// Copyright (c) 2017-2022, Mudita Sp. z.o.o. All rights reserved. // For licensing, see https://github.com/mudita/MuditaOS/LICENSE.md #include "ContactsAddressTable.hpp" ContactsAddressTable::ContactsAddressTable(Database *db) : Table(db) {} ContactsAddressTable::~ContactsAddressTable() {} bool ContactsAddressTable::create() { return true; } bool ContactsAddressTable::add(ContactsAddressTableRow entry) { return db->execute("insert or ignore into contact_address (contact_id, address, note, mail) " "VALUES (%lu, '%q', '%q', '%q');", entry.contactID, entry.address.c_str(), entry.note.c_str(), entry.mail.c_str()); } bool ContactsAddressTable::removeById(uint32_t id) { return db->execute("DELETE FROM contact_address where _id = %u;", id); } bool ContactsAddressTable::update(ContactsAddressTableRow entry) { return db->execute("UPDATE contact_address SET contact_id = %lu, address = '%q', note = '%q', mail = '%q' " "WHERE _id=%lu;", entry.contactID, entry.address.c_str(), entry.note.c_str(), entry.mail.c_str(), entry.ID); } ContactsAddressTableRow ContactsAddressTable::getById(uint32_t id) { auto retQuery = db->query("SELECT * FROM contact_address WHERE _id= %lu;", id); if ((retQuery == nullptr) || (retQuery->getRowCount() == 0)) { return ContactsAddressTableRow(); } return ContactsAddressTableRow{ (*retQuery)[0].getUInt32(), // ID (*retQuery)[1].getUInt32(), // contactID (*retQuery)[2].getString(), // address (*retQuery)[3].getString(), // note (*retQuery)[4].getString(), // mail }; } std::vector ContactsAddressTable::getLimitOffset(uint32_t offset, uint32_t limit) { auto retQuery = db->query("SELECT * from contact_address ORDER BY contact_id LIMIT %lu OFFSET %lu;", limit, offset); if ((retQuery == nullptr) || (retQuery->getRowCount() == 0)) { return std::vector(); } std::vector ret; do { ret.push_back(ContactsAddressTableRow{ (*retQuery)[0].getUInt32(), // ID (*retQuery)[1].getUInt32(), // contactID (*retQuery)[2].getString(), // address (*retQuery)[3].getString(), // note (*retQuery)[4].getString(), // mail }); } while (retQuery->nextRow()); return ret; } std::vector ContactsAddressTable::getLimitOffsetByField(uint32_t offset, uint32_t limit, ContactAddressTableFields field, const char *str) { std::string fieldName; switch (field) { case ContactAddressTableFields::Mail: fieldName = "mail"; break; default: return std::vector(); } auto retQuery = db->query("SELECT * from contact_address WHERE %q='%q' ORDER BY contact_id LIMIT %lu OFFSET %lu;", fieldName.c_str(), str, limit, offset); if ((retQuery == nullptr) || (retQuery->getRowCount() == 0)) { return std::vector(); } std::vector ret; do { ret.push_back(ContactsAddressTableRow{ (*retQuery)[0].getUInt32(), // ID (*retQuery)[1].getUInt32(), // contactID (*retQuery)[2].getString(), // address (*retQuery)[3].getString(), // note (*retQuery)[4].getString(), // mail }); } while (retQuery->nextRow()); return ret; } uint32_t ContactsAddressTable::count() { auto queryRet = db->query("SELECT COUNT(*) FROM contact_address;"); if (!queryRet || queryRet->getRowCount() == 0) { return 0; } return uint32_t{(*queryRet)[0].getUInt32()}; } uint32_t ContactsAddressTable::countByFieldId(const char *field, uint32_t id) { auto queryRet = db->query("SELECT COUNT(*) FROM contact_address WHERE %q=%lu;", field, id); if ((queryRet == nullptr) || (queryRet->getRowCount() == 0)) { return 0; } return uint32_t{(*queryRet)[0].getUInt32()}; }