norma-dmm: Convert to SR_DF_ANALOG.
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67eb7c6bdf
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55bee166eb
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@ -91,7 +91,10 @@ static void nma_process_line(const struct sr_dev_inst *sdi)
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int mmode, devstat; /* Measuring mode, device status */
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float value; /* Measured value */
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float scale; /* Scaling factor depending on range and function */
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struct sr_datafeed_analog_old analog;
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struct sr_datafeed_analog analog;
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struct sr_analog_encoding encoding;
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struct sr_analog_meaning meaning;
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struct sr_analog_spec spec;
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struct sr_datafeed_packet packet;
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devc = sdi->priv;
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@ -120,7 +123,7 @@ static void nma_process_line(const struct sr_dev_inst *sdi)
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/* Start decoding. */
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value = 0.0;
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scale = 1.0;
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memset(&analog, 0, sizeof(struct sr_datafeed_analog_old));
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sr_analog_init(&analog, &encoding, &meaning, &spec, 0);
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/*
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* The numbers are hex digits, starting from 0.
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@ -131,35 +134,35 @@ static void nma_process_line(const struct sr_dev_inst *sdi)
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vt = xgittoint(devc->buf[2]);
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switch (vt) {
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case 0:
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analog.mq = SR_MQ_VOLTAGE;
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analog.meaning->mq = SR_MQ_VOLTAGE;
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break;
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case 1:
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analog.mq = SR_MQ_CURRENT; /* 2A */
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analog.meaning->mq = SR_MQ_CURRENT; /* 2A */
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break;
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case 2:
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analog.mq = SR_MQ_RESISTANCE;
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analog.meaning->mq = SR_MQ_RESISTANCE;
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break;
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case 3:
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analog.mq = SR_MQ_CAPACITANCE;
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analog.meaning->mq = SR_MQ_CAPACITANCE;
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break;
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case 4:
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analog.mq = SR_MQ_TEMPERATURE;
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analog.meaning->mq = SR_MQ_TEMPERATURE;
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break;
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case 5:
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analog.mq = SR_MQ_FREQUENCY;
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analog.meaning->mq = SR_MQ_FREQUENCY;
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break;
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case 6:
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analog.mq = SR_MQ_CURRENT; /* 10A */
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analog.meaning->mq = SR_MQ_CURRENT; /* 10A */
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break;
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case 7:
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analog.mq = SR_MQ_GAIN; /* TODO: Scale factor */
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analog.meaning->mq = SR_MQ_GAIN; /* TODO: Scale factor */
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break;
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case 8:
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analog.mq = SR_MQ_GAIN; /* Percentage */
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analog.meaning->mq = SR_MQ_GAIN; /* Percentage */
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scale /= 100.0;
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break;
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case 9:
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analog.mq = SR_MQ_GAIN; /* dB */
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analog.meaning->mq = SR_MQ_GAIN; /* dB */
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scale /= 100.0;
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break;
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default:
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@ -206,53 +209,53 @@ static void nma_process_line(const struct sr_dev_inst *sdi)
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mmode = xgittoint(devc->buf[10]);
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switch (mmode) {
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case 0: /* Frequency */
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analog.unit = SR_UNIT_HERTZ;
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analog.meaning->unit = SR_UNIT_HERTZ;
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break;
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case 1: /* V TRMS, only type 5 */
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analog.unit = SR_UNIT_VOLT;
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analog.mqflags |= (SR_MQFLAG_AC | SR_MQFLAG_DC | SR_MQFLAG_RMS);
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analog.meaning->unit = SR_UNIT_VOLT;
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analog.meaning->mqflags |= (SR_MQFLAG_AC | SR_MQFLAG_DC | SR_MQFLAG_RMS);
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break;
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case 2: /* V AC */
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analog.unit = SR_UNIT_VOLT;
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analog.mqflags |= SR_MQFLAG_AC;
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analog.meaning->unit = SR_UNIT_VOLT;
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analog.meaning->mqflags |= SR_MQFLAG_AC;
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if (devc->type >= 3)
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analog.mqflags |= SR_MQFLAG_RMS;
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analog.meaning->mqflags |= SR_MQFLAG_RMS;
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break;
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case 3: /* V DC */
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analog.unit = SR_UNIT_VOLT;
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analog.mqflags |= SR_MQFLAG_DC;
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analog.meaning->unit = SR_UNIT_VOLT;
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analog.meaning->mqflags |= SR_MQFLAG_DC;
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break;
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case 4: /* Ohm */
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analog.unit = SR_UNIT_OHM;
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analog.meaning->unit = SR_UNIT_OHM;
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break;
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case 5: /* Continuity */
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analog.unit = SR_UNIT_BOOLEAN;
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analog.mq = SR_MQ_CONTINUITY;
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analog.meaning->unit = SR_UNIT_BOOLEAN;
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analog.meaning->mq = SR_MQ_CONTINUITY;
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/* TODO: Continuity handling is a bit odd in libsigrok. */
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break;
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case 6: /* Degree Celsius */
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analog.unit = SR_UNIT_CELSIUS;
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analog.meaning->unit = SR_UNIT_CELSIUS;
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break;
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case 7: /* Capacity */
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analog.unit = SR_UNIT_FARAD;
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analog.meaning->unit = SR_UNIT_FARAD;
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break;
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case 8: /* Current DC */
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analog.unit = SR_UNIT_AMPERE;
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analog.mqflags |= SR_MQFLAG_DC;
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analog.meaning->unit = SR_UNIT_AMPERE;
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analog.meaning->mqflags |= SR_MQFLAG_DC;
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break;
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case 9: /* Current AC */
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analog.unit = SR_UNIT_AMPERE;
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analog.mqflags |= SR_MQFLAG_AC;
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analog.meaning->unit = SR_UNIT_AMPERE;
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analog.meaning->mqflags |= SR_MQFLAG_AC;
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if (devc->type >= 3)
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analog.mqflags |= SR_MQFLAG_RMS;
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analog.meaning->mqflags |= SR_MQFLAG_RMS;
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break;
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case 0xa: /* Current TRMS, only type 5 */
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analog.unit = SR_UNIT_AMPERE;
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analog.mqflags |= (SR_MQFLAG_AC | SR_MQFLAG_DC | SR_MQFLAG_RMS);
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analog.meaning->unit = SR_UNIT_AMPERE;
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analog.meaning->mqflags |= (SR_MQFLAG_AC | SR_MQFLAG_DC | SR_MQFLAG_RMS);
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break;
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case 0xb: /* Diode */
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analog.unit = SR_UNIT_VOLT;
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analog.mqflags |= (SR_MQFLAG_DIODE | SR_MQFLAG_DC);
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analog.meaning->unit = SR_UNIT_VOLT;
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analog.meaning->mqflags |= (SR_MQFLAG_DIODE | SR_MQFLAG_DC);
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break;
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default:
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sr_err("Unknown mmode: 0x%02x.", mmode);
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@ -283,7 +286,7 @@ static void nma_process_line(const struct sr_dev_inst *sdi)
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flags = (xgittoint(devc->buf[12]) << 8) | xgittoint(devc->buf[13]);
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/* 0x80: PRINT TODO: Stop polling when discovered? */
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/* 0x40: EXTR */
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if (analog.mq == SR_MQ_CONTINUITY) {
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if (analog.meaning->mq == SR_MQ_CONTINUITY) {
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if (flags & 0x20)
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value = 1.0; /* Beep */
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else
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@ -292,26 +295,26 @@ static void nma_process_line(const struct sr_dev_inst *sdi)
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/* 0x10: AVG */
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/* 0x08: Diode */
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if (flags & 0x04) /* REL */
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analog.mqflags |= SR_MQFLAG_RELATIVE;
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analog.meaning->mqflags |= SR_MQFLAG_RELATIVE;
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/* 0x02: SHIFT */
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if (flags & 0x01) /* % */
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analog.unit = SR_UNIT_PERCENTAGE;
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analog.meaning->unit = SR_UNIT_PERCENTAGE;
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/* 14, 15 */
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flags = (xgittoint(devc->buf[14]) << 8) | xgittoint(devc->buf[15]);
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if (!(flags & 0x80)) /* MAN: Manual range */
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analog.mqflags |= SR_MQFLAG_AUTORANGE;
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analog.meaning->mqflags |= SR_MQFLAG_AUTORANGE;
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if (flags & 0x40) /* LOBATT1: Low battery, measurement still within specs */
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devc->lowbatt = 1;
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/* 0x20: PEAK */
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/* 0x10: COUNT */
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if (flags & 0x08) /* HOLD */
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analog.mqflags |= SR_MQFLAG_HOLD;
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analog.meaning->mqflags |= SR_MQFLAG_HOLD;
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/* 0x04: LIMIT */
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if (flags & 0x02) /* MAX */
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analog.mqflags |= SR_MQFLAG_MAX;
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analog.meaning->mqflags |= SR_MQFLAG_MAX;
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if (flags & 0x01) /* MIN */
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analog.mqflags |= SR_MQFLAG_MIN;
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analog.meaning->mqflags |= SR_MQFLAG_MIN;
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/* 16, 17 */
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flags = (xgittoint(devc->buf[16]) << 8) | xgittoint(devc->buf[17]);
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@ -328,10 +331,10 @@ static void nma_process_line(const struct sr_dev_inst *sdi)
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* TODO: The Norma has an adjustable dB reference value. If
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* changed from default, this is not correct.
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*/
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if (analog.unit == SR_UNIT_VOLT)
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analog.unit = SR_UNIT_DECIBEL_VOLT;
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if (analog.meaning->unit == SR_UNIT_VOLT)
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analog.meaning->unit = SR_UNIT_DECIBEL_VOLT;
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else
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analog.unit = SR_UNIT_UNITLESS;
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analog.meaning->unit = SR_UNIT_UNITLESS;
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}
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/* 18, 19 */
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@ -359,12 +362,12 @@ static void nma_process_line(const struct sr_dev_inst *sdi)
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(double)scale, (double)value);
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/* Finish and send packet. */
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analog.channels = sdi->channels;
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analog.meaning->channels = sdi->channels;
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analog.num_samples = 1;
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analog.data = &value;
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memset(&packet, 0, sizeof(struct sr_datafeed_packet));
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packet.type = SR_DF_ANALOG_OLD;
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packet.type = SR_DF_ANALOG;
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packet.payload = &analog;
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sr_session_send(sdi, &packet);
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