prysm-pulse/shared/bls/bls_benchmark_test.go
Nishant Das 24583864b4 Change BLS Library to Herumi (#3752)
* change to herumi's bls

* change alias

* change to better

* add benchmark

* build

* change to bazel fork

* fix prefix

* make it work with library

* update to latest

* change again

* add import

* update to latest

* add sha commit

* new static lib with groups swapped

* using herumis new lib

* fix dep paths in c headers

* update again

* new changes

* fix commit

* fix serialization

* comment

* fix test

* fix to herumis latest version

* fix test

* fix benchmarks

* add new workspace

* change commit and remove init

* get test to pass

* remove parameter

* remove reverse byte order

* make gazelle happy

* set pure to off

* fix failing tests

* remove old ref

* use HashWithDomain functions

* update to latest version

* clean up

* gaz

* add back removed code

* switch off pure
2019-11-14 09:51:42 -06:00

76 lines
1.6 KiB
Go

package bls_test
import (
"testing"
bls2 "github.com/herumi/bls-eth-go-binary/bls"
"github.com/prysmaticlabs/prysm/shared/bls"
"github.com/prysmaticlabs/prysm/shared/hashutil"
)
func BenchmarkPairing(b *testing.B) {
bls2.Init(bls2.BLS12_381)
newGt := &bls2.GT{}
newG1 := &bls2.G1{}
newG2 := &bls2.G2{}
newGt.SetInt64(10)
hash := hashutil.Hash([]byte{})
err := newG1.HashAndMapTo(hash[:])
if err != nil {
b.Fatal(err)
}
err = newG2.HashAndMapTo(hash[:])
if err != nil {
b.Fatal(err)
}
b.ResetTimer()
b.ReportAllocs()
for i := 0; i < b.N; i++ {
bls2.Pairing(newGt, newG1, newG2)
}
}
func BenchmarkSignature_Verify(b *testing.B) {
sk := bls.RandKey()
msg := []byte("Some msg")
domain := uint64(42)
sig := sk.Sign(msg, domain)
b.ResetTimer()
for i := 0; i < b.N; i++ {
if !sig.Verify(msg, sk.PublicKey(), domain) {
b.Fatal("could not verify sig")
}
}
}
func BenchmarkSignature_VerifyAggregate(b *testing.B) {
sigN := 128 // MAX_ATTESTATIONS per block.
msg := [32]byte{'s', 'i', 'g', 'n', 'e', 'd'}
domain := uint64(0)
var aggregated *bls.Signature
var pks []*bls.PublicKey
for i := 0; i < sigN; i++ {
sk := bls.RandKey()
sig := sk.Sign(msg[:], domain)
if aggregated == nil {
aggregated = bls.AggregateSignatures([]*bls.Signature{sig})
} else {
aggregated = bls.AggregateSignatures([]*bls.Signature{aggregated, sig})
}
pks = append(pks, sk.PublicKey())
}
b.ResetTimer()
b.ReportAllocs()
for i := 0; i < b.N; i++ {
if !aggregated.VerifyAggregateCommon(pks, msg, domain) {
b.Fatal("could not verify aggregate sig")
}
}
}