eqemu-server/common/repositories/dynamic_zone_members_repository.h
Knightly 7ab909ee47 Standardize Licensing
- License was intended to be GPLv3 per earlier commit of GPLv3 LICENSE FILE
- This is confirmed by the inclusion of libraries that are incompatible with GPLv2
- This is also confirmed by KLS and the agreement of KLS's predecessors
- Added GPLv3 license headers to the compilable source files
- Removed Folly licensing in strings.h since the string functions do not match the Folly functions and are standard functions - this must have been left over from previous implementations
- Removed individual contributor license headers since the project has been under the "developer" mantle for many years
- Removed comments on files that were previously automatically generated since they've been manually modified multiple times and there are no automatic scripts referencing them (removed in 2023)
2026-04-01 17:09:57 -07:00

196 lines
5.8 KiB
C++

/* EQEmu: EQEmulator
Copyright (C) 2001-2026 EQEmu Development Team
This program is free software; you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation; either version 3 of the License, or
(at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program. If not, see <http://www.gnu.org/licenses/>.
*/
#pragma once
#include "common/repositories/base/base_dynamic_zone_members_repository.h"
#include "common/database.h"
#include "fmt/ranges.h"
class DynamicZoneMembersRepository: public BaseDynamicZoneMembersRepository {
public:
/**
* This file was auto generated and can be modified and extended upon
*
* Base repository methods are automatically
* generated in the "base" version of this repository. The base repository
* is immutable and to be left untouched, while methods in this class
* are used as extension methods for more specific persistence-layer
* accessors or mutators.
*
* Base Methods (Subject to be expanded upon in time)
*
* Note: Not all tables are designed appropriately to fit functionality with all base methods
*
* InsertOne
* UpdateOne
* DeleteOne
* FindOne
* GetWhere(std::string where_filter)
* DeleteWhere(std::string where_filter)
* InsertMany
* All
*
* Example custom methods in a repository
*
* DynamicZoneMembersRepository::GetByZoneAndVersion(int zone_id, int zone_version)
* DynamicZoneMembersRepository::GetWhereNeverExpires()
* DynamicZoneMembersRepository::GetWhereXAndY()
* DynamicZoneMembersRepository::DeleteWhereXAndY()
*
* Most of the above could be covered by base methods, but if you as a developer
* find yourself re-using logic for other parts of the code, its best to just make a
* method that can be re-used easily elsewhere especially if it can use a base repository
* method and encapsulate filters there
*/
// Custom extended repository methods here
struct MemberWithName {
uint32_t id;
uint32_t dynamic_zone_id;
uint32_t character_id;
std::string character_name;
};
static std::string SelectMembersWithNames()
{
return std::string(SQL(
SELECT
dynamic_zone_members.id,
dynamic_zone_members.dynamic_zone_id,
dynamic_zone_members.character_id,
character_data.name
FROM dynamic_zone_members
INNER JOIN character_data ON dynamic_zone_members.character_id = character_data.id
));
}
static std::vector<MemberWithName> AllWithNames(Database& db)
{
std::vector<MemberWithName> all_entries;
auto results = db.QueryDatabase(SelectMembersWithNames());
if (results.Success())
{
all_entries.reserve(results.RowCount());
for (auto row = results.begin(); row != results.end(); ++row)
{
MemberWithName entry{};
int col = 0;
entry.id = strtoul(row[col++], nullptr, 10);
entry.dynamic_zone_id = strtoul(row[col++], nullptr, 10);
entry.character_id = strtoul(row[col++], nullptr, 10);
entry.character_name = row[col++];
all_entries.emplace_back(std::move(entry));
}
}
return all_entries;
}
static int DeleteByInstance(Database& db, int instance_id)
{
auto results = db.QueryDatabase(fmt::format(SQL(
DELETE dynamic_zone_members
FROM dynamic_zone_members
INNER JOIN dynamic_zones ON dynamic_zone_members.dynamic_zone_id = dynamic_zones.id
WHERE dynamic_zones.instance_id = {}
), instance_id));
return (results.Success() ? results.RowsAffected() : 0);
}
static int DeleteByManyInstances(Database& db, const std::string& joined_instance_ids)
{
auto results = db.QueryDatabase(fmt::format(SQL(
DELETE dynamic_zone_members
FROM dynamic_zone_members
INNER JOIN dynamic_zones ON dynamic_zone_members.dynamic_zone_id = dynamic_zones.id
WHERE dynamic_zones.instance_id IN ({})
), joined_instance_ids));
return (results.Success() ? results.RowsAffected() : 0);
}
static int GetCountWhere(Database& db, const std::string& where_filter)
{
auto results = db.QueryDatabase(fmt::format(
"SELECT COUNT(*) FROM {} WHERE {};", TableName(), where_filter));
uint32_t count = 0;
if (results.Success() && results.RowCount() > 0)
{
auto row = results.begin();
count = strtoul(row[0], nullptr, 10);
}
return count;
}
static void AddMember(Database& db, uint32_t dynamic_zone_id, uint32_t character_id)
{
db.QueryDatabase(fmt::format(SQL(
INSERT INTO {}
(dynamic_zone_id, character_id)
VALUES
({}, {})
ON DUPLICATE KEY UPDATE id = id;
),
TableName(),
dynamic_zone_id,
character_id
));
}
static void RemoveMember(Database& db, uint32_t dynamic_zone_id, uint32_t character_id)
{
DeleteWhere(db, fmt::format("dynamic_zone_id = {} AND character_id = {}", dynamic_zone_id, character_id));
}
static void RemoveAllMembers(Database& db, uint32_t dynamic_zone_id)
{
DeleteWhere(db, fmt::format("dynamic_zone_id = {}", dynamic_zone_id));
}
static uint32_t InsertOrUpdateMany(Database& db, const std::vector<DynamicZoneMembers>& entries)
{
if (entries.empty())
{
return 0;
}
std::vector<std::string> values;
values.reserve(entries.size());
for (const auto& entry : entries)
{
values.push_back(fmt::format("({},{},{})", entry.id, entry.dynamic_zone_id, entry.character_id));
}
auto results = db.QueryDatabase(fmt::format(
"INSERT INTO {} ({}) VALUES {} ON DUPLICATE KEY UPDATE id = id;",
TableName(), ColumnsRaw(), fmt::join(values, ",")));
return results.Success() ? results.RowsAffected() : 0;
}
};