Add analog helper sr_analog_unit_to_string().
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@ -32,6 +32,8 @@ SR_API int sr_analog_to_float(const struct sr_datafeed_analog2 *analog,
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float *buf);
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SR_API int sr_analog_float_to_string(float value, int digits, char *outbuf,
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int bufsize);
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SR_API int sr_analog_unit_to_string(const struct sr_datafeed_analog2 *analog,
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char *outbuf, int bufsize);
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/*--- backend.c -------------------------------------------------------------*/
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92
src/analog.c
92
src/analog.c
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@ -26,6 +26,63 @@
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#define LOG_PREFIX "analog"
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struct unit_mq_string {
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uint64_t value;
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char *str;
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};
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static struct unit_mq_string unit_strings[] = {
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{ SR_UNIT_VOLT, "V" },
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{ SR_UNIT_AMPERE, "A" },
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{ SR_UNIT_OHM, "\xe2\x84\xa6" },
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{ SR_UNIT_FARAD, "F" },
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{ SR_UNIT_HENRY, "H" },
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{ SR_UNIT_KELVIN, "K" },
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{ SR_UNIT_CELSIUS, "\xc2\xb0""C" },
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{ SR_UNIT_FAHRENHEIT, "\xc2\xb0""F" },
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{ SR_UNIT_HERTZ, "Hz" },
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{ SR_UNIT_PERCENTAGE, "%" },
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{ SR_UNIT_SECOND, "s" },
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{ SR_UNIT_SIEMENS, "S" },
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{ SR_UNIT_DECIBEL_MW, "dBu" },
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{ SR_UNIT_DECIBEL_VOLT, "dBv" },
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{ SR_UNIT_DECIBEL_SPL, "dB" },
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{ SR_UNIT_CONCENTRATION, "ppm" },
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{ SR_UNIT_REVOLUTIONS_PER_MINUTE, "RPM" },
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{ SR_UNIT_VOLT_AMPERE, "VA" },
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{ SR_UNIT_WATT, "W" },
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{ SR_UNIT_WATT_HOUR, "Wh" },
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{ SR_UNIT_METER_SECOND, "m/s" },
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{ SR_UNIT_HECTOPASCAL, "hPa" },
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{ SR_UNIT_HUMIDITY_293K, "%rF" },
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{ SR_UNIT_DEGREE, "\xc2\xb0" },
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ALL_ZERO
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};
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static struct unit_mq_string mq_strings[] = {
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{ SR_MQFLAG_SPL_FREQ_WEIGHT_A, "(A)" },
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{ SR_MQFLAG_SPL_FREQ_WEIGHT_C, "(C)" },
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{ SR_MQFLAG_SPL_FREQ_WEIGHT_Z, "(Z)" },
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{ SR_MQFLAG_SPL_FREQ_WEIGHT_FLAT, "(SPL)" },
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{ SR_MQFLAG_SPL_TIME_WEIGHT_S, " S" },
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{ SR_MQFLAG_SPL_TIME_WEIGHT_F, " F" },
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{ SR_MQFLAG_SPL_LAT, " LAT" },
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/* Not a standard function for SLMs, so this is a made-up notation. */
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{ SR_MQFLAG_SPL_PCT_OVER_ALARM, "%oA" },
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{ SR_MQFLAG_AC, " AC" },
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{ SR_MQFLAG_DC, " DC" },
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{ SR_MQFLAG_RMS, " RMS" },
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{ SR_MQFLAG_DIODE, " DIODE" },
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{ SR_MQFLAG_HOLD, " HOLD" },
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{ SR_MQFLAG_MAX, " MAX" },
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{ SR_MQFLAG_MIN, " MIN" },
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{ SR_MQFLAG_AUTORANGE, " AUTO" },
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{ SR_MQFLAG_RELATIVE, " REL" },
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{ SR_MQFLAG_AVG, " AVG" },
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{ SR_MQFLAG_REFERENCE, " REF" },
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ALL_ZERO
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};
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SR_PRIV int sr_analog_init(struct sr_datafeed_analog2 *analog,
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struct sr_analog_encoding *encoding,
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struct sr_analog_meaning *meaning,
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@ -134,3 +191,38 @@ SR_API int sr_analog_float_to_string(float value, int digits, char *outbuf,
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return SR_OK;
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}
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/*
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* Convert the unit/MQ/MQ flags in the analog struct to a string.
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*
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* @param analog Struct containing the unit, MQ and MQ flags.
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* @param outbuf Buffer in which the resulting string will be placed.
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* @param bufsize Size of the buffer in bytes.
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*
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* @retval SR_OK
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*
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* @since 0.4.0
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*/
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SR_API int sr_analog_unit_to_string(const struct sr_datafeed_analog2 *analog,
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char *outbuf, int bufsize)
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{
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int len, i;
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outbuf[0] = 0;
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for (i = 0; unit_strings[i].value; i++) {
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if (analog->meaning->unit == unit_strings[i].value) {
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strncpy(outbuf, unit_strings[i].str, bufsize);
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break;
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}
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}
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/* More than one MQ flag may apply. */
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for (i = 0; mq_strings[i].value; i++) {
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if (analog->meaning->mqflags & mq_strings[i].value) {
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len = strlen(outbuf);
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strncat(outbuf + len, mq_strings[i].str, bufsize - len);
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}
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}
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return SR_OK;
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}
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