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rounding_test.go
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119 lines (93 loc) · 2.12 KB
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package decimal128
import "testing"
var roundingModes = []RoundingMode{
ToNearestEven,
ToNearestAway,
ToZero,
AwayFromZero,
ToNegativeInf,
ToPositiveInf,
}
func TestDecimalCeil(t *testing.T) {
t.Parallel()
r := openTestData(t)
defer r.close()
var val Decimal
var dp int
var res Decimal
for r.scan("ceil(%v, %v) = %v\n", &val, &dp, &res) {
rnd := val.Ceil(dp)
if !resultEqual(rnd, res) {
t.Errorf("%v.Ceil(%d) = %v, want %v", val, dp, rnd, res)
}
}
}
func TestDecimalFloor(t *testing.T) {
t.Parallel()
r := openTestData(t)
defer r.close()
var val Decimal
var dp int
var res Decimal
for r.scan("floor(%v, %v) = %v\n", &val, &dp, &res) {
rnd := val.Floor(dp)
if !resultEqual(rnd, res) {
t.Errorf("%v.Floor(%d) = %v, want %v", val, dp, rnd, res)
}
}
}
func TestDecimalRound(t *testing.T) {
t.Parallel()
r := openTestData(t)
defer r.close()
var val Decimal
var dp int
var res testDataResult
for r.scan("round(%v, %v) = %v\n", &val, &dp, &res) {
for _, mode := range roundingModes {
rnd := val.Round(dp, mode)
if !res.equal(rnd, mode) {
t.Errorf("%v.Round(%d, %v) = %v, want %v", val, dp, mode, rnd, res.result(mode))
}
}
}
}
func BenchmarkReduce128(b *testing.B) {
initUintValues()
exponents := []int16{exponentBias / 2, exponentBias, exponentBias * 2}
for b.Loop() {
for _, mode := range roundingModes {
for _, val := range uint128Values {
for _, exp := range exponents {
mode.reduce128(false, val, exp, 0)
}
}
}
}
}
func BenchmarkReduce192(b *testing.B) {
initUintValues()
exponents := []int16{exponentBias / 2, exponentBias, exponentBias * 2}
for b.Loop() {
for _, mode := range roundingModes {
for _, val := range uint192Values {
for _, exp := range exponents {
mode.reduce192(false, val, exp, 0)
}
}
}
}
}
func BenchmarkReduce256(b *testing.B) {
initUintValues()
exponents := []int16{exponentBias / 2, exponentBias, exponentBias * 2}
for b.Loop() {
for _, mode := range roundingModes {
for _, val := range uint256Values {
for _, exp := range exponents {
mode.reduce256(false, val, exp, 0)
}
}
}
}
}