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redis/tests/general.cpp
2021-08-15 20:03:54 +02:00

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26 KiB
C++

/* Copyright (c) 2019 - 2021 Marcelo Zimbres Silva (mzimbres at gmail dot com)
*
* This Source Code Form is subject to the terms of the Mozilla Public
* License, v. 2.0. If a copy of the MPL was not distributed with this
* file, You can obtain one at https://mozilla.org/MPL/2.0/.
*/
#include <aedis/aedis.hpp>
#include <aedis/detail/read.hpp>
#include "test_stream.hpp"
// TODO: Use Beast test_stream and instantiate the test socket only
// once.
namespace net = aedis::net;
using tcp = net::ip::tcp;
using tcp_socket = net::use_awaitable_t<>::as_default_on_t<tcp::socket>;
using test_tcp_socket = net::use_awaitable_t<>::as_default_on_t<aedis::test_stream<aedis::net::system_executor>>;
namespace this_coro = net::this_coro;
using namespace aedis;
template <class T>
void check_equal(T const& a, T const& b, std::string const& msg = "")
{
if (a == b)
std::cout << "Success: " << msg << std::endl;
else
std::cout << "Error: " << msg << std::endl;
}
template <class T>
void check_equal_number(T const& a, T const& b, std::string const& msg = "")
{
if (a == b)
std::cout << "Success: " << msg << std::endl;
else
std::cout << "Error: " << a << " != " << b << " " << msg << std::endl;
}
class test_receiver : public receiver_base {
private:
std::shared_ptr<connection> conn_;
std::vector<int> list_ {1 ,2, 3, 4, 5, 6};
std::string set_ {"aaa"};
public:
test_receiver(std::shared_ptr<connection> conn) : conn_{conn} { }
void on_hello(resp3::array& v) noexcept override
{
auto f = [this](auto& req)
{
req.flushall();
req.rpush("a", list_);
req.llen("a");
req.lrange("a");
req.ltrim("a", 2, -2);
req.lpop("a");
//req.lpop("a", 2); // Not working?
req.set("b", {set_});
req.get("b");
req.append("b", "b");
req.del("b");
req.subscribe("channel");
req.publish("channel", "message");
req.incr("c");
std::map<std::string, std::string> m1 =
{ {"field1", "value1"}
, {"field2", "value2"}};
req.hset("d", m1);
req.hget("d", "field2");
req.hgetall("d");
req.hdel("d", {"field1", "field2"});
req.hincrby("e", "some-field", 10);
req.zadd("f", 1, "Marcelo");
req.zrange("f");
req.zrangebyscore("f", 1, 1);
req.zremrangebyscore("f", "-inf", "+inf");
req.sadd("g", std::vector<int>{1, 2, 3});
req.smembers("g");
req.quit();
};
conn_->send(f);
}
void on_simple_error(command cmd, resp3::simple_error& v) noexcept override
{
std::cout << v << std::endl;
}
void on_push(resp3::array& v) noexcept override
{
// TODO: Check the responses below.
// {"subscribe", "channel", "1"}
// {"message", "channel", "message"}
check_equal(1, 1, "push (receiver)");
}
// Blob string.
void on_get(resp3::blob_string& s) noexcept override
{ check_equal(s, set_, "get (receiver)"); }
void on_hget(resp3::blob_string& s) noexcept override
{ check_equal(s, std::string{"value2"}, "hget (receiver)"); }
void on_lpop(resp3::blob_string& s) noexcept override
{ check_equal(s, {"3"}, "lpop (receiver)"); }
// Array
void on_lrange(resp3::array& v) noexcept override
{ check_equal(v, {"1", "2", "3", "4", "5", "6"}, "lrange (receiver)"); }
void on_lpop(resp3::array& s) noexcept override
{ check_equal(s, {"4", "5"}, "lpop(count) (receiver)"); }
void on_hgetall(resp3::array& s) noexcept override
{ check_equal(s, {"field1", "value1", "field2", "value2"}, "hgetall (receiver)"); }
void on_hvals(resp3::array& s) noexcept override
{ check_equal(s, {"value1", "value2"}, "hvals (receiver)"); }
void on_zrange(resp3::array& s) noexcept override
{ check_equal(s, {"Marcelo"}, "zrange (receiver)"); }
void on_zrangebyscore(resp3::array& s) noexcept override
{ check_equal(s, {"Marcelo"}, "zrangebyscore (receiver)"); }
void on_smembers(resp3::set& s) noexcept override
{ check_equal(s, {"1", "2", "3"}, "smembers (receiver)"); }
// Simple string
void on_set(resp3::simple_string& s) noexcept override
{ check_equal(s, {"OK"}, "set (receiver)"); }
void on_quit(resp3::simple_string& s) noexcept override
{ check_equal(s, {"OK"}, "quit (receiver)"); }
void on_flushall(resp3::simple_string& s) noexcept override
{ check_equal(s, {"OK"}, "flushall (receiver)"); }
void on_ltrim(resp3::simple_string& s) noexcept override
{ check_equal(s, {"OK"}, "ltrim (receiver)"); }
// Number
void on_append(resp3::number n) noexcept override
{ check_equal((int)n, 4, "append (receiver)"); }
void on_hset(resp3::number n) noexcept override
{ check_equal((int)n, 2, "hset (receiver)"); }
void on_rpush(resp3::number n) noexcept override
{ check_equal(n, (resp3::number)std::size(list_), "rpush (receiver)"); }
void on_del(resp3::number n) noexcept override
{ check_equal((int)n, 1, "del (receiver)"); }
void on_llen(resp3::number n) noexcept override
{ check_equal((int)n, 6, "llen (receiver)"); }
void on_incr(resp3::number n) noexcept override
{ check_equal((int)n, 1, "incr (receiver)"); }
void on_publish(resp3::number n) noexcept override
{ check_equal((int)n, 1, "publish (receiver)"); }
void on_hincrby(resp3::number n) noexcept override
{ check_equal((int)n, 10, "hincrby (receiver)"); }
void on_zadd(resp3::number n) noexcept override
{ check_equal((int)n, 1, "zadd (receiver)"); }
void on_zremrangebyscore(resp3::number s) noexcept override
{ check_equal((int)s, 1, "zremrangebyscore (receiver)"); }
void on_sadd(resp3::number n) noexcept override
{ check_equal((int)n, 3, "sadd (receiver)"); }
void on_hdel(resp3::number n) noexcept override
{ check_equal((int)n, 2, "hdel (receiver)"); }
};
void test_receiver_1()
{
net::io_context ioc;
auto conn = std::make_shared<connection>(ioc.get_executor());
test_receiver recv{conn};
conn->start(recv);
ioc.run();
}
//-------------------------------------------------------------------
class ping_receiver : public receiver_base {
private:
std::shared_ptr<connection> conn_;
public:
ping_receiver(std::shared_ptr<connection> conn) : conn_{conn} { }
void on_hello(resp3::array& v) noexcept override
{ conn_->ping(); }
void on_ping(resp3::simple_string& s) noexcept override
{
check_equal(s, {"PONG"}, "ping");
conn_->quit();
}
void on_quit(resp3::simple_string& s) noexcept override
{ check_equal(s, {"OK"}, "quit"); }
};
void test_ping()
{
net::io_context ioc;
auto conn = std::make_shared<connection>(ioc.get_executor());
ping_receiver recv{conn};
conn->start(recv);
ioc.run();
}
//-------------------------------------------------------------------
void trans_filler(auto& req)
{
req.subscribe("some-channel");
req.publish("some-channel", "message0");
req.multi();
req.ping();
req.ping();
// TODO: It looks like we can't publish to a channel we are already
// subscribed to from inside a transaction.
//req.publish("some-channel", "message1");
req.exec();
req.ping();
req.publish("some-channel", "message2");
};
class trans_receiver : public receiver_base {
private:
int counter_ = 0;
std::shared_ptr<connection> conn_;
public:
trans_receiver(std::shared_ptr<connection> conn) : conn_{conn} { }
void on_hello(resp3::array& v) noexcept override
{
auto f = [this](auto& req)
{
req.flushall();
trans_filler(req);
};
for (auto i = 0; i < 20; ++i) {
conn_->send(f);
}
}
void on_push(resp3::array& v) noexcept override
{
assert(std::size(v) == 3U);
auto const i = counter_ % 3;
switch (i) {
case 0:
{
check_equal(v[0], {"subscribe"}, "on_push subscribe (transaction)");
check_equal(v[1], {"some-channel"}, "on_push (transaction)");
check_equal(v[2], {"1"}, "on_push (transaction)");
} break;
case 1:
{
check_equal(v[0], {"message"}, "on_push message (transaction)");
check_equal(v[1], {"some-channel"}, "on_push (transaction)");
check_equal(v[2], {"message0"}, "on_push (transaction)");
} break;
//case 2: // See not above.
//{
// check_equal(v[0], {"message"}, "on_push message (transaction)");
// check_equal(v[1], {"some-channel"}, "on_push (transaction)");
// check_equal(v[2], {"message1"}, "on_push (transaction)");
//} break;
case 2:
{
check_equal(v[0], {"message"}, "on_push message (transaction)");
check_equal(v[1], {"some-channel"}, "on_push (transaction)");
check_equal(v[2], {"message2"}, "on_push (transaction)");
} break;
defaul: {
std::cout << "Error: on_push (transaction)" << std::endl;
}
}
++counter_;
v.clear();
}
void on_flushall(resp3::simple_string& s) noexcept override
{ check_equal(s, {"OK"}, "flushall (transaction)"); }
void
on_transaction(resp3::transaction_result& result) noexcept override
{
check_equal(result[0].cmd, command::ping, "transaction ping (command)");
check_equal(result[0].depth, 1, "transaction (depth)");
check_equal(result[0].type, resp3::type::simple_string, "transaction (type)");
check_equal(result[0].expected_size, 1, "transaction (size)");
check_equal(result[1].cmd, command::ping, "transaction incr (command)");
check_equal(result[1].depth, 1, "transaction (depth)");
check_equal(result[1].type, resp3::type::simple_string, "transaction (typ)e");
check_equal(result[1].expected_size, 1, "transaction (size)");
// See note above
//check_equal(result[2].command, command::publish, "transaction publish (command)");
//check_equal_number(result[2].depth, 1, "transaction (depth)");
//check_equal_number(result[2].type, resp3::type::number, "transaction (type)");
//check_equal_number(result[2].expected_size, 1, "transaction (size)");
result.clear();
}
void on_quit(resp3::simple_string& s) noexcept override
{ check_equal(s, {"OK"}, "quit"); }
void on_publish(resp3::number n) noexcept override
{
check_equal((int)n, 1, "publish (transaction)");
}
void on_ping(resp3::simple_string& s) noexcept override
{
check_equal(s, {"PONG"}, "ping");
conn_->send([this](auto& req) { req.quit(); });
}
};
void test_trans()
{
net::io_context ioc;
connection::config cfg{"127.0.0.1", "6379", 3, 10000};
auto conn = std::make_shared<connection>(ioc.get_executor(), cfg);
trans_receiver recv{conn};
conn->start(recv);
ioc.run();
}
//-------------------------------------------------------------------
net::awaitable<void>
test_list(net::ip::tcp::resolver::results_type const& results)
{
std::vector<int> list {1 ,2, 3, 4, 5, 6};
pipeline p;
p.hello("3");
p.flushall();
p.rpush("a", list);
p.lrange("a");
p.lrange("a", 2, -2);
p.ltrim("a", 2, -2);
p.lpop("a");
p.quit();
auto ex = co_await this_coro::executor;
tcp_socket socket {ex};
co_await async_connect(socket, results);
co_await async_write(socket, net::buffer(p.payload));
std::string buf;
{ // hello
detail::response_ignore res;
co_await async_read(socket, buf, res);
}
{ // flushall
resp3::simple_string buffer;
detail::response_simple_string res{&buffer};
co_await async_read(socket, buf, res);
check_equal(buffer, {"OK"}, "flushall");
}
{ // rpush
resp3::number buffer;
detail::response_number res{&buffer};
co_await async_read(socket, buf, res);
check_equal(buffer, (long long int)6, "rpush");
}
{ // lrange
resp3::array_int buffer;
detail::response_basic_array<int> res{&buffer};
co_await async_read(socket, buf, res);
check_equal(buffer, list, "lrange-1");
}
{ // lrange
resp3::array_int buffer;
detail::response_basic_array<int> res{&buffer};
co_await async_read(socket, buf, res);
check_equal(buffer, std::vector<int>{3, 4, 5}, "lrange-2");
}
{ // ltrim
resp3::simple_string buffer;
detail::response_simple_string res{&buffer};
co_await async_read(socket, buf, res);
check_equal(buffer, {"OK"}, "ltrim");
}
{ // lpop. Why a blob string instead of a number?
resp3::blob_string buffer;
detail::response_blob_string res{&buffer};
co_await async_read(socket, buf, res);
check_equal(buffer, {"3"}, "lpop");
}
{ // quit
resp3::simple_string buffer;
detail::response_simple_string res{&buffer};
co_await async_read(socket, buf, res);
check_equal(buffer, {"OK"}, "quit");
}
}
net::awaitable<void>
test_set(net::ip::tcp::resolver::results_type const& results)
{
using namespace aedis::detail;
auto ex = co_await this_coro::executor;
// Tests whether the parser can handle payloads that contain the separator.
std::string test_bulk1(10000, 'a');
test_bulk1[30] = '\r';
test_bulk1[31] = '\n';
std::string test_bulk2 = "aaaaa";
tcp_socket socket {ex};
co_await async_connect(socket, results);
pipeline p;
p.hello("3");
p.flushall();
p.set("s", {test_bulk1});
p.get("s");
p.set("s", {test_bulk2});
p.get("s");
p.set("s", {""});
p.get("s");
p.quit();
co_await async_write(socket, net::buffer(p.payload));
std::string buf;
{ // hello, flushall
response_ignore res;
co_await async_read(socket, buf, res);
co_await async_read(socket, buf, res);
}
{ // set
resp3::simple_string buffer;
response_simple_string res{&buffer};
co_await async_read(socket, buf, res);
check_equal(buffer, {"OK"}, "set1");
}
{ // get
resp3::blob_string buffer;
response_blob_string res{&buffer};
co_await async_read(socket, buf, res);
check_equal(buffer, test_bulk1, "get1");
}
{ // set
resp3::simple_string buffer;
response_simple_string res{&buffer};
co_await async_read(socket, buf, res);
check_equal(buffer, {"OK"}, "set1");
}
{ // get
resp3::blob_string buffer;
response_blob_string res{&buffer};
co_await async_read(socket, buf, res);
check_equal(buffer, test_bulk2, "get2");
}
{ // set
resp3::simple_string buffer;
response_simple_string res{&buffer};
co_await async_read(socket, buf, res);
check_equal(buffer, {"OK"}, "set3");
}
{ // get
resp3::blob_string buffer;
response_blob_string res{&buffer};
co_await async_read(socket, buf, res);
check_equal(buffer, std::string {}, "get3");
}
{ // quit
resp3::simple_string buffer;
response_simple_string res{&buffer};
co_await async_read(socket, buf, res);
check_equal(buffer, {"OK"}, "quit");
}
}
struct test_handler {
void operator()(boost::system::error_code ec) const
{
if (ec)
std::cout << ec.message() << std::endl;
}
};
net::awaitable<void> test_simple_string()
{
using namespace aedis::detail;
{ // Small string
std::string buf;
std::string cmd {"+OK\r\n"};
test_tcp_socket ts {cmd};
resp3::simple_string buffer;
response_simple_string res{&buffer};
co_await async_read(ts, buf, res);
check_equal(buffer, {"OK"}, "simple_string");
//check_equal(res.attribute.value, {}, "simple_string (empty attribute)");
}
{ // empty
std::string buf;
std::string cmd {"+\r\n"};
test_tcp_socket ts {cmd};
resp3::simple_string buffer;
response_simple_string res{&buffer};
co_await async_read(ts, buf, res);
check_equal(buffer, {}, "simple_string (empty)");
//check_equal(res.attribute.value, {}, "simple_string (empty attribute)");
}
//{ // Large String (Failing because of my test stream)
// std::string buffer;
// std::string str(10000, 'a');
// std::string cmd;
// cmd += '+';
// cmd += str;
// cmd += "\r\n";
// test_tcp_socket ts {cmd};
// response_simple_string res;
// co_await async_read(ts, buffer, res);
// check_equal(res.result, str, "simple_string (large)");
// //check_equal(res.attribute.value, {}, "simple_string (empty attribute)");
//}
}
net::awaitable<void> test_number()
{
using namespace aedis::detail;
std::string buf;
{ // int
std::string cmd {":-3\r\n"};
test_tcp_socket ts {cmd};
resp3::number buffer;
response_number res{&buffer};
co_await async_read(ts, buf, res);
check_equal(buffer, (long long int)-3, "number (int)");
}
{ // unsigned
std::string cmd {":3\r\n"};
test_tcp_socket ts {cmd};
resp3::number buffer;
response_number res{&buffer};
co_await async_read(ts, buf, res);
check_equal(buffer, (long long int)3, "number (unsigned)");
}
{ // std::size_t
std::string cmd {":1111111\r\n"};
test_tcp_socket ts {cmd};
resp3::number buffer;
response_number res{&buffer};
co_await async_read(ts, buf, res);
check_equal(buffer, (long long int)1111111, "number (std::size_t)");
}
}
net::awaitable<void> test_array()
{
using namespace aedis::detail;
std::string buf;
{ // Dynamic
std::string cmd {"*3\r\n$3\r\none\r\n$3\r\ntwo\r\n$5\r\nthree\r\n"};
test_tcp_socket ts {cmd};
resp3::array buffer;
response_array res{&buffer};
co_await async_read(ts, buf, res);
check_equal(buffer, {"one", "two", "three"}, "array (dynamic)");
}
{ // Static
std::string cmd {"*3\r\n$3\r\none\r\n$3\r\ntwo\r\n$5\r\nthree\r\n"};
test_tcp_socket ts {cmd};
response_static_array<std::string, 3> res;
co_await async_read(ts, buf, res);
check_equal(res.result, {"one", "two", "three"}, "array (static)");
}
{ // Static int
std::string cmd {"*3\r\n$1\r\n1\r\n$1\r\n2\r\n$1\r\n3\r\n"};
test_tcp_socket ts {cmd};
response_static_array<int, 3> res;
co_await async_read(ts, buf, res);
check_equal(res.result, {1, 2, 3}, "array (int)");
}
{
std::string cmd {"*0\r\n"};
test_tcp_socket ts {cmd};
resp3::array buffer;
response_array res{&buffer};
co_await async_read(ts, buf, res);
check_equal(buffer, {}, "array (empty)");
}
}
net::awaitable<void> test_blob_string()
{
using namespace aedis::detail;
std::string buf;
{
std::string cmd {"$2\r\nhh\r\n"};
test_tcp_socket ts {cmd};
resp3::blob_string buffer;
response_blob_string res{&buffer};
co_await async_read(ts, buf, res);
check_equal(buffer, {"hh"}, "blob_string");
}
{
std::string cmd {"$26\r\nhhaa\aaaa\raaaaa\r\naaaaaaaaaa\r\n"};
test_tcp_socket ts {cmd};
resp3::blob_string buffer;
response_blob_string res{&buffer};
co_await async_read(ts, buf, res);
check_equal(buffer, {"hhaa\aaaa\raaaaa\r\naaaaaaaaaa"}, "blob_string (with separator)");
}
{
std::string cmd {"$0\r\n\r\n"};
test_tcp_socket ts {cmd};
resp3::blob_string buffer;
response_blob_string res{&buffer};
co_await async_read(ts, buf, res);
check_equal(buffer, {}, "blob_string (size 0)");
}
}
net::awaitable<void> test_simple_error()
{
using namespace aedis::detail;
std::string buf;
{
std::string cmd {"-Error\r\n"};
test_tcp_socket ts {cmd};
resp3::simple_error buffer;
response_simple_error res{&buffer};
co_await async_read(ts, buf, res);
check_equal(buffer, {"Error"}, "simple_error (message)");
}
}
net::awaitable<void> test_floating_point()
{
using namespace aedis::detail;
std::string buf;
{
std::string cmd {",1.23\r\n"};
test_tcp_socket ts {cmd};
resp3::doublean buffer;
response_double res{&buffer};
co_await async_read(ts, buf, res);
check_equal(buffer, {"1.23"}, "double");
}
{
std::string cmd {",inf\r\n"};
test_tcp_socket ts {cmd};
resp3::doublean buffer;
response_double res{&buffer};
co_await async_read(ts, buf, res);
check_equal(buffer, {"inf"}, "double (inf)");
}
{
std::string cmd {",-inf\r\n"};
test_tcp_socket ts {cmd};
resp3::doublean buffer;
response_double res{&buffer};
co_await async_read(ts, buf, res);
check_equal(buffer, {"-inf"}, "double (-inf)");
}
}
net::awaitable<void> test_boolean()
{
using namespace aedis::detail;
std::string buf;
{
std::string cmd {"#f\r\n"};
test_tcp_socket ts {cmd};
resp3::boolean buffer;
response_bool res{&buffer};
co_await async_read(ts, buf, res);
check_equal(buffer, false, "bool (false)");
}
{
std::string cmd {"#t\r\n"};
test_tcp_socket ts {cmd};
resp3::boolean buffer;
response_bool res{&buffer};
co_await async_read(ts, buf, res);
check_equal(buffer, true, "bool (true)");
}
}
net::awaitable<void> test_blob_error()
{
using namespace aedis::detail;
std::string buf;
{
std::string cmd {"!21\r\nSYNTAX invalid syntax\r\n"};
test_tcp_socket ts {cmd};
resp3::blob_error buffer;
response_blob_error res{&buffer};
co_await async_read(ts, buf, res);
check_equal(buffer, {"SYNTAX invalid syntax"}, "blob_error (message)");
}
{
std::string cmd {"!0\r\n\r\n"};
test_tcp_socket ts {cmd};
resp3::blob_error buffer;
response_blob_error res{&buffer};
co_await async_read(ts, buf, res);
check_equal(buffer, {}, "blob_error (empty message)");
}
}
net::awaitable<void> test_verbatim_string()
{
using namespace aedis::detail;
std::string buf;
{
std::string cmd {"=15\r\ntxt:Some string\r\n"};
test_tcp_socket ts {cmd};
resp3::verbatim_string buffer;
response_verbatim_string res{&buffer};
co_await async_read(ts, buf, res);
check_equal(buffer, {"txt:Some string"}, "verbatim_string");
}
{
std::string cmd {"=0\r\n\r\n"};
test_tcp_socket ts {cmd};
resp3::verbatim_string buffer;
response_verbatim_string res{&buffer};
co_await async_read(ts, buf, res);
check_equal(buffer, {}, "verbatim_string (empty)");
}
}
net::awaitable<void> test_set2()
{
using namespace aedis::detail;
std::string buf;
{
std::string cmd {"~5\r\n+orange\r\n+apple\r\n+one\r\n+two\r\n+three\r\n"};
test_tcp_socket ts {cmd};
resp3::set buffer;
response_set res{&buffer};
co_await async_read(ts, buf, res);
check_equal(buffer, {"orange", "apple", "one", "two", "three"}, "set");
}
{
std::string cmd {"~5\r\n+orange\r\n+apple\r\n+one\r\n+two\r\n+three\r\n"};
test_tcp_socket ts {cmd};
resp3::set buffer;
response_set res{&buffer};
co_await async_read(ts, buf, res);
check_equal(buffer, {"orange", "apple", "one", "two", "three"}, "set (flat)");
}
{
std::string cmd {"~0\r\n"};
test_tcp_socket ts {cmd};
resp3::set buffer;
response_set res{&buffer};
co_await async_read(ts, buf, res);
check_equal(buffer, {}, "set (empty)");
}
}
net::awaitable<void> test_map()
{
using namespace aedis::detail;
std::string buf;
{
std::string cmd {"%7\r\n$6\r\nserver\r\n$5\r\nredis\r\n$7\r\nversion\r\n$5\r\n6.0.9\r\n$5\r\nproto\r\n:3\r\n$2\r\nid\r\n:203\r\n$4\r\nmode\r\n$10\r\nstandalone\r\n$4\r\nrole\r\n$6\r\nmaster\r\n$7\r\nmodules\r\n*0\r\n"};
test_tcp_socket ts {cmd};
resp3::map buffer;
response_map res{&buffer};
co_await async_read(ts, buf, res);
check_equal(buffer, {"server", "redis", "version", "6.0.9", "proto", "3", "id", "203", "mode", "standalone", "role", "master", "modules"}, "map (flat)");
}
{
std::string cmd {"%0\r\n"};
test_tcp_socket ts {cmd};
resp3::map buffer;
response_map res{&buffer};
co_await async_read(ts, buf, res);
check_equal(buffer, {}, "map (flat - empty)");
}
}
net::awaitable<void> test_streamed_string()
{
using namespace aedis::detail;
std::string buf;
{
std::string cmd {"$?\r\n;4\r\nHell\r\n;5\r\no wor\r\n;1\r\nd\r\n;0\r\n"};
test_tcp_socket ts {cmd};
resp3::streamed_string_part buffer;
response_streamed_string_part res{&buffer};
co_await async_read(ts, buf, res);
check_equal(buffer, {"Hello word"}, "streamed string");
}
{
std::string cmd {"$?\r\n;0\r\n"};
test_tcp_socket ts {cmd};
resp3::array buffer;
response_array res{&buffer};
co_await async_read(ts, buf, res);
check_equal(buffer, {}, "streamed string (empty)");
}
}
net::awaitable<void> offline()
{
std::string buf;
//{
// std::string cmd {"|1\r\n+key-popularity\r\n%2\r\n$1\r\na\r\n,0.1923\r\n$1\r\nb\r\n,0.0012\r\n"};
// test_tcp_socket ts {cmd};
// response_array res;
// co_await async_read(ts, buf, res);
// check_equal(res.result, {"key-popularity", "a", "0.1923", "b", "0.0012"}, "attribute");
//}
//{
// std::string cmd {">4\r\n+pubsub\r\n+message\r\n+foo\r\n+bar\r\n"};
// test_tcp_socket ts {cmd};
// response_array res;
// co_await async_read(ts, buf, res);
// check_equal(res.result, {"pubsub", "message", "foo", "bar"}, "push type");
//}
//{
// std::string cmd {">0\r\n"};
// test_tcp_socket ts {cmd};
// response_array res;
// co_await async_read(ts, buf, res);
// check_equal(res.result, {}, "push type (empty)");
//}
}
int main(int argc, char* argv[])
{
net::io_context ioc {1};
tcp::resolver resv(ioc);
auto const results = resv.resolve("127.0.0.1", "6379");
co_spawn(ioc, test_simple_string(), net::detached);
co_spawn(ioc, test_number(), net::detached);
co_spawn(ioc, test_array(), net::detached);
co_spawn(ioc, test_blob_string(), net::detached);
co_spawn(ioc, test_simple_error(), net::detached);
co_spawn(ioc, test_floating_point(), net::detached);
co_spawn(ioc, test_boolean(), net::detached);
co_spawn(ioc, test_blob_error(), net::detached);
co_spawn(ioc, test_verbatim_string(), net::detached);
co_spawn(ioc, test_set2(), net::detached);
co_spawn(ioc, test_map(), net::detached);
co_spawn(ioc, test_list(results), net::detached);
co_spawn(ioc, test_set(results), net::detached);
ioc.run();
test_receiver_1();
test_ping();
test_trans();
}