Rework FS9721 parser.
Merge parts of the tekpower-dmm code (the chip of the TekPower TP4000ZC seems to be an FS9721_LP3 too) and rework parts of the functions. Adapt the tekpower-dmm and uni-t-dmm code accordingly.
This commit is contained in:
parent
be5c1d3b52
commit
8c1adf3738
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@ -2,6 +2,7 @@
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* This file is part of the sigrok project.
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*
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* Copyright (C) 2012 Uwe Hermann <uwe@hermann-uwe.de>
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* Copyright (C) 2012 Alexandru Gagniuc <mr.nuke.me@gmail.com>
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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@ -75,16 +76,66 @@ static int parse_digit(uint8_t b)
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}
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}
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/**
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* Parse the numerical value from a protocol packet.
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*
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* @param buf Buffer containing the 14-byte protocol packet.
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* @param result Pointer to a float variable. That variable will contain the
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* result value upon parsing success.
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*
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* @return SR_OK upon success, SR_ERR upon failure. Upon errors, the result
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* variable contents are undefined and should not be used.
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*/
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static gboolean sync_nibbles_valid(const uint8_t *buf)
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{
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int i;
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/* Check the synchronization nibbles, and make sure they all match. */
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for (i = 0; i < FS9721_PACKET_SIZE; i++) {
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if (((buf[i] >> 4) & 0x0f) != (i + 1)) {
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sr_err("Sync nibble in byte %d (0x%02x) is invalid.",
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i, buf[i]);
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return FALSE;
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}
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}
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return TRUE;
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}
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static gboolean flags_valid(const struct fs9721_info *info)
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{
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int count;
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/* Does the packet have more than one multiplier? */
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count = 0;
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count += (info->is_nano) ? 1 : 0;
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count += (info->is_micro) ? 1 : 0;
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count += (info->is_milli) ? 1 : 0;
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count += (info->is_kilo) ? 1 : 0;
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count += (info->is_mega) ? 1 : 0;
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if (count > 1) {
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sr_err("More than one multiplier detected in packet.");
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return FALSE;
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}
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/* Does the packet "measure" more than one type of value? */
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count = 0;
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count += (info->is_hz) ? 1 : 0;
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count += (info->is_ohm) ? 1 : 0;
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count += (info->is_farad) ? 1 : 0;
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count += (info->is_ampere) ? 1 : 0;
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count += (info->is_volt) ? 1 : 0;
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count += (info->is_percent) ? 1 : 0;
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if (count > 1) {
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sr_err("More than one measurement type detected in packet.");
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return FALSE;
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}
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/* Both AC and DC set? */
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if (info->is_ac && info->is_dc) {
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sr_err("Both AC and DC flags detected in packet.");
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return FALSE;
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}
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/* RS232 flag not set? */
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if (!info->is_rs232) {
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sr_err("No RS232 flag detected in packet.");
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return FALSE;
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}
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return TRUE;
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}
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static int parse_value(const uint8_t *buf, float *result)
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{
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int i, sign, intval = 0, digits[4];
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@ -130,7 +181,6 @@ static int parse_value(const uint8_t *buf, float *result)
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intval += digits[i];
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}
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/* Store the value in a float variable. */
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floatval = (float)intval;
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/* Decimal point position. */
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@ -157,154 +207,156 @@ static int parse_value(const uint8_t *buf, float *result)
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return SR_OK;
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}
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/**
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* Parse various flags in a protocol packet.
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*
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* @param buf Buffer containing the 14-byte protocol packet.
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* @param floatval Pointer to a float variable which should contain the value
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* parsed using parse_value(). That variable will be modified
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* in-place depending on the flags in the protocol packet.
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* @param analog Pointer to a struct sr_datafeed_analog. The struct will be
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* filled with the relevant data according to the flags in the
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* protocol packet.
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*
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* @return SR_OK upon success, SR_ERR upon failure. Upon errors, the 'floatval'
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* and 'analog' variable contents are undefined and should not be used.
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*/
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static int parse_flags(const uint8_t *buf, float *floatval,
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struct sr_datafeed_analog *analog)
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static void parse_flags(const uint8_t *buf, struct fs9721_info *info)
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{
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gboolean is_ac, is_dc, is_auto, is_rs232, is_micro, is_nano, is_kilo;
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gboolean is_diode, is_milli, is_percent, is_mega, is_beep, is_farad;
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gboolean is_ohm, is_rel, is_hold, is_ampere, is_volt, is_hz, is_bat;
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gboolean is_c2c1_11, is_c2c1_10, is_c2c1_01, is_c2c1_00;
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/* Byte 0: LCD SEG1 */
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is_ac = (buf[0] & (1 << 3)) != 0;
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is_dc = (buf[0] & (1 << 2)) != 0;
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is_auto = (buf[0] & (1 << 1)) != 0;
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is_rs232 = (buf[0] & (1 << 0)) != 0;
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info->is_ac = (buf[0] & (1 << 3)) != 0;
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info->is_dc = (buf[0] & (1 << 2)) != 0;
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info->is_auto = (buf[0] & (1 << 1)) != 0;
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info->is_rs232 = (buf[0] & (1 << 0)) != 0;
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/* Byte 1: LCD SEG2 */
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info->is_sign = (buf[1] & (1 << 3)) != 0;
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/* Byte 9: LCD SEG10 */
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is_micro = (buf[9] & (1 << 3)) != 0;
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is_nano = (buf[9] & (1 << 2)) != 0;
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is_kilo = (buf[9] & (1 << 1)) != 0;
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is_diode = (buf[9] & (1 << 0)) != 0;
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info->is_micro = (buf[9] & (1 << 3)) != 0;
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info->is_nano = (buf[9] & (1 << 2)) != 0;
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info->is_kilo = (buf[9] & (1 << 1)) != 0;
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info->is_diode = (buf[9] & (1 << 0)) != 0;
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/* Byte 10: LCD SEG11 */
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is_milli = (buf[10] & (1 << 3)) != 0;
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is_percent = (buf[10] & (1 << 2)) != 0;
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is_mega = (buf[10] & (1 << 1)) != 0;
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is_beep = (buf[10] & (1 << 0)) != 0;
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info->is_milli = (buf[10] & (1 << 3)) != 0;
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info->is_percent = (buf[10] & (1 << 2)) != 0;
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info->is_mega = (buf[10] & (1 << 1)) != 0;
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info->is_beep = (buf[10] & (1 << 0)) != 0;
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/* Byte 11: LCD SEG12 */
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is_farad = (buf[11] & (1 << 3)) != 0;
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is_ohm = (buf[11] & (1 << 2)) != 0;
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is_rel = (buf[11] & (1 << 1)) != 0;
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is_hold = (buf[11] & (1 << 0)) != 0;
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info->is_farad = (buf[11] & (1 << 3)) != 0;
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info->is_ohm = (buf[11] & (1 << 2)) != 0;
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info->is_rel = (buf[11] & (1 << 1)) != 0;
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info->is_hold = (buf[11] & (1 << 0)) != 0;
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/* Byte 12: LCD SEG13 */
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is_ampere = (buf[12] & (1 << 3)) != 0;
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is_volt = (buf[12] & (1 << 2)) != 0;
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is_hz = (buf[12] & (1 << 1)) != 0;
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is_bat = (buf[12] & (1 << 0)) != 0;
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info->is_ampere = (buf[12] & (1 << 3)) != 0;
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info->is_volt = (buf[12] & (1 << 2)) != 0;
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info->is_hz = (buf[12] & (1 << 1)) != 0;
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info->is_bat = (buf[12] & (1 << 0)) != 0;
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/* Byte 13: LCD SEG14 */
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is_c2c1_11 = (buf[13] & (1 << 3)) != 0;
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is_c2c1_10 = (buf[13] & (1 << 2)) != 0;
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is_c2c1_01 = (buf[13] & (1 << 1)) != 0;
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is_c2c1_00 = (buf[13] & (1 << 0)) != 0;
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info->is_c2c1_11 = (buf[13] & (1 << 3)) != 0;
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info->is_c2c1_10 = (buf[13] & (1 << 2)) != 0;
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info->is_c2c1_01 = (buf[13] & (1 << 1)) != 0;
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info->is_c2c1_00 = (buf[13] & (1 << 0)) != 0;
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}
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static void handle_flags(struct sr_datafeed_analog *analog, float *floatval,
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const struct fs9721_info *info)
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{
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/* Factors */
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if (is_nano)
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if (info->is_nano)
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*floatval /= 1000000000;
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if (is_micro)
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if (info->is_micro)
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*floatval /= 1000000;
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if (is_milli)
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if (info->is_milli)
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*floatval /= 1000;
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if (is_kilo)
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if (info->is_kilo)
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*floatval *= 1000;
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if (is_mega)
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if (info->is_mega)
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*floatval *= 1000000;
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/* Measurement modes */
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if (is_volt) {
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if (info->is_volt) {
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analog->mq = SR_MQ_VOLTAGE;
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analog->unit = SR_UNIT_VOLT;
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}
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if (is_ampere) {
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if (info->is_ampere) {
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analog->mq = SR_MQ_CURRENT;
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analog->unit = SR_UNIT_AMPERE;
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}
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if (is_ohm) {
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if (info->is_ohm) {
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analog->mq = SR_MQ_RESISTANCE;
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analog->unit = SR_UNIT_OHM;
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}
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if (is_hz) {
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if (info->is_hz) {
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analog->mq = SR_MQ_FREQUENCY;
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analog->unit = SR_UNIT_HERTZ;
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}
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if (is_farad) {
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if (info->is_farad) {
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analog->mq = SR_MQ_CAPACITANCE;
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analog->unit = SR_UNIT_FARAD;
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}
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if (is_beep) {
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if (info->is_beep) {
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analog->mq = SR_MQ_CONTINUITY;
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analog->unit = SR_UNIT_BOOLEAN;
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*floatval = (*floatval < 0.0) ? 0.0 : 1.0;
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*floatval = (*floatval == INFINITY) ? 0.0 : 1.0;
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}
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if (is_diode) {
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if (info->is_diode) {
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analog->mq = SR_MQ_VOLTAGE;
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analog->unit = SR_UNIT_VOLT;
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}
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if (is_percent) {
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if (info->is_percent) {
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analog->mq = SR_MQ_DUTY_CYCLE;
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analog->unit = SR_UNIT_PERCENTAGE;
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}
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/* Measurement related flags */
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if (is_ac)
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if (info->is_ac)
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analog->mqflags |= SR_MQFLAG_AC;
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if (is_dc)
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if (info->is_dc)
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analog->mqflags |= SR_MQFLAG_DC;
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if (is_auto)
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if (info->is_auto)
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analog->mqflags |= SR_MQFLAG_AUTORANGE;
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if (is_hold)
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if (info->is_hold)
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analog->mqflags |= SR_MQFLAG_HOLD;
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if (is_rel)
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if (info->is_rel)
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analog->mqflags |= SR_MQFLAG_RELATIVE;
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/* Other flags */
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if (is_rs232)
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if (info->is_rs232)
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sr_spew("RS232 enabled.");
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if (is_bat)
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if (info->is_bat)
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sr_spew("Battery is low.");
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if (is_c2c1_00)
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if (info->is_c2c1_00)
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sr_spew("User-defined LCD symbol 0 is active.");
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if (is_c2c1_01)
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if (info->is_c2c1_01)
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sr_spew("User-defined LCD symbol 1 is active.");
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if (is_c2c1_10)
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if (info->is_c2c1_10)
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sr_spew("User-defined LCD symbol 2 is active.");
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if (is_c2c1_11)
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if (info->is_c2c1_11)
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sr_spew("User-defined LCD symbol 3 is active.");
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}
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return SR_OK;
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SR_PRIV gboolean sr_fs9721_is_packet_start(uint8_t b)
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{
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return (((b >> 4) & 0x0f) == 0x01);
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}
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SR_PRIV gboolean sr_fs9721_packet_valid(const uint8_t *buf)
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{
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struct fs9721_info info;
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parse_flags(buf, &info);
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return (sync_nibbles_valid(buf) && flags_valid(&info));
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}
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/**
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* Parse a protocol packet.
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*
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* @param buf Buffer containing the 14-byte protocol packet.
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* @param floatval Pointer to a float variable. That variable will be modified
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* in-place depending on the protocol packet.
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* @param floatval Pointer to a float variable. That variable will contain the
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* result value upon parsing success.
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* @param analog Pointer to a struct sr_datafeed_analog. The struct will be
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* filled with data according to the protocol packet.
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* @param info Pointer to a struct fs9721_info. The struct will be filled
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* with data according to the protocol packet.
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*
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* @return SR_OK upon success, SR_ERR upon failure. Upon errors, the
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* 'analog' variable contents are undefined and should not be used.
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*/
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SR_PRIV int sr_dmm_parse_fs9721(const uint8_t *buf, float *floatval,
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struct sr_datafeed_analog *analog)
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SR_PRIV int sr_fs9721_parse(const uint8_t *buf, float *floatval,
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struct sr_datafeed_analog *analog,
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struct fs9721_info *info)
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{
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int ret;
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@ -313,10 +365,8 @@ SR_PRIV int sr_dmm_parse_fs9721(const uint8_t *buf, float *floatval,
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return ret;
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}
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if ((ret = parse_flags(buf, floatval, analog)) != SR_OK) {
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sr_err("Error parsing flags: %d.", ret);
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return ret;
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}
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parse_flags(buf, info);
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handle_flags(analog, floatval, info);
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return SR_OK;
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}
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@ -95,10 +95,9 @@ static GSList *lcd14_scan(const char *conn, const char *serialcomm)
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struct drv_context *drvc;
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struct dev_context *devc;
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struct sr_probe *probe;
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struct fs9721_packet *packet;
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GSList *devices;
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int i, len, fd, retry, good_packets = 0, dropped, ret;
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char buf[128], *b;
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uint8_t buf[128], *b;
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if ((fd = serial_open(conn, O_RDONLY | O_NONBLOCK)) == -1) {
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sr_err("Unable to open %s: %s.", conn, strerror(errno));
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@ -127,7 +126,7 @@ static GSList *lcd14_scan(const char *conn, const char *serialcomm)
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/* Let's get a bit of data and see if we can find a packet. */
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len = sizeof(buf);
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serial_readline(fd, &b, &len, 500);
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serial_readline(fd, (char **)&b, &len, 500);
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if ((len == 0) || (len < FS9721_PACKET_SIZE)) {
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/* Not enough data received, is the DMM connected? */
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continue;
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@ -136,8 +135,7 @@ static GSList *lcd14_scan(const char *conn, const char *serialcomm)
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/* Let's treat our buffer like a stream, and find any
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* valid packets */
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for (i = 0; i < len - FS9721_PACKET_SIZE + 1;) {
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packet = (void *)(&buf[i]);
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if (!fs9721_is_packet_valid(packet, NULL)) {
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if (!sr_fs9721_packet_valid(&buf[i])) {
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i++;
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continue;
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}
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@ -26,21 +26,25 @@
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#include "libsigrok-internal.h"
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#include "protocol.h"
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/* User-defined FS9721_LP3 flag 'c2c1_10' means temperature on this DMM. */
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#define is_temperature info.is_c2c1_10
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/* Now see what the value means, and pass that on. */
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static void fs9721_serial_handle_packet(const struct fs9721_data *data,
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static void fs9721_serial_handle_packet(const uint8_t *buf,
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struct dev_context *devc)
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{
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float rawval;
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float floatval;
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struct sr_datafeed_packet packet;
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struct sr_datafeed_analog *analog;
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struct fs9721_info info;
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if (!(analog = g_try_malloc0(sizeof(struct sr_datafeed_analog)))) {
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sr_err("Failed to malloc packet.");
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sr_err("Analog packet malloc failed.");
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return;
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}
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if (!(analog->data = g_try_malloc(sizeof(float)))) {
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sr_err("Failed to malloc data.");
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sr_err("Analog value malloc failed.");
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g_free(analog);
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return;
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}
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@ -48,16 +52,15 @@ static void fs9721_serial_handle_packet(const struct fs9721_data *data,
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analog->num_samples = 1;
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analog->mq = -1;
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sr_dmm_smart_parse_fs9721(data, &rawval, analog);
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*analog->data = rawval;
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sr_fs9721_parse(buf, &floatval, analog, &info);
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*analog->data = floatval;
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if (data->flags & FLAG_TEMP_CELSIUS) {
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if (is_temperature) {
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analog->mq = SR_MQ_TEMPERATURE;
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/* No Kelvin or Fahrenheit from the device, just Celsius. */
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analog->unit = SR_UNIT_CELSIUS;
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}
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|
||||
|
||||
if (analog->mq != -1) {
|
||||
/* Got a measurement. */
|
||||
packet.type = SR_DF_ANALOG;
|
||||
|
@ -73,8 +76,6 @@ static void fs9721_serial_handle_packet(const struct fs9721_data *data,
|
|||
static void handle_new_data(struct dev_context *devc, int fd)
|
||||
{
|
||||
int len, i, offset = 0;
|
||||
struct fs9721_packet *packet;
|
||||
struct fs9721_data data;
|
||||
|
||||
/* Try to get as much data as the buffer can hold. */
|
||||
len = DMM_BUFSIZE - devc->buflen;
|
||||
|
@ -87,9 +88,8 @@ static void handle_new_data(struct dev_context *devc, int fd)
|
|||
|
||||
/* Now look for packets in that data. */
|
||||
while ((devc->buflen - offset) >= FS9721_PACKET_SIZE) {
|
||||
packet = (void *)(devc->buf + offset);
|
||||
if (fs9721_is_packet_valid(packet, &data)) {
|
||||
fs9721_serial_handle_packet(&data, devc);
|
||||
if (sr_fs9721_packet_valid(devc->buf + offset)) {
|
||||
fs9721_serial_handle_packet(devc->buf + offset, devc);
|
||||
offset += FS9721_PACKET_SIZE;
|
||||
} else {
|
||||
offset++;
|
||||
|
|
|
@ -20,8 +20,6 @@
|
|||
#ifndef LIBSIGROK_HARDWARE_TEKPOWER_DMM_PROTOCOL_H
|
||||
#define LIBSIGROK_HARDWARE_TEKPOWER_DMM_PROTOCOL_H
|
||||
|
||||
#include "hardware/common/dmm/fs9721.h"
|
||||
|
||||
/* Message logging helpers with driver-specific prefix string. */
|
||||
#define DRIVER_LOG_DOMAIN "tekpower-dmm: "
|
||||
#define sr_log(l, s, args...) sr_log(l, DRIVER_LOG_DOMAIN s, ## args)
|
||||
|
@ -33,8 +31,6 @@
|
|||
|
||||
#define DMM_BUFSIZE 256
|
||||
|
||||
#define FLAG_TEMP_CELSIUS FS9721_USR2
|
||||
|
||||
/** Private, per-device-instance driver context. */
|
||||
struct dev_context {
|
||||
/** The current sampling limit (in number of samples). */
|
||||
|
|
|
@ -172,7 +172,7 @@ static int hw_init(int dmm)
|
|||
di = di_ut61d;
|
||||
else if (dmm == VOLTCRAFT_VC820)
|
||||
di = di_vc820;
|
||||
sr_dbg("Selected '%s' driver.", di->name);
|
||||
sr_dbg("Selected '%s' subdriver.", di->name);
|
||||
|
||||
di->priv = drvc;
|
||||
|
||||
|
|
|
@ -70,6 +70,7 @@ static void decode_packet(struct dev_context *devc, int dmm, const uint8_t *buf)
|
|||
{
|
||||
struct sr_datafeed_packet packet;
|
||||
struct sr_datafeed_analog analog;
|
||||
struct fs9721_info info;
|
||||
float floatval;
|
||||
int ret;
|
||||
|
||||
|
@ -79,7 +80,7 @@ static void decode_packet(struct dev_context *devc, int dmm, const uint8_t *buf)
|
|||
if (dmm == UNI_T_UT61D)
|
||||
ret = sr_dmm_parse_fs9922(buf, &floatval, &analog);
|
||||
else if (dmm == VOLTCRAFT_VC820)
|
||||
ret = sr_dmm_parse_fs9721(buf, &floatval, &analog);
|
||||
ret = sr_fs9721_parse(buf, &floatval, &analog, &info);
|
||||
if (ret != SR_OK) {
|
||||
sr_err("Invalid DMM packet, ignoring.");
|
||||
return;
|
||||
|
@ -236,7 +237,7 @@ static int uni_t_dmm_receive_data(int fd, int revents, int dmm, void *cb_data)
|
|||
return TRUE;
|
||||
} else if (dmm == VOLTCRAFT_VC820) {
|
||||
/* Valid packets have 0x1 as high nibble. */
|
||||
if ((buf[1] & 0xf0) != 0x10)
|
||||
if (!sr_fs9721_is_packet_start(buf[1]))
|
||||
return TRUE;
|
||||
}
|
||||
synced_on_first_packet = TRUE;
|
||||
|
@ -251,6 +252,10 @@ static int uni_t_dmm_receive_data(int fd, int revents, int dmm, void *cb_data)
|
|||
if (data_byte_counter == NUM_DATA_BYTES) {
|
||||
log_dmm_packet(pbuf);
|
||||
data_byte_counter = 0;
|
||||
if (!sr_fs9721_packet_valid(pbuf)) {
|
||||
sr_err("Invalid packet.");
|
||||
return TRUE;
|
||||
}
|
||||
decode_packet(devc, dmm, pbuf);
|
||||
memset(pbuf, 0x00, NUM_DATA_BYTES);
|
||||
}
|
||||
|
|
|
@ -155,7 +155,19 @@ SR_PRIV int sr_dmm_parse_fs9922(const uint8_t *buf, float *floatval,
|
|||
|
||||
/*--- hardware/common/dmm/fs9721.c ------------------------------------------*/
|
||||
|
||||
SR_PRIV int sr_dmm_parse_fs9721(const uint8_t *buf, float *floatval,
|
||||
struct sr_datafeed_analog *analog);
|
||||
#define FS9721_PACKET_SIZE 14
|
||||
|
||||
struct fs9721_info {
|
||||
gboolean is_ac, is_dc, is_auto, is_rs232, is_micro, is_nano, is_kilo;
|
||||
gboolean is_diode, is_milli, is_percent, is_mega, is_beep, is_farad;
|
||||
gboolean is_ohm, is_rel, is_hold, is_ampere, is_volt, is_hz, is_bat;
|
||||
gboolean is_c2c1_11, is_c2c1_10, is_c2c1_01, is_c2c1_00, is_sign;
|
||||
};
|
||||
|
||||
SR_PRIV gboolean sr_fs9721_is_packet_start(uint8_t b);
|
||||
SR_PRIV gboolean sr_fs9721_packet_valid(const uint8_t *buf);
|
||||
SR_PRIV int sr_fs9721_parse(const uint8_t *buf, float *floatval,
|
||||
struct sr_datafeed_analog *analog,
|
||||
struct fs9721_info *info);
|
||||
|
||||
#endif
|
||||
|
|
Loading…
Reference in New Issue