yokogawa-dlm: Fix array_float_get()
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@ -372,7 +372,7 @@ static int array_option_get(char *value, const char *(*array)[],
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static int array_float_get(gchar *value, const uint64_t array[][2],
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int array_len, int *result)
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{
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int i;
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int i, pos, e;
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uint64_t f;
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float s;
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unsigned int s_int;
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@ -381,28 +381,39 @@ static int array_float_get(gchar *value, const uint64_t array[][2],
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memset(ss, 0, sizeof(ss));
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memset(es, 0, sizeof(es));
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strncpy(ss, value, 5);
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strncpy(es, &(value[6]), 3);
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/* Get index of the separating 'E' character and break up the string. */
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pos = (int)g_strstr_len(value, strlen(value), "E");
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pos -= (int)value;
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strncpy(ss, value, pos);
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strncpy(es, &(value[pos+1]), 3);
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if (sr_atof_ascii(ss, &s) != SR_OK)
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return SR_ERR;
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if (sr_atoi(es, &i) != SR_OK)
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if (sr_atoi(es, &e) != SR_OK)
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return SR_ERR;
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/* Transform e.g. 10^-03 to 1000 as the array stores the inverse. */
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f = pow(10, abs(i));
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f = pow(10, abs(e));
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/*
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* Adjust the significand/factor pair to make sure
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* that f is a multiple of 1000.
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*/
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while ((int)fmod(log10(f), 3) > 0) { s *= 10; f *= 10; }
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while ((int)fmod(log10(f), 3) > 0) {
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s *= 10;
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if (e < 0)
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f *= 10;
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else
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f /= 10;
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}
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/* Truncate s to circumvent rounding errors. */
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s_int = (unsigned int)s;
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for (i = 0; i < array_len; i++) {
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if ( (s_int == array[i][0]) && (f == array[i][1]) ) {
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if ((s_int == array[i][0]) && (f == array[i][1])) {
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*result = i;
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return SR_OK;
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}
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