#include <flatfile.h>
#include <node/blockstorage.h>
#include <streams.h>
#include <test/util/random.h>
#include <test/util/setup_common.h>
#include <util/fs.h>
#include <util/strencodings.h>
#include <boost/test/unit_test.hpp>
using namespace std::string_literals;
BOOST_FIXTURE_TEST_SUITE(streams_tests, BasicTestingSetup)
BOOST_AUTO_TEST_CASE(xor_file)
{
fs::path xor_path{m_args.GetDataDirBase() / "test_xor.bin"};
auto raw_file{[&](const auto& mode) { return fsbridge::fopen(xor_path, mode); }};
const std::vector<uint8_t> test1{1, 2, 3};
const std::vector<uint8_t> test2{4, 5};
const std::vector<std::byte> xor_pat{std::byte{0xff}, std::byte{0x00}};
{
AutoFile xor_file{raw_file("rb"), xor_pat};
BOOST_CHECK_EXCEPTION(xor_file << std::byte{}, std::ios_base::failure, HasReason{"AutoFile::write: file handle is nullpt"});
BOOST_CHECK_EXCEPTION(xor_file >> std::byte{}, std::ios_base::failure, HasReason{"AutoFile::read: file handle is nullpt"});
BOOST_CHECK_EXCEPTION(xor_file.ignore(1), std::ios_base::failure, HasReason{"AutoFile::ignore: file handle is nullpt"});
}
{
#ifdef __MINGW64__
const char* mode = "wb";
#else
const char* mode = "wbx";
#endif
AutoFile xor_file{raw_file(mode), xor_pat};
xor_file << test1 << test2;
BOOST_REQUIRE_EQUAL(xor_file.fclose(), 0);
}
{
AutoFile non_xor_file{raw_file("rb")};
std::vector<std::byte> raw(7);
non_xor_file >> std::span{raw};
BOOST_CHECK_EQUAL(HexStr(raw), "fc01fd03fd04fa");
BOOST_CHECK_EXCEPTION(non_xor_file.ignore(1), std::ios_base::failure, HasReason{"AutoFile::ignore: end of file"});
}
{
AutoFile xor_file{raw_file("rb"), xor_pat};
std::vector<std::byte> read1, read2;
xor_file >> read1 >> read2;
BOOST_CHECK_EQUAL(HexStr(read1), HexStr(test1));
BOOST_CHECK_EQUAL(HexStr(read2), HexStr(test2));
BOOST_CHECK_EXCEPTION(xor_file >> std::byte{}, std::ios_base::failure, HasReason{"AutoFile::read: end of file"});
}
{
AutoFile xor_file{raw_file("rb"), xor_pat};
std::vector<std::byte> read2;
xor_file.ignore(4);
xor_file >> read2;
BOOST_CHECK_EQUAL(HexStr(read2), HexStr(test2));
BOOST_CHECK_EXCEPTION(xor_file.ignore(1), std::ios_base::failure, HasReason{"AutoFile::ignore: end of file"});
BOOST_CHECK_EXCEPTION(xor_file >> std::byte{}, std::ios_base::failure, HasReason{"AutoFile::read: end of file"});
}
}
BOOST_AUTO_TEST_CASE(streams_vector_writer)
{
unsigned char a(1);
unsigned char b(2);
unsigned char bytes[] = { 3, 4, 5, 6 };
std::vector<unsigned char> vch;
VectorWriter{vch, 0, a, b};
BOOST_CHECK((vch == std::vector<unsigned char>{{1, 2}}));
VectorWriter{vch, 0, a, b};
BOOST_CHECK((vch == std::vector<unsigned char>{{1, 2}}));
vch.clear();
VectorWriter{vch, 2, a, b};
BOOST_CHECK((vch == std::vector<unsigned char>{{0, 0, 1, 2}}));
VectorWriter{vch, 2, a, b};
BOOST_CHECK((vch == std::vector<unsigned char>{{0, 0, 1, 2}}));
vch.clear();
vch.resize(5, 0);
VectorWriter{vch, 2, a, b};
BOOST_CHECK((vch == std::vector<unsigned char>{{0, 0, 1, 2, 0}}));
VectorWriter{vch, 2, a, b};
BOOST_CHECK((vch == std::vector<unsigned char>{{0, 0, 1, 2, 0}}));
vch.clear();
vch.resize(4, 0);
VectorWriter{vch, 3, a, b};
BOOST_CHECK((vch == std::vector<unsigned char>{{0, 0, 0, 1, 2}}));
VectorWriter{vch, 3, a, b};
BOOST_CHECK((vch == std::vector<unsigned char>{{0, 0, 0, 1, 2}}));
vch.clear();
vch.resize(4, 0);
VectorWriter{vch, 4, a, b};
BOOST_CHECK((vch == std::vector<unsigned char>{{0, 0, 0, 0, 1, 2}}));
VectorWriter{vch, 4, a, b};
BOOST_CHECK((vch == std::vector<unsigned char>{{0, 0, 0, 0, 1, 2}}));
vch.clear();
VectorWriter{vch, 0, bytes};
BOOST_CHECK((vch == std::vector<unsigned char>{{3, 4, 5, 6}}));
VectorWriter{vch, 0, bytes};
BOOST_CHECK((vch == std::vector<unsigned char>{{3, 4, 5, 6}}));
vch.clear();
vch.resize(4, 8);
VectorWriter{vch, 2, a, bytes, b};
BOOST_CHECK((vch == std::vector<unsigned char>{{8, 8, 1, 3, 4, 5, 6, 2}}));
VectorWriter{vch, 2, a, bytes, b};
BOOST_CHECK((vch == std::vector<unsigned char>{{8, 8, 1, 3, 4, 5, 6, 2}}));
vch.clear();
}
BOOST_AUTO_TEST_CASE(streams_vector_reader)
{
std::vector<unsigned char> vch = {1, 255, 3, 4, 5, 6};
SpanReader reader{vch};
BOOST_CHECK_EQUAL(reader.size(), 6U);
BOOST_CHECK(!reader.empty());
unsigned char a;
reader >> a;
BOOST_CHECK_EQUAL(a, 1);
BOOST_CHECK_EQUAL(reader.size(), 5U);
BOOST_CHECK(!reader.empty());
int8_t b;
reader >> b;
BOOST_CHECK_EQUAL(b, -1);
BOOST_CHECK_EQUAL(reader.size(), 4U);
BOOST_CHECK(!reader.empty());
unsigned int c;
reader >> c;
BOOST_CHECK_EQUAL(c, 100992003U); BOOST_CHECK_EQUAL(reader.size(), 0U);
BOOST_CHECK(reader.empty());
signed int d;
BOOST_CHECK_THROW(reader >> d, std::ios_base::failure);
SpanReader new_reader{vch};
new_reader >> d;
BOOST_CHECK_EQUAL(d, 67370753); BOOST_CHECK_EQUAL(new_reader.size(), 2U);
BOOST_CHECK(!new_reader.empty());
BOOST_CHECK_THROW(new_reader >> d, std::ios_base::failure);
}
BOOST_AUTO_TEST_CASE(streams_vector_reader_rvalue)
{
std::vector<uint8_t> data{0x82, 0xa7, 0x31};
SpanReader reader{data};
uint32_t varint = 0;
reader >> VARINT(varint);
BOOST_CHECK_EQUAL(varint, 54321U);
BOOST_CHECK(reader.empty());
}
BOOST_AUTO_TEST_CASE(bitstream_reader_writer)
{
DataStream data{};
BitStreamWriter bit_writer{data};
bit_writer.Write(0, 1);
bit_writer.Write(2, 2);
bit_writer.Write(6, 3);
bit_writer.Write(11, 4);
bit_writer.Write(1, 5);
bit_writer.Write(32, 6);
bit_writer.Write(7, 7);
bit_writer.Write(30497, 16);
bit_writer.Flush();
DataStream data_copy{data};
uint32_t serialized_int1;
data >> serialized_int1;
BOOST_CHECK_EQUAL(serialized_int1, uint32_t{0x7700C35A}); uint16_t serialized_int2;
data >> serialized_int2;
BOOST_CHECK_EQUAL(serialized_int2, uint16_t{0x1072});
BitStreamReader bit_reader{data_copy};
BOOST_CHECK_EQUAL(bit_reader.Read(1), 0U);
BOOST_CHECK_EQUAL(bit_reader.Read(2), 2U);
BOOST_CHECK_EQUAL(bit_reader.Read(3), 6U);
BOOST_CHECK_EQUAL(bit_reader.Read(4), 11U);
BOOST_CHECK_EQUAL(bit_reader.Read(5), 1U);
BOOST_CHECK_EQUAL(bit_reader.Read(6), 32U);
BOOST_CHECK_EQUAL(bit_reader.Read(7), 7U);
BOOST_CHECK_EQUAL(bit_reader.Read(16), 30497U);
BOOST_CHECK_THROW(bit_reader.Read(8), std::ios_base::failure);
}
BOOST_AUTO_TEST_CASE(streams_serializedata_xor)
{
std::vector<std::byte> in;
{
DataStream ds{in};
ds.Xor({0x00, 0x00});
BOOST_CHECK_EQUAL(""s, ds.str());
}
in.push_back(std::byte{0x0f});
in.push_back(std::byte{0xf0});
{
DataStream ds{in};
ds.Xor({0xff});
BOOST_CHECK_EQUAL("\xf0\x0f"s, ds.str());
}
in.clear();
in.push_back(std::byte{0xf0});
in.push_back(std::byte{0x0f});
{
DataStream ds{in};
ds.Xor({0xff, 0x0f});
BOOST_CHECK_EQUAL("\x0f\x00"s, ds.str());
}
}
BOOST_AUTO_TEST_CASE(streams_buffered_file)
{
fs::path streams_test_filename = m_args.GetDataDirBase() / "streams_test_tmp";
AutoFile file{fsbridge::fopen(streams_test_filename, "w+b")};
for (uint8_t j = 0; j < 40; ++j) {
file << j;
}
file.seek(0, SEEK_SET);
try {
BufferedFile bfbad{file, 25, 25};
BOOST_CHECK(false);
} catch (const std::exception& e) {
BOOST_CHECK(strstr(e.what(),
"Rewind limit must be less than buffer size") != nullptr);
}
BufferedFile bf{file, 25, 10};
BOOST_CHECK(!bf.eof());
uint8_t i;
bf >> i;
BOOST_CHECK_EQUAL(i, 0);
bf >> i;
BOOST_CHECK_EQUAL(i, 1);
BOOST_CHECK_EQUAL(bf.GetPos(), 2U);
BOOST_CHECK(bf.SetPos(0));
bf >> i;
BOOST_CHECK_EQUAL(i, 0);
BOOST_CHECK(bf.SetPos(2));
bf >> i;
BOOST_CHECK_EQUAL(i, 2);
BOOST_CHECK(bf.SetLimit(3));
try {
bf >> i;
BOOST_CHECK(false);
} catch (const std::exception& e) {
BOOST_CHECK(strstr(e.what(),
"Attempt to position past buffer limit") != nullptr);
}
BOOST_CHECK(bf.SetLimit());
BOOST_CHECK_EQUAL(bf.GetPos(), 3U);
for (uint8_t j = 3; j < 10; ++j) {
bf >> i;
BOOST_CHECK_EQUAL(i, j);
}
BOOST_CHECK_EQUAL(bf.GetPos(), 10U);
BOOST_CHECK(bf.SetPos(0));
BOOST_CHECK_EQUAL(bf.GetPos(), 0U);
bf >> i;
BOOST_CHECK_EQUAL(i, 0);
BOOST_CHECK(bf.SetPos(10));
bf >> i;
BOOST_CHECK_EQUAL(i, 10);
BOOST_CHECK_EQUAL(bf.GetPos(), 11U);
BOOST_CHECK(bf.SetPos(1));
BOOST_CHECK_EQUAL(bf.GetPos(), 1U);
bf >> i;
BOOST_CHECK_EQUAL(i, 1);
BOOST_CHECK(bf.SetPos(11));
{
uint8_t a[40 - 11];
bf >> a;
for (uint8_t j = 0; j < sizeof(a); ++j) {
BOOST_CHECK_EQUAL(a[j], 11 + j);
}
}
BOOST_CHECK_EQUAL(bf.GetPos(), 40U);
try {
bf >> i;
BOOST_CHECK(false);
} catch (const std::exception& e) {
BOOST_CHECK(strstr(e.what(),
"BufferedFile::Fill: end of file") != nullptr);
}
BOOST_CHECK(bf.eof());
BOOST_CHECK_EQUAL(bf.GetPos(), 40U);
BOOST_CHECK(bf.SetPos(30));
bf >> i;
BOOST_CHECK_EQUAL(i, 30);
BOOST_CHECK_EQUAL(bf.GetPos(), 31U);
BOOST_CHECK(!bf.SetPos(0));
BOOST_CHECK(bf.GetPos() <= 30U);
BOOST_REQUIRE_EQUAL(file.fclose(), 0);
fs::remove(streams_test_filename);
}
BOOST_AUTO_TEST_CASE(streams_buffered_file_skip)
{
fs::path streams_test_filename = m_args.GetDataDirBase() / "streams_test_tmp";
AutoFile file{fsbridge::fopen(streams_test_filename, "w+b")};
for (uint8_t j = 0; j < 40; ++j) {
file << j;
}
file.seek(0, SEEK_SET);
BufferedFile bf{file, 25, 10};
uint8_t i;
bf.SkipTo(7);
BOOST_CHECK_EQUAL(bf.GetPos(), 7U);
bf >> i;
BOOST_CHECK_EQUAL(i, 7);
BOOST_CHECK(bf.SetPos(0));
bf >> i;
BOOST_CHECK_EQUAL(i, 0);
bf >> i;
BOOST_CHECK_EQUAL(i, 1);
bf.SkipTo(11);
bf >> i;
BOOST_CHECK_EQUAL(i, 11);
bf.SetLimit(13);
try {
bf.SkipTo(14);
BOOST_CHECK(false);
} catch (const std::exception& e) {
BOOST_CHECK(strstr(e.what(), "Attempt to position past buffer limit") != nullptr);
}
bf.SkipTo(13);
BOOST_CHECK_EQUAL(bf.GetPos(), 13U);
BOOST_REQUIRE_EQUAL(file.fclose(), 0);
fs::remove(streams_test_filename);
}
BOOST_AUTO_TEST_CASE(streams_buffered_file_rand)
{
SeedRandomForTest(SeedRand::ZEROS);
fs::path streams_test_filename = m_args.GetDataDirBase() / "streams_test_tmp";
for (int rep = 0; rep < 50; ++rep) {
AutoFile file{fsbridge::fopen(streams_test_filename, "w+b")};
size_t fileSize = m_rng.randrange(256);
for (uint8_t i = 0; i < fileSize; ++i) {
file << i;
}
file.seek(0, SEEK_SET);
size_t bufSize = m_rng.randrange(300) + 1;
size_t rewindSize = m_rng.randrange(bufSize);
BufferedFile bf{file, bufSize, rewindSize};
size_t currentPos = 0;
size_t maxPos = 0;
for (int step = 0; step < 100; ++step) {
if (currentPos >= fileSize)
break;
BOOST_CHECK(!bf.eof());
BOOST_CHECK_EQUAL(bf.GetPos(), currentPos);
switch (m_rng.randrange(6)) {
case 0: {
uint8_t a[1];
if (currentPos + 1 > fileSize)
continue;
bf.SetLimit(currentPos + 1);
bf >> a;
for (uint8_t i = 0; i < 1; ++i) {
BOOST_CHECK_EQUAL(a[i], currentPos);
currentPos++;
}
break;
}
case 1: {
uint8_t a[2];
if (currentPos + 2 > fileSize)
continue;
bf.SetLimit(currentPos + 2);
bf >> a;
for (uint8_t i = 0; i < 2; ++i) {
BOOST_CHECK_EQUAL(a[i], currentPos);
currentPos++;
}
break;
}
case 2: {
uint8_t a[5];
if (currentPos + 5 > fileSize)
continue;
bf.SetLimit(currentPos + 5);
bf >> a;
for (uint8_t i = 0; i < 5; ++i) {
BOOST_CHECK_EQUAL(a[i], currentPos);
currentPos++;
}
break;
}
case 3: {
size_t skip_length{static_cast<size_t>(m_rng.randrange(5))};
if (currentPos + skip_length > fileSize) continue;
bf.SetLimit(currentPos + skip_length);
bf.SkipTo(currentPos + skip_length);
currentPos += skip_length;
break;
}
case 4: {
size_t find = currentPos + m_rng.randrange(8);
if (find >= fileSize)
find = fileSize - 1;
bf.FindByte(std::byte(find));
BOOST_CHECK_EQUAL(bf.GetPos(), find);
currentPos = find;
bf.SetLimit(currentPos + 1);
uint8_t i;
bf >> i;
BOOST_CHECK_EQUAL(i, currentPos);
currentPos++;
break;
}
case 5: {
size_t requestPos = m_rng.randrange(maxPos + 4);
bool okay = bf.SetPos(requestPos);
currentPos = bf.GetPos();
BOOST_CHECK_EQUAL(okay, currentPos == requestPos);
if (requestPos <= maxPos &&
maxPos > rewindSize &&
requestPos >= maxPos - rewindSize) {
BOOST_CHECK(okay);
}
break;
}
}
if (maxPos < currentPos)
maxPos = currentPos;
}
BOOST_REQUIRE_EQUAL(file.fclose(), 0);
}
fs::remove(streams_test_filename);
}
BOOST_AUTO_TEST_CASE(buffered_reader_matches_autofile_random_content)
{
const size_t file_size{1 + m_rng.randrange<size_t>(1 << 17)};
const size_t buf_size{1 + m_rng.randrange(file_size)};
const FlatFilePos pos{0, 0};
const FlatFileSeq test_file{m_args.GetDataDirBase(), "buffered_file_test_random", node::BLOCKFILE_CHUNK_SIZE};
const std::vector obfuscation{m_rng.randbytes<std::byte>(8)};
{
AutoFile f{test_file.Open(pos, false), obfuscation};
f.write(m_rng.randbytes<std::byte>(file_size));
BOOST_REQUIRE_EQUAL(f.fclose(), 0);
}
BOOST_CHECK_EQUAL(fs::file_size(test_file.FileName(pos)), file_size);
{
AutoFile direct_file{test_file.Open(pos, true), obfuscation};
AutoFile buffered_file{test_file.Open(pos, true), obfuscation};
BufferedReader buffered_reader{std::move(buffered_file), buf_size};
for (size_t total_read{0}; total_read < file_size;) {
const size_t read{Assert(std::min(1 + m_rng.randrange(m_rng.randbool() ? buf_size : 2 * buf_size), file_size - total_read))};
DataBuffer direct_file_buffer{read};
direct_file.read(direct_file_buffer);
DataBuffer buffered_buffer{read};
buffered_reader.read(buffered_buffer);
BOOST_CHECK_EQUAL_COLLECTIONS(
direct_file_buffer.begin(), direct_file_buffer.end(),
buffered_buffer.begin(), buffered_buffer.end()
);
total_read += read;
}
{
DataBuffer excess_byte{1};
BOOST_CHECK_EXCEPTION(direct_file.read(excess_byte), std::ios_base::failure, HasReason{"end of file"});
}
{
DataBuffer excess_byte{1};
BOOST_CHECK_EXCEPTION(buffered_reader.read(excess_byte), std::ios_base::failure, HasReason{"end of file"});
}
}
fs::remove(test_file.FileName(pos));
}
BOOST_AUTO_TEST_CASE(buffered_writer_matches_autofile_random_content)
{
const size_t file_size{1 + m_rng.randrange<size_t>(1 << 17)};
const size_t buf_size{1 + m_rng.randrange(file_size)};
const FlatFilePos pos{0, 0};
const FlatFileSeq test_buffered{m_args.GetDataDirBase(), "buffered_write_test", node::BLOCKFILE_CHUNK_SIZE};
const FlatFileSeq test_direct{m_args.GetDataDirBase(), "direct_write_test", node::BLOCKFILE_CHUNK_SIZE};
const std::vector obfuscation{m_rng.randbytes<std::byte>(8)};
{
DataBuffer test_data{m_rng.randbytes<std::byte>(file_size)};
AutoFile direct_file{test_direct.Open(pos, false), obfuscation};
AutoFile buffered_file{test_buffered.Open(pos, false), obfuscation};
{
BufferedWriter buffered{buffered_file, buf_size};
for (size_t total_written{0}; total_written < file_size;) {
const size_t write_size{Assert(std::min(1 + m_rng.randrange(m_rng.randbool() ? buf_size : 2 * buf_size), file_size - total_written))};
auto current_span = std::span{test_data}.subspan(total_written, write_size);
direct_file.write(current_span);
buffered.write(current_span);
total_written += write_size;
}
}
BOOST_REQUIRE_EQUAL(buffered_file.fclose(), 0);
BOOST_REQUIRE_EQUAL(direct_file.fclose(), 0);
}
DataBuffer direct_result{file_size};
{
AutoFile verify_direct{test_direct.Open(pos, true), obfuscation};
verify_direct.read(direct_result);
DataBuffer excess_byte{1};
BOOST_CHECK_EXCEPTION(verify_direct.read(excess_byte), std::ios_base::failure, HasReason{"end of file"});
}
DataBuffer buffered_result{file_size};
{
AutoFile verify_buffered{test_buffered.Open(pos, true), obfuscation};
verify_buffered.read(buffered_result);
DataBuffer excess_byte{1};
BOOST_CHECK_EXCEPTION(verify_buffered.read(excess_byte), std::ios_base::failure, HasReason{"end of file"});
}
BOOST_CHECK_EQUAL_COLLECTIONS(
direct_result.begin(), direct_result.end(),
buffered_result.begin(), buffered_result.end()
);
fs::remove(test_direct.FileName(pos));
fs::remove(test_buffered.FileName(pos));
}
BOOST_AUTO_TEST_CASE(buffered_writer_reader)
{
const uint32_t v1{m_rng.rand32()}, v2{m_rng.rand32()}, v3{m_rng.rand32()};
const fs::path test_file{m_args.GetDataDirBase() / "test_buffered_write_read.bin"};
AutoFile file{fsbridge::fopen(test_file, "w+b")};
{
BufferedWriter f(file, sizeof(v1) + sizeof(v2) + sizeof(v3));
f << v1 << v2;
f.write(std::as_bytes(std::span{&v3, 1}));
}
BOOST_REQUIRE_EQUAL(file.fclose(), 0);
{
uint32_t _v1{0}, _v2{0}, _v3{0};
AutoFile file{fsbridge::fopen(test_file, "rb")};
BufferedReader f(std::move(file), sizeof(v1) + sizeof(v2) + sizeof(v3));
f >> _v1 >> _v2;
f.read(std::as_writable_bytes(std::span{&_v3, 1}));
BOOST_CHECK_EQUAL(_v1, v1);
BOOST_CHECK_EQUAL(_v2, v2);
BOOST_CHECK_EQUAL(_v3, v3);
DataBuffer excess_byte{1};
BOOST_CHECK_EXCEPTION(f.read(excess_byte), std::ios_base::failure, HasReason{"end of file"});
}
fs::remove(test_file);
}
BOOST_AUTO_TEST_CASE(streams_hashed)
{
DataStream stream{};
HashedSourceWriter hash_writer{stream};
const std::string data{"bitcoin"};
hash_writer << data;
HashVerifier hash_verifier{stream};
std::string result;
hash_verifier >> result;
BOOST_CHECK_EQUAL(data, result);
BOOST_CHECK_EQUAL(hash_writer.GetHash(), hash_verifier.GetHash());
}
BOOST_AUTO_TEST_SUITE_END()