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eda-tools/b2/eval.c

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/*
* eval.c - String to parameter
*
* Copyright 2012 by Werner Almesberger
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License as published by
* the Free Software Foundation; either version 2 of the License, or
* (at your option) any later version.
*/
#include <stdlib.h>
#include <string.h>
#include <assert.h>
#include "bitset.h"
#include "param.h"
int eval_name(const struct format *fmt, const char *s, struct value *res)
{
(void) fmt;
res->u.s = s;
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return 1;
}
static int lookup_name(const struct names *name, const char *s)
{
const struct equiv *eq;
int n;
for (n = 0; name; n++) {
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for (eq = name->equiv; eq; eq = eq->next)
if (eq->name == s)
return n;
name = name->next;
}
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return -1;
}
int eval_set(const struct format *fmt, const char *s, struct value *res)
{
int n;
bitset_zero(&res->u.set);
n = lookup_name(fmt->u.set, s);
if (n < 0)
return 0;
bitset_set(&res->u.set, n);
return 1;
}
static int decode_mult(char c, double *mult)
{
switch (c) {
case 'f':
*mult = 1e-15;
return 1;
case 'p':
*mult = 1e-12;
return 1;
case 'n':
*mult = 1e-9;
return 1;
case 'u':
*mult = 1e-6;
return 1;
case 'm':
*mult = 1e-3;
return 1;
case 'k':
*mult = 1e3;
return 1;
case 'M':
*mult = 1e6;
return 1;
case 'G':
*mult = 1e9;
return 1;
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default:
return 0;
}
}
static int strip_unit(const char *s, const char **stop, const char *unit,
double *mult)
{
int n;
if (unit) {
n = strlen(unit);
if (*stop-n < s)
return 0;
if (!strcmp(*stop-n, unit))
*stop -= n;
}
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if (*stop > s) {
if (decode_mult((*stop)[-1], mult))
(*stop)--;
else
*mult = 1;
} else {
*mult = 1;
}
return 1;
}
int eval_abs(const struct format *fmt, const char *s,
struct value *res)
{
const char *slash, *stop;
char *end;
double mult, a, b;
stop = strchr(s, 0);
if (!strip_unit(s, &stop, fmt->u.abs, &mult))
return 0;
slash = strchr(s, '/');
if (!slash) {
res->u.abs = strtod(s, &end)*mult;
return end == stop;
}
a = strtod(s, &end);
if (end != slash)
return 0;
b = strtod(slash+1, &end);
if (end != stop)
return 0;
res->u.abs = a/b*mult;
return 1;
}
static int plusminus(const char *s, const char *slash, const char *stop,
double *plus, double *minus)
{
char *end;
if (s == slash || slash == stop)
return 0;
/* -M/+P */
if (*s == '-') {
if (slash[1] != '+')
return 0;
*minus = strtod(s+1, &end);
if (end != slash)
return 0;
*plus = strtod(slash+2, &end);
return end == stop;
}
/* +P/-M */
if (*s == '+') {
if (slash[1] != '-')
return 0;
*plus = strtod(s+1, &end);
if (end != slash)
return 0;
*minus = strtod(slash+2, &end);
return end == stop;
}
/* M/P */
*minus = strtod(s, &end);
if (end != slash)
return 0;
*plus = strtod(slash+1, &end);
return end == stop;
}
static int relative(const char *s, const char *stop, double *plus,
double *minus)
{
const char *slash;
char *end;
slash = strchr(s, '/');
if (slash >= stop)
return 0;
if (slash)
return plusminus(s, slash, stop, plus, minus);
*plus = *minus = strtod(s, &end);
return *plus >= 0 && end == stop;
}
int eval_rel(const struct format *fmt, const char *s,
struct value *res)
{
const char *perc, *stop;
double mult = 1;
perc = strchr(s, '%');
res->u.rel.fract = !!perc;
if (perc) {
if (perc[1])
return 0;
if (!relative(s, perc, &res->u.rel.plus, &res->u.rel.minus))
return 0;
res->u.rel.plus /= 100;
res->u.rel.minus /= 100;
return 1;
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}
assert(fmt->u.rel->ops == &param_ops_abs);
stop = strchr(s, 0);
if (!strip_unit(s, &stop, fmt->u.rel->u.abs, &mult))
return 0;
if (!relative(s, stop, &res->u.rel.plus, &res->u.rel.minus))
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return 0;
res->u.rel.plus *= mult;
res->u.rel.minus *= mult;
return 1;
}
int evaluate(const struct format *fmt, const char *s, struct value *res)
{
return fmt->ops->eval(fmt, s, res);
}