/* * Copyright (c) 2016-2016, Roland Bock * All rights reserved. * * Redistribution and use in source and binary forms, with or without modification, * are permitted provided that the following conditions are met: * * * Redistributions of source code must retain the above copyright notice, * this list of conditions and the following disclaimer. * * Redistributions in binary form must reproduce the above copyright notice, * this list of conditions and the following disclaimer in the documentation * and/or other materials provided with the distribution. * * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. * IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, * INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF * LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE * OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED * OF THE POSSIBILITY OF SUCH DAMAGE. */ #include "MockDb.h" #include "Sample.h" #include #include namespace { constexpr auto t = test::TabBar{}; constexpr auto f = test::TabFoo{}; template auto print_type_on_error(std::true_type) -> void { } template auto print_type_on_error(std::false_type) -> void { T::_print_me_; } template auto having_static_check(const Expression& expression) -> void { using CheckResult = sqlpp::check_having_static_t; using ExpectedCheckResult = std::is_same; print_type_on_error(ExpectedCheckResult{}); static_assert(ExpectedCheckResult::value, "Unexpected check result"); using ReturnType = decltype(select(all_of(t)).from(t).unconditionally().group_by(t.alpha).having(expression)); using ExpectedReturnType = sqlpp::logic::all_t::value>; print_type_on_error(ExpectedReturnType{}); static_assert(ExpectedReturnType::value, "Unexpected return type"); } template auto having_dynamic_check(const Expression& expression) -> void { static auto db = MockDb{}; using CheckResult = sqlpp::check_having_dynamic_t; using ExpectedCheckResult = std::is_same; print_type_on_error(ExpectedCheckResult{}); static_assert(ExpectedCheckResult::value, "Unexpected check result"); using ReturnType = decltype(dynamic_select(db, all_of(t)).from(t).unconditionally().group_by(t.alpha).dynamic_having(expression)); using ExpectedReturnType = sqlpp::logic::all_t::value>; print_type_on_error(ExpectedReturnType{}); static_assert(ExpectedReturnType::value, "Unexpected return type"); } auto static_having() -> void { // OK having_static_check(t.gamma); having_static_check(t.gamma == true); // OK using aggregate functions in having having_static_check(count(t.alpha) > 0); having_static_check(t.gamma and count(t.alpha) > 0); having_static_check(case_when(count(t.alpha) > 0).then(t.gamma).else_(not t.gamma)); // Try assignment as condition having_static_check(t.gamma = true); // Try non-boolean expression having_static_check(t.alpha); // Try builtin bool having_static_check(true); having_static_check(17 > 3); // Try some other types as expressions having_static_check("true"); having_static_check(17); having_static_check('c'); having_static_check(nullptr); having_static_check(t.alpha.as(t.beta)); } auto dynamic_having() -> void { // OK having_dynamic_check(t.gamma); having_dynamic_check(t.gamma == true); // OK using aggregate functions in having having_dynamic_check(count(t.alpha) > 0); having_dynamic_check(t.gamma and count(t.alpha) > 0); having_dynamic_check(case_when(count(t.alpha) > 0).then(t.gamma).else_(not t.gamma)); // Try assignment as condition having_dynamic_check(t.gamma = true); // Try non-boolean expression having_dynamic_check(t.alpha); // Try builtin bool having_dynamic_check(true); having_dynamic_check(17 > 3); // Try some other types as expressions having_dynamic_check("true"); having_dynamic_check(17); having_dynamic_check('c'); having_dynamic_check(nullptr); having_dynamic_check(t.alpha.as(t.beta)); // Try dynamic_having on a non-dynamic select using CheckResult = sqlpp::check_having_dynamic_t; using ExpectedCheckResult = std::is_same; print_type_on_error(ExpectedCheckResult{}); static_assert(ExpectedCheckResult::value, "Unexpected check result"); using ReturnType = decltype(select(all_of(t)).from(t).dynamic_having()); using ExpectedReturnType = std::is_same; print_type_on_error(ExpectedReturnType{}); static_assert(ExpectedReturnType::value, "Unexpected return type"); } template auto static_consistency_check(const Statement statement, const HavingCondition condtion) -> void { using CheckResult = sqlpp::consistency_check_t; using ExpectedCheckResult = std::is_same; print_type_on_error(ExpectedCheckResult{}); static_assert(ExpectedCheckResult::value, "Unexpected check result"); } auto consistency_check() -> void { const auto select_without_group_by = select(all_of(t)).from(t).unconditionally(); // OK static_consistency_check(select_without_group_by, avg(t.alpha) > 17); static_consistency_check(select_without_group_by, avg(t.alpha) > parameter(t.alpha)); // Try non aggregate static_consistency_check(select_without_group_by, t.alpha > 17); static_consistency_check(select_without_group_by, count(t.alpha) > 3 and t.alpha > 17); // Try foreign table static_consistency_check(select_without_group_by, f.omega > 17); const auto select_with_group_by = select(t.alpha).from(t).unconditionally().group_by(t.alpha); // OK static_consistency_check(select_with_group_by, avg(t.alpha) > 17); static_consistency_check(select_with_group_by, t.alpha > 17); static_consistency_check(select_with_group_by, count(t.alpha) > 3 and t.alpha > 17); // Try non aggregate static_consistency_check(select_with_group_by, t.beta > "17"); static_consistency_check(select_with_group_by, count(t.beta) > 3 and t.beta > "17"); // Try foreign table static_consistency_check(select_with_group_by, f.omega > 17); } } int main(int, char* []) { static_having(); dynamic_having(); consistency_check(); }