Files
beast/test/core/static_buffer.cpp
Vinnie Falco 7952578e1d Tune up static_buffer (API Change):
The static buffer is updated:

* reset() is no longer a member. Use b.consume(b.size()) instead.

* Simplified implementaton, uses asio instead of custom types

* Better stream performance: consuming the input makes room
  available in the output. This class is now suitable for
  HTTP reads.

These changes permit the static_buffer wrapper to adapt a user
memory buffer if desired, including a stack based array.
The static_buffer_n class may also be used for this purpose,
it comes with its own storage.
2017-07-20 08:12:19 -07:00

160 lines
4.6 KiB
C++

//
// Copyright (c) 2013-2017 Vinnie Falco (vinnie dot falco at gmail dot com)
//
// Distributed under the Boost Software License, Version 1.0. (See accompanying
// file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
//
// Test that header file is self-contained.
#include <beast/core/static_buffer.hpp>
#include "buffer_test.hpp"
#include <beast/unit_test/suite.hpp>
#include <boost/asio/buffer.hpp>
#include <string>
namespace beast {
class static_buffer_test : public beast::unit_test::suite
{
public:
template<class ConstBufferSequence>
static
std::string
to_string(ConstBufferSequence const& bs)
{
using boost::asio::buffer_cast;
using boost::asio::buffer_size;
std::string s;
s.reserve(buffer_size(bs));
for(auto const& b : bs)
s.append(buffer_cast<char const*>(b),
buffer_size(b));
return s;
}
void
testStaticBuffer()
{
using boost::asio::buffer;
using boost::asio::buffer_cast;
using boost::asio::buffer_size;
char buf[12];
std::string const s = "Hello, world";
BEAST_EXPECT(s.size() == sizeof(buf));
for(std::size_t i = 1; i < 4; ++i) {
for(std::size_t j = 1; j < 4; ++j) {
for(std::size_t x = 1; x < 4; ++x) {
for(std::size_t y = 1; y < 4; ++y) {
for(std::size_t t = 1; t < 4; ++ t) {
for(std::size_t u = 1; u < 4; ++ u) {
std::size_t z = sizeof(buf) - (x + y);
std::size_t v = sizeof(buf) - (t + u);
{
std::memset(buf, 0, sizeof(buf));
static_buffer_n<sizeof(buf)> ba;
{
auto d = ba.prepare(z);
BEAST_EXPECT(buffer_size(d) == z);
}
{
auto d = ba.prepare(0);
BEAST_EXPECT(buffer_size(d) == 0);
}
{
auto d = ba.prepare(y);
BEAST_EXPECT(buffer_size(d) == y);
}
{
auto d = ba.prepare(x);
BEAST_EXPECT(buffer_size(d) == x);
ba.commit(buffer_copy(d, buffer(s.data(), x)));
}
BEAST_EXPECT(ba.size() == x);
BEAST_EXPECT(buffer_size(ba.data()) == ba.size());
{
auto d = ba.prepare(x);
BEAST_EXPECT(buffer_size(d) == x);
}
{
auto d = ba.prepare(0);
BEAST_EXPECT(buffer_size(d) == 0);
}
{
auto d = ba.prepare(z);
BEAST_EXPECT(buffer_size(d) == z);
}
{
auto d = ba.prepare(y);
BEAST_EXPECT(buffer_size(d) == y);
ba.commit(buffer_copy(d, buffer(s.data()+x, y)));
}
ba.commit(1);
BEAST_EXPECT(ba.size() == x + y);
BEAST_EXPECT(buffer_size(ba.data()) == ba.size());
{
auto d = ba.prepare(x);
BEAST_EXPECT(buffer_size(d) == x);
}
{
auto d = ba.prepare(y);
BEAST_EXPECT(buffer_size(d) == y);
}
{
auto d = ba.prepare(0);
BEAST_EXPECT(buffer_size(d) == 0);
}
{
auto d = ba.prepare(z);
BEAST_EXPECT(buffer_size(d) == z);
ba.commit(buffer_copy(d, buffer(s.data()+x+y, z)));
}
ba.commit(2);
BEAST_EXPECT(ba.size() == x + y + z);
BEAST_EXPECT(buffer_size(ba.data()) == ba.size());
BEAST_EXPECT(to_string(ba.data()) == s);
ba.consume(t);
{
auto d = ba.prepare(0);
BEAST_EXPECT(buffer_size(d) == 0);
}
BEAST_EXPECT(to_string(ba.data()) == s.substr(t, std::string::npos));
ba.consume(u);
BEAST_EXPECT(to_string(ba.data()) == s.substr(t + u, std::string::npos));
ba.consume(v);
BEAST_EXPECT(to_string(ba.data()) == "");
ba.consume(1);
{
auto d = ba.prepare(0);
BEAST_EXPECT(buffer_size(d) == 0);
}
try
{
ba.prepare(ba.capacity() - ba.size() + 1);
fail();
}
catch(...)
{
pass();
}
}
}}}}}}
}
void
testReadSizeHelper()
{
}
void run() override
{
test::check_read_size_helper<static_buffer_n<32>>();
testStaticBuffer();
}
};
BEAST_DEFINE_TESTSUITE(static_buffer,core,beast);
} // beastp