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v/vlib/strconv/atof_test.v

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/**********************************************************************
*
* String to float Test
*
**********************************************************************/
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import strconv
import strconv.atofq
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fn test_atof() {
//
// test set
//
// float64
src_num := [
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f64(0.3),
-0.3,
0.004,
-0.004,
0.0,
-0.0,
31234567890123
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]
// strings
src_num_str := [
'0.3',
'-0.3',
'0.004',
'-0.004',
'0.0',
'-0.0',
'31234567890123',
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]
// check conversion case 1 string <=> string
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for c,x in src_num {
// slow atof
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assert strconv.atof64(src_num_str[c]).strlong() == x.strlong()
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// quick atof
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mut s1 := (atofq.atof_quick(src_num_str[c]).str())
mut s2 := (x.str())
delta := s1.f64() - s2.f64()
//println("$s1 $s2 $delta")
assert delta < f64(1e-16)
// test C.atof
n1 := x.strsci(18)
n2 := f64(C.atof(src_num_str[c].str)).strsci(18)
//println("$n1 $n2")
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assert n1 == n2
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}
// check conversion case 2 string <==> f64
// we don't test atof_quick beacuse we already know the rounding error
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for c,x in src_num_str {
b := src_num[c].strlong()
a1 := strconv.atof64(x).strlong()
assert a1 == b
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}
// special cases
mut f1 := f64(0.0)
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mut ptr := &u64(&f1)
ptr = &u64(&f1)
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// DOUBLE_PLUS_ZERO
f1=0.0
assert *ptr == u64(0x0000000000000000)
// DOUBLE_MINUS_ZERO
f1=-0.0
assert *ptr == u64(0x8000000000000000)
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println("DONE!")
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}