eqemu-server/common/repositories/base/base_spawnentry_repository.h

312 lines
6.6 KiB
C++

/**
* DO NOT MODIFY THIS FILE
*
* This repository was automatically generated and is NOT to be modified directly.
* Any repository modifications are meant to be made to the repository extending the base.
* Any modifications to base repositories are to be made by the generator only
*
* @generator ./utils/scripts/generators/repository-generator.pl
* @docs https://eqemu.gitbook.io/server/in-development/developer-area/repositories
*/
#ifndef EQEMU_BASE_SPAWNENTRY_REPOSITORY_H
#define EQEMU_BASE_SPAWNENTRY_REPOSITORY_H
#include "../../database.h"
#include "../../string_util.h"
class BaseSpawnentryRepository {
public:
struct Spawnentry {
int spawngroupID;
int npcID;
int chance;
int condition_value_filter;
};
static std::string PrimaryKey()
{
return std::string("spawngroupID");
}
static std::vector<std::string> Columns()
{
return {
"spawngroupID",
"npcID",
"chance",
"condition_value_filter",
};
}
static std::string ColumnsRaw()
{
return std::string(implode(", ", Columns()));
}
static std::string TableName()
{
return std::string("spawnentry");
}
static std::string BaseSelect()
{
return fmt::format(
"SELECT {} FROM {}",
ColumnsRaw(),
TableName()
);
}
static std::string BaseInsert()
{
return fmt::format(
"INSERT INTO {} ({}) ",
TableName(),
ColumnsRaw()
);
}
static Spawnentry NewEntity()
{
Spawnentry entry{};
entry.spawngroupID = 0;
entry.npcID = 0;
entry.chance = 0;
entry.condition_value_filter = 1;
return entry;
}
static Spawnentry GetSpawnentryEntry(
const std::vector<Spawnentry> &spawnentrys,
int spawnentry_id
)
{
for (auto &spawnentry : spawnentrys) {
if (spawnentry.spawngroupID == spawnentry_id) {
return spawnentry;
}
}
return NewEntity();
}
static Spawnentry FindOne(
Database& db,
int spawnentry_id
)
{
auto results = db.QueryDatabase(
fmt::format(
"{} WHERE id = {} LIMIT 1",
BaseSelect(),
spawnentry_id
)
);
auto row = results.begin();
if (results.RowCount() == 1) {
Spawnentry entry{};
entry.spawngroupID = atoi(row[0]);
entry.npcID = atoi(row[1]);
entry.chance = atoi(row[2]);
entry.condition_value_filter = atoi(row[3]);
return entry;
}
return NewEntity();
}
static int DeleteOne(
Database& db,
int spawnentry_id
)
{
auto results = db.QueryDatabase(
fmt::format(
"DELETE FROM {} WHERE {} = {}",
TableName(),
PrimaryKey(),
spawnentry_id
)
);
return (results.Success() ? results.RowsAffected() : 0);
}
static int UpdateOne(
Database& db,
Spawnentry spawnentry_entry
)
{
std::vector<std::string> update_values;
auto columns = Columns();
update_values.push_back(columns[0] + " = " + std::to_string(spawnentry_entry.spawngroupID));
update_values.push_back(columns[1] + " = " + std::to_string(spawnentry_entry.npcID));
update_values.push_back(columns[2] + " = " + std::to_string(spawnentry_entry.chance));
update_values.push_back(columns[3] + " = " + std::to_string(spawnentry_entry.condition_value_filter));
auto results = db.QueryDatabase(
fmt::format(
"UPDATE {} SET {} WHERE {} = {}",
TableName(),
implode(", ", update_values),
PrimaryKey(),
spawnentry_entry.spawngroupID
)
);
return (results.Success() ? results.RowsAffected() : 0);
}
static Spawnentry InsertOne(
Database& db,
Spawnentry spawnentry_entry
)
{
std::vector<std::string> insert_values;
insert_values.push_back(std::to_string(spawnentry_entry.spawngroupID));
insert_values.push_back(std::to_string(spawnentry_entry.npcID));
insert_values.push_back(std::to_string(spawnentry_entry.chance));
insert_values.push_back(std::to_string(spawnentry_entry.condition_value_filter));
auto results = db.QueryDatabase(
fmt::format(
"{} VALUES ({})",
BaseInsert(),
implode(",", insert_values)
)
);
if (results.Success()) {
spawnentry_entry.spawngroupID = results.LastInsertedID();
return spawnentry_entry;
}
spawnentry_entry = NewEntity();
return spawnentry_entry;
}
static int InsertMany(
Database& db,
std::vector<Spawnentry> spawnentry_entries
)
{
std::vector<std::string> insert_chunks;
for (auto &spawnentry_entry: spawnentry_entries) {
std::vector<std::string> insert_values;
insert_values.push_back(std::to_string(spawnentry_entry.spawngroupID));
insert_values.push_back(std::to_string(spawnentry_entry.npcID));
insert_values.push_back(std::to_string(spawnentry_entry.chance));
insert_values.push_back(std::to_string(spawnentry_entry.condition_value_filter));
insert_chunks.push_back("(" + implode(",", insert_values) + ")");
}
std::vector<std::string> insert_values;
auto results = db.QueryDatabase(
fmt::format(
"{} VALUES {}",
BaseInsert(),
implode(",", insert_chunks)
)
);
return (results.Success() ? results.RowsAffected() : 0);
}
static std::vector<Spawnentry> All(Database& db)
{
std::vector<Spawnentry> all_entries;
auto results = db.QueryDatabase(
fmt::format(
"{}",
BaseSelect()
)
);
all_entries.reserve(results.RowCount());
for (auto row = results.begin(); row != results.end(); ++row) {
Spawnentry entry{};
entry.spawngroupID = atoi(row[0]);
entry.npcID = atoi(row[1]);
entry.chance = atoi(row[2]);
entry.condition_value_filter = atoi(row[3]);
all_entries.push_back(entry);
}
return all_entries;
}
static std::vector<Spawnentry> GetWhere(Database& db, std::string where_filter)
{
std::vector<Spawnentry> all_entries;
auto results = db.QueryDatabase(
fmt::format(
"{} WHERE {}",
BaseSelect(),
where_filter
)
);
all_entries.reserve(results.RowCount());
for (auto row = results.begin(); row != results.end(); ++row) {
Spawnentry entry{};
entry.spawngroupID = atoi(row[0]);
entry.npcID = atoi(row[1]);
entry.chance = atoi(row[2]);
entry.condition_value_filter = atoi(row[3]);
all_entries.push_back(entry);
}
return all_entries;
}
static int DeleteWhere(Database& db, std::string where_filter)
{
auto results = db.QueryDatabase(
fmt::format(
"DELETE FROM {} WHERE {}",
TableName(),
where_filter
)
);
return (results.Success() ? results.RowsAffected() : 0);
}
static int Truncate(Database& db)
{
auto results = db.QueryDatabase(
fmt::format(
"TRUNCATE TABLE {}",
TableName()
)
);
return (results.Success() ? results.RowsAffected() : 0);
}
};
#endif //EQEMU_BASE_SPAWNENTRY_REPOSITORY_H