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Author SHA1 Message Date
sascha 24677d61df Merge remote-tracking branch 'origin/feature/matador-ng' into feature/matador-ng 2026-07-31 17:52:25 +02:00
sascha 5da70ba3a5 refactored object_proxy and object_ptr and fixed their bugs 2026-07-30 12:34:02 +02:00
sascha c880728093 refactored result that an overload for void doesn't need to exist 2026-07-30 12:33:24 +02:00
sascha 78b30f9742 removed double line 2026-07-30 12:32:19 +02:00
sascha b19d0fd3ca improved version::str() and version::from_string() 2026-07-28 09:53:25 +02:00
sascha 730ab05213 small result fixes 2026-07-28 09:52:49 +02:00
sascha 6ecda781f5 collection_proxy progress 2026-07-20 07:02:16 +02:00
sascha d4865e4d10 collection proxy progress 2026-07-07 08:23:43 +02:00
sascha 06f6166f05 Enhanced some test descriptions 2026-07-06 16:06:09 +02:00
sascha 89b795c488 fixed compilation 2026-07-06 06:53:11 +02:00
sascha 1b98eb4019 collection_proxy progress added test frame 2026-06-26 15:52:53 +02:00
sascha 47fd6d68e4 Merge remote-tracking branch 'origin/feature/matador-ng' into feature/matador-ng 2026-06-15 08:43:20 +02:00
sascha 34a5cfcc88 started refactoring collection proxy 2026-06-15 08:42:58 +02:00
sascha 705d361aaa fixed restriction and constraint class to use size_t 2026-06-03 16:36:51 +02:00
sascha 87bd2f8b89 Revert "fixed compile"
This reverts commit 8914c06833.
2026-06-03 11:19:24 +02:00
sascha 8914c06833 fixed compile 2026-06-03 11:06:47 +02:00
sascha 34a9a8aa4a fixed table constructor with join and inverse join columns 2026-06-02 16:43:31 +02:00
sascha 12f8590634 delete many to many progress 2026-06-01 16:44:07 +02:00
sascha cea7b97f2b added join_column_index and inverse_join_column_index to object and table classes 2026-06-01 06:57:38 +02:00
sascha bd06034ebf renamed binary_operator to be pascal case 2026-05-29 15:09:11 +02:00
sascha 68d67b17b7 delete has many to many progress 2026-05-28 15:45:46 +02:00
sascha 73bd6f641c delete has many to many progress 2026-05-27 16:10:26 +02:00
sascha 98d58d8e60 small fixes 2026-05-27 16:10:03 +02:00
sascha b22a830d18 added SessionDeleteHasMany and SessionDeleteHasManyToMany tests 2026-05-26 15:50:32 +02:00
sascha 85e6ee4b93 fixed delete_query_builder.hpp 2026-05-26 15:50:03 +02:00
sascha 2e1b583741 moved recipe and ingredient pk generators into recipe.hpp 2026-05-26 15:49:49 +02:00
sascha 6701031007 removed unused include 2026-05-26 15:49:13 +02:00
sascha 57f57956de added delete_query_builder (progress) 2026-05-26 07:01:53 +02:00
sascha 141d798a41 small fixes and renames 2026-05-23 20:48:21 +02:00
sascha cc0bcbeb61 fixed some includes 2026-05-23 20:23:29 +02:00
sascha 5ec7c13420 integrated object cache into session and added message bus to object_cache and update tests 2026-05-22 15:26:16 +02:00
sascha ddf19bbf07 updated return type 2026-05-21 12:39:25 +02:00
sascha 194e139e8b changed passed error in or_else to release_error 2026-05-21 12:39:10 +02:00
sascha 6629a71f6e use existing result error in query_builder_exception constructor 2026-05-21 12:38:46 +02:00
sascha 72019bc1e7 fixed insert_step_processor 2026-05-21 12:04:10 +02:00
sascha 7216f07c9f refactored insert_query_builder into insert_step_processor and added insert_context 2026-05-20 16:22:15 +02:00
sascha aa8da1f76f insert_query_builder optimizations 2026-05-19 15:50:39 +02:00
sascha 627af1d1a8 removed unused code 2026-05-18 22:04:09 +02:00
sascha 0f3028c5c7 use specific type for vector to match expected sizes 2026-05-18 19:25:20 +02:00
sascha 25405de2e0 renamed record_printer to RecordPrinter 2026-05-18 19:25:04 +02:00
sascha e58b7b9b0d moved prepare_* methods from dialect to query_utils 2026-05-18 15:05:00 +02:00
sascha 052ff657c1 updated todo.md 2026-05-18 14:07:20 +02:00
sascha 08a28b1627 completed session tests for lazy and eager has_many_to_many tests 2026-05-18 14:07:08 +02:00
sascha 60f03246dc rename record_printer to RecordPrinter 2026-05-18 13:48:34 +02:00
sascha caacdfa34a added has_one eager functionality and tests 2026-05-18 12:28:21 +02:00
sascha 8c8423bf64 fixed has one definitions 2026-05-18 09:03:41 +02:00
sascha 820b5432b2 renamed collection resolver producer related classes 2026-05-18 09:03:24 +02:00
sascha bf99642af4 resolve has one progress 2026-05-18 06:58:26 +02:00
sascha 9f54716df2 resolve has one progress 2026-05-17 21:46:43 +02:00
sascha 57703dfb67 has one progress 2026-05-15 15:22:59 +02:00
sascha 22f6f71412 insert has one progress 2026-05-15 07:24:48 +02:00
sascha 1cdd83cb31 added belongs to and has one tests 2026-05-13 16:09:35 +02:00
sascha e3618c60e3 added more has many to many test cases with different pk generators 2026-05-12 16:04:11 +02:00
sascha ceb7795d9c has many primitive collection resolver with table and sequence 2026-05-11 21:17:27 +02:00
sascha 68eb2b6a6e has many primitive collection resolver 2026-05-11 20:54:48 +02:00
sascha a714cd2a53 has many primitive relation progress 2026-05-08 15:53:52 +02:00
sascha 1e08996087 renamed a member variable 2026-05-07 16:18:08 +02:00
sascha 5e6ba3666e added benchmark test suite 2026-05-07 14:29:35 +02:00
sascha 3d4a61749b renamed template parameters 2026-05-07 14:28:22 +02:00
sascha 3658664eb9 added checks to SessionInsertHasMany Test 2026-05-07 10:21:29 +02:00
sascha 8753042b3c added is_state method to object_proxy and object_ptr to check state 2026-05-07 10:06:38 +02:00
sascha 85d297995d insert query builder insert step improvements 2026-05-07 09:27:21 +02:00
sascha e6adffc264 insert query builder insert step refactoring progress 2026-05-06 22:51:16 +02:00
sascha 95cd363097 Merge remote-tracking branch 'origin/feature/matador-ng' into feature/matador-ng 2026-05-06 16:18:39 +02:00
sascha 9c37e989ba insert query builder improvements progress 2026-05-06 16:18:27 +02:00
sascha e7523e2bba updated catch2 2026-05-02 18:59:56 +02:00
sascha 37855dc6fb fixed sequence table 2026-04-30 15:49:54 +02:00
sascha 433b0e40e1 sequence table progress 2026-04-29 16:08:53 +02:00
sascha 3fb23e167e fixed pk sequence tests 2026-04-29 14:07:17 +02:00
sascha 8e1dbe2ccd moved create and drop methods to basic_schema 2026-04-29 12:57:44 +02:00
sascha 96c6c78cb8 has many generator progress 2026-04-28 16:43:01 +02:00
sascha 1a22c70320 pk generator progress 2026-04-26 22:51:52 +02:00
sascha 75d5cba6c3 session progress 2026-04-26 15:50:11 +02:00
sascha 656d045ccf fixing postgres tests progress 2026-04-24 16:56:44 +02:00
sascha 3a82f4891a moved session to namespace query and move basic_schema::initialize to session constructor 2026-04-23 16:01:44 +02:00
sascha a34a3dc266 removed unused methods from session 2026-04-22 14:09:39 +02:00
sascha b6456356b4 session and insert query builder progress 2026-04-22 14:04:36 +02:00
sascha 9b25f7f556 introduced field_attributes shortcuts and added method on_base() to all processor classes 2026-04-22 11:03:33 +02:00
sascha 78eb5d04cd session and insert query builder has many to many progress 2026-04-22 09:15:57 +02:00
sascha 59e1533cca insert query builder has many to many progress 2026-04-20 19:57:18 +02:00
sascha f144b26dbb session and insert query builder progress 2026-04-17 15:16:49 +02:00
sascha d734d647ed session and insert query builder progress 2026-04-16 16:53:06 +02:00
sascha 0a0e3752ea insert_query_builder progress 2026-04-16 07:00:37 +02:00
sascha a0326632ab insert_query_builder progress 2026-04-12 22:07:24 +02:00
sascha f03664d60a fix: comment out unused/invalid code 2026-04-10 16:33:35 +02:00
sascha 53ac6810d9 fix: pass object to pk_accessor 2026-04-10 16:33:06 +02:00
sascha f62f3e626b renamed initialize_executor to initialize 2026-04-10 16:32:37 +02:00
sascha d59b41d06c rename compile to build and added sql_hash to query_context 2026-04-06 11:52:55 +02:00
sascha 57246d8742 replaced pk_is_unset, pk_setter and pk_value_extractor with pk_accessor 2026-04-05 12:49:18 +02:00
sascha 1806e2670c added assignment from value, conversion to database_type and appropriate tests 2026-04-05 12:48:13 +02:00
sascha 9e4660c4ee removed unused on_attribute overloads 2026-04-03 19:46:53 +02:00
sascha f4e984a288 insert_query_builder has_many progress 2026-04-03 19:15:15 +02:00
sascha 855c9295fb addd const to variable 2026-04-03 19:15:01 +02:00
sascha 40dfc30dae fixed indentation for uuid class 2026-04-03 19:14:38 +02:00
sascha 920fdc68ed refactored identifier, added tests and added primary_key_accessor and tests 2026-04-03 19:14:14 +02:00
sascha f751541bdd added missing test in CMakeLists.txt 2026-03-27 15:10:55 +01:00
sascha 833cb64352 added test for session insert 2026-03-27 15:10:03 +01:00
sascha 597965b62f manual_pk_generator.cpp progress 2026-03-27 07:06:01 +01:00
sascha fedce38270 removed class query and moved their static methods to simple functions 2026-03-26 09:34:32 +01:00
sascha 3fc08fb7ff added tests for sequence generator and table sequence pk generator 2026-03-25 15:56:57 +01:00
sascha ee8ce62687 added some todo information to clarify insert_query_builder functionality 2026-03-25 15:56:22 +01:00
sascha 905ee019d7 startet pk_accessor class 2026-03-19 16:46:44 +01:00
sascha 907bcf90a6 some code formatting 2026-03-19 11:54:50 +01:00
sascha 6b2db17f58 added test for table sequence 2026-03-19 11:52:34 +01:00
sascha 6423bd505b pk generator progress and sequence test progress 2026-03-18 15:54:08 +01:00
sascha 7996608f62 added missing nodiscard 2026-03-16 13:37:33 +01:00
sascha 53b10fd1f9 sequence progress 2026-03-15 22:33:35 +01:00
sascha 86c9e6b1cd sequence tests progress 2026-03-13 16:18:41 +01:00
sascha 6bdf281eab used make_object for object_ptr in tests 2026-03-08 20:24:34 +01:00
sascha 801fbdd187 fixed nextval and update tests 2026-03-07 16:34:48 +01:00
sascha 2aff0cabbb column_expression progress 2026-03-06 15:39:53 +01:00
sascha 9b4738a5ff progress on column_expression and table_column_expression 2026-03-06 07:29:23 +01:00
sascha bc8158a6ca column_expression progress 2026-03-05 16:10:02 +01:00
sascha d9eaa2009f split column expression into separate classes 2026-03-02 16:20:54 +01:00
sascha 85c56584be added column_expression and table_column_expression 2026-03-01 20:23:59 +01:00
sascha 1e78430855 added returning to update statement and added error code implementation for query 2026-02-27 16:29:49 +01:00
sascha 626eae1ac8 added more pk generator types 2026-02-26 07:31:35 +01:00
sascha 0157233b02 removed serialize(const char*) method 2026-02-25 15:51:00 +01:00
sascha cab3e508bb Merge remote-tracking branch 'origin/feature/matador-ng' into feature/matador-ng 2026-02-24 16:24:18 +01:00
sascha d50a8f2b76 added sequence_pk_generator implementation 2026-02-24 16:24:06 +01:00
sascha e45c38b229 added object_cache and test 2026-02-22 22:36:42 +01:00
sascha a2c5bca709 has many to many relation inserts 2026-02-19 22:32:15 +01:00
sascha cfd2a9c423 some test adjustments 2026-02-19 22:31:51 +01:00
sascha 1deaab116c set result_type in query_context to specify type 2026-02-19 18:17:42 +01:00
sascha 02d6ac514c added checks for lazy relation 2026-02-19 18:17:15 +01:00
sascha 4377f2fab1 comment unused variables 2026-02-19 18:16:55 +01:00
sascha 6c3af53dfa added missing include for atomic 2026-02-18 22:17:38 +01:00
sascha 36168b2e33 some code refactoring and cleanup 2026-02-18 15:44:33 +01:00
sascha e5072741f0 insert_query_builder progress 2026-02-18 15:32:27 +01:00
sascha 0876535b44 primary key generator progress: added primary_key_generator_finder 2026-02-17 22:43:53 +01:00
sascha 38dc42ade8 insert_query_builder progress 2026-02-17 16:19:14 +01:00
sascha 5668f1060b added sequence-specific code (create, drop and nextval) 2026-02-17 13:31:06 +01:00
310 changed files with 10237 additions and 3352 deletions
@@ -33,22 +33,26 @@ public:
utils::result<sql::execute_result, utils::error> execute(const sql::query_context &context) override;
utils::result<std::unique_ptr<sql::statement_impl>, utils::error> prepare(const sql::query_context &context) override;
utils::result<std::unique_ptr<sql::query_result_impl>, utils::error> fetch(const sql::query_context &context) override;
utils::result<std::unique_ptr<sql::query_result_impl>, utils::error> fetch(const sql::query_context &ctx) override;
utils::result<std::vector<object::attribute>, utils::error> describe(const std::string& table) override;
utils::result<bool, utils::error> exists(const std::string &schema_name, const std::string &table_name) override;
utils::result<bool, utils::error> sequence_exists(const std::string &schema_name, const std::string &sequence_name) override;
[[nodiscard]] std::string to_escaped_string( const utils::blob_type_t& value ) const override;
private:
[[nodiscard]] static std::string generate_statement_name(const sql::query_context &query) ;
[[nodiscard]] static std::string generate_statement_name(const sql::query_context &ctx) ;
[[nodiscard]] utils::result<sql::execute_result, utils::error> execute(const std::string &stmt) const;
private:
PGconn *conn_{nullptr};
using string_to_int_map = std::unordered_map<std::string, unsigned long>;
using hash_to_string_map = std::unordered_map<size_t, std::string>;
static string_to_int_map statement_name_map_;
static hash_to_string_map statement_name_map_;
};
}
+51 -28
View File
@@ -7,14 +7,15 @@
#include "matador/sql/error_code.hpp"
#include "matador/sql/record.hpp"
#include "matador/sql/internal/query_result_impl.hpp"
#include "matador/utils/string.hpp"
#include <algorithm>
#include <sstream>
namespace matador::backends::postgres {
postgres_connection::string_to_int_map postgres_connection::statement_name_map_{};
postgres_connection::hash_to_string_map postgres_connection::statement_name_map_{};
postgres_connection::postgres_connection(const sql::connection_info &info)
: connection_impl(info) {
@@ -34,7 +35,7 @@ utils::result<void, utils::error> postgres_connection::open() {
const std::string msg = PQerrorMessage(conn_);
PQfinish(conn_);
conn_ = nullptr;
return utils::failure(make_error(sql::error_code::OPEN_ERROR, nullptr, conn_, "Failed to connect"));
return utils::failure(make_error(sql::error_code::OpenError, nullptr, conn_, "Failed to connect"));
}
return utils::ok<void>();
@@ -70,7 +71,7 @@ utils::result<utils::version, utils::error> postgres_connection::server_version(
const auto server_version = PQserverVersion(conn_);
if (server_version == 0) {
return utils::failure(make_error(sql::error_code::FAILURE, nullptr, conn_, "Failed to get server version"));
return utils::failure(make_error(sql::error_code::Failure, nullptr, conn_, "Failed to get server version"));
}
return utils::ok(utils::version{
@@ -82,20 +83,20 @@ utils::result<utils::version, utils::error> postgres_connection::server_version(
utils::basic_type oid2type(Oid oid);
utils::result<std::unique_ptr<sql::query_result_impl>, utils::error> postgres_connection::fetch(const sql::query_context &context) {
PGresult *res = PQexec(conn_, context.sql.c_str());
utils::result<std::unique_ptr<sql::query_result_impl>, utils::error> postgres_connection::fetch(const sql::query_context &ctx) {
PGresult *res = PQexec(conn_, ctx.sql.c_str());
if (is_result_error(res)) {
const auto err = make_error(sql::error_code::FETCH_FAILED, res, conn_, "Failed to fetch", context.sql);
const auto err = make_error(sql::error_code::FetchFailed, res, conn_, "Failed to fetch", ctx.sql);
PQclear(res);
return utils::failure(err);
}
std::vector<object::attribute> prototype = context.prototype;
std::vector<object::attribute> prototype = ctx.prototype;
const int num_col = PQnfields(res);
if (prototype.size() != static_cast<size_t>(num_col)) {
const auto err = make_error(sql::error_code::FETCH_FAILED, res, conn_, "Number of received columns doesn't match expected columns.", context.sql);
const auto err = make_error(sql::error_code::FetchFailed, res, conn_, "Number of received columns doesn't match expected columns.", ctx.sql);
PQclear(res);
return utils::failure(err);
}
@@ -111,22 +112,32 @@ utils::result<std::unique_ptr<sql::query_result_impl>, utils::error> postgres_co
return utils::ok(std::make_unique<sql::query_result_impl>(std::make_unique<postgres_result_reader>(res),
std::move(prototype),
context.resolver,
context.result_type));
ctx.resolver,
ctx.result_type));
}
std::string postgres_connection::generate_statement_name(const sql::query_context &query) {
std::stringstream name;
name << query.table_name << "_" << query.command_name;
auto result = statement_name_map_.find(name.str());
std::string postgres_connection::generate_statement_name(const sql::query_context &ctx) {
auto it = statement_name_map_.find(ctx.sql_hash);
if (result == statement_name_map_.end()) {
result = statement_name_map_.insert(std::make_pair(name.str(), 0)).first;
if (it == statement_name_map_.end()) {
it = statement_name_map_.insert(std::make_pair(ctx.sql_hash, utils::to_hex_string(ctx.sql_hash))).first;
}
name << "_" << ++result->second;
return it->second;
}
return name.str();
utils::result<sql::execute_result, utils::error> postgres_connection::execute(const std::string& stmt) const {
PGresult *res = PQexec(conn_, stmt.c_str());
if (const auto status = PQresultStatus(res); status != PGRES_COMMAND_OK && status != PGRES_TUPLES_OK) {
return utils::failure(make_error(sql::error_code::Failure, res, conn_, "Failed to execute", stmt));
}
const size_t affected_rows = utils::to<size_t>(PQcmdTuples(res));
PQclear(res);
return utils::ok(sql::execute_result{affected_rows});
}
utils::result<std::unique_ptr<sql::statement_impl>, utils::error> postgres_connection::prepare(const sql::query_context &context) {
@@ -135,7 +146,7 @@ utils::result<std::unique_ptr<sql::statement_impl>, utils::error> postgres_conne
PGresult *result = PQprepare(conn_, statement_name.c_str(), context.sql.c_str(), static_cast<int>(context.bind_vars.size()), nullptr);
if (is_result_error(result)) {
return utils::failure(make_error(sql::error_code::PREPARE_FAILED, result, conn_, "Failed to prepare", context.sql));
return utils::failure(make_error(sql::error_code::PrepareFailed, result, conn_, "Failed to prepare", context.sql));
}
std::unique_ptr<sql::statement_impl> s(std::make_unique<postgres_statement>(conn_, result, statement_name, context));
@@ -143,13 +154,11 @@ utils::result<std::unique_ptr<sql::statement_impl>, utils::error> postgres_conne
}
utils::result<sql::execute_result, utils::error> postgres_connection::execute(const sql::query_context &context) {
if (context.command == sql::sql_command::Insert) {
// handle insert command with the primary key generator strategy
}
return execute(context.sql);
PGresult *res = PQexec(conn_, context.sql.c_str());
if (const auto status = PQresultStatus(res); status != PGRES_COMMAND_OK && status != PGRES_TUPLES_OK) {
return utils::failure(make_error(sql::error_code::FAILURE, res, conn_, "Failed to execute", context.sql));
return utils::failure(make_error(sql::error_code::Failure, res, conn_, "Failed to execute", context.sql));
}
const size_t affected_rows = utils::to<size_t>(PQcmdTuples(res));
@@ -244,7 +253,7 @@ utils::result<std::vector<object::attribute>, utils::error> postgres_connection:
PGresult *res = PQexec(conn_, stmt.c_str());
if (is_result_error(res)) {
return utils::failure(make_error(sql::error_code::DESCRIBE_FAILED, res, conn_, "Failed to describe", stmt));
return utils::failure(make_error(sql::error_code::DescribeFailed, res, conn_, "Failed to describe", stmt));
}
postgres_result_reader reader(res);
@@ -269,7 +278,7 @@ utils::result<std::vector<object::attribute>, utils::error> postgres_connection:
null_opt = object::null_option_type::NotNull;
}
// f.default_value(res->column(4));
prototype.emplace_back(name, type, utils::null_attributes, null_opt);
prototype.emplace_back(name, type, NullAttributes, null_opt);
}
return utils::ok(prototype);
@@ -285,19 +294,33 @@ utils::result<bool, utils::error> postgres_connection::exists(const std::string
PGresult *res = PQexec(conn_, stmt.c_str());
if (is_result_error(res)) {
return utils::failure(make_error(sql::error_code::TABLE_EXISTS_FAILED, res, conn_, "Failed check if table exists", stmt));
return utils::failure(make_error(sql::error_code::TableExistsFailed, res, conn_, "Failed check if table exists", stmt));
}
const auto result = utils::to<size_t>(PQcmdTuples(res));
if (!result) {
PQclear(res);
return utils::failure(make_error(sql::error_code::FAILURE, res, conn_, "Failed to convert result value", stmt));
return utils::failure(make_error(sql::error_code::Failure, res, conn_, "Failed to convert result value", stmt));
}
PQclear(res);
return utils::ok(*result == 1);
}
utils::result<bool, utils::error> postgres_connection::sequence_exists(const std::string& schema_name, const std::string& sequence_name) {
const std::string sql{"SELECT to_regclass('" + schema_name + "." + sequence_name + "')"};
PGresult* res = PQexec(conn_, sql.c_str());
if (PQresultStatus(res) != PGRES_TUPLES_OK) {
return utils::failure(make_error(sql::error_code::SequenceExistsFailed, res, conn_, "Failed check if sequence exists", sql));
}
const bool exists = PQgetisnull(res, 0, 0) ? false : true;
PQclear(res);
return utils::ok(exists);
}
std::string postgres_connection::to_escaped_string(const utils::blob_type_t &value) const {
size_t escapedDataLength;
unsigned char *escapedData = PQescapeByteaConn(conn_, value.data(), value.size(), &escapedDataLength);
+7 -7
View File
@@ -6,7 +6,10 @@
namespace matador::backends::postgres {
utils::error make_error(const sql::error_code ec, const PGresult *res, const PGconn *db, const std::string &msg,
utils::error make_error(const sql::error_code ec,
const PGresult *res,
const PGconn *db,
const std::string &msg,
const std::string &sql) {
utils::error err(ec, msg);
err.add_error_info("dbms", "postgres");
@@ -30,22 +33,19 @@ bool is_result_error(const PGresult *res) {
return status != PGRES_TUPLES_OK && status != PGRES_COMMAND_OK;
}
void throw_postgres_error(const char *what, const std::string &source)
{
void throw_postgres_error(const char *what, const std::string &source) {
std::stringstream msg;
msg << "postgres error (" << source << "): " << what;
throw std::logic_error(msg.str());
}
void throw_postgres_error(PGconn *db, const std::string &source)
{
void throw_postgres_error(const PGconn *db, const std::string &source) {
if (PQstatus(db) == CONNECTION_BAD) {
throw_postgres_error(PQerrorMessage(db), source);
}
}
void throw_postgres_error(PGresult *res, PGconn *db, const std::string &source, const std::string &sql)
{
void throw_postgres_error(const PGresult *res, const PGconn *db, const std::string &source, const std::string &sql) {
if (res == nullptr) {
std::stringstream msg;
msg << "postgres error (" << source << ", " << PQerrorMessage(db) << ": " << sql;
+4 -4
View File
@@ -21,7 +21,7 @@ postgres_statement::~postgres_statement() {
utils::result<sql::execute_result, utils::error> postgres_statement::execute(const sql::parameter_binder& bindings) {
const auto* postgres_bindings = dynamic_cast<const postgres_parameter_binder*>(&bindings);
if (!postgres_bindings) {
return utils::failure(utils::error(sql::error_code::EXECUTE_FAILED, "Failed to cast bindings to postgres bindings"));
return utils::failure(utils::error(sql::error_code::ExecuteFailed, "Failed to cast bindings to postgres bindings"));
}
if (query_.command == sql::sql_command::Insert) {
@@ -37,7 +37,7 @@ utils::result<sql::execute_result, utils::error> postgres_statement::execute(con
0);
if (is_result_error(res)) {
return utils::failure(make_error(sql::error_code::EXECUTE_FAILED, res, db_, "Failed to execute statement", query_.sql));
return utils::failure(make_error(sql::error_code::ExecuteFailed, res, db_, "Failed to execute statement", query_.sql));
}
size_t value{0};
@@ -53,7 +53,7 @@ utils::result<sql::execute_result, utils::error> postgres_statement::execute(con
utils::result<std::unique_ptr<sql::query_result_impl>, utils::error> postgres_statement::fetch(const sql::parameter_binder& bindings) {
const auto* postgres_bindings = dynamic_cast<const postgres_parameter_binder*>(&bindings);
if (!postgres_bindings) {
return utils::failure(utils::error(sql::error_code::EXECUTE_FAILED, "Failed to cast bindings to postgres bindings"));
return utils::failure(utils::error(sql::error_code::ExecuteFailed, "Failed to cast bindings to postgres bindings"));
}
PGresult *res = PQexecPrepared(db_,
name_.c_str(),
@@ -64,7 +64,7 @@ utils::result<std::unique_ptr<sql::query_result_impl>, utils::error> postgres_st
0);
if (is_result_error(res)) {
return utils::failure(make_error(sql::error_code::FETCH_FAILED, res, db_, "Failed to fetch statement", query_.sql));
return utils::failure(make_error(sql::error_code::FetchFailed, res, db_, "Failed to fetch statement", query_.sql));
}
return utils::ok(std::make_unique<sql::query_result_impl>(std::make_unique<postgres_result_reader>(res),
+20 -6
View File
@@ -1,4 +1,4 @@
CPMAddPackage("gh:catchorg/Catch2@3.7.1")
CPMAddPackage("gh:catchorg/Catch2@3.14.0")
list(APPEND CMAKE_MODULE_PATH ${catch2_SOURCE_DIR}/extras)
@@ -10,9 +10,6 @@ configure_file(Connection.hpp.in ${PROJECT_BINARY_DIR}/backends/postgres/test/co
message(STATUS "postgresql connection string: ${POSTGRES_CONNECTION_STRING}")
set(TEST_SOURCES
../../../test/models/coordinate.hpp
../../../test/models/location.hpp
../../../test/models/types.hpp
../../../test/backends/ColorEnumTraits.cpp
../../../test/backends/ColorEnumTraits.hpp
../../../test/backends/ConnectionTest.cpp
@@ -25,15 +22,32 @@ set(TEST_SOURCES
../../../test/backends/SchemaFixture.cpp
../../../test/backends/SchemaFixture.hpp
../../../test/backends/SchemaTest.cpp
../../../test/backends/SequenceFixture.cpp
../../../test/backends/SequenceFixture.hpp
../../../test/backends/SequenceTest.cpp
../../../test/backends/SessionDeleteHasMany.cpp
../../../test/backends/SessionDeleteHasManyToMany.cpp
../../../test/backends/SessionFixture.cpp
../../../test/backends/SessionFixture.hpp
../../../test/backends/SessionInsertBelongsTo.cpp
../../../test/backends/SessionInsertHasMany.cpp
../../../test/backends/SessionInsertHasManyToManyTest.cpp
../../../test/backends/SessionInsertHasOne.cpp
../../../test/backends/SessionTest.cpp
../../../test/backends/StatementCacheTest.cpp
../../../test/backends/StatementTest.cpp
../../../test/backends/TableSequenceFixture.cpp
../../../test/backends/TableSequenceFixture.hpp
../../../test/backends/TableSequenceTest.cpp
../../../test/backends/TypeTraitsTest.cpp
../../../test/utils/record_printer.hpp
../../../test/utils/record_printer.cpp
../../../test/models/author.hpp
../../../test/models/coordinate.hpp
../../../test/models/location.hpp
../../../test/models/model_metas.hpp
../../../test/models/types.hpp
../../../test/models/user.hpp
../../../test/utils/RecordPrinter.cpp
../../../test/utils/RecordPrinter.hpp
)
set(LIBRARY_TEST_TARGET PostgresTests)
+2 -1
View File
@@ -1,4 +1,5 @@
add_executable(demo main.cpp)
add_executable(demo main.cpp
../include/matador/query/query_column.hpp)
target_link_libraries(demo PRIVATE
matador-core
+6 -5
View File
@@ -20,14 +20,15 @@ struct author {
template<typename Operator>
void process( Operator& op ) {
namespace field = matador::access;
using namespace matador;
namespace field = access;
field::primary_key( op, "id", id );
field::attribute( op, "first_name", first_name, 63 );
field::attribute( op, "last_name", last_name, 63 );
field::attribute( op, "date_of_birth", date_of_birth, 31 );
field::attribute( op, "first_name", first_name, VarChar63 );
field::attribute( op, "last_name", last_name, VarChar63 );
field::attribute( op, "date_of_birth", date_of_birth, VarChar63 );
field::attribute( op, "year_of_birth", year_of_birth );
field::attribute( op, "distinguished", distinguished );
field::has_many( op, "books", books, "author_id", matador::utils::CascadeNoneFetchLazy );
field::has_many( op, "books", books, "author_id", utils::CascadeNoneFetchLazy );
}
};
}
+4 -3
View File
@@ -15,10 +15,11 @@ struct book {
template<typename Operator>
void process( Operator& op ) {
namespace field = matador::access;
using namespace matador;
namespace field = access;
field::primary_key( op, "id", id );
field::attribute( op, "title", title, 511 );
field::belongs_to( op, "author_id", book_author, matador::utils::CascadeNoneFetchLazy );
field::attribute( op, "title", title, VarChar511 );
field::belongs_to( op, "author_id", book_author, utils::CascadeNoneFetchLazy );
field::attribute( op, "published_in", published_in );
}
};
+9 -9
View File
@@ -190,7 +190,7 @@ int main() {
mc.date_of_birth = "19.8.1954";
mc.year_of_birth = 1954;
mc.distinguished = true;
auto insert_authors_sql = query::insert()
auto insert_authors_sql = insert()
.into(AUTHOR)
.values(mc)
.execute(*c);
@@ -201,7 +201,7 @@ int main() {
return 0;
}
auto authors_result = query::select(AUTHOR)
auto authors_result = select(AUTHOR)
.from(AUTHOR)
.fetch_all(*c);
@@ -243,8 +243,8 @@ int main() {
// .values( {3, "Misery", mc.id, 1984} )
// .execute();
//
// auto select_books_sql = query::select( BOOK, {AUTHOR.last_name} )
auto select_books_sql = query::select({BOOK.id, BOOK.title, BOOK.author_id, BOOK.published_in, AUTHOR.last_name})
// auto select_books_sql = select( BOOK, {AUTHOR.last_name} )
auto select_books_sql = select({BOOK.id, BOOK.title, BOOK.author_id, BOOK.published_in, AUTHOR.last_name})
.from(BOOK)
.join_left(AUTHOR)
.on(BOOK.author_id == AUTHOR.id)
@@ -288,17 +288,17 @@ int main() {
//
// std::cout << "SQL: " << drop_authors_sql << "\n";
//
auto res = query::select({PAYLOAD.id})
auto res = select({PAYLOAD.id})
.from(PAYLOAD)
.join_left(JOB)
.on(JOB.payload == PAYLOAD.id)
.where(
in(PAYLOAD.id, query::select({JOB.state})
in(PAYLOAD.id, select({JOB.state})
.from(JOB)
.where(JOB.state == job::job_state::Running).compile(c->dialect())
.where(JOB.state == job::job_state::Running)
) &&
in(PAYLOAD.id, query::select({TEMPORARY_TABLE.id})
.from(TEMPORARY_TABLE).compile(c->dialect())
in(PAYLOAD.id, select({TEMPORARY_TABLE.id})
.from(TEMPORARY_TABLE)
)
).compile(c->dialect());
// // .fetch_value<unsigned long>();
+1 -1
View File
@@ -29,7 +29,7 @@ public:
attribute() = default;
attribute(std::string name,
utils::basic_type type,
const utils::field_attributes& opts = utils::null_attributes,
const utils::field_attributes& opts = matador::NullAttributes,
null_option_type null_opt = null_option_type::NotNull)
: name_(std::move(name)), type_(type), options_(opts), null_option_type_(null_opt) {}
+10 -10
View File
@@ -13,8 +13,7 @@
namespace demo {
struct recipe;
struct ingredient
{
struct ingredient {
unsigned int id{};
std::string name;
matador::object::collection<matador::object::object_ptr<demo::recipe>> recipes{};
@@ -25,15 +24,15 @@ struct ingredient
template<class Operator>
void process(Operator &op) {
namespace field = matador::access;
using namespace matador;
namespace field = access;
field::primary_key(op, "id", id);
field::attribute(op, "name", name, 255);
field::has_many_to_many(op, "recipe_ingredients", recipes, "ingredient_id", "recipe_id", matador::utils::fetch_type::Eager);
field::attribute(op, "name", name, VarChar255);
field::has_many_to_many(op, "recipe_ingredients", recipes, "ingredient_id", "recipe_id", utils::CascadeAllFetchEager);
}
};
struct recipe
{
struct recipe {
unsigned int id{};
std::string name;
matador::object::collection<matador::object::object_ptr<demo::ingredient>> ingredients{};
@@ -44,10 +43,11 @@ struct recipe
template<class Operator>
void process(Operator &op) {
namespace field = matador::access;
using namespace matador;
namespace field = access;
field::primary_key(op, "id", id);
field::attribute(op, "name", name, 255);
field::has_many_to_many(op, "recipe_ingredients", ingredients, matador::utils::fetch_type::Lazy);
field::attribute(op, "name", name, VarChar255);
field::has_many_to_many(op, "recipe_ingredients", ingredients, utils::CascadeAllFetchLazy);
}
};
+12 -9
View File
@@ -81,11 +81,12 @@ struct profile {
template<typename Operator>
void process(Operator &op) {
namespace field = matador::access;
using namespace matador;
namespace field = access;
field::primary_key( op, "id", id );
field::attribute( op, "first_name", first_name, 255 );
field::attribute( op, "last_name", last_name, 255 );
field::belongs_to( op, "user_id", user, matador::utils::CascadeNoneFetchLazy );
field::attribute( op, "first_name", first_name, VarChar255 );
field::attribute( op, "last_name", last_name, VarChar255 );
field::belongs_to( op, "user_id", user, utils::CascadeNoneFetchLazy );
}
};
struct user {
@@ -95,10 +96,11 @@ struct user {
template<typename Operator>
void process(Operator &op) {
namespace field = matador::access;
using namespace matador;
namespace field = access;
field::primary_key( op, "id", id );
field::attribute( op, "username", username, 255 );
field::has_one(op, "profile_id", profile, matador::utils::CascadeNoneFetchLazy );
field::attribute( op, "username", username, VarChar255 );
field::has_one(op, "profiles", profile, "profile_id", utils::CascadeNoneFetchLazy );
}
};
@@ -108,9 +110,10 @@ struct person {
template<typename Operator>
void process(Operator &op) {
using namespace matador;
namespace field = matador::access;
field::primary_key( op, "id", id );
field::attribute( op, "name", name, 255 );
field::attribute( op, "name", name, VarChar255 );
}
};
@@ -136,7 +139,7 @@ int main() {
sql::resolver_service rs;
std::weak_ptr cr = rs.collection_resolver<object::object_ptr<names>>( typeid(person), "names" );
std::weak_ptr cr = rs.joined_collection_resolver<object::object_ptr<names>>( typeid(person), "names" );
utils::identifier id{1};
object::collection_proxy cp(cr, id);
+14 -13
View File
@@ -23,7 +23,7 @@
#include "matador/query/schema.hpp"
#include "matador/orm/session.hpp"
#include "matador/query/session.hpp"
template <> struct matador::utils::data_type_traits<work::core::UserInfo, void> {
static basic_type type(std::size_t /*size*/) { return basic_type::UInt64; }
@@ -88,6 +88,7 @@ int main() {
.and_then([&admin_schema] { return admin_schema.attach<jobs::IdPayload, jobs::Payload>("id_list_payloads"); })
.and_then([&admin_schema] { return admin_schema.attach<jobs::IdListPayload, jobs::Payload>("id_payloads"); })
.and_then([&admin_schema] { return admin_schema.attach<jobs::Task>("tasks"); })
.and_then([&admin_schema, &pool] { return admin_schema.create( *pool.acquire() ); })
;
admin_schema.dump(std::cout);
@@ -109,7 +110,7 @@ int main() {
// }
/*
* const auto statement = QString( "SELECT %5.%6, %1.%2 FROM %3 %1, %4 %5 WHERE %1.%2=%5.%6 AND %7" )
const auto statement = QString( "SELECT %5.%6, %1.%2 FROM %3 %1, %4 %5 WHERE %1.%2=%5.%6 AND %7" )
.arg( payloadTableAliasName,
payloadSqlMetaInfo.columnName( Payload::Attributes::idAttributeId() ),
Payload::staticSqlMetaInfo().tableName(),
@@ -125,7 +126,7 @@ int main() {
const auto payloads = PAYLOAD.as( "payloads" );
const auto tasks = TASK.as( "tasks" );
const auto stmt1 = query:: query::select( { tasks.payload, payloads.id } )
const auto stmt1 = query::select( { tasks.payload, payloads.id } )
.from( tasks, payloads )
.where ( payloads.id == tasks.payload )
.str( conn->dialect() );
@@ -158,12 +159,12 @@ int main() {
const auto iPT = ID_PAYLOAD.as("iPT");
const auto pT = PAYLOAD.as("pT");
const auto stmt2 = query::query::select({ iPT.payload_id })
const auto stmt2 = query::select({ iPT.payload_id })
.from( iPT )
.join_left( pT ).on( iPT.id == pT.id )
.where(
in( pT.id, query::query::select({ JOB.payload }).from( JOB ).where( JOB.state == _) ) &&
in( iPT.payload_id, query::query::select({ temp_id_col }).from( temporary ) )
in( pT.id, query::select({ JOB.payload }).from( JOB ).where( JOB.state == _) ) &&
in( iPT.payload_id, query::select({ temp_id_col }).from( temporary ) )
)
.str( conn->dialect() );
@@ -177,13 +178,13 @@ int main() {
// .arg( LoginHistory::staticSqlMetaInfo().columnName( LoginHistory::Attributes::failReasonSqlAttributeId() ) )
// .arg( LoginHistory::staticSqlMetaInfo().columnName( LoginHistory::Attributes::idAttributeId() ) );
const auto q = query::query::select({LOGIN_HISTORY.client, query::maximum(LOGIN_HISTORY.login_time).as( "lastSuccessfulLogin" ) } )
const auto q = query::select({LOGIN_HISTORY.client, query::maximum(LOGIN_HISTORY.login_time).as( "lastSuccessfulLogin" ) } )
.from( LOGIN_HISTORY )
.where( LOGIN_HISTORY.fail_reason == _ )
.group_by( LOGIN_HISTORY.client );
// .as_table("ll");
const auto stmt3 = query::query::select({ LOGIN_HISTORY.client })
const auto stmt3 = query::select({ LOGIN_HISTORY.client })
.from( LOGIN_HISTORY )
.join_left(q/*, "ll"*/ )
.on( LOGIN_HISTORY.client == "ll.client" )
@@ -287,11 +288,11 @@ int main() {
// )
// )
const auto stmt4 = query::query::select({JOB.id})
const auto stmt4 = query::select({JOB.id})
.from(JOB)
.where( JOB.id > _ && JOB.name == _ && in( JOB.payload, query::query::select({PAYLOAD.id}).from(PAYLOAD).where(
in( PAYLOAD.id, query::query::select({ID_PAYLOAD.id}).from(ID_PAYLOAD).where(
in( ID_PAYLOAD.id, query::query::select({temp_id_col}).from(temporary))
.where( JOB.id > _ && JOB.name == _ && in( JOB.payload, query::select({PAYLOAD.id}).from(PAYLOAD).where(
in( PAYLOAD.id, query::select({ID_PAYLOAD.id}).from(ID_PAYLOAD).where(
in( ID_PAYLOAD.id, query::select({temp_id_col}).from(temporary))
) ) ) ) )
.str( conn->dialect() );
@@ -306,7 +307,7 @@ int main() {
// WHERE nj.ID > ?
// AND nj.TYPE = ?;
const auto stmt5 = query::query::select({JOB.id})
const auto stmt5 = query::select({JOB.id})
.from(JOB)
.join_left(PAYLOAD).on(JOB.payload == PAYLOAD.id)
.join_left(ID_PAYLOAD).on(PAYLOAD.id == ID_PAYLOAD.id)
+3 -2
View File
@@ -36,12 +36,13 @@ struct CollectionCenter : core::Model {
template<typename Operator>
void process( Operator& op ) {
using namespace matador;
namespace field = matador::access;
field::process( op, *matador::base_class<Model>( this ) );
field::attribute( op, "name", name, 511 );
field::attribute( op, "name", name, UniqueVarChar511 );
field::attribute( op, "symbol", symbol );
field::attribute( op, "type", type );
field::has_many( op, "collection_center_users", users, "users_id", matador::utils::fetch_type::Lazy );
field::has_many( op, "collection_center_users", users, "users_id", utils::CascadeAllFetchLazy );
}
};
+1 -1
View File
@@ -15,4 +15,4 @@ struct InternalUserDirectory : UserDirectory {
};
}
#endif //INTERNALUSERDIRECTORY_HPP
#endif //INTERNAL_USER_DIRECTORY_HPP
+5 -4
View File
@@ -16,11 +16,12 @@ struct LdapGroupSchemaSettings : core::Model {
template<typename Operator>
void process( Operator& op ) {
namespace field = matador::access;
using namespace matador;
namespace field = access;
field::process( op, *matador::base_class<Model>( this ) );
field::has_one(op, "ldap_user_directory", ldap_user_directory, matador::utils::CascadeAllFetchLazy);
field::attribute( op, "group_object_filter", group_object_filter, 511 );
field::attribute( op, "user_member_attribute", user_member_attribute, 511 );
field::has_one(op, "ldap_user_directory", ldap_user_directory, utils::CascadeAllFetchLazy);
field::attribute( op, "group_object_filter", group_object_filter, VarChar511 );
field::attribute( op, "user_member_attribute", user_member_attribute, VarChar511 );
}
};
+4 -3
View File
@@ -17,10 +17,11 @@ struct LdapImportSettings : core::Model {
template<typename Operator>
void process( Operator& op ) {
namespace field = matador::access;
using namespace matador;
namespace field = access;
field::process( op, *matador::base_class<Model>( this ) );
field::has_one(op, "ldap_user_directory", ldap_user_directory, matador::utils::CascadeAllFetchLazy);
field::attribute( op, "default_role", default_role, 511 );
field::has_one(op, "ldap_user_directory", ldap_user_directory, utils::CascadeAllFetchLazy);
field::attribute( op, "default_role", default_role, VarChar511 );
field::attribute( op, "sync_interval", sync_interval );
field::attribute( op, "network_timeout", network_timeout );
}
+10 -9
View File
@@ -25,16 +25,17 @@ struct LdapUserDirectory : UserDirectory {
template<typename Operator>
void process( Operator& op ) {
namespace field = matador::access;
using namespace matador;
namespace field = access;
field::process( op, *matador::base_class<UserDirectory>( this ) );
field::attribute( op, "schema_base_dn", schema_base_dn, 511 );
field::attribute( op, "additional_user_base_dn", additional_user_base_dn, 511 );
field::attribute( op, "additional_group_base_dn", additional_group_base_dn, 511 );
field::belongs_to( op, "user_schema_settings", user_schema_settings, matador::utils::CascadeAllFetchLazy );
field::belongs_to( op, "group_schema_settings", group_schema_settings, matador::utils::CascadeAllFetchLazy );
field::belongs_to( op, "import_settings", import_settings, matador::utils::CascadeAllFetchLazy );
field::has_many( op, "ldap_users", users, "users_id", matador::utils::CascadeAllFetchEager );
field::has_many( op, "ldap_groups", groups, "groups_id", matador::utils::CascadeAllFetchEager );
field::attribute( op, "schema_base_dn", schema_base_dn, VarChar511 );
field::attribute( op, "additional_user_base_dn", additional_user_base_dn, VarChar511 );
field::attribute( op, "additional_group_base_dn", additional_group_base_dn, VarChar511 );
field::belongs_to( op, "user_schema_settings", user_schema_settings, utils::CascadeAllFetchLazy );
field::belongs_to( op, "group_schema_settings", group_schema_settings, utils::CascadeAllFetchLazy );
field::belongs_to( op, "import_settings", import_settings, utils::CascadeAllFetchLazy );
field::has_many( op, "ldap_users", users, "users_id", utils::CascadeAllFetchEager );
field::has_many( op, "ldap_groups", groups, "groups_id", utils::CascadeAllFetchEager );
}
};
}
+7 -6
View File
@@ -18,13 +18,14 @@ struct LdapUserSchemaSettings : core::Model {
template<typename Operator>
void process( Operator& op ) {
namespace field = matador::access;
using namespace matador;
namespace field = access;
field::process(op, *matador::base_class<Model>( this ));
field::has_one(op, "ldap_user_directory", ldap_user_directory, matador::utils::CascadeAllFetchLazy);
field::attribute(op, "user_object_filter", user_object_filter, 511);
field::attribute(op, "user_unique_id_attribute", user_unique_id_attribute, 511);
field::attribute(op, "user_member_of_attribute", user_member_of_attribute, 511);
field::attribute(op, "user_name_attribute", user_name_attribute, 511);
field::has_one(op, "ldap_user_directory", ldap_user_directory, utils::CascadeAllFetchLazy);
field::attribute(op, "user_object_filter", user_object_filter, VarChar511);
field::attribute(op, "user_unique_id_attribute", user_unique_id_attribute, VarChar511);
field::attribute(op, "user_member_of_attribute", user_member_of_attribute, VarChar511);
field::attribute(op, "user_name_attribute", user_name_attribute, VarChar511);
}
};
+7 -5
View File
@@ -51,12 +51,14 @@ struct LoginHistory : core::Model {
template<typename Operator>
void process( Operator& op ) {
namespace field = matador::access;
using namespace matador;
namespace field = access;
field::process_base<Model>( op, *this );
field::process( op, *matador::base_class<Model>( this ) );
field::belongs_to( op, "client", client, matador::utils::CascadeAllFetchLazy );
field::belongs_to( op, "scenario", scenario, matador::utils::CascadeAllFetchLazy );
field::belongs_to( op, "collection_center", collection_center, matador::utils::CascadeAllFetchLazy );
field::attribute( op, "login_name", login_name, 511 );
field::belongs_to( op, "client", client, utils::CascadeAllFetchLazy );
field::belongs_to( op, "scenario", scenario, utils::CascadeAllFetchLazy );
field::belongs_to( op, "collection_center", collection_center, utils::CascadeAllFetchLazy );
field::attribute( op, "login_name", login_name, VarChar511 );
field::attribute( op, "fail_reason", fail_reason );
field::attribute( op, "login_time", login_time );
}
+5 -4
View File
@@ -46,14 +46,15 @@ struct Scenario : core::Model {
template<typename Operator>
void process( Operator& op ) {
namespace field = matador::access;
using namespace matador;
namespace field = access;
field::process( op, *matador::base_class<Model>( this ) );
field::attribute( op, "name", name, 511 );
field::attribute( op, "name", name, UniqueVarChar511 );
field::attribute( op, "mode", mode );
field::attribute( op, "description", description, 511 );
field::attribute( op, "description", description, VarChar511 );
field::attribute( op, "symbol", symbol );
field::attribute( op, "state", state );
field::has_many( op, "collection_center", collection_center, "scenario_id", matador::utils::fetch_type::Lazy );
field::has_many( op, "collection_center", collection_center, "scenario_id", utils::CascadeAllFetchLazy );
}
};
}
+8 -7
View File
@@ -29,17 +29,18 @@ struct User : core::Model {
template<typename Operator>
void process( Operator& op ) {
namespace field = matador::access;
using namespace matador;
namespace field = access;
field::process( op, *matador::base_class<Model>( this ) );
field::attribute( op, "name", name, 511 );
field::attribute( op, "name", name, UniqueVarChar511 );
field::attribute( op, "symbol", symbol );
field::attribute( op, "salt", salt, 511 );
field::attribute( op, "password", password, 511 );
field::attribute( op, "salt", salt, VarChar511 );
field::attribute( op, "password", password, VarChar511 );
field::attribute( op, "lock_type", lock_type );
field::attribute( op, "locked_at", locked_at );
field::attribute( op, "lock_reason", lock_reason, 511 );
field::attribute( op, "role", role, 63 );
field::belongs_to( op, "user_directory", user_directory, matador::utils::CascadeAllFetchLazy );
field::attribute( op, "lock_reason", lock_reason, VarChar511 );
field::attribute( op, "role", role, VarChar63 );
field::belongs_to( op, "user_directory", user_directory, utils::CascadeAllFetchLazy );
}
};
+1 -1
View File
@@ -13,7 +13,7 @@ struct UserDirectory : core::Model {
void process( Operator& op ) {
namespace field = matador::access;
field::process( op, *matador::base_class<Model>( this ) );
field::attribute( op, "name", name, 511 );
field::attribute( op, "name", name, matador::VarChar511 );
}
};
}
+5 -4
View File
@@ -21,11 +21,12 @@ struct UserSession : core::Model {
template<typename Operator>
void process( Operator& op ) {
namespace field = matador::access;
using namespace matador;
namespace field = access;
field::process( op, *matador::base_class<Model>( this ) );
field::belongs_to( op, "client", client, matador::utils::CascadeAllFetchLazy );
field::belongs_to( op, "scenario", scenario, matador::utils::CascadeAllFetchLazy );
field::belongs_to( op, "collection_center", collection_center, matador::utils::CascadeAllFetchLazy );
field::belongs_to( op, "client", client, utils::CascadeAllFetchLazy );
field::belongs_to( op, "scenario", scenario, utils::CascadeAllFetchLazy );
field::belongs_to( op, "collection_center", collection_center, utils::CascadeAllFetchLazy );
field::attribute( op, "offline_since", offline_since );
}
};
+4 -2
View File
@@ -2,6 +2,7 @@
#define USERINFO_HPP
#include "matador/utils/access.hpp"
#include "matador/utils/field_attributes.hpp"
namespace work::core {
struct UserInfo {
@@ -12,9 +13,10 @@ struct UserInfo {
template<typename Operator>
void process( Operator& op ) {
namespace field = matador::access;
using namespace matador;
field::attribute( op, "user_session_id", user_session_id );
field::attribute( op, "user_role", user_role, 255 );
field::attribute( op, "database_name", database_name, 255 );
field::attribute( op, "user_role", user_role, VarChar255 );
field::attribute( op, "database_name", database_name, VarChar255 );
}
};
}
+5 -4
View File
@@ -30,15 +30,16 @@ struct Job : core::Model {
template<typename Operator>
void process( Operator& op ) {
using namespace matador;
namespace field = matador::access;
field::process( op, *matador::base_class<Model>( this ) );
field::attribute( op, "name", name, 511 );
field::attribute( op, "description", description, 511 );
field::attribute( op, "name", name, UniqueVarChar511 );
field::attribute( op, "description", description, VarChar1023 );
field::attribute( op, "state", state );
field::attribute( op, "mode", mode );
field::attribute( op, "created_at", created_at );
field::has_one(op, "payload", payload, matador::utils::CascadeAllFetchLazy );
field::belongs_to( op, "task", task, matador::utils::CascadeAllFetchLazy );
field::has_one(op, "payload", payload, utils::CascadeAllFetchLazy );
field::belongs_to( op, "task", task, utils::CascadeAllFetchLazy );
field::attribute( op, "user_info", user_info );
}
};
+3 -2
View File
@@ -16,10 +16,11 @@ struct Payload : core::Model {
template<typename Operator>
void process( Operator& op ) {
using namespace matador;
namespace field = matador::access;
field::process( op, *matador::base_class<Model>( this ) );
field::attribute( op, "type", type, 255 );
field::belongs_to( op, "job", job, matador::utils::CascadeAllFetchLazy );
field::attribute( op, "type", type, VarChar255 );
field::belongs_to( op, "job", job, utils::CascadeAllFetchLazy );
}
};
}
+5 -4
View File
@@ -26,13 +26,14 @@ struct Task : core::Model {
template<typename Operator>
void process( Operator& op ) {
using namespace matador;
namespace field = matador::access;
field::process( op, *matador::base_class<Model>( this ) );
field::attribute( op, "name", name, 511 );
field::attribute( op, "description", description, 511 );
field::attribute( op, "job_name", job_name, 511 );
field::attribute( op, "name", name, UniqueVarChar511 );
field::attribute( op, "description", description, VarChar1023 );
field::attribute( op, "job_name", job_name, VarChar511 );
field::attribute( op, "state", state );
field::belongs_to( op, "payload", payload, matador::utils::CascadeAllFetchLazy );
field::belongs_to( op, "payload", payload, utils::CascadeAllFetchLazy );
field::attribute( op, "job_mode", job_mode );
field::attribute( op, "start_delay", start_delay );
field::attribute( op, "interval", interval );
@@ -1,24 +1,22 @@
#ifndef MATADOR_ABSTRACT_COLLECTION_RESOLVER_HPP
#define MATADOR_ABSTRACT_COLLECTION_RESOLVER_HPP
#include "matador/object/abstract_type_resolver.hpp"
#include <string>
#include <typeindex>
namespace matador::object {
class abstract_collection_resolver {
class abstract_joined_resolver : public abstract_type_resolver {
public:
virtual ~abstract_collection_resolver() = default;
[[nodiscard]] const std::type_index& root_type() const;
[[nodiscard]] const std::type_index& type() const;
[[nodiscard]] const std::string& collection_name() const;
protected:
explicit abstract_collection_resolver(const std::type_index& root_type, const std::type_index& type, std::string collection_name);
protected:
explicit abstract_joined_resolver(const std::type_index& root_type, const std::type_index& type, std::string collection_name);
public:
const std::type_index root_type_;
const std::type_index type_;
const std::string collection_name_;
};
}
+5 -3
View File
@@ -28,20 +28,21 @@ public:
attribute() = default;
attribute(std::string name,
utils::basic_type type,
const utils::field_attributes &attr = utils::null_attributes,
const utils::field_attributes &attr = NullAttributes,
null_option_type null_opt = null_option_type::NotNull);
[[nodiscard]] const std::string& name() const;
void name(const std::string& n);
[[nodiscard]] std::string full_name() const;
[[nodiscard]] size_t index() const;
[[nodiscard]] const utils::field_attributes& attributes() const;
[[nodiscard]] utils::field_attributes& attributes();
[[nodiscard]] bool is_nullable() const;
[[nodiscard]] utils::basic_type type() const;
[[nodiscard]] std::shared_ptr<object> owner() const;
void change_type(utils::basic_type type, const utils::field_attributes &attr = utils::null_attributes);
void change_type(utils::basic_type type, const utils::field_attributes &attr = NullAttributes);
template < typename Type >
void change_type(const utils::field_attributes &attr = utils::null_attributes) {
void change_type(const utils::field_attributes &attr = NullAttributes) {
type_ = utils::data_type_traits<Type>::type(attr.size());
}
@@ -68,6 +69,7 @@ private:
friend class object_generator;
std::string name_;
size_t index_{0};
std::weak_ptr<object> owner_;
utils::basic_type type_{utils::basic_type::Null};
utils::field_attributes options_{};
+3 -3
View File
@@ -27,12 +27,12 @@ public:
[[nodiscard]] std::type_index type_index() const;
[[nodiscard]] std::string name() const;
[[nodiscard]] std::shared_ptr<class object> object() const;
[[nodiscard]] const std::list<attribute>& attributes() const;
[[nodiscard]] const std::list<class restriction>& constraints() const;
[[nodiscard]] const std::vector<attribute>& attributes() const;
[[nodiscard]] const std::list<restriction>& constraints() const;
[[nodiscard]] bool has_primary_key() const;
[[nodiscard]] const utils::identifier& primary_key() const;
[[nodiscard]] attribute* primary_key_attribute() const;
[[nodiscard]] const attribute* primary_key_attribute() const;
void update_name(const std::string& name) const;
+1 -1
View File
@@ -95,7 +95,7 @@ public:
return basic_info(std::type_index(typeid(Type)));
}
[[nodiscard]] utils::result<attribute*, utils::error> primary_key_attribute(const std::type_index &ti) const;
[[nodiscard]] utils::result<const attribute*, utils::error> primary_key_attribute(const std::type_index &ti) const;
void dump(std::ostream &os) const;
static void dump(std::ostream &os, const repository_node& node);
+11 -11
View File
@@ -8,9 +8,9 @@ namespace matador::object {
template < class Type >
class collection {
public:
using value_type = Type;
using iterator = typename std::vector<value_type>::iterator;
using const_iterator = typename std::vector<value_type>::const_iterator;
using value_type = typename collection_proxy<Type>::value_type;
using iterator = typename collection_proxy<Type>::iterator;
using const_iterator = typename collection_proxy<Type>::const_iterator;
collection()
: proxy_(std::make_shared<collection_proxy<Type>>()) {}
@@ -21,31 +21,31 @@ public:
collection(const collection& other) = default;
void push_back(const value_type& value) {
proxy_->items().push_back(value);
proxy_->push_back(value);
}
iterator begin() {
return proxy_->items().begin();
return proxy_->begin();
}
iterator end() {
return proxy_->items().end();
return proxy_->end();
}
const_iterator begin() const {
return proxy_->items().begin();
return proxy_->begin();
}
const_iterator end() const {
return proxy_->items().end();
return proxy_->end();
}
[[nodiscard]] size_t size() const {
return proxy_->items().size();
return proxy_->size();
}
[[nodiscard]] bool empty() const {
return proxy_->items().empty();
return proxy_->empty();
}
void reset(std::shared_ptr<collection_proxy<Type>> proxy) {
@@ -53,7 +53,7 @@ public:
}
private:
std::shared_ptr<collection_proxy<Type>> proxy_;
std::shared_ptr<abstract_collection_proxy<Type>> proxy_;
};
}
+125 -7
View File
@@ -1,8 +1,8 @@
#ifndef MATADOR_COLLECTION_PROXY_HPP
#define MATADOR_COLLECTION_PROXY_HPP
#include "matador/object/collection_resolver.hpp"
#include "matador/object/many_to_many_relation.hpp"
#include "matador/utils/identifier.hpp"
@@ -12,10 +12,100 @@
namespace matador::object {
// has many primitive
// relation<OwnerType, PrimitiveType>
// has many ptr
// relation<OwnerType, ObjectType>
// has many to many
// relation<OwnerType, ForeignType>
template < class RelationType >
struct relation_iterator_traits {
static RelationType& value(RelationType& item) {
return item;
}
};
template < typename Type, typename OwnerType >
struct relation_iterator_traits<relation<OwnerType, Type>> {
static Type& value(relation<OwnerType, Type>& re) {
return re.relation().value();
}
};
template<typename Type, typename RelationType = Type>
class collection_proxy_iterator {
public:
using value_type = Type;
using reference = Type&;
using pointer = Type*;
using relation_type = RelationType;
using iterator_category = std::forward_iterator_tag;
collection_proxy_iterator() = default;
collection_proxy_iterator(typename std::vector<RelationType>::iterator it)
: it_(it) {}
reference operator*() {
return relation_iterator_traits<relation_type>::value(*it_);
}
pointer operator->() {
return &relation_iterator_traits<relation_type>::value(*it_);
}
collection_proxy_iterator& operator++() {
++it_;
return *this;
}
bool operator==(const collection_proxy_iterator& other) const {
return it_ == other.it_;
}
bool operator!=(const collection_proxy_iterator& other) const {
return !operator==(other);
}
// relation_type& relation() {
// return *it_;
// }
private:
typename std::vector<RelationType>::iterator it_;
};
template<typename Type, typename RelationType = Type>
class abstract_collection_proxy {
public:
using value_type = Type;
using relation_type = RelationType;
// using iterator = typename std::vector<value_type>::iterator;
// using const_iterator = typename std::vector<value_type>::const_iterator;
using iterator = collection_proxy_iterator<value_type, relation_type>;
using const_iterator = collection_proxy_iterator<value_type, relation_type>;
virtual ~abstract_collection_proxy() = default;
virtual void push_back(const value_type& value) = 0;
virtual iterator begin() = 0;
virtual iterator end() = 0;
[[nodiscard]] virtual size_t size() = 0;
[[nodiscard]] virtual bool empty() = 0;
[[nodiscard]] virtual const utils::identifier& owner_id() const = 0;
protected:
std::vector<relation_type> items_;
};
template<typename Type>
class collection_proxy final {
class collection_proxy : public abstract_collection_proxy<Type> {
public:
using value_type = Type;
using iterator = typename abstract_collection_proxy<Type>::iterator;
using const_iterator = typename abstract_collection_proxy<Type>::const_iterator;
collection_proxy() = default;
// Lazy
@@ -30,17 +120,32 @@ public:
explicit collection_proxy(std::vector<Type> items)
: items_(std::move(items)) {}
[[nodiscard]] const utils::identifier& owner_id() const {
[[nodiscard]] const utils::identifier& owner_id() const override {
return owner_id_;
}
const std::vector<Type>& items() const {
iterator begin() override {
resolve();
return items_;
return items_.begin();
}
std::vector<Type>& items() {
iterator end() override {
resolve();
return items_;
return items_.end();
}
void push_back(const value_type& value) override {
resolve();
items_.push_back(value);
}
[[nodiscard]] size_t size() override {
resolve();
return items_.size();
}
[[nodiscard]] bool empty() override {
resolve();
return items_.empty();
}
private:
void resolve() {
if (loaded_) {
@@ -66,5 +171,18 @@ private:
std::weak_ptr<collection_resolver<Type>> resolver_{};
mutable std::mutex mutex_{};
};
template<typename Type, class OwnerType>
class collection_many_to_many_proxy {
public:
using value_type = Type;
using owner_type = OwnerType;
using relation_type = many_to_many_relation<value_type, owner_type>;
using iterator = typename std::vector<relation_type>::iterator;
using const_iterator = typename std::vector<relation_type>::const_iterator;
private:
std::vector<relation_type> relations_;
};
}
#endif //MATADOR_COLLECTION_PROXY_HPP
@@ -1,7 +1,7 @@
#ifndef MATADOR_COLLECTION_RESOLVER_HPP
#define MATADOR_COLLECTION_RESOLVER_HPP
#include "matador/object/abstract_collection_resolver.hpp"
#include "matador/object/abstract_joined_resolver.hpp"
#include <typeindex>
#include <vector>
@@ -12,10 +12,10 @@ class identifier;
namespace matador::object {
template<typename Type>
class collection_resolver : public abstract_collection_resolver {
class collection_resolver : public abstract_joined_resolver {
public:
collection_resolver(const std::type_index& root_type, std::string collection_name)
: abstract_collection_resolver(root_type, typeid(Type), std::move(collection_name)) {}
: abstract_joined_resolver(root_type, typeid(Type), std::move(collection_name)) {}
virtual std::vector<Type> resolve(const utils::identifier& id) = 0;
};
@@ -1,28 +0,0 @@
#ifndef MATADOR_CONTAINER_RESOLVER_FACTORY_HPP
#define MATADOR_CONTAINER_RESOLVER_FACTORY_HPP
#include "matador/object/collection_resolver.hpp"
namespace matador::object {
class abstract_collection_resolver_factory {
public:
virtual ~abstract_collection_resolver_factory() = default;
[[nodiscard]] virtual std::shared_ptr<abstract_collection_resolver> acquire_collection_resolver(const std::type_index &root_type, const std::type_index &element_type, const std::string &collection_name) const = 0;
virtual void register_collection_resolver(std::shared_ptr<abstract_collection_resolver> &&resolver) = 0;
};
class collection_resolver_factory : public abstract_collection_resolver_factory {
public:
template<class Type>
[[nodiscard]] std::shared_ptr<collection_resolver<Type>> resolver(const std::type_index &root_type, const std::string &collection_name) const {
const auto res = acquire_collection_resolver(root_type, typeid(Type), collection_name);
if (!res) {
return std::dynamic_pointer_cast<collection_resolver<Type>>(res);
}
return std::dynamic_pointer_cast<collection_resolver<Type>>(res);
}
};
}
#endif //MATADOR_CONTAINER_RESOLVER_FACTORY_HPP
@@ -38,17 +38,19 @@ public:
completer.complete_node(node);
}
template<typename BaseType>
static void on_base(const BaseType&) {}
template<class PrimaryKeyType>
static void on_primary_key(const char * /*id*/, PrimaryKeyType &/*pk*/, const utils::primary_key_attribute & /*attr*/ = utils::default_pk_attributes) {}
static void on_primary_key(const char * /*id*/, PrimaryKeyType &/*pk*/, const utils::primary_key_attribute & /*attr*/) {}
static void on_revision(const char * /*id*/, uint64_t &/*rev*/) {}
template<typename AttributeType>
static void on_attribute(const char * /*id*/, AttributeType &/*val*/, const utils::field_attributes &/*attr*/ = utils::null_attributes) {}
static void on_attribute(const char * /*id*/, AttributeType &/*val*/, const utils::field_attributes &/*attr*/) {}
template<typename AttributeType>
static void on_attribute(const char * /*id*/, std::optional<AttributeType> &/*val*/, const utils::field_attributes &/*attr*/ = utils::null_attributes) {}
static void on_attribute(const char * /*id*/, std::optional<AttributeType> &/*val*/, const utils::field_attributes &/*attr*/) {}
template<class ForeignPointerType>
void on_belongs_to(const char *id, ForeignPointerType &/*obj*/, const utils::foreign_attributes &/*attr*/);
template<class ForeignPointerType>
void on_has_one(const char * /*id*/, ForeignPointerType &/*obj*/, const utils::foreign_attributes &/*attr*/);
void on_has_one(const char * /*id*/, ForeignPointerType &/*obj*/, const char *join_column, const utils::foreign_attributes &/*attr*/);
template<class CollectionType>
void on_has_many(const char *id, CollectionType &,
const char *join_column,
@@ -132,7 +134,7 @@ void foreign_node_completer<NodeType, Observers...>::on_belongs_to(const char *
template<typename NodeType, template<typename> typename ...Observers>
template<class ForeignPointerType>
void foreign_node_completer<NodeType, Observers...>::on_has_one(const char * /*id*/, ForeignPointerType &, const utils::foreign_attributes &) {
void foreign_node_completer<NodeType, Observers...>::on_has_one(const char * /*id*/, ForeignPointerType &, const char * /*join_column*/, const utils::foreign_attributes &) {
attach_node<typename ForeignPointerType::value_type>();
}
@@ -24,15 +24,17 @@ public:
return join_columns_;
}
template<typename BaseType>
static void on_base(const BaseType&) {}
template < class V >
static void on_primary_key(const char * /*id*/, V &, const utils::primary_key_attribute& /*attr*/ = utils::default_pk_attributes) {}
static void on_primary_key(const char * /*id*/, V &, const utils::primary_key_attribute& /*attr*/) {}
static void on_revision(const char * /*id*/, uint64_t &/*rev*/) {}
template<typename Type>
static void on_attribute(const char * /*id*/, Type &, const utils::field_attributes &/*attr*/ = utils::null_attributes) {}
static void on_attribute(const char * /*id*/, Type &, const utils::field_attributes &/*attr*/) {}
template<class Pointer>
static void on_belongs_to(const char * /*id*/, Pointer &/*obj*/, const utils::foreign_attributes &/*attr*/) {}
template<class Pointer>
static void on_has_one(const char * /*id*/, Pointer &/*obj*/, const utils::foreign_attributes &/*attr*/) {}
static void on_has_one(const char * /*id*/, Pointer &/*obj*/, const char * /*join_column*/, const utils::foreign_attributes &/*attr*/) {}
template<class ContainerType>
static void on_has_many(ContainerType &, const char */*join_column*/, const utils::foreign_attributes &/*attr*/) {}
template<class ContainerType>
@@ -0,0 +1,51 @@
#ifndef MATADOR_CONTAINER_RESOLVER_FACTORY_HPP
#define MATADOR_CONTAINER_RESOLVER_FACTORY_HPP
#include "matador/object/collection_resolver.hpp"
#include <memory>
namespace matador::object {
class abstract_collection_resolver_factory {
public:
virtual ~abstract_collection_resolver_factory() = default;
[[nodiscard]] virtual std::shared_ptr<abstract_joined_resolver> acquire_collection_resolver(const std::type_index &root_type, const std::type_index &element_type, const std::string &collection_name) const = 0;
virtual void register_collection_resolver(std::shared_ptr<abstract_joined_resolver> &&resolver) = 0;
};
class joined_collection_resolver_factory : public abstract_collection_resolver_factory {
public:
template<class Type>
[[nodiscard]] std::shared_ptr<collection_resolver<Type>> resolver(const std::type_index &root_type, const std::string &collection_name) const {
const auto res = acquire_collection_resolver(root_type, typeid(Type), collection_name);
if (!res) {
return std::dynamic_pointer_cast<collection_resolver<Type>>(res);
}
return std::dynamic_pointer_cast<collection_resolver<Type>>(res);
}
};
class abstract_joined_object_resolver_factory {
public:
virtual ~abstract_joined_object_resolver_factory() = default;
[[nodiscard]] virtual std::shared_ptr<abstract_type_resolver> acquire_joined_object_resolver(const std::type_index &root_type, const std::type_index &element_type, const std::string &collection_name) const = 0;
virtual void register_joined_object_resolver(std::shared_ptr<abstract_type_resolver> &&resolver, const std::type_index& root_type, const std::string& join_column) = 0;
};
class joined_object_resolver_factory : public abstract_joined_object_resolver_factory {
public:
template<class Type>
[[nodiscard]] std::shared_ptr<object_resolver<Type>> resolver(const std::type_index &root_type, const std::string &collection_name) const {
const auto res = acquire_joined_object_resolver(root_type, typeid(Type), collection_name);
if (!res) {
return std::dynamic_pointer_cast<object_resolver<Type>>(res);
}
return std::dynamic_pointer_cast<object_resolver<Type>>(res);
}
};
}
#endif //MATADOR_CONTAINER_RESOLVER_FACTORY_HPP
@@ -8,6 +8,48 @@
namespace matador::object {
template < class LocalType, class ForeignType >
class relation {
public:
relation() = default;
relation(std::string local_name, std::string remote_name)
: local_name_(std::move(local_name))
, remote_name_(std::move(remote_name)) {}
relation(std::string local_name, std::string remote_name, const object_ptr<LocalType>& local, const ForeignType& remote)
: local_name_(std::move(local_name))
, remote_name_(std::move(remote_name))
, local_(local)
, remote_(remote)
{}
template<class Operator>
void process(Operator &op) {
namespace field = matador::access;
field::belongs_to(op, local_name_.c_str(), local_, utils::CascadeNoneFetchLazy);
foreign_field(op);
}
object_ptr<LocalType> local() const { return local_; }
const ForeignType& remote() const { return remote_; }
private:
template<typename Operator, class RemoteType = ForeignType>
void foreign_field(Operator &op, std::enable_if_t<!is_object_ptr<RemoteType>::value>* /*unused*/) {
namespace field = matador::access;
field::attribute(op, remote_name_.c_str(), remote_);
}
template<typename Operator, class RemoteType = ForeignType>
void foreign_field(Operator &op, std::enable_if_t<is_object_ptr<RemoteType>::value>* /*unused*/) {
namespace field = matador::access;
field::belongs_to(op, remote_name_.c_str(), remote_, utils::CascadeNoneFetchLazy);
}
private:
std::string local_name_;
std::string remote_name_;
object_ptr<LocalType> local_;
ForeignType remote_;
};
template < class LocalType, class ForeignType >
class many_to_many_relation {
public:
@@ -15,6 +57,12 @@ public:
many_to_many_relation(std::string local_name, std::string remote_name)
: local_name_(std::move(local_name))
, remote_name_(std::move(remote_name)) {}
many_to_many_relation(std::string local_name, std::string remote_name, const object_ptr<LocalType>& local, const object_ptr<ForeignType>& remote)
: local_name_(std::move(local_name))
, remote_name_(std::move(remote_name))
, local_(local)
, remote_(remote)
{}
template<class Operator>
void process(Operator &op) {
@@ -40,6 +88,11 @@ public:
many_to_relation(std::string local_name, std::string remote_name)
: local_name_(std::move(local_name))
, type_name_(std::move(remote_name)) {}
many_to_relation(std::string local_name, std::string remote_name, const object_ptr<LocalType>& local, const Type& value)
: local_name_(std::move(local_name))
, type_name_(std::move(remote_name))
, local_(local)
, value_(value){}
template<class Operator>
void process(Operator &op) {
+11 -4
View File
@@ -17,17 +17,21 @@ public:
static const attribute& create_attribute(std::string name, const std::shared_ptr<object>& obj);
[[nodiscard]] attribute* primary_key_attribute() const;
[[nodiscard]] const attribute* primary_key_attribute() const;
[[nodiscard]] const utils::identifier& primary_key() const;
[[nodiscard]] bool has_primary_key() const;
[[nodiscard]] bool is_relation_object() const;
[[nodiscard]] const attribute* join_attribute() const;
[[nodiscard]] const attribute* inverse_join_attribute() const;
[[nodiscard]] const std::string& name() const;
void update_name(const std::string& name);
[[nodiscard]] bool has_attributes() const;
[[nodiscard]] size_t attribute_count() const;
[[nodiscard]] const std::list<attribute>& attributes() const;
[[nodiscard]] const std::vector<attribute>& attributes() const;
[[nodiscard]] bool has_constraints() const;
[[nodiscard]] size_t constraint_count() const;
@@ -40,9 +44,12 @@ private:
friend class object_generator;
std::string name_;
attribute* pk_attribute_{nullptr};
int pk_column_index_{-1};
int join_column_index_{-1};
int inverse_join_column_index_{-1};
utils::identifier pk_identifier_;
std::list<attribute> attributes_;
std::vector<attribute> attributes_;
std::list<restriction> constraints_;
};
}
+429
View File
@@ -0,0 +1,429 @@
#ifndef MATADOR_OBJECT_CACHE_HPP
#define MATADOR_OBJECT_CACHE_HPP
#include "matador/object/object_proxy.hpp"
#include "matador/object/object_resolver.hpp"
#include "matador/utils/identifier.hpp"
#include "matador/utils/message_bus.hpp"
#include <unordered_map>
#include <memory>
#include <shared_mutex>
#include <typeindex>
#include <utility>
#include <cassert>
namespace matador::object {
struct cache_entry_base {
virtual ~cache_entry_base() = default;
/**
* @brief Gibt an, ob der Eintrag vollständig "tot" ist (weder Proxy noch Entity leben).
*
* Wird von @ref object_cache::sweep() verwendet, um Einträge ohne T-Kenntnis zu bereinigen.
*/
[[nodiscard]] virtual bool is_dead() const noexcept = 0;
};
template<typename Type>
struct cache_entry : cache_entry_base {
std::weak_ptr<object_proxy<Type> > proxy;
std::weak_ptr<Type> entity;
[[nodiscard]] bool is_dead() const noexcept override {
return proxy.expired() && entity.expired();
}
};
struct object_cache_event {
std::type_index type{typeid(void)};
utils::identifier id{};
std::chrono::steady_clock::time_point timestamp{};
};
struct object_cache_accessed_event : object_cache_event {};
struct object_cache_proxy_added_event : object_cache_event {};
struct object_cache_entity_attached_event : object_cache_event {};
struct object_cache_imported_event : object_cache_event {};
struct object_cache_erased_event : object_cache_event {};
struct object_cache_sweep_event {
std::size_t removed{};
std::chrono::steady_clock::time_point timestamp{};
};
/**
* @brief Thread-sicherer Cache für Objekt-Proxies und (optional) geladene Entities.
*
* Der Cache verwaltet Einträge pro Kombination aus Objekt-Typ @p T und Primärschlüssel/Identifier.
* Für jede (T, id)-Kombination können sowohl
* - ein Proxy (@c object_proxy<T>) als auch
* - die dazugehörige Entity (@c T)
* zwischengespeichert werden.
*
* Der Cache hält dabei nur @c std::weak_ptr auf Proxy und Entity, d.h. er verlängert deren Lebensdauer nicht.
*
* @note Thread-Safety: Alle öffentlichen Methoden sind threadsafe (intern synchronisiert).
* @note Semantik: Ein Eintrag kann aus dem Cache opportunistisch entfernt werden, sobald Proxy und Entity abgelaufen sind.
*/
class object_cache {
public:
/**
* @brief Erzeugt einen leeren Cache.
*/
explicit object_cache(utils::message_bus &bus)
: bus_(bus) {}
/**
* @brief Liefert einen Proxy für (T, id) und erstellt ihn bei Bedarf.
*
* Falls bereits ein lebender Proxy im Cache existiert, wird er wiederverwendet.
* Andernfalls wird ein neuer Proxy erzeugt, im Cache abgelegt und zurückgegeben.
* Falls für (T, id) bereits eine Entity vorhanden ist, wird sie an den Proxy gebunden.
*
* @tparam Type Entity-Typ.
* @tparam ResolverPointerType Zeiger-Typ auf einen Resolver, typischerweise
* @c std::shared_ptr<object_resolver<T>> oder @c std::weak_ptr<object_resolver<T>>.
* @param id Identifier/Primärschlüssel der Entity.
* @param resolver_ptr Resolver (shared/weak), der zur Lazy-Auflösung durch den Proxy genutzt wird.
* @return Shared-Pointer auf den (ggf. neu erstellten) Proxy.
*
* @note Diese Methode ist threadsafe.
*/
template<typename Type, typename ResolverPointerType>
std::shared_ptr<object_proxy<Type>> acquire_proxy(utils::identifier id, ResolverPointerType &&resolver_ptr) {
const auto k = make_key<Type>(id);
std::unique_lock lock(mutex_);
auto it = map_.find(k);
if (it != map_.end()) {
// found entry, return std::shared_ptr of proxy
auto *entry = entry_cast_<Type>(it->second.get());
if (auto proxy_ptr = entry->proxy.lock()) {
bus_.publish<object_cache_accessed_event>({k.type, id, std::chrono::steady_clock::now()});
return proxy_ptr;
}
// if the proxy is dead, but the entity is alive, create a new proxy and attach entity
auto weak_resolver = to_weak<Type>(std::forward<ResolverPointerType>(resolver_ptr));
auto proxy_ptr = std::make_shared<object_proxy<Type>>(weak_resolver, id);
if (auto obj = entry->entity.lock()) {
proxy_ptr->attach(std::move(obj));
}
entry->proxy = proxy_ptr;
bus_.publish<object_cache_proxy_added_event>({k.type, id, std::chrono::steady_clock::now()});
// return the shared_ptr of the proxy
return proxy_ptr;
}
// entry couldn't be found, create a new entry
auto entry_ptr = std::make_unique<cache_entry<Type>>();
auto *entry = entry_ptr.get();
// create a weak resolver and shared proxy
auto weak_resolver = to_weak<Type>(std::forward<ResolverPointerType>(resolver_ptr));
auto proxy_ptr = std::make_shared<object_proxy<Type>>(weak_resolver, id);
// lock entity and attach to proxy
if (auto obj = entry->entity.lock()) {
proxy_ptr->attach(std::move(obj));
}
// set the new proxy into cache entry
entry->proxy = proxy_ptr;
map_.emplace(k, std::move(entry_ptr));
bus_.publish<object_cache_proxy_added_event>({k.type, id, std::chrono::steady_clock::now()});
// return the shared_ptr of the proxy
return proxy_ptr;
}
template<typename Type, typename ResolverPointerType>
bool import(const utils::identifier &id, const std::shared_ptr<object_proxy<Type>> &proxy, ResolverPointerType &&resolver_ptr) {
if (!proxy) {
return false;
}
auto obj = proxy->object();
auto weak_resolver = to_weak<Type>(std::forward<ResolverPointerType>(resolver_ptr));
const auto k = make_key<Type>(id);
std::unique_lock lock(mutex_);
auto it = map_.find(k);
if (it != map_.end()) {
auto *entry = entry_cast_<Type>(it->second.get());
if (auto existing_proxy = entry->proxy.lock()) {
if (existing_proxy != proxy) {
return false;
}
}
proxy->primary_key(id);
proxy->resolver(std::move(weak_resolver));
if (obj) {
entry->entity = obj;
proxy->attach(std::move(obj));
}
entry->proxy = proxy;
bus_.publish<object_cache_imported_event>({k.type, id, std::chrono::steady_clock::now()});
return true;
}
auto entry_ptr = std::make_unique<cache_entry<Type>>();
auto *entry = entry_ptr.get();
proxy->primary_key(id);
proxy->resolver(std::move(weak_resolver));
if (obj) {
entry->entity = obj;
proxy->attach(std::move(obj));
}
entry->proxy = proxy;
map_.emplace(k, std::move(entry_ptr));
bus_.publish<object_cache_imported_event>({k.type, id, std::chrono::steady_clock::now()});
return true;
}
/**
* @brief Verknüpft eine geladene Entity mit einem Cache-Eintrag (Type, id).
*
* Speichert die Entity als @c weak_ptr im Cache. Falls bereits ein Proxy existiert,
* wird die Entity sofort an den Proxy gebunden.
*
* @tparam Type Entity-Typ.
* @param id Identifier/Primärschlüssel der Entity.
* @param obj Geladene Entity als @c shared_ptr.
*
* @note Diese Methode ist threadsafe.
*/
template<typename Type>
void attach_entity(const utils::identifier &id, std::shared_ptr<Type> obj) {
const auto k = make_key<Type>(id);
std::unique_lock lock(mutex_);
auto it = map_.find(k);
if (it == map_.end()) {
auto entry_ptr = std::make_unique<cache_entry<Type>>();
auto *entry = entry_ptr.get();
entry->entity = obj;
map_.emplace(k, std::move(entry_ptr));
bus_.publish<object_cache_entity_attached_event>({k.type, id, std::chrono::steady_clock::now()});
return;
}
auto *entry = entry_cast_<Type>(it->second.get());
entry->entity = obj;
if (auto proxy = entry->proxy.lock()) {
proxy->attach(std::move(obj));
}
bus_.publish<object_cache_entity_attached_event>({k.type, id, std::chrono::steady_clock::now()});
prune_if_dead(it);
}
/**
* @brief Liefert die aktuell geladene Entity für (Type, id), falls vorhanden.
*
* @tparam Type Entity-Typ.
* @param id Identifier/Primärschlüssel der Entity.
* @return @c shared_ptr auf die Entity oder ein leerer Pointer, falls nicht geladen/abgelaufen.
*
* @note Diese Methode ist threadsafe.
*/
template<typename Type>
std::shared_ptr<Type> get_entity(const utils::identifier &id) {
const auto k = make_key<Type>(id);
std::unique_lock lock(mutex_);
auto it = map_.find(k);
if (it == map_.end()) {
return {};
}
auto *entry = entry_cast_<Type>(it->second.get());
auto entity_ptr = entry->entity.lock();
if (entity_ptr) {
bus_.publish<object_cache_accessed_event>({k.type, id, std::chrono::steady_clock::now()});
}
prune_if_dead(it);
return entity_ptr;
}
/**
* @brief Prüft, ob für (Type, id) aktuell eine lebende Entity verfügbar ist.
*
* @tparam Type Entity-Typ.
* @param id Identifier/Primärschlüssel der Entity.
* @return @c true, wenn die Entity-Referenz nicht abgelaufen ist; sonst @c false.
*
* @note Diese Methode ist threadsafe.
*/
template<typename Type>
bool is_loaded(const utils::identifier &id) {
const auto k = make_key<Type>(id);
std::unique_lock lock(mutex_);
auto it = map_.find(k);
if (it == map_.end()) {
return false;
}
auto *entry = entry_cast_<Type>(it->second.get());
const bool loaded = !entry->entity.expired();
if (loaded) {
bus_.publish<object_cache_accessed_event>({k.type, id, std::chrono::steady_clock::now()});
}
prune_if_dead(it);
return loaded;
}
template<typename T>
void erase(utils::identifier id) {
const auto k = make_key<T>(id);
std::unique_lock lock(mutex_);
auto it = map_.find(k);
if (it == map_.end()) {
return;
}
auto *e = entry_cast_<T>(it->second.get());
if (auto p = e->proxy.lock()) {
p->invalidate();
}
map_.erase(it);
bus_.publish<object_cache_erased_event>({k.type, id, std::chrono::steady_clock::now()});
}
/**
* @brief Führt einen Cleanup-Lauf aus und entfernt Einträge, deren Proxy und Entity abgelaufen sind.
*
* @return Anzahl der entfernten Einträge.
*
* @note Diese Methode ist threadsafe.
*/
[[nodiscard]] std::size_t sweep() {
std::unique_lock lock(mutex_);
std::size_t removed = 0;
for (auto it = map_.begin(); it != map_.end(); ) {
if (it->second->is_dead()) {
it = map_.erase(it);
++removed;
} else {
++it;
}
}
if (removed > 0) {
bus_.publish<object_cache_sweep_event>({removed, std::chrono::steady_clock::now()});
}
return removed;
}
private:
struct key {
std::type_index type;
utils::identifier id{};
bool operator==(key const &other) const {
return type == other.type && id == other.id;
}
};
struct key_hash {
size_t operator()(key const &k) const noexcept {
// (3) robustere Hash-Kombination als XOR
size_t seed = std::hash<std::type_index>()(k.type);
const size_t h2 = std::hash<utils::identifier>()(k.id);
seed ^= h2 + 0x9e3779b97f4a7c15ULL + (seed << 6) + (seed >> 2);
return seed;
}
};
template<typename T>
static key make_key(const utils::identifier &id) {
return key{std::type_index(typeid(T)), id};
}
// (4) Debug-Absicherung für type-erased Casts
template<typename T>
static cache_entry<T> *entry_cast_(cache_entry_base *base) {
#ifndef NDEBUG
auto *p = dynamic_cast<cache_entry<T> *>(base);
assert(p && "object_cache: Type mismatch in cache entry (key/type invariant violated)");
return p;
#else
return static_cast<cache_entry<T> *>(base);
#endif
}
template<typename T, typename U>
using enable_if_resolver_shared_ptr_t = std::enable_if_t<std::is_base_of_v<object_resolver<T>, U>, int>;
template<typename T, typename U>
using enable_if_resolver_weak_ptr_t = std::enable_if_t<std::is_base_of_v<object_resolver<T>, U>, int>;
// shared_ptr<Derived> -> weak_ptr<Base>
template<typename T, typename U, enable_if_resolver_shared_ptr_t<T, U> = 0>
static std::weak_ptr<object_resolver<T>> to_weak(const std::shared_ptr<U> &s) {
return std::weak_ptr<object_resolver<T>>(std::static_pointer_cast<object_resolver<T>>(s));
}
// weak_ptr<Derived> -> weak_ptr<Base>
template<typename T, typename U, enable_if_resolver_weak_ptr_t<T, U> = 0>
static std::weak_ptr<object_resolver<T>> to_weak(const std::weak_ptr<U> &w) {
return std::weak_ptr<object_resolver<T>>(w);
}
// (2) Opportunistischer Cleanup: entferne Entry, wenn beide weak_ptr abgelaufen sind.
template<typename IteratorType>
bool prune_if_dead(IteratorType &it) {
if (it == map_.end()) {
return false;
}
if (it->second && it->second->is_dead()) {
map_.erase(it);
it = map_.end();
return true;
}
return false;
}
template<typename Type>
void prune_if_dead_typed(typename std::unordered_map<key, std::unique_ptr<cache_entry_base>, key_hash>::iterator &it) {
(void)Type{}; // T bleibt im Interface, damit bestehende Call-Sites unverändert bleiben können.
prune_if_dead(it);
}
private:
mutable std::shared_mutex mutex_{};
utils::message_bus &bus_;
std::unordered_map<key, std::unique_ptr<cache_entry_base>, key_hash> map_;
};
// --- Inline Anpassungen: typed prune nach Zugriff (damit wir T haben) ---
// ... existing code ...
// (Die typed prune wird oben benutzt; wir rufen sie direkt im Codepfad anstelle von prune_if_dead_)
} // namespace matador::object
#endif //MATADOR_OBJECT_CACHE_HPP
+29 -13
View File
@@ -25,17 +25,17 @@ public:
}
template<typename ValueType>
void on_primary_key(const char *, ValueType &/*pk*/, const utils::primary_key_attribute& attr = utils::default_pk_attributes) {
void on_primary_key(const char *, ValueType &/*pk*/, const utils::primary_key_attribute& attr) {
type_ = utils::data_type_traits<ValueType>::type(attr.size());
}
static void on_revision(const char * /*id*/, uint64_t &/*rev*/) {}
template < class Type >
static void on_attribute(const char * /*id*/, Type &/*x*/, const utils::field_attributes &/*attr*/ = utils::null_attributes) {}
static void on_attribute(const char * /*id*/, char * /*x*/, const utils::field_attributes &/*attr*/ = utils::null_attributes) {}
static void on_attribute(const char * /*id*/, Type &/*x*/, const utils::field_attributes &/*attr*/) {}
static void on_attribute(const char * /*id*/, char * /*x*/, const utils::field_attributes &/*attr*/) {}
template<class Pointer>
static void on_belongs_to(const char * /*id*/, Pointer &/*x*/, const utils::foreign_attributes &/*attr*/) {}
template<class Pointer>
static void on_has_one(const char * /*id*/, Pointer &/*x*/, const utils::foreign_attributes &/*attr*/) {}
static void on_has_one(const char * /*id*/, Pointer &/*x*/, const char * /*join_column*/, const utils::foreign_attributes &/*attr*/) {}
template<class ContainerType>
static void on_has_many(const char * /*id*/, ContainerType &, const char *, const utils::foreign_attributes &/*attr*/) {}
template<class ContainerType>
@@ -58,7 +58,11 @@ public:
}
template < class Type >
static std::shared_ptr<object> generate(std::unique_ptr<Type>&& t, basic_repository &repo, const std::string &name) {
static std::shared_ptr<object> generate(std::unique_ptr<Type>&& t,
basic_repository &repo,
const std::string &name,
const std::string &join_column = "",
const std::string &inverse_join_column = "") {
const std::type_index ti(typeid(Type));
if (repo.has_object_for_type(ti)) {
auto obj = repo.object_for_type(ti);
@@ -71,18 +75,23 @@ public:
std::ignore = repo.provide_object_in_advance(ti, obj);
object_generator gen(repo, obj);
access::process(gen, *t);
if (!join_column.empty() && !inverse_join_column.empty()) {
gen.prepare_relation_table(join_column, inverse_join_column);
}
return obj;
}
template<typename BaseType>
static void on_base(const BaseType&) {}
template < class Type >
void on_primary_key(const char *, Type &x, const utils::primary_key_attribute& attr = utils::default_pk_attributes);
void on_primary_key(const char *, Type &x, const utils::primary_key_attribute& attr);
void on_revision(const char *id, uint64_t &rev);
template<typename Type>
void on_attribute(const char *id, Type &x, const utils::field_attributes &attr = utils::null_attributes);
void on_attribute(const char *id, Type &x, const utils::field_attributes &attr);
template<typename Type>
void on_attribute(const char *id, std::optional<Type> &x, const utils::field_attributes &attr = utils::null_attributes);
void on_attribute(const char *id, std::optional<Type> &x, const utils::field_attributes &attr);
template<class Pointer>
void on_belongs_to(const char *id, Pointer &x, const utils::foreign_attributes &/*attr*/) {
@@ -90,12 +99,13 @@ public:
create_fk_constraint<typename Pointer::value_type>(id);
}
template<class Pointer>
static void on_has_one(const char * /*id*/, Pointer &/*x*/, const utils::foreign_attributes &/*attr*/) {}
static void on_has_one(const char * /*id*/, Pointer &/*x*/, const char * /*join_column*/, const utils::foreign_attributes &/*attr*/) {}
template <class Pointer>
void on_foreign_key(const char *id, Pointer &/*x*/) {
const auto type = pk_type_determinator::determine<typename Pointer::value_type>();
auto &ref = object_->attributes_.emplace_back(id, type, utils::constraints::ForeignKey, null_option_type::NotNull);
ref.index_ = object_->attributes_.size() - 1;
ref.owner_ = object_;
}
template<class ContainerType>
@@ -109,6 +119,7 @@ private:
template<typename ValueType>
attribute &emplace_attribute(const char *id, const utils::field_attributes& attr, null_option_type null_option) {
auto &ref = object_->attributes_.emplace_back(id, utils::data_type_traits<ValueType>::type(attr.size()), attr, null_option);
ref.index_ = object_->attributes_.size() - 1;
ref.owner_ = object_;
return ref;
}
@@ -118,9 +129,10 @@ private:
void create_fk_constraint(const std::string& name) const;
void create_unique_constraint(const std::string& name) const;
[[nodiscard]] std::list<attribute>::iterator find_attribute_by_name(const std::string &name) const;
[[nodiscard]] std::vector<attribute>::iterator find_attribute_by_name(const std::string &name) const;
void prepare_primary_key(attribute &ref, utils::identifier &&pk) const;
void prepare_primary_key(const attribute &ref, utils::identifier &&pk) const;
void prepare_relation_table(const std::string &join_column, const std::string &inverse_join_column) const;
template<typename Type>
[[nodiscard]] std::shared_ptr<object> fk_object() const;
@@ -133,7 +145,11 @@ private:
template<typename ValueType>
void object_generator::on_primary_key(const char *id, ValueType &x, const utils::primary_key_attribute& attr) {
auto &ref = emplace_attribute<ValueType>(id, { attr.size(), utils::constraints::PrimaryKey }, null_option_type::NotNull);
auto cs = utils::constraints::PrimaryKey;
if (attr.generator() == utils::generator_type::Identity) {
cs |= utils::constraints::Identity;
}
auto &ref = emplace_attribute<ValueType>(id, { attr.size(), cs }, null_option_type::NotNull);
prepare_primary_key(ref, utils::identifier(x));
}
@@ -154,7 +170,7 @@ void object_generator::create_fk_constraint(const std::string& name) const {
return;
}
const auto obj = fk_object<Type>();
restriction pk_constraint(*pk_attr);
restriction pk_constraint(pk_attr->index());
pk_constraint.options_ |= utils::constraints::ForeignKey;
pk_constraint.owner_ = object_;
pk_constraint.reference_ = obj;
+127 -30
View File
@@ -5,6 +5,7 @@
#include "matador/object/object_resolver.hpp"
#include <atomic>
#include <memory>
#include <utility>
#include <stdexcept>
@@ -25,66 +26,162 @@ public:
// Lazy
object_proxy(std::weak_ptr<object_resolver<Type>> resolver, utils::identifier id)
: resolver_(resolver)
, pk_(std::move(id)) {
: resolver_(std::move(resolver))
, pk_(std::move(id))
, state_(object_state::Persistent) {
}
// Eager
object_proxy(std::weak_ptr<object_resolver<Type>> resolver, std::shared_ptr<Type> obj)
: obj_(obj)
, resolver_(resolver)
, pk_(primary_key_resolver::resolve_object(*obj).pk) {
: obj_(std::move(obj))
, resolver_(std::move(resolver))
, pk_(obj_ ? primary_key_resolver::resolve_object(*obj_).pk : utils::identifier{})
, state_(obj_ ? object_state::Persistent : object_state::Detached) {
}
// Transient
explicit object_proxy(std::shared_ptr<Type> obj)
: obj_(obj)
, pk_(primary_key_resolver::resolve_object(*obj).pk) {
: obj_(std::move(obj))
, pk_(obj_ ? primary_key_resolver::resolve_object(*obj_).pk : utils::identifier{}) {
}
void attach(std::shared_ptr<Type> obj) {
std::lock_guard lock(mutex_);
obj_ = std::move(obj);
if (!obj_) {
pk_.clear();
state_ = object_state::Detached;
return;
}
pk_ = primary_key_resolver::resolve_object(*obj_).pk;
state_ = object_state::Persistent;
}
void resolver(std::weak_ptr<object_resolver<Type>> resolver) {
std::lock_guard lock(mutex_);
resolver_ = std::move(resolver);
}
[[nodiscard]] std::shared_ptr<Type> object() const {
return resolve_object();
}
void invalidate() {
std::lock_guard lock(mutex_);
obj_.reset();
resolver_.reset();
state_ = object_state::Detached;
}
[[nodiscard]] void *raw_pointer() const { return static_cast<void *>(pointer()); }
Type *operator->() { return pointer(); }
Type &operator*() { return *pointer(); }
const Type &operator*() const { return *pointer(); }
Type *operator->() {
auto *ptr = pointer();
if (!ptr) {
throw std::runtime_error("Cannot dereference empty object proxy");
}
return ptr;
}
Type *pointer() const { return resolve(); }
const Type *operator->() const {
auto *ptr = pointer();
if (!ptr) {
throw std::runtime_error("Cannot dereference empty object proxy");
}
return ptr;
}
Type &operator*() {
auto *ptr = pointer();
if (!ptr) {
throw std::runtime_error("Cannot dereference empty object proxy");
}
return *ptr;
}
const Type &operator*() const {
auto *ptr = pointer();
if (!ptr) {
throw std::runtime_error("Cannot dereference empty object proxy");
}
return *ptr;
}
Type *pointer() const {
return resolve_object().get();
}
[[nodiscard]] bool empty() const {
std::lock_guard lock(mutex_);
return !obj_ && resolver_.expired();
}
[[nodiscard]] bool empty() const { return resolver_ == nullptr; }
[[nodiscard]] bool valid() const { return !empty(); }
[[nodiscard]] bool has_primary_key() const { return !pk_.is_null(); }
[[nodiscard]] const utils::identifier &primary_key() const { return pk_; }
void primary_key(const utils::identifier &pk) { pk_ = pk; }
bool is_persistent() const { return state_ == object_state::Persistent; }
bool is_transient() const { return state_ == object_state::Transient; }
bool is_detached() const { return state_ == object_state::Detached; }
bool is_removed() const { return state_ == object_state::Removed; }
[[nodiscard]] bool has_primary_key() const {
std::lock_guard lock(mutex_);
return !pk_.is_null();
}
[[nodiscard]] utils::identifier primary_key() const {
std::lock_guard lock(mutex_);
return pk_;
}
void primary_key(const utils::identifier &pk) {
std::lock_guard lock(mutex_);
pk_ = pk;
}
bool is_persistent() const { return is_state(object_state::Persistent); }
bool is_transient() const { return is_state(object_state::Transient); }
bool is_detached() const { return is_state(object_state::Detached); }
bool is_removed() const { return is_state(object_state::Removed); }
bool is_state(const object_state state) const {
std::lock_guard lock(mutex_);
return state_ == state;
}
void change_state(const object_state state) {
std::lock_guard lock(mutex_);
state_ = state;
}
private:
Type* resolve() const {
std::shared_ptr<Type> resolve_object() const {
std::shared_ptr<Type> current;
std::shared_ptr<object_resolver<Type>> resolver;
utils::identifier pk;
{
std::lock_guard lock(mutex_);
if (obj_) {
return obj_.get();
return obj_;
}
std::lock_guard lock(mutex_);
auto resolver = resolver_.lock();
resolver = resolver_.lock();
if (!resolver) {
return nullptr;
// Todo: Add states (Detached, Attached, Transient) - if attached an no resolver is available throw runtime exception
// throw std::runtime_error("Detached proxy (session expired)");
}
const_cast<std::shared_ptr<Type>&>(obj_) = resolver->resolve(pk_);
return obj_.get();
pk = pk_;
}
current = resolver->resolve(pk);
{
std::lock_guard lock(mutex_);
if (!obj_) {
obj_ = std::move(current);
}
return obj_;
}
}
private:
std::shared_ptr<Type> obj_{};
std::weak_ptr<object_resolver<Type>> resolver_{};
mutable std::shared_ptr<Type> obj_{};
mutable std::weak_ptr<object_resolver<Type>> resolver_{};
utils::identifier pk_{};
object_state state_{object_state::Transient};
mutable std::mutex mutex_{};
+129 -16
View File
@@ -8,48 +8,161 @@
#include <memory>
namespace matador::object {
struct null_object_ptr_t {
constexpr null_object_ptr_t() = default;
};
inline constexpr null_object_ptr_t nullobj{};
template <typename Type>
class object_ptr {
public:
object_ptr()
object_ptr()
: proxy_(std::make_shared<object_proxy<Type>>()) {}
object_ptr(null_object_ptr_t) {}
explicit object_ptr(std::shared_ptr<Type> obj)
: proxy_(std::make_shared<object_proxy<Type>>(obj)) {}
: proxy_(std::make_shared<object_proxy<Type>>(std::move(obj))) {}
explicit object_ptr(std::shared_ptr<object_proxy<Type>> obj)
: proxy_(std::move(obj)) {}
object_ptr(const object_ptr &other) = default;
object_ptr(object_ptr &&other) noexcept = default;
object_ptr &operator=(const object_ptr &other) = default;
object_ptr &operator=(object_ptr &&other) = default;
object_ptr& operator=(const object_ptr &other) = default;
object_ptr& operator=(object_ptr &&other) noexcept = default;
object_ptr& operator=(null_object_ptr_t) {
proxy_.reset();
return *this;
}
bool operator==(const object_ptr &other) const {
return get() == other.get();
if (proxy_ == other.proxy_) {
return true;
}
if (!proxy_ || !other.proxy_) {
return false;
}
if (has_primary_key() && other.has_primary_key()) {
return primary_key() == other.primary_key();
}
return false;
}
bool operator==(null_object_ptr_t) const {
return empty();
}
bool operator!=(const object_ptr &other) const { return !operator==(other); }
bool operator!=(null_object_ptr_t) const { return !empty(); }
using value_type = Type;
Type *operator->() const { return get(); }
Type &operator*() { return *get(); }
const Type &operator*() const { return *get(); }
Type *operator->() const {
return checked_get();
}
[[nodiscard]] bool empty() const { return get() == nullptr; }
Type &operator*() {
return *checked_get();
}
const Type &operator*() const {
return *checked_get();
}
[[nodiscard]] bool empty() const {
return proxy_ == nullptr || proxy_->empty();
}
Type *get() const {
return proxy_ ? proxy_->pointer() : nullptr;
}
void reset() { proxy_.reset(); }
[[nodiscard]] std::shared_ptr<Type> object() const {
return proxy_ ? proxy_->object() : nullptr;
}
operator bool() { return valid(); }
bool valid() { return proxy_ != nullptr; }
void reset() {
proxy_.reset();
}
[[nodiscard]] bool has_primary_key() const { return proxy_->has_primary_key(); }
[[nodiscard]] const utils::identifier &primary_key() const { return proxy_->primary_key(); }
void primary_key(const utils::identifier &pk) { proxy_->primary_key(pk); }
void reset(std::shared_ptr<object_proxy<Type>> proxy) {
proxy_ = std::move(proxy);
}
[[nodiscard]] std::shared_ptr<object_proxy<Type>> proxy() const {
return proxy_;
}
explicit operator bool() const {
return valid();
}
[[nodiscard]] bool valid() const {
return proxy_ != nullptr && !proxy_->empty();
}
[[nodiscard]] bool has_primary_key() const {
return proxy_ != nullptr && proxy_->has_primary_key();
}
[[nodiscard]] utils::identifier primary_key() const {
return proxy_ ? proxy_->primary_key() : utils::identifier{};
}
void primary_key(const utils::identifier &pk) {
ensure_proxy();
proxy_->primary_key(pk);
}
[[nodiscard]] bool is_persistent() const {
return proxy_ != nullptr && proxy_->is_persistent();
}
[[nodiscard]] bool is_transient() const {
return proxy_ != nullptr && proxy_->is_transient();
}
[[nodiscard]] bool is_detached() const {
return proxy_ != nullptr && proxy_->is_detached();
}
[[nodiscard]] bool is_removed() const {
return proxy_ != nullptr && proxy_->is_removed();
}
[[nodiscard]] bool is_state(const object_state state) const {
return proxy_ != nullptr && proxy_->is_state(state);
}
void change_state(object_state s) const {
if (proxy_) {
proxy_->change_state(s);
}
}
private:
std::shared_ptr<object_proxy<Type> > proxy_{};
Type *checked_get() const {
auto *ptr = get();
if (!ptr) {
throw std::runtime_error("Cannot dereference empty object_ptr");
}
return ptr;
}
void ensure_proxy() {
if (!proxy_) {
proxy_ = std::make_shared<object_proxy<Type>>();
}
}
private:
std::shared_ptr<object_proxy<Type>> proxy_{};
};
template<typename>
@@ -2,6 +2,7 @@
#define MATADOR_OBJECT_LOADER_HPP
#include "matador/object/abstract_type_resolver.hpp"
#include "matador/object/abstract_joined_resolver.hpp"
#include <memory>
@@ -17,5 +18,13 @@ public:
virtual std::shared_ptr<Type> resolve(const utils::identifier& id) = 0;
};
template<typename Type>
class joined_object_resolver : public abstract_joined_resolver, public object_resolver<Type> {
public:
joined_object_resolver(const std::type_index& root_type, const std::string& join_column)
: abstract_joined_resolver(root_type, typeid(Type), join_column) {}
std::shared_ptr<Type> resolve(const utils::identifier& id) override = 0;
};
}
#endif //MATADOR_OBJECT_LOADER_HPP
+2 -2
View File
@@ -113,8 +113,8 @@ class null_observer : public observer<Type> {
public:
template < class OtherType >
explicit null_observer(const null_observer<OtherType> *) {}
void on_attach(repository_node &, Type &) override {}
void on_detach(repository_node &, Type &) override {}
void on_attach(const repository_node &, const Type &) const override {}
void on_detach(const repository_node &, const Type &) const override {}
void on_insert(Type &) override {}
void on_update(Type &) override {}
void on_delete(Type &) override {}
+133
View File
@@ -0,0 +1,133 @@
#ifndef MATADOR_PK_FIELD_LOCATOR_HPP
#define MATADOR_PK_FIELD_LOCATOR_HPP
#include "matador/utils/primary_key_attribute.hpp"
#include "matador/utils/field_attributes.hpp"
#include "matador/utils/foreign_attributes.hpp"
#include <variant>
#include <array>
#include <stdexcept>
#include <string>
namespace matador::object::detail {
using uuid16 = std::array<std::uint8_t, 16>;
using pk_value = std::variant<std::int64_t, std::string, uuid16>;
enum class pk_kind { integer, string, uuid };
struct pk_field_descriptor {
std::size_t offset{};
pk_kind kind{pk_kind::integer};
bool (*is_known_at)(const void* obj, std::size_t offset) = nullptr;
pk_value (*get_at)(const void* obj, std::size_t offset) = nullptr;
void (*set_at)(void* obj, std::size_t offset, const pk_value& v) = nullptr;
};
template < typename Type >
struct pk_field_locator {
Type *base{nullptr};
pk_field_descriptor desc{};
bool found{false};
explicit pk_field_locator (Type &obj)
: base(&obj) {}
template<typename BaseType>
static void on_base(const BaseType&) {}
template <typename PrimaryKeyType>
void on_primary_key(const char *, PrimaryKeyType &pk, const utils::primary_key_attribute & /*attr*/) {
// Offset bestimmen
const auto* obj_bytes = reinterpret_cast<std::uint8_t*>(base);
const auto* pk_bytes = reinterpret_cast<std::uint8_t*>(&pk);
desc.offset = static_cast<std::size_t>(pk_bytes - obj_bytes);
if constexpr (std::is_integral_v<PrimaryKeyType> || std::is_enum_v<PrimaryKeyType>) {
desc.kind = pk_kind::integer;
desc.is_known_at = [](void *obj, const std::size_t off) -> bool {
auto *p = reinterpret_cast<PrimaryKeyType *>(static_cast<std::uint8_t *>(obj) + off);
return *p != PrimaryKeyType{};
};
desc.get_at = [](void *obj, const std::size_t off) -> pk_value {
auto *p = reinterpret_cast<PrimaryKeyType *>(static_cast<std::uint8_t *>(obj) + off);
return static_cast<std::int64_t>(*p);
};
desc.set_at = [](void *obj, const std::size_t off, const pk_value &v) {
auto *p = reinterpret_cast<PrimaryKeyType *>(static_cast<std::uint8_t *>(obj) + off);
if (auto *i = std::get_if<std::int64_t>(&v)) {
*p = static_cast<PrimaryKeyType>(*i);
} else {
throw std::logic_error("PK type mismatch: expected integer");
}
};
} else if constexpr (std::is_same_v<PrimaryKeyType, std::string>) {
desc.kind = pk_kind::string;
desc.is_known_at = [](void *obj, const std::size_t off) -> bool {
const auto *p = reinterpret_cast<std::string *>(static_cast<std::uint8_t *>(obj) + off);
return !p->empty();
};
desc.get_at = [](void *obj, const std::size_t off) -> pk_value {
auto *p = reinterpret_cast<std::string *>(static_cast<std::uint8_t *>(obj) + off);
return *p;
};
desc.set_at = [](void *obj, const std::size_t off, const pk_value &v) {
auto *p = reinterpret_cast<std::string *>(static_cast<std::uint8_t *>(obj) + off);
if (auto *s = std::get_if<std::string>(&v)) {
*p = *s;
} else {
throw std::logic_error("PK type mismatch: expected string");
}
};
} else if constexpr (std::is_same_v<PrimaryKeyType, uuid16>) {
desc.kind = pk_kind::uuid;
desc.is_known_at = [](void *obj, const std::size_t off) -> bool {
const auto *p = reinterpret_cast<uuid16 *>(static_cast<std::uint8_t *>(obj) + off);
// “unknown” = all zeros
for (const auto b: *p) {
if (b != 0) return true;
}
return false;
};
desc.get_at = [](void *obj, const std::size_t off) -> pk_value {
auto *p = reinterpret_cast<uuid16 *>(static_cast<std::uint8_t *>(obj) + off);
return *p;
};
desc.set_at = [](void *obj, const std::size_t off, const pk_value &v) {
auto *p = reinterpret_cast<uuid16 *>(static_cast<std::uint8_t *>(obj) + off);
if (auto *u = std::get_if<uuid16>(&v)) {
*p = *u;
} else {
throw std::logic_error("PK type mismatch: expected uuid16");
}
};
} else {
throw std::logic_error("Unsupported primary key field type");
}
found = true;
}
static void on_revision(const char *, std::uint64_t &) {}
template <typename V>
static void on_attribute(const char *, V &, const utils::field_attributes &/*attr*/) {}
template <typename Pointer>
static void on_belongs_to(const char *, Pointer &, const utils::foreign_attributes &) {}
template <typename Pointer>
static void on_has_one(const char *, Pointer &, const char * /*join_column*/, const utils::foreign_attributes &) {}
template <typename Container>
static void on_has_many(const char *, Container &, const char *, const utils::foreign_attributes &) {}
template <typename Container>
static void on_has_many_to_many(const char *, Container &, const char *, const char *,const utils::foreign_attributes &) {}
template <typename Container>
static void on_has_many_to_many(const char *, Container &, const utils::foreign_attributes &) {}
};
}
#endif //MATADOR_PK_FIELD_LOCATOR_HPP
@@ -43,8 +43,10 @@ public:
return resolver.resolve(obj);
}
template<typename BaseType>
static void on_base(const BaseType&) {}
template < class Type >
void on_primary_key(const char *id, Type &pk, const utils::primary_key_attribute& attr = utils::default_pk_attributes) {
void on_primary_key(const char *id, Type &pk, const utils::primary_key_attribute& attr) {
primary_key_info_.pk_column_name = id;
primary_key_info_.type = utils::data_type_traits<Type>::type(attr.size());
primary_key_info_.pk = pk;
@@ -52,11 +54,11 @@ public:
static void on_revision(const char * /*id*/, uint64_t &/*rev*/) {}
template<typename Type>
static void on_attribute(const char * /*id*/, Type &/*val*/, const utils::field_attributes &/*attr*/ = utils::null_attributes) {}
static void on_attribute(const char * /*id*/, Type &/*val*/, const utils::field_attributes &/*attr*/) {}
template<class Pointer>
static void on_belongs_to(const char * /*id*/, Pointer &/*val*/, const utils::foreign_attributes &/*attr*/) {}
template<class Pointer>
static void on_has_one(const char * /*id*/, Pointer &/*val*/, const utils::foreign_attributes &/*attr*/) {}
static void on_has_one(const char * /*id*/, Pointer &/*val*/, const char * /*join_column*/, const utils::foreign_attributes &/*attr*/) {}
template<class ContainerType>
static void on_has_many(const char * /*id*/, ContainerType &/*col*/, const char *, const utils::foreign_attributes &/*attr*/) {}
template<class ContainerType>
+25 -14
View File
@@ -28,20 +28,22 @@ public:
return finder.found_;
}
template<typename BaseType>
static void on_base(const BaseType&) {}
template<class PrimaryKeyType>
static void on_primary_key(const char * /*id*/, PrimaryKeyType &/*pk*/, const utils::primary_key_attribute& /*attr*/ = utils::default_pk_attributes) {}
static void on_primary_key(const char * /*id*/, PrimaryKeyType &/*pk*/, const utils::primary_key_attribute& /*attr*/) {}
static void on_revision(const char * /*id*/, uint64_t &/*rev*/) {}
template<typename AttributeType>
static void on_attribute(const char * /*id*/, AttributeType &/*val*/, const utils::field_attributes &/*attr*/ = utils::null_attributes) {}
static void on_attribute(const char * /*id*/, AttributeType &/*val*/, const utils::field_attributes &/*attr*/) {}
template<typename AttributeType>
static void on_attribute(const char * /*id*/, std::optional<AttributeType> &/*val*/, const utils::field_attributes &/*attr*/ = utils::null_attributes) {}
static void on_attribute(const char * /*id*/, std::optional<AttributeType> &/*val*/, const utils::field_attributes &/*attr*/) {}
template<class ForeignPointerType>
void on_belongs_to(const char *id, ForeignPointerType &/*obj*/, const utils::foreign_attributes &/*attr*/) {
found_ = requested_join_column_ == id;
}
template<class ForeignPointerType>
static void on_has_one(const char * /*id*/, ForeignPointerType &/*obj*/, const utils::foreign_attributes &/*attr*/) {}
static void on_has_one(const char * /*id*/, ForeignPointerType &/*obj*/, const char * /*join_column*/, const utils::foreign_attributes &/*attr*/) {}
template<class CollectionType>
static void on_has_many(const char * /*id*/, CollectionType &, const char * /*join_column*/, const utils::foreign_attributes &/*attr*/) {}
@@ -102,18 +104,20 @@ public:
completer.complete_node_relations(node);
}
template<typename BaseType>
static void on_base(const BaseType&) {}
template<class PrimaryKeyType>
static void on_primary_key(const char * /*id*/, PrimaryKeyType &/*pk*/, const utils::primary_key_attribute& /*attr*/ = utils::default_pk_attributes) {}
static void on_primary_key(const char * /*id*/, PrimaryKeyType &/*pk*/, const utils::primary_key_attribute& /*attr*/) {}
static void on_revision(const char * /*id*/, uint64_t &/*rev*/) {}
template<typename AttributeType>
static void on_attribute(const char * /*id*/, AttributeType &/*val*/, const utils::field_attributes &/*attr*/ = utils::null_attributes) {}
static void on_attribute(const char * /*id*/, AttributeType &/*val*/, const utils::field_attributes &/*attr*/) {}
template<typename AttributeType>
static void on_attribute(const char * /*id*/, std::optional<AttributeType> &/*val*/, const utils::field_attributes &/*attr*/ = utils::null_attributes) {}
static void on_attribute(const char * /*id*/, std::optional<AttributeType> &/*val*/, const utils::field_attributes &/*attr*/) {}
template<class ForeignPointerType>
void on_belongs_to(const char *id, ForeignPointerType &obj, const utils::foreign_attributes &attr);
template<class ForeignPointerType>
void on_has_one(const char * /*id*/, ForeignPointerType &/*obj*/, const utils::foreign_attributes &/*attr*/);
void on_has_one(const char * /*id*/, ForeignPointerType &/*obj*/, const char * /*join_column*/, const utils::foreign_attributes &/*attr*/);
template<class CollectionType>
void on_has_many(const char *id, CollectionType &, const char *join_column, const utils::foreign_attributes &attr, std::enable_if_t<is_object_ptr<typename CollectionType::value_type>::value> * = nullptr);
@@ -168,7 +172,7 @@ void relation_completer<Type, Observers...>::on_has_many(const char *id, Collect
using relation_value_type = many_to_many_relation<Type, value_type>;
// Check if the object_ptr type is already inserted in the schema (by id)
auto foreign_node = find_node(typeid(value_type));
const auto foreign_node = find_node(typeid(value_type));
if (!foreign_node) {
// Todo: throw internal error or attach node
return;
@@ -187,7 +191,7 @@ void relation_completer<Type, Observers...>::on_has_many(const char *id, Collect
const auto local_endpoint = std::make_shared<relation_endpoint>(id, relation_type::HasMany, *foreign_node);
nodes_.top()->info_->register_relation_endpoint(typeid(value_type), local_endpoint);
} else {
// A relation table is necessary
// A relation table is necessary.
// Endpoint was not found.
// Always attach a many-to-many relation type. If later a
// belongs-to relation handles this relation, the many-to-many
@@ -218,14 +222,15 @@ template<typename Type, template<typename> typename... Observers>
template<class CollectionType>
void relation_completer<Type, Observers...>::on_has_many(const char *id, CollectionType &, const char *join_column,
const utils::foreign_attributes &,
std::enable_if_t<!is_object_ptr<typename CollectionType::value_type>::value>
* /*unused*/) {
std::enable_if_t<!is_object_ptr<typename CollectionType::value_type>::value>* /*unused*/) {
using value_type = typename CollectionType::value_type;
using relation_value_type = many_to_relation<Type, value_type>;
auto observers = internal::observer_list_copy_creator<Type, relation_value_type, Observers...>::copy_create(observers_);
auto node = repository_node::make_node<relation_value_type>(repo_, id, [join_column] {
return std::make_unique<relation_value_type>(join_column, "value");
}, {});
}, std::move(observers));
const auto result = repo_.attach_node(node.release(), "");
if (!result) {
// Todo: throw internal exception
@@ -274,6 +279,7 @@ template<typename Type, template<typename> typename... Observers>
template<class ForeignPointerType>
void relation_completer<Type, Observers...>::on_has_one(const char *id,
ForeignPointerType &/*obj*/,
const char * /*join_column*/,
const utils::foreign_attributes &/*attr*/) {
using value_type = typename ForeignPointerType::value_type;
const auto foreign_node = find_node(typeid(value_type));
@@ -360,7 +366,12 @@ void relation_completer<Type, Observers...>::attach_relation_node(const std::str
auto observers = internal::observer_list_copy_creator<Type, relation_value_type, Observers...>::copy_create(observers_);
auto node = repository_node::make_node<relation_value_type>(repo_, name, std::move(creator), std::move(observers));
auto node = repository_node::make_relation_node<relation_value_type>(repo_,
name,
join_column,
inverse_join_column,
std::move(creator),
std::move(observers));
auto result = repo_.attach_node(node.release(), "");
if (!result) {
// Todo: throw internal error
@@ -23,6 +23,13 @@ public:
const std::string& name,
creator_func<Type> creator,
std::vector<std::unique_ptr<observer<Type>>>&& observers);
template < typename Type, template<typename> typename... Observers >
static std::unique_ptr<repository_node> make_relation_node(basic_repository& repo,
const std::string& name,
const std::string& join_column,
const std::string& inverse_join_column,
creator_func<Type> creator,
std::vector<std::unique_ptr<observer<Type>>>&& observers);
explicit repository_node(basic_repository& repo);
repository_node(const repository_node& other) = delete;
@@ -101,5 +108,28 @@ std::unique_ptr<repository_node> repository_node::make_node(basic_repository &re
return node;
}
template<typename Type, template <typename> class ... Observers>
std::unique_ptr<repository_node> repository_node::make_relation_node(basic_repository &repo,
const std::string &name,
const std::string &join_column,
const std::string &inverse_join_column,
creator_func<Type> creator,
std::vector<std::unique_ptr<observer<Type>>> &&observers) {
const std::type_index ti(typeid(Type));
auto node = std::unique_ptr<repository_node>(new repository_node(repo, name, ti));
internal::observer_list_creator<Type, Observers...>::create_missing(observers);
auto obj = object_generator::generate<Type>(creator(), repo, name, join_column, inverse_join_column);
node->info_.reset(std::make_unique<object_info<Type>>(
*node,
obj,
std::move(observers),
std::forward<creator_func<Type>>(creator)
).release());
return node;
}
}
#endif //REPOSITORY_NODE_HPP
+4 -4
View File
@@ -17,17 +17,17 @@ class object;
class restriction {
public:
explicit restriction(const class attribute& attr);
explicit restriction(size_t attr_index);
[[nodiscard]] const class attribute& attribute() const;
[[nodiscard]] size_t attribute_index() const;
[[nodiscard]] std::string column_name() const;
[[nodiscard]] utils::constraints options() const;
[[nodiscard]] std::shared_ptr<object> owner() const;
[[nodiscard]] bool is_primary_key_constraint() const;
[[nodiscard]] bool is_foreign_key_constraint() const;
[[nodiscard]] bool is_unique_constraint() const;
[[nodiscard]] std::string ref_table_name() const;
[[nodiscard]] std::string ref_column_name() const;
friend std::ostream& operator<<(std::ostream& os, const restriction& c);
[[nodiscard]] std::string type_string() const;
@@ -37,7 +37,7 @@ private:
friend class object_generator;
friend class object;
const class attribute& attr_;
const size_t index_;
std::weak_ptr<object> owner_;
std::weak_ptr<object> reference_;
utils::constraints options_{utils::constraints::None};
-35
View File
@@ -1,35 +0,0 @@
#ifndef ERROR_CODE_HPP
#define ERROR_CODE_HPP
#include <cstdint>
#include <system_error>
namespace matador::orm {
enum class error_code : uint8_t {
Ok = 0,
NoConnectionAvailable,
UnknownType,
NoPrimaryKey,
FailedToBuildQuery,
FailedToFindObject,
Failed
};
class orm_category_impl final : public std::error_category
{
public:
[[nodiscard]] const char* name() const noexcept override;
[[nodiscard]] std::string message(int ev) const override;
};
const std::error_category& orm_category();
std::error_code make_error_code(error_code e);
std::error_condition make_error_condition(error_code e);
}
template <>
struct std::is_error_code_enum<matador::orm::error_code> : true_type {};
#endif //ERROR_CODE_HPP
-351
View File
@@ -1,351 +0,0 @@
#ifndef QUERY_SESSION_HPP
#define QUERY_SESSION_HPP
#include "matador/orm/error_code.hpp"
#include "matador/query/select_query_builder.hpp"
#include "matador/query/criteria.hpp"
#include "matador/query/query.hpp"
#include "matador/query/generator.hpp"
#include "matador/query/schema.hpp"
#include "matador/sql/connection.hpp"
#include "matador/sql/connection_pool.hpp"
#include "matador/sql/executor.hpp"
#include "matador/sql/resolver_service.hpp"
#include "matador/sql/statement.hpp"
#include "matador/sql/statement_cache.hpp"
#include "matador/object/object_ptr.hpp"
#include <unordered_map>
#include <utility>
namespace matador::orm {
utils::error make_error(error_code ec, const std::string &msg);
struct session_context {
session_context(utils::message_bus &bus, std::string dns, const size_t count, const size_t cache_size = 500)
: bus(bus)
, dns(std::move(dns))
, connection_count(count)
, cache_size(cache_size) {
}
utils::message_bus &bus;
std::string dns;
size_t connection_count{};
size_t cache_size{500};
std::shared_ptr<sql::resolver_service> resolver_service = std::make_shared<sql::resolver_service>();
};
class prototype_builder final {
public:
explicit prototype_builder(const std::unordered_map<std::string, sql::statement> &statements_per_column)
: statements_per_column_(statements_per_column) {
}
template<typename Type>
Type build() const {
Type obj;
access::process(*this, obj);
return obj;
}
template<class V>
static void on_primary_key(const char * /*id*/, V &/*pk*/,
const utils::primary_key_attribute & /*attr*/ = utils::default_pk_attributes) {
}
static void on_revision(const char * /*id*/, uint64_t &/*rev*/) {
}
template<typename Type>
static void on_attribute(const char * /*id*/, Type &/*obj*/,
const utils::field_attributes &/*attr*/ = utils::null_attributes) {
}
template<class Pointer>
void on_belongs_to(const char *id, Pointer &/*obj*/, const utils::foreign_attributes &/*attr*/) {
const auto it = statements_per_column_.find(id);
if (it == statements_per_column_.end()) {
return;
}
}
template<class Pointer>
void on_has_one(const char * /*id*/, Pointer &/*obj*/, const utils::foreign_attributes &/*attr*/) {
}
template<class ContainerType>
void on_has_many(const char * /*id*/, ContainerType &, const char * /*join_column*/,
const utils::foreign_attributes &/*attr*/) {
}
template<class ContainerType>
void on_has_many_to_many(const char * /*id*/, ContainerType &/*cont*/, const char * /*join_column*/,
const char * /*inverse_join_column*/, const utils::foreign_attributes &/*attr*/) {
}
template<class ContainerType>
void on_has_many_to_many(const char * /*id*/, ContainerType &/*cont*/, const utils::foreign_attributes &/*attr*/) {
}
private:
const std::unordered_map<std::string, sql::statement> &statements_per_column_;
};
class session final : public sql::executor {
public:
session(session_context &&ctx, const query::schema &scm);
/**
* Insert the given object into the session.
*
* @tparam Type Type of object to insert
* @param obj Object to insert
* @return Inserted object
*/
// template<typename Type>
// utils::result<object::object_ptr<Type>, utils::error> insert(Type *obj);
template<typename Type>
utils::result<object::object_ptr<Type>, utils::error> insert(object::object_ptr<Type> obj);
// template<class Type, typename... Args>
// utils::result<object::object_ptr<Type>, utils::error> insert(Args &&... args);
template<typename Type>
utils::result<object::object_ptr<Type>, utils::error> update(const object::object_ptr<Type> &obj);
template<typename Type>
utils::result<void, utils::error> remove(const object::object_ptr<Type> &obj);
template<typename Type, typename PrimaryKeyType>
utils::result<object::object_ptr<Type>, utils::error> find(const PrimaryKeyType &pk);
template<typename Type>
utils::result<sql::query_result<Type>, utils::error> find(query::criteria_ptr clause = {});
template<typename Type>
utils::result<void, utils::error> drop_table() const;
utils::result<void, utils::error> drop_table(const std::string &table_name) const;
[[nodiscard]] utils::result<sql::query_result<sql::record>, utils::error>
fetch_all(const sql::query_context &q) const;
[[nodiscard]] utils::result<sql::execute_result, utils::error> execute(const std::string &sql) const;
[[nodiscard]] std::vector<object::attribute> describe_table(const std::string &table_name) const;
[[nodiscard]] bool table_exists(const std::string &table_name) const;
[[nodiscard]] utils::result<std::unique_ptr<sql::query_result_impl>, utils::error> fetch(
const sql::query_context &ctx) const override;
[[nodiscard]] utils::result<sql::execute_result, utils::error> execute(const sql::query_context &ctx) const override;
[[nodiscard]] utils::result<sql::statement, utils::error> prepare(const sql::query_context &ctx) override;
[[nodiscard]] std::string str(const sql::query_context &ctx) const override;
[[nodiscard]] const sql::dialect &dialect() const override;
[[nodiscard]] std::shared_ptr<sql::resolver_service> resolver() const override;
[[nodiscard]] const query::basic_schema &schema() const;
private:
friend class query_select;
private:
sql::connection_pool pool_;
mutable sql::statement_cache cache_;
const sql::dialect &dialect_;
const query::basic_schema &schema_;
mutable std::unordered_map<std::string, std::vector<object::attribute> > prototypes_;
std::shared_ptr<sql::resolver_service> resolver_service_;
};
template<typename Type>
utils::result<object::object_ptr<Type>, utils::error> session::insert(object::object_ptr<Type> obj) {
const auto it = schema_.find(typeid(Type));
if (it == schema_.end()) {
return utils::failure(make_error(error_code::UnknownType, "Failed to determine requested type."));
}
auto res = query::query::insert()
.into(it->second.name(), query::generator::columns<Type>(schema_))
.values(query::generator::placeholders<Type>())
.prepare(*this);
if (!res) {
return utils::failure(res.err());
}
if (const auto insert_result = res->bind(*obj).execute(); !insert_result.is_ok()) {
return utils::failure(insert_result.err());
}
return utils::ok(obj);
}
class pk_object_binder final {
public:
explicit pk_object_binder(sql::statement &stmt, const size_t position)
: stmt_(stmt)
, binding_position_(position) {
}
template<class Type>
sql::statement &bind(Type &obj) {
access::process(*this, obj);
return stmt_;
}
template<class Type>
void on_primary_key(const char * /*id*/, Type &x, const utils::primary_key_attribute & /*attr*/ = utils::default_pk_attributes) {
stmt_.bind(binding_position_, x);
}
static void on_revision(const char * /*id*/, uint64_t &/*rev*/) {
}
template<class Type>
static void on_attribute(const char * /*id*/, Type &/*x*/, const utils::field_attributes &/*attr*/ = utils::null_attributes) {}
template<class Pointer>
static void on_belongs_to(const char * /*id*/, Pointer &/*x*/, const utils::foreign_attributes &/*attr*/ = utils::CascadeNoneFetchLazy) {}
template<class Pointer>
static void on_has_one(const char * /*id*/, Pointer &/*x*/, const utils::foreign_attributes &/*attr*/ = utils::CascadeNoneFetchLazy) {}
template<class ContainerType>
static void on_has_many(const char * /*id*/,
ContainerType &/*c*/,
const char * /*join_column*/,
const utils::foreign_attributes &/*attr*/ = utils::CascadeNoneFetchLazy) {}
template<class ContainerType>
static void on_has_many_to_many(const char * /*id*/,
ContainerType &/*c*/,
const char * /*join_column*/,
const char * /*inverse_join_column*/,
const utils::foreign_attributes &/*attr*/) {}
template<class ContainerType>
static void on_has_many_to_many(const char * /*id*/,
ContainerType &/*c*/,
const utils::foreign_attributes &/*attr*/) {}
private:
sql::statement &stmt_;
size_t binding_position_{0};
sql::object_pk_binder pk_binder_{};
};
template<typename Type>
utils::result<object::object_ptr<Type>, utils::error> session::update(const object::object_ptr<Type> &obj) {
const auto it = schema_.find(typeid(Type));
if (it == schema_.end()) {
return utils::failure(make_error(error_code::UnknownType, "Failed to determine requested type."));
}
using namespace matador::utils;
using namespace matador::query;
const auto col = table_column(it->second.node().info().primary_key_attribute()->name());
auto res = matador::query::query::update(it->second.name())
.set(generator::column_value_pairs<Type>())
.where(col == _)
.prepare(*this);
if (!res) {
return utils::failure(res.err());
}
res->bind(*obj);
pk_object_binder binder(res.value(), res->bind_pos());
if (const auto update_result = binder.bind(*obj).execute(); !update_result.is_ok()) {
return utils::failure(update_result.err());
}
return utils::ok(object::object_ptr{obj});
}
template<typename Type>
utils::result<void, utils::error> session::remove(const object::object_ptr<Type> &obj) {
const auto it = schema_.find(typeid(Type));
if (it == schema_.end()) {
return utils::failure(make_error(error_code::UnknownType, "Failed to determine requested type."));
}
using namespace matador::utils;
using namespace matador::query;
const auto col = table_column(it->second.node().info().primary_key_attribute()->name());
auto res = matador::query::query::remove()
.from(it->second.name())
.where(col == _)
.prepare(*this);
if (!res) {
return utils::failure(res.err());
}
pk_object_binder binder(res.value(), res->bind_pos());
if (const auto update_result = binder.bind(*obj).execute(); !update_result.is_ok()) {
return utils::failure(update_result.err());
}
return utils::ok<void>();
}
template<typename Type, typename PrimaryKeyType>
utils::result<object::object_ptr<Type>, utils::error> session::find(const PrimaryKeyType &pk) {
const auto it = schema_.find(typeid(Type));
if (it == schema_.end()) {
return utils::failure(make_error(error_code::UnknownType, "Failed to determine requested type."));
}
const auto &info = it->second.node().info();
if (!info.has_primary_key()) {
return utils::failure(make_error(error_code::NoPrimaryKey, "Type hasn't primary key."));
}
query::select_query_builder eqb(schema_);
const query::table_column c(&it->second.table(), info.primary_key_attribute()->name());
using namespace matador::query;
auto data = eqb.build<Type>(c == utils::_);
if (!data.is_ok()) {
return utils::failure(make_error(error_code::FailedToBuildQuery,
"Failed to build query for type " + info.name() + "."));
}
auto res = data->prepare(*this);
if (!res) {
return utils::failure(res.err());
}
auto stmt_result = res->bind(0, const_cast<PrimaryKeyType &>(pk))
.template fetch_one<Type>();
if (!stmt_result) {
return utils::failure(make_error(error_code::FailedToFindObject,
"Failed to find object of type " + info.name() + " with primary key " +
std::to_string(pk) + "."));
}
return utils::ok(*stmt_result);
}
template<typename Type>
utils::result<sql::query_result<Type>, utils::error> session::find(query::criteria_ptr clause) {
const auto it = schema_.find(typeid(Type));
if (it == schema_.end()) {
return utils::failure(make_error(error_code::UnknownType, "Failed to determine requested type."));
}
query::select_query_builder eqb(schema_);
auto data = eqb.build<Type>(std::move(clause));
if (!data.is_ok()) {
return utils::failure(make_error(error_code::FailedToBuildQuery,
"Failed to build query for type " + it->second.name() + "."));
}
auto result = data->prepare(*this);
if (!result.is_ok()) {
return utils::failure(result.err());
}
return result->template fetch<Type>();
}
template<typename Type>
utils::result<void, utils::error> session::drop_table() const {
const auto it = schema_.find(typeid(Type));
if (it == schema_.end()) {
return utils::failure(make_error(error_code::UnknownType, "Failed to determine requested type."));
}
return drop_table(it->second.name());
}
}
#endif //QUERY_SESSION_HPP
@@ -0,0 +1,29 @@
#ifndef MATADOR_ABSTRACT_PK_GENERATOR_HPP
#define MATADOR_ABSTRACT_PK_GENERATOR_HPP
#include "matador/utils/error.hpp"
#include "matador/utils/result.hpp"
#include "matador/utils/primary_key_generator_type.hpp"
#include <cstdint>
namespace matador::sql {
class executor;
}
namespace matador::query {
class abstract_pk_generator {
public:
virtual ~abstract_pk_generator() = default;
virtual utils::result<int64_t, utils::error> next_id(const sql::executor& exec) = 0;
virtual utils::result<int64_t, utils::error> current_id(const sql::executor& exec) = 0;
[[nodiscard]] utils::generator_type type() const;
protected:
explicit abstract_pk_generator(utils::generator_type type);
private:
utils::generator_type generator_type_{};
};
}
#endif //MATADOR_ABSTRACT_PK_GENERATOR_HPP
@@ -3,17 +3,13 @@
#include "matador/utils/attribute_writer.hpp"
#include <optional>
#include "matador/sql/interface/connection_impl.hpp"
namespace matador::sql {
class dialect;
class connection_impl;
}
#include <optional>
namespace matador::query {
class attribute_string_writer final : public utils::attribute_writer
{
class attribute_string_writer final : public utils::attribute_writer {
public:
attribute_string_writer(const sql::dialect &d, std::optional<std::reference_wrapper<const sql::connection_impl>> conn);
+62 -10
View File
@@ -1,32 +1,73 @@
#ifndef MATADOR_BASIC_SCHEMA_HPP
#define MATADOR_BASIC_SCHEMA_HPP
#include "matador/object/repository.hpp"
#include "matador/query/abstract_pk_generator.hpp"
#include "matador/query/table.hpp"
#include "matador/sql/internal/joined_collection_resolver_producer.hpp"
#include "matador/sql/internal/object_resolver_producer.hpp"
#include "matador/sql/producer_object_resolver_factory.hpp"
#include <memory>
#include <typeindex>
#include <unordered_map>
#include "matador/object/repository.hpp"
#include "matador/query/table.hpp"
#include "matador/sql/internal/collection_resolver_producer.hpp"
#include "matador/sql/internal/object_resolver_producer.hpp"
#include "matador/sql/producer_resolver_factory.hpp"
namespace matador::sql {
class connection;
}
namespace matador::query {
class schema_node final {
public:
schema_node(class table tab, const object::repository_node& node);
schema_node(class table tab, std::unique_ptr<abstract_pk_generator> &&pk_generator, const object::repository_node& node);
[[nodiscard]] const std::string& name() const;
[[nodiscard]] const class table& table() const;
[[nodiscard]] abstract_pk_generator& pk_generator() const;
[[nodiscard]] const object::repository_node& node() const;
private:
class table table_;
std::unique_ptr<abstract_pk_generator> pk_generator_;
const object::repository_node& node_;
};
class primary_key_generator_finder final {
public:
template< typename Type >
utils::generator_type find(const object::object_info<Type>& info) {
generator_type_ = utils::generator_type::Manual;
access::process(*this, info.prototype());
return generator_type_;
}
template<typename BaseType>
static void on_base(const BaseType&) {}
template<class V>
void on_primary_key(const char * /*id*/, V &/*pk*/, const utils::primary_key_attribute &attr) {
generator_type_ = attr.generator();
}
static void on_revision(const char * /*id*/, uint64_t & /*rev*/) {}
template<typename T>
static void on_attribute(const char * /*id*/, T &, const utils::field_attributes &/*attr*/) {}
template<class P>
static void on_belongs_to(const char * /*id*/, P &, const utils::foreign_attributes & ) {}
template<class P>
static void on_has_one(const char * /*id*/, P &, const char * /*join_column*/, const utils::foreign_attributes & ) {}
template<class C>
static void on_has_many(const char * /*id*/, C &, const char * /*join_column*/, const utils::foreign_attributes & ) {}
template<class C>
static void on_has_many_to_many(const char * /*id*/, C &, const char * /*join_column*/, const char * /*inverse_join_column*/, const utils::foreign_attributes & ) {}
template<class C>
static void on_has_many_to_many(const char * /*id*/, C &, const utils::foreign_attributes & ) {}
private:
utils::generator_type generator_type_{};
};
class basic_schema {
public:
using schema_node_map = std::unordered_map<std::type_index, schema_node>;
@@ -36,6 +77,14 @@ public:
basic_schema();
explicit basic_schema(const std::string &name);
[[nodiscard]] std::string name() const;
[[nodiscard]] const object::repository &repo() const;
object::repository &repo();
[[nodiscard]] utils::result<void, utils::error> create(const sql::connection &conn) const;
[[nodiscard]] utils::result<void, utils::error> drop(const sql::connection &conn) const;
iterator begin();
iterator end();
[[nodiscard]] const_iterator begin() const;
@@ -52,7 +101,9 @@ public:
[[nodiscard]] bool contains(const std::type_index &index) const;
void initialize_executor(sql::executor &exec) const;
[[nodiscard]] const std::unordered_map<std::type_index, std::unique_ptr<sql::object_resolver_producer>>& resolver_producers() const;
[[nodiscard]] const std::unordered_map<object::collection_composite_key, std::unique_ptr<sql::joined_collection_resolver_producer>, object::collection_composite_key_hash>& collection_resolver_producers() const;
[[nodiscard]] const std::unordered_map<object::collection_composite_key, std::unique_ptr<sql::joined_object_resolver_producer>, object::collection_composite_key_hash>& joined_object_resolver_producers() const;
protected:
template<typename Type>
@@ -62,7 +113,8 @@ protected:
object::repository repo_;
std::unordered_map<std::type_index, schema_node> schema_nodes_;
std::unordered_map<std::type_index, std::unique_ptr<sql::object_resolver_producer>> resolver_producers_;
std::unordered_map<object::collection_composite_key, std::unique_ptr<sql::collection_resolver_producer>, object::collection_composite_key_hash> collection_resolver_producers_;
std::unordered_map<object::collection_composite_key, std::unique_ptr<sql::joined_collection_resolver_producer>, object::collection_composite_key_hash> collection_resolver_producers_;
std::unordered_map<object::collection_composite_key, std::unique_ptr<sql::joined_object_resolver_producer>, object::collection_composite_key_hash> joined_object_resolver_producers_;
};
}
#endif //MATADOR_BASIC_SCHEMA_HPP
+21 -16
View File
@@ -8,17 +8,18 @@
#include "matador/utils/basic_types.hpp"
#include "matador/utils/constraints.hpp"
#include "matador/utils/data_type_traits.hpp"
#include "matador/utils/types.hpp"
#include <string>
namespace matador::object {
class data_type {
public:
explicit data_type(const utils::basic_type type, const size_t size = 0)
: type_(type), size_(size) {}
: type_(type), size_(size) {
}
[[nodiscard]] const utils::basic_type& type() const { return type_; }
[[nodiscard]] const utils::basic_type &type() const { return type_; }
[[nodiscard]] size_t size() const { return size_; }
private:
@@ -30,14 +31,16 @@ template<typename Type>
class typed_data_type final : public data_type {
public:
typed_data_type()
: data_type(utils::data_type_traits<Type>::type()) {}
: data_type(utils::data_type_traits<Type>::type()) {
}
};
template<typename Type>
class sized_typed_data_type final : public data_type {
public:
explicit sized_typed_data_type(size_t size)
: data_type(utils::data_type_traits<Type>::type(size), size) {}
: data_type(utils::data_type_traits<Type>::type(size), size) {
}
};
using TinyInt = typed_data_type<int8_t>;
@@ -55,11 +58,14 @@ using Double = typed_data_type<double>;
using Text = typed_data_type<std::string>;
using Boolean = typed_data_type<bool>;
using Varchar = sized_typed_data_type<std::string>;
using Blob = sized_typed_data_type<std::vector<std::byte>>;
using Blob = sized_typed_data_type<std::vector<std::byte> >;
using Time = typed_data_type<utils::time_type_t>;
using Date = typed_data_type<utils::date_type_t>;
using Timestamp = typed_data_type<utils::timestamp_type_t>;
}
namespace matador::query {
namespace matador::query {
class column_builder {
public:
explicit column_builder(std::string column_name, utils::basic_type type, size_t size = 0);
@@ -67,10 +73,10 @@ public:
// ReSharper disable once CppNonExplicitConversionOperator
operator table_column() const; // NOLINT(*-explicit-constructor)
column_builder& not_null();
column_builder& primary_key();
column_builder& unique();
column_builder& identity();
column_builder &not_null();
column_builder &primary_key();
column_builder &unique();
column_builder &identity();
private:
std::string column_name_;
@@ -92,10 +98,10 @@ private:
class constraint_builder {
public:
constraint_builder& constraint(std::string name);
constraint_builder& primary_key(std::string name);
constraint_builder& foreign_key(std::string name);
constraint_builder& references(std::string table, std::string column);
constraint_builder &constraint(std::string name);
constraint_builder &primary_key(std::string name);
constraint_builder &foreign_key(std::string name);
constraint_builder &references(std::string table, std::string column);
// ReSharper disable once CppNonExplicitConversionOperator
operator table_constraint() const; // NOLINT(*-explicit-constructor)
@@ -111,6 +117,5 @@ private:
constraint_builder constraint(std::string name);
// table_builder table(std::string name);
column_builder column(std::string name, utils::basic_type type, size_t size = 0);
}
#endif //MATADOR_BUILDER_HPP
@@ -8,12 +8,12 @@
namespace matador::query {
enum class binary_operator {
EQUALS,
NOT_EQUALS,
GREATER_THAN,
GREATER_THAN_OR_EQUAL,
LESS_THAN,
LESS_THAN_OR_EQUAL,
Equals,
NotEquals,
GreaterThan,
GreaterThanOrEqual,
LessThan,
LessThanOrEqual,
};
class binary_criteria final : public abstract_column_criteria {
@@ -20,33 +20,33 @@ class table_column;
template<class Type>
std::enable_if_t<!std::is_base_of_v<fetchable_query, std::decay_t<Type>>, criteria_ptr>
operator==(const table_column &col, Type val) {
return std::make_unique<binary_criteria>(col, binary_operator::EQUALS, utils::value(val));
return std::make_unique<binary_criteria>(col, binary_operator::Equals, utils::value(val));
}
template<class Type>
std::enable_if_t<!std::is_base_of_v<fetchable_query, std::decay_t<Type>>, criteria_ptr>
operator!=(const table_column &col, Type val) {
return std::make_unique<binary_criteria>(col, binary_operator::NOT_EQUALS, utils::value(val));
return std::make_unique<binary_criteria>(col, binary_operator::NotEquals, utils::value(val));
}
template<class Type>
criteria_ptr operator>(const table_column &col, Type val) {
return std::make_unique<binary_criteria>(col, binary_operator::GREATER_THAN, utils::value(val));
return std::make_unique<binary_criteria>(col, binary_operator::GreaterThan, utils::value(val));
}
template<class Type>
criteria_ptr operator>=(const table_column &col, Type val) {
return std::make_unique<binary_criteria>(col, binary_operator::GREATER_THAN_OR_EQUAL, utils::value(val));
return std::make_unique<binary_criteria>(col, binary_operator::GreaterThanOrEqual, utils::value(val));
}
template<class Type>
criteria_ptr operator<(const table_column &col, Type val) {
return std::make_unique<binary_criteria>(col, binary_operator::LESS_THAN, utils::value(val));
return std::make_unique<binary_criteria>(col, binary_operator::LessThan, utils::value(val));
}
template<class Type>
criteria_ptr operator<=(const table_column &col, Type val) {
return std::make_unique<binary_criteria>(col, binary_operator::LESS_THAN_OR_EQUAL, utils::value(val));
return std::make_unique<binary_criteria>(col, binary_operator::LessThanOrEqual, utils::value(val));
}
criteria_ptr operator==(const table_column &col_left, const table_column &col_right);
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#ifndef MATADOR_DATABASE_HPP
#define MATADOR_DATABASE_HPP
#include "matador/query/schema.hpp"
#include "matador/utils/result.hpp"
#include "matador/utils/error.hpp"
namespace matador::query {
class database final {
public:
utils::result<void, utils::error> add(const std::string &name, const schema &schema);
utils::result<void, utils::error> remove(const std::string &name);
[[nodiscard]] utils::result<schema_ref, utils::error> get(const std::string &name);
private:
std::unordered_map<std::string, schema> schema_map_;
};
}
#endif //MATADOR_DATABASE_HPP
@@ -0,0 +1,272 @@
#ifndef MATADOR_DELETE_QUERY_BUILDER_HPP
#define MATADOR_DELETE_QUERY_BUILDER_HPP
#include "matador/object/collection.hpp"
#include "matador/object/object_cache.hpp"
#include "matador/object/object_ptr.hpp"
#include "matador/query/basic_schema.hpp"
#include "matador/query/error_code.hpp"
#include "matador/query/delete_step.hpp"
#include "matador/query/query_contexts.hpp"
#include "matador/query/query_builder_exception.hpp"
#include "matador/query/query_builder_utils.hpp"
#include "matador/sql/statement.hpp"
#include "matador/utils/error.hpp"
#include "matador/utils/identifier.hpp"
#include "matador/utils/primary_key_accessor.hpp"
#include "matador/utils/result.hpp"
namespace matador::query {
template<typename ObjectType>
class delete_step_processor {
public:
explicit delete_step_processor(query_builder_context &ctx)
: ctx_(ctx) {}
utils::result<void, utils::error> build(object::object_ptr<ObjectType> ptr, const bool as_relation_step = false) {
if (!ptr) {
return utils::failure(utils::error{error_code::InvalidObject, "Object is null"});
}
ptr_ = ptr;
const auto key = make_entity_visit_key<ObjectType>(*ptr_);
if (ctx_.visited_.find(key) != ctx_.visited_.end()) {
return utils::ok<void>();
}
ctx_.visited_.insert(key);
const auto it = ctx_.schema_.find(typeid(ObjectType));
if (it == ctx_.schema_.end()) {
return utils::failure(utils::error{error_code::UnknownType, "Unknown type"});
}
if (const auto &info = it->second.node().info(); !info.has_primary_key()) {
return utils::failure(utils::error{error_code::MissingPrimaryKey, "Type " + info.name() + " has no primary key"});
}
try {
access::process(*this, *ptr_);
} catch (const query_builder_exception &ex) {
return utils::failure(ex.error());
}
const auto cit = ctx_.contexts_by_type_.find(it->second.node().info().type_index());
if (cit == ctx_.contexts_by_type_.end()) {
return utils::failure(utils::error{error_code::UnknownType, "Unknown type"});
}
if (as_relation_step) {
ctx_.relation_steps_.push_back(std::make_unique<delete_step_object<ObjectType>>(cit->second.delete_one, ptr_));
} else {
ctx_.steps_.push_back(std::make_unique<delete_step_object<ObjectType>>(cit->second.delete_one, ptr_));
}
ptr_.reset();
return utils::ok<void>();
}
template<class PrimaryKeyType>
static void on_primary_key(const char * /*id*/, PrimaryKeyType &, const utils::primary_key_attribute & /*attr*/) {}
static void on_revision(const char * /*id*/, uint64_t & /*rev*/) {}
template<typename Type>
static void on_attribute(const char * /*id*/, Type &, const utils::field_attributes & /*attr*/) {}
template<class Pointer>
void on_belongs_to(const char * /*id*/, Pointer &obj, const utils::foreign_attributes &attr) {
on_foreign_object(obj, attr);
}
template<class Pointer>
void on_has_one(const char * /*id*/, Pointer &obj, const char * /*join_column*/, const utils::foreign_attributes &attr) {
on_foreign_object(obj, attr);
}
template<class CollectionType>
void on_has_many(const char * /*id*/,
object::collection<object::object_ptr<CollectionType>> &objects,
const char *join_column,
const utils::foreign_attributes &attr) {
if (join_column == nullptr) {
return;
}
if (!utils::is_cascade_type_set(attr.cascade(), utils::cascade_type::Remove)) {
return;
}
delete_step_processor<CollectionType> processor{ctx_};
for (auto &obj : objects) {
if (!obj) {
continue;
}
auto result = processor.build(obj, true);
if (!result) {
throw query_builder_exception(result.release_error());
}
}
}
template<class CollectionType>
static void on_has_many(const char * /*id*/,
object::collection<CollectionType> & /*objects*/,
const char * /*join_column*/,
const utils::foreign_attributes & /*attr*/) {
// Value-Collections bzw. Relationstabellen werden hier nicht direkt gelöscht.
// Dafür wird das Delete-Statement der jeweiligen Entity verwendet.
}
template<class ForeignType>
void on_has_many_to_many(const char *id,
object::collection<object::object_ptr<ForeignType>> &objects,
const char *join_column,
const char *inverse_join_column,
const utils::foreign_attributes &attr) {
if (id == nullptr || join_column == nullptr || inverse_join_column == nullptr) {
return;
}
using relation_value_type = object::many_to_many_relation<ObjectType, ForeignType>;
const std::type_index foreign_type{typeid(ForeignType)};
const std::type_index local_type{typeid(ObjectType)};
on_many_to_many_objects<relation_value_type>(
id,
objects,
attr,
[foreign_type, local_type](const char* relation_name) -> processing_many_to_many_key {
return {std::string{relation_name}, local_type, foreign_type};
});
}
template<class ForeignType>
void on_has_many_to_many(const char *id,
object::collection<object::object_ptr<ForeignType>> &objects,
const utils::foreign_attributes &attr) {
if (id == nullptr) {
return;
}
object::join_columns_collector collector;
if (auto join_columns = collector.collect<ForeignType>(); join_columns.join_column.empty() || join_columns.inverse_join_column.empty()) {
return;
}
using relation_value_type = object::many_to_many_relation<ForeignType, ObjectType>;
const std::type_index foreign_type{typeid(ForeignType)};
const std::type_index local_type{typeid(ObjectType)};
on_many_to_many_objects<relation_value_type>(
id,
objects,
attr,
[foreign_type, local_type](const char* relation_name) -> processing_many_to_many_key {
return {std::string{relation_name}, foreign_type, local_type};
});
}
private:
template<class PointerType>
void on_foreign_object(object::object_ptr<PointerType> &obj, const utils::foreign_attributes &attr) {
if (!utils::is_cascade_type_set(attr.cascade(), utils::cascade_type::Remove) || !obj) {
return;
}
delete_step_processor<PointerType> processor{ctx_};
auto result = processor.build(obj);
if (!result) {
throw query_builder_exception(result.release_error());
}
}
template<class LocalType, class ForeignType, class RelationKeyFactory>
void on_many_to_many_objects(const char *id,
object::collection<object::object_ptr<ForeignType>> &objects,
const utils::foreign_attributes &attr,
RelationKeyFactory make_relation_key) {
if (!utils::is_cascade_type_set(attr.cascade(), utils::cascade_type::Remove)) {
return;
}
const auto key = make_relation_key(id);
if (ctx_.processing_many_to_many_relations_.find(key) != ctx_.processing_many_to_many_relations_.end()) {
return;
}
const auto it = ctx_.schema_.find(std::string{id});
if (it == ctx_.schema_.end()) {
throw query_builder_exception(error_code::UnknownType, "Unknown type for relation " + std::string{id});
}
if (std::type_index(typeid(LocalType)) != it->second.node().info().type_index()) {
throw query_builder_exception(error_code::InvalidRelationType, "Invalid relation type for " + std::string{id});
}
if (const auto cit = ctx_.contexts_by_type_.find(it->second.node().info().type_index()); cit == ctx_.contexts_by_type_.end()) {
throw query_builder_exception(error_code::UnknownType, "No query contexts for type " + it->second.node().name());
}
std::ignore = ctx_.processing_many_to_many_relations_.insert(key);
std::vector<std::unique_ptr<execute_step>> delete_relation_steps;
delete_step_processor<ForeignType> processor{ctx_};
for (auto &obj : objects) {
if (!obj) {
continue;
}
if (obj.is_persistent()) {
auto result = processor.build(obj, true);
if (!result) {
throw query_builder_exception(result.release_error());
}
}
}
}
private:
query_builder_context &ctx_;
object::object_ptr<ObjectType> ptr_;
};
template<class ObjectType>
class delete_query_builder {
public:
explicit delete_query_builder(const basic_schema &schema,
const std::unordered_map<std::type_index, query_contexts> &contexts_by_type)
: schema_(schema)
, contexts_by_type_(contexts_by_type) {}
utils::result<std::vector<std::unique_ptr<execute_step>>, utils::error> build(const object::object_ptr<ObjectType> &ptr) {
if (const auto it = schema_.find(typeid(ObjectType)); it == schema_.end()) {
return utils::failure(utils::error{error_code::UnknownType, "Unknown type for delete query"});
}
query_builder_context ctx{schema_, contexts_by_type_};
delete_step_processor<ObjectType> processor{ctx};
const auto result = processor.build(ptr);
if (!result) {
return utils::failure(result.err());
}
// relation inserts must run after all entity inserts were collected
for (auto &s : ctx.steps_) {
ctx.relation_steps_.push_back(std::move(s));
}
ctx.steps_.clear();
return utils::ok(std::move(ctx.relation_steps_));
}
private:
const basic_schema &schema_;
const std::unordered_map<std::type_index, query_contexts> &contexts_by_type_;
};
} // namespace matador::query
#endif //MATADOR_DELETE_QUERY_BUILDER_HPP
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#ifndef MATADOR_DELETE_STEP_HPP
#define MATADOR_DELETE_STEP_HPP
#include "matador/query/error_code.hpp"
#include "matador/query/execute_step.hpp"
#include "matador/sql/internal/identifier_statement_binder.hpp"
#include "matador/sql/statement.hpp"
#include "matador/object/object_ptr.hpp"
namespace matador::query {
template<typename ObjectType>
class delete_step_object final : public execute_step {
public:
delete_step_object(sql::query_context ctx, const object::object_ptr<ObjectType> &ptr)
: execute_step(std::move(ctx))
, ptr_(ptr) {}
utils::result<void, utils::error> prepare(sql::executor &/*conn*/) override {
id_ = ptr_.primary_key();
return utils::ok<void>();
}
utils::result<void, utils::error> execute(sql::statement &stmt) override {
if (!ptr_) {
return utils::failure(utils::error{error_code::InvalidObject, "Object is null"});
}
sql::identifier_statement_binder binder(stmt, 0);
binder.bind(id_);
if (const auto result = stmt.execute(); !result.is_ok()) {
return utils::failure(result.err());
}
return utils::ok<void>();
}
utils::result<void, utils::error> finalize(object::object_cache &cache, const resolver_service_ptr& /*resolver_service*/) override {
if (!ptr_) {
return utils::failure(utils::error{error_code::InvalidObject, "Object is null"});
}
cache.erase<ObjectType>(id_);
ptr_.change_state(object::object_state::Transient);
return utils::ok<void>();
}
private:
object::object_ptr<ObjectType> ptr_;
};
template <typename ObjectType>
class delete_step_relation : public execute_step {
public:
delete_step_relation(sql::query_context ctx, const object::object_ptr<ObjectType>& ptr)
: execute_step(std::move(ctx))
, ptr_(ptr) {}
utils::result<void, utils::error> prepare(sql::executor &) override {
return utils::ok<void>();
}
utils::result<void, utils::error> execute(sql::statement &stmt) override {
stmt.bind(*ptr_);
if (const auto exec_result = stmt.execute(); !exec_result.is_ok()) {
return utils::failure(exec_result.err());
}
return utils::ok<void>();
}
utils::result<void, utils::error> finalize(object::object_cache& /*cache*/, const resolver_service_ptr& /*resolver_service*/) override {
return utils::ok<void>();
}
private:
object::object_ptr<ObjectType> ptr_;
};
}
#endif //MATADOR_DELETE_STEP_HPP
@@ -0,0 +1,175 @@
#ifndef MATADOR_DEPENDENCY_COLLECTOR_HPP
#define MATADOR_DEPENDENCY_COLLECTOR_HPP
#include "matador/utils/field_attributes.hpp"
#include "matador/utils/foreign_attributes.hpp"
#include "matador/utils/primary_key_attribute.hpp"
#include <vector>
#include <string>
#include <typeindex>
#include <cstdint>
#include <unordered_map>
namespace matador::query {
enum class pk_strategy_kind {
manual,
sequence,
table,
identity
};
enum class pk_state {
unknown, // z.B. identity vor insert, oder manual aber nicht gesetzt
known // id ist gesetzt/verfügbar
};
struct fk_ref {
std::string fk_column; // z.B. "author_id" (optional, für Debug/SQL)
void* parent_object_ptr; // Adresse des referenzierten Objekts (type-erased)
std::type_index parent_type;
};
struct pk_accessor {
// obj zeigt auf konkrete Entity-Instanz
bool (*is_known)(void* obj) = nullptr;
void (*set_u64)(void* obj, std::uint64_t id) = nullptr;
std::uint64_t (*get_u64)(void* obj) = nullptr;
};
struct entity_meta {
pk_strategy_kind strategy{};
pk_accessor pk;
// optional: table name, pk column name, etc.
};
struct meta_registry {
std::unordered_map<std::type_index, entity_meta> by_type;
const entity_meta& get(const std::type_index t) const {
return by_type.at(t);
}
template<class T>
void register_type(entity_meta m) {
by_type.emplace(std::type_index(typeid(T)), m);
}
};
struct dependency_collector {
std::vector<fk_ref> refs;
template<typename BaseType>
static void on_base(const BaseType&) {}
template<class V>
static void on_primary_key(const char*, V&, const utils::primary_key_attribute& /*attr*/) {}
static void on_revision(const char*, std::uint64_t&) {}
template<class V>
static void on_attribute(const char*, V&, const utils::field_attributes &/*attr*/) {}
template<class Pointer>
void on_belongs_to(const char* id, Pointer& p, utils::foreign_attributes &/*attr*/) {
// Erwartung: Pointer verhält sich wie matador::object::object_ptr<T>
// also: p.get() liefert raw ptr, und Pointer::value_type / element_type ist T.
auto* raw = p.get();
if (!raw) {
return;
}
using parent_type = typename Pointer::value_type; // falls object_ptr<T> so definiert ist
// Falls dein object_ptr anders heißt (z.B. element_type), hier anpassen.
refs.push_back(fk_ref{
id ? std::string{id} : std::string{},
static_cast<void*>(raw),
typeid(parent_type)
});
}
template<class Pointer>
static void on_has_one(const char*, Pointer&, const char * /*join_column*/, const utils::foreign_attributes&) {}
template<class Container>
static void on_has_many(const char*, Container&, const char*, const utils::foreign_attributes&) {}
template<class Container>
static void on_has_many_to_many(const char*, Container&, const char*, const char*, const utils::foreign_attributes&) {}
template<class Container>
static void on_has_many_to_many(const char*, Container&, const utils::foreign_attributes&) {}
};
struct flush_node {
void* object_ptr = nullptr; // raw pointer (nicht owning)
std::type_index type = typeid(void);
pk_strategy_kind pk_strategy = pk_strategy_kind::manual;
pk_accessor pk{};
pk_state state = pk_state::unknown;
// eingehende Dependencies: child hängt von parents ab
std::vector<std::size_t> depends_on; // Indizes in nodes[]
bool inserted = false;
};
struct flush_plan {
std::vector<flush_node> nodes;
// map raw ptr -> node index
std::unordered_map<void*, std::size_t> index_by_ptr;
};
flush_plan build_nodes(const std::vector<std::pair<void*, std::type_index>>& new_objects, const meta_registry& reg) {
flush_plan plan;
plan.nodes.reserve(new_objects.size());
for (const auto& [ptr, ti] : new_objects) {
const auto& meta = reg.get(ti);
flush_node n;
n.object_ptr = ptr;
n.type = ti;
n.pk_strategy = meta.strategy;
n.pk = meta.pk;
n.state = n.pk.is_known(n.object_ptr) ? pk_state::known : pk_state::unknown;
plan.index_by_ptr.emplace(ptr, plan.nodes.size());
plan.nodes.push_back(n);
}
return plan;
}
void add_edges_from_process(flush_plan& plan, const matador::query::process_registry& preg) {
using namespace matador::query;
for (std::size_t i = 0; i < plan.nodes.size(); ++i) { auto& node = plan.nodes[i];
dependency_collector dc;
preg.get(node.type).collect_deps(node.object_ptr, dc);
// 1) belongs_to: node (child) depends on parent
for (const auto& ref : dc.refs) {
auto it = plan.index_by_ptr.find(ref.parent_object_ptr);
if (it == plan.index_by_ptr.end()) {
// Parent ist nicht Teil des Plans (externe persistent entity?)
// Policy: wenn parent PK known -> ok; sonst Fehler oder cascade-add
continue;
}
node.depends_on.push_back(it->second);
}
// 2) has_many: inverse; daraus macht man Kanten child -> this(parent)
for (const auto& child : dc.has_many_children) {
auto it_child = plan.index_by_ptr.find(child.child_object_ptr);
if (it_child == plan.index_by_ptr.end()) continue;
auto& child_node = plan.nodes[it_child->second];
child_node.depends_on.push_back(i);
}
// 3) many-to-many: als separate work items (nicht in depends_on quetschen)
// dc.many_to_many_links -> später join-table tasks planen
} }
}
#endif //MATADOR_DEPENDENCY_COLLECTOR_HPP
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#ifndef MATADOR_ERROR_CODE_HPP
#define MATADOR_ERROR_CODE_HPP
#include <cstdint>
#include <system_error>
namespace matador::query {
enum class error_code {
Ok,
Failure,
InvalidQuery,
InvalidSchema,
InvalidTable,
InvalidColumn,
InvalidConstraint,
InvalidDataType,
InvalidObject,
InvalidValue,
InvalidRelationType,
MissingPrimaryKey,
UnknownType,
FailedToAcquireConnection,
FailedToFindPrimaryKey,
FailedToBuildQuery,
FailedToFindObject,
FailedToInsertObject,
FailedToAcquirePool,
UnexpectedError
};
class query_category_impl final : public std::error_category
{
public:
[[nodiscard]] const char* name() const noexcept override;
[[nodiscard]] std::string message(int ev) const override;
};
const std::error_category& query_category();
std::error_code make_error_code(error_code e);
std::error_condition make_error_condition(error_code e);
}
template <>
struct std::is_error_code_enum<matador::query::error_code> : true_type {};
#endif //MATADOR_ERROR_CODE_HPP
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#ifndef MATADOR_EXECUTE_STEP_HPP
#define MATADOR_EXECUTE_STEP_HPP
#include "matador/utils/identifier.hpp"
#include "matador/utils/primary_key_accessor.hpp"
#include "matador/utils/error.hpp"
#include "matador/utils/result.hpp"
#include "matador/object/object_cache.hpp"
#include "matador/sql/query_context.hpp"
#include "matador/sql/executor.hpp"
#include "matador/query/abstract_pk_generator.hpp"
namespace matador::query {
using resolver_service_ptr = std::shared_ptr<sql::resolver_service>;
class execute_step {
public:
explicit execute_step(sql::query_context ctx)
: ctx_(std::move(ctx)) {}
virtual ~execute_step() = default;
virtual utils::result<void, utils::error> prepare(sql::executor &conn) = 0;
virtual utils::result<void, utils::error> execute(sql::statement &stmt) = 0;
virtual utils::result<void, utils::error> finalize(object::object_cache& cache, const resolver_service_ptr& resolver_service) = 0;
[[nodiscard]] const sql::query_context& ctx() const { return ctx_; }
protected:
utils::identifier id_;
utils::primary_key_accessor pk_accessor_;
sql::query_context ctx_;
};
}
#endif //MATADOR_EXECUTE_STEP_HPP
@@ -0,0 +1,18 @@
#ifndef MATADOR_ABSTRACT_COLUMN_EXPRESSION_HPP
#define MATADOR_ABSTRACT_COLUMN_EXPRESSION_HPP
#include <memory>
namespace matador::query {
class expression_visitor;
class table_column;
class abstract_column_expression {
public:
virtual ~abstract_column_expression() = default;
virtual void accept(expression_visitor& visitor) const = 0;
};
using column_expression_ptr = std::unique_ptr<abstract_column_expression>;
}
#endif //MATADOR_ABSTRACT_COLUMN_EXPRESSION_HPP
@@ -0,0 +1,31 @@
#ifndef MATADOR_BINARY_COLUMN_EXPRESSION_HPP
#define MATADOR_BINARY_COLUMN_EXPRESSION_HPP
#include "matador/query/expression/abstract_column_expression.hpp"
namespace matador::query {
enum class binary_expression_operator {
Plus,
Minus,
Multiply,
Divide,
Modulo
};
class binary_column_expression : public abstract_column_expression {
public:
binary_column_expression() = delete;
binary_column_expression(column_expression_ptr left_column, binary_expression_operator operand, column_expression_ptr right_column);
void accept(expression_visitor& visitor) const override;
[[nodiscard]] const column_expression_ptr& left_column() const;
[[nodiscard]] binary_expression_operator operand() const;
[[nodiscard]] const column_expression_ptr& right_column() const;
private:
column_expression_ptr left_column_;
binary_expression_operator operand_;
column_expression_ptr right_column_;
};
}
#endif //MATADOR_BINARY_COLUMN_EXPRESSION_HPP
@@ -0,0 +1,55 @@
#ifndef MATADOR_COLUMN_EXPRESSION_HPP
#define MATADOR_COLUMN_EXPRESSION_HPP
#include "matador/query/expression/table_column_expression.hpp"
#include "matador/query/expression/value_expression.hpp"
#include "matador/query/expression/placeholder_expression.hpp"
#include "matador/utils/placeholder.hpp"
#include "matador/utils/types.hpp"
namespace matador::query {
class column_expression {
public:
column_expression() = default;
explicit column_expression(column_expression_ptr expr) noexcept;
template<typename Type, typename = std::enable_if_t<std::is_convertible_v<Type, utils::database_type>>>
column_expression(Type&& value)
: column_expression(std::make_unique<value_expression>(std::forward<Type>(value))){
}
column_expression(utils::placeholder p);
column_expression(const column_expression&) = delete;
column_expression& operator=(const column_expression&) = delete;
column_expression(column_expression&&) noexcept = default;
column_expression& operator=(column_expression&&) noexcept = default;
[[nodiscard]] bool empty() const noexcept;
[[nodiscard]] const abstract_column_expression* get() const noexcept;
[[nodiscard]] const column_expression_ptr& ptr() const noexcept;
column_expression_ptr release() noexcept;
// Move out for APIs that still take column_expression_ptr
operator column_expression_ptr() && noexcept;
// The feature you want: turn an expression into a SELECT-able column with alias
[[nodiscard]] table_column as(const std::string& alias) &&;
private:
column_expression_ptr expression_{};
};
// Helper constructors (optional but convenient)
inline column_expression make_column_expression(const table_column& col) {
return column_expression{std::make_unique<table_column_expression>(col)};
}
inline column_expression make_column_expression(utils::database_type v) {
return column_expression{std::make_unique<value_expression>(std::move(v))};
}
inline column_expression make_column_expression(utils::placeholder) {
return column_expression{std::make_unique<placeholder_expression>()};
}
}
#endif //MATADOR_COLUMN_EXPRESSION_HPP
@@ -0,0 +1,118 @@
#ifndef MATADOR_EXPRESSION_OPERATORS_HPP
#define MATADOR_EXPRESSION_OPERATORS_HPP
#include "matador/query/expression/binary_column_expression.hpp"
#include "matador/query/expression/table_column_expression.hpp"
#include "matador/query/expression/value_expression.hpp"
#include "matador/query/expression/column_expression.hpp"
#include "matador/utils/placeholder.hpp"
namespace matador::query {
template<typename Type>
column_expression operator+(const table_column& col, Type&& val) {
return column_expression{std::make_unique<binary_column_expression>(
std::make_unique<table_column_expression>(col),
binary_expression_operator::Plus,
std::make_unique<value_expression>(std::forward<Type>(val))
)};
}
template<typename Type>
column_expression operator+(Type&& val, const table_column& col) {
return column_expression{std::make_unique<binary_column_expression>(
std::make_unique<value_expression>(std::forward<Type>(val)),
binary_expression_operator::Plus,
std::make_unique<table_column_expression>(col)
)};
}
column_expression operator+(const table_column& col, utils::placeholder /*val*/);
column_expression operator+(utils::placeholder /*val*/, const table_column& col);
template<typename Type>
column_expression operator-(const table_column& col, Type&& val) {
return column_expression{std::make_unique<binary_column_expression>(
std::make_unique<table_column_expression>(col),
binary_expression_operator::Minus,
std::make_unique<value_expression>(std::forward<Type>(val))
)};
}
template<typename Type>
column_expression operator-(Type&& val, const table_column& col) {
return column_expression{std::make_unique<binary_column_expression>(
std::make_unique<value_expression>(std::forward<Type>(val)),
binary_expression_operator::Minus,
std::make_unique<table_column_expression>(col)
)};
}
column_expression operator-(const table_column& col, utils::placeholder /*val*/);
column_expression operator-(utils::placeholder /*val*/, const table_column& col);
template<typename Type>
column_expression operator*(const table_column& col, Type&& val) {
return column_expression{std::make_unique<binary_column_expression>(
std::make_unique<table_column_expression>(col),
binary_expression_operator::Multiply,
std::make_unique<value_expression>(std::forward<Type>(val))
)};
}
template<typename Type>
column_expression operator*(Type&& val, const table_column& col) {
return std::make_unique<binary_column_expression>(
std::make_unique<value_expression>(std::forward<Type>(val)),
binary_expression_operator::Multiply,
std::make_unique<table_column_expression>(col)
);
}
column_expression operator*(const table_column& col, utils::placeholder /*val*/);
column_expression operator*(utils::placeholder /*val*/, const table_column& col);
column_expression operator*(column_expression&& left, column_expression&& right);
template<typename Type>
column_expression operator/(const table_column& col, Type&& val) {
return column_expression{std::make_unique<binary_column_expression>(
std::make_unique<table_column_expression>(col),
binary_expression_operator::Divide,
std::make_unique<value_expression>(std::forward<Type>(val))
)};
}
template<typename Type>
column_expression operator/(Type&& val, const table_column& col) {
return column_expression{std::make_unique<binary_column_expression>(
std::make_unique<value_expression>(std::forward<Type>(val)),
binary_expression_operator::Divide,
std::make_unique<table_column_expression>(col)
)};
}
column_expression operator/(const table_column& col, utils::placeholder /*val*/);
column_expression operator/(utils::placeholder /*val*/, const table_column& col);
template<typename Type>
column_expression operator%(const table_column& col, Type&& val) {
return column_expression{std::make_unique<binary_column_expression>(
std::make_unique<table_column_expression>(col),
binary_expression_operator::Modulo,
std::make_unique<value_expression>(std::forward<Type>(val))
)};
}
template<typename Type>
column_expression operator%(Type&& val, const table_column& col) {
return column_expression{std::make_unique<binary_column_expression>(
std::make_unique<value_expression>(std::forward<Type>(val)),
binary_expression_operator::Modulo,
std::make_unique<table_column_expression>(col)
)};
}
column_expression operator%(const table_column& col, utils::placeholder /*val*/);
column_expression operator%(utils::placeholder /*val*/, const table_column& col);
}
#endif //MATADOR_EXPRESSION_OPERATORS_HPP
@@ -0,0 +1,20 @@
#ifndef MATADOR_EXPRESSION_VISITOR_HPP
#define MATADOR_EXPRESSION_VISITOR_HPP
namespace matador::query {
class binary_column_expression;
class table_column_expression;
class value_expression;
class placeholder_expression;
class expression_visitor {
public:
virtual ~expression_visitor() = default;
virtual void visit(const binary_column_expression& node) = 0;
virtual void visit(const table_column_expression& node) = 0;
virtual void visit(const value_expression& node) = 0;
virtual void visit(const placeholder_expression& node) = 0;
};
}
#endif //MATADOR_EXPRESSION_VISITOR_HPP
@@ -0,0 +1,14 @@
#ifndef MATADOR_PLACEHOLDER_EXPRESSION_HPP
#define MATADOR_PLACEHOLDER_EXPRESSION_HPP
#include "matador/query/expression/abstract_column_expression.hpp"
namespace matador::query {
class placeholder_expression : public abstract_column_expression {
public:
placeholder_expression() = default;
void accept(expression_visitor& visitor) const override;
};
}
#endif //MATADOR_PLACEHOLDER_EXPRESSION_HPP
@@ -0,0 +1,21 @@
#ifndef MATADOR_TABLE_COLUMN_EXPRESSION_HPP
#define MATADOR_TABLE_COLUMN_EXPRESSION_HPP
#include "matador/query/expression/abstract_column_expression.hpp"
#include "matador/query/table_column.hpp"
namespace matador::query {
class table_column_expression : public abstract_column_expression {
public:
table_column_expression() = delete;
explicit table_column_expression(table_column col);
void accept(expression_visitor& visitor) const override;
[[nodiscard]] const table_column& col() const;
private:
table_column column_;
};
}
#endif //MATADOR_TABLE_COLUMN_EXPRESSION_HPP
@@ -0,0 +1,22 @@
#ifndef MATADOR_VALUE_EXPRESSION_HPP
#define MATADOR_VALUE_EXPRESSION_HPP
#include "matador/query/expression/abstract_column_expression.hpp"
#include "matador/utils/types.hpp"
namespace matador::query {
class value_expression : public abstract_column_expression {
public:
value_expression() = delete;
explicit value_expression(utils::database_type value);
void accept(expression_visitor& visitor) const override;
[[nodiscard]] const utils::database_type& value() const;
private:
utils::database_type value_;
};
}
#endif //MATADOR_VALUE_EXPRESSION_HPP
@@ -0,0 +1,30 @@
#ifndef MATADOR_EXPRESSION_EVALUATOR_HPP
#define MATADOR_EXPRESSION_EVALUATOR_HPP
#include "matador/query/expression/expression_visitor.hpp"
#include <string>
namespace matador::sql {
class dialect;
struct query_context;
}
namespace matador::query {
class expression_evaluator final : public expression_visitor {
public:
expression_evaluator(const sql::dialect &d, sql::query_context &query);
void visit(const binary_column_expression& node) override;
void visit(const table_column_expression& node) override;
void visit(const value_expression& node) override;
void visit(const placeholder_expression& node) override;
[[nodiscard]] const std::string& result() const;
private:
const sql::dialect &dialect_;
sql::query_context &query_;
std::string expression_;
};
}
#endif //MATADOR_EXPRESSION_EVALUATOR_HPP
+8 -8
View File
@@ -12,30 +12,30 @@ class foreign_attributes;
namespace matador::query::detail {
class fk_value_extractor
{
class fk_value_extractor {
public:
fk_value_extractor() = default;
template<class Type>
utils::database_type extract(Type &x)
{
utils::database_type extract(Type &x) {
access::process(*this, x);
return value_;
}
template<typename BaseType>
static void on_base(const BaseType&) {}
template<typename ValueType>
void on_primary_key(const char *, ValueType &pk, const utils::primary_key_attribute& /*attr*/ = utils::default_pk_attributes) {
void on_primary_key(const char *, ValueType &pk, const utils::primary_key_attribute& /*attr*/) {
value_ = pk;
}
static void on_revision(const char * /*id*/, uint64_t &/*rev*/) {}
template < class Type >
static void on_attribute(const char * /*id*/, Type &/*x*/, const utils::field_attributes &/*attr*/ = utils::null_attributes) {}
static void on_attribute(const char * /*id*/, char * /*x*/, const utils::field_attributes &/*attr*/ = utils::null_attributes) {}
static void on_attribute(const char * /*id*/, Type &/*x*/, const utils::field_attributes &/*attr*/) {}
static void on_attribute(const char * /*id*/, char * /*x*/, const utils::field_attributes &/*attr*/) {}
template<class Pointer>
static void on_belongs_to(const char * /*id*/, Pointer &/*x*/, const utils::foreign_attributes &/*attr*/) {}
template<class Pointer>
static void on_has_one(const char * /*id*/, Pointer &/*x*/, const utils::foreign_attributes &/*attr*/) {}
static void on_has_one(const char * /*id*/, Pointer &/*x*/, const char * /*join_column*/, const utils::foreign_attributes &/*attr*/) {}
template<class ContainerType>
static void on_has_many_to_many(const char *, ContainerType &, const char * /*join_column*/, const char * /*inverse_join_column*/, const utils::foreign_attributes &/*attr*/) {}
template<class ContainerType>
+21 -13
View File
@@ -63,14 +63,16 @@ public:
return result_;
}
template<typename BaseType>
static void on_base(const BaseType&) {}
template < class V >
void on_primary_key(const char *id, V &, const utils::primary_key_attribute& /*attr*/ = utils::default_pk_attributes) {
void on_primary_key(const char *id, V &, const utils::primary_key_attribute& /*attr*/) {
push(id);
}
void on_revision(const char *id, uint64_t &/*rev*/);
template<typename Type>
void on_attribute(const char *id, Type &, const utils::field_attributes &/*attr*/ = utils::null_attributes) {
void on_attribute(const char *id, Type &, const utils::field_attributes &/*attr*/) {
push(id);
}
@@ -79,7 +81,7 @@ public:
on_foreign_key(id, x, attr);
}
template<class Pointer>
void on_has_one(const char *id, Pointer &x, const utils::foreign_attributes &attr) {
void on_has_one(const char *id, Pointer &x, const char * /*join_column*/, const utils::foreign_attributes &attr) {
on_foreign_key(id, x, attr);
}
@@ -105,7 +107,7 @@ public:
}
template<class CollectionType>
void on_has_many(const char * /*id*/, CollectionType &, const char *join_column, const utils::foreign_attributes &attr, std::enable_if_t<!object::is_object_ptr<typename CollectionType::value_type>::value> * = nullptr) {
void on_has_many(const char * /*id*/, CollectionType &, const char * /*join_column*/, const utils::foreign_attributes &/*attr*/, std::enable_if_t<!object::is_object_ptr<typename CollectionType::value_type>::value> * = nullptr) {
}
template<class ContainerType>
@@ -169,14 +171,16 @@ public:
return result_;
}
template<typename BaseType>
static void on_base(const BaseType&) {}
template < class V >
void on_primary_key(const char * /*id*/, V &/*x*/, const utils::primary_key_attribute& /*attr*/ = utils::default_pk_attributes) {
void on_primary_key(const char * /*id*/, V &/*x*/, const utils::primary_key_attribute& /*attr*/) {
result_.emplace_back(utils::_);
}
void on_revision(const char *id, uint64_t &/*rev*/);
template<typename Type>
void on_attribute(const char * /*id*/, Type &/*x*/, const utils::field_attributes &/*attr*/ = utils::null_attributes) {
void on_attribute(const char * /*id*/, Type &/*x*/, const utils::field_attributes &/*attr*/) {
result_.emplace_back(utils::_);
}
@@ -185,7 +189,7 @@ public:
result_.emplace_back(utils::_);
}
template<class Type, template < class ... > class Pointer>
void on_has_one(const char * /*id*/, Pointer<Type> &/*x*/, const utils::foreign_attributes &/*attr*/) {
void on_has_one(const char * /*id*/, Pointer<Type> &/*x*/, const char * /*join_column*/, const utils::foreign_attributes &/*attr*/) {
result_.emplace_back(utils::_);
}
template<class ContainerType>
@@ -224,17 +228,19 @@ public:
result_.clear();
access::process(*this, obj);
return result_;
return std::move(result_);
}
template<typename BaseType>
static void on_base(const BaseType&) {}
template < class V >
void on_primary_key(const char *id, V &x, const utils::primary_key_attribute& /*attr*/ = utils::default_pk_attributes) {
void on_primary_key(const char *id, V &x, const utils::primary_key_attribute& /*attr*/) {
push_back(id, x);
}
void on_revision(const char *id, uint64_t &/*rev*/);
template<typename Type>
void on_attribute(const char *id, Type &x, const utils::field_attributes &/*attr*/ = utils::null_attributes) {
void on_attribute(const char *id, Type &x, const utils::field_attributes &/*attr*/) {
push_back(id, x);
}
@@ -243,7 +249,7 @@ public:
push_back(id, fk_value_extractor_.extract(*x));
}
template<class Type, template < class ... > class Pointer>
void on_has_one(const char *id, Pointer<Type> &x, const utils::foreign_attributes &/*attr*/) {
void on_has_one(const char *id, Pointer<Type> &x, const char * /*join_column*/, const utils::foreign_attributes &/*attr*/) {
push_back(id, fk_value_extractor_.extract(*x));
}
template<class ContainerType>
@@ -256,9 +262,9 @@ public:
template<typename Type>
void push_back(const char* id, const Type& value) {
if (is_column_value_generator_option_set(options_, column_value_generator_options::ValuesAsPlaceHolder)) {
result_.emplace_back(id, utils::_);
result_.emplace_back(id, std::make_unique<placeholder_expression>());
} else {
result_.emplace_back(id, value);
result_.emplace_back(id, std::make_unique<value_expression>(value));
}
}
@@ -280,6 +286,8 @@ std::vector<utils::placeholder> placeholders(const Type &obj) {
return generator.generate(obj);
}
std::vector<utils::placeholder> placeholders(size_t num);
template<typename Type>
std::vector<internal::column_value_pair> column_value_pairs(const Type &obj, const column_value_generator_options options = column_value_generator_options::None) {
column_value_generator generator(options);
@@ -0,0 +1,14 @@
#ifndef MATADOR_IDENTITY_PK_GENERATOR_HPP
#define MATADOR_IDENTITY_PK_GENERATOR_HPP
#include "matador/query/abstract_pk_generator.hpp"
namespace matador::query {
class identity_pk_generator : public abstract_pk_generator {
public:
identity_pk_generator();
[[nodiscard]] utils::result<int64_t, utils::error> next_id(const sql::executor& exec) override;
[[nodiscard]] utils::result<int64_t, utils::error> current_id(const sql::executor& exec) override;
};
}
#endif //MATADOR_IDENTITY_PK_GENERATOR_HPP
+341 -21
View File
@@ -1,46 +1,366 @@
#ifndef MATADOR_INSERT_QUERY_BUILDER_HPP
#define MATADOR_INSERT_QUERY_BUILDER_HPP
#include "matador/object/collection.hpp"
#include "matador/object/object_ptr.hpp"
#include "matador/query/basic_schema.hpp"
#include "matador/query/intermediates/executable_query.hpp"
#include "matador/query/insert_step.hpp"
#include "matador/query/query.hpp"
#include "matador/query/query_contexts.hpp"
#include "matador/query/query_builder_exception.hpp"
#include "matador/query/query_builder_utils.hpp"
#include "matador/sql/statement.hpp"
#include "matador/utils/primary_key_accessor.hpp"
namespace matador::sql {
class statement_cache;
}
namespace matador::query {
template < class ObjectType >
class has_many_linker {
public:
has_many_linker(const object::object_ptr<ObjectType> &ptr, std::string join_column)
: ptr_(ptr), join_column_(std::move(join_column)) {}
template<typename BaseType>
static void on_base(const BaseType&) {}
template < class PrimaryKeyType >
static void on_primary_key(const char * /*id*/, PrimaryKeyType &, const utils::primary_key_attribute& /*attr*/) {}
static void on_revision(const char * /*id*/, uint64_t &/*rev*/) {}
template<typename Type>
static void on_attribute(const char * /*id*/, Type &, const utils::field_attributes &/*attr*/) {}
template<class Pointer>
static void on_belongs_to(const char * /*id*/, Pointer &/*obj*/, const utils::foreign_attributes &/*attr*/) {}
void on_belongs_to(const char *id, object::object_ptr<ObjectType> &obj, const utils::foreign_attributes &/*attr*/) {
if (id != join_column_) {
return;
}
obj = ptr_;
}
template<class Pointer>
static void on_has_one(const char * /*id*/, Pointer &/*obj*/, const char * /*join_column*/, const utils::foreign_attributes &/*attr*/) {}
template<class CollectionType>
static void on_has_many(const char * /*id*/, CollectionType &/*con*/, const char *, const utils::foreign_attributes &/*attr*/, std::enable_if_t<!object::is_object_ptr<typename CollectionType::value_type>::value> * = nullptr) {}
template<class Collection>
static void on_has_many_to_many(const char * /*id*/, Collection &/*container*/, const char * /*join_column*/, const char * /*inverse_join_column*/, const utils::foreign_attributes & ) {}
template<class Collection>
static void on_has_many_to_many(const char * /*id*/, Collection &/*container*/, const utils::foreign_attributes & ) {}
private:
object::object_ptr<ObjectType> ptr_;
std::string join_column_;
};
template < typename ObjectType >
class insert_step_processor {
public:
explicit insert_step_processor(query_builder_context &ctx)
: ctx_{ctx}
{}
utils::result<void, utils::error> build(object::object_ptr<ObjectType> ptr, const bool as_relation_step = false) {
if (!ptr) {
return utils::failure(utils::error{error_code::InvalidObject, "Object is null"});
}
ptr_ = ptr;
const auto key = make_entity_visit_key<ObjectType>(*ptr_);
if (ctx_.visited_.find(key) != ctx_.visited_.end()) {
return utils::ok<void>();
}
ctx_.visited_.insert(key);
const auto it = ctx_.schema_.find(typeid(ObjectType));
if (it == ctx_.schema_.end()) {
return utils::failure(utils::error{error_code::UnknownType, "Unknown type"});
}
// 1) Traverse relations first => dependencies will be inserted before this object
try {
access::process(*this, *ptr_);
} catch (const query_builder_exception &ex) {
return utils::failure(ex.error());
}
// 2) Build INSERT for this object
const auto &info = it->second.node().info();
if (!info.has_primary_key() || it->second.pk_generator().type() == utils::generator_type::None) {
return utils::failure(utils::error{error_code::MissingPrimaryKey, "Type " + info.name() + " has no primary key"});
}
const auto cit = ctx_.contexts_by_type_.find(it->second.node().info().type_index());
if (cit == ctx_.contexts_by_type_.end()) {
return utils::failure(utils::error{error_code::UnknownType, "Unknown type"});
}
auto step = create_insert_step(cit->second.insert, it->second);
if (as_relation_step) {
ctx_.relation_steps_.push_back(std::move(step));
} else {
ctx_.steps_.push_back(std::move(step));
}
ptr_.reset();
return utils::ok<void>();
}
template < class PrimaryKeyType >
static void on_primary_key(const char * /*id*/, PrimaryKeyType &, const utils::primary_key_attribute& /*attr*/) {}
static void on_revision(const char * /*id*/, uint64_t &/*rev*/) {}
template<typename Type>
static void on_attribute(const char * /*id*/, Type &, const utils::field_attributes &/*attr*/) {}
template<class Pointer>
void on_belongs_to(const char * /*id*/, Pointer &obj, const utils::foreign_attributes &attr) {
on_foreign_object(obj, attr);
}
template<class Pointer>
void on_has_one(const char * /*id*/, Pointer &obj, const char * /*join_column*/, const utils::foreign_attributes &attr) {
on_foreign_object(obj, attr);
}
template<class CollectionType>
void on_has_many(const char * /*id*/,
object::collection<object::object_ptr<CollectionType>> &objects,
const char *join_column,
const utils::foreign_attributes &attr) {
if (join_column == nullptr) {
return;
}
if (!utils::is_cascade_type_set(attr.cascade(), utils::cascade_type::Insert)) {
return;
}
has_many_linker<ObjectType> linker(ptr_, join_column);
insert_step_processor<CollectionType> processor{ctx_};
for (auto &obj : objects) {
if (!obj) {
continue;
}
if (obj.is_transient()) {
auto result = processor.build(obj, true);
if (!result) {
throw query_builder_exception(result.release_error());
}
}
access::process(linker, *obj);
}
}
template<class CollectionType>
void on_has_many(const char *id,
object::collection<CollectionType> &objects,
const char *join_column,
const utils::foreign_attributes &attr) {
if (id == nullptr || join_column == nullptr) {
return;
}
if (!utils::is_cascade_type_set(attr.cascade(), utils::cascade_type::Insert)) {
return;
}
const auto it = ctx_.schema_.find(std::string{id});
if (it == ctx_.schema_.end()) {
throw query_builder_exception(error_code::UnknownType, "Unknown type " + std::string{id});
}
using relation_value_type = object::many_to_relation<ObjectType, CollectionType>;
if (std::type_index(typeid(relation_value_type)) != it->second.node().info().type_index()) {
throw query_builder_exception(error_code::InvalidRelationType, "Invalid relation type");
}
const auto cit = ctx_.contexts_by_type_.find(it->second.node().info().type_index());
if (cit == ctx_.contexts_by_type_.end()) {
throw query_builder_exception(error_code::UnknownType, "Unknown type" + std::string{id});
}
for (auto &obj : objects) {
auto rel = object::make_object<relation_value_type>(join_column, "value", ptr_, obj);
ctx_.relation_steps_.push_back(std::make_unique<insert_step_relation<relation_value_type>>(cit->second.insert, rel));
}
}
template<class ForeignType>
void on_has_many_to_many(const char *id,
object::collection<object::object_ptr<ForeignType>> &objects,
const char *join_column,
const char *inverse_join_column,
const utils::foreign_attributes &attr) {
if (id == nullptr || join_column == nullptr || inverse_join_column == nullptr) {
return;
}
using relation_value_type = object::many_to_many_relation<ObjectType, ForeignType>;
const std::type_index foreign_type{typeid(ForeignType)};
const std::type_index local_type{typeid(ObjectType)};
insert_many_to_many_relations<relation_value_type>(
id,
objects,
attr,
[foreign_type, local_type](const char* relation_name) -> processing_many_to_many_key {
return {std::string{relation_name}, local_type, foreign_type};
},
[this, join_column, inverse_join_column](const auto &obj) {
return object::make_object<relation_value_type>(join_column, inverse_join_column, ptr_, obj);
});
}
template<class ForeignType>
void on_has_many_to_many(const char *id, object::collection<object::object_ptr<ForeignType>> &objects, const utils::foreign_attributes &attr) {
if (id == nullptr) {
return;
}
object::join_columns_collector collector;
auto join_columns = collector.collect<ForeignType>();
if (join_columns.join_column.empty() || join_columns.inverse_join_column.empty()) {
return;
}
using relation_value_type = object::many_to_many_relation<ForeignType, ObjectType>;
const std::type_index foreign_type{typeid(ForeignType)};
const std::type_index local_type{typeid(ObjectType)};
insert_many_to_many_relations<relation_value_type>(
id,
objects,
attr,
[foreign_type, local_type](const char* relation_name) -> processing_many_to_many_key {
return {std::string{relation_name}, foreign_type, local_type};
},
[this, join_columns = std::move(join_columns)](const auto &obj) {
return object::make_object<relation_value_type>(join_columns.inverse_join_column, join_columns.join_column, obj, ptr_);
});
}
private:
template<class PointerType>
void on_foreign_object(object::object_ptr<PointerType> &obj, const utils::foreign_attributes &attr) {
if (!utils::is_cascade_type_set(attr.cascade(), utils::cascade_type::Insert) || !obj || !obj.is_transient()) {
return;
}
insert_step_processor<PointerType> processor{ctx_};
auto result = processor.build(obj);
if (!result) {
throw query_builder_exception(result.release_error());
}
}
template<class LocalType, class ForeignType, class RelationKeyFactory, class RelationFactory>
void insert_many_to_many_relations(const char *id,
object::collection<object::object_ptr<ForeignType>> &objects,
const utils::foreign_attributes &attr,
RelationKeyFactory make_relation_key,
RelationFactory make_relation) {
if (!utils::is_cascade_type_set(attr.cascade(), utils::cascade_type::Insert)) {
return;
}
const auto key = make_relation_key(id);
if (ctx_.processing_many_to_many_relations_.find(key) != ctx_.processing_many_to_many_relations_.end()) {
return;
}
const auto it = ctx_.schema_.find(std::string{id});
if (it == ctx_.schema_.end()) {
throw query_builder_exception(error_code::UnknownType, "Unknown type for relation " + std::string{id});
}
if (std::type_index(typeid(LocalType)) != it->second.node().info().type_index()) {
throw query_builder_exception(error_code::InvalidRelationType, "Invalid relation type for " + std::string{id});
}
const auto cit = ctx_.contexts_by_type_.find(it->second.node().info().type_index());
if (cit == ctx_.contexts_by_type_.end()) {
throw query_builder_exception(error_code::UnknownType, "No query contexts for type " + it->second.node().name());
}
std::ignore = ctx_.processing_many_to_many_relations_.insert(key);
std::vector<std::unique_ptr<execute_step>> insert_relation_steps;
insert_step_processor<ForeignType> processor(ctx_);
for (auto &obj : objects) {
if (!obj) {
continue;
}
if (obj.is_transient()) {
auto result = processor.build(obj, true);
if (!result) {
throw query_builder_exception(result.release_error());
};
}
auto rel = make_relation(obj);
// access::process(*this, *rel);
insert_relation_steps.push_back(std::make_unique<insert_step_relation<LocalType>>(cit->second.insert, rel));
}
ctx_.relation_steps_.insert(
ctx_.relation_steps_.end(),
std::make_move_iterator(insert_relation_steps.begin()),
std::make_move_iterator(insert_relation_steps.end()));
ctx_.processing_many_to_many_relations_.erase(key);
}
std::unique_ptr<execute_step> create_insert_step(const sql::query_context& query_ctx, const schema_node& node) {
if (node.pk_generator().type() == utils::generator_type::Manual) {
return std::make_unique<insert_step_pk_manual<ObjectType>>(query_ctx, ptr_);
}
if (node.pk_generator().type() == utils::generator_type::Identity) {
return std::make_unique<insert_step_pk_identity<ObjectType>>(query_ctx, ptr_, node.node().info().primary_key_attribute()->name());
}
return std::make_unique<insert_step_pk_generated<ObjectType>>(query_ctx, ptr_, node.pk_generator());
}
private:
query_builder_context& ctx_;
object::object_ptr<ObjectType> ptr_;
};
template<class ObjectType>
class insert_query_builder {
public:
explicit insert_query_builder(const basic_schema &schema);
explicit insert_query_builder(const basic_schema &schema, const std::unordered_map<std::type_index, query_contexts> &contexts_by_type)
: schema_(schema)
, contexts_by_type_(contexts_by_type)
{}
template<class EntityType>
utils::result<std::vector<executable_query>, query_build_error> build(const object::object_ptr<EntityType> &ptr) {
const auto it = schema_.find(typeid(EntityType));
if (it == schema_.end()) {
return utils::failure(query_build_error::UnknownType);
utils::result<std::vector<std::unique_ptr<execute_step>>, utils::error> build(const object::object_ptr<ObjectType> &ptr) {
if (const auto it = schema_.find(typeid(ObjectType)); it == schema_.end()) {
return utils::failure(utils::error{error_code::UnknownType, "Unknown type for insert query"});
}
executable_query q = query::query::insert().into(it->second.table()).values(*ptr);
return utils::ok(std::vector{q});
query_builder_context ctx{schema_, contexts_by_type_};
insert_step_processor<ObjectType> processor{ctx};
const auto result = processor.build(ptr);
if (!result) {
return utils::failure(result.err());
}
template < class V >
static void on_primary_key(const char *id, V &, const utils::primary_key_attribute& /*attr*/ = utils::default_pk_attributes) {}
static void on_revision(const char *id, uint64_t &/*rev*/);
template<typename Type>
static void on_attribute(const char *id, Type &, const utils::field_attributes &/*attr*/ = utils::null_attributes) {}
template<class Pointer>
void on_belongs_to(const char *id, Pointer &obj, const utils::foreign_attributes &attr) {
on_foreign_object(id, obj, attr);
// relation inserts must run after all entity inserts were collected
for (auto &s : ctx.relation_steps_) {
ctx.steps_.push_back(std::move(s));
}
ctx.relation_steps_.clear();
template<class Pointer>
void on_has_one(const char *id, Pointer &obj, const utils::foreign_attributes &attr) {
on_foreign_object(id, obj, attr);
return utils::ok(std::move(ctx.steps_));
}
private:
const basic_schema &schema_;
const std::unordered_map<std::type_index, query_contexts> &contexts_by_type_;
};
}
#endif //MATADOR_INSERT_QUERY_BUILDER_HPP
+180
View File
@@ -0,0 +1,180 @@
#ifndef MATADOR_INSERT_STEP_HPP
#define MATADOR_INSERT_STEP_HPP
#include "matador/query/abstract_pk_generator.hpp"
#include "matador/query/execute_step.hpp"
#include "matador/query/error_code.hpp"
#include "matador/object/object_cache.hpp"
#include "matador/object/object_ptr.hpp"
#include "matador/sql/execute_result.hpp"
#include "matador/sql/resolver_service.hpp"
#include "matador/sql/statement.hpp"
namespace matador::query {
template<typename ObjectType>
utils::result<void, utils::error> finalize_inserted_object(object::object_ptr<ObjectType> &ptr,
const utils::identifier& pk,
object::object_cache &cache,
const std::shared_ptr<sql::resolver_service> &resolver_service) {
if (!ptr) {
return utils::failure(utils::error(error_code::InvalidObject, "Inserted object is null."));
}
if (!resolver_service) {
return utils::failure(utils::error(error_code::UnknownType, "Missing resolver service."));
}
auto resolver = resolver_service->template object_resolver<ObjectType>();
if (!resolver) {
return utils::failure(utils::error(error_code::UnknownType, "Missing object resolver for inserted type."));
}
if (!cache.import<ObjectType>(pk, ptr.proxy(), resolver)) {
return utils::failure(utils::error(error_code::FailedToFindObject, "Object cache already contains another live proxy for inserted object."));
}
ptr.change_state(object::object_state::Persistent);
return utils::ok<void>();
}
template <typename ObjectType>
class insert_step_pk_generated : public execute_step {
public:
insert_step_pk_generated(sql::query_context ctx, const object::object_ptr<ObjectType>& ptr, abstract_pk_generator& pk_generator)
: execute_step(std::move(ctx))
, ptr_(ptr)
, pk_generator_(pk_generator){}
utils::result<void, utils::error> prepare(sql::executor& conn) override {
auto result = pk_generator_.next_id(conn);
if (!result.is_ok()) {
return utils::failure(result.err());
}
id_ = *result;
pk_accessor_.set(*ptr_, id_);
return utils::ok<void>();
}
utils::result<void, utils::error> execute(sql::statement& stmt) override {
stmt.bind(*ptr_);
if (const auto exec_result = stmt.execute(); !exec_result.is_ok()) {
return utils::failure(exec_result.err());
}
ptr_.change_state(object::object_state::Persistent);
return utils::ok<void>();
}
utils::result<void, utils::error> finalize(object::object_cache& cache, const resolver_service_ptr& resolver_service) override {
return finalize_inserted_object(ptr_, id_, cache, resolver_service);
}
private:
object::object_ptr<ObjectType> ptr_;
abstract_pk_generator& pk_generator_;
};
template <typename ObjectType>
class insert_step_pk_identity : public execute_step {
public:
insert_step_pk_identity(sql::query_context ctx, const object::object_ptr<ObjectType>& ptr, std::string pk_column_name)
: execute_step(std::move(ctx))
, ptr_(ptr)
, pk_column_name_(std::move(pk_column_name)){}
utils::result<void, utils::error> prepare(sql::executor&) override {
return utils::ok<void>();
}
utils::result<void, utils::error> execute(sql::statement& stmt) override {
stmt.bind(*ptr_);
auto result = stmt.fetch_one();
if (!result.is_ok()) {
return utils::failure(result.err());
}
if (!result.value().has_value()) {
return utils::failure(utils::error(error_code::FailedToFindObject, "Failed to insert object and retrieve identity."));
}
auto rec = result->value();
const auto& f = rec.at(pk_column_name_);
if (auto res = id_.assign(f.value()); !res.is_ok()) {
return utils::failure(res.err());
}
pk_accessor_.set(*ptr_, id_);
ptr_.change_state(object::object_state::Persistent);
return utils::ok<void>();
}
utils::result<void, utils::error> finalize(object::object_cache& cache, const resolver_service_ptr& resolver_service) override {
return finalize_inserted_object(ptr_, id_, cache, resolver_service);
}
private:
object::object_ptr<ObjectType> ptr_;
std::string pk_column_name_;
};
template <typename ObjectType>
class insert_step_pk_manual : public execute_step {
public:
insert_step_pk_manual(sql::query_context ctx, const object::object_ptr<ObjectType>& ptr)
: execute_step(std::move(ctx))
, ptr_(ptr) {}
utils::result<void, utils::error> prepare(sql::executor &) override {
return utils::ok<void>();
}
utils::result<void, utils::error> execute(sql::statement &stmt) override {
stmt.bind(*ptr_);
if (const auto exec_result = stmt.execute(); !exec_result.is_ok()) {
return utils::failure(exec_result.err());
}
id_ = object::primary_key_resolver::resolve_object(*ptr_).pk;
ptr_.change_state(object::object_state::Persistent);
return utils::ok<void>();
}
utils::result<void, utils::error> finalize(object::object_cache& cache, const resolver_service_ptr& resolver_service) override {
return finalize_inserted_object(ptr_, id_, cache, resolver_service);
}
private:
object::object_ptr<ObjectType> ptr_;
};
template <typename ObjectType>
class insert_step_relation : public execute_step {
public:
insert_step_relation(sql::query_context ctx, const object::object_ptr<ObjectType>& ptr)
: execute_step(std::move(ctx))
, ptr_(ptr) {}
utils::result<void, utils::error> prepare(sql::executor &) override {
return utils::ok<void>();
}
utils::result<void, utils::error> execute(sql::statement &stmt) override {
stmt.bind(*ptr_);
if (const auto exec_result = stmt.execute(); !exec_result.is_ok()) {
return utils::failure(exec_result.err());
}
return utils::ok<void>();
}
utils::result<void, utils::error> finalize(object::object_cache& /*cache*/, const resolver_service_ptr& /*resolver_service*/) override {
return utils::ok<void>();
}
private:
object::object_ptr<ObjectType> ptr_;
};
}
#endif //MATADOR_INSERT_STEP_HPP
@@ -7,6 +7,7 @@
#include "../../utils/result.hpp"
namespace matador::sql {
class dialect;
class executor;
class statement;
struct execute_result;
@@ -21,8 +22,8 @@ public:
[[nodiscard]] utils::result<sql::execute_result, utils::error> execute(const sql::executor &exec) const;
[[nodiscard]] utils::result<sql::statement, utils::error> prepare(sql::executor &exec) const;
[[nodiscard]] sql::query_context compile(const sql::executor &exec) const;
[[nodiscard]] std::string str(const sql::executor &exec) const;
[[nodiscard]] sql::query_context compile(const sql::dialect &d) const;
[[nodiscard]] std::string str(const sql::dialect &d) const;
};
}
@@ -61,8 +61,7 @@ public:
[[nodiscard]] utils::result<std::optional<sql::record>, utils::error> fetch_one(const sql::executor &exec) const;
template<typename Type>
utils::result<std::optional<Type>, utils::error> fetch_value(const sql::executor &exec)
{
utils::result<std::optional<Type>, utils::error> fetch_value(const sql::executor &exec) {
const auto result = fetch_one(exec);
if (!result.is_ok()) {
return utils::failure(result.err());
@@ -76,7 +75,6 @@ public:
[[nodiscard]] utils::result<sql::statement, utils::error> prepare(sql::executor &exec) const;
[[nodiscard]] std::string str(const sql::executor &exec) const;
[[nodiscard]] std::string str(const sql::dialect &d) const;
[[nodiscard]] sql::query_context compile(const sql::dialect &d) const;
@@ -11,6 +11,5 @@ public:
[[nodiscard]] query_alter_table_intermediate table(const table &tab) const;
};
}
#endif //MATADOR_QUERY_ALTER_INTERMEDIATE_HPP
@@ -30,7 +30,7 @@ public:
using query_intermediate::query_intermediate;
query_create_table_columns_intermediate columns(std::initializer_list<object::attribute> attributes);
query_create_table_columns_intermediate columns(const std::list<object::attribute> &attributes);
query_create_table_columns_intermediate columns(const std::vector<object::attribute> &attributes);
query_create_table_columns_intermediate columns(std::initializer_list<table_column> columns);
query_create_table_columns_intermediate columns(const std::list<table_column> &columns);
query_create_table_columns_intermediate columns(const std::vector<table_column> &columns);
@@ -11,7 +11,8 @@ public:
query_drop_intermediate();
executable_query table(const table &tab);
// executable_query schema(const std::string &schema_name);
executable_query sequence(const std::string &sequence_name);
executable_query schema(const std::string &schema_name);
};
}
@@ -2,6 +2,7 @@
#define QUERY_EXECUTE_WHERE_INTERMEDIATE_HPP
#include "matador/query/intermediates/executable_query.hpp"
#include "matador/query/intermediates/fetchable_query.hpp"
namespace matador::query {
@@ -14,9 +15,18 @@ class query_execute_where_intermediate : public executable_query
public:
using executable_query::executable_query;
template<typename... TableColumns>
fetchable_query returning(TableColumns... table_columns) {
const std::vector<table_column> tcv { std::forward<TableColumns>(table_columns)... };
return returning(tcv);
}
query_execute_limit_intermediate limit(size_t limit);
query_execute_order_by_intermediate order_by(const table_column &col);
query_execute_order_by_intermediate order_by(std::initializer_list<table_column> columns);
private:
fetchable_query returning(const std::vector<table_column>& tables);
};
}
@@ -1,8 +1,6 @@
#ifndef QUERY_INTERMEDIATE_HPP
#define QUERY_INTERMEDIATE_HPP
// #include "matador/query/query_data.hpp"
#include <memory>
namespace matador::query {
@@ -2,22 +2,15 @@
#define QUERY_INTO_INTERMEDIATE_HPP
#include "matador/query/intermediates/executable_query.hpp"
#include "matador/query/intermediates/fetchable_query.hpp"
#include "matador/query/intermediates/query_values_intermediate.hpp"
#include "matador/query/value_extractor.hpp"
#include "matador/object/object_ptr.hpp"
#include "matador/utils/placeholder.hpp"
namespace matador::query {
class table_column;
class query_values_intermediate : public executable_query {
public:
using executable_query::executable_query;
fetchable_query returning(const table_column &col);
};
class query_into_intermediate : public query_intermediate {
public:
using query_intermediate::query_intermediate;
@@ -30,6 +23,10 @@ public:
query_values_intermediate values(const Type &obj) {
return values(value_extractor::extract(obj));
}
template<class Type>
query_values_intermediate values(const object::object_ptr<Type> &obj) {
return values(*obj);
}
};
}
@@ -17,6 +17,9 @@ class query_select_intermediate : public query_intermediate
public:
explicit query_select_intermediate(const std::vector<table_column>& columns);
fetchable_query nextval(const std::string& sequence_name);
fetchable_query currval(const std::string& sequence_name);
template<typename... Tables>
query_from_intermediate from(const Tables&... tables) {
std::vector<table> v { tables... };
@@ -9,14 +9,11 @@
namespace matador::query {
class query_set_intermediate : public executable_query
{
class query_set_intermediate : public executable_query {
public:
using executable_query::executable_query;
query_execute_where_intermediate where(std::unique_ptr<abstract_criteria> cond) {
return where_clause(std::move(cond));
}
query_execute_where_intermediate where(std::unique_ptr<abstract_criteria> cond);
private:
query_execute_where_intermediate where_clause(std::unique_ptr<abstract_criteria> &&cond);
@@ -2,25 +2,38 @@
#define QUERY_UPDATE_INTERMEDIATE_HPP
#include "matador/query/intermediates/query_intermediate.hpp"
#include "matador/query/intermediates/query_set_intermediate.hpp"
#include "matador/query/key_value_generator.hpp"
#include "matador/query/expression/column_expression.hpp"
#include "matador/query/generator.hpp"
#include "matador/query/internal/column_value_pair.hpp"
namespace matador::query {
class query_update_intermediate : public query_intermediate {
namespace internal {
class query_set_part;
}
class query_update_intermediate : public executable_query {
public:
explicit query_update_intermediate(const table& tab);
query_set_intermediate set(std::initializer_list<internal::column_value_pair> columns);
query_set_intermediate set(std::vector<internal::column_value_pair> &&columns);
query_update_intermediate& set(const table_column& col, column_expression&& expression);
template<class Type>
query_set_intermediate set(const Type &obj) {
return set(key_value_generator::generate(obj));
return set(generator::column_value_pairs(obj));
}
template<class Type>
query_set_intermediate set() {
return set(generator::column_value_pairs<Type>());
}
query_execute_where_intermediate where(std::unique_ptr<abstract_criteria> cond);
private:
query_execute_where_intermediate where_clause(std::unique_ptr<abstract_criteria> &&cond);
query_set_intermediate set(std::vector<internal::column_value_pair> &&key_value_pairs);
private:
internal::query_set_part* query_set_part_{nullptr};
};
}
@@ -0,0 +1,24 @@
#ifndef MATADOR_QUERY_VALUES_INTERMEDIATE_H
#define MATADOR_QUERY_VALUES_INTERMEDIATE_H
#include "matador/query/intermediates/executable_query.hpp"
#include "matador/query/intermediates/fetchable_query.hpp"
namespace matador::query {
class table_column;
class query_values_intermediate : public executable_query {
public:
using executable_query::executable_query;
template<typename... TableColumns>
fetchable_query returning(const TableColumns&... table_columns) {
const std::vector<table_column> tcv { table_columns... };
return returning(tcv);
}
private:
fetchable_query returning(const std::vector<table_column>& tables);
};
}
#endif //MATADOR_QUERY_VALUES_INTERMEDIATE_H
@@ -2,6 +2,7 @@
#define QUERY_KEY_VALUE_PAIR_HPP
#include "matador/query/table_column.hpp"
#include "../expression/column_expression.hpp"
#include "matador/utils/placeholder.hpp"
#include "matador/utils/types.hpp"
@@ -10,20 +11,21 @@ namespace matador::query::internal {
class column_value_pair {
public:
column_value_pair(table_column col, utils::database_type value);
column_value_pair(std::string name, utils::database_type value);
column_value_pair(const char *name, utils::database_type value);
column_value_pair(const char *name, utils::placeholder p);
column_value_pair() = default;
column_value_pair(column_value_pair&& x) = default;
column_value_pair& operator=(column_value_pair&& x) = default;
column_value_pair(table_column col, column_expression_ptr expression);
friend bool operator==(const column_value_pair &lhs, const column_value_pair &rhs);
friend bool operator!=(const column_value_pair &lhs, const column_value_pair &rhs);
[[nodiscard]] const table_column& col() const;
[[nodiscard]] const std::variant<utils::placeholder, utils::database_type>& value() const;
[[nodiscard]] const abstract_column_expression& expression() const;
private:
table_column column_;
std::variant<utils::placeholder, utils::database_type> value_;
column_expression_ptr expression_;
};
}
+56 -5
View File
@@ -15,8 +15,6 @@
#include <list>
#include <memory>
#include "matador/object/restriction.hpp"
namespace matador::query::internal {
class query_alter_part final : public query_part {
@@ -126,6 +124,33 @@ private:
std::vector<table_column> columns_;
};
class query_select_nextval_part final : public query_part {
public:
explicit query_select_nextval_part(std::string sequence_name);
[[nodiscard]] const std::string& sequence_name() const;
private:
void accept(query_part_visitor &visitor) override;
private:
std::string sequence_name_;
};
class query_select_currval_part final : public query_part {
public:
explicit query_select_currval_part(std::string sequence_name);
[[nodiscard]] const std::string& sequence_name() const;
private:
void accept(query_part_visitor &visitor) override;
private:
std::string sequence_name_;
};
/**
* Represents the SQL FROM part
*/
@@ -360,15 +385,15 @@ private:
class query_set_part final : public query_part
{
public:
explicit query_set_part(const std::vector<internal::column_value_pair>& key_value_pairs);
explicit query_set_part(std::vector<column_value_pair>&& key_value_pairs);
[[nodiscard]] const std::vector<internal::column_value_pair>& column_values() const;
[[nodiscard]] const std::vector<column_value_pair>& column_values() const;
private:
void accept(query_part_visitor &visitor) override;
private:
std::vector<internal::column_value_pair> key_value_pairs_;
std::vector<column_value_pair> key_value_pairs_;
};
class query_delete_part final : public query_part
@@ -443,6 +468,19 @@ private:
std::list<table_constraint> constraints_;
};
class query_create_sequence_part final : public query_part {
public:
explicit query_create_sequence_part(std::string sequence_name);
[[nodiscard]] const std::string& sequence_name() const;
private:
void accept(query_part_visitor &visitor) override;
private:
std::string sequence_name_;
};
class query_create_schema_part final : public query_part {
public:
explicit query_create_schema_part(std::string schema);
@@ -479,6 +517,19 @@ private:
class table table_;
};
class query_drop_sequence_part final : public query_part {
public:
explicit query_drop_sequence_part(std::string sequence_name);
[[nodiscard]] const std::string& sequence_name() const;
private:
void accept(query_part_visitor &visitor) override;
private:
std::string sequence_name_;
};
class query_drop_schema_part final : public query_part {
public:
explicit query_drop_schema_part(std::string schema_);
@@ -26,14 +26,16 @@ public:
return result;
}
template<typename BaseType>
static void on_base(const BaseType&) {}
template < class V >
void on_primary_key(const char *id, V &x, const utils::primary_key_attribute& /*attr*/ = utils::default_pk_attributes) {
void on_primary_key(const char *id, V &x, const utils::primary_key_attribute& /*attr*/) {
result_.emplace_back(id, x);
}
void on_revision(const char *id, uint64_t &/*rev*/);
void on_revision(const char *id, uint64_t &/*rev*/) const;
template<typename Type>
void on_attribute(const char *id, Type &x, const utils::field_attributes &/*attr*/ = utils::null_attributes) {
void on_attribute(const char *id, Type &x, const utils::field_attributes &/*attr*/) {
result_.emplace_back(id, x);
}
@@ -42,7 +44,7 @@ public:
result_.emplace_back(id, fk_value_extractor_.extract(*x));
}
template<class Type, template < class ... > class Pointer>
void on_has_one(const char *id, Pointer<Type> &x, const utils::foreign_attributes &/*attr*/) {
void on_has_one(const char *id, Pointer<Type> &x, const char * /*join_column*/, const utils::foreign_attributes &/*attr*/) {
result_.emplace_back(id, fk_value_extractor_.extract(*x));
}
template<class ContainerType>
@@ -0,0 +1,14 @@
#ifndef MATADOR_MANUAL_PK_GENERATOR_HPP
#define MATADOR_MANUAL_PK_GENERATOR_HPP
#include "matador/query/abstract_pk_generator.hpp"
namespace matador::query {
class manual_pk_generator : public abstract_pk_generator {
public:
manual_pk_generator();
[[nodiscard]] utils::result<int64_t, utils::error> next_id(const sql::executor& exec) override;
[[nodiscard]] utils::result<int64_t, utils::error> current_id(const sql::executor& exec) override;
};
}
#endif //MATADOR_MANUAL_PK_GENERATOR_HPP
+1 -1
View File
@@ -18,7 +18,7 @@ TABLE_NAME##_table()\
: TABLE_NAME##_table(#TABLE_NAME) \
{} \
TABLE_NAME##_table(const std::string& alias) \
: typed_table(#TABLE_NAME, alias, {MAP(FIELD_STRING, __VA_ARGS__)}) \
: typed_table(#TABLE_NAME, alias, {MAP(FIELD_STRING, __VA_ARGS__)}, {}, {}) \
MAP(INIT_FIELD, __VA_ARGS__) \
{} \
MAP(FIELD, __VA_ARGS__) \
+13 -18
View File
@@ -17,25 +17,20 @@ table_column avg(const std::string &column);
table_column maximum(const std::string &column);
table_column minimum(const std::string &column);
class query
{
public:
[[nodiscard]] static query_create_intermediate create();
[[nodiscard]] static query_drop_intermediate drop();
[[nodiscard]] static query_select_intermediate select();
[[nodiscard]] static query_select_intermediate select(std::initializer_list<table_column> columns);
[[nodiscard]] static query_select_intermediate select(const std::vector<table_column>& columns);
[[nodiscard]] static query_select_intermediate select(const std::vector<std::string> &column_names);
template<class Type>
[[nodiscard]] static query_select_intermediate select(const schema &scm) {
[[nodiscard]] query_create_intermediate create();
[[nodiscard]] query_drop_intermediate drop();
[[nodiscard]] query_select_intermediate select();
[[nodiscard]] query_select_intermediate select(std::initializer_list<table_column> columns);
[[nodiscard]] query_select_intermediate select(const std::vector<table_column>& columns);
[[nodiscard]] query_select_intermediate select(const std::vector<std::string> &column_names);
template<class Type>
[[nodiscard]] query_select_intermediate select(const schema &scm) {
return select(generator::columns<Type>(scm));
}
[[nodiscard]] static query_insert_intermediate insert();
[[nodiscard]] static query_update_intermediate update(const table &table);
[[nodiscard]] static query_delete_intermediate remove();
[[nodiscard]] static query_alter_intermediate alter();
};
}
[[nodiscard]] query_insert_intermediate insert();
[[nodiscard]] query_update_intermediate update(const table &table);
[[nodiscard]] query_delete_intermediate remove();
[[nodiscard]] query_alter_intermediate alter();
}
#endif //QUERY_QUERY_HPP
+8 -3
View File
@@ -5,6 +5,7 @@
#include "matador/query/query_data.hpp"
#include "matador/sql/query_context.hpp"
#include "matador/sql/interface/connection_impl.hpp"
#include "matador/utils/placeholder.hpp"
@@ -12,7 +13,6 @@
#include <optional>
namespace matador::sql {
class connection_impl;
class dialect;
}
@@ -29,11 +29,10 @@ struct value_visitor;
class query_builder final : public query_part_visitor {
public:
sql::query_context compile(const query_data &data,
sql::query_context build(const query_data &data,
const sql::dialect &d,
std::optional<std::reference_wrapper<const sql::connection_impl>> conn);
protected:
void visit(internal::query_alter_part& part) override;
void visit(internal::query_alter_table_part& part) override;
void visit(internal::query_add_key_constraint_part& part) override;
@@ -45,6 +44,8 @@ protected:
void visit(internal::query_drop_key_constraint_part_by_constraint &part) override;
void visit(internal::query_select_part &part) override;
void visit(internal::query_select_nextval_part &part) override;
void visit(internal::query_select_currval_part &part) override;
void visit(internal::query_from_part &part) override;
void visit(internal::query_join_table_part &part) override;
void visit(internal::query_join_query_part &part) override;
@@ -72,16 +73,20 @@ protected:
void visit(internal::query_create_table_part &part) override;
void visit(internal::query_create_table_columns_part& part) override;
void visit(internal::query_create_table_constraints_part& part) override;
void visit(internal::query_create_sequence_part &part) override;
void visit(internal::query_create_schema_part& part) override;
void visit(internal::query_drop_part &part) override;
void visit(internal::query_drop_table_part &part) override;
void visit(internal::query_drop_sequence_part &part) override;
void visit(internal::query_drop_schema_part& part) override;
static std::string build_table_name(sql::dialect_token token, const sql::dialect &d, const table& t);
static std::string build_table_name(const sql::dialect &d, const table& t);
static std::string determine_value(const sql::dialect &d, sql::query_context& ctx, const abstract_column_expression &exp);
static std::string determine_value(value_visitor &visitor, const std::variant<utils::placeholder, utils::database_type> &val);
[[nodiscard]] std::string build_add_constraint_string(const table_constraint& c) const;
[[nodiscard]] std::string build_drop_constraint_string(const table_constraint& c) const;
static std::string build_constraint_name(const table_constraint& c);
@@ -3,27 +3,20 @@
#include "matador/utils/error.hpp"
#include "matador/query/error_code.hpp"
#include <cstdint>
namespace matador::query {
enum class query_build_error : std::uint8_t {
Ok = 0,
UnknownType,
MissingPrimaryKey,
UnexpectedError,
QueryError
};
class query_builder_exception final : public std::exception {
public:
explicit query_builder_exception(query_build_error error, utils::error &&err = {});
explicit query_builder_exception(utils::error &&err);
query_builder_exception(error_code error, std::string &&msg);
[[nodiscard]] query_build_error error_type() const;
[[nodiscard]] const utils::error &error() const;
private:
const query_build_error error_type_;
utils::error error_;
};

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