eqemu-server/common/repositories/traps_repository.h

470 lines
14 KiB
C++

/**
* EQEmulator: Everquest Server Emulator
* Copyright (C) 2001-2020 EQEmulator Development Team (https://github.com/EQEmu/Server)
*
* 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; version 2 of the License.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY except by those people which sell it, which
* are required to give you total support for your newly bought product;
* 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, write to the Free Software
* Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
*
*/
#ifndef EQEMU_TRAPS_REPOSITORY_H
#define EQEMU_TRAPS_REPOSITORY_H
#include "../database.h"
#include "../string_util.h"
class TrapsRepository {
public:
struct Traps {
int id;
std::string zone;
int16 version;
int x;
int y;
int z;
int8 chance;
float maxzdiff;
float radius;
int effect;
int effectvalue;
int effectvalue2;
std::string message;
int skill;
int level;
int respawn_time;
int respawn_var;
int8 triggered_number;
int8 group;
int8 despawn_when_triggered;
int8 undetectable;
};
static std::string PrimaryKey()
{
return std::string("id");
}
static std::vector<std::string> Columns()
{
return {
"id",
"zone",
"version",
"x",
"y",
"z",
"chance",
"maxzdiff",
"radius",
"effect",
"effectvalue",
"effectvalue2",
"message",
"skill",
"level",
"respawn_time",
"respawn_var",
"triggered_number",
"group",
"despawn_when_triggered",
"undetectable",
};
}
static std::string ColumnsRaw()
{
return std::string(implode(", ", Columns()));
}
static std::string InsertColumnsRaw()
{
std::vector<std::string> insert_columns;
for (auto &column : Columns()) {
if (column == PrimaryKey()) {
continue;
}
insert_columns.push_back(column);
}
return std::string(implode(", ", insert_columns));
}
static std::string TableName()
{
return std::string("traps");
}
static std::string BaseSelect()
{
return fmt::format(
"SELECT {} FROM {}",
ColumnsRaw(),
TableName()
);
}
static std::string BaseInsert()
{
return fmt::format(
"INSERT INTO {} ({}) ",
TableName(),
InsertColumnsRaw()
);
}
static Traps NewEntity()
{
Traps entry{};
entry.id = 0;
entry.zone = "";
entry.version = 0;
entry.x = 0;
entry.y = 0;
entry.z = 0;
entry.chance = 0;
entry.maxzdiff = 0;
entry.radius = 0;
entry.effect = 0;
entry.effectvalue = 0;
entry.effectvalue2 = 0;
entry.message = "";
entry.skill = 0;
entry.level = 1;
entry.respawn_time = 60;
entry.respawn_var = 0;
entry.triggered_number = 0;
entry.group = 0;
entry.despawn_when_triggered = 0;
entry.undetectable = 0;
return entry;
}
static Traps GetTrapsEntry(
const std::vector<Traps> &trapss,
int traps_id
)
{
for (auto &traps : trapss) {
if (traps.id == traps_id) {
return traps;
}
}
return NewEntity();
}
static Traps FindOne(
int traps_id
)
{
auto results = content_db.QueryDatabase(
fmt::format(
"{} WHERE id = {} LIMIT 1",
BaseSelect(),
traps_id
)
);
auto row = results.begin();
if (results.RowCount() == 1) {
Traps entry{};
entry.id = atoi(row[0]);
entry.zone = row[1] ? row[1] : "";
entry.version = atoi(row[2]);
entry.x = atoi(row[3]);
entry.y = atoi(row[4]);
entry.z = atoi(row[5]);
entry.chance = atoi(row[6]);
entry.maxzdiff = atof(row[7]);
entry.radius = atof(row[8]);
entry.effect = atoi(row[9]);
entry.effectvalue = atoi(row[10]);
entry.effectvalue2 = atoi(row[11]);
entry.message = row[12] ? row[12] : "";
entry.skill = atoi(row[13]);
entry.level = atoi(row[14]);
entry.respawn_time = atoi(row[15]);
entry.respawn_var = atoi(row[16]);
entry.triggered_number = atoi(row[17]);
entry.group = atoi(row[18]);
entry.despawn_when_triggered = atoi(row[19]);
entry.undetectable = atoi(row[20]);
return entry;
}
return NewEntity();
}
static int DeleteOne(
int traps_id
)
{
auto results = content_db.QueryDatabase(
fmt::format(
"DELETE FROM {} WHERE {} = {}",
TableName(),
PrimaryKey(),
traps_id
)
);
return (results.Success() ? results.RowsAffected() : 0);
}
static int UpdateOne(
Traps traps_entry
)
{
std::vector<std::string> update_values;
auto columns = Columns();
update_values.push_back(columns[1] + " = '" + EscapeString(traps_entry.zone) + "'");
update_values.push_back(columns[2] + " = " + std::to_string(traps_entry.version));
update_values.push_back(columns[3] + " = " + std::to_string(traps_entry.x));
update_values.push_back(columns[4] + " = " + std::to_string(traps_entry.y));
update_values.push_back(columns[5] + " = " + std::to_string(traps_entry.z));
update_values.push_back(columns[6] + " = " + std::to_string(traps_entry.chance));
update_values.push_back(columns[7] + " = " + std::to_string(traps_entry.maxzdiff));
update_values.push_back(columns[8] + " = " + std::to_string(traps_entry.radius));
update_values.push_back(columns[9] + " = " + std::to_string(traps_entry.effect));
update_values.push_back(columns[10] + " = " + std::to_string(traps_entry.effectvalue));
update_values.push_back(columns[11] + " = " + std::to_string(traps_entry.effectvalue2));
update_values.push_back(columns[12] + " = '" + EscapeString(traps_entry.message) + "'");
update_values.push_back(columns[13] + " = " + std::to_string(traps_entry.skill));
update_values.push_back(columns[14] + " = " + std::to_string(traps_entry.level));
update_values.push_back(columns[15] + " = " + std::to_string(traps_entry.respawn_time));
update_values.push_back(columns[16] + " = " + std::to_string(traps_entry.respawn_var));
update_values.push_back(columns[17] + " = " + std::to_string(traps_entry.triggered_number));
update_values.push_back(columns[18] + " = " + std::to_string(traps_entry.group));
update_values.push_back(columns[19] + " = " + std::to_string(traps_entry.despawn_when_triggered));
update_values.push_back(columns[20] + " = " + std::to_string(traps_entry.undetectable));
auto results = content_db.QueryDatabase(
fmt::format(
"UPDATE {} SET {} WHERE {} = {}",
TableName(),
implode(", ", update_values),
PrimaryKey(),
traps_entry.id
)
);
return (results.Success() ? results.RowsAffected() : 0);
}
static Traps InsertOne(
Traps traps_entry
)
{
std::vector<std::string> insert_values;
insert_values.push_back("'" + EscapeString(traps_entry.zone) + "'");
insert_values.push_back(std::to_string(traps_entry.version));
insert_values.push_back(std::to_string(traps_entry.x));
insert_values.push_back(std::to_string(traps_entry.y));
insert_values.push_back(std::to_string(traps_entry.z));
insert_values.push_back(std::to_string(traps_entry.chance));
insert_values.push_back(std::to_string(traps_entry.maxzdiff));
insert_values.push_back(std::to_string(traps_entry.radius));
insert_values.push_back(std::to_string(traps_entry.effect));
insert_values.push_back(std::to_string(traps_entry.effectvalue));
insert_values.push_back(std::to_string(traps_entry.effectvalue2));
insert_values.push_back("'" + EscapeString(traps_entry.message) + "'");
insert_values.push_back(std::to_string(traps_entry.skill));
insert_values.push_back(std::to_string(traps_entry.level));
insert_values.push_back(std::to_string(traps_entry.respawn_time));
insert_values.push_back(std::to_string(traps_entry.respawn_var));
insert_values.push_back(std::to_string(traps_entry.triggered_number));
insert_values.push_back(std::to_string(traps_entry.group));
insert_values.push_back(std::to_string(traps_entry.despawn_when_triggered));
insert_values.push_back(std::to_string(traps_entry.undetectable));
auto results = content_db.QueryDatabase(
fmt::format(
"{} VALUES ({})",
BaseInsert(),
implode(",", insert_values)
)
);
if (results.Success()) {
traps_entry.id = results.LastInsertedID();
return traps_entry;
}
traps_entry = TrapsRepository::NewEntity();
return traps_entry;
}
static int InsertMany(
std::vector<Traps> traps_entries
)
{
std::vector<std::string> insert_chunks;
for (auto &traps_entry: traps_entries) {
std::vector<std::string> insert_values;
insert_values.push_back("'" + EscapeString(traps_entry.zone) + "'");
insert_values.push_back(std::to_string(traps_entry.version));
insert_values.push_back(std::to_string(traps_entry.x));
insert_values.push_back(std::to_string(traps_entry.y));
insert_values.push_back(std::to_string(traps_entry.z));
insert_values.push_back(std::to_string(traps_entry.chance));
insert_values.push_back(std::to_string(traps_entry.maxzdiff));
insert_values.push_back(std::to_string(traps_entry.radius));
insert_values.push_back(std::to_string(traps_entry.effect));
insert_values.push_back(std::to_string(traps_entry.effectvalue));
insert_values.push_back(std::to_string(traps_entry.effectvalue2));
insert_values.push_back("'" + EscapeString(traps_entry.message) + "'");
insert_values.push_back(std::to_string(traps_entry.skill));
insert_values.push_back(std::to_string(traps_entry.level));
insert_values.push_back(std::to_string(traps_entry.respawn_time));
insert_values.push_back(std::to_string(traps_entry.respawn_var));
insert_values.push_back(std::to_string(traps_entry.triggered_number));
insert_values.push_back(std::to_string(traps_entry.group));
insert_values.push_back(std::to_string(traps_entry.despawn_when_triggered));
insert_values.push_back(std::to_string(traps_entry.undetectable));
insert_chunks.push_back("(" + implode(",", insert_values) + ")");
}
std::vector<std::string> insert_values;
auto results = content_db.QueryDatabase(
fmt::format(
"{} VALUES {}",
BaseInsert(),
implode(",", insert_chunks)
)
);
return (results.Success() ? results.RowsAffected() : 0);
}
static std::vector<Traps> All()
{
std::vector<Traps> all_entries;
auto results = content_db.QueryDatabase(
fmt::format(
"{}",
BaseSelect()
)
);
all_entries.reserve(results.RowCount());
for (auto row = results.begin(); row != results.end(); ++row) {
Traps entry{};
entry.id = atoi(row[0]);
entry.zone = row[1] ? row[1] : "";
entry.version = atoi(row[2]);
entry.x = atoi(row[3]);
entry.y = atoi(row[4]);
entry.z = atoi(row[5]);
entry.chance = atoi(row[6]);
entry.maxzdiff = atof(row[7]);
entry.radius = atof(row[8]);
entry.effect = atoi(row[9]);
entry.effectvalue = atoi(row[10]);
entry.effectvalue2 = atoi(row[11]);
entry.message = row[12] ? row[12] : "";
entry.skill = atoi(row[13]);
entry.level = atoi(row[14]);
entry.respawn_time = atoi(row[15]);
entry.respawn_var = atoi(row[16]);
entry.triggered_number = atoi(row[17]);
entry.group = atoi(row[18]);
entry.despawn_when_triggered = atoi(row[19]);
entry.undetectable = atoi(row[20]);
all_entries.push_back(entry);
}
return all_entries;
}
static std::vector<Traps> GetWhere(std::string where_filter)
{
std::vector<Traps> all_entries;
auto results = content_db.QueryDatabase(
fmt::format(
"{} WHERE {}",
BaseSelect(),
where_filter
)
);
all_entries.reserve(results.RowCount());
for (auto row = results.begin(); row != results.end(); ++row) {
Traps entry{};
entry.id = atoi(row[0]);
entry.zone = row[1] ? row[1] : "";
entry.version = atoi(row[2]);
entry.x = atoi(row[3]);
entry.y = atoi(row[4]);
entry.z = atoi(row[5]);
entry.chance = atoi(row[6]);
entry.maxzdiff = atof(row[7]);
entry.radius = atof(row[8]);
entry.effect = atoi(row[9]);
entry.effectvalue = atoi(row[10]);
entry.effectvalue2 = atoi(row[11]);
entry.message = row[12] ? row[12] : "";
entry.skill = atoi(row[13]);
entry.level = atoi(row[14]);
entry.respawn_time = atoi(row[15]);
entry.respawn_var = atoi(row[16]);
entry.triggered_number = atoi(row[17]);
entry.group = atoi(row[18]);
entry.despawn_when_triggered = atoi(row[19]);
entry.undetectable = atoi(row[20]);
all_entries.push_back(entry);
}
return all_entries;
}
static int DeleteWhere(std::string where_filter)
{
auto results = content_db.QueryDatabase(
fmt::format(
"DELETE FROM {} WHERE {}",
TableName(),
PrimaryKey(),
where_filter
)
);
return (results.Success() ? results.RowsAffected() : 0);
}
};
#endif //EQEMU_TRAPS_REPOSITORY_H