2011-10-01 02:47:47 +02:00
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#include <boost/test/unit_test.hpp>
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2012-09-29 11:13:32 +02:00
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#include "json/json_spirit_reader_template.h"
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#include "json/json_spirit_writer_template.h"
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#include "json/json_spirit_utils.h"
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2013-09-10 21:18:09 +02:00
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#include "data/base58_encode_decode.json.h"
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#include "data/base58_keys_invalid.json.h"
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#include "data/base58_keys_valid.json.h"
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2011-10-01 02:47:47 +02:00
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2012-05-14 23:44:52 +02:00
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#include "base58.h"
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2012-09-29 11:13:32 +02:00
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#include "util.h"
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using namespace json_spirit;
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2013-09-10 21:18:09 +02:00
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extern Array read_json(const std::string& jsondata);
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2011-10-01 02:47:47 +02:00
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BOOST_AUTO_TEST_SUITE(base58_tests)
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2012-09-29 11:13:32 +02:00
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// Goal: test low-level base58 encoding functionality
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BOOST_AUTO_TEST_CASE(base58_EncodeBase58)
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{
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2013-09-10 21:18:09 +02:00
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Array tests = read_json(std::string(json_tests::base58_encode_decode, json_tests::base58_encode_decode + sizeof(json_tests::base58_encode_decode)));
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2012-09-29 11:13:32 +02:00
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BOOST_FOREACH(Value& tv, tests)
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{
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Array test = tv.get_array();
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std::string strTest = write_string(tv, false);
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if (test.size() < 2) // Allow for extra stuff (useful for comments)
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{
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BOOST_ERROR("Bad test: " << strTest);
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continue;
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}
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std::vector<unsigned char> sourcedata = ParseHex(test[0].get_str());
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std::string base58string = test[1].get_str();
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BOOST_CHECK_MESSAGE(
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EncodeBase58(&sourcedata[0], &sourcedata[sourcedata.size()]) == base58string,
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strTest);
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}
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}
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// Goal: test low-level base58 decoding functionality
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BOOST_AUTO_TEST_CASE(base58_DecodeBase58)
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{
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2013-09-10 21:18:09 +02:00
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Array tests = read_json(std::string(json_tests::base58_encode_decode, json_tests::base58_encode_decode + sizeof(json_tests::base58_encode_decode)));
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2012-09-29 11:13:32 +02:00
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std::vector<unsigned char> result;
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BOOST_FOREACH(Value& tv, tests)
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{
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Array test = tv.get_array();
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std::string strTest = write_string(tv, false);
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if (test.size() < 2) // Allow for extra stuff (useful for comments)
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{
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BOOST_ERROR("Bad test: " << strTest);
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continue;
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}
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std::vector<unsigned char> expected = ParseHex(test[0].get_str());
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std::string base58string = test[1].get_str();
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BOOST_CHECK_MESSAGE(DecodeBase58(base58string, result), strTest);
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BOOST_CHECK_MESSAGE(result.size() == expected.size() && std::equal(result.begin(), result.end(), expected.begin()), strTest);
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}
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BOOST_CHECK(!DecodeBase58("invalid", result));
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}
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// Visitor to check address type
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class TestAddrTypeVisitor : public boost::static_visitor<bool>
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{
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private:
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std::string exp_addrType;
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public:
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TestAddrTypeVisitor(const std::string &exp_addrType) : exp_addrType(exp_addrType) { }
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bool operator()(const CKeyID &id) const
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{
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return (exp_addrType == "pubkey");
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}
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bool operator()(const CScriptID &id) const
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{
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return (exp_addrType == "script");
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}
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bool operator()(const CNoDestination &no) const
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{
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return (exp_addrType == "none");
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}
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2011-10-01 02:47:47 +02:00
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};
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2012-09-29 11:13:32 +02:00
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// Visitor to check address payload
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class TestPayloadVisitor : public boost::static_visitor<bool>
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{
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private:
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std::vector<unsigned char> exp_payload;
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public:
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TestPayloadVisitor(std::vector<unsigned char> &exp_payload) : exp_payload(exp_payload) { }
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bool operator()(const CKeyID &id) const
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{
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uint160 exp_key(exp_payload);
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return exp_key == id;
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}
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bool operator()(const CScriptID &id) const
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{
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uint160 exp_key(exp_payload);
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return exp_key == id;
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}
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bool operator()(const CNoDestination &no) const
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{
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return exp_payload.size() == 0;
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}
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2011-10-01 02:47:47 +02:00
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};
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2012-09-29 11:13:32 +02:00
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// Goal: check that parsed keys match test payload
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BOOST_AUTO_TEST_CASE(base58_keys_valid_parse)
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2011-10-01 02:47:47 +02:00
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{
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2013-09-10 21:18:09 +02:00
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Array tests = read_json(std::string(json_tests::base58_keys_valid, json_tests::base58_keys_valid + sizeof(json_tests::base58_keys_valid)));
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2012-09-29 11:13:32 +02:00
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std::vector<unsigned char> result;
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CBitcoinSecret secret;
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CBitcoinAddress addr;
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BOOST_FOREACH(Value& tv, tests)
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2011-10-01 02:47:47 +02:00
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{
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2012-09-29 11:13:32 +02:00
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Array test = tv.get_array();
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std::string strTest = write_string(tv, false);
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if (test.size() < 3) // Allow for extra stuff (useful for comments)
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{
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BOOST_ERROR("Bad test: " << strTest);
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continue;
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}
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std::string exp_base58string = test[0].get_str();
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std::vector<unsigned char> exp_payload = ParseHex(test[1].get_str());
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const Object &metadata = test[2].get_obj();
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bool isPrivkey = find_value(metadata, "isPrivkey").get_bool();
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bool isTestnet = find_value(metadata, "isTestnet").get_bool();
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2013-05-07 15:16:25 +02:00
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if (isTestnet)
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SelectParams(CChainParams::TESTNET);
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else
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SelectParams(CChainParams::MAIN);
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2012-09-29 11:13:32 +02:00
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if(isPrivkey)
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{
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bool isCompressed = find_value(metadata, "isCompressed").get_bool();
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// Must be valid private key
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// Note: CBitcoinSecret::SetString tests isValid, whereas CBitcoinAddress does not!
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BOOST_CHECK_MESSAGE(secret.SetString(exp_base58string), "!SetString:"+ strTest);
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BOOST_CHECK_MESSAGE(secret.IsValid(), "!IsValid:" + strTest);
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2013-05-01 06:52:05 +02:00
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CKey privkey = secret.GetKey();
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BOOST_CHECK_MESSAGE(privkey.IsCompressed() == isCompressed, "compressed mismatch:" + strTest);
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2012-09-29 11:13:32 +02:00
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BOOST_CHECK_MESSAGE(privkey.size() == exp_payload.size() && std::equal(privkey.begin(), privkey.end(), exp_payload.begin()), "key mismatch:" + strTest);
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// Private key must be invalid public key
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addr.SetString(exp_base58string);
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BOOST_CHECK_MESSAGE(!addr.IsValid(), "IsValid privkey as pubkey:" + strTest);
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}
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else
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{
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std::string exp_addrType = find_value(metadata, "addrType").get_str(); // "script" or "pubkey"
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// Must be valid public key
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BOOST_CHECK_MESSAGE(addr.SetString(exp_base58string), "SetString:" + strTest);
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BOOST_CHECK_MESSAGE(addr.IsValid(), "!IsValid:" + strTest);
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BOOST_CHECK_MESSAGE(addr.IsScript() == (exp_addrType == "script"), "isScript mismatch" + strTest);
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CTxDestination dest = addr.Get();
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BOOST_CHECK_MESSAGE(boost::apply_visitor(TestAddrTypeVisitor(exp_addrType), dest), "addrType mismatch" + strTest);
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// Public key must be invalid private key
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secret.SetString(exp_base58string);
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BOOST_CHECK_MESSAGE(!secret.IsValid(), "IsValid pubkey as privkey:" + strTest);
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}
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2011-10-01 02:47:47 +02:00
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}
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2013-05-07 15:16:25 +02:00
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SelectParams(CChainParams::MAIN);
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2011-10-01 02:47:47 +02:00
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}
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2012-09-29 11:13:32 +02:00
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// Goal: check that generated keys match test vectors
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BOOST_AUTO_TEST_CASE(base58_keys_valid_gen)
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2011-10-01 02:47:47 +02:00
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{
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2013-09-10 21:18:09 +02:00
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Array tests = read_json(std::string(json_tests::base58_keys_valid, json_tests::base58_keys_valid + sizeof(json_tests::base58_keys_valid)));
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2011-10-01 02:47:47 +02:00
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std::vector<unsigned char> result;
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2012-09-29 11:13:32 +02:00
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BOOST_FOREACH(Value& tv, tests)
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2011-10-01 02:47:47 +02:00
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{
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2012-09-29 11:13:32 +02:00
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Array test = tv.get_array();
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std::string strTest = write_string(tv, false);
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if (test.size() < 3) // Allow for extra stuff (useful for comments)
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{
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BOOST_ERROR("Bad test: " << strTest);
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continue;
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}
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std::string exp_base58string = test[0].get_str();
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std::vector<unsigned char> exp_payload = ParseHex(test[1].get_str());
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const Object &metadata = test[2].get_obj();
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bool isPrivkey = find_value(metadata, "isPrivkey").get_bool();
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bool isTestnet = find_value(metadata, "isTestnet").get_bool();
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2013-05-07 15:16:25 +02:00
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if (isTestnet)
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SelectParams(CChainParams::TESTNET);
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else
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SelectParams(CChainParams::MAIN);
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2012-09-29 11:13:32 +02:00
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if(isPrivkey)
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{
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bool isCompressed = find_value(metadata, "isCompressed").get_bool();
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2013-05-01 06:52:05 +02:00
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CKey key;
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key.Set(exp_payload.begin(), exp_payload.end(), isCompressed);
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assert(key.IsValid());
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2012-09-29 11:13:32 +02:00
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CBitcoinSecret secret;
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2013-05-01 06:52:05 +02:00
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secret.SetKey(key);
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2012-09-29 11:13:32 +02:00
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BOOST_CHECK_MESSAGE(secret.ToString() == exp_base58string, "result mismatch: " + strTest);
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}
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else
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{
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std::string exp_addrType = find_value(metadata, "addrType").get_str();
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CTxDestination dest;
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if(exp_addrType == "pubkey")
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{
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dest = CKeyID(uint160(exp_payload));
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}
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else if(exp_addrType == "script")
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{
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dest = CScriptID(uint160(exp_payload));
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}
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else if(exp_addrType == "none")
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{
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dest = CNoDestination();
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}
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else
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{
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BOOST_ERROR("Bad addrtype: " << strTest);
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continue;
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}
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CBitcoinAddress addrOut;
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BOOST_CHECK_MESSAGE(boost::apply_visitor(CBitcoinAddressVisitor(&addrOut), dest), "encode dest: " + strTest);
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BOOST_CHECK_MESSAGE(addrOut.ToString() == exp_base58string, "mismatch: " + strTest);
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}
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}
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// Visiting a CNoDestination must fail
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CBitcoinAddress dummyAddr;
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CTxDestination nodest = CNoDestination();
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BOOST_CHECK(!boost::apply_visitor(CBitcoinAddressVisitor(&dummyAddr), nodest));
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2013-05-07 15:16:25 +02:00
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SelectParams(CChainParams::MAIN);
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2012-09-29 11:13:32 +02:00
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}
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// Goal: check that base58 parsing code is robust against a variety of corrupted data
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BOOST_AUTO_TEST_CASE(base58_keys_invalid)
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{
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2013-09-10 21:18:09 +02:00
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Array tests = read_json(std::string(json_tests::base58_keys_invalid, json_tests::base58_keys_invalid + sizeof(json_tests::base58_keys_invalid))); // Negative testcases
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2012-09-29 11:13:32 +02:00
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std::vector<unsigned char> result;
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CBitcoinSecret secret;
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CBitcoinAddress addr;
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BOOST_FOREACH(Value& tv, tests)
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{
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Array test = tv.get_array();
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std::string strTest = write_string(tv, false);
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if (test.size() < 1) // Allow for extra stuff (useful for comments)
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{
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BOOST_ERROR("Bad test: " << strTest);
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continue;
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}
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std::string exp_base58string = test[0].get_str();
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// must be invalid as public and as private key
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addr.SetString(exp_base58string);
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BOOST_CHECK_MESSAGE(!addr.IsValid(), "IsValid pubkey:" + strTest);
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secret.SetString(exp_base58string);
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BOOST_CHECK_MESSAGE(!secret.IsValid(), "IsValid privkey:" + strTest);
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2011-10-01 02:47:47 +02:00
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}
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}
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2012-09-29 11:13:32 +02:00
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2011-10-01 02:47:47 +02:00
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BOOST_AUTO_TEST_SUITE_END()
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