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{. used . }
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import std / [ os , json ] , chronos , testutils / unittests
import .. / .. / waku / waku_keystore , . / testlib / common
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from .. / .. / waku / waku_noise / noise_utils import randomSeqByte
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procSuite " Credentials test suite " :
let testAppInfo = AppInfo ( application : " test " , appIdentifier : " 1234 " , version : " 0.1 " )
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test " Create keystore " :
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let filepath = " ./testAppKeystore.txt "
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defer :
removeFile ( filepath )
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let keystoreRes = createAppKeystore ( path = filepath , appInfo = testAppInfo )
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check :
keystoreRes . isOk ( )
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test " Load keystore " :
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let filepath = " ./testAppKeystore.txt "
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defer :
removeFile ( filepath )
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# If no keystore exists at filepath, a new one is created for appInfo and empty credentials
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let keystoreRes = loadAppKeystore ( path = filepath , appInfo = testAppInfo )
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check :
keystoreRes . isOk ( )
let keystore = keystoreRes . get ( )
check :
keystore . hasKeys ( [ " application " , " appIdentifier " , " version " , " credentials " ] )
keystore [ " application " ] . getStr ( ) = = testAppInfo . application
keystore [ " appIdentifier " ] . getStr ( ) = = testAppInfo . appIdentifier
keystore [ " version " ] . getStr ( ) = = testAppInfo . version
# We assume the loaded keystore to not have credentials set (previous tests delete the keystore at filepath)
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keystore [ " credentials " ] . len ( ) = = 0
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test " Add credentials to keystore " :
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let filepath = " ./testAppKeystore.txt "
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defer :
removeFile ( filepath )
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# We generate a random identity credential (inter-value constrains are not enforced, otherwise we need to load e.g. zerokit RLN keygen)
var
idTrapdoor = randomSeqByte ( rng [ ] , 32 )
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idNullifier = randomSeqByte ( rng [ ] , 32 )
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idSecretHash = randomSeqByte ( rng [ ] , 32 )
idCommitment = randomSeqByte ( rng [ ] , 32 )
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var idCredential = IdentityCredential (
idTrapdoor : idTrapdoor ,
idNullifier : idNullifier ,
idSecretHash : idSecretHash ,
idCommitment : idCommitment ,
)
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var contract = MembershipContract (
chainId : " 5 " , address : " 0x0123456789012345678901234567890123456789 "
)
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var index = MembershipIndex ( 1 )
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let membershipCredential = KeystoreMembership (
membershipContract : contract , treeIndex : index , identityCredential : idCredential
)
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let password = " %m0um0ucoW% "
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let keystoreRes = addMembershipCredentials (
path = filepath ,
membership = membershipCredential ,
password = password ,
appInfo = testAppInfo ,
)
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check :
keystoreRes . isOk ( )
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test " Add/retrieve credentials in keystore " :
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let filepath = " ./testAppKeystore.txt "
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defer :
removeFile ( filepath )
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# We generate two random identity credentials (inter-value constrains are not enforced, otherwise we need to load e.g. zerokit RLN keygen)
var
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idTrapdoor = randomSeqByte ( rng [ ] , 32 )
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idNullifier = randomSeqByte ( rng [ ] , 32 )
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idSecretHash = randomSeqByte ( rng [ ] , 32 )
idCommitment = randomSeqByte ( rng [ ] , 32 )
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idCredential = IdentityCredential (
idTrapdoor : idTrapdoor ,
idNullifier : idNullifier ,
idSecretHash : idSecretHash ,
idCommitment : idCommitment ,
)
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# We generate two distinct membership groups
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var contract = MembershipContract (
chainId : " 5 " , address : " 0x0123456789012345678901234567890123456789 "
)
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var index = MembershipIndex ( 1 )
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var membershipCredential = KeystoreMembership (
membershipContract : contract , treeIndex : index , identityCredential : idCredential
)
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let password = " %m0um0ucoW% "
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# We add credentials to the keystore. Note that only 3 credentials should be effectively added, since rlnMembershipCredentials3 is equal to membershipCredentials2
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let keystoreRes = addMembershipCredentials (
path = filepath ,
membership = membershipCredential ,
password = password ,
appInfo = testAppInfo ,
)
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check :
keystoreRes . isOk ( )
# We test retrieval of credentials.
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var expectedMembership = membershipCredential
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let membershipQuery =
KeystoreMembership ( membershipContract : contract , treeIndex : index )
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var recoveredCredentialsRes = getMembershipCredentials (
path = filepath ,
password = password ,
query = membershipQuery ,
appInfo = testAppInfo ,
)
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check :
recoveredCredentialsRes . isOk ( )
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recoveredCredentialsRes . get ( ) = = expectedMembership
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test " if the keystore contains only one credential, fetch that irrespective of treeIndex " :
let filepath = " ./testAppKeystore.txt "
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defer :
removeFile ( filepath )
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# We generate random identity credentials (inter-value constrains are not enforced, otherwise we need to load e.g. zerokit RLN keygen)
let
idTrapdoor = randomSeqByte ( rng [ ] , 32 )
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idNullifier = randomSeqByte ( rng [ ] , 32 )
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idSecretHash = randomSeqByte ( rng [ ] , 32 )
idCommitment = randomSeqByte ( rng [ ] , 32 )
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idCredential = IdentityCredential (
idTrapdoor : idTrapdoor ,
idNullifier : idNullifier ,
idSecretHash : idSecretHash ,
idCommitment : idCommitment ,
)
let contract = MembershipContract (
chainId : " 5 " , address : " 0x0123456789012345678901234567890123456789 "
)
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let index = MembershipIndex ( 1 )
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let membershipCredential = KeystoreMembership (
membershipContract : contract , treeIndex : index , identityCredential : idCredential
)
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let password = " %m0um0ucoW% "
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let keystoreRes = addMembershipCredentials (
path = filepath ,
membership = membershipCredential ,
password = password ,
appInfo = testAppInfo ,
)
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assert ( keystoreRes . isOk ( ) , $ keystoreRes . error )
# We test retrieval of credentials.
let expectedMembership = membershipCredential
let membershipQuery = KeystoreMembership ( membershipContract : contract )
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let recoveredCredentialsRes = getMembershipCredentials (
path = filepath ,
password = password ,
query = membershipQuery ,
appInfo = testAppInfo ,
)
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assert ( recoveredCredentialsRes . isOk ( ) , $ recoveredCredentialsRes . error )
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check :
recoveredCredentialsRes . get ( ) = = expectedMembership
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test " if the keystore contains multiple credentials, then error out if treeIndex has not been passed in " :
let filepath = " ./testAppKeystore.txt "
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defer :
removeFile ( filepath )
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# We generate random identity credentials (inter-value constrains are not enforced, otherwise we need to load e.g. zerokit RLN keygen)
let
idTrapdoor = randomSeqByte ( rng [ ] , 32 )
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idNullifier = randomSeqByte ( rng [ ] , 32 )
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idSecretHash = randomSeqByte ( rng [ ] , 32 )
idCommitment = randomSeqByte ( rng [ ] , 32 )
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idCredential = IdentityCredential (
idTrapdoor : idTrapdoor ,
idNullifier : idNullifier ,
idSecretHash : idSecretHash ,
idCommitment : idCommitment ,
)
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# We generate two distinct membership groups
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let contract = MembershipContract (
chainId : " 5 " , address : " 0x0123456789012345678901234567890123456789 "
)
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let index = MembershipIndex ( 1 )
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var membershipCredential = KeystoreMembership (
membershipContract : contract , treeIndex : index , identityCredential : idCredential
)
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let password = " %m0um0ucoW% "
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let keystoreRes = addMembershipCredentials (
path = filepath ,
membership = membershipCredential ,
password = password ,
appInfo = testAppInfo ,
)
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assert ( keystoreRes . isOk ( ) , $ keystoreRes . error )
membershipCredential . treeIndex = MembershipIndex ( 2 )
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let keystoreRes2 = addMembershipCredentials (
path = filepath ,
membership = membershipCredential ,
password = password ,
appInfo = testAppInfo ,
)
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assert ( keystoreRes2 . isOk ( ) , $ keystoreRes2 . error )
# We test retrieval of credentials.
let membershipQuery = KeystoreMembership ( membershipContract : contract )
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let recoveredCredentialsRes = getMembershipCredentials (
path = filepath ,
password = password ,
query = membershipQuery ,
appInfo = testAppInfo ,
)
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check :
recoveredCredentialsRes . isErr ( )
recoveredCredentialsRes . error . kind = = KeystoreCredentialNotFoundError