blob: 939c6cde81ae2f8371cb080e83c4229af2effb5b (
plain)
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
84
85
86
87
88
89
90
91
92
93
94
95
96
97
98
99
|
// -*- mode:C++; tab-width:8; c-basic-offset:2; indent-tabs-mode:nil -*-
// vim: ts=8 sw=2 smarttab
#include <boost/iterator/counting_iterator.hpp>
#include <numeric>
#include "test/crimson/gtest_seastar.h"
#include "crimson/common/errorator.h"
#include "crimson/common/errorator-loop.h"
#include "crimson/common/log.h"
#include "seastar/core/sleep.hh"
struct errorator_test_t : public seastar_test_suite_t {
using ertr = crimson::errorator<crimson::ct_error::invarg>;
ertr::future<> test_do_until() {
return crimson::repeat([i=0]() mutable {
if (i < 5) {
++i;
return ertr::make_ready_future<seastar::stop_iteration>(
seastar::stop_iteration::no);
} else {
return ertr::make_ready_future<seastar::stop_iteration>(
seastar::stop_iteration::yes);
}
});
}
static constexpr int SIZE = 42;
ertr::future<> test_parallel_for_each() {
auto sum = std::make_unique<int>(0);
return ertr::parallel_for_each(
boost::make_counting_iterator(0),
boost::make_counting_iterator(SIZE),
[sum=sum.get()](int i) {
*sum += i;
}).safe_then([sum=std::move(sum)] {
int expected = std::accumulate(boost::make_counting_iterator(0),
boost::make_counting_iterator(SIZE),
0);
ASSERT_EQ(*sum, expected);
});
}
struct noncopyable_t {
constexpr noncopyable_t() = default;
~noncopyable_t() = default;
noncopyable_t(noncopyable_t&&) = default;
private:
noncopyable_t(const noncopyable_t&) = delete;
noncopyable_t& operator=(const noncopyable_t&) = delete;
};
ertr::future<> test_non_copy_then() {
return create_noncopyable().safe_then([](auto t) {
return ertr::now();
});
}
ertr::future<int> test_futurization() {
// we don't want to be enforced to always do `make_ready_future(...)`.
// as in seastar::future, the futurization should take care about
// turning non-future types (e.g. int) into futurized ones (e.g.
// ertr::future<int>).
return ertr::now().safe_then([] {
return 42;
}).safe_then([](int life) {
return ertr::make_ready_future<int>(life);
});
}
private:
ertr::future<noncopyable_t> create_noncopyable() {
return ertr::make_ready_future<noncopyable_t>();
}
};
TEST_F(errorator_test_t, basic)
{
run_async([this] {
test_do_until().unsafe_get0();
});
}
TEST_F(errorator_test_t, parallel_for_each)
{
run_async([this] {
test_parallel_for_each().unsafe_get0();
});
}
TEST_F(errorator_test_t, non_copy_then)
{
run_async([this] {
test_non_copy_then().unsafe_get0();
});
}
TEST_F(errorator_test_t, test_futurization)
{
run_async([this] {
test_futurization().unsafe_get0();
});
}
|