deree-de5000: properly set encoding digits
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b8f07f4221
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@ -470,15 +470,16 @@ static int parse_mq(const uint8_t *pkt, int is_secondary, int is_parallel)
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return 0;
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}
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static float parse_value(const uint8_t *buf)
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static float parse_value(const uint8_t *buf, int *digits)
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{
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static const float decimals[] = {
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1, 1e-1, 1e-2, 1e-3, 1e-4, 1e-5, 1e-6, 1e-7
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};
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static const int exponents[] = {0, -1, -2, -3, -4, -5, -6, -7};
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int exponent;
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int16_t val;
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exponent = exponents[buf[3] & 7];
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*digits = -exponent;
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val = (buf[1] << 8) | buf[2];
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return (float)val * decimals[buf[3] & 7];
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return (float)val * powf(10, exponent);
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}
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static void parse_measurement(const uint8_t *pkt, float *floatval,
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@ -487,25 +488,26 @@ static void parse_measurement(const uint8_t *pkt, float *floatval,
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{
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static const struct {
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int unit;
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float mult;
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int exponent;
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} units[] = {
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{ SR_UNIT_UNITLESS, 1 }, /* no unit */
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{ SR_UNIT_OHM, 1 }, /* Ohm */
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{ SR_UNIT_OHM, 1e3 }, /* kOhm */
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{ SR_UNIT_OHM, 1e6 }, /* MOhm */
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{ SR_UNIT_UNITLESS, 0 }, /* no unit */
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{ SR_UNIT_OHM, 0 }, /* Ohm */
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{ SR_UNIT_OHM, 3 }, /* kOhm */
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{ SR_UNIT_OHM, 6 }, /* MOhm */
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{ -1, 0 }, /* ??? */
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{ SR_UNIT_HENRY, 1e-6 }, /* uH */
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{ SR_UNIT_HENRY, 1e-3 }, /* mH */
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{ SR_UNIT_HENRY, 1 }, /* H */
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{ SR_UNIT_HENRY, 1e3 }, /* kH */
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{ SR_UNIT_FARAD, 1e-12 }, /* pF */
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{ SR_UNIT_FARAD, 1e-9 }, /* nF */
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{ SR_UNIT_FARAD, 1e-6 }, /* uF */
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{ SR_UNIT_FARAD, 1e-3 }, /* mF */
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{ SR_UNIT_PERCENTAGE, 1 }, /* % */
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{ SR_UNIT_DEGREE, 1 } /* degree */
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{ SR_UNIT_HENRY, -6 }, /* uH */
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{ SR_UNIT_HENRY, -3 }, /* mH */
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{ SR_UNIT_HENRY, 0 }, /* H */
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{ SR_UNIT_HENRY, 3 }, /* kH */
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{ SR_UNIT_FARAD, -12 }, /* pF */
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{ SR_UNIT_FARAD, -9 }, /* nF */
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{ SR_UNIT_FARAD, -6 }, /* uF */
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{ SR_UNIT_FARAD, -3 }, /* mF */
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{ SR_UNIT_PERCENTAGE, 0 }, /* % */
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{ SR_UNIT_DEGREE, 0 }, /* degree */
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};
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const uint8_t *buf;
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int digits, exponent;
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int state;
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buf = pkt_to_buf(pkt, is_secondary);
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@ -544,8 +546,11 @@ static void parse_measurement(const uint8_t *pkt, float *floatval,
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analog->meaning->unit = units[buf[3] >> 3].unit;
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*floatval = parse_value(buf);
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*floatval *= (state == 0) ? units[buf[3] >> 3].mult : INFINITY;
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exponent = units[buf[3] >> 3].exponent;
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*floatval = parse_value(buf, &digits);
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*floatval *= (state == 0) ? powf(10, exponent) : INFINITY;
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analog->encoding->digits = digits - exponent;
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analog->spec->spec_digits = digits - exponent;
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}
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static unsigned int parse_freq(const uint8_t *pkt)
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