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			261 lines
		
	
	
	
		
			6.8 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			261 lines
		
	
	
	
		
			6.8 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
/*
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   Copyright (c) 2000, 2013, Oracle and/or its affiliates
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   Copyright (c) 2009, 2014, SkySQL Ab
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   This program is free software; you can redistribute it and/or modify
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   it under the terms of the GNU General Public License as published by
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   the Free Software Foundation; version 2 of the License.
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   This program is distributed in the hope that it will be useful,
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   but WITHOUT ANY WARRANTY; without even the implied warranty of
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   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
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   GNU General Public License for more details.
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   You should have received a copy of the GNU General Public License
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   along with this program; if not, write to the Free Software
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   Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1335  USA */
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#include "mysys_priv.h"
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#include "mysys_err.h"
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#include <m_string.h>
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struct my_memory_header
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{
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  PSI_thread *m_owner;
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  size_t m_size;
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  PSI_memory_key m_key;
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};
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typedef struct my_memory_header my_memory_header;
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#define HEADER_SIZE 24
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#define USER_TO_HEADER(P) ((my_memory_header*)((char *)(P) - HEADER_SIZE))
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#define HEADER_TO_USER(P) ((char*)(P) + HEADER_SIZE)
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/**
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  Inform application that memory usage has changed
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  @param size	Size of memory segment allocated or freed
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  @param flag   1 if thread specific (allocated by MY_THREAD_SPECIFIC),
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                0 if system specific.
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  The type os size is long long, to be able to handle negative numbers to
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  decrement the memory usage
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  @return 0 - ok
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          1 - failure, abort the allocation
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*/
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static void dummy(long long size __attribute__((unused)),
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                  my_bool is_thread_specific __attribute__((unused)))
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{}
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MALLOC_SIZE_CB update_malloc_size= dummy;
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void set_malloc_size_cb(MALLOC_SIZE_CB func)
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{
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  update_malloc_size= func;
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}
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/**
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  Allocate a sized block of memory.
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  @param key    Key to register instrumented memory
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  @param size   The size of the memory block in bytes.
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  @param flags  Failure action modifiers (bitmasks).
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  @return A pointer to the allocated memory block, or NULL on failure.
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*/
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ATTRIBUTE_MALLOC
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void *my_malloc(PSI_memory_key key, size_t size, myf my_flags)
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{
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  my_memory_header *mh;
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  void *point;
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  DBUG_ENTER("my_malloc");
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  DBUG_PRINT("my",("size: %zu flags: %lu", size, my_flags));
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  compile_time_assert(sizeof(my_memory_header) <= HEADER_SIZE);
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  if (!(my_flags & (MY_WME | MY_FAE)))
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    my_flags|= my_global_flags;
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  /* Safety */
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  if (!size)
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    size=1;
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  if (size > SIZE_T_MAX - 1024L*1024L*16L)           /* Wrong call */
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    DBUG_RETURN(0);
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  /* We have to align size as we store MY_THREAD_SPECIFIC flag in the LSB */
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  size= ALIGN_SIZE(size);
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  if (DBUG_IF("simulate_out_of_memory"))
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    mh= NULL;
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  else
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    mh= (my_memory_header*) sf_malloc(size + HEADER_SIZE, my_flags);
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  if (mh == NULL)
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  {
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    my_errno=errno;
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    if (my_flags & MY_FAE)
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      error_handler_hook=fatal_error_handler_hook;
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    if (my_flags & (MY_FAE+MY_WME))
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      my_error(EE_OUTOFMEMORY, MYF(ME_BELL+ME_ERROR_LOG+ME_FATAL),size);
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    if (my_flags & MY_FAE)
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      abort();
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    point= NULL;
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  }
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  else
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  {
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    int flag= MY_TEST(my_flags & MY_THREAD_SPECIFIC);
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    mh->m_size= size | flag;
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    mh->m_key= PSI_CALL_memory_alloc(key, size, & mh->m_owner);
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    if (update_malloc_size)
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    {
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      mh->m_size|=2;
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      update_malloc_size(size + HEADER_SIZE, flag);
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    }
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    point= HEADER_TO_USER(mh);
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    if (my_flags & MY_ZEROFILL)
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      bzero(point, size);
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    else
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      TRASH_ALLOC(point, size);
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  }
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  DBUG_PRINT("exit",("ptr: %p", point));
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  DBUG_RETURN(point);
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}
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/**
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   @brief wrapper around realloc()
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   @param  key             key to register instrumented memory
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   @param  old_point       pointer to currently allocated area
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   @param  size            new size requested, must be >0
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   @param  my_flags        flags
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   @note if size==0 realloc() may return NULL; my_realloc() treats this as an
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   error which is not the intention of realloc()
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*/
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void *my_realloc(PSI_memory_key key, void *old_point, size_t size, myf my_flags)
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{
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  my_memory_header *old_mh, *mh;
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  void *point;
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  size_t old_size;
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  my_bool old_flags;
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  DBUG_ENTER("my_realloc");
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  DBUG_PRINT("my",("ptr: %p size: %zu flags: %lu", old_point, size, my_flags));
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  DBUG_ASSERT(size > 0);
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  if (!old_point && (my_flags & MY_ALLOW_ZERO_PTR))
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    DBUG_RETURN(my_malloc(key, size, my_flags));
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  old_mh= USER_TO_HEADER(old_point);
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  old_size= old_mh->m_size & ~3;
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  old_flags= old_mh->m_size & 3;
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  DBUG_ASSERT(old_mh->m_key == key || old_mh->m_key == PSI_NOT_INSTRUMENTED);
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  DBUG_ASSERT((old_flags & 1) == MY_TEST(my_flags & MY_THREAD_SPECIFIC));
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  size= ALIGN_SIZE(size);
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  mh= sf_realloc(old_mh, size + HEADER_SIZE, my_flags);
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  if (mh == NULL)
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  {
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    if (size < old_size)
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      DBUG_RETURN(old_point);
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    my_errno=errno;
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    if (my_flags & MY_FREE_ON_ERROR)
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    {
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      /* my_free will take care of size accounting */
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      my_free(old_point);
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      old_point= 0;
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    }
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    if (my_flags & (MY_FAE+MY_WME))
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      my_error(EE_OUTOFMEMORY, MYF(ME_BELL + ME_FATAL), size);
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    point= NULL;
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  }
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  else
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  {
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    mh->m_size= size | old_flags;
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    mh->m_key= PSI_CALL_memory_realloc(key, old_size, size, & mh->m_owner);
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    if (update_malloc_size && (old_flags & 2))
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      update_malloc_size((longlong)size - (longlong)old_size, old_flags & 1);
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    point= HEADER_TO_USER(mh);
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  }
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  DBUG_PRINT("exit",("ptr: %p", point));
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  DBUG_RETURN(point);
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}
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/**
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  Free memory allocated with my_malloc.
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  @param ptr Pointer to the memory allocated by my_malloc.
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*/
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void my_free(void *ptr)
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{
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  my_memory_header *mh;
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  size_t old_size;
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  my_bool old_flags;
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  DBUG_ENTER("my_free");
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  DBUG_PRINT("my",("ptr: %p", ptr));
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  if (ptr == NULL)
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    DBUG_VOID_RETURN;
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  mh= USER_TO_HEADER(ptr);
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  old_size= mh->m_size & ~3;
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  old_flags= mh->m_size & 3;
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  PSI_CALL_memory_free(mh->m_key, old_size, mh->m_owner);
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  if (update_malloc_size && (old_flags & 2))
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    update_malloc_size(- (longlong) old_size - HEADER_SIZE, old_flags & 1);
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#ifndef SAFEMALLOC
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  /*
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    Trash memory if not safemalloc. We don't have to do this if safemalloc
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    is used as safemalloc will also do trashing
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  */
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  TRASH_FREE(ptr, old_size);
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#endif
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  sf_free(mh);
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  DBUG_VOID_RETURN;
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}
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void *my_memdup(PSI_memory_key key, const void *from, size_t length, myf my_flags)
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{
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  void *ptr;
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  DBUG_ENTER("my_memdup");
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  if ((ptr= my_malloc(key, length,my_flags)) != 0)
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    memcpy(ptr, from, length);
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  DBUG_RETURN(ptr);
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}
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char *my_strdup(PSI_memory_key key, const char *from, myf my_flags)
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{
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  char *ptr;
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  size_t length= strlen(from)+1;
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  DBUG_ENTER("my_strdup");
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  if ((ptr= (char*) my_malloc(key, length, my_flags)))
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    memcpy(ptr, from, length);
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  DBUG_RETURN(ptr);
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}
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char *my_strndup(PSI_memory_key key, const char *from, size_t length, myf my_flags)
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{
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  char *ptr;
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  DBUG_ENTER("my_strndup");
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  if ((ptr= (char*) my_malloc(key, length+1, my_flags)))
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  {
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    memcpy(ptr, from, length);
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    ptr[length]= 0;
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  }
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  DBUG_RETURN(ptr);
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}
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