1 /* 2 * mem.c 3 * 4 * Copyright(c) 1998 - 2009 Texas Instruments. All rights reserved. 5 * All rights reserved. 6 * 7 * Redistribution and use in source and binary forms, with or without 8 * modification, are permitted provided that the following conditions 9 * are met: 10 * 11 * * Redistributions of source code must retain the above copyright 12 * notice, this list of conditions and the following disclaimer. 13 * * Redistributions in binary form must reproduce the above copyright 14 * notice, this list of conditions and the following disclaimer in 15 * the documentation and/or other materials provided with the 16 * distribution. 17 * * Neither the name Texas Instruments nor the names of its 18 * contributors may be used to endorse or promote products derived 19 * from this software without specific prior written permission. 20 * 21 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS 22 * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT 23 * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR 24 * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT 25 * OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, 26 * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT 27 * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, 28 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY 29 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 30 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE 31 * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 32 */ 33 34 #define __FILE_ID__ FILE_ID_129 35 #include "tidef.h" 36 #include "osApi.h" 37 38 39 #define MEM_BLOCK_START (('m'<<24) | ('e'<<16) | ('m'<<8) | 's') 40 #define MEM_BLOCK_END (('m'<<24) | ('e'<<16) | ('m'<<8) | 'e') 41 42 43 typedef struct 44 { 45 TI_HANDLE hOs; 46 TI_UINT32 uMaxAllocated; 47 TI_UINT32 uCurAllocated; 48 49 } TMemMng; 50 51 52 typedef struct 53 { 54 TI_UINT32 size; 55 TI_UINT32 signature; 56 57 } TMemBlock; 58 59 60 61 /**************************************************************************************** 62 * * 63 * OS Memory API * 64 * * 65 ****************************************************************************************/ 66 TI_HANDLE mem_Create (TI_HANDLE hOs) 67 { 68 TMemMng *pMemMng = (TMemMng *)os_memoryAlloc (hOs, sizeof(TMemMng)); 69 70 if (pMemMng != NULL) 71 { 72 pMemMng->hOs = hOs; 73 pMemMng->uCurAllocated = 0; 74 pMemMng->uMaxAllocated = 0; 75 } 76 77 return (TI_HANDLE)pMemMng; 78 } 79 80 81 TI_STATUS mem_Destroy (TI_HANDLE hMem) 82 { 83 TMemMng *pMemMng = (TMemMng *)hMem; 84 85 if (pMemMng != NULL) 86 { 87 os_memoryFree (pMemMng->hOs, (void *)pMemMng, sizeof(TMemMng)); 88 } 89 90 return TI_OK; 91 } 92 93 94 95 /**************************************************************************************** 96 * os_memoryAlloc() 97 **************************************************************************************** 98 DESCRIPTION: Allocates resident (nonpaged) system-space memory. 99 100 ARGUMENTS: OsContext - our adapter context. 101 Size - Specifies the size, in bytes, to be allocated. 102 103 RETURN: Pointer to the allocated memory. 104 NULL if there is insufficient memory available. 105 106 NOTES: With the call to vmalloc it is assumed that this function will 107 never be called in an interrupt context. vmalloc has the potential to 108 sleep the caller while waiting for memory to become available. 109 110 *****************************************************************************************/ 111 void* mem_Alloc (TI_HANDLE hMem, TI_UINT32 size) 112 { 113 TMemMng *pMemMng = (TMemMng *)hMem; 114 TMemBlock *pMemBlock; 115 TI_UINT32 total = size + sizeof(TMemBlock) + sizeof(TI_UINT32); 116 117 #ifdef TI_MEM_ALLOC_TRACE 118 os_printf ("mem_Alloc(0x%p, %lu) : %u\n", hMem, size, uTotalSize); 119 #endif 120 121 pMemBlock = (TMemBlock *) os_memoryAlloc (pMemMng->hOs, total); 122 pMemBlock->size = size; 123 pMemBlock->signature = MEM_BLOCK_START; 124 *(TI_UINT32 *)((TI_UINT8 *)pMemBlock + total - sizeof(TI_UINT32)) = MEM_BLOCK_END; 125 126 pMemMng->uCurAllocated += total; 127 if (pMemMng->uMaxAllocated < pMemMng->uCurAllocated) 128 { 129 pMemMng->uMaxAllocated = pMemMng->uCurAllocated; 130 } 131 132 return (void*)((TI_UINT8 *)pMemBlock + sizeof(TMemBlock)); 133 } 134 135 136 /**************************************************************************************** 137 * os_memoryCAlloc() 138 **************************************************************************************** 139 DESCRIPTION: Allocates an array in memory with elements initialized to 0. 140 141 ARGUMENTS: OsContext - our adapter context. 142 Number - Number of elements 143 Size - Length in bytes of each element 144 145 RETURN: None 146 147 NOTES: 148 *****************************************************************************************/ 149 void* mem_Calloc (TI_HANDLE hMem, TI_UINT32 number, TI_UINT32 size) 150 { 151 TMemMng *pMemMng = (TMemMng *)hMem; 152 void *ptr; 153 TI_UINT32 total; 154 155 total = number * size; 156 157 #ifdef TI_MEM_ALLOC_TRACE 158 os_printf ("os_memoryCAlloc(%u, %u) : %u\n", number, size, total); 159 #endif 160 161 ptr = mem_Alloc (hMem, total); 162 163 if (ptr != NULL) 164 { 165 os_memorySet (pMemMng->hOs, ptr, 0, total); 166 } 167 168 return ptr; 169 } 170 171 172 173 /**************************************************************************************** 174 * os_memoryFree() 175 **************************************************************************************** 176 DESCRIPTION: This function releases a block of memory previously allocated with the 177 os_memoryAlloc function. 178 179 180 ARGUMENTS: OsContext - our adapter context. 181 pMemPtr - Pointer to the base virtual address of the allocated memory. 182 This address was returned by the os_memoryAlloc function. 183 Size - Specifies the size, in bytes, of the memory block to be released. 184 This parameter must be identical to the Length that was passed to 185 os_memoryAlloc. 186 187 RETURN: None 188 189 NOTES: 190 *****************************************************************************************/ 191 void mem_Free (TI_HANDLE hMem, void* ptr, TI_UINT32 size) 192 { 193 TMemMng *pMemMng = (TMemMng *)hMem; 194 TMemBlock *pMemBlock = (TMemBlock *)((TI_UINT8 *)ptr - sizeof(TMemBlock)); 195 196 #ifdef TI_MEM_ALLOC_TRACE 197 os_printf ("os_memoryFree(%p, %u)\n", ptr, size); 198 #endif 199 200 if (pMemBlock->signature != MEM_BLOCK_START) 201 { 202 #ifdef TI_MEM_ALLOC_TRACE 203 os_printf ("os_memoryFree: memory block signature is incorrect - 0x%x\n", pMemBlock->signature); 204 #endif 205 } 206 207 else 208 { 209 *(TI_UINT8 *)(&pMemBlock->signature) = '~'; 210 if (*(TI_UINT32 *)((TI_UINT8 *)pMemBlock + pMemBlock->size + sizeof(TMemBlock)) != MEM_BLOCK_END) 211 { 212 #ifdef TI_MEM_ALLOC_TRACE 213 os_printf ("os_memoryFree: memory block corruption, size - %u\n", pMemBlock->size); 214 #endif 215 } 216 217 os_memoryFree (pMemMng->hOs, pMemBlock, pMemBlock->signature + sizeof(TMemBlock) + sizeof(TI_UINT32)); 218 219 pMemMng->uCurAllocated -= size + sizeof(TMemBlock) + sizeof(TI_UINT32); 220 221 if ((int)pMemMng->uCurAllocated < 0) 222 { 223 #ifdef TI_MEM_ALLOC_TRACE 224 os_printf ("os_memoryFree: memory heap allocation calculation corrupted, size=%u, current=%u\n", 225 size, drv->cur_heap_bytes_allocated); 226 #endif 227 pMemMng->uCurAllocated = 0; 228 } 229 } 230 } 231