#include #include #include #include #include #include #include #include #include int main(int, char **) try { std::cout << std::fixed << std::setprecision(2); size_t n = 10000000; Stopwatch stopwatch; { auto buf = std::make_unique("test_lzma_buffers.xz", DBMS_DEFAULT_BUFFER_SIZE, O_WRONLY | O_CREAT | O_TRUNC); DB::LZMADeflatingWriteBuffer lzma_buf(std::move(buf), /*compression level*/ 3); stopwatch.restart(); for (size_t i = 0; i < n; ++i) { DB::writeIntText(i, lzma_buf); DB::writeChar('\t', lzma_buf); } lzma_buf.finalize(); stopwatch.stop(); std::cout << "Writing done. Elapsed: " << stopwatch.elapsedSeconds() << " s." << ", " << (lzma_buf.count() / stopwatch.elapsedSeconds() / 1000000) << " MB/s" << std::endl; } { auto buf = std::make_unique("test_lzma_buffers.xz"); DB::LZMAInflatingReadBuffer lzma_buf(std::move(buf)); stopwatch.restart(); for (size_t i = 0; i < n; ++i) { size_t x; DB::readIntText(x, lzma_buf); lzma_buf.ignore(); if (x != i) throw DB::Exception("Failed!, read: " + std::to_string(x) + ", expected: " + std::to_string(i), 0); } stopwatch.stop(); std::cout << "Reading done. Elapsed: " << stopwatch.elapsedSeconds() << " s." << ", " << (lzma_buf.count() / stopwatch.elapsedSeconds() / 1000000) << " MB/s" << std::endl; } return 0; } catch (const DB::Exception & e) { std::cerr << e.what() << ", " << e.displayText() << std::endl; return 1; }