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mirror of https://github.com/rbock/sqlpp11.git synced 2024-11-16 04:47:18 +08:00

Merge pull request #195 from Erroneous1/feature_result_size

Allow result_t to have a size() function
This commit is contained in:
Roland Bock 2017-10-25 19:18:29 +02:00 committed by GitHub
commit f1c0071a35
3 changed files with 238 additions and 2 deletions

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@ -1,5 +1,5 @@
/* /*
* Copyright (c) 2013-2015, Roland Bock * Copyright (c) 2013-2017, Roland Bock, Aaron Bishop
* All rights reserved. * All rights reserved.
* *
* Redistribution and use in source and binary forms, with or without modification, * Redistribution and use in source and binary forms, with or without modification,
@ -38,6 +38,25 @@ namespace sqlpp
using type = std::input_iterator_tag; using type = std::input_iterator_tag;
}; };
namespace detail
{
template<class DbResult, class = void>
struct result_has_size : std::false_type {};
template<class DbResult>
struct result_has_size<DbResult, void_t<decltype(std::declval<DbResult>().size())>>
: std::true_type {};
template<class DbResult, class = void>
struct result_size_type { using type = void; };
template<class DbResult>
struct result_size_type<DbResult, void_t<decltype(std::declval<DbResult>().size())>>
{
using type = decltype(std::declval<DbResult>().size());
};
}
template <typename DbResult, typename ResultRow> template <typename DbResult, typename ResultRow>
class result_t class result_t
{ {
@ -139,6 +158,13 @@ namespace sqlpp
{ {
_result.next(_result_row); _result.next(_result_row);
} }
template<class Size = typename detail::result_size_type<DbResult>::type>
Size size() const
{
static_assert(detail::result_has_size<DbResult>::value, "Underlying connector does not support size()");
return _result.size();
}
}; };
} // namespace sqlpp } // namespace sqlpp

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@ -73,6 +73,14 @@ namespace
static_assert(not sqlpp::can_be_null_t<decltype(x.delta)>::value, "right side of (inner) join cannot be null"); static_assert(not sqlpp::can_be_null_t<decltype(x.delta)>::value, "right side of (inner) join cannot be null");
static_assert(not sqlpp::can_be_null_t<decltype(x.s)>::value, "constant non-null value can not be null"); static_assert(not sqlpp::can_be_null_t<decltype(x.s)>::value, "constant non-null value can not be null");
} }
{
MockSizeDb db2;
auto&& result = db2(select(bar.alpha, foo.delta, bar.gamma, seven)
.from(bar.join(foo).on(foo.omega > bar.alpha))
.unconditionally());
result.size();
static_assert(std::is_same<size_t, decltype(result.size())>::value, "MockSizeDb size() isn't size_t");
}
// Inner join // Inner join
{ {

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@ -288,4 +288,206 @@ struct MockDbT : public sqlpp::connection
using MockDb = MockDbT<false>; using MockDb = MockDbT<false>;
using EnforceDb = MockDbT<true>; using EnforceDb = MockDbT<true>;
struct MockSizeDb : public sqlpp::connection
{
using _traits = MockDb::_traits;
using _serializer_context_t = MockDb::_serializer_context_t;
using _interpreter_context_t = _serializer_context_t;
_serializer_context_t get_serializer_context()
{
return {};
}
template <typename T>
static _serializer_context_t& _serialize_interpretable(const T& t, _serializer_context_t& context)
{
sqlpp::serialize(t, context);
return context;
}
template <typename T>
static _serializer_context_t& _interpret_interpretable(const T& t, _interpreter_context_t& context)
{
sqlpp::serialize(t, context);
return context;
}
class result_t : public MockDb::result_t
{
public:
size_t size() const { return 0; }
};
// Directly executed statements start here
template <typename T>
auto _run(const T& t, ::sqlpp::consistent_t) -> decltype(t._run(*this))
{
return t._run(*this);
}
template <typename Check, typename T>
auto _run(const T& t, Check) -> Check;
template <typename T>
auto operator()(const T& t) -> decltype(this->_run(t, sqlpp::run_check_t<_serializer_context_t, T>{}))
{
return _run(t, sqlpp::run_check_t<_serializer_context_t, T>{});
}
size_t execute(const std::string&)
{
return 0;
}
template <
typename Statement,
typename Enable = typename std::enable_if<not std::is_convertible<Statement, std::string>::value, void>::type>
size_t execute(const Statement& x)
{
_serializer_context_t context;
::sqlpp::serialize(x, context);
std::cout << "Running execute call with\n" << context.str() << std::endl;
return execute(context.str());
}
template <typename Insert>
size_t insert(const Insert& x)
{
_serializer_context_t context;
::sqlpp::serialize(x, context);
std::cout << "Running insert call with\n" << context.str() << std::endl;
return 0;
}
template <typename Update>
size_t update(const Update& x)
{
_serializer_context_t context;
::sqlpp::serialize(x, context);
std::cout << "Running update call with\n" << context.str() << std::endl;
return 0;
}
template <typename Remove>
size_t remove(const Remove& x)
{
_serializer_context_t context;
::sqlpp::serialize(x, context);
std::cout << "Running remove call with\n" << context.str() << std::endl;
return 0;
}
template <typename Select>
result_t select(const Select& x)
{
_serializer_context_t context;
::sqlpp::serialize(x, context);
std::cout << "Running select call with\n" << context.str() << std::endl;
return {};
}
// Prepared statements start here
using _prepared_statement_t = std::nullptr_t;
template <typename T>
auto _prepare(const T& t, ::sqlpp::consistent_t) -> decltype(t._prepare(*this))
{
return t._prepare(*this);
}
template <typename Check, typename T>
auto _prepare(const T& t, Check) -> Check;
template <typename T>
auto prepare(const T& t) -> decltype(this->_prepare(t, sqlpp::prepare_check_t<_serializer_context_t, T>{}))
{
return _prepare(t, sqlpp::prepare_check_t<_serializer_context_t, T>{});
}
template <typename Statement>
_prepared_statement_t prepare_execute(Statement& x)
{
_serializer_context_t context;
::sqlpp::serialize(x, context);
std::cout << "Running prepare execute call with\n" << context.str() << std::endl;
return nullptr;
}
template <typename Insert>
_prepared_statement_t prepare_insert(Insert& x)
{
_serializer_context_t context;
::sqlpp::serialize(x, context);
std::cout << "Running prepare insert call with\n" << context.str() << std::endl;
return nullptr;
}
template <typename PreparedExecute>
size_t run_prepared_execute(const PreparedExecute&)
{
return 0;
}
template <typename PreparedInsert>
size_t run_prepared_insert(const PreparedInsert&)
{
return 0;
}
template <typename Select>
_prepared_statement_t prepare_select(Select& x)
{
_serializer_context_t context;
::sqlpp::serialize(x, context);
std::cout << "Running prepare select call with\n" << context.str() << std::endl;
return nullptr;
}
template <typename PreparedSelect>
result_t run_prepared_select(PreparedSelect&)
{
return {};
}
auto attach(std::string name) -> ::sqlpp::schema_t
{
return {name};
}
void start_transaction()
{
_mock_data._last_isolation_level = _mock_data._default_isolation_level;
}
void start_transaction(sqlpp::isolation_level level)
{
_mock_data._last_isolation_level = level;
}
void set_default_isolation_level(sqlpp::isolation_level level)
{
_mock_data._default_isolation_level = level;
}
sqlpp::isolation_level get_default_isolation_level()
{
return _mock_data._default_isolation_level;
}
void rollback_transaction(bool)
{}
void commit_transaction()
{}
void report_rollback_failure(std::string)
{}
// temporary data store to verify the expected results were produced
InternalMockData _mock_data;
};
#endif #endif