FreeRDP/winpr/libwinpr/crt/alignment.c

261 lines
6.2 KiB
C

/**
* WinPR: Windows Portable Runtime
* Data Alignment
*
* Copyright 2012 Marc-Andre Moreau <marcandre.moreau@gmail.com>
*
* Licensed under the Apache License, Version 2.0 (the "License");
* you may not use this file except in compliance with the License.
* You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*/
#include <stdlib.h>
#include <winpr/config.h>
#include <winpr/crt.h>
/* Data Alignment: http://msdn.microsoft.com/en-us/library/fs9stz4e/ */
#if !defined(_WIN32) || (defined(__MINGW32__) && !defined(_UCRT))
#include <stdint.h>
#include <limits.h>
#define WINPR_ALIGNED_MEM_SIGNATURE 0x0BA0BAB
#define WINPR_ALIGNED_MEM_STRUCT_FROM_PTR(_memptr) \
(WINPR_ALIGNED_MEM*)(((size_t)(((BYTE*)(_memptr)) - sizeof(WINPR_ALIGNED_MEM))))
#include <stdlib.h>
#include "../log.h"
#define TAG WINPR_TAG("crt")
struct winpr_aligned_mem
{
UINT32 sig;
size_t size;
void* base_addr;
};
typedef struct winpr_aligned_mem WINPR_ALIGNED_MEM;
void* winpr_aligned_malloc(size_t size, size_t alignment)
{
return winpr_aligned_offset_malloc(size, alignment, 0);
}
void* winpr_aligned_calloc(size_t count, size_t size, size_t alignment)
{
return winpr_aligned_recalloc(NULL, count, size, alignment);
}
void* winpr_aligned_realloc(void* memblock, size_t size, size_t alignment)
{
return winpr_aligned_offset_realloc(memblock, size, alignment, 0);
}
void* winpr_aligned_recalloc(void* memblock, size_t num, size_t size, size_t alignment)
{
return winpr_aligned_offset_recalloc(memblock, num, size, alignment, 0);
}
void* winpr_aligned_offset_malloc(size_t size, size_t alignment, size_t offset)
{
size_t header = 0;
size_t alignsize = 0;
uintptr_t basesize = 0;
void* base = NULL;
void* memblock = NULL;
WINPR_ALIGNED_MEM* pMem = NULL;
/* alignment must be a power of 2 */
if (alignment % 2 == 1)
return NULL;
/* offset must be less than size */
if (offset >= size)
return NULL;
/* minimum alignment is pointer size */
if (alignment < sizeof(void*))
alignment = sizeof(void*);
if (alignment > SIZE_MAX - sizeof(WINPR_ALIGNED_MEM))
return NULL;
header = sizeof(WINPR_ALIGNED_MEM) + alignment;
if (size > SIZE_MAX - header)
return NULL;
alignsize = size + header;
/* malloc size + alignment to make sure we can align afterwards */
#if defined(_ISOC11_SOURCE)
base = aligned_alloc(alignment, alignsize);
#elif defined(_POSIX_C_SOURCE) && (_POSIX_C_SOURCE >= 200112L) || (_XOPEN_SOURCE >= 600)
if (posix_memalign(&base, alignment, alignsize) != 0)
return NULL;
#else
base = malloc(alignsize);
#endif
if (!base)
return NULL;
basesize = (uintptr_t)base;
if ((offset > UINTPTR_MAX) || (header > UINTPTR_MAX - offset) ||
(basesize > UINTPTR_MAX - header - offset))
{
free(base);
return NULL;
}
memblock = (void*)(((basesize + header + offset) & ~(alignment - 1)) - offset);
pMem = WINPR_ALIGNED_MEM_STRUCT_FROM_PTR(memblock);
pMem->sig = WINPR_ALIGNED_MEM_SIGNATURE;
pMem->base_addr = base;
pMem->size = size;
return memblock;
}
void* winpr_aligned_offset_realloc(void* memblock, size_t size, size_t alignment, size_t offset)
{
size_t copySize = 0;
void* newMemblock = NULL;
WINPR_ALIGNED_MEM* pMem = NULL;
WINPR_ALIGNED_MEM* pNewMem = NULL;
if (!memblock)
return winpr_aligned_offset_malloc(size, alignment, offset);
pMem = WINPR_ALIGNED_MEM_STRUCT_FROM_PTR(memblock);
if (pMem->sig != WINPR_ALIGNED_MEM_SIGNATURE)
{
WLog_ERR(TAG,
"_aligned_offset_realloc: memory block was not allocated by _aligned_malloc!");
return NULL;
}
if (size == 0)
{
winpr_aligned_free(memblock);
return NULL;
}
newMemblock = winpr_aligned_offset_malloc(size, alignment, offset);
if (!newMemblock)
return NULL;
pNewMem = WINPR_ALIGNED_MEM_STRUCT_FROM_PTR(newMemblock);
copySize = (pNewMem->size < pMem->size) ? pNewMem->size : pMem->size;
CopyMemory(newMemblock, memblock, copySize);
winpr_aligned_free(memblock);
return newMemblock;
}
static INLINE size_t cMIN(size_t a, size_t b)
{
if (a > b)
return b;
return a;
}
void* winpr_aligned_offset_recalloc(void* memblock, size_t num, size_t size, size_t alignment,
size_t offset)
{
char* newMemblock = NULL;
WINPR_ALIGNED_MEM* pMem = NULL;
WINPR_ALIGNED_MEM* pNewMem = NULL;
if (!memblock)
{
newMemblock = winpr_aligned_offset_malloc(size * num, alignment, offset);
if (newMemblock)
{
pNewMem = WINPR_ALIGNED_MEM_STRUCT_FROM_PTR(newMemblock);
ZeroMemory(newMemblock, pNewMem->size);
}
return newMemblock;
}
pMem = WINPR_ALIGNED_MEM_STRUCT_FROM_PTR(memblock);
if (pMem->sig != WINPR_ALIGNED_MEM_SIGNATURE)
{
WLog_ERR(TAG,
"_aligned_offset_recalloc: memory block was not allocated by _aligned_malloc!");
goto fail;
}
if ((num == 0) || (size == 0))
goto fail;
if (pMem->size > (1ull * num * size) + alignment)
return memblock;
newMemblock = winpr_aligned_offset_malloc(size * num, alignment, offset);
if (!newMemblock)
goto fail;
pNewMem = WINPR_ALIGNED_MEM_STRUCT_FROM_PTR(newMemblock);
{
const size_t csize = cMIN(pMem->size, pNewMem->size);
memcpy(newMemblock, memblock, csize);
ZeroMemory(newMemblock + csize, pNewMem->size - csize);
}
fail:
winpr_aligned_free(memblock);
return newMemblock;
}
size_t winpr_aligned_msize(void* memblock, size_t alignment, size_t offset)
{
WINPR_ALIGNED_MEM* pMem = NULL;
if (!memblock)
return 0;
pMem = WINPR_ALIGNED_MEM_STRUCT_FROM_PTR(memblock);
if (pMem->sig != WINPR_ALIGNED_MEM_SIGNATURE)
{
WLog_ERR(TAG, "_aligned_msize: memory block was not allocated by _aligned_malloc!");
return 0;
}
return pMem->size;
}
void winpr_aligned_free(void* memblock)
{
WINPR_ALIGNED_MEM* pMem = NULL;
if (!memblock)
return;
pMem = WINPR_ALIGNED_MEM_STRUCT_FROM_PTR(memblock);
if (pMem->sig != WINPR_ALIGNED_MEM_SIGNATURE)
{
WLog_ERR(TAG, "_aligned_free: memory block was not allocated by _aligned_malloc!");
return;
}
free(pMem->base_addr);
}
#endif /* _WIN32 */