Browse Source

Merge branch '2012_09_base58tests' of github.com:laanwj/bitcoin

miguelfreitas
Gavin Andresen 12 years ago
parent
commit
00a757375c
  1. 1
      contrib/testgen/README
  2. 104
      contrib/testgen/base58.py
  3. 126
      contrib/testgen/gen_base58_test_vectors.py
  4. 300
      src/test/base58_tests.cpp
  5. 14
      src/test/data/base58_encode_decode.json
  6. 152
      src/test/data/base58_keys_invalid.json
  7. 452
      src/test/data/base58_keys_valid.json

1
contrib/testgen/README

@ -0,0 +1 @@
Utilities to generate test vectors for the data-driven Bitcoin tests

104
contrib/testgen/base58.py

@ -0,0 +1,104 @@
'''
Bitcoin base58 encoding and decoding.
Based on https://bitcointalk.org/index.php?topic=1026.0 (public domain)
'''
import hashlib
# for compatibility with following code...
class SHA256:
new = hashlib.sha256
if str != bytes:
# Python 3.x
def ord(c):
return c
def chr(n):
return bytes( (n,) )
__b58chars = '123456789ABCDEFGHJKLMNPQRSTUVWXYZabcdefghijkmnopqrstuvwxyz'
__b58base = len(__b58chars)
b58chars = __b58chars
def b58encode(v):
""" encode v, which is a string of bytes, to base58.
"""
long_value = 0
for (i, c) in enumerate(v[::-1]):
long_value += (256**i) * ord(c)
result = ''
while long_value >= __b58base:
div, mod = divmod(long_value, __b58base)
result = __b58chars[mod] + result
long_value = div
result = __b58chars[long_value] + result
# Bitcoin does a little leading-zero-compression:
# leading 0-bytes in the input become leading-1s
nPad = 0
for c in v:
if c == '\0': nPad += 1
else: break
return (__b58chars[0]*nPad) + result
def b58decode(v, length = None):
""" decode v into a string of len bytes
"""
long_value = 0
for (i, c) in enumerate(v[::-1]):
long_value += __b58chars.find(c) * (__b58base**i)
result = bytes()
while long_value >= 256:
div, mod = divmod(long_value, 256)
result = chr(mod) + result
long_value = div
result = chr(long_value) + result
nPad = 0
for c in v:
if c == __b58chars[0]: nPad += 1
else: break
result = chr(0)*nPad + result
if length is not None and len(result) != length:
return None
return result
def checksum(v):
"""Return 32-bit checksum based on SHA256"""
return SHA256.new(SHA256.new(v).digest()).digest()[0:4]
def b58encode_chk(v):
"""b58encode a string, with 32-bit checksum"""
return b58encode(v + checksum(v))
def b58decode_chk(v):
"""decode a base58 string, check and remove checksum"""
result = b58decode(v)
if result is None:
return None
h3 = checksum(result[:-4])
if result[-4:] == checksum(result[:-4]):
return result[:-4]
else:
return None
def get_bcaddress_version(strAddress):
""" Returns None if strAddress is invalid. Otherwise returns integer version of address. """
addr = b58decode_chk(strAddress)
if addr is None or len(addr)!=21: return None
version = addr[0]
return ord(version)
if __name__ == '__main__':
# Test case (from http://gitorious.org/bitcoin/python-base58.git)
assert get_bcaddress_version('15VjRaDX9zpbA8LVnbrCAFzrVzN7ixHNsC') is 0
_ohai = 'o hai'.encode('ascii')
_tmp = b58encode(_ohai)
assert _tmp == 'DYB3oMS'
assert b58decode(_tmp, 5) == _ohai
print("Tests passed")

126
contrib/testgen/gen_base58_test_vectors.py

@ -0,0 +1,126 @@
#!/usr/bin/env python
'''
Generate valid and invalid base58 address and private key test vectors.
Usage:
gen_base58_test_vectors.py valid 50 > ../../src/test/data/base58_keys_valid.json
gen_base58_test_vectors.py invalid 50 > ../../src/test/data/base58_keys_invalid.json
'''
# 2012 Wladimir J. van der Laan
# Released under MIT License
import os
from itertools import islice
from base58 import b58encode, b58decode, b58encode_chk, b58decode_chk, b58chars
import random
from binascii import b2a_hex
# key types
PUBKEY_ADDRESS = 0
SCRIPT_ADDRESS = 5
PUBKEY_ADDRESS_TEST = 111
SCRIPT_ADDRESS_TEST = 196
PRIVKEY = 128
PRIVKEY_TEST = 239
metadata_keys = ['isPrivkey', 'isTestnet', 'addrType', 'isCompressed']
# templates for valid sequences
templates = [
# prefix, payload_size, suffix, metadata
# None = N/A
((PUBKEY_ADDRESS,), 20, (), (False, False, 'pubkey', None)),
((SCRIPT_ADDRESS,), 20, (), (False, False, 'script', None)),
((PUBKEY_ADDRESS_TEST,), 20, (), (False, True, 'pubkey', None)),
((SCRIPT_ADDRESS_TEST,), 20, (), (False, True, 'script', None)),
((PRIVKEY,), 32, (), (True, False, None, False)),
((PRIVKEY,), 32, (1,), (True, False, None, True)),
((PRIVKEY_TEST,), 32, (), (True, True, None, False)),
((PRIVKEY_TEST,), 32, (1,), (True, True, None, True))
]
def is_valid(v):
'''Check vector v for validity'''
result = b58decode_chk(v)
if result is None:
return False
valid = False
for template in templates:
prefix = str(bytearray(template[0]))
suffix = str(bytearray(template[2]))
if result.startswith(prefix) and result.endswith(suffix):
if (len(result) - len(prefix) - len(suffix)) == template[1]:
return True
return False
def gen_valid_vectors():
'''Generate valid test vectors'''
while True:
for template in templates:
prefix = str(bytearray(template[0]))
payload = os.urandom(template[1])
suffix = str(bytearray(template[2]))
rv = b58encode_chk(prefix + payload + suffix)
assert is_valid(rv)
metadata = dict([(x,y) for (x,y) in zip(metadata_keys,template[3]) if y is not None])
yield (rv, b2a_hex(payload), metadata)
def gen_invalid_vector(template, corrupt_prefix, randomize_payload_size, corrupt_suffix):
'''Generate possibly invalid vector'''
if corrupt_prefix:
prefix = os.urandom(1)
else:
prefix = str(bytearray(template[0]))
if randomize_payload_size:
payload = os.urandom(max(int(random.expovariate(0.5)), 50))
else:
payload = os.urandom(template[1])
if corrupt_suffix:
suffix = os.urandom(len(template[2]))
else:
suffix = str(bytearray(template[2]))
return b58encode_chk(prefix + payload + suffix)
def randbool(p = 0.5):
'''Return True with P(p)'''
return random.random() < p
def gen_invalid_vectors():
'''Generate invalid test vectors'''
# start with some manual edge-cases
yield "",
yield "x",
while True:
# kinds of invalid vectors:
# invalid prefix
# invalid payload length
# invalid (randomized) suffix (add random data)
# corrupt checksum
for template in templates:
val = gen_invalid_vector(template, randbool(0.2), randbool(0.2), randbool(0.2))
if random.randint(0,10)<1: # line corruption
if randbool(): # add random character to end
val += random.choice(b58chars)
else: # replace random character in the middle
n = random.randint(0, len(val))
val = val[0:n] + random.choice(b58chars) + val[n+1:]
if not is_valid(val):
yield val,
if __name__ == '__main__':
import sys, json
iters = {'valid':gen_valid_vectors, 'invalid':gen_invalid_vectors}
try:
uiter = iters[sys.argv[1]]
except IndexError:
uiter = gen_valid_vectors
try:
count = int(sys.argv[2])
except IndexError:
count = 0
data = list(islice(uiter(), count))
json.dump(data, sys.stdout, sort_keys=True, indent=4)
sys.stdout.write('\n')

300
src/test/base58_tests.cpp

@ -1,87 +1,259 @@
#include <boost/test/unit_test.hpp> #include <boost/test/unit_test.hpp>
#include "json/json_spirit_reader_template.h"
#include "json/json_spirit_writer_template.h"
#include "json/json_spirit_utils.h"
#include "base58.h" #include "base58.h"
#include "util.h"
using namespace json_spirit;
extern Array read_json(const std::string& filename);
BOOST_AUTO_TEST_SUITE(base58_tests) BOOST_AUTO_TEST_SUITE(base58_tests)
// TODO: // Goal: test low-level base58 encoding functionality
// EncodeBase58Check BOOST_AUTO_TEST_CASE(base58_EncodeBase58)
// DecodeBase58Check {
// CBase58Data Array tests = read_json("base58_encode_decode.json");
// bool SetString(const char* psz)
// bool SetString(const std::string& str) BOOST_FOREACH(Value& tv, tests)
// std::string ToString() const {
// int CompareTo(const CBase58Data& b58) const Array test = tv.get_array();
// bool operator==(const CBase58Data& b58) const std::string strTest = write_string(tv, false);
// bool operator<=(const CBase58Data& b58) const if (test.size() < 2) // Allow for extra stuff (useful for comments)
// bool operator>=(const CBase58Data& b58) const {
// bool operator< (const CBase58Data& b58) const BOOST_ERROR("Bad test: " << strTest);
// bool operator> (const CBase58Data& b58) const continue;
}
// CBitcoinAddress std::vector<unsigned char> sourcedata = ParseHex(test[0].get_str());
// bool SetHash160(const uint160& hash160) std::string base58string = test[1].get_str();
// bool SetPubKey(const std::vector<unsigned char>& vchPubKey) BOOST_CHECK_MESSAGE(
// bool IsValid() const EncodeBase58(&sourcedata[0], &sourcedata[sourcedata.size()]) == base58string,
// CBitcoinAddress() strTest);
// CBitcoinAddress(uint160 hash160In) }
// CBitcoinAddress(const std::vector<unsigned char>& vchPubKey) }
// CBitcoinAddress(const std::string& strAddress)
// CBitcoinAddress(const char* pszAddress) // Goal: test low-level base58 decoding functionality
// uint160 GetHash160() const BOOST_AUTO_TEST_CASE(base58_DecodeBase58)
{
#define U(x) (reinterpret_cast<const unsigned char*>(x)) Array tests = read_json("base58_encode_decode.json");
static struct { std::vector<unsigned char> result;
const unsigned char *data;
int size; BOOST_FOREACH(Value& tv, tests)
} vstrIn[] = { {
{U(""), 0}, Array test = tv.get_array();
{U("\x61"), 1}, std::string strTest = write_string(tv, false);
{U("\x62\x62\x62"), 3}, if (test.size() < 2) // Allow for extra stuff (useful for comments)
{U("\x63\x63\x63"), 3}, {
{U("\x73\x69\x6d\x70\x6c\x79\x20\x61\x20\x6c\x6f\x6e\x67\x20\x73\x74\x72\x69\x6e\x67"), 20}, BOOST_ERROR("Bad test: " << strTest);
{U("\x00\xeb\x15\x23\x1d\xfc\xeb\x60\x92\x58\x86\xb6\x7d\x06\x52\x99\x92\x59\x15\xae\xb1\x72\xc0\x66\x47"), 25}, continue;
{U("\x51\x6b\x6f\xcd\x0f"), 5}, }
{U("\xbf\x4f\x89\x00\x1e\x67\x02\x74\xdd"), 9}, std::vector<unsigned char> expected = ParseHex(test[0].get_str());
{U("\x57\x2e\x47\x94"), 4}, std::string base58string = test[1].get_str();
{U("\xec\xac\x89\xca\xd9\x39\x23\xc0\x23\x21"), 10}, BOOST_CHECK_MESSAGE(DecodeBase58(base58string, result), strTest);
{U("\x10\xc8\x51\x1e"), 4}, BOOST_CHECK_MESSAGE(result.size() == expected.size() && std::equal(result.begin(), result.end(), expected.begin()), strTest);
{U("\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00"), 10}, }
BOOST_CHECK(!DecodeBase58("invalid", result));
}
// Visitor to check address type
class TestAddrTypeVisitor : public boost::static_visitor<bool>
{
private:
std::string exp_addrType;
public:
TestAddrTypeVisitor(const std::string &exp_addrType) : exp_addrType(exp_addrType) { }
bool operator()(const CKeyID &id) const
{
return (exp_addrType == "pubkey");
}
bool operator()(const CScriptID &id) const
{
return (exp_addrType == "script");
}
bool operator()(const CNoDestination &no) const
{
return (exp_addrType == "none");
}
}; };
const char *vstrOut[] = { // Visitor to check address payload
"", class TestPayloadVisitor : public boost::static_visitor<bool>
"2g", {
"a3gV", private:
"aPEr", std::vector<unsigned char> exp_payload;
"2cFupjhnEsSn59qHXstmK2ffpLv2", public:
"1NS17iag9jJgTHD1VXjvLCEnZuQ3rJDE9L", TestPayloadVisitor(std::vector<unsigned char> &exp_payload) : exp_payload(exp_payload) { }
"ABnLTmg", bool operator()(const CKeyID &id) const
"3SEo3LWLoPntC", {
"3EFU7m", uint160 exp_key(exp_payload);
"EJDM8drfXA6uyA", return exp_key == id;
"Rt5zm", }
"1111111111" bool operator()(const CScriptID &id) const
{
uint160 exp_key(exp_payload);
return exp_key == id;
}
bool operator()(const CNoDestination &no) const
{
return exp_payload.size() == 0;
}
}; };
BOOST_AUTO_TEST_CASE(base58_EncodeBase58) // Goal: check that parsed keys match test payload
BOOST_AUTO_TEST_CASE(base58_keys_valid_parse)
{ {
for (unsigned int i=0; i<sizeof(vstrIn)/sizeof(vstrIn[0]); i++) Array tests = read_json("base58_keys_valid.json");
std::vector<unsigned char> result;
CBitcoinSecret secret;
CBitcoinAddress addr;
// Save global state
bool fTestNet_stored = fTestNet;
BOOST_FOREACH(Value& tv, tests)
{ {
BOOST_CHECK_EQUAL(EncodeBase58(vstrIn[i].data, vstrIn[i].data + vstrIn[i].size), vstrOut[i]); Array test = tv.get_array();
std::string strTest = write_string(tv, false);
if (test.size() < 3) // Allow for extra stuff (useful for comments)
{
BOOST_ERROR("Bad test: " << strTest);
continue;
}
std::string exp_base58string = test[0].get_str();
std::vector<unsigned char> exp_payload = ParseHex(test[1].get_str());
const Object &metadata = test[2].get_obj();
bool isPrivkey = find_value(metadata, "isPrivkey").get_bool();
bool isTestnet = find_value(metadata, "isTestnet").get_bool();
fTestNet = isTestnet; // Override testnet flag
if(isPrivkey)
{
bool isCompressed = find_value(metadata, "isCompressed").get_bool();
// Must be valid private key
// Note: CBitcoinSecret::SetString tests isValid, whereas CBitcoinAddress does not!
BOOST_CHECK_MESSAGE(secret.SetString(exp_base58string), "!SetString:"+ strTest);
BOOST_CHECK_MESSAGE(secret.IsValid(), "!IsValid:" + strTest);
bool fCompressedOut = false;
CSecret privkey = secret.GetSecret(fCompressedOut);
BOOST_CHECK_MESSAGE(fCompressedOut == isCompressed, "compressed mismatch:" + strTest);
BOOST_CHECK_MESSAGE(privkey.size() == exp_payload.size() && std::equal(privkey.begin(), privkey.end(), exp_payload.begin()), "key mismatch:" + strTest);
// Private key must be invalid public key
addr.SetString(exp_base58string);
BOOST_CHECK_MESSAGE(!addr.IsValid(), "IsValid privkey as pubkey:" + strTest);
}
else
{
std::string exp_addrType = find_value(metadata, "addrType").get_str(); // "script" or "pubkey"
// Must be valid public key
BOOST_CHECK_MESSAGE(addr.SetString(exp_base58string), "SetString:" + strTest);
BOOST_CHECK_MESSAGE(addr.IsValid(), "!IsValid:" + strTest);
BOOST_CHECK_MESSAGE(addr.IsScript() == (exp_addrType == "script"), "isScript mismatch" + strTest);
CTxDestination dest = addr.Get();
BOOST_CHECK_MESSAGE(boost::apply_visitor(TestAddrTypeVisitor(exp_addrType), dest), "addrType mismatch" + strTest);
// Public key must be invalid private key
secret.SetString(exp_base58string);
BOOST_CHECK_MESSAGE(!secret.IsValid(), "IsValid pubkey as privkey:" + strTest);
}
} }
// Restore global state
fTestNet = fTestNet_stored;
} }
BOOST_AUTO_TEST_CASE(base58_DecodeBase58) // Goal: check that generated keys match test vectors
BOOST_AUTO_TEST_CASE(base58_keys_valid_gen)
{ {
Array tests = read_json("base58_keys_valid.json");
std::vector<unsigned char> result; std::vector<unsigned char> result;
for (unsigned int i=0; i<sizeof(vstrIn)/sizeof(vstrIn[0]); i++) // Save global state
bool fTestNet_stored = fTestNet;
BOOST_FOREACH(Value& tv, tests)
{ {
std::vector<unsigned char> expected(vstrIn[i].data, vstrIn[i].data + vstrIn[i].size); Array test = tv.get_array();
BOOST_CHECK(DecodeBase58(vstrOut[i], result)); std::string strTest = write_string(tv, false);
BOOST_CHECK_EQUAL_COLLECTIONS(result.begin(), result.end(), expected.begin(), expected.end()); if (test.size() < 3) // Allow for extra stuff (useful for comments)
{
BOOST_ERROR("Bad test: " << strTest);
continue;
} }
BOOST_CHECK(!DecodeBase58("invalid", result)); std::string exp_base58string = test[0].get_str();
std::vector<unsigned char> exp_payload = ParseHex(test[1].get_str());
const Object &metadata = test[2].get_obj();
bool isPrivkey = find_value(metadata, "isPrivkey").get_bool();
bool isTestnet = find_value(metadata, "isTestnet").get_bool();
fTestNet = isTestnet; // Override testnet flag
if(isPrivkey)
{
bool isCompressed = find_value(metadata, "isCompressed").get_bool();
CBitcoinSecret secret;
secret.SetSecret(CSecret(exp_payload.begin(), exp_payload.end()), isCompressed);
BOOST_CHECK_MESSAGE(secret.ToString() == exp_base58string, "result mismatch: " + strTest);
}
else
{
std::string exp_addrType = find_value(metadata, "addrType").get_str();
CTxDestination dest;
if(exp_addrType == "pubkey")
{
dest = CKeyID(uint160(exp_payload));
}
else if(exp_addrType == "script")
{
dest = CScriptID(uint160(exp_payload));
}
else if(exp_addrType == "none")
{
dest = CNoDestination();
}
else
{
BOOST_ERROR("Bad addrtype: " << strTest);
continue;
}
CBitcoinAddress addrOut;
BOOST_CHECK_MESSAGE(boost::apply_visitor(CBitcoinAddressVisitor(&addrOut), dest), "encode dest: " + strTest);
BOOST_CHECK_MESSAGE(addrOut.ToString() == exp_base58string, "mismatch: " + strTest);
}
}
// Visiting a CNoDestination must fail
CBitcoinAddress dummyAddr;
CTxDestination nodest = CNoDestination();
BOOST_CHECK(!boost::apply_visitor(CBitcoinAddressVisitor(&dummyAddr), nodest));
// Restore global state
fTestNet = fTestNet_stored;
} }
// Goal: check that base58 parsing code is robust against a variety of corrupted data
BOOST_AUTO_TEST_CASE(base58_keys_invalid)
{
Array tests = read_json("base58_keys_invalid.json"); // Negative testcases
std::vector<unsigned char> result;
CBitcoinSecret secret;
CBitcoinAddress addr;
BOOST_FOREACH(Value& tv, tests)
{
Array test = tv.get_array();
std::string strTest = write_string(tv, false);
if (test.size() < 1) // Allow for extra stuff (useful for comments)
{
BOOST_ERROR("Bad test: " << strTest);
continue;
}
std::string exp_base58string = test[0].get_str();
// must be invalid as public and as private key
addr.SetString(exp_base58string);
BOOST_CHECK_MESSAGE(!addr.IsValid(), "IsValid pubkey:" + strTest);
secret.SetString(exp_base58string);
BOOST_CHECK_MESSAGE(!secret.IsValid(), "IsValid privkey:" + strTest);
}
}
BOOST_AUTO_TEST_SUITE_END() BOOST_AUTO_TEST_SUITE_END()

14
src/test/data/base58_encode_decode.json

@ -0,0 +1,14 @@
[
["", ""],
["61", "2g"],
["626262", "a3gV"],
["636363", "aPEr"],
["73696d706c792061206c6f6e6720737472696e67", "2cFupjhnEsSn59qHXstmK2ffpLv2"],
["00eb15231dfceb60925886b67d065299925915aeb172c06647", "1NS17iag9jJgTHD1VXjvLCEnZuQ3rJDE9L"],
["516b6fcd0f", "ABnLTmg"],
["bf4f89001e670274dd", "3SEo3LWLoPntC"],
["572e4794", "3EFU7m"],
["ecac89cad93923c02321", "EJDM8drfXA6uyA"],
["10c8511e", "Rt5zm"],
["00000000000000000000", "1111111111"]
]

152
src/test/data/base58_keys_invalid.json

@ -0,0 +1,152 @@
[
[
""
],
[
"x"
],
[
"37qgekLpCCHrQuSjvX3fs496FWTGsHFHizjJAs6NPcR47aefnnCWECAhHV6E3g4YN7u7Yuwod5Y"
],
[
"dzb7VV1Ui55BARxv7ATxAtCUeJsANKovDGWFVgpTbhq9gvPqP3yv"
],
[
"MuNu7ZAEDFiHthiunm7dPjwKqrVNCM3mAz6rP9zFveQu14YA8CxExSJTHcVP9DErn6u84E6Ej7S"
],
[
"rPpQpYknyNQ5AEHuY6H8ijJJrYc2nDKKk9jjmKEXsWzyAQcFGpDLU2Zvsmoi8JLR7hAwoy3RQWf"
],
[
"4Uc3FmN6NQ6zLBK5QQBXRBUREaaHwCZYsGCueHauuDmJpZKn6jkEskMB2Zi2CNgtb5r6epWEFfUJq"
],
[
"7aQgR5DFQ25vyXmqZAWmnVCjL3PkBcdVkBUpjrjMTcghHx3E8wb"
],
[
"17QpPprjeg69fW1DV8DcYYCKvWjYhXvWkov6MJ1iTTvMFj6weAqW7wybZeH57WTNxXVCRH4veVs"
],
[
"KxuACDviz8Xvpn1xAh9MfopySZNuyajYMZWz16Dv2mHHryznWUp3"
],
[
"7nK3GSmqdXJQtdohvGfJ7KsSmn3TmGqExug49583bDAL91pVSGq5xS9SHoAYL3Wv3ijKTit65th"
],
[
"cTivdBmq7bay3RFGEBBuNfMh2P1pDCgRYN2Wbxmgwr4ki3jNUL2va"
],
[
"gjMV4vjNjyMrna4fsAr8bWxAbwtmMUBXJS3zL4NJt5qjozpbQLmAfK1uA3CquSqsZQMpoD1g2nk"
],
[
"emXm1naBMoVzPjbk7xpeTVMFy4oDEe25UmoyGgKEB1gGWsK8kRGs"
],
[
"7VThQnNRj1o3Zyvc7XHPRrjDf8j2oivPTeDXnRPYWeYGE4pXeRJDZgf28ppti5hsHWXS2GSobdqyo"
],
[
"1G9u6oCVCPh2o8m3t55ACiYvG1y5BHewUkDSdiQarDcYXXhFHYdzMdYfUAhfxn5vNZBwpgUNpso"
],
[
"31QQ7ZMLkScDiB4VyZjuptr7AEc9j1SjstF7pRoLhHTGkW4Q2y9XELobQmhhWxeRvqcukGd1XCq"
],
[
"DHqKSnpxa8ZdQyH8keAhvLTrfkyBMQxqngcQA5N8LQ9KVt25kmGN"
],
[
"2LUHcJPbwLCy9GLH1qXmfmAwvadWw4bp4PCpDfduLqV17s6iDcy1imUwhQJhAoNoN1XNmweiJP4i"
],
[
"7USRzBXAnmck8fX9HmW7RAb4qt92VFX6soCnts9s74wxm4gguVhtG5of8fZGbNPJA83irHVY6bCos"
],
[
"1DGezo7BfVebZxAbNT3XGujdeHyNNBF3vnficYoTSp4PfK2QaML9bHzAMxke3wdKdHYWmsMTJVu"
],
[
"2D12DqDZKwCxxkzs1ZATJWvgJGhQ4cFi3WrizQ5zLAyhN5HxuAJ1yMYaJp8GuYsTLLxTAz6otCfb"
],
[
"8AFJzuTujXjw1Z6M3fWhQ1ujDW7zsV4ePeVjVo7D1egERqSW9nZ"
],
[
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]
]

452
src/test/data/base58_keys_valid.json

@ -0,0 +1,452 @@
[
[
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{
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}
],
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{
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}
],
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{
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}
],
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}
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}
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[
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],
[
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{
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}
],
[
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{
"addrType": "script",
"isPrivkey": false,
"isTestnet": false
}
]
]
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