103 int i, cnt;
104 char unit[4 + 1];
105 const char *u;
106
107 /* Bytes 0-1: Measurement mode AC, DC */
108 info->is_ac = !strncmp(buf, "AC", 2);
109 info->is_dc = !strncmp(buf, "DC", 2);
110
111 /* Bytes 2-8: See parse_value(). */
112
113 /* Strip all spaces from bytes 9-12. */
114 memset(&unit, 0, 4 + 1);
115 for (i = 0, cnt = 0; i < 4; i++) {
116 if (buf[9 + i] != ' ')
117 unit[cnt++] = buf[9 + i];
118 }
119
120 /* Bytes 9-12: Unit */
121 u = (const char *)&unit;
122 if (!g_ascii_strcasecmp(u, "A"))
123 info->is_ampere = TRUE;
124 else if (!g_ascii_strcasecmp(u, "mA"))
125 info->is_milli = info->is_ampere = TRUE;
126 else if (!g_ascii_strcasecmp(u, "uA"))
127 info->is_micro = info->is_ampere = TRUE;
128 else if (!g_ascii_strcasecmp(u, "V"))
129 info->is_volt = TRUE;
130 else if (!g_ascii_strcasecmp(u, "mV"))
131 info->is_milli = info->is_volt = TRUE;
132 else if (!g_ascii_strcasecmp(u, "Ohm"))
133 info->is_ohm = TRUE;
134 else if (!g_ascii_strcasecmp(u, "KOhm"))
135 info->is_kilo = info->is_ohm = TRUE;
136 else if (!g_ascii_strcasecmp(u, "MOhm"))
137 info->is_mega = info->is_ohm = TRUE;
138 else if (!g_ascii_strcasecmp(u, "pF"))
139 info->is_pico = info->is_farad = TRUE;
140 else if (!g_ascii_strcasecmp(u, "nF"))
141 info->is_nano = info->is_farad = TRUE;
142 else if (!g_ascii_strcasecmp(u, "uF"))
143 info->is_micro = info->is_farad = TRUE;
144 else if (!g_ascii_strcasecmp(u, "KHz"))
145 info->is_kilo = info->is_hertz = TRUE;
146 else if (!g_ascii_strcasecmp(u, "C"))
147 info->is_celsius = TRUE;
148 else if (!g_ascii_strcasecmp(u, "F"))
149 info->is_fahrenheit = TRUE;
150 else if (!g_ascii_strcasecmp(u, "DB"))
151 info->is_decibel = TRUE;
152 else if (!g_ascii_strcasecmp(u, "dBm"))
153 info->is_decibel_mw = TRUE;
154 else if (!g_ascii_strcasecmp(u, "W"))
155 info->is_watt = TRUE;
156 else if (!g_ascii_strcasecmp(u, ""))
157 info->is_unitless = TRUE;
158
159 /* Bytes 0-1: Measurement mode, except AC/DC */
160 info->is_resistance = !strncmp(buf, "OH", 2) ||
161 (!strncmp(buf, " ", 2) && info->is_ohm);
162 info->is_capacity = !strncmp(buf, "CA", 2) ||
163 (!strncmp(buf, " ", 2) && info->is_farad);
164 info->is_temperature = !strncmp(buf, "TE", 2) ||
165 info->is_celsius || info->is_fahrenheit;
166 info->is_diode = !strncmp(buf, "DI", 2) ||
167 (!strncmp(buf, " ", 2) && info->is_volt && info->is_milli);
168 info->is_frequency = !strncmp(buf, "FR", 2) ||
169 (!strncmp(buf, " ", 2) && info->is_hertz);
170 info->is_gain = !strncmp(buf, "DB", 2) && info->is_decibel;
171 info->is_power = (!strncmp(buf, "dB", 2) && info->is_decibel_mw) ||
172 ((!strncmp(buf, "WT", 2) && info->is_watt));
173 info->is_power_factor = !strncmp(buf, "CO", 2) && info->is_unitless;
174 info->is_hfe = !strncmp(buf, "HF", 2) ||
175 (!strncmp(buf, " ", 2) && !info->is_ampere &&!info->is_volt &&
176 !info->is_resistance && !info->is_capacity && !info->is_frequency &&
177 !info->is_temperature && !info->is_power && !info->is_power_factor &&
178 !info->is_gain && !info->is_logic && !info->is_diode);
179 info->is_min = !strncmp(buf, "MN", 2);
180 info->is_max = !strncmp(buf, "MX", 2);
181 info->is_avg = !strncmp(buf, "AG", 2);
182
183 /*
184 * Note:
185 * - Protocol doesn't distinguish "resistance" from "beep" mode.
186 * - "DB" shows the logarithmic ratio of input voltage to a
187 * pre-stored (user-changeable) value in the DMM.
188 */
189
190 /* Byte 13: Always '\r' (carriage return, 0x0d, 13) */
191}
192
193static void handle_flags(struct sr_datafeed_analog *analog, float *floatval,
194 int *exponent, const struct metex14_info *info)
195{
196 int factor;
197
198 (void)exponent;
199
200 /* Factors */
201 factor = 0;
202 if (info->is_pico)
203 factor -= 12;
204 if (info->is_nano)
205 factor -= 9;
206 if (info->is_micro)
207 factor -= 6;
208 if (info->is_milli)
209 factor -= 3;
210 if (info->is_kilo)
211 factor += 3;
212 if (info->is_mega)
213 factor += 6;
214 *floatval *= powf(10, factor);
215
216 /* Measurement modes */
217 if (info->is_volt) {
218 analog->meaning->mq = SR_MQ_VOLTAGE;
219 analog->meaning->unit = SR_UNIT_VOLT;
220 }
221 if (info->is_ampere) {
222 analog->meaning->mq = SR_MQ_CURRENT;
223 analog->meaning->unit = SR_UNIT_AMPERE;
224 }
225 if (info->is_ohm) {
226 analog->meaning->mq = SR_MQ_RESISTANCE;
227 analog->meaning->unit = SR_UNIT_OHM;
228 }
229 if (info->is_hertz) {
230 analog->meaning->mq = SR_MQ_FREQUENCY;
231 analog->meaning->unit = SR_UNIT_HERTZ;
232 }
233 if (info->is_farad) {
234 analog->meaning->mq = SR_MQ_CAPACITANCE;
235 analog->meaning->unit = SR_UNIT_FARAD;
236 }
237 if (info->is_temperature) {
238 analog->meaning->mq = SR_MQ_TEMPERATURE;
239 if (info->is_celsius)
240 analog->meaning->unit = SR_UNIT_CELSIUS;
241 else if (info->is_fahrenheit)
242 analog->meaning->unit = SR_UNIT_FAHRENHEIT;
243 else
244 analog->meaning->unit = SR_UNIT_UNITLESS;
245 }
246 if (info->is_diode) {
247 analog->meaning->mq = SR_MQ_VOLTAGE;
248 analog->meaning->unit = SR_UNIT_VOLT;
249 }
250 if (info->is_power) {
251 analog->meaning->mq = SR_MQ_POWER;
252 if (info->is_decibel_mw)
253 analog->meaning->unit = SR_UNIT_DECIBEL_MW;
254 else if (info->is_watt)
255 analog->meaning->unit = SR_UNIT_WATT;
256 else
257 analog->meaning->unit = SR_UNIT_UNITLESS;
258 }
259 if (info->is_power_factor) {
260 analog->meaning->mq = SR_MQ_POWER_FACTOR;
261 analog->meaning->unit = SR_UNIT_UNITLESS;
262 }
263 if (info->is_gain) {
264 analog->meaning->mq = SR_MQ_GAIN;
265 analog->meaning->unit = SR_UNIT_DECIBEL_VOLT;
266 }
267 if (info->is_hfe) {
268 analog->meaning->mq = SR_MQ_GAIN;
269 analog->meaning->unit = SR_UNIT_UNITLESS;
270 }
271 if (info->is_logic) {
272 analog->meaning->mq = SR_MQ_GAIN;
273 analog->meaning->unit = SR_UNIT_UNITLESS;
274 }
275
276 /* Measurement related flags */
277 if (info->is_ac)
278 analog->meaning->mqflags |= SR_MQFLAG_AC;
279 if (info->is_dc)
280 analog->meaning->mqflags |= SR_MQFLAG_DC;
281 if (info->is_diode)
282 analog->meaning->mqflags |= SR_MQFLAG_DIODE | SR_MQFLAG_DC;
283 if (info->is_min)
284 analog->meaning->mqflags |= SR_MQFLAG_MIN;
285 if (info->is_max)
286 analog->meaning->mqflags |= SR_MQFLAG_MAX;
287 if (info->is_avg)
288 analog->meaning->mqflags |= SR_MQFLAG_AVG;
289}
290
291static gboolean flags_valid(const struct metex14_info *info)
292{
293 int count;
294
295 /* Does the packet have more than one multiplier? */
296 count = 0;
297 count += (info->is_pico) ? 1 : 0;
298 count += (info->is_nano) ? 1 : 0;
299 count += (info->is_micro) ? 1 : 0;
300 count += (info->is_milli) ? 1 : 0;
301 count += (info->is_kilo) ? 1 : 0;
302 count += (info->is_mega) ? 1 : 0;
303 if (count > 1) {
304 sr_dbg("More than one multiplier detected in packet.");
305 return FALSE;
306 }
307
308 /* Does the packet "measure" more than one type of value? */
309 count = 0;
310 count += (info->is_ac) ? 1 : 0;
311 count += (info->is_dc) ? 1 : 0;
312 count += (info->is_resistance) ? 1 : 0;
313 count += (info->is_capacity) ? 1 : 0;
314 count += (info->is_temperature) ? 1 : 0;
315 count += (info->is_diode) ? 1 : 0;
316 count += (info->is_frequency) ? 1 : 0;
317 if (count > 1) {
318 sr_dbg("More than one measurement type detected in packet.");
319 return FALSE;
320 }
321
322 /* Both AC and DC set? */
323 if (info->is_ac && info->is_dc) {
324 sr_dbg("Both AC and DC flags detected in packet.");
325 return FALSE;
326 }
327
328 return TRUE;
329}
330
331#ifdef HAVE_SERIAL_COMM
332SR_PRIV int sr_metex14_packet_request(struct sr_serial_dev_inst *serial)
333{
334 const uint8_t wbuf = 'D';
335 size_t wrlen;
336 int ret;
337
338 sr_spew("Requesting DMM packet.");
339
340 wrlen = sizeof(wbuf);
341 ret = serial_write_blocking(serial, &wbuf, wrlen, 0);
342 if (ret < 0)
343 return ret;
344 if ((size_t)ret != wrlen)
345 return SR_ERR_IO;
346
347 return SR_OK;
348}
349#endif
350
351SR_PRIV gboolean sr_metex14_packet_valid(const uint8_t *buf)
352{
353 struct metex14_info info;
354
355 memset(&info, 0x00, sizeof(struct metex14_info));
356 parse_flags((const char *)buf, &info);
357
358 if (!flags_valid(&info))
359 return FALSE;
360
361 if (buf[13] != '\r')
362 return FALSE;
363
364 return TRUE;
365}
366
367SR_PRIV gboolean sr_metex14_4packets_valid(const uint8_t *buf)
368{
369 struct metex14_info info;
370 size_t ch_idx;
371 const uint8_t *ch_buf;
372
373 ch_buf = buf;
374 for (ch_idx = 0; ch_idx < 4; ch_idx++) {
375 if (ch_buf[13] != '\r')
376 return FALSE;
377 memset(&info, 0x00, sizeof(info));
378 parse_flags((const char *)ch_buf, &info);
379 if (!flags_valid(&info))
380 return FALSE;
381 ch_buf += METEX14_PACKET_SIZE;
382 }
383 return TRUE;
384}
385
386/**
387 * Parse a protocol packet.
388 *
389 * @param buf Buffer containing the protocol packet. Must not be NULL.
390 * @param floatval Pointer to a float variable. That variable will be modified
391 * in-place depending on the protocol packet. Must not be NULL.
392 * @param analog Pointer to a struct sr_datafeed_analog. The struct will be
393 * filled with data according to the protocol packet.
394 * Must not be NULL.
395 * @param info Pointer to a struct metex14_info. The struct will be filled
396 * with data according to the protocol packet. Must not be NULL.
397 *
398 * @return SR_OK upon success, SR_ERR upon failure. Upon errors, the
399 * 'analog' variable contents are undefined and should not be used.
400 */
401SR_PRIV int sr_metex14_parse(const uint8_t *buf, float *floatval,
402 struct sr_datafeed_analog *analog, void *info)
403{
404 int ret, exponent = 0;
405 struct metex14_info *info_local;
406
407 info_local = info;
408
409 /* Don't print byte 13. That one contains the carriage return. */
410 sr_dbg("DMM packet: \"%.13s\"", buf);
411
412 memset(info_local, 0x00, sizeof(struct metex14_info));
413
414 if ((ret = parse_value(buf, info_local, floatval, &exponent)) != SR_OK) {
415 sr_dbg("Error parsing value: %d.", ret);
416 return ret;
417 }
418
419 parse_flags((const char *)buf, info_local);
420 handle_flags(analog, floatval, &exponent, info_local);
421
422 analog->encoding->digits = -exponent;
423 analog->spec->spec_digits = -exponent;
424
425 return SR_OK;
426}
427
428/**
429 * Parse one out of four values of a four-display Metex14 variant.
430 *
431 * The caller's 'info' parameter can be used to track the channel index,
432 * as long as the information is kept across calls to the 14-byte packet
433 * parse routine (which clears the 'info' container).
434 *
435 * Since analog values have further details in the 'analog' parameter,
436 * passing multiple values per parse routine call is problematic. So we
437 * prefer the approach of passing one value per call, which is most
438 * reliable and shall fit every similar device with multiple displays.
439 *
440 * The meters which use this parse routine send one 14-byte packet per
441 * display. Each packet has the regular Metex14 layout.
442 */
443SR_PRIV int sr_metex14_4packets_parse(const uint8_t *buf, float *floatval,
444 struct sr_datafeed_analog *analog, void *info)
445{
446 struct metex14_info *info_local;
447 size_t ch_idx;
448 const uint8_t *ch_buf;
449 int rc;
450
451 info_local = info;
452 ch_idx = info_local->ch_idx;
453 ch_buf = buf + ch_idx * METEX14_PACKET_SIZE;
454 rc = sr_metex14_parse(ch_buf, floatval, analog, info);
455 info_local->ch_idx = ch_idx + 1;
456 return rc;
457}