info->is_kilo = info->is_hertz = TRUE;
else if (!g_ascii_strcasecmp(u, "C"))
info->is_celsius = TRUE;
+ else if (!g_ascii_strcasecmp(u, "F"))
+ info->is_fahrenheit = TRUE;
else if (!g_ascii_strcasecmp(u, "DB"))
info->is_decibel = TRUE;
+ else if (!g_ascii_strcasecmp(u, "dBm"))
+ info->is_decibel_mw = TRUE;
+ else if (!g_ascii_strcasecmp(u, "W"))
+ info->is_watt = TRUE;
else if (!g_ascii_strcasecmp(u, ""))
info->is_unitless = TRUE;
(!strncmp(buf, " ", 2) && info->is_ohm);
info->is_capacity = !strncmp(buf, "CA", 2) ||
(!strncmp(buf, " ", 2) && info->is_farad);
- info->is_temperature = !strncmp(buf, "TE", 2);
+ info->is_temperature = !strncmp(buf, "TE", 2) ||
+ info->is_celsius || info->is_fahrenheit;
info->is_diode = !strncmp(buf, "DI", 2) ||
(!strncmp(buf, " ", 2) && info->is_volt && info->is_milli);
info->is_frequency = !strncmp(buf, "FR", 2) ||
(!strncmp(buf, " ", 2) && info->is_hertz);
- info->is_gain = !strncmp(buf, "DB", 2);
+ info->is_gain = !strncmp(buf, "DB", 2) && info->is_decibel;
+ info->is_power = (!strncmp(buf, "dB", 2) && info->is_decibel_mw) ||
+ ((!strncmp(buf, "WT", 2) && info->is_watt));
info->is_hfe = !strncmp(buf, "HF", 2) ||
(!strncmp(buf, " ", 2) && !info->is_volt && !info->is_ohm &&
!info->is_logic && !info->is_farad && !info->is_hertz);
+ info->is_min = !strncmp(buf, "MN", 2);
+ info->is_max = !strncmp(buf, "MX", 2);
+ info->is_avg = !strncmp(buf, "AG", 2);
+
/*
* Note:
* - Protocol doesn't distinguish "resistance" from "beep" mode.
static void handle_flags(struct sr_datafeed_analog *analog, float *floatval,
int *exponent, const struct metex14_info *info)
{
- int factor = 0;
+ int factor;
+
+ (void)exponent;
+
/* Factors */
+ factor = 0;
if (info->is_pico)
factor -= 12;
if (info->is_nano)
if (info->is_mega)
factor += 6;
*floatval *= powf(10, factor);
- *exponent += factor;
/* Measurement modes */
if (info->is_volt) {
analog->meaning->mq = SR_MQ_CAPACITANCE;
analog->meaning->unit = SR_UNIT_FARAD;
}
- if (info->is_celsius) {
+ if (info->is_temperature) {
analog->meaning->mq = SR_MQ_TEMPERATURE;
- analog->meaning->unit = SR_UNIT_CELSIUS;
+ if (info->is_celsius)
+ analog->meaning->unit = SR_UNIT_CELSIUS;
+ else if (info->is_fahrenheit)
+ analog->meaning->unit = SR_UNIT_FAHRENHEIT;
+ else
+ analog->meaning->unit = SR_UNIT_UNITLESS;
}
if (info->is_diode) {
analog->meaning->mq = SR_MQ_VOLTAGE;
analog->meaning->unit = SR_UNIT_VOLT;
}
+ if (info->is_power) {
+ analog->meaning->mq = SR_MQ_POWER;
+ if (info->is_decibel_mw)
+ analog->meaning->unit = SR_UNIT_DECIBEL_MW;
+ else if (info->is_watt)
+ analog->meaning->unit = SR_UNIT_WATT;
+ else
+ analog->meaning->unit = SR_UNIT_UNITLESS;
+ }
if (info->is_gain) {
analog->meaning->mq = SR_MQ_GAIN;
analog->meaning->unit = SR_UNIT_DECIBEL_VOLT;
analog->meaning->mqflags |= SR_MQFLAG_DC;
if (info->is_diode)
analog->meaning->mqflags |= SR_MQFLAG_DIODE | SR_MQFLAG_DC;
+ if (info->is_min)
+ analog->meaning->mqflags |= SR_MQFLAG_MIN;
+ if (info->is_max)
+ analog->meaning->mqflags |= SR_MQFLAG_MAX;
+ if (info->is_avg)
+ analog->meaning->mqflags |= SR_MQFLAG_AVG;
}
static gboolean flags_valid(const struct metex14_info *info)
size_t ch_idx;
gboolean is_ac, is_dc, is_resistance, is_capacity, is_temperature;
gboolean is_diode, is_frequency, is_ampere, is_volt, is_farad;
- gboolean is_hertz, is_ohm, is_celsius, is_pico, is_nano, is_micro;
- gboolean is_milli, is_kilo, is_mega, is_gain, is_decibel, is_hfe;
- gboolean is_unitless, is_logic;
+ gboolean is_hertz, is_ohm, is_celsius, is_fahrenheit, is_watt;
+ gboolean is_pico, is_nano, is_micro, is_milli, is_kilo, is_mega;
+ gboolean is_gain, is_decibel, is_power, is_decibel_mw;
+ gboolean is_hfe, is_unitless, is_logic, is_min, is_max, is_avg;
};
#ifdef HAVE_LIBSERIALPORT