| 1 | /* |
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| 2 | * malloc.h - User space memory allocator implementation. |
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| 3 | * |
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| 4 | * Author Alain Greiner (2016,2017) |
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| 5 | * |
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| 6 | * Copyright (c) UPMC Sorbonne Universites |
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| 7 | * |
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| 8 | * This file is part of ALMOS-MKH. |
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| 9 | * |
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| 10 | * ALMOS-MKH is free software; you can redistribute it and/or modify it |
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| 11 | * under the terms of the GNU General Public License as published by |
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| 12 | * the Free Software Foundation; version 2.0 of the License. |
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| 13 | * |
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| 14 | * ALMOS-MKH is distributed in the hope that it will be useful, but |
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| 15 | * WITHOUT ANY WARRANTY; without even the implied warranty of |
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| 16 | * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU |
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| 17 | * General Public License for more details. |
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| 18 | * |
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| 19 | * You should have received a copy of the GNU General Public License |
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| 20 | * along with ALMOS-MKH; if not, write to the Free Software Foundation, |
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| 21 | * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA |
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| 22 | */ |
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| 23 | |
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| 24 | #include <nostdio.h> |
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| 25 | #include <stdlib.h> |
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| 26 | #include <stdio.h> |
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| 27 | #include <malloc.h> |
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| 28 | #include <pthread.h> |
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| 29 | |
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| 30 | #define MALLOC_DEBUG 0 |
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| 31 | |
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| 32 | ///////////////////////////////////////////////////////////////////////////////////////// |
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| 33 | // Global variable defining the allocator array (one per cluster) |
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| 34 | // This array (about 16 Kbytes ) will be stored in the data segment |
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| 35 | // of any application linked with this malloc libray. |
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| 36 | ///////////////////////////////////////////////////////////////////////////////////////// |
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| 37 | |
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| 38 | malloc_store_t store[MALLOC_MAX_CLUSTERS]; |
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| 39 | |
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| 40 | // Macro returning the smallest power of 2 larger or equal to size value |
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| 41 | |
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| 42 | #define GET_SIZE_INDEX(size) (size <= 0x00000001) ? 0 :\ |
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| 43 | (size <= 0x00000002) ? 1 :\ |
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| 44 | (size <= 0x00000004) ? 2 :\ |
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| 45 | (size <= 0x00000008) ? 3 :\ |
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| 46 | (size <= 0x00000010) ? 4 :\ |
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| 47 | (size <= 0x00000020) ? 5 :\ |
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| 48 | (size <= 0x00000040) ? 6 :\ |
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| 49 | (size <= 0x00000080) ? 7 :\ |
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| 50 | (size <= 0x00000100) ? 8 :\ |
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| 51 | (size <= 0x00000200) ? 9 :\ |
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| 52 | (size <= 0x00000400) ? 10 :\ |
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| 53 | (size <= 0x00000800) ? 11 :\ |
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| 54 | (size <= 0x00001000) ? 12 :\ |
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| 55 | (size <= 0x00002000) ? 13 :\ |
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| 56 | (size <= 0x00004000) ? 14 :\ |
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| 57 | (size <= 0x00008000) ? 15 :\ |
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| 58 | (size <= 0x00010000) ? 16 :\ |
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| 59 | (size <= 0x00020000) ? 17 :\ |
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| 60 | (size <= 0x00040000) ? 18 :\ |
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| 61 | (size <= 0x00080000) ? 19 :\ |
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| 62 | (size <= 0x00100000) ? 20 :\ |
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| 63 | (size <= 0x00200000) ? 21 :\ |
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| 64 | (size <= 0x00400000) ? 22 :\ |
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| 65 | (size <= 0x00800000) ? 23 :\ |
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| 66 | (size <= 0x01000000) ? 24 :\ |
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| 67 | (size <= 0x02000000) ? 25 :\ |
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| 68 | (size <= 0x04000000) ? 26 :\ |
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| 69 | (size <= 0x08000000) ? 27 :\ |
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| 70 | (size <= 0x10000000) ? 28 :\ |
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| 71 | (size <= 0x20000000) ? 29 :\ |
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| 72 | (size <= 0x40000000) ? 30 :\ |
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| 73 | (size <= 0x80000000) ? 31 :\ |
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| 74 | 32 |
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| 75 | |
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| 76 | //////////////////////////////////////////////////////////////////////////////////////////// |
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| 77 | // This static function display the current state of the allocator in cluster <cxy>. |
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| 78 | //////////////////////////////////////////////////////////////////////////////////////////// |
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| 79 | static void display_free_array( unsigned int cxy ) |
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| 80 | { |
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| 81 | unsigned int next; |
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| 82 | unsigned int id; |
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| 83 | unsigned int iter; |
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| 84 | |
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| 85 | printf("\n***** store[%x] base = %x / size = %x\n", |
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| 86 | cxy , store[cxy].store_base, store[cxy].store_size ); |
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| 87 | for ( id = 0 ; id < 32 ; id++ ) |
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| 88 | { |
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| 89 | next = store[cxy].free[id]; |
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| 90 | printf(" - free[%d] = " , id ); |
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| 91 | iter = 0; |
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| 92 | while ( next != 0 ) |
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| 93 | { |
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| 94 | printf("%x | ", next ); |
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| 95 | next = (*(unsigned int*)next); |
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| 96 | iter++; |
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| 97 | } |
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| 98 | printf("0\n"); |
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| 99 | } |
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| 100 | } // end display_free_array() |
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| 101 | |
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| 102 | |
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| 103 | ////////////////////////////////////////////////////////////////////i////////////////////// |
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| 104 | // This static function initialises the store in the cluster identified by the <cxy> |
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| 105 | // arguments. It is called by the malloc() or remote_malloc when a specific store(x,y) |
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| 106 | // is accessed for the first time by a remote() or remote_malloc() request. |
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| 107 | // It uses the mmap( MAP_REMOTE ) syscall to allocate a new vseg mapped in cluster (cxy). |
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| 108 | ////////////////////////////////////////////////////////////////////i////////////////////// |
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| 109 | // @ cxy : target cluster identifier (fixed format). |
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| 110 | // @ size : store size (bytes). |
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| 111 | // # return without setting the initialized field in store(cxy) if failure. |
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| 112 | ////////////////////////////////////////////////////////////////////i////////////////////// |
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| 113 | static void store_init( unsigned int cxy, |
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| 114 | unsigned int store_size ) |
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| 115 | { |
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| 116 | unsigned int store_base; // store base address |
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| 117 | unsigned int free_index; // index in free[array] |
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| 118 | |
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| 119 | unsigned int alloc_base; // alloc[] array base |
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| 120 | unsigned int alloc_size; // alloc[] array size |
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| 121 | unsigned int alloc_index; // index in alloc[array] |
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| 122 | |
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| 123 | unsigned int iter; // iterator |
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| 124 | |
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| 125 | #if MALLOC_DEBUG |
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| 126 | printf("\n[MALLOC] %s : enter for store[%x] / size = %x\n", |
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| 127 | __FUNCTION__, cxy, store_size ); |
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| 128 | #endif |
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| 129 | |
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| 130 | // get index in free[] array from size |
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| 131 | free_index = GET_SIZE_INDEX( store_size ); |
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| 132 | |
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| 133 | // check store size power of 2 |
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| 134 | if( store_size != (1<<free_index) ) |
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| 135 | { |
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| 136 | printf("\n[ERROR] in %s : store[%x] size not power of 2 / size = %x\n", |
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| 137 | __FUNCTION__, cxy , store_size ); |
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| 138 | return; |
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| 139 | } |
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| 140 | |
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| 141 | // allocate store in virtual space |
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| 142 | void * vadr = mmap( NULL, // MAP_FIXED not supported |
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| 143 | store_size, |
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| 144 | PROT_READ | PROT_WRITE, |
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| 145 | MAP_REMOTE| MAP_SHARED, |
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| 146 | cxy, // fd is cluster identifier |
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| 147 | 0 ); // offset unused |
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| 148 | |
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| 149 | if( vadr == NULL ) |
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| 150 | { |
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| 151 | printf("\n[ERROR] in %s : cannot mmap store[%x]\n", |
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| 152 | __FUNCTION__, cxy ); |
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| 153 | return; |
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| 154 | } |
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| 155 | |
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| 156 | store_base = (unsigned int)vadr; |
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| 157 | |
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| 158 | // check allocated store alignment |
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| 159 | if( store_base % store_size ) |
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| 160 | { |
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| 161 | printf("\n[ERROR] in %s : store[%x] not aligned / base = %x / size = %x\n", |
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| 162 | __FUNCTION__, cxy , store_base , store_size ); |
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| 163 | return; |
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| 164 | } |
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| 165 | |
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| 166 | #if MALLOC_DEBUG |
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| 167 | printf("\n[MALLOC] %s : mmap done for store[%x] / base = %x\n", |
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| 168 | __FUNCTION__, cxy, store_base ); |
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| 169 | #endif |
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| 170 | |
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| 171 | // compute size of block containing alloc[] array |
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| 172 | alloc_size = store_size / MALLOC_MIN_BLOCK_SIZE; |
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| 173 | if ( alloc_size < MALLOC_MIN_BLOCK_SIZE) alloc_size = MALLOC_MIN_BLOCK_SIZE; |
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| 174 | |
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| 175 | // get index for the corresponding block |
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| 176 | alloc_index = GET_SIZE_INDEX( alloc_size ); |
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| 177 | |
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| 178 | // compute alloc[] array base address |
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| 179 | alloc_base = store_base + store_size - alloc_size; |
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| 180 | |
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| 181 | // reset the free[] array |
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| 182 | for ( iter = 0 ; iter < 32 ; iter++ ) |
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| 183 | { |
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| 184 | store[cxy].free[iter] = 0; |
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| 185 | } |
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| 186 | |
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| 187 | // reset the alloc_size array |
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| 188 | // memset( (void *)alloc_base , 0 , alloc_size ); |
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| 189 | |
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| 190 | // split the store into various sizes blocks, |
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| 191 | // initializes the free[] array and NEXT pointers |
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| 192 | // base is the block base address |
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| 193 | unsigned int base = store_base; |
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| 194 | unsigned int * ptr; |
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| 195 | for ( iter = free_index-1 ; iter >= alloc_index ; iter-- ) |
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| 196 | { |
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| 197 | store[cxy].free[iter] = base; |
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| 198 | ptr = (unsigned int*)base; |
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| 199 | *ptr = 0; |
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| 200 | base = base + (1<<iter); |
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| 201 | } |
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| 202 | |
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| 203 | // initialize store mutex |
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| 204 | if( pthread_mutex_init( &store[cxy].mutex , NULL ) ) |
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| 205 | { |
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| 206 | printf("\n[ERROR] in %s : cannot initialize mutex for store[%x]\n", |
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| 207 | __FUNCTION__, cxy ); |
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| 208 | return; |
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| 209 | } |
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| 210 | |
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| 211 | store[cxy].cxy = cxy; |
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| 212 | store[cxy].store_base = store_base; |
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| 213 | store[cxy].store_size = store_size; |
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| 214 | store[cxy].alloc_size = alloc_size; |
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| 215 | store[cxy].alloc_base = alloc_base; |
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| 216 | store[cxy].initialized = MALLOC_INITIALIZED; |
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| 217 | |
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| 218 | #if MALLOC_DEBUG |
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| 219 | printf("\n[MALLOC] %s completes store[%x] initialisation\n", |
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| 220 | __FUNCTION__, cxy ); |
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| 221 | #endif |
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| 222 | |
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| 223 | } // end store_init() |
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| 224 | |
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| 225 | //////////////////////////////////////////////////////// |
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| 226 | static unsigned int split_block( malloc_store_t * store, |
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| 227 | unsigned int vaddr, |
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| 228 | unsigned int searched_index, |
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| 229 | unsigned int requested_index ) |
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| 230 | { |
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| 231 | // push the upper half block into free[searched_index-1] |
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| 232 | unsigned int* new = (unsigned int*)(vaddr + (1<<(searched_index-1))); |
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| 233 | *new = store->free[searched_index-1]; |
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| 234 | store->free[searched_index-1] = (unsigned int)new; |
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| 235 | |
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| 236 | if ( searched_index == requested_index + 1 ) // terminal case: return lower half block |
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| 237 | { |
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| 238 | return vaddr; |
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| 239 | } |
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| 240 | else // non terminal case : lower half block must be split again |
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| 241 | { |
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| 242 | return split_block( store, vaddr, searched_index-1, requested_index ); |
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| 243 | } |
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| 244 | } // end split_block() |
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| 245 | |
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| 246 | ////////////////////////////////////////////////////// |
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| 247 | static unsigned int get_block( malloc_store_t * store, |
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| 248 | unsigned int searched_index, |
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| 249 | unsigned int requested_index ) |
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| 250 | { |
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| 251 | // test terminal case |
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| 252 | if ( (1<<searched_index) > store->store_size ) // failure : return a NULL value |
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| 253 | { |
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| 254 | return 0; |
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| 255 | } |
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| 256 | else // search a block in free[searched_index] |
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| 257 | { |
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| 258 | unsigned int vaddr = store->free[searched_index]; |
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| 259 | if ( vaddr == 0 ) // block not found : search in free[searched_index+1] |
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| 260 | { |
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| 261 | return get_block( store, searched_index+1, requested_index ); |
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| 262 | } |
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| 263 | else // block found : pop it from free[searched_index] |
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| 264 | { |
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| 265 | // pop the block from free[searched_index] |
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| 266 | unsigned int next = *((unsigned int*)vaddr); |
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| 267 | store->free[searched_index] = next; |
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| 268 | |
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| 269 | // test if the block must be split |
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| 270 | if ( searched_index == requested_index ) // no split required |
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| 271 | { |
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| 272 | return vaddr; |
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| 273 | } |
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| 274 | else // split is required |
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| 275 | { |
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| 276 | return split_block( store, vaddr, searched_index, requested_index ); |
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| 277 | } |
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| 278 | } |
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| 279 | } |
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| 280 | } // end get_block() |
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| 281 | |
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| 282 | //////////////////////////////////////// |
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| 283 | void * remote_malloc( unsigned int size, |
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| 284 | unsigned int cxy ) |
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| 285 | { |
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| 286 | |
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| 287 | #if MALLOC_DEBUG |
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| 288 | printf("\n[MALLOC] %s : enter for size = %x / cxy = %x\n", |
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| 289 | __FUNCTION__ , size , cxy ); |
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| 290 | #endif |
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| 291 | |
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| 292 | // check arguments |
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| 293 | if( size == 0 ) |
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| 294 | { |
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| 295 | printf("\n[ERROR] in %s : requested size = 0 \n", |
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| 296 | __FUNCTION__ ); |
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| 297 | return NULL; |
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| 298 | } |
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| 299 | if( cxy >= MALLOC_MAX_CLUSTERS ) |
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| 300 | { |
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| 301 | printf("\n[ERROR] in %s : illegal cluster %x\n", |
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| 302 | __FUNCTION__ , cxy ); |
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| 303 | return NULL; |
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| 304 | } |
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| 305 | |
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| 306 | // initializes target store if required |
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| 307 | if( store[cxy].initialized != MALLOC_INITIALIZED ) |
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| 308 | { |
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| 309 | store_init( cxy , MALLOC_LOCAL_STORE_SIZE ); |
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| 310 | |
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| 311 | if( store[cxy].initialized != MALLOC_INITIALIZED ) |
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| 312 | { |
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| 313 | printf("\n[ERROR] in %s : cannot allocate store in cluster %x\n", |
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| 314 | __FUNCTION__ , cxy ); |
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| 315 | return NULL; |
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| 316 | } |
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| 317 | } |
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| 318 | |
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| 319 | // normalize size |
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| 320 | if ( size < MALLOC_MIN_BLOCK_SIZE ) size = MALLOC_MIN_BLOCK_SIZE; |
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| 321 | |
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| 322 | // compute requested_index for the free[] array |
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| 323 | unsigned int requested_index = GET_SIZE_INDEX( size ); |
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| 324 | |
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| 325 | // take the lock protecting access to store[cxy] |
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| 326 | pthread_mutex_lock( &store[cxy].mutex ); |
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| 327 | |
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| 328 | // call the recursive function get_block |
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| 329 | unsigned int base = get_block( &store[cxy], |
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| 330 | requested_index, |
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| 331 | requested_index ); |
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| 332 | |
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| 333 | // check block found |
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| 334 | if (base == 0) |
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| 335 | { |
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| 336 | pthread_mutex_unlock( &store[cxy].mutex ); |
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| 337 | printf("\n[ERROR] in %s : no more space in cluster %x\n", |
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| 338 | __FUNCTION__ , cxy ); |
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| 339 | return NULL; |
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| 340 | } |
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| 341 | |
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| 342 | // compute pointer in alloc[] array |
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| 343 | unsigned offset = (base - store[cxy].store_base) / MALLOC_MIN_BLOCK_SIZE; |
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| 344 | unsigned char * ptr = (unsigned char*)(store[cxy].alloc_base + offset); |
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| 345 | |
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| 346 | // check the alloc[] array |
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| 347 | if ( *ptr != 0 ) |
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| 348 | { |
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| 349 | pthread_mutex_unlock( &store[cxy].mutex ); |
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| 350 | printf("\n[PANIC] in %s : allocate an already allocated block...\n", |
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| 351 | __FUNCTION__ ); |
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| 352 | return NULL; |
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| 353 | } |
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| 354 | |
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| 355 | // update alloc_array |
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| 356 | *ptr = requested_index; |
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| 357 | |
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| 358 | // release the lock |
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| 359 | pthread_mutex_unlock( &store[cxy].mutex ); |
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| 360 | |
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| 361 | #if MALLOC_DEBUG |
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| 362 | printf("\n[MALLOC] %s : exit / base = %x / size = %x / from store[%x]\n", |
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| 363 | __FUNCTION__, base , size , cxy ); |
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| 364 | #endif |
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| 365 | |
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| 366 | return (void*) base; |
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| 367 | |
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| 368 | } // end remote_malloc() |
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| 369 | |
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| 370 | |
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| 371 | ////////////////////////////////// |
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| 372 | void * malloc( unsigned int size ) |
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| 373 | { |
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| 374 | // get cluster identifier |
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| 375 | unsigned int cxy; |
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| 376 | unsigned int lid; |
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| 377 | get_core( &cxy , &lid ); |
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| 378 | |
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| 379 | return remote_malloc( size, cxy ); |
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| 380 | } |
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| 381 | |
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| 382 | |
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| 383 | ////////////////////////////////////////// |
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| 384 | void * remote_calloc ( unsigned int count, |
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| 385 | unsigned int size, |
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| 386 | unsigned int cxy ) |
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| 387 | { |
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| 388 | void * ptr = remote_malloc( count * size , cxy ); |
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| 389 | memset( ptr , 0 , count * size ); |
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| 390 | return ptr; |
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| 391 | } |
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| 392 | |
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| 393 | /////////////////////////////////// |
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| 394 | void * calloc ( unsigned int count, |
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| 395 | unsigned int size ) |
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| 396 | { |
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| 397 | // get calling core cluster identifier |
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| 398 | unsigned int cxy; |
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| 399 | unsigned int lid; |
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| 400 | get_core( &cxy , &lid ); |
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| 401 | |
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| 402 | return remote_calloc( count , size , cxy ); |
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| 403 | } |
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| 404 | |
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| 405 | ////////////////////////////////// |
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| 406 | void * remote_realloc( void * ptr, |
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| 407 | unsigned int size, |
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| 408 | unsigned int cxy ) |
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| 409 | { |
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| 410 | // simple allocation when (ptr == NULL) |
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| 411 | if( ptr == NULL ) |
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| 412 | { |
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| 413 | return remote_malloc( size , cxy ); |
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| 414 | } |
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| 415 | |
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| 416 | // simple free when (size == 0) |
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| 417 | if( size == 0 ) |
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| 418 | { |
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| 419 | remote_free( ptr , cxy ); |
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| 420 | return NULL; |
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| 421 | } |
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| 422 | |
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| 423 | // check cxy and ptr in general case |
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| 424 | if( cxy >= MALLOC_MAX_CLUSTERS ) |
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| 425 | { |
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| 426 | printf("\n[ERROR] in %s : illegal cluster index %x\n", |
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| 427 | __FUNCTION__ , cxy ); |
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| 428 | return NULL; |
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| 429 | } |
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| 430 | |
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| 431 | unsigned int base = (unsigned int)ptr; |
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| 432 | |
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| 433 | if( (base < store[cxy].store_base) || |
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| 434 | (base >= (store[cxy].store_base + store[cxy].store_size)) ) |
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| 435 | { |
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| 436 | printf("\n[ERROR] in %s : illegal pointer = %x\n", |
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| 437 | __FUNCTION__, ptr ); |
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| 438 | return NULL; |
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| 439 | } |
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| 440 | |
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| 441 | // compute index in free[] array |
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| 442 | int index = (base - store[cxy].store_base) / MALLOC_MIN_BLOCK_SIZE; |
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| 443 | |
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| 444 | // compute old size |
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| 445 | char * pchar = (char *) (store[cxy].alloc_base + index); |
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| 446 | int old_size = 1 << ((int) *pchar); |
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| 447 | |
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| 448 | // allocate a new block |
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| 449 | void * new_ptr = remote_malloc( size , cxy ); |
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| 450 | |
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| 451 | // save old data to new block |
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| 452 | int min_size = (size < old_size) ? size : old_size; |
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| 453 | memcpy( new_ptr, ptr, min_size ); |
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| 454 | |
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| 455 | // release old block |
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| 456 | remote_free( ptr , cxy ); |
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| 457 | |
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| 458 | return new_ptr; |
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| 459 | } |
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| 460 | |
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| 461 | /////////////////////////////////// |
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| 462 | void * realloc ( void * ptr, |
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| 463 | unsigned int size ) |
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| 464 | { |
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| 465 | // get calling core cluster identifier |
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| 466 | unsigned int cxy; |
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| 467 | unsigned int lid; |
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| 468 | get_core( &cxy , &lid ); |
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| 469 | |
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| 470 | return remote_realloc( ptr , size , cxy ); |
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| 471 | } |
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| 472 | |
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| 473 | |
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| 474 | |
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| 475 | ////////////////////////////////////////////////////// |
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| 476 | static void update_free_array( malloc_store_t * store, |
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| 477 | unsigned int base, |
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| 478 | unsigned int size_index ) |
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| 479 | { |
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| 480 | // This recursive function try to merge the released block |
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| 481 | // with the companion block if this companion block is free. |
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| 482 | // This companion has the same size, and almost the same address |
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| 483 | // (only one address bit is different) |
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| 484 | // - If the companion is not in free[size_index], |
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| 485 | // the released block is pushed in free[size_index]. |
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| 486 | // - If the companion is found, it is evicted from free[size_index] |
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| 487 | // and the merged bloc is pushed in the free[size_index+1]. |
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| 488 | |
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| 489 | |
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| 490 | // compute released block size |
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| 491 | unsigned int size = 1<<size_index; |
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| 492 | |
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| 493 | // compute companion block and merged block base addresses |
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| 494 | unsigned int companion_base; |
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| 495 | unsigned int merged_base; |
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| 496 | |
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| 497 | if ( (base & size) == 0 ) // the released block is aligned on (2*size) |
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| 498 | { |
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| 499 | companion_base = base + size; |
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| 500 | merged_base = base; |
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| 501 | } |
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| 502 | else |
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| 503 | { |
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| 504 | companion_base = base - size; |
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| 505 | merged_base = base - size; |
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| 506 | } |
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| 507 | |
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| 508 | // scan all blocks in free[size_index] |
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| 509 | // the iter & prev variables are actually addresses |
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| 510 | unsigned int found = 0; |
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| 511 | unsigned int iter = store->free[size_index]; |
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| 512 | unsigned int prev = (unsigned int)&store->free[size_index]; |
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| 513 | while ( iter ) |
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| 514 | { |
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| 515 | if ( iter == companion_base ) |
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| 516 | { |
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| 517 | found = 1; |
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| 518 | break; |
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| 519 | } |
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| 520 | prev = iter; |
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| 521 | iter = *(unsigned int*)iter; |
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| 522 | } |
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| 523 | |
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| 524 | if ( found == 0 ) // Companion not found => push in free[size_index] |
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| 525 | { |
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| 526 | *(unsigned int*)base = store->free[size_index]; |
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| 527 | store->free[size_index] = base; |
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| 528 | } |
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| 529 | else // Companion found : merge |
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| 530 | { |
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| 531 | // evict the searched block from free[size_index] |
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| 532 | *(unsigned int*)prev = *(unsigned int*)iter; |
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| 533 | |
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| 534 | // call the update_free() function for free[size_index+1] |
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| 535 | update_free_array( store, merged_base , size_index+1 ); |
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| 536 | } |
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| 537 | } // end update_free_array() |
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| 538 | |
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| 539 | //////////////////////////////////// |
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| 540 | void remote_free( void * ptr, |
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| 541 | unsigned int cxy ) |
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| 542 | { |
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| 543 | |
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| 544 | #if MALLOC_DEBUG |
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| 545 | printf("\n[MALLOC] %s : enter for block = %x / cxy = %x\n", |
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| 546 | __FUNCTION__, ptr, cxy ); |
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| 547 | #endif |
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| 548 | |
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| 549 | unsigned int base = (unsigned int)ptr; |
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| 550 | |
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| 551 | // check cxy value |
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| 552 | if( cxy >= MALLOC_MAX_CLUSTERS ) |
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| 553 | { |
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| 554 | printf("\n[ERROR] in %s : illegal cluster index %x\n", |
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| 555 | __FUNCTION__ , cxy ); |
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| 556 | return; |
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| 557 | } |
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| 558 | |
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| 559 | // check ptr value |
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| 560 | if( (base < store[cxy].store_base) || |
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| 561 | (base >= (store[cxy].store_base + store[cxy].store_size)) ) |
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| 562 | { |
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| 563 | printf("\n[ERROR] in %s : illegal pointer for released block = %x\n", |
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| 564 | __FUNCTION__, ptr ); |
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| 565 | return; |
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| 566 | } |
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| 567 | |
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| 568 | // get the lock protecting store[cxy] |
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| 569 | pthread_mutex_lock( &store[cxy].mutex ); |
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| 570 | |
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| 571 | // compute released block index in alloc[] array |
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| 572 | unsigned index = (base - store[cxy].store_base ) / MALLOC_MIN_BLOCK_SIZE; |
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| 573 | |
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| 574 | // get the released block size_index |
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| 575 | unsigned char* pchar = (unsigned char*)(store[cxy].alloc_base + index); |
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| 576 | unsigned int size_index = (unsigned int)*pchar; |
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| 577 | |
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| 578 | // check block is allocated |
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| 579 | if ( size_index == 0 ) |
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| 580 | { |
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| 581 | pthread_mutex_unlock( &store[cxy].mutex ); |
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| 582 | printf("\n[ERROR] in %s : released block not allocated / ptr = %x\n", |
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| 583 | __FUNCTION__, ptr ); |
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| 584 | return; |
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| 585 | } |
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| 586 | |
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| 587 | // check released block alignment |
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| 588 | if ( base % (1 << size_index) ) |
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| 589 | { |
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| 590 | pthread_mutex_unlock( &store[cxy].mutex ); |
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| 591 | printf("\n[ERROR] in %s : released block not aligned / ptr = %x\n", |
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| 592 | __FUNCTION__, ptr ); |
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| 593 | return; |
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| 594 | } |
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| 595 | |
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| 596 | // reset the alloc[index] entry |
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| 597 | *pchar = 0; |
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| 598 | |
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| 599 | // call the recursive function update_free_array() |
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| 600 | update_free_array( &store[cxy], base, size_index ); |
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| 601 | |
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| 602 | // release the lock |
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| 603 | pthread_mutex_unlock( &store[cxy].mutex ); |
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| 604 | |
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| 605 | #if MALLOC_DEBUG |
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| 606 | printf("\n[MALLOC] %s : conmpletes for block = %x / cxy = %x\n", |
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| 607 | __FUNCTION__, ptr, cxy ); |
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| 608 | #endif |
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| 609 | |
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| 610 | } // end remote_free() |
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| 611 | |
|---|
| 612 | /////////////////////// |
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| 613 | void free( void * ptr ) |
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| 614 | { |
|---|
| 615 | // get calling core cluster identifier |
|---|
| 616 | unsigned int cxy; |
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| 617 | unsigned int lid; |
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| 618 | get_core( &cxy , &lid ); |
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| 619 | |
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| 620 | remote_free( ptr , cxy ); |
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| 621 | } |
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| 622 | |
|---|
| 623 | |
|---|
| 624 | // Local Variables: |
|---|
| 625 | // tab-width: 4 |
|---|
| 626 | // c-basic-offset: 4 |
|---|
| 627 | // c-file-offsets:((innamespace . 0)(inline-open . 0)) |
|---|
| 628 | // indent-tabs-mode: nil |
|---|
| 629 | // End: |
|---|
| 630 | // vim: filetype=c:expandtab:shiftwidth=4:tabstop=4:softtabstop=4 |
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| 631 | |
|---|
| 632 | |
|---|
| 633 | |
|---|