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14 changed files with 454 additions and 225 deletions
+109 -44
View File
@@ -26,31 +26,37 @@ 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)
, state_(object_state::Persistent){
: 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_ = primary_key_resolver::resolve_object(*obj_).pk;
state_.store(object_state::Persistent, std::memory_order_release);
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) {
@@ -59,66 +65,125 @@ public:
}
[[nodiscard]] std::shared_ptr<Type> object() const {
if (!obj_) {
std::ignore = resolve();
}
return obj_;
return resolve_object();
}
void invalidate() {
std::lock_guard lock(mutex_);
obj_.reset();
resolver_.reset();
state_.store(object_state::Detached, std::memory_order_release);
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 !obj_ && resolver_.expired(); }
[[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; }
[[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 { return state_ == state; }
bool is_state(const object_state state) const {
std::lock_guard lock(mutex_);
return state_ == state;
}
void change_state(const object_state state) {
state_.store(state, std::memory_order_release);
}
private:
Type* resolve() const {
if (obj_) {
return obj_.get();
}
std::lock_guard lock(mutex_);
auto 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)");
state_ = state;
}
private:
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_;
}
resolver = resolver_.lock();
if (!resolver) {
return nullptr;
}
pk = pk_;
}
const_cast<std::shared_ptr<Type>&>(obj_) = resolver->resolve(pk_);
current = resolver->resolve(pk);
return obj_.get();
{
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_{};
std::atomic<object_state> state_{object_state::Transient};
object_state state_{object_state::Transient};
mutable std::mutex mutex_{};
};
}
+106 -22
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@@ -17,68 +17,152 @@ 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=(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(); }
void reset(const std::shared_ptr<object_proxy<Type>>& proxy) { proxy_ = proxy; }
[[nodiscard]] std::shared_ptr<Type> object() const {
return proxy_ ? proxy_->object() : nullptr;
}
[[nodiscard]] std::shared_ptr<object_proxy<Type>> proxy() const { return proxy_; }
void reset() {
proxy_.reset();
}
operator bool() const { return valid(); }
[[nodiscard]] bool valid() const { return proxy_ != nullptr && !proxy_->empty(); }
void reset(std::shared_ptr<object_proxy<Type>> proxy) {
proxy_ = std::move(proxy);
}
[[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); }
[[nodiscard]] std::shared_ptr<object_proxy<Type>> proxy() const {
return proxy_;
}
[[nodiscard]] bool is_persistent() const { return proxy_->is_persistent(); }
[[nodiscard]] bool is_transient() const { return proxy_->is_transient(); }
[[nodiscard]] bool is_detached() const { return proxy_->is_detached(); }
[[nodiscard]] bool is_removed() const { return proxy_->is_removed(); }
[[nodiscard]] bool is_state(const object_state state) const { return proxy_->is_state(state); }
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>
@@ -19,7 +19,7 @@ public:
void visit(const value_expression& node) override;
void visit(const placeholder_expression& node) override;
const std::string& result() const;
[[nodiscard]] const std::string& result() const;
private:
const sql::dialect &dialect_;
+2 -1
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@@ -171,7 +171,8 @@ template<class Type>
utils::result<query_result<Type>, utils::error> statement::fetch() {
std::cout << statement_proxy_->sql() << std::endl;
statement_proxy_->statement_->query_.result_type = typeid(Type);
return statement_proxy_->fetch(*bindings_).and_then([this](std::unique_ptr<query_result_impl> &&value) {
return statement_proxy_->fetch(*bindings_)
.and_then([this](std::unique_ptr<query_result_impl> &&value) -> utils::result<query_result<Type>, utils::error> {
auto resolver = statement_proxy_->statement_->query_.resolver->object_resolver<Type>();
const auto prototype = value->prototype();
return utils::ok(query_result<Type>(std::forward<decltype(value)>(value), resolver, [prototype] {
+124 -91
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@@ -2,7 +2,6 @@
#define QUERY_RESULT_HPP
#include <variant>
#include <optional>
#include <functional>
#include <type_traits>
@@ -21,6 +20,7 @@ template < typename ValueType >
class ok {
public:
using value_type = ValueType;
constexpr ok() = default;
explicit constexpr ok(const ValueType &value) : value_(value) {}
explicit constexpr ok(ValueType &&value) : value_(std::move(value)) {}
@@ -49,21 +49,49 @@ public:
constexpr ErrorType&& release() { return std::move(error_); }
const ErrorType& value() const { return error_; }
ErrorType value() { return error_; }
ErrorType& value() { return error_; }
private:
ErrorType error_;
};
namespace detail {
template <typename ValueType, typename Func, bool IsVoidValue = std::is_void_v<ValueType>>
struct map_result_value_type;
template <typename ValueType, typename Func>
struct map_result_value_type<ValueType, Func, false> {
using type = std::invoke_result_t<Func, ValueType&&>;
};
template <typename ValueType, typename Func>
struct map_result_value_type<ValueType, Func, true> {
using type = std::invoke_result_t<Func>;
};
template <typename ValueType, typename Func, bool IsVoidValue = std::is_void_v<ValueType>>
struct and_then_result_type;
template <typename ValueType, typename Func>
struct and_then_result_type<ValueType, Func, false> {
using type = std::invoke_result_t<Func, ValueType&&>;
};
template <typename ValueType, typename Func>
struct and_then_result_type<ValueType, Func, true> {
using type = std::invoke_result_t<Func>;
};
}
template < typename ValueType, typename ErrorType >
class result {
public:
using value_type = ValueType;
using error_type = ErrorType;
result() : result_(ValueType{}) {}
result(ok<value_type> value) : result_(std::move(value.release())) {} // NOLINT(*-explicit-constructor)
result(failure<error_type> error) : result_(std::move(error.release())) {} // NOLINT(*-explicit-constructor)
result() : result_(ok<value_type>{}) {}
result(ok<value_type> value) : result_(std::move(value)) {} // NOLINT(*-explicit-constructor)
result(failure<error_type> error) : result_(std::move(error)) {} // NOLINT(*-explicit-constructor)
result(const result &x) = default;
result& operator=(const result &x) = default;
result(result &&x) = default;
@@ -71,123 +99,128 @@ public:
operator bool() const { return is_ok(); } // NOLINT(*-explicit-constructor)
[[nodiscard]] bool is_ok() const { return std::holds_alternative<value_type>(result_); }
[[nodiscard]] bool is_error() const { return std::holds_alternative<error_type>(result_); }
[[nodiscard]] bool is_ok() const {
return std::holds_alternative<ok<value_type>>(result_);
}
[[nodiscard]] bool is_error() const {
return std::holds_alternative<failure<error_type>>(result_);
}
ValueType&& release() { return std::move(std::get<value_type>(result_)); }
ErrorType&& release_error() { return std::move(std::get<error_type>(result_)); }
template <typename T = ValueType>
std::enable_if_t<!std::is_void_v<T>, T&&> release() {
return std::move(std::get<ok<value_type>>(result_).release());
}
ErrorType&& release_error() {
return std::move(std::get<failure<error_type>>(result_).release());
}
const ValueType& value() const { return std::get<value_type>(result_); }
ValueType& value() { return std::get<value_type>(result_); }
const ErrorType& err() const { return std::get<error_type>(result_); }
ErrorType err() { return std::get<error_type>(result_); }
template <typename T = ValueType>
std::enable_if_t<!std::is_void_v<T>, const T&> value() const {
return std::get<ok<value_type>>(result_).value();
}
template <typename T = ValueType>
std::enable_if_t<!std::is_void_v<T>, T&> value() {
return std::get<ok<value_type>>(result_).value();
}
const ErrorType& err() const {
return std::get<failure<error_type>>(result_).value();
}
ErrorType& err() {
return std::get<failure<error_type>>(result_).value();
}
constexpr const ValueType* operator->() const { return &value(); }
constexpr ValueType* operator->() { return &std::get<value_type>(result_); }
template <typename T = ValueType>
constexpr std::enable_if_t<!std::is_void_v<T>, const T*> operator->() const {
return &value();
}
template <typename T = ValueType>
constexpr std::enable_if_t<!std::is_void_v<T>, T*> operator->() {
return &value();
}
constexpr const ValueType& operator*() const& noexcept { return value(); }
constexpr ValueType& operator*() & noexcept { return value(); }
template <typename T = ValueType>
constexpr std::enable_if_t<!std::is_void_v<T>, const T&> operator*() const& noexcept {
return value();
}
template <typename T = ValueType>
constexpr std::enable_if_t<!std::is_void_v<T>, T&> operator*() & noexcept {
return value();
}
template<typename Func,
typename SecondValueType = std::invoke_result_t<Func, ValueType >>
typename SecondValueType = typename detail::map_result_value_type<ValueType, Func>::type>
result<SecondValueType, ErrorType> map(Func &&f) {
if (is_ok()) {
return result<SecondValueType, ErrorType>(ok(f(release())));
if (is_error()) {
return failure<ErrorType>(release_error());
}
return result<SecondValueType, ErrorType>(failure(release_error()));
if constexpr (std::is_void_v<ValueType>) {
if constexpr (std::is_void_v<SecondValueType>) {
std::invoke(std::forward<Func>(f));
return ok<void>{};
} else {
return ok<SecondValueType>(std::invoke(std::forward<Func>(f)));
}
} else {
if constexpr (std::is_void_v<SecondValueType>) {
std::invoke(std::forward<Func>(f), release());
return ok<void>{};
} else {
return ok<SecondValueType>(std::invoke(std::forward<Func>(f), release()));
}
}
}
template<typename Func,
typename SecondErrorType = typename std::invoke_result_t<Func, ErrorType >::value_type>
result<SecondErrorType, ErrorType> map_error(Func &&f) {
if (!is_ok()) {
return result<SecondErrorType, ErrorType>(ok(release()));
if (!is_error()) {
return failure<SecondErrorType>{std::invoke(std::forward<Func>(f), release_error())};
}
return result<SecondErrorType, ErrorType>(error(release_error()));
if constexpr (std::is_void_v<ValueType>) {
return ok<void>{};
} else {
return ok<ValueType>(release());
}
}
template<typename Func,
typename SecondValueType = typename std::invoke_result_t<Func, ValueType>::value_type>
result<SecondValueType, ErrorType> and_then(Func &&f) {
template <typename Func,
typename ReturnResult = typename detail::and_then_result_type<ValueType, Func>::type>
ReturnResult and_then(Func &&f) {
static_assert(is_result<ReturnResult>::value, "and_then() callback must return matador::utils::result");
if (is_ok()) {
return f(release());
if constexpr (std::is_void_v<ValueType>) {
return std::invoke(std::forward<Func>(f));
} else {
return std::invoke(std::forward<Func>(f), release());
}
}
return result<SecondValueType, ErrorType>(failure(release_error()));
return ReturnResult(failure<ErrorType>(release_error()));
}
template<typename Func,
typename SecondErrorType = typename std::invoke_result_t<Func, ErrorType&& >::value_type>
template <typename Func,
typename FailureType = std::invoke_result_t<Func, ErrorType&&>,
typename SecondErrorType = typename FailureType::value_type>
result<ValueType, SecondErrorType> or_else(Func &&f) {
if (is_error()) {
return f(release_error());
return result<ValueType, SecondErrorType>(
std::invoke(std::forward<Func>(f), release_error())
);
}
return result<ValueType, SecondErrorType>(ok(release()));
if constexpr (std::is_void_v<ValueType>) {
return ok<void>{};
} else {
return ok<ValueType>(release());
}
}
private:
std::variant<value_type, error_type> result_;
std::variant<ok<value_type>, failure<error_type>> result_;
};
template < typename ErrorType >
class result<void, ErrorType>
{
public:
using value_type = void;
using error_type = ErrorType;
result() = default;
result(ok<void> /*value*/) {}
result(failure<error_type> error) : result_(std::move(error.release())) {} // NOLINT(*-explicit-constructor)
result(const result &x) = default;
result& operator=(const result &x) = default;
result(result &&x) = default;
result& operator=(result &&x) = default;
operator bool() const { return is_ok(); } // NOLINT(*-explicit-constructor)
[[nodiscard]] bool is_ok() const { return !result_.has_value(); }
[[nodiscard]] bool is_error() const { return result_.has_value(); }
ErrorType&& release_error() { return std::move(*result_); }
const ErrorType& err() const { return result_.value(); }
ErrorType err() { return result_.value(); }
template<typename Func, typename SecondValueType = std::invoke_result_t<Func>>
result<SecondValueType, ErrorType> map(Func &&f) {
if (is_ok()) {
return result<SecondValueType, ErrorType>(ok(f()));
}
return result<SecondValueType, ErrorType>(failure(release_error()));
}
template<typename Func>
result and_then(Func &&f) {
if (is_ok()) {
return f();
}
return result(failure(release_error()));
}
template<typename Func, typename SecondErrorType = typename std::invoke_result_t<Func, ErrorType&& >::value_type>
result<void, SecondErrorType> or_else(Func &&f) {
if (is_error()) {
return f(release_error());
}
return result<void, SecondErrorType>(ok<void>());
}
private:
std::optional<error_type> result_;
};
}
#endif //QUERY_RESULT_HPP
+1 -1
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@@ -56,7 +56,7 @@ public:
if (!res.is_ok()) {
return std::nullopt;
}
return *res;
return res.value();
}
template<class Type>
+3 -3
View File
@@ -3,16 +3,16 @@
#include "matador/utils/result.hpp"
#include "matador/utils/error.hpp"
#include "matador/utils/export.hpp"
#include <string>
#include <ostream>
namespace matador::utils {
class version {
class MATADOR_UTILS_API version final {
public:
version() = default;
~version() =default;
~version() = default;
version(unsigned int major, unsigned int minor, unsigned int patch);
version(const version& x) = default;
version& operator=(const version& x) = default;
+74 -50
View File
@@ -3,98 +3,122 @@
#include <matador/utils/errors.hpp>
namespace matador::utils {
namespace {
version::version(unsigned int major, unsigned int minor, unsigned int patch)
: major_(major)
, minor_(minor)
, patch_(patch)
{}
bool parse_uint_component(const std::string &text, std::size_t &pos, unsigned int &value) {
if (pos >= text.size() || text[pos] < '0' || text[pos] > '9') {
return false;
}
bool version::operator==(const version &x) const
{
return major_ == x.major_ &&
minor_ == x.minor_ &&
patch_ == x.patch_;
unsigned int result{};
while (pos < text.size() && text[pos] >= '0' && text[pos] <= '9') {
const auto digit = static_cast<unsigned int>(text[pos] - '0');
if (result > (std::numeric_limits<unsigned int>::max() - digit) / 10) {
return false;
}
result = result * 10 + digit;
++pos;
}
value = result;
return true;
}
bool version::operator!=(const version &x) const
{
bool parse_dot(const std::string &text, std::size_t &pos) {
if (pos >= text.size() || text[pos] != '.') {
return false;
}
++pos;
return true;
}
} // namespace
version::version(const unsigned int major, const unsigned int minor, const unsigned int patch)
: major_(major)
, minor_(minor)
, patch_(patch) {
}
bool version::operator==(const version& x) const {
return major_ == x.major_ &&
minor_ == x.minor_ &&
patch_ == x.patch_;
}
bool version::operator!=(const version& x) const {
return !(*this == x);
}
bool version::operator>(const version &x) const
{
bool version::operator>(const version& x) const {
return !(*this <= x);
}
bool version::operator>=(const version &x) const
{
bool version::operator>=(const version& x) const {
return !(*this < x);
}
bool version::operator<(const version &x) const
{
bool version::operator<(const version& x) const {
return (major_ < x.major_) ||
(major_ == x.major_ && minor_ < x.minor_) ||
(major_ == x.major_ && minor_ == x.minor_ && patch_ < x.patch_);
(major_ == x.major_ && minor_ < x.minor_) ||
(major_ == x.major_ && minor_ == x.minor_ && patch_ < x.patch_);
}
bool version::operator<=(const version &x) const
{
bool version::operator<=(const version& x) const {
return *this < x || *this == x;
}
std::string version::str() const
{
char buf[32];
sprintf(buf, "%d.%d.%d", major_, minor_, patch_);
return buf;
std::string version::str() const {
return std::to_string(major_) + "." +
std::to_string(minor_) + "." +
std::to_string(patch_);
}
std::ostream &operator<<(std::ostream &out, const version &v)
{
std::ostream& operator<<(std::ostream& out, const version& v) {
out << v.str();
return out;
}
result<version, error> version::from_string(const std::string &version_string)
{
version result;
if (const auto ret = sscanf(version_string.c_str(), "%u.%u.%u", &result.major_, &result.minor_, &result.patch_); ret != 3) {
result<version, error> version::from_string(const std::string& version_string) {
unsigned int major{};
unsigned int minor{};
unsigned int patch{};
if (std::size_t pos{}; !parse_uint_component(version_string, pos, major) ||
!parse_dot(version_string, pos) ||
!parse_uint_component(version_string, pos, minor) ||
!parse_dot(version_string, pos) ||
!parse_uint_component(version_string, pos, patch) ||
pos != version_string.size()) {
return failure(error(utils_error::InvalidVersionString, version_string));
}
}
return ok(result);
}
return ok(version{major, minor, patch});}
unsigned int version::major() const
{
unsigned int version::major() const {
return major_;
}
unsigned int version::minor() const
{
unsigned int version::minor() const {
return minor_;
}
unsigned int version::patch() const
{
unsigned int version::patch() const {
return patch_;
}
void version::major(unsigned int m)
{
void version::major(unsigned int m) {
major_ = m;
}
void version::minor(unsigned int m)
{
void version::minor(unsigned int m) {
minor_ = m;
}
void version::patch(unsigned int p)
{
void version::patch(unsigned int p) {
patch_ = p;
}
}
}
-1
View File
@@ -71,7 +71,6 @@ add_library(matador-orm STATIC
../../include/matador/query/key_value_generator.hpp
../../include/matador/query/manual_pk_generator.hpp
../../include/matador/query/meta_table_macro.hpp
../../include/matador/query/meta_table_macro.hpp
../../include/matador/query/query.hpp
../../include/matador/query/query_builder.hpp
../../include/matador/query/query_builder_utils.hpp
@@ -30,7 +30,7 @@ utils::result<sql::query_result<sql::record>, utils::error> fetchable_query::fet
auto ctx = compiler.build(*context_, exec.dialect(), std::nullopt);
ctx.resolver = exec.resolver();
return exec.fetch(ctx)
.and_then([](auto &&res) {
.and_then([](auto &&res) -> utils::result<sql::query_result<sql::record>, utils::error> {
const auto prototype = res->prototype();
return utils::ok(sql::query_result<sql::record>(std::forward<decltype(res)>(res), prototype));
});
+2 -1
View File
@@ -37,7 +37,8 @@ void QueryFixture::check_table_not_exists(const std::string &table_name) const {
}
void QueryFixture::drop_table_if_exists(const std::string &table_name) const {
const auto result = db.exists(table_name).and_then([&table_name, this](const bool exists) {
const auto result = db.exists(table_name)
.and_then([&table_name, this](const bool exists) -> utils::result<bool, utils::error> {
if (exists) {
auto res = query::drop()
.table(table_name)
+2 -1
View File
@@ -35,7 +35,8 @@ void SequenceFixture::check_sequence_not_exists(const std::string& sequence_name
}
void SequenceFixture::drop_sequence_if_exists(const std::string& sequence_name) const {
const auto result = db.sequence_exists(sequence_name).and_then([&sequence_name, this](const bool exists) {
const auto result = db.sequence_exists(sequence_name).
and_then([&sequence_name, this](const bool exists) -> utils::result<bool, utils::error> {
if (exists) {
auto res = query::drop()
.sequence(sequence_name)
+7 -5
View File
@@ -5,13 +5,15 @@
#include "matador/utils/result.hpp"
namespace matador::test {
namespace {
enum class math_error : int32_t {
OK = 0,
DIVISION_BY_ZERO = 1,
FAILURE = 2
};
}
utils::result<float, math_error>divide(const float x, const float y) {
static utils::result<float, math_error>divide(const float x, const float y) {
if (y == 0) {
return utils::failure(math_error::DIVISION_BY_ZERO);
}
@@ -19,15 +21,15 @@ utils::result<float, math_error>divide(const float x, const float y) {
return utils::ok(x / y);
}
utils::result<float, math_error>multiply(const float x, const float y) {
static utils::result<float, math_error>multiply(const float x, const float y) {
return utils::ok(x * y);
}
utils::result<float, math_error>plus(const float x, const float y) {
static utils::result<float, math_error>plus(const float x, const float y) {
return utils::ok(x + y);
}
utils::result<void, math_error>action_on_greater_42(const float i) {
static utils::result<void, math_error>action_on_greater_42(const float i) {
if (i > 42) {
return utils::ok<void>();
}
@@ -88,7 +90,7 @@ TEST_CASE("Test result", "[result]") {
REQUIRE(!res2.is_ok());
REQUIRE(res2.is_error());
const auto e = res2.err();
// REQUIRE(res2.err() == "division by zero error");
REQUIRE(res2.err() == "division by zero error");
res = test::divide(4, 2)
.and_then([](const auto &val) { return test::multiply(val, 5); })
+22 -3
View File
@@ -4,7 +4,26 @@
using namespace matador::utils;
TEST_CASE("Test version interface", "[version][interface]") {
TEST_CASE("Version: Test form string", "[version][from_string]") {
REQUIRE(version::from_string("1.2.3").is_ok());
REQUIRE(version::from_string("0.0.0").is_ok());
REQUIRE(version::from_string("1.2").is_error());
REQUIRE(version::from_string("1.2.3.4").is_error());
REQUIRE(version::from_string("1.2.3abc").is_error());
REQUIRE(version::from_string("abc").is_error());
REQUIRE(version::from_string("-1.2.3").is_error());
}
TEST_CASE("Version: Test comparison", "[version][comparison]") {
REQUIRE(version(1, 2, 3) == version(1, 2, 3));
REQUIRE(version(1, 2, 3) < version(1, 2, 4));
REQUIRE(version(1, 2, 3) < version(1, 3, 0));
REQUIRE(version(1, 2, 3) < version(2, 0, 0));
REQUIRE(version(2, 0, 0) > version(1, 9, 9));
}
TEST_CASE("Version: Test interface", "[version][interface]") {
version v0;
REQUIRE(v0.major() == 0);
@@ -38,8 +57,8 @@ TEST_CASE("Test version interface", "[version][interface]") {
REQUIRE(v2 == v1);
}
TEST_CASE("Test version parsing", "[version][parse]") {
const auto version_str{"13.67.34"};
TEST_CASE("Version: Test parsing", "[version][parse]") {
constexpr auto version_str{"13.67.34"};
const auto v1 = version::from_string(version_str);
REQUIRE(v1.is_ok());