127#include <type_traits>  
  128#include <unordered_map> 
  129#include <unordered_set> 
  244#ifdef UNIV_PFS_MEMORY 
  454#if defined(__GNUG__) && (__GNUG__ == 5) 
  503#define UT_NEW_THIS_FILE_PSI_KEY ut_new_get_key_by_file(MY_BASENAME) 
  514  for (
size_t i = 0; i < b_len; ++i) {
 
  526  for (
size_t i = 0;; ++i) {
 
  527    if (
file[i] == 
'\0' || 
file[i] == 
'.') {
 
  539  for (
size_t i = 0; i < 
n_auto; ++i) {
 
  541      return static_cast<int>(i);
 
  563#define UT_NEW_THIS_FILE_PSI_INDEX \ 
  564  (force_constexpr<ut_new_get_key_by_file(MY_BASENAME)>::value) 
  566#define UT_NEW_THIS_FILE_PSI_KEY                       \ 
  567  (UT_NEW_THIS_FILE_PSI_INDEX == -1                    \ 
  568       ? ut::make_psi_memory_key(PSI_NOT_INSTRUMENTED) \ 
  569       : ut::make_psi_memory_key(auto_event_keys[UT_NEW_THIS_FILE_PSI_INDEX])) 
  575#define UT_NEW_THIS_FILE_PSI_KEY ut::make_psi_memory_key(PSI_NOT_INSTRUMENTED) 
  581#ifdef HAVE_PSI_MEMORY_INTERFACE 
  601  return malloc_impl::alloc<false>(
size, 
key());
 
  637  return malloc_impl::alloc<true>(
size, 
key());
 
  678                             std::size_t 
size) 
noexcept {
 
  719inline void free(
void *ptr) 
noexcept {
 
  752template <
typename T, 
typename... Args>
 
  757    new (
mem) 
T(std::forward<Args>(args)...);
 
  762  return static_cast<T *
>(
mem);
 
  795template <
typename T, 
typename... Args>
 
  798                            std::forward<Args>(args)...);
 
  875template <
typename T, 
typename... Args>
 
  879  auto mem = malloc_impl::alloc<false>(
sizeof(
T) * 
sizeof...(args), 
key());
 
  885     detail::construct<T>(
mem, 
sizeof(
T) * idx++, std::forward<Args>(args)));
 
  887    for (
size_t offset = (idx - 1) * 
sizeof(
T); offset != 0;
 
  888         offset -= 
sizeof(
T)) {
 
  889      reinterpret_cast<T *
>(
reinterpret_cast<std::uintptr_t
>(
mem) + offset -
 
  896  return static_cast<T *
>(
mem);
 
  960template <
typename T, 
typename... Args>
 
  963                                std::forward<Args>(args)...);
 
 1028template <
typename T>
 
 1032  auto mem = malloc_impl::alloc<false>(
sizeof(
T) * 
count(), 
key());
 
 1037    for (; offset < 
sizeof(
T) * 
count(); offset += 
sizeof(
T)) {
 
 1038      new (
reinterpret_cast<uint8_t *
>(
mem) + offset) 
T{};
 
 1041    for (; offset != 0; offset -= 
sizeof(
T)) {
 
 1042      reinterpret_cast<T *
>(
reinterpret_cast<std::uintptr_t
>(
mem) + offset -
 
 1049  return static_cast<T *
>(
mem);
 
 1095template <
typename T>
 
 1110template <
typename T>
 
 1115  const auto data_len = malloc_impl::datalen(ptr);
 
 1116  for (
size_t offset = 0; offset < data_len; offset += 
sizeof(
T)) {
 
 1117    reinterpret_cast<T *
>(
reinterpret_cast<std::uintptr_t
>(ptr) + offset)->~T();
 
 1151                                 std::size_t 
size) 
noexcept {
 
 1154  return page_alloc_impl::alloc(
size, 
key());
 
 1200  return page_alloc_impl::datalen(ptr);
 
 1214  return page_alloc_impl::low_level_info(ptr);
 
 1250                                       std::size_t 
size) 
noexcept {
 
 1253  return large_page_alloc_impl::alloc(
size, 
key());
 
 1298  return large_page_alloc_impl::datalen(ptr);
 
 1312  return large_page_alloc_impl::low_level_info(ptr);
 
 1360  void *large_page_mem = 
nullptr;
 
 1361  if (large_pages_enabled) {
 
 1459  if (!ptr) 
return false;
 
 1465    ut_a(large_page_alloc_impl::page_type(ptr) ==
 
 1487                                   std::size_t alignment) 
noexcept {
 
 1490  return aligned_alloc_impl::alloc<false>(
size, alignment, 
key());
 
 1529                                    std::size_t alignment) 
noexcept {
 
 1532  return aligned_alloc_impl::alloc<true>(
size, alignment, 
key());
 
 1595template <
typename T, 
typename... Args>
 
 1601    new (
mem) 
T(std::forward<Args>(args)...);
 
 1606  return static_cast<T *
>(
mem);
 
 1636template <
typename T, 
typename... Args>
 
 1639                                alignment, std::forward<Args>(args)...);
 
 1651template <
typename T>
 
 1716template <
typename T, 
typename... Args>
 
 1725     detail::construct<T>(
mem, 
sizeof(
T) * idx++, std::forward<Args>(args)));
 
 1727    for (
size_t offset = (idx - 1) * 
sizeof(
T); offset != 0;
 
 1728         offset -= 
sizeof(
T)) {
 
 1729      reinterpret_cast<T *
>(
reinterpret_cast<std::uintptr_t
>(
mem) + offset -
 
 1736  return static_cast<T *
>(
mem);
 
 1780template <
typename T>
 
 1788    for (; offset < 
sizeof(
T) * 
count(); offset += 
sizeof(
T)) {
 
 1789      new (
reinterpret_cast<uint8_t *
>(
mem) + offset) 
T{};
 
 1792    for (; offset != 0; offset -= 
sizeof(
T)) {
 
 1793      reinterpret_cast<T *
>(
reinterpret_cast<std::uintptr_t
>(
mem) + offset -
 
 1800  return static_cast<T *
>(
mem);
 
 1839template <
typename T, 
typename... Args>
 
 1842                                    alignment, std::forward<Args>(args)...);
 
 1881template <
typename T>
 
 1896template <
typename T>
 
 1900  const auto data_len = aligned_alloc_impl::datalen(ptr);
 
 1901  for (
size_t offset = 0; offset < data_len; offset += 
sizeof(
T)) {
 
 1902    reinterpret_cast<T *
>(
reinterpret_cast<std::uintptr_t
>(ptr) + offset)->~T();
 
 1924template <
typename T, 
size_t Alignment>
 
 1946  template <
typename... Args>
 
 1963  template <
typename... Args>
 
 1967        ut::aligned_new_withkey<T>(
key, 
Alignment, std::forward<Args>(args)...);
 
 1982  operator T *() 
const {
 
 2018template <
typename T, 
size_t Alignment>
 
 2058  template <
typename... Args>
 
 2061    ptr = ut::aligned_new_arr<T>(
Alignment, std::forward<Args>(args)...);
 
 2096  template <
typename... Args>
 
 2100                                         std::forward<Args>(args)...);
 
 2115  operator T *() 
const {
 
 2122template <
typename T>
 
 2126  template <
typename U>
 
 2132template <
typename T>
 
 2136  template <
typename U>
 
 2180template <
typename T, 
typename Allocator_base = std::conditional_t<
 
 2193  static_assert(
alignof(
T) <= 
alignof(std::max_align_t),
 
 2194                "ut::allocator does not support over-aligned types. Use " 
 2195                "ut::aligned_* API to handle such types.");
 
 2219  template <
typename U>
 
 2221      : Allocator_base(other) {}
 
 2228  template <
typename U>
 
 2239    return !(*
this == other);
 
 2266      throw std::bad_array_new_length();
 
 2269    auto ptr = Allocator_base::allocate_impl(n_elements * 
sizeof(
T));
 
 2272      throw std::bad_alloc();
 
 2275    return static_cast<pointer>(ptr);
 
 2291template <
typename T>
 
 2296template <
typename T, std::
size_t N>
 
 2301template <
typename T, std::
size_t N>
 
 2304template <
typename T>
 
 2309template <
typename T>
 
 2314template <
typename T>
 
 2319template <
typename T>
 
 2341template <
typename T, 
typename Deleter = detail::Deleter<T>, 
typename... Args>
 
 2344  return std::unique_ptr<T, Deleter>(ut::new_<T>(std::forward<Args>(args)...));
 
 2360template <
typename T, 
typename Deleter = detail::Deleter<T>, 
typename... Args>
 
 2363  return std::unique_ptr<T, Deleter>(
 
 2364      ut::new_withkey<T>(
key, std::forward<Args>(args)...));
 
 2382template <
typename T,
 
 2383          typename Deleter = detail::Array_deleter<std::remove_extent_t<T>>>
 
 2384std::enable_if_t<detail::is_unbounded_array_v<T>, std::unique_ptr<T, Deleter>>
 
 2386  return std::unique_ptr<T, Deleter>(
 
 2402template <
typename T,
 
 2403          typename Deleter = detail::Array_deleter<std::remove_extent_t<T>>>
 
 2404std::enable_if_t<detail::is_unbounded_array_v<T>, std::unique_ptr<T, Deleter>>
 
 2406  return std::unique_ptr<T, Deleter>(
 
 2415template <
typename T, 
typename... Args>
 
 2416std::enable_if_t<detail::is_bounded_array_v<T>> 
make_unique(Args &&...) =
 
 2425template <
typename T, 
typename... Args>
 
 2438template <
typename T>
 
 2442        detail::is_unbounded_array_v<T>,
 
 2443        std::unique_ptr<T, detail::Array_deleter<std::remove_extent_t<T>>>,
 
 2462template <
typename T, 
typename Deleter = detail::Aligned_deleter<T>,
 
 2466  return std::unique_ptr<T, Deleter>(
 
 2467      ut::aligned_new<T>(alignment, std::forward<Args>(args)...));
 
 2485template <
typename T, 
typename Deleter = detail::Aligned_deleter<T>,
 
 2489  return std::unique_ptr<T, Deleter>(
 
 2490      ut::aligned_new_withkey<T>(
key, alignment, std::forward<Args>(args)...));
 
 2511template <
typename T, 
typename Deleter = detail::Aligned_array_deleter<
 
 2512                          std::remove_extent_t<T>>>
 
 2513std::enable_if_t<detail::is_unbounded_array_v<T>, std::unique_ptr<T, Deleter>>
 
 2515  return std::unique_ptr<T, Deleter>(
 
 2535template <
typename T, 
typename Deleter = detail::Aligned_array_deleter<
 
 2536                          std::remove_extent_t<T>>>
 
 2537std::enable_if_t<detail::is_unbounded_array_v<T>, std::unique_ptr<T, Deleter>>
 
 2539  return std::unique_ptr<T, Deleter>(
 
 2549template <
typename T, 
typename... Args>
 
 2551    Args &&...) = 
delete;
 
 2559template <
typename T, 
typename... Args>
 
 2572template <
typename T>
 
 2575    std::conditional_t<detail::is_unbounded_array_v<T>,
 
 2577                                              std::remove_extent_t<T>>>,
 
 2595template <
typename T, 
typename Deleter = detail::Deleter<T>, 
typename... Args>
 
 2598  return std::shared_ptr<T>(ut::new_<T>(std::forward<Args>(args)...),
 
 2615template <
typename T, 
typename Deleter = detail::Deleter<T>, 
typename... Args>
 
 2618  return std::shared_ptr<T>(
 
 2619      ut::new_withkey<T>(
key, std::forward<Args>(args)...), 
Deleter{});
 
 2638template <
typename T,
 
 2639          typename Deleter = detail::Array_deleter<std::remove_extent_t<T>>>
 
 2640std::enable_if_t<detail::is_unbounded_array_v<T>, std::shared_ptr<T>>
 
 2642  return std::shared_ptr<T>(
 
 2661template <
typename T,
 
 2662          typename Deleter = detail::Array_deleter<std::remove_extent_t<T>>>
 
 2663std::enable_if_t<detail::is_unbounded_array_v<T>, std::shared_ptr<T>>
 
 2665  return std::shared_ptr<T>(
 
 2685template <
typename T,
 
 2686          typename Deleter = detail::Array_deleter<std::remove_extent_t<T>>>
 
 2687std::enable_if_t<detail::is_bounded_array_v<T>, std::shared_ptr<T>>
 
 2689  return std::shared_ptr<T>(
ut::new_arr<std::remove_extent_t<T>>(
 
 2690                                ut::Count{detail::bounded_array_size_v<T>}),
 
 2707template <
typename T,
 
 2708          typename Deleter = detail::Array_deleter<std::remove_extent_t<T>>>
 
 2709std::enable_if_t<detail::is_bounded_array_v<T>, std::shared_ptr<T>> 
make_shared(
 
 2711  return std::shared_ptr<T>(
 
 2733template <
typename T, 
typename Deleter = detail::Aligned_deleter<T>,
 
 2737  return std::shared_ptr<T>(
 
 2738      ut::aligned_new<T>(alignment, std::forward<Args>(args)...), 
Deleter{});
 
 2756template <
typename T, 
typename Deleter = detail::Aligned_deleter<T>,
 
 2760  return std::shared_ptr<T>(
 
 2761      ut::aligned_new_withkey<T>(
key, alignment, std::forward<Args>(args)...),
 
 2783template <
typename T, 
typename Deleter = detail::Aligned_array_deleter<
 
 2784                          std::remove_extent_t<T>>>
 
 2785std::enable_if_t<detail::is_unbounded_array_v<T>, std::shared_ptr<T>>
 
 2787  return std::shared_ptr<T>(
 
 2808template <
typename T, 
typename Deleter = detail::Aligned_array_deleter<
 
 2809                          std::remove_extent_t<T>>>
 
 2810std::enable_if_t<detail::is_unbounded_array_v<T>, std::shared_ptr<T>>
 
 2812  return std::shared_ptr<T>(
 
 2835template <
typename T, 
typename Deleter = detail::Aligned_array_deleter<
 
 2836                          std::remove_extent_t<T>>>
 
 2837std::enable_if_t<detail::is_bounded_array_v<T>, std::shared_ptr<T>>
 
 2839  return std::shared_ptr<T>(
 
 2841          alignment, 
ut::Count{detail::bounded_array_size_v<T>}),
 
 2860template <
typename T, 
typename Deleter = detail::Aligned_array_deleter<
 
 2861                          std::remove_extent_t<T>>>
 
 2862std::enable_if_t<detail::is_bounded_array_v<T>, std::shared_ptr<T>>
 
 2864  return std::shared_ptr<T>(
 
 2866          key, alignment, 
ut::Count{detail::bounded_array_size_v<T>}),
 
 2879template <
typename T>
 
 2880using vector = std::vector<T, ut::allocator<T>>;
 
 2883template <
typename T>
 
 2884using list = std::list<T, ut::allocator<T>>;
 
 2887template <
typename Key, 
typename Compare = std::less<Key>>
 
 2888using set = std::set<Key, Compare, ut::allocator<Key>>;
 
 2890template <
typename Key>
 
 2892    std::unordered_set<Key, std::hash<Key>, std::equal_to<Key>,
 
 2896template <
typename Key, 
typename Value, 
typename Compare = std::less<Key>>
 
 2898    std::map<Key, Value, Compare, ut::allocator<std::pair<const Key, Value>>>;
 
 2900template <
typename Key, 
typename Value, 
typename Hash = std::hash<Key>,
 
 2901          typename Key_equal = std::equal_to<Key>>
 
Definition: tls_cipher.cc:37
 
Lightweight convenience wrapper which manages a dynamically allocated array of over-aligned types.
Definition: ut0new.h:2019
 
void dealloc()
Invokes destructors of instances of type T, if applicable.
Definition: ut0new.h:2107
 
void alloc(Count count)
Allocates sufficiently large memory of dynamic storage duration to fit the array of size number of el...
Definition: ut0new.h:2041
 
void alloc(Args &&...args)
Allocates sufficiently large memory of dynamic storage duration to fit the array of size number of el...
Definition: ut0new.h:2059
 
void alloc_withkey(PSI_memory_key_t key, Args &&...args)
Allocates sufficiently large memory of dynamic storage duration to fit the array of size number of el...
Definition: ut0new.h:2097
 
T * ptr
Definition: ut0new.h:2020
 
void alloc_withkey(PSI_memory_key_t key, Count count)
Allocates sufficiently large memory of dynamic storage duration to fit the array of size number of el...
Definition: ut0new.h:2077
 
~aligned_array_pointer()
Destructor.
Definition: ut0new.h:2027
 
Lightweight convenience wrapper which manages dynamically allocated over-aligned type.
Definition: ut0new.h:1925
 
void alloc_withkey(PSI_memory_key_t key, Args &&...args)
Allocates sufficiently large memory of dynamic storage duration to fit the instance of type T at the ...
Definition: ut0new.h:1964
 
void alloc(Args &&...args)
Allocates sufficiently large memory of dynamic storage duration to fit the instance of type T at the ...
Definition: ut0new.h:1947
 
~aligned_pointer()
Destructor.
Definition: ut0new.h:1933
 
T * ptr
Definition: ut0new.h:1926
 
void dealloc()
Invokes the destructor of instance of type T, if applicable.
Definition: ut0new.h:1973
 
Allocator that allows std::* containers to manage their memory through ut::malloc* and ut::free libra...
Definition: ut0new.h:2183
 
T & reference
Definition: ut0new.h:2187
 
void deallocate(pointer ptr, size_type n_elements=0)
Releases the memory allocated through ut::allocator<T>::allocate().
Definition: ut0new.h:2283
 
const T * const_pointer
Definition: ut0new.h:2186
 
ptrdiff_t difference_type
Definition: ut0new.h:2191
 
allocator< T, Allocator_base > & operator=(const allocator< T, Allocator_base > &)=default
 
allocator< T, Allocator_base > & operator=(allocator< T, Allocator_base > &&)=default
 
T value_type
Definition: ut0new.h:2189
 
allocator(const allocator< U, Allocator_base > &other)
Copy-construct a new instance of allocator with type T by using existing instance of allocator constr...
Definition: ut0new.h:2220
 
pointer allocate(size_type n_elements, const_pointer hint=nullptr)
Allocates chunk of memory that can hold n_elements objects of type T.
Definition: ut0new.h:2263
 
allocator(PSI_memory_key key)
Explicit constructor.
Definition: ut0new.h:2204
 
size_type max_size() const
Return the maximum number of objects that can be allocated by this allocator.
Definition: ut0new.h:2246
 
const T & const_reference
Definition: ut0new.h:2188
 
allocator(allocator< T, Allocator_base > &&)=default
 
allocator()
Default constructor, use mem_key_std.
Definition: ut0new.h:2199
 
bool operator!=(const ut::allocator< T, Allocator_base > &other) const
Non-equality of allocators instantiated with same types T.
Definition: ut0new.h:2238
 
allocator(const allocator< T, Allocator_base > &)=default
 
size_t size_type
Definition: ut0new.h:2190
 
bool operator==(const ut::allocator< T, Allocator_base > &) const
Equality of allocators instantiated with same types T.
Definition: ut0new.h:2234
 
T * pointer
Definition: ut0new.h:2185
 
Implementation bits and pieces of include/ut0new.h.
 
unsigned int PSI_memory_key
Instrumented memory key.
Definition: psi_memory_bits.h:49
 
#define T
Definition: jit_executor_value.cc:373
 
#define realloc(P, A)
Definition: lexyy.cc:916
 
#define free(A)
Definition: lexyy.cc:915
 
A macro that gives FILE without the directory name (e.g.
 
constexpr bool unlikely(bool expr)
Definition: my_compiler.h:58
 
static int count
Definition: myisam_ftdump.cc:45
 
Instrumentation helpers for memory allocation.
 
std::atomic< Type > N
Definition: ut0counter.h:225
 
Definition: fts0fts.cc:237
 
std::string_view Key
The key type for the hash structure in HashJoinRowBuffer.
Definition: hash_join_buffer.h:108
 
bool index(const std::string &value, const String &search_for, uint32_t *idx)
Definition: contains.h:76
 
Definition: http_server_component.cc:34
 
ValueType value(const std::optional< ValueType > &v)
Definition: gtid.h:83
 
ValueType max(X &&first)
Definition: gtid.h:103
 
size_t size(const char *const c)
Definition: base64.h:46
 
Alignment
Enum class describing alignment-requirements.
Definition: lock_free_type.h:39
 
constexpr bool is_unbounded_array_v< T[]>
Definition: ut0new.h:2292
 
typename select_alloc_impl< Pfs_memory_instrumentation_on >::type select_alloc_impl_t
Just a small helper type which saves us some keystrokes.
Definition: aligned_alloc.h:691
 
constexpr size_t bounded_array_size_v< T[N]>
Definition: ut0new.h:2302
 
constexpr bool is_bounded_array_v
Definition: ut0new.h:2295
 
constexpr bool is_unbounded_array_v
Definition: ut0new.h:2290
 
typename select_large_page_alloc_impl< Pfs_memory_instrumentation_on >::type select_large_page_alloc_impl_t
Just a small helper type which saves us some keystrokes.
Definition: large_page_alloc.h:367
 
typename select_page_alloc_impl< Pfs_memory_instrumentation_on >::type select_page_alloc_impl_t
Just a small helper type which saves us some keystrokes.
Definition: page_alloc.h:428
 
typename select_malloc_impl< Pfs_memory_instrumentation_on, Array_specialization >::type select_malloc_impl_t
Just a small helper type which saves us some keystrokes.
Definition: alloc.h:429
 
constexpr size_t bounded_array_size_v
Definition: ut0new.h:2300
 
constexpr bool is_bounded_array_v< T[N]>
Definition: ut0new.h:2297
 
This file contains a set of libraries providing overloads for regular dynamic allocation routines whi...
Definition: aligned_alloc.h:48
 
void * aligned_zalloc_withkey(PSI_memory_key_t key, std::size_t size, std::size_t alignment) noexcept
Dynamically allocates zero-initialized storage of given size and at the address aligned to the reques...
Definition: ut0new.h:1528
 
std::unordered_map< Key, Value, Hash, Key_equal, ut::allocator< std::pair< const Key, Value > > > unordered_map
Definition: ut0new.h:2904
 
size_t pfs_overhead() noexcept
Returns number of bytes that ut::malloc_*, ut::zalloc_*, ut::realloc_* and ut::new_* variants will be...
Definition: ut0new.h:1127
 
T * aligned_new_withkey(PSI_memory_key_t key, std::size_t alignment, Args &&...args)
Dynamically allocates storage for an object of type T at address aligned to the requested alignment.
Definition: ut0new.h:1596
 
void * zalloc_withkey(PSI_memory_key_t key, std::size_t size) noexcept
Dynamically allocates zero-initialized storage of given size.
Definition: ut0new.h:634
 
void * malloc_withkey(PSI_memory_key_t key, std::size_t size) noexcept
Dynamically allocates storage of given size.
Definition: ut0new.h:598
 
void * aligned_zalloc(std::size_t size, std::size_t alignment) noexcept
Dynamically allocates zero-initialized storage of given size and at the address aligned to the reques...
Definition: ut0new.h:1551
 
void * malloc_large_page(std::size_t size) noexcept
Dynamically allocates memory backed up by large (huge) pages.
Definition: ut0new.h:1273
 
std::unordered_set< Key, std::hash< Key >, std::equal_to< Key >, ut::allocator< Key > > unordered_set
Definition: ut0new.h:2893
 
std::basic_ostringstream< char, std::char_traits< char >, ut::allocator< char > > ostringstream
Specialization of basic_ostringstream which uses ut::allocator.
Definition: ut0new.h:2876
 
allocation_low_level_info page_low_level_info(void *ptr) noexcept
Retrieves the pointer and size of the allocation provided by the OS.
Definition: ut0new.h:1211
 
std::vector< T, ut::allocator< T > > vector
Specialization of vector which uses allocator.
Definition: ut0new.h:2880
 
void aligned_delete_arr(T *ptr) noexcept
Releases storage which has been dynamically allocated through any of the aligned_new_arr_*() variants...
Definition: ut0new.h:1897
 
std::enable_if_t<!std::is_array< T >::value, std::unique_ptr< T, Deleter > > make_unique(Args &&...args)
Dynamically allocates storage for an object of type T.
Definition: ut0new.h:2343
 
void delete_(T *ptr) noexcept
Releases storage which has been dynamically allocated through any of the ut::new*() variants.
Definition: ut0new.h:811
 
std::set< Key, Compare, ut::allocator< Key > > set
Specialization of set which uses ut_allocator.
Definition: ut0new.h:2888
 
void * malloc_page(std::size_t size) noexcept
Dynamically allocates system page-aligned storage of given size.
Definition: ut0new.h:1177
 
void * realloc_withkey(PSI_memory_key_t key, void *ptr, std::size_t size) noexcept
Upsizes or downsizes already dynamically allocated storage to the new size.
Definition: ut0new.h:677
 
void delete_arr(T *ptr) noexcept
Releases storage which has been dynamically allocated through any of the ut::new_arr*() variants.
Definition: ut0new.h:1111
 
std::enable_if_t<!std::is_array< T >::value, std::unique_ptr< T, Deleter > > make_unique_aligned(size_t alignment, Args &&...args)
Dynamically allocates storage for an object of type T at address aligned to the requested alignment.
Definition: ut0new.h:2465
 
T * aligned_new_arr_withkey(PSI_memory_key_t key, std::size_t alignment, Args &&...args)
Dynamically allocates storage for an array of T's at address aligned to the requested alignment.
Definition: ut0new.h:1717
 
allocation_low_level_info large_page_low_level_info(void *ptr) noexcept
Retrieves the pointer and size of the allocation provided by the OS.
Definition: ut0new.h:1309
 
bool free_page(void *ptr) noexcept
Releases storage which has been dynamically allocated through any of the ut::malloc_page*() variants.
Definition: ut0new.h:1227
 
void * malloc_large_page_withkey(PSI_memory_key_t key, std::size_t size) noexcept
Dynamically allocates memory backed up by large (huge) pages.
Definition: ut0new.h:1249
 
size_t large_page_allocation_size(void *ptr) noexcept
Retrieves the total amount of bytes that are available for application code to use.
Definition: ut0new.h:1295
 
std::map< Key, Value, Compare, ut::allocator< std::pair< const Key, Value > > > map
Specialization of map which uses ut_allocator.
Definition: ut0new.h:2898
 
std::enable_if_t<!std::is_array< T >::value, std::shared_ptr< T > > make_shared_aligned(size_t alignment, Args &&...args)
Dynamically allocates storage for an object of type T at address aligned to the requested alignment.
Definition: ut0new.h:2736
 
void * malloc(std::size_t size) noexcept
Dynamically allocates storage of given size.
Definition: ut0new.h:619
 
std::conditional_t< !std::is_array< T >::value, std::unique_ptr< T, detail::Deleter< T > >, std::conditional_t< detail::is_unbounded_array_v< T >, std::unique_ptr< T, detail::Array_deleter< std::remove_extent_t< T > > >, void > > unique_ptr
The following is a common type that is returned by all the ut::make_unique (non-aligned) specializati...
Definition: ut0new.h:2444
 
T * aligned_new_arr(std::size_t alignment, Args &&...args)
Dynamically allocates storage for an array of T's at address aligned to the requested alignment.
Definition: ut0new.h:1840
 
T * new_(Args &&...args)
Dynamically allocates storage for an object of type T.
Definition: ut0new.h:796
 
std::list< T, ut::allocator< T > > list
Specialization of list which uses ut_allocator.
Definition: ut0new.h:2884
 
void free(void *ptr) noexcept
Releases storage which has been dynamically allocated through any of the ut::malloc*(),...
Definition: ut0new.h:719
 
PSI_memory_key_t make_psi_memory_key(PSI_memory_key key)
Convenience helper function to create type-safe representation of PSI_memory_key.
Definition: ut0new.h:190
 
void * aligned_alloc_withkey(PSI_memory_key_t key, std::size_t size, std::size_t alignment) noexcept
Dynamically allocates storage of given size and at the address aligned to the requested alignment.
Definition: ut0new.h:1486
 
constexpr bool WITH_PFS_MEMORY
Definition: ut0new.h:582
 
void aligned_delete(T *ptr) noexcept
Releases storage which has been dynamically allocated through any of the aligned_new_*() variants.
Definition: ut0new.h:1652
 
void * malloc_page_withkey(PSI_memory_key_t key, std::size_t size) noexcept
Dynamically allocates system page-aligned storage of given size.
Definition: ut0new.h:1150
 
std::conditional_t< !std::is_array< T >::value, std::unique_ptr< T, detail::Aligned_deleter< T > >, std::conditional_t< detail::is_unbounded_array_v< T >, std::unique_ptr< T, detail::Aligned_array_deleter< std::remove_extent_t< T > > >, void > > unique_ptr_aligned
The following is a common type that is returned by all the ut::make_unique_aligned (non-aligned) spec...
Definition: ut0new.h:2578
 
void * realloc(void *ptr, std::size_t size) noexcept
Upsizes or downsizes already dynamically allocated storage to the new size.
Definition: ut0new.h:705
 
T * new_arr_withkey(PSI_memory_key_t key, Args &&...args)
Dynamically allocates storage for an array of T's.
Definition: ut0new.h:876
 
T * new_withkey(PSI_memory_key_t key, Args &&...args)
Dynamically allocates storage for an object of type T.
Definition: ut0new.h:753
 
size_t page_allocation_size(void *ptr) noexcept
Retrieves the total amount of bytes that are available for application code to use.
Definition: ut0new.h:1197
 
bool free_large_page(void *ptr) noexcept
Releases storage which has been dynamically allocated through any of the ut::malloc_large_page*() var...
Definition: ut0new.h:1326
 
std::enable_if_t<!std::is_array< T >::value, std::shared_ptr< T > > make_shared(Args &&...args)
Dynamically allocates storage for an object of type T.
Definition: ut0new.h:2596
 
void aligned_free(void *ptr) noexcept
Releases storage which has been dynamically allocated through any of the aligned_alloc_*() or aligned...
Definition: ut0new.h:1565
 
void * aligned_alloc(std::size_t size, std::size_t alignment) noexcept
Dynamically allocates storage of given size and at the address aligned to the requested alignment.
Definition: ut0new.h:1509
 
T * new_arr(Args &&...args)
Dynamically allocates storage for an array of T's.
Definition: ut0new.h:961
 
T * aligned_new(std::size_t alignment, Args &&...args)
Dynamically allocates storage for an object of type T at address aligned to the requested alignment.
Definition: ut0new.h:1637
 
void * zalloc(std::size_t size) noexcept
Dynamically allocates zero-initialized storage of given size.
Definition: ut0new.h:655
 
The interface to the operating system process control primitives.
 
bool os_use_large_pages
Whether to use large pages in the buffer pool.
Definition: os0proc.cc:51
 
The interface to the operating system process and thread control primitives.
 
Performance schema instrumentation interface.
 
Performance schema instrumentation interface.
 
required string key
Definition: replication_asynchronous_connection_failover.proto:60
 
static MEM_ROOT mem
Definition: sql_servers.cc:100
 
Memory instrument information.
Definition: psi_memory_bits.h:58
 
static constexpr int value
Definition: ut0new.h:560
 
Light-weight and type-safe wrapper which serves a purpose of being able to select proper ut::new_arr*...
Definition: ut0new.h:983
 
Count(size_t count)
Definition: ut0new.h:984
 
size_t m_count
Definition: ut0new.h:986
 
size_t operator()() const
Definition: ut0new.h:985
 
Light-weight and type-safe wrapper around the PSI_memory_key that eliminates the possibility of intro...
Definition: ut0new.h:178
 
PSI_memory_key operator()() const
Definition: ut0new.h:180
 
PSI_memory_key m_key
Definition: ut0new.h:181
 
PSI_memory_key_t(PSI_memory_key key)
Definition: ut0new.h:179
 
Can be used to extract pointer and size of the allocation provided by the OS.
Definition: ut0new.h:140
 
void * base_ptr
A pointer returned by the OS allocator.
Definition: ut0new.h:142
 
size_t allocation_size
The size of allocation that OS performed.
Definition: ut0new.h:144
 
Definition: ut0new.h:2229
 
Small wrapper which utilizes SFINAE to dispatch the call to appropriate aligned allocator implementat...
Definition: aligned_alloc.h:697
 
Definition: ut0new.h:2320
 
void operator()(T *ptr)
Definition: ut0new.h:2321
 
Definition: ut0new.h:2315
 
void operator()(T *ptr)
Definition: ut0new.h:2316
 
Small wrapper which utilizes SFINAE to dispatch the call to appropriate allocator implementation.
Definition: alloc.h:435
 
Definition: ut0new.h:2310
 
void operator()(T *ptr)
Definition: ut0new.h:2311
 
Definition: ut0new.h:2305
 
void operator()(T *ptr)
Definition: ut0new.h:2306
 
Small wrapper which utilizes SFINAE to dispatch the call to appropriate aligned allocator implementat...
Definition: large_page_alloc.h:373
 
Small wrapper which utilizes SFINAE to dispatch the call to appropriate aligned allocator implementat...
Definition: page_alloc.h:434
 
Definition: ut0new.h:2133
 
void * allocate_impl(size_t n_bytes)
Definition: ut0new.h:2142
 
const PSI_memory_key m_key
Definition: ut0new.h:2147
 
PSI_memory_key get_mem_key() const
Definition: ut0new.h:2140
 
allocator_base_pfs(PSI_memory_key key)
Definition: ut0new.h:2134
 
allocator_base_pfs(const allocator_base_pfs< U > &other)
Definition: ut0new.h:2137
 
Definition: ut0new.h:2123
 
allocator_base(const allocator_base< U > &)
Definition: ut0new.h:2127
 
void * allocate_impl(size_t n_bytes)
Definition: ut0new.h:2129
 
allocator_base(PSI_memory_key)
Definition: ut0new.h:2124
 
Definition: ut0new.h:1333
 
Version control for database, common definitions, and include files.
 
#define UT_ARR_SIZE(a)
Definition: univ.i:524
 
Utilities for byte operations.
 
Utilities related to CPU cache.
 
Debug utilities for Innobase.
 
#define ut_ad(EXPR)
Debug assertion.
Definition: ut0dbg.h:105
 
#define ut_a(EXPR)
Abort execution if EXPR does not evaluate to nonzero.
Definition: ut0dbg.h:93
 
PSI_memory_key mem_key_ddl
Definition: ut0new.cc:61
 
void ut_new_boot_safe()
Setup the internal objects needed for ut::*_withkey() to operate.
Definition: ut0new.cc:139
 
PSI_memory_key mem_key_redo_log_archive_queue_element
 
PSI_memory_key mem_key_dict_stats_index_map_t
Definition: ut0new.cc:54
 
PSI_memory_key mem_key_buf_stat_per_index_t
Definition: ut0new.cc:50
 
PSI_memory_key mem_key_other
Definition: ut0new.cc:58
 
PSI_memory_info pfs_info_auto[n_auto]
 
PSI_memory_key auto_event_keys[n_auto]
 
constexpr int ut_new_get_key_by_base_file(const char *file, size_t len)
Retrieve a memory key (registered with PFS), given the file name of the caller.
Definition: ut0new.h:538
 
PSI_memory_key mem_key_fil_space_t
Definition: ut0new.cc:56
 
constexpr bool ut_string_begins_with(const char *a, const char *b, size_t b_len)
gcc 5 fails to evaluate costexprs at compile time.
Definition: ut0new.h:512
 
PSI_memory_key mem_key_lock_sys
Definition: ut0new.cc:57
 
constexpr int ut_new_get_key_by_file(const char *file)
Retrieve a memory key (registered with PFS), given the file name of the caller.
Definition: ut0new.h:551
 
PSI_memory_key mem_key_ahi
Keys for registering allocations with performance schema.
Definition: ut0new.cc:47
 
void ut_new_boot()
Setup the internal objects needed for ut::*_withkey() to operate.
Definition: ut0new.cc:120
 
PSI_memory_key mem_key_partitioning
Definition: ut0new.cc:59
 
PSI_memory_key mem_key_archive
Definition: ut0new.cc:48
 
static constexpr const char * auto_event_names[]
List of filenames that allocate memory and are instrumented via PFS.
Definition: ut0new.h:247
 
PSI_memory_key mem_key_std
Definition: ut0new.cc:62
 
const size_t alloc_max_retries
Maximum number of retries to allocate memory.
Definition: ut0new.cc:43
 
PSI_memory_key mem_key_row_log_buf
Definition: ut0new.cc:60
 
PSI_memory_key mem_key_trx_sys_t_rw_trx_ids
Definition: ut0new.cc:63
 
static constexpr size_t n_auto
Definition: ut0new.h:449
 
PSI_memory_key mem_key_buf_buf_pool
Definition: ut0new.cc:49
 
constexpr size_t ut_len_without_extension(const char *file)
Find the length of the filename without its file extension.
Definition: ut0new.h:525
 
PSI_memory_key mem_key_undo_spaces
Definition: ut0new.cc:64
 
PSI_memory_key mem_key_ut_lock_free_hash_t
Definition: ut0new.cc:65
 
PSI_memory_key mem_key_clone
Memory key for clone.
Definition: ut0new.cc:52
 
PSI_memory_key mem_key_dict_stats_n_diff_on_level
Definition: ut0new.cc:55
 
PSI_memory_key mem_key_dict_stats_bg_recalc_pool_t
Definition: ut0new.cc:53
 
#define PSI_NOT_INSTRUMENTED
Definition: validate_password_imp.cc:44