]> sigrok.org Git - libsigrok.git/blame - src/hardware/scpi-dmm/api.c
scpi-dmm: Add support for Agilent 34460A
[libsigrok.git] / src / hardware / scpi-dmm / api.c
CommitLineData
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1/*
2 * This file is part of the libsigrok project.
3 *
4 * Copyright (C) 2018 Gerhard Sittig <gerhard.sittig@gmx.net>
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
3cdad416 20#include <string.h>
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21#include "protocol.h"
22
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23static struct sr_dev_driver scpi_dmm_driver_info;
24
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25static const uint32_t scanopts[] = {
26 SR_CONF_CONN,
31e65c62 27 SR_CONF_SERIALCOMM,
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28};
29
30static const uint32_t drvopts[] = {
31 SR_CONF_MULTIMETER,
32};
33
1d2f9963 34static const uint32_t devopts_generic[] = {
3cdad416 35 SR_CONF_CONTINUOUS,
7d95afb9 36 SR_CONF_CONN | SR_CONF_GET,
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37 SR_CONF_LIMIT_SAMPLES | SR_CONF_GET | SR_CONF_SET,
38 SR_CONF_LIMIT_MSEC | SR_CONF_GET | SR_CONF_SET,
39 SR_CONF_MEASURED_QUANTITY | SR_CONF_GET | SR_CONF_SET | SR_CONF_LIST,
40};
41
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42static const uint32_t devopts_generic_range[] = {
43 SR_CONF_CONTINUOUS,
44 SR_CONF_CONN | SR_CONF_GET,
45 SR_CONF_LIMIT_SAMPLES | SR_CONF_GET | SR_CONF_SET,
46 SR_CONF_LIMIT_MSEC | SR_CONF_GET | SR_CONF_SET,
47 SR_CONF_MEASURED_QUANTITY | SR_CONF_GET | SR_CONF_SET | SR_CONF_LIST,
48 SR_CONF_RANGE | SR_CONF_GET | SR_CONF_SET | SR_CONF_LIST,
49};
50
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51static const struct scpi_command cmdset_agilent[] = {
52 { DMM_CMD_SETUP_REMOTE, "\n", },
53 { DMM_CMD_SETUP_FUNC, "CONF:%s", },
54 { DMM_CMD_QUERY_FUNC, "CONF?", },
7fcdc35e 55 { DMM_CMD_START_ACQ, "INIT", },
3cdad416 56 { DMM_CMD_STOP_ACQ, "ABORT", },
b74cc88d 57 { DMM_CMD_QUERY_VALUE, "FETCH?", },
3cdad416 58 { DMM_CMD_QUERY_PREC, "CONF?", },
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59 { DMM_CMD_QUERY_RANGE_AUTO, "%s:RANGE:AUTO?", },
60 { DMM_CMD_QUERY_RANGE, "%s:RANGE?", },
b74cc88d 61 { DMM_CMD_SETUP_RANGE, "CONF:%s %s", },
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62 ALL_ZERO,
63};
64
a1619831 65/*
1c8110db 66 * cmdset_hp is used for the 34401A, which was added to this code after the
a1619831
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67 * 34405A and 34465A. It differs in starting the measurement with INIT: using
68 * MEAS without a trailing '?' (as used for the 34405A) is not valid for the
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69 * 34401A and gives an error.
70 * I'm surprised the same instruction sequence doesn't work and INIT may
71 * work for both, but I don't have the others to re-test.
a1619831 72 *
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73 * cmdset_hp also works well for the 34410A, using cmdset_agilent throws an
74 * error on 'MEAS' without a '?'.
75 *
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76 * On the 34401A,
77 * MEAS <optional parameters> ? configures, arms, triggers and waits
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78 * for a reading
79 * CONF <parameters> configures
1c8110db 80 * INIT prepares for triggering (trigger mode is not set, assumed
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81 * internal - external might time out)
82 * *OPC waits for completion, and
83 * READ? retrieves the result
84 */
85static const struct scpi_command cmdset_hp[] = {
86 { DMM_CMD_SETUP_REMOTE, "\n", },
87 { DMM_CMD_SETUP_FUNC, "CONF:%s", },
88 { DMM_CMD_QUERY_FUNC, "CONF?", },
89 { DMM_CMD_START_ACQ, "INIT", },
90 { DMM_CMD_STOP_ACQ, "ABORT", },
91 { DMM_CMD_QUERY_VALUE, "READ?", },
92 { DMM_CMD_QUERY_PREC, "CONF?", },
93 ALL_ZERO,
94};
95
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96static const struct scpi_command cmdset_gwinstek[] = {
97 { DMM_CMD_SETUP_REMOTE, "SYST:REM", },
4c80a272 98 { DMM_CMD_SETUP_LOCAL, "SYST:LOC", },
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99 { DMM_CMD_SETUP_FUNC, "CONF:%s", },
100 { DMM_CMD_QUERY_FUNC, "CONF:STAT:FUNC?", },
101 { DMM_CMD_START_ACQ, "*CLS;SYST:REM", },
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102 { DMM_CMD_QUERY_VALUE, "VAL1?", },
103 { DMM_CMD_QUERY_PREC, "SENS:DET:RATE?", },
104 ALL_ZERO,
105};
106
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107static const struct scpi_command cmdset_gwinstek_906x[] = {
108 { DMM_CMD_SETUP_REMOTE, "SYST:REM", },
4c80a272 109 { DMM_CMD_SETUP_LOCAL, "SYST:LOC", },
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110 { DMM_CMD_SETUP_FUNC, "CONF:%s", },
111 { DMM_CMD_QUERY_FUNC, "CONF?", },
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112 { DMM_CMD_START_ACQ, "INIT", },
113 { DMM_CMD_STOP_ACQ, "ABORT", },
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114 { DMM_CMD_QUERY_VALUE, "VAL1?", },
115 { DMM_CMD_QUERY_PREC, "SENS:DET:RATE?", },
116 ALL_ZERO,
117};
118
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119static const struct scpi_command cmdset_owon[] = {
120 { DMM_CMD_SETUP_REMOTE, "SYST:REM", },
121 { DMM_CMD_SETUP_LOCAL, "SYST:LOC", },
122 { DMM_CMD_SETUP_FUNC, "CONF:%s", },
123 { DMM_CMD_QUERY_FUNC, "FUNC?", },
124 { DMM_CMD_QUERY_VALUE, "MEAS1?", },
125 ALL_ZERO,
126};
127
64d03de1 128static const struct mqopt_item mqopts_agilent_34405a[] = {
1de14d67 129 { SR_MQ_VOLTAGE, SR_MQFLAG_DC, "VOLT:DC", "VOLT ", NO_DFLT_PREC, FLAGS_NONE, },
e90551c3 130 { SR_MQ_VOLTAGE, SR_MQFLAG_AC, "VOLT:AC", "VOLT:AC ", NO_DFLT_PREC, FLAG_CONF_DELAY | FLAG_MEAS_DELAY, },
1de14d67 131 { SR_MQ_CURRENT, SR_MQFLAG_DC, "CURR:DC", "CURR ", NO_DFLT_PREC, FLAGS_NONE, },
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132 { SR_MQ_CURRENT, SR_MQFLAG_AC, "CURR:AC", "CURR:AC ", NO_DFLT_PREC, FLAG_CONF_DELAY | FLAG_MEAS_DELAY, },
133 { SR_MQ_RESISTANCE, 0, "RES", "RES ", NO_DFLT_PREC, FLAG_MEAS_DELAY, },
134 { SR_MQ_RESISTANCE, SR_MQFLAG_FOUR_WIRE, "FRES", "FRES ", NO_DFLT_PREC, FLAG_MEAS_DELAY, },
5bf642db 135 { SR_MQ_CONTINUITY, 0, "CONT", "CONT", -1, FLAG_NO_RANGE, },
1de14d67 136 { SR_MQ_CAPACITANCE, 0, "CAP", "CAP ", NO_DFLT_PREC, FLAGS_NONE, },
5bf642db 137 { SR_MQ_VOLTAGE, SR_MQFLAG_DC | SR_MQFLAG_DIODE, "DIOD", "DIOD", -4, FLAG_NO_RANGE, },
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138 { SR_MQ_TEMPERATURE, 0, "TEMP", "TEMP ", NO_DFLT_PREC, FLAG_NO_RANGE | FLAG_MEAS_DELAY, },
139 { SR_MQ_FREQUENCY, 0, "FREQ", "FREQ ", NO_DFLT_PREC, FLAG_NO_RANGE | FLAG_MEAS_DELAY, },
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140};
141
a1619831 142static const struct mqopt_item mqopts_agilent_34401a[] = {
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143 { SR_MQ_VOLTAGE, SR_MQFLAG_DC, "VOLT:DC", "VOLT ", NO_DFLT_PREC, FLAGS_NONE, },
144 { SR_MQ_VOLTAGE, SR_MQFLAG_AC, "VOLT:AC", "VOLT:AC ", NO_DFLT_PREC, FLAGS_NONE, },
145 { SR_MQ_CURRENT, SR_MQFLAG_DC, "CURR:DC", "CURR ", NO_DFLT_PREC, FLAGS_NONE, },
146 { SR_MQ_CURRENT, SR_MQFLAG_AC, "CURR:AC", "CURR:AC ", NO_DFLT_PREC, FLAGS_NONE, },
147 { SR_MQ_RESISTANCE, 0, "RES", "RES ", NO_DFLT_PREC, FLAGS_NONE, },
148 { SR_MQ_RESISTANCE, SR_MQFLAG_FOUR_WIRE, "FRES", "FRES ", NO_DFLT_PREC, FLAGS_NONE, },
149 { SR_MQ_CONTINUITY, 0, "CONT", "CONT", -1, FLAGS_NONE, },
150 { SR_MQ_VOLTAGE, SR_MQFLAG_DC | SR_MQFLAG_DIODE, "DIOD", "DIOD", -4, FLAGS_NONE, },
151 { SR_MQ_FREQUENCY, 0, "FREQ", "FREQ ", NO_DFLT_PREC, FLAGS_NONE, },
152 { SR_MQ_TIME, 0, "PER", "PER ", NO_DFLT_PREC, FLAGS_NONE, },
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153};
154
d0b602f0 155static const struct mqopt_item mqopts_gwinstek_gdm8200a[] = {
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156 { SR_MQ_VOLTAGE, SR_MQFLAG_DC, "VOLT:DC", "01", NO_DFLT_PREC, FLAGS_NONE, },
157 { SR_MQ_VOLTAGE, SR_MQFLAG_AC, "VOLT:AC", "02", NO_DFLT_PREC, FLAGS_NONE, },
158 { SR_MQ_CURRENT, SR_MQFLAG_DC, "CURR:DC", "03", NO_DFLT_PREC, FLAGS_NONE, },
159 { SR_MQ_CURRENT, SR_MQFLAG_AC, "CURR:AC", "04", NO_DFLT_PREC, FLAGS_NONE, },
160 { SR_MQ_CURRENT, SR_MQFLAG_DC, "CURR:DC", "05", NO_DFLT_PREC, FLAGS_NONE, }, /* mA */
161 { SR_MQ_CURRENT, SR_MQFLAG_AC, "CURR:AC", "06", NO_DFLT_PREC, FLAGS_NONE, }, /* mA */
162 { SR_MQ_RESISTANCE, 0, "RES", "07", NO_DFLT_PREC, FLAGS_NONE, },
163 { SR_MQ_RESISTANCE, SR_MQFLAG_FOUR_WIRE, "FRES", "16", NO_DFLT_PREC, FLAGS_NONE, },
164 { SR_MQ_CONTINUITY, 0, "CONT", "13", -1, FLAGS_NONE, },
165 { SR_MQ_VOLTAGE, SR_MQFLAG_DC | SR_MQFLAG_DIODE, "DIOD", "17", -4, FLAGS_NONE, },
166 { SR_MQ_TEMPERATURE, 0, "TEMP", "09", NO_DFLT_PREC, FLAGS_NONE, }, /* Celsius */
167 { SR_MQ_TEMPERATURE, 0, "TEMP", "15", NO_DFLT_PREC, FLAGS_NONE, }, /* Fahrenheit */
168 { SR_MQ_FREQUENCY, 0, "FREQ", "08", NO_DFLT_PREC, FLAGS_NONE, },
169 { SR_MQ_TIME, 0, "PER", "14", NO_DFLT_PREC, FLAGS_NONE, },
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170};
171
868fc65e 172static const struct mqopt_item mqopts_gwinstek_gdm906x[] = {
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173 { SR_MQ_VOLTAGE, SR_MQFLAG_DC, "VOLT:DC", "VOLT ", NO_DFLT_PREC, FLAGS_NONE, },
174 { SR_MQ_VOLTAGE, SR_MQFLAG_AC, "VOLT:AC", "VOLT:AC", NO_DFLT_PREC, FLAGS_NONE, },
175 { SR_MQ_CURRENT, SR_MQFLAG_DC, "CURR:DC", "CURR ", NO_DFLT_PREC, FLAGS_NONE, },
176 { SR_MQ_CURRENT, SR_MQFLAG_AC, "CURR:AC", "CURR:AC", NO_DFLT_PREC, FLAGS_NONE, },
177 { SR_MQ_RESISTANCE, 0, "RES", "RES", NO_DFLT_PREC, FLAGS_NONE, },
178 { SR_MQ_RESISTANCE, SR_MQFLAG_FOUR_WIRE, "FRES", "FRES", NO_DFLT_PREC, FLAGS_NONE, },
179 { SR_MQ_CONTINUITY, 0, "CONT", "CONT", -1, FLAGS_NONE, },
180 { SR_MQ_VOLTAGE, SR_MQFLAG_DC | SR_MQFLAG_DIODE, "DIOD", "DIOD", -4, FLAGS_NONE, },
181 { SR_MQ_TEMPERATURE, 0, "TEMP", "TEMP", NO_DFLT_PREC, FLAGS_NONE, },
182 { SR_MQ_FREQUENCY, 0, "FREQ", "FREQ", NO_DFLT_PREC, FLAGS_NONE, },
183 { SR_MQ_TIME, 0, "PER", "PER", NO_DFLT_PREC, FLAGS_NONE, },
184 { SR_MQ_CAPACITANCE, 0, "CAP", "CAP", NO_DFLT_PREC, FLAGS_NONE, },
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185};
186
2111d157 187static const struct mqopt_item mqopts_owon_xdm2041[] = {
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188 { SR_MQ_VOLTAGE, SR_MQFLAG_AC, "VOLT:AC", "VOLT AC", NO_DFLT_PREC, FLAGS_NONE, },
189 { SR_MQ_VOLTAGE, SR_MQFLAG_DC, "VOLT:DC", "VOLT", NO_DFLT_PREC, FLAGS_NONE, },
190 { SR_MQ_CURRENT, SR_MQFLAG_AC, "CURR:AC", "CURR AC", NO_DFLT_PREC, FLAGS_NONE, },
191 { SR_MQ_CURRENT, SR_MQFLAG_DC, "CURR:DC", "CURR", NO_DFLT_PREC, FLAGS_NONE, },
192 { SR_MQ_RESISTANCE, 0, "RES", "RES", NO_DFLT_PREC, FLAGS_NONE, },
193 { SR_MQ_RESISTANCE, SR_MQFLAG_FOUR_WIRE, "FRES", "FRES", NO_DFLT_PREC, FLAGS_NONE, },
194 { SR_MQ_CONTINUITY, 0, "CONT", "CONT", -1, FLAGS_NONE, },
195 { SR_MQ_VOLTAGE, SR_MQFLAG_DC | SR_MQFLAG_DIODE, "DIOD", "DIOD", -4, FLAGS_NONE, },
196 { SR_MQ_TEMPERATURE, 0, "TEMP", "TEMP", NO_DFLT_PREC, FLAGS_NONE, },
197 { SR_MQ_FREQUENCY, 0, "FREQ", "FREQ", NO_DFLT_PREC, FLAGS_NONE, },
198 { SR_MQ_CAPACITANCE, 0, "CAP", "CAP", NO_DFLT_PREC, FLAGS_NONE, },
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199};
200
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201SR_PRIV const struct scpi_dmm_model models[] = {
202 {
203 "Agilent", "34405A",
64d03de1 204 1, 5, cmdset_agilent, ARRAY_AND_SIZE(mqopts_agilent_34405a),
3cdad416 205 scpi_dmm_get_meas_agilent,
a0418c20 206 ARRAY_AND_SIZE(devopts_generic_range),
e90551c3 207 0, 200 * 1000, 2500 * 1000, 0, FALSE,
a0418c20 208 scpi_dmm_get_range_text, scpi_dmm_set_range_from_text, NULL,
3cdad416 209 },
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210 {
211 "Agilent", "34410A",
212 1, 6, cmdset_hp, ARRAY_AND_SIZE(mqopts_agilent_34405a),
213 scpi_dmm_get_meas_agilent,
214 ARRAY_AND_SIZE(devopts_generic),
e90551c3 215 0, 0, 0, 0, FALSE,
a0418c20 216 NULL, NULL, NULL,
d8064712
SP
217 },
218 {
219 "Agilent", "34460A",
220 1, 6, cmdset_agilent, ARRAY_AND_SIZE(mqopts_agilent_34405a),
221 scpi_dmm_get_meas_agilent,
222 ARRAY_AND_SIZE(devopts_generic_range),
223 0, 0, 10 * 1000, 0, FALSE,
224 scpi_dmm_get_range_text, scpi_dmm_set_range_from_text, NULL,
85cff5cf 225 },
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226 {
227 "GW", "GDM8251A",
228 1, 6, cmdset_gwinstek, ARRAY_AND_SIZE(mqopts_gwinstek_gdm8200a),
229 scpi_dmm_get_meas_gwinstek,
230 ARRAY_AND_SIZE(devopts_generic),
e90551c3 231 2500 * 1000, 0, 0, 0, FALSE,
a0418c20 232 NULL, NULL, NULL,
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233 },
234 {
235 "GW", "GDM8255A",
236 1, 6, cmdset_gwinstek, ARRAY_AND_SIZE(mqopts_gwinstek_gdm8200a),
237 scpi_dmm_get_meas_gwinstek,
238 ARRAY_AND_SIZE(devopts_generic),
e90551c3 239 2500 * 1000, 0, 0, 0, FALSE,
a0418c20 240 NULL, NULL, NULL,
d0b602f0 241 },
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242 {
243 "GWInstek", "GDM9060",
244 1, 6, cmdset_gwinstek_906x, ARRAY_AND_SIZE(mqopts_gwinstek_gdm906x),
245 scpi_dmm_get_meas_agilent,
246 ARRAY_AND_SIZE(devopts_generic),
e90551c3 247 0, 0, 0, 0, FALSE,
a0418c20 248 NULL, NULL, NULL,
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249 },
250 {
251 "GWInstek", "GDM9061",
252 1, 6, cmdset_gwinstek_906x, ARRAY_AND_SIZE(mqopts_gwinstek_gdm906x),
253 scpi_dmm_get_meas_agilent,
254 ARRAY_AND_SIZE(devopts_generic),
e90551c3 255 0, 0, 0, 0, FALSE,
a0418c20 256 NULL, NULL, NULL,
868fc65e 257 },
25879a34
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258 {
259 "HP", "34401A",
260 1, 6, cmdset_hp, ARRAY_AND_SIZE(mqopts_agilent_34401a),
261 scpi_dmm_get_meas_agilent,
262 ARRAY_AND_SIZE(devopts_generic),
263 /* 34401A: typ. 1020ms for AC readings (default is 1000ms). */
e90551c3 264 1500 * 1000, 0, 0, 0, FALSE,
a0418c20 265 NULL, NULL, NULL,
25879a34
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266 },
267 {
268 "Keysight", "34465A",
e3c85285 269 1, 6, cmdset_agilent, ARRAY_AND_SIZE(mqopts_agilent_34405a),
25879a34 270 scpi_dmm_get_meas_agilent,
a0418c20 271 ARRAY_AND_SIZE(devopts_generic_range),
18426d1c 272 0, 0, 10 * 1000, 0, FALSE,
a0418c20 273 scpi_dmm_get_range_text, scpi_dmm_set_range_from_text, NULL,
25879a34 274 },
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275 {
276 "OWON", "XDM2041",
277 1, 5, cmdset_owon, ARRAY_AND_SIZE(mqopts_owon_xdm2041),
278 scpi_dmm_get_meas_gwinstek,
279 ARRAY_AND_SIZE(devopts_generic),
e90551c3 280 0, 0, 0, 1e9, TRUE,
a0418c20 281 NULL, NULL, NULL,
2111d157 282 },
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283};
284
285static const struct scpi_dmm_model *is_compatible(const char *vendor, const char *model)
7a396ff5 286{
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287 size_t i;
288 const struct scpi_dmm_model *entry;
289
290 for (i = 0; i < ARRAY_SIZE(models); i++) {
291 entry = &models[i];
292 if (!entry->vendor || !entry->model)
293 continue;
294 if (strcmp(vendor, entry->vendor) != 0)
295 continue;
296 if (strcmp(model, entry->model) != 0)
297 continue;
298 return entry;
299 }
7a396ff5 300
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301 return NULL;
302}
7a396ff5 303
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304/*
305 * Some devices (such as Owon XDM2041) do not support the standard
306 * OPeration Complete? command. This function tests the command with
307 * a short timeout, and returns TRUE if any reply (busy or not) is received.
308 */
309static gboolean probe_opc_support(struct sr_scpi_dev_inst *scpi)
310{
311 gboolean result;
312 GString *response;
313
314 response = g_string_sized_new(128);
315 result = TRUE;
316 if (sr_scpi_get_data(scpi, SCPI_CMD_OPC, &response) != SR_OK)
317 result = FALSE;
318 g_string_free(response, TRUE);
319
320 return result;
321}
322
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323static struct sr_dev_inst *probe_device(struct sr_scpi_dev_inst *scpi)
324{
325 struct sr_scpi_hw_info *hw_info;
326 int ret;
327 const char *vendor;
328 const struct scpi_dmm_model *model;
329 struct sr_dev_inst *sdi;
330 struct dev_context *devc;
331 size_t i;
332 gchar *channel_name;
4c80a272 333 const char *command;
3cdad416 334
28877994 335 ret = sr_scpi_get_hw_id(scpi, &hw_info);
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336 if (ret != SR_OK) {
337 sr_info("Could not get IDN response.");
338 return NULL;
339 }
340 vendor = sr_vendor_alias(hw_info->manufacturer);
341 model = is_compatible(vendor, hw_info->model);
342 if (!model) {
343 sr_scpi_hw_info_free(hw_info);
344 return NULL;
345 }
7a396ff5 346
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347 if (model->check_opc && !probe_opc_support(scpi))
348 scpi->no_opc_command = TRUE;
349
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350 sdi = g_malloc0(sizeof(*sdi));
351 sdi->vendor = g_strdup(hw_info->manufacturer);
352 sdi->model = g_strdup(hw_info->model);
353 sdi->version = g_strdup(hw_info->firmware_version);
354 sdi->serial_num = g_strdup(hw_info->serial_number);
355 sdi->conn = scpi;
356 sdi->driver = &scpi_dmm_driver_info;
357 sdi->inst_type = SR_INST_SCPI;
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358 ret = sr_scpi_connection_id(scpi, &sdi->connection_id);
359 if (ret != SR_OK) {
360 g_free(sdi->connection_id);
361 sdi->connection_id = NULL;
362 }
3cdad416 363 sr_scpi_hw_info_free(hw_info);
1c8110db 364 if (model->read_timeout_us) /* non-default read timeout */
a1619831 365 scpi->read_timeout_us = model->read_timeout_us;
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366 devc = g_malloc0(sizeof(*devc));
367 sdi->priv = devc;
368 devc->num_channels = model->num_channels;
369 devc->cmdset = model->cmdset;
370 devc->model = model;
371
372 for (i = 0; i < devc->num_channels; i++) {
373 channel_name = g_strdup_printf("P%zu", i + 1);
374 sr_channel_new(sdi, 0, SR_CHANNEL_ANALOG, TRUE, channel_name);
375 }
376
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377 /*
378 * If device has DMM_CMD_SETUP_LOCAL command, send it now. To avoid
379 * leaving device in remote mode (if only a "scan" is run).
380 */
381 command = sr_scpi_cmd_get(devc->cmdset, DMM_CMD_SETUP_LOCAL);
382 if (command && *command) {
383 scpi_dmm_cmd_delay(scpi);
384 sr_scpi_send(scpi, command);
385 }
386
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387 return sdi;
388}
7a396ff5 389
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390static GSList *scan(struct sr_dev_driver *di, GSList *options)
391{
392 return sr_scpi_scan(di->context, options, probe_device);
7a396ff5
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393}
394
395static int dev_open(struct sr_dev_inst *sdi)
396{
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397 struct sr_scpi_dev_inst *scpi;
398 int ret;
7a396ff5 399
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400 scpi = sdi->conn;
401 ret = sr_scpi_open(scpi);
402 if (ret < 0) {
403 sr_err("Failed to open SCPI device: %s.", sr_strerror(ret));
404 return SR_ERR;
405 }
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406
407 return SR_OK;
408}
409
410static int dev_close(struct sr_dev_inst *sdi)
411{
4c80a272 412 struct dev_context *devc;
3cdad416 413 struct sr_scpi_dev_inst *scpi;
4c80a272 414 const char *command;
7a396ff5 415
4c80a272 416 devc = sdi->priv;
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417 scpi = sdi->conn;
418 if (!scpi)
419 return SR_ERR_BUG;
7a396ff5 420
3cdad416
GS
421 sr_dbg("DIAG: sdi->status %d.", sdi->status - SR_ST_NOT_FOUND);
422 if (sdi->status <= SR_ST_INACTIVE)
423 return SR_OK;
424
4c80a272
TK
425 /*
426 * If device has DMM_CMD_SETUP_LOCAL command, send it now
427 * to avoid leaving device in remote mode.
428 */
429 command = sr_scpi_cmd_get(devc->cmdset, DMM_CMD_SETUP_LOCAL);
430 if (command && *command) {
431 scpi_dmm_cmd_delay(scpi);
432 sr_scpi_send(scpi, command);
433 }
434
3cdad416 435 return sr_scpi_close(scpi);
7a396ff5
GS
436}
437
438static int config_get(uint32_t key, GVariant **data,
439 const struct sr_dev_inst *sdi, const struct sr_channel_group *cg)
440{
3cdad416
GS
441 struct dev_context *devc;
442 enum sr_mq mq;
443 enum sr_mqflag mqflag;
444 GVariant *arr[2];
7a396ff5 445 int ret;
a0418c20 446 const char *range;
7a396ff5 447
7a396ff5
GS
448 (void)cg;
449
3cdad416
GS
450 devc = sdi->priv;
451
7a396ff5 452 switch (key) {
7d95afb9
GS
453 case SR_CONF_CONN:
454 if (!sdi || !sdi->connection_id)
455 return SR_ERR_NA;
456 *data = g_variant_new_string(sdi->connection_id);
457 return SR_OK;
3cdad416
GS
458 case SR_CONF_LIMIT_SAMPLES:
459 case SR_CONF_LIMIT_MSEC:
460 return sr_sw_limits_config_get(&devc->limits, key, data);
461 case SR_CONF_MEASURED_QUANTITY:
08f3b427 462 ret = scpi_dmm_get_mq(sdi, &mq, &mqflag, NULL, NULL);
3cdad416
GS
463 if (ret != SR_OK)
464 return ret;
465 arr[0] = g_variant_new_uint32(mq);
466 arr[1] = g_variant_new_uint64(mqflag);
467 *data = g_variant_new_tuple(arr, ARRAY_SIZE(arr));
468 return SR_OK;
a0418c20
GS
469 case SR_CONF_RANGE:
470 if (!devc || !devc->model->get_range_text)
471 return SR_ERR_NA;
472 range = devc->model->get_range_text(sdi);
473 if (!range || !*range)
474 return SR_ERR_NA;
475 *data = g_variant_new_string(range);
476 return SR_OK;
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GS
477 default:
478 return SR_ERR_NA;
479 }
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GS
480}
481
482static int config_set(uint32_t key, GVariant *data,
483 const struct sr_dev_inst *sdi, const struct sr_channel_group *cg)
484{
3cdad416
GS
485 struct dev_context *devc;
486 enum sr_mq mq;
487 enum sr_mqflag mqflag;
488 GVariant *tuple_child;
a0418c20 489 const char *range;
7a396ff5 490
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GS
491 (void)cg;
492
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493 devc = sdi->priv;
494
7a396ff5 495 switch (key) {
3cdad416
GS
496 case SR_CONF_LIMIT_SAMPLES:
497 case SR_CONF_LIMIT_MSEC:
498 return sr_sw_limits_config_set(&devc->limits, key, data);
499 case SR_CONF_MEASURED_QUANTITY:
500 tuple_child = g_variant_get_child_value(data, 0);
501 mq = g_variant_get_uint32(tuple_child);
ff5fb185 502 g_variant_unref(tuple_child);
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503 tuple_child = g_variant_get_child_value(data, 1);
504 mqflag = g_variant_get_uint64(tuple_child);
505 g_variant_unref(tuple_child);
506 return scpi_dmm_set_mq(sdi, mq, mqflag);
a0418c20
GS
507 case SR_CONF_RANGE:
508 if (!devc || !devc->model->set_range_from_text)
509 return SR_ERR_NA;
510 range = g_variant_get_string(data, NULL);
511 return devc->model->set_range_from_text(sdi, range);
7a396ff5 512 default:
3cdad416 513 return SR_ERR_NA;
7a396ff5 514 }
7a396ff5
GS
515}
516
517static int config_list(uint32_t key, GVariant **data,
518 const struct sr_dev_inst *sdi, const struct sr_channel_group *cg)
519{
3cdad416
GS
520 struct dev_context *devc;
521 GVariant *gvar, *arr[2];
522 GVariantBuilder gvb;
523 size_t i;
7a396ff5 524
7a396ff5
GS
525 (void)cg;
526
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527 devc = sdi ? sdi->priv : NULL;
528
7a396ff5 529 switch (key) {
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GS
530 case SR_CONF_SCAN_OPTIONS:
531 case SR_CONF_DEVICE_OPTIONS:
1d2f9963
GS
532 if (!devc)
533 return STD_CONFIG_LIST(key, data, sdi, cg,
534 scanopts, drvopts, devopts_generic);
535 return std_opts_config_list(key, data, sdi, cg,
536 ARRAY_AND_SIZE(scanopts), ARRAY_AND_SIZE(drvopts),
537 devc->model->devopts, devc->model->devopts_size);
3cdad416
GS
538 case SR_CONF_MEASURED_QUANTITY:
539 /* TODO Use std_gvar_measured_quantities() when available. */
540 if (!devc)
541 return SR_ERR_ARG;
542 g_variant_builder_init(&gvb, G_VARIANT_TYPE_ARRAY);
543 for (i = 0; i < devc->model->mqopt_size; i++) {
544 arr[0] = g_variant_new_uint32(devc->model->mqopts[i].mq);
545 arr[1] = g_variant_new_uint64(devc->model->mqopts[i].mqflag);
546 gvar = g_variant_new_tuple(arr, ARRAY_SIZE(arr));
547 g_variant_builder_add_value(&gvb, gvar);
548 }
549 *data = g_variant_builder_end(&gvb);
550 return SR_OK;
a0418c20
GS
551 case SR_CONF_RANGE:
552 if (!devc || !devc->model->get_range_text_list)
553 return SR_ERR_NA;
554 *data = devc->model->get_range_text_list(sdi);
555 return SR_OK;
7a396ff5 556 default:
3cdad416 557 (void)devc;
7a396ff5
GS
558 return SR_ERR_NA;
559 }
7a396ff5
GS
560}
561
562static int dev_acquisition_start(const struct sr_dev_inst *sdi)
563{
3cdad416
GS
564 struct sr_scpi_dev_inst *scpi;
565 struct dev_context *devc;
566 int ret;
08f3b427 567 const struct mqopt_item *item;
3cdad416 568 const char *command;
d0b602f0 569 char *response;
e90551c3 570 gboolean do_mq_meas_delay;
3cdad416
GS
571
572 scpi = sdi->conn;
573 devc = sdi->priv;
574
575 ret = scpi_dmm_get_mq(sdi, &devc->start_acq_mq.curr_mq,
08f3b427 576 &devc->start_acq_mq.curr_mqflag, NULL, &item);
3cdad416
GS
577 if (ret != SR_OK)
578 return ret;
579
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TK
580 /*
581 * Query for current precision if DMM supports the command
582 */
583 command = sr_scpi_cmd_get(devc->cmdset, DMM_CMD_QUERY_PREC);
584 if (command && *command) {
585 scpi_dmm_cmd_delay(scpi);
586 ret = sr_scpi_get_string(scpi, command, &response);
587 if (ret == SR_OK) {
588 g_strstrip(response);
33aa8117
GS
589 g_free(devc->precision);
590 devc->precision = g_strdup(response);
d0b602f0
TK
591 g_free(response);
592 sr_dbg("%s: Precision: '%s'", __func__, devc->precision);
593 } else {
33aa8117
GS
594 sr_info("Precision query ('%s') failed: %d",
595 command, ret);
d0b602f0
TK
596 }
597 }
598
3cdad416
GS
599 command = sr_scpi_cmd_get(devc->cmdset, DMM_CMD_START_ACQ);
600 if (command && *command) {
3cdad416 601 scpi_dmm_cmd_delay(scpi);
28877994 602 ret = sr_scpi_send(scpi, command);
3cdad416
GS
603 if (ret != SR_OK)
604 return ret;
605 }
7a396ff5 606
e90551c3
GS
607 do_mq_meas_delay = item->drv_flags & FLAG_MEAS_DELAY;
608 if (do_mq_meas_delay && devc->model->meas_delay_us)
609 g_usleep(devc->model->meas_delay_us);
610
3cdad416
GS
611 sr_sw_limits_acquisition_start(&devc->limits);
612 ret = std_session_send_df_header(sdi);
613 if (ret != SR_OK)
614 return ret;
615
616 ret = sr_scpi_source_add(sdi->session, scpi, G_IO_IN, 10,
617 scpi_dmm_receive_data, (void *)sdi);
618 if (ret != SR_OK)
619 return ret;
7a396ff5
GS
620
621 return SR_OK;
622}
623
624static int dev_acquisition_stop(struct sr_dev_inst *sdi)
625{
3cdad416
GS
626 struct sr_scpi_dev_inst *scpi;
627 struct dev_context *devc;
628 const char *command;
629
630 scpi = sdi->conn;
631 devc = sdi->priv;
7a396ff5 632
3cdad416
GS
633 command = sr_scpi_cmd_get(devc->cmdset, DMM_CMD_STOP_ACQ);
634 if (command && *command) {
3cdad416 635 scpi_dmm_cmd_delay(scpi);
28877994 636 (void)sr_scpi_send(scpi, command);
3cdad416
GS
637 }
638 sr_scpi_source_remove(sdi->session, scpi);
639
640 std_session_send_df_end(sdi);
7a396ff5 641
33aa8117
GS
642 g_free(devc->precision);
643 devc->precision = NULL;
d0b602f0 644
7a396ff5
GS
645 return SR_OK;
646}
647
0617bb5a 648static struct sr_dev_driver scpi_dmm_driver_info = {
7a396ff5
GS
649 .name = "scpi-dmm",
650 .longname = "SCPI DMM",
651 .api_version = 1,
652 .init = std_init,
653 .cleanup = std_cleanup,
654 .scan = scan,
655 .dev_list = std_dev_list,
656 .dev_clear = std_dev_clear,
657 .config_get = config_get,
658 .config_set = config_set,
659 .config_list = config_list,
660 .dev_open = dev_open,
661 .dev_close = dev_close,
662 .dev_acquisition_start = dev_acquisition_start,
663 .dev_acquisition_stop = dev_acquisition_stop,
664 .context = NULL,
665};
7a396ff5 666SR_REGISTER_DEV_DRIVER(scpi_dmm_driver_info);