Files
libtorrent/test/test_io.cpp
2021-12-07 21:13:48 +01:00

270 lines
5.7 KiB
C++

/*
Copyright (c) 2018, 2020-2021, Arvid Norberg
Copyright (c) 2020, Alden Torres
All rights reserved.
You may use, distribute and modify this code under the terms of the BSD license,
see LICENSE file.
*/
#include "test.hpp"
#include "libtorrent/aux_/io_bytes.hpp"
#include "libtorrent/aux_/io.hpp"
#include "libtorrent/span.hpp"
using namespace lt::aux;
using lt::span;
TORRENT_TEST(write_uint8)
{
std::array<char, 10> buf;
buf.fill(0x55);
char* ptr = buf.data();
write_uint8(0x10, ptr);
TEST_CHECK(ptr == buf.data() + 1);
TEST_CHECK(buf[0] == 0x10);
TEST_CHECK(buf[1] == 0x55);
}
TORRENT_TEST(write_uint16)
{
std::array<char, 10> buf;
buf.fill(0x55);
char* ptr = buf.data();
write_uint16(0x2010, ptr);
TEST_CHECK(ptr == buf.data() + 2);
TEST_CHECK(buf[0] == 0x20);
TEST_CHECK(buf[1] == 0x10);
TEST_CHECK(buf[2] == 0x55);
}
TORRENT_TEST(write_uint32)
{
std::array<char, 10> buf;
buf.fill(0x55);
char* ptr = buf.data();
write_uint32(0x40302010, ptr);
TEST_CHECK(ptr == buf.data() + 4);
TEST_CHECK(buf[0] == 0x40);
TEST_CHECK(buf[1] == 0x30);
TEST_CHECK(buf[2] == 0x20);
TEST_CHECK(buf[3] == 0x10);
TEST_CHECK(buf[4] == 0x55);
}
TORRENT_TEST(write_int32)
{
std::array<char, 10> buf;
buf.fill(0x55);
char* ptr = buf.data();
write_int32(0x40302010, ptr);
TEST_CHECK(ptr == buf.data() + 4);
TEST_CHECK(buf[0] == 0x40);
TEST_CHECK(buf[1] == 0x30);
TEST_CHECK(buf[2] == 0x20);
TEST_CHECK(buf[3] == 0x10);
TEST_CHECK(buf[4] == 0x55);
}
TORRENT_TEST(write_uint64)
{
std::array<std::uint8_t, 10> buf;
buf.fill(0x55);
std::uint8_t* ptr = buf.data();
write_uint64(0x8070605040302010ull, ptr);
TEST_CHECK(ptr == buf.data() + 8);
TEST_CHECK(buf[0] == 0x80);
TEST_CHECK(buf[1] == 0x70);
TEST_CHECK(buf[2] == 0x60);
TEST_CHECK(buf[3] == 0x50);
TEST_CHECK(buf[4] == 0x40);
TEST_CHECK(buf[5] == 0x30);
TEST_CHECK(buf[6] == 0x20);
TEST_CHECK(buf[7] == 0x10);
TEST_CHECK(buf[8] == 0x55);
}
TORRENT_TEST(read_uint8)
{
std::array<char, 10> buf;
buf.fill(0x55);
buf[0] = 0x10;
char const* ptr = buf.data();
TEST_CHECK(read_uint8(ptr) == 0x10);
TEST_CHECK(ptr == buf.data() + 1);
}
TORRENT_TEST(read_uint16)
{
std::array<char, 10> buf;
buf.fill(0x55);
buf[0] = 0x20;
buf[1] = 0x10;
char const* ptr = buf.data();
TEST_CHECK(read_uint16(ptr) == 0x2010);
TEST_CHECK(ptr == buf.data() + 2);
}
TORRENT_TEST(read_uint32)
{
std::array<char, 10> buf;
buf.fill(0x55);
buf[0] = 0x40;
buf[1] = 0x30;
buf[2] = 0x20;
buf[3] = 0x10;
char const* ptr = buf.data();
TEST_CHECK(read_uint32(ptr) == 0x40302010);
TEST_CHECK(ptr == buf.data() + 4);
}
TORRENT_TEST(read_uint64)
{
std::array<std::uint8_t, 10> buf;
buf.fill(0x55);
buf[0] = 0x80;
buf[1] = 0x70;
buf[2] = 0x60;
buf[3] = 0x50;
buf[4] = 0x40;
buf[5] = 0x30;
buf[6] = 0x20;
buf[7] = 0x10;
std::uint8_t const* ptr = buf.data();
TEST_CHECK(read_uint64(ptr) == 0x8070605040302010ull);
TEST_CHECK(ptr == buf.data() + 8);
}
TORRENT_TEST(read_int32)
{
std::array<std::uint8_t, 10> buf;
buf.fill(0x55);
buf[0] = 0x40;
buf[1] = 0x30;
buf[2] = 0x20;
buf[3] = 0x10;
std::uint8_t const* ptr = buf.data();
TEST_CHECK(read_int32(ptr) == 0x40302010);
TEST_CHECK(ptr == buf.data() + 4);
}
TORRENT_TEST(write_uint8_span)
{
std::array<char, 10> buf;
buf.fill(0x55);
span<char> view(buf);
write_uint8(0x10, view);
TEST_CHECK(view == span<char>(buf).subspan(1));
TEST_CHECK(buf[0] == 0x10);
TEST_CHECK(buf[1] == 0x55);
}
TORRENT_TEST(write_uint16_span)
{
std::array<char, 10> buf;
buf.fill(0x55);
span<char> view(buf);
write_uint16(0x2010, view);
TEST_CHECK(view == span<char>(buf).subspan(2));
TEST_CHECK(buf[0] == 0x20);
TEST_CHECK(buf[1] == 0x10);
TEST_CHECK(buf[2] == 0x55);
}
TORRENT_TEST(write_uint32_span)
{
std::array<char, 10> buf;
buf.fill(0x55);
span<char> view(buf);
write_uint32(0x40302010, view);
TEST_CHECK(view == span<char>(buf).subspan(4));
TEST_CHECK(buf[0] == 0x40);
TEST_CHECK(buf[1] == 0x30);
TEST_CHECK(buf[2] == 0x20);
TEST_CHECK(buf[3] == 0x10);
TEST_CHECK(buf[4] == 0x55);
}
TORRENT_TEST(write_uint64_span)
{
std::array<std::uint8_t, 10> buf;
buf.fill(0x55);
span<std::uint8_t> view(buf);
write_uint64(0x8070605040302010ull, view);
TEST_CHECK(view == span<std::uint8_t>(buf).subspan(8));
TEST_CHECK(buf[0] == 0x80);
TEST_CHECK(buf[1] == 0x70);
TEST_CHECK(buf[2] == 0x60);
TEST_CHECK(buf[3] == 0x50);
TEST_CHECK(buf[4] == 0x40);
TEST_CHECK(buf[5] == 0x30);
TEST_CHECK(buf[6] == 0x20);
TEST_CHECK(buf[7] == 0x10);
TEST_CHECK(buf[8] == 0x55);
}
TORRENT_TEST(read_uint8_span)
{
std::array<char, 10> buf;
buf.fill(0x55);
buf[0] = 0x10;
span<char const> view(buf);
TEST_CHECK(read_uint8(view) == 0x10);
TEST_CHECK(view == span<char>(buf).subspan(1));
}
TORRENT_TEST(read_uint16_span)
{
std::array<char, 10> buf;
buf.fill(0x55);
buf[0] = 0x20;
buf[1] = 0x10;
span<char const> view(buf);
TEST_CHECK(read_uint16(view) == 0x2010);
TEST_CHECK(view == span<char>(buf).subspan(2));
}
TORRENT_TEST(read_uint32_span)
{
std::array<char, 10> buf;
buf.fill(0x55);
buf[0] = 0x40;
buf[1] = 0x30;
buf[2] = 0x20;
buf[3] = 0x10;
span<char const> view(buf);
TEST_CHECK(read_uint32(view) == 0x40302010);
TEST_CHECK(view == span<char>(buf).subspan(4));
}
TORRENT_TEST(read_int32_span)
{
std::array<char, 10> buf;
buf.fill(0x55);
buf[0] = 0x40;
buf[1] = 0x30;
buf[2] = 0x20;
buf[3] = 0x10;
span<char const> view(buf);
TEST_CHECK(read_int32(view) == 0x40302010);
TEST_CHECK(view == span<char>(buf).subspan(4));
}
TORRENT_TEST(read_uint64_span)
{
std::array<std::uint8_t, 10> buf;
buf.fill(0x55);
buf[0] = 0x80;
buf[1] = 0x70;
buf[2] = 0x60;
buf[3] = 0x50;
buf[4] = 0x40;
buf[5] = 0x30;
buf[6] = 0x20;
buf[7] = 0x10;
span<std::uint8_t const> view(buf);
TEST_CHECK(read_uint64(view) == 0x8070605040302010ull);
TEST_CHECK(view == span<std::uint8_t>(buf).subspan(8));
}