[6db6fd1] | 1 | /*
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| 2 | * Copyright (c) 2009 Martin Decky
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| 3 | * Copyright (c) 2009 Petr Tuma
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| 4 | * All rights reserved.
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| 5 | *
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| 6 | * Redistribution and use in source and binary forms, with or without
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| 7 | * modification, are permitted provided that the following conditions
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| 8 | * are met:
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| 9 | *
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| 10 | * - Redistributions of source code must retain the above copyright
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| 11 | * notice, this list of conditions and the following disclaimer.
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| 12 | * - Redistributions in binary form must reproduce the above copyright
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| 13 | * notice, this list of conditions and the following disclaimer in the
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| 14 | * documentation and/or other materials provided with the distribution.
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| 15 | * - The name of the author may not be used to endorse or promote products
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| 16 | * derived from this software without specific prior written permission.
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| 17 | *
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| 18 | * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
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| 19 | * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
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| 20 | * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
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| 21 | * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
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| 22 | * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
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| 23 | * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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| 24 | * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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| 25 | * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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| 26 | * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
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| 27 | * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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| 28 | */
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| 29 |
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| 30 | /** @addtogroup libc
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| 31 | * @{
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| 32 | */
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| 33 | /** @file
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| 34 | */
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| 35 |
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| 36 | #include <malloc.h>
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| 37 | #include <bool.h>
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| 38 | #include <as.h>
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| 39 | #include <align.h>
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| 40 | #include <macros.h>
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| 41 | #include <assert.h>
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| 42 | #include <errno.h>
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| 43 | #include <bitops.h>
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| 44 | #include <mem.h>
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[3292623] | 45 | #include <futex.h>
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[d161715] | 46 | #include <stdlib.h>
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[6db6fd1] | 47 | #include <adt/gcdlcm.h>
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[47b7006] | 48 | #include "private/malloc.h"
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[6db6fd1] | 49 |
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[0b37882] | 50 | /** Magic used in heap headers. */
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| 51 | #define HEAP_BLOCK_HEAD_MAGIC UINT32_C(0xBEEF0101)
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[6db6fd1] | 52 |
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[0b37882] | 53 | /** Magic used in heap footers. */
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| 54 | #define HEAP_BLOCK_FOOT_MAGIC UINT32_C(0xBEEF0202)
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[6db6fd1] | 55 |
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[0b37882] | 56 | /** Magic used in heap descriptor. */
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| 57 | #define HEAP_AREA_MAGIC UINT32_C(0xBEEFCAFE)
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| 58 |
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| 59 | /** Allocation alignment.
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| 60 | *
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| 61 | * This also covers the alignment of fields
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| 62 | * in the heap header and footer.
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| 63 | *
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| 64 | */
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[6db6fd1] | 65 | #define BASE_ALIGN 16
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| 66 |
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[013a5d7] | 67 | /** Heap shrink granularity
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| 68 | *
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| 69 | * Try not to pump and stress the heap to much
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| 70 | * by shrinking and enlarging it too often.
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| 71 | * A heap area won't shrunk if it the released
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| 72 | * free block is smaller than this constant.
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| 73 | *
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| 74 | */
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| 75 | #define SHRINK_GRANULARITY (64 * PAGE_SIZE)
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| 76 |
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[0b37882] | 77 | /** Overhead of each heap block. */
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| 78 | #define STRUCT_OVERHEAD \
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| 79 | (sizeof(heap_block_head_t) + sizeof(heap_block_foot_t))
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| 80 |
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[207533f] | 81 | /** Overhead of each area. */
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| 82 | #define AREA_OVERHEAD(size) \
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| 83 | (ALIGN_UP(size + sizeof(heap_area_t), BASE_ALIGN))
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| 84 |
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[0b37882] | 85 | /** Calculate real size of a heap block.
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| 86 | *
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| 87 | * Add header and footer size.
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| 88 | *
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[6db6fd1] | 89 | */
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[0b37882] | 90 | #define GROSS_SIZE(size) ((size) + STRUCT_OVERHEAD)
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[6db6fd1] | 91 |
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[0b37882] | 92 | /** Calculate net size of a heap block.
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| 93 | *
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| 94 | * Subtract header and footer size.
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[6db6fd1] | 95 | *
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| 96 | */
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[0b37882] | 97 | #define NET_SIZE(size) ((size) - STRUCT_OVERHEAD)
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[6db6fd1] | 98 |
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[0b37882] | 99 | /** Get first block in heap area.
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| 100 | *
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[6db6fd1] | 101 | */
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[013a5d7] | 102 | #define AREA_FIRST_BLOCK_HEAD(area) \
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[0b37882] | 103 | (ALIGN_UP(((uintptr_t) (area)) + sizeof(heap_area_t), BASE_ALIGN))
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[6db6fd1] | 104 |
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[013a5d7] | 105 | /** Get last block in heap area.
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| 106 | *
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| 107 | */
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| 108 | #define AREA_LAST_BLOCK_FOOT(area) \
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| 109 | (((uintptr_t) (area)->end) - sizeof(heap_block_foot_t))
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| 110 |
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[7aafdb86] | 111 | #define AREA_LAST_BLOCK_HEAD(area) \
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| 112 | ((uintptr_t) BLOCK_HEAD(((heap_block_foot_t *)AREA_LAST_BLOCK_FOOT(area))))
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| 113 |
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[013a5d7] | 114 | /** Get header in heap block.
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| 115 | *
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| 116 | */
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| 117 | #define BLOCK_HEAD(foot) \
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| 118 | ((heap_block_head_t *) \
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| 119 | (((uintptr_t) (foot)) + sizeof(heap_block_foot_t) - (foot)->size))
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| 120 |
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[0b37882] | 121 | /** Get footer in heap block.
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| 122 | *
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[6db6fd1] | 123 | */
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[0b37882] | 124 | #define BLOCK_FOOT(head) \
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| 125 | ((heap_block_foot_t *) \
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[013a5d7] | 126 | (((uintptr_t) (head)) + (head)->size - sizeof(heap_block_foot_t)))
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[0b37882] | 127 |
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| 128 | /** Heap area.
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| 129 | *
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| 130 | * The memory managed by the heap allocator is divided into
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| 131 | * multiple discontinuous heaps. Each heap is represented
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| 132 | * by a separate address space area which has this structure
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| 133 | * at its very beginning.
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| 134 | *
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| 135 | */
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| 136 | typedef struct heap_area {
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| 137 | /** Start of the heap area (including this structure)
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| 138 | *
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| 139 | * Aligned on page boundary.
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| 140 | *
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| 141 | */
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| 142 | void *start;
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| 143 |
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| 144 | /** End of the heap area (aligned on page boundary) */
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| 145 | void *end;
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| 146 |
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[013a5d7] | 147 | /** Previous heap area */
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| 148 | struct heap_area *prev;
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| 149 |
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[0b37882] | 150 | /** Next heap area */
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| 151 | struct heap_area *next;
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| 152 |
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| 153 | /** A magic value */
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| 154 | uint32_t magic;
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| 155 | } heap_area_t;
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[6db6fd1] | 156 |
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| 157 | /** Header of a heap block
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| 158 | *
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| 159 | */
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| 160 | typedef struct {
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| 161 | /* Size of the block (including header and footer) */
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| 162 | size_t size;
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| 163 |
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| 164 | /* Indication of a free block */
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| 165 | bool free;
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| 166 |
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[0b37882] | 167 | /** Heap area this block belongs to */
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| 168 | heap_area_t *area;
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| 169 |
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[6db6fd1] | 170 | /* A magic value to detect overwrite of heap header */
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| 171 | uint32_t magic;
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| 172 | } heap_block_head_t;
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| 173 |
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| 174 | /** Footer of a heap block
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| 175 | *
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| 176 | */
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| 177 | typedef struct {
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| 178 | /* Size of the block (including header and footer) */
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| 179 | size_t size;
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| 180 |
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| 181 | /* A magic value to detect overwrite of heap footer */
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| 182 | uint32_t magic;
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| 183 | } heap_block_foot_t;
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| 184 |
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[0b37882] | 185 | /** First heap area */
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| 186 | static heap_area_t *first_heap_area = NULL;
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[6db6fd1] | 187 |
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[0b37882] | 188 | /** Last heap area */
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| 189 | static heap_area_t *last_heap_area = NULL;
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[6db6fd1] | 190 |
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[0b37882] | 191 | /** Next heap block to examine (next fit algorithm) */
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[207533f] | 192 | static heap_block_head_t *next_fit = NULL;
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[6db6fd1] | 193 |
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[0b37882] | 194 | /** Futex for thread-safe heap manipulation */
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| 195 | static futex_t malloc_futex = FUTEX_INITIALIZER;
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[6db6fd1] | 196 |
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[13f2461] | 197 | #ifndef NDEBUG
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| 198 |
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| 199 | #define malloc_assert(expr) \
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| 200 | do { \
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| 201 | if (!(expr)) {\
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| 202 | futex_up(&malloc_futex); \
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[e06e2716] | 203 | assert_abort(#expr, __FILE__, __LINE__); \
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[13f2461] | 204 | } \
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| 205 | } while (0)
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| 206 |
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| 207 | #else /* NDEBUG */
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| 208 |
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| 209 | #define malloc_assert(expr)
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| 210 |
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| 211 | #endif /* NDEBUG */
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| 212 |
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[6db6fd1] | 213 | /** Initialize a heap block
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| 214 | *
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[0b37882] | 215 | * Fill in the structures related to a heap block.
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[3292623] | 216 | * Should be called only inside the critical section.
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[6db6fd1] | 217 | *
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| 218 | * @param addr Address of the block.
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| 219 | * @param size Size of the block including the header and the footer.
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| 220 | * @param free Indication of a free block.
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[0b37882] | 221 | * @param area Heap area the block belongs to.
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[6db6fd1] | 222 | *
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| 223 | */
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[0b37882] | 224 | static void block_init(void *addr, size_t size, bool free, heap_area_t *area)
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[6db6fd1] | 225 | {
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| 226 | /* Calculate the position of the header and the footer */
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| 227 | heap_block_head_t *head = (heap_block_head_t *) addr;
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| 228 |
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| 229 | head->size = size;
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| 230 | head->free = free;
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[0b37882] | 231 | head->area = area;
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[6db6fd1] | 232 | head->magic = HEAP_BLOCK_HEAD_MAGIC;
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| 233 |
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[0b37882] | 234 | heap_block_foot_t *foot = BLOCK_FOOT(head);
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| 235 |
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[6db6fd1] | 236 | foot->size = size;
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| 237 | foot->magic = HEAP_BLOCK_FOOT_MAGIC;
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| 238 | }
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| 239 |
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| 240 | /** Check a heap block
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| 241 | *
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| 242 | * Verifies that the structures related to a heap block still contain
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| 243 | * the magic constants. This helps detect heap corruption early on.
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[3292623] | 244 | * Should be called only inside the critical section.
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[6db6fd1] | 245 | *
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| 246 | * @param addr Address of the block.
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| 247 | *
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| 248 | */
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| 249 | static void block_check(void *addr)
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| 250 | {
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| 251 | heap_block_head_t *head = (heap_block_head_t *) addr;
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| 252 |
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[13f2461] | 253 | malloc_assert(head->magic == HEAP_BLOCK_HEAD_MAGIC);
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[6db6fd1] | 254 |
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[0b37882] | 255 | heap_block_foot_t *foot = BLOCK_FOOT(head);
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[6db6fd1] | 256 |
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[13f2461] | 257 | malloc_assert(foot->magic == HEAP_BLOCK_FOOT_MAGIC);
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| 258 | malloc_assert(head->size == foot->size);
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[6db6fd1] | 259 | }
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| 260 |
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[0b37882] | 261 | /** Check a heap area structure
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[013a5d7] | 262 | *
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| 263 | * Should be called only inside the critical section.
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[3292623] | 264 | *
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[0b37882] | 265 | * @param addr Address of the heap area.
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[3292623] | 266 | *
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[0b37882] | 267 | */
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| 268 | static void area_check(void *addr)
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| 269 | {
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| 270 | heap_area_t *area = (heap_area_t *) addr;
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| 271 |
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[13f2461] | 272 | malloc_assert(area->magic == HEAP_AREA_MAGIC);
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| 273 | malloc_assert(addr == area->start);
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| 274 | malloc_assert(area->start < area->end);
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| 275 | malloc_assert(((uintptr_t) area->start % PAGE_SIZE) == 0);
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| 276 | malloc_assert(((uintptr_t) area->end % PAGE_SIZE) == 0);
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[0b37882] | 277 | }
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| 278 |
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| 279 | /** Create new heap area
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| 280 | *
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[013a5d7] | 281 | * Should be called only inside the critical section.
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| 282 | *
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| 283 | * @param size Size of the area.
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[3292623] | 284 | *
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| 285 | */
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[0b37882] | 286 | static bool area_create(size_t size)
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[6db6fd1] | 287 | {
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[fbcdeb8] | 288 | /* Align the heap area size on page boundary */
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[0b37882] | 289 | size_t asize = ALIGN_UP(size, PAGE_SIZE);
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[faba839] | 290 | void *astart = as_area_create(AS_AREA_ANY, asize,
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[fbcdeb8] | 291 | AS_AREA_WRITE | AS_AREA_READ);
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[faba839] | 292 | if (astart == AS_MAP_FAILED)
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[e70edd1] | 293 | return false;
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[6db6fd1] | 294 |
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[0b37882] | 295 | heap_area_t *area = (heap_area_t *) astart;
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| 296 |
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| 297 | area->start = astart;
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[013a5d7] | 298 | area->end = (void *) ((uintptr_t) astart + asize);
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| 299 | area->prev = NULL;
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[0b37882] | 300 | area->next = NULL;
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| 301 | area->magic = HEAP_AREA_MAGIC;
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| 302 |
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[013a5d7] | 303 | void *block = (void *) AREA_FIRST_BLOCK_HEAD(area);
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[0b37882] | 304 | size_t bsize = (size_t) (area->end - block);
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| 305 |
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| 306 | block_init(block, bsize, true, area);
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| 307 |
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| 308 | if (last_heap_area == NULL) {
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| 309 | first_heap_area = area;
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| 310 | last_heap_area = area;
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| 311 | } else {
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[013a5d7] | 312 | area->prev = last_heap_area;
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[0b37882] | 313 | last_heap_area->next = area;
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| 314 | last_heap_area = area;
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| 315 | }
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| 316 |
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| 317 | return true;
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| 318 | }
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| 319 |
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| 320 | /** Try to enlarge a heap area
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[013a5d7] | 321 | *
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| 322 | * Should be called only inside the critical section.
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[0b37882] | 323 | *
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| 324 | * @param area Heap area to grow.
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[013a5d7] | 325 | * @param size Gross size to grow (bytes).
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| 326 | *
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| 327 | * @return True if successful.
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[0b37882] | 328 | *
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| 329 | */
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| 330 | static bool area_grow(heap_area_t *area, size_t size)
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| 331 | {
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| 332 | if (size == 0)
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| 333 | return true;
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| 334 |
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| 335 | area_check(area);
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| 336 |
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| 337 | /* New heap area size */
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[013a5d7] | 338 | size_t gross_size = (size_t) (area->end - area->start) + size;
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| 339 | size_t asize = ALIGN_UP(gross_size, PAGE_SIZE);
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| 340 | void *end = (void *) ((uintptr_t) area->start + asize);
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[0b37882] | 341 |
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| 342 | /* Check for overflow */
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| 343 | if (end < area->start)
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| 344 | return false;
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[6db6fd1] | 345 |
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[0b37882] | 346 | /* Resize the address space area */
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| 347 | int ret = as_area_resize(area->start, asize, 0);
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| 348 | if (ret != EOK)
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[6db6fd1] | 349 | return false;
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| 350 |
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[7aafdb86] | 351 | heap_block_head_t *last_head = (heap_block_head_t *) AREA_LAST_BLOCK_HEAD(area);
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| 352 |
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| 353 | if (last_head->free) {
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| 354 | /* Add the new space to the last block. */
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| 355 | size_t net_size = (size_t) (end - area->end) + last_head->size;
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| 356 | malloc_assert(net_size > 0);
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| 357 | block_init(last_head, net_size, true, area);
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| 358 | } else {
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| 359 | /* Add new free block */
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| 360 | size_t net_size = (size_t) (end - area->end);
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| 361 | if (net_size > 0)
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| 362 | block_init(area->end, net_size, true, area);
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| 363 | }
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[6db6fd1] | 364 |
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[0b37882] | 365 | /* Update heap area parameters */
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| 366 | area->end = end;
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| 367 |
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| 368 | return true;
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| 369 | }
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| 370 |
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[013a5d7] | 371 | /** Try to shrink heap
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[3292623] | 372 | *
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[013a5d7] | 373 | * Should be called only inside the critical section.
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[0b37882] | 374 | * In all cases the next pointer is reset.
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[3292623] | 375 | *
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[013a5d7] | 376 | * @param area Last modified heap area.
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| 377 | *
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[3292623] | 378 | */
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[013a5d7] | 379 | static void heap_shrink(heap_area_t *area)
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[6db6fd1] | 380 | {
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[013a5d7] | 381 | area_check(area);
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| 382 |
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| 383 | heap_block_foot_t *last_foot =
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| 384 | (heap_block_foot_t *) AREA_LAST_BLOCK_FOOT(area);
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| 385 | heap_block_head_t *last_head = BLOCK_HEAD(last_foot);
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| 386 |
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| 387 | block_check((void *) last_head);
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[13f2461] | 388 | malloc_assert(last_head->area == area);
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[013a5d7] | 389 |
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| 390 | if (last_head->free) {
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| 391 | /*
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| 392 | * The last block of the heap area is
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| 393 | * unused. The area might be potentially
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| 394 | * shrunk.
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| 395 | */
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| 396 |
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| 397 | heap_block_head_t *first_head =
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| 398 | (heap_block_head_t *) AREA_FIRST_BLOCK_HEAD(area);
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| 399 |
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| 400 | block_check((void *) first_head);
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[13f2461] | 401 | malloc_assert(first_head->area == area);
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[013a5d7] | 402 |
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[e6eee2b] | 403 | size_t shrink_size = ALIGN_DOWN(last_head->size, PAGE_SIZE);
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| 404 |
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[013a5d7] | 405 | if (first_head == last_head) {
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| 406 | /*
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| 407 | * The entire heap area consists of a single
|
---|
| 408 | * free heap block. This means we can get rid
|
---|
| 409 | * of it entirely.
|
---|
| 410 | */
|
---|
| 411 |
|
---|
| 412 | heap_area_t *prev = area->prev;
|
---|
| 413 | heap_area_t *next = area->next;
|
---|
| 414 |
|
---|
| 415 | if (prev != NULL) {
|
---|
| 416 | area_check(prev);
|
---|
| 417 | prev->next = next;
|
---|
| 418 | } else
|
---|
| 419 | first_heap_area = next;
|
---|
| 420 |
|
---|
| 421 | if (next != NULL) {
|
---|
| 422 | area_check(next);
|
---|
| 423 | next->prev = prev;
|
---|
| 424 | } else
|
---|
| 425 | last_heap_area = prev;
|
---|
| 426 |
|
---|
| 427 | as_area_destroy(area->start);
|
---|
[e6eee2b] | 428 | } else if (shrink_size >= SHRINK_GRANULARITY) {
|
---|
[013a5d7] | 429 | /*
|
---|
| 430 | * Make sure that we always shrink the area
|
---|
| 431 | * by a multiple of page size and update
|
---|
| 432 | * the block layout accordingly.
|
---|
| 433 | */
|
---|
| 434 |
|
---|
| 435 | size_t asize = (size_t) (area->end - area->start) - shrink_size;
|
---|
| 436 | void *end = (void *) ((uintptr_t) area->start + asize);
|
---|
| 437 |
|
---|
| 438 | /* Resize the address space area */
|
---|
| 439 | int ret = as_area_resize(area->start, asize, 0);
|
---|
| 440 | if (ret != EOK)
|
---|
| 441 | abort();
|
---|
| 442 |
|
---|
| 443 | /* Update heap area parameters */
|
---|
| 444 | area->end = end;
|
---|
[207533f] | 445 | size_t excess = ((size_t) area->end) - ((size_t) last_head);
|
---|
[013a5d7] | 446 |
|
---|
| 447 | if (excess > 0) {
|
---|
| 448 | if (excess >= STRUCT_OVERHEAD) {
|
---|
| 449 | /*
|
---|
| 450 | * The previous block cannot be free and there
|
---|
| 451 | * is enough free space left in the area to
|
---|
| 452 | * create a new free block.
|
---|
| 453 | */
|
---|
[207533f] | 454 | block_init((void *) last_head, excess, true, area);
|
---|
[013a5d7] | 455 | } else {
|
---|
| 456 | /*
|
---|
| 457 | * The excess is small. Therefore just enlarge
|
---|
| 458 | * the previous block.
|
---|
| 459 | */
|
---|
| 460 | heap_block_foot_t *prev_foot = (heap_block_foot_t *)
|
---|
| 461 | (((uintptr_t) last_head) - sizeof(heap_block_foot_t));
|
---|
| 462 | heap_block_head_t *prev_head = BLOCK_HEAD(prev_foot);
|
---|
| 463 |
|
---|
| 464 | block_check((void *) prev_head);
|
---|
| 465 |
|
---|
| 466 | block_init(prev_head, prev_head->size + excess,
|
---|
| 467 | prev_head->free, area);
|
---|
| 468 | }
|
---|
| 469 | }
|
---|
| 470 | }
|
---|
| 471 | }
|
---|
| 472 |
|
---|
[207533f] | 473 | next_fit = NULL;
|
---|
[6db6fd1] | 474 | }
|
---|
| 475 |
|
---|
| 476 | /** Initialize the heap allocator
|
---|
| 477 | *
|
---|
[47b7006] | 478 | * Create initial heap memory area. This routine is
|
---|
| 479 | * only called from libc initialization, thus we do not
|
---|
| 480 | * take any locks.
|
---|
[6db6fd1] | 481 | *
|
---|
| 482 | */
|
---|
[47b7006] | 483 | void __malloc_init(void)
|
---|
[6db6fd1] | 484 | {
|
---|
[0b37882] | 485 | if (!area_create(PAGE_SIZE))
|
---|
[47b7006] | 486 | abort();
|
---|
[6db6fd1] | 487 | }
|
---|
| 488 |
|
---|
[3292623] | 489 | /** Split heap block and mark it as used.
|
---|
| 490 | *
|
---|
| 491 | * Should be called only inside the critical section.
|
---|
| 492 | *
|
---|
| 493 | * @param cur Heap block to split.
|
---|
| 494 | * @param size Number of bytes to split and mark from the beginning
|
---|
| 495 | * of the block.
|
---|
| 496 | *
|
---|
| 497 | */
|
---|
[6db6fd1] | 498 | static void split_mark(heap_block_head_t *cur, const size_t size)
|
---|
| 499 | {
|
---|
[13f2461] | 500 | malloc_assert(cur->size >= size);
|
---|
[6db6fd1] | 501 |
|
---|
| 502 | /* See if we should split the block. */
|
---|
| 503 | size_t split_limit = GROSS_SIZE(size);
|
---|
| 504 |
|
---|
| 505 | if (cur->size > split_limit) {
|
---|
| 506 | /* Block big enough -> split. */
|
---|
| 507 | void *next = ((void *) cur) + size;
|
---|
[0b37882] | 508 | block_init(next, cur->size - size, true, cur->area);
|
---|
| 509 | block_init(cur, size, false, cur->area);
|
---|
[6db6fd1] | 510 | } else {
|
---|
| 511 | /* Block too small -> use as is. */
|
---|
| 512 | cur->free = false;
|
---|
| 513 | }
|
---|
| 514 | }
|
---|
| 515 |
|
---|
[0b37882] | 516 | /** Allocate memory from heap area starting from given block
|
---|
[3292623] | 517 | *
|
---|
| 518 | * Should be called only inside the critical section.
|
---|
[0b37882] | 519 | * As a side effect this function also sets the current
|
---|
| 520 | * pointer on successful allocation.
|
---|
[6db6fd1] | 521 | *
|
---|
[0b37882] | 522 | * @param area Heap area where to allocate from.
|
---|
| 523 | * @param first_block Starting heap block.
|
---|
| 524 | * @param final_block Heap block where to finish the search
|
---|
| 525 | * (may be NULL).
|
---|
| 526 | * @param real_size Gross number of bytes to allocate.
|
---|
| 527 | * @param falign Physical alignment of the block.
|
---|
[6db6fd1] | 528 | *
|
---|
[0b37882] | 529 | * @return Address of the allocated block or NULL on not enough memory.
|
---|
[6db6fd1] | 530 | *
|
---|
| 531 | */
|
---|
[0b37882] | 532 | static void *malloc_area(heap_area_t *area, heap_block_head_t *first_block,
|
---|
| 533 | heap_block_head_t *final_block, size_t real_size, size_t falign)
|
---|
[6db6fd1] | 534 | {
|
---|
[0b37882] | 535 | area_check((void *) area);
|
---|
[13f2461] | 536 | malloc_assert((void *) first_block >= (void *) AREA_FIRST_BLOCK_HEAD(area));
|
---|
| 537 | malloc_assert((void *) first_block < area->end);
|
---|
[6db6fd1] | 538 |
|
---|
[013a5d7] | 539 | for (heap_block_head_t *cur = first_block; (void *) cur < area->end;
|
---|
[0b37882] | 540 | cur = (heap_block_head_t *) (((void *) cur) + cur->size)) {
|
---|
[6db6fd1] | 541 | block_check(cur);
|
---|
| 542 |
|
---|
[0b37882] | 543 | /* Finish searching on the final block */
|
---|
| 544 | if ((final_block != NULL) && (cur == final_block))
|
---|
| 545 | break;
|
---|
| 546 |
|
---|
[6db6fd1] | 547 | /* Try to find a block that is free and large enough. */
|
---|
| 548 | if ((cur->free) && (cur->size >= real_size)) {
|
---|
[0b37882] | 549 | /*
|
---|
| 550 | * We have found a suitable block.
|
---|
| 551 | * Check for alignment properties.
|
---|
| 552 | */
|
---|
| 553 | void *addr = (void *)
|
---|
| 554 | ((uintptr_t) cur + sizeof(heap_block_head_t));
|
---|
| 555 | void *aligned = (void *)
|
---|
| 556 | ALIGN_UP((uintptr_t) addr, falign);
|
---|
[6db6fd1] | 557 |
|
---|
| 558 | if (addr == aligned) {
|
---|
| 559 | /* Exact block start including alignment. */
|
---|
| 560 | split_mark(cur, real_size);
|
---|
[0b37882] | 561 |
|
---|
[207533f] | 562 | next_fit = cur;
|
---|
[0b37882] | 563 | return addr;
|
---|
[6db6fd1] | 564 | } else {
|
---|
[d851f597] | 565 | /* Block start has to be aligned */
|
---|
[6db6fd1] | 566 | size_t excess = (size_t) (aligned - addr);
|
---|
| 567 |
|
---|
| 568 | if (cur->size >= real_size + excess) {
|
---|
[0b37882] | 569 | /*
|
---|
| 570 | * The current block is large enough to fit
|
---|
| 571 | * data in (including alignment).
|
---|
| 572 | */
|
---|
[013a5d7] | 573 | if ((void *) cur > (void *) AREA_FIRST_BLOCK_HEAD(area)) {
|
---|
[0b37882] | 574 | /*
|
---|
| 575 | * There is a block before the current block.
|
---|
| 576 | * This previous block can be enlarged to
|
---|
| 577 | * compensate for the alignment excess.
|
---|
| 578 | */
|
---|
| 579 | heap_block_foot_t *prev_foot = (heap_block_foot_t *)
|
---|
| 580 | ((void *) cur - sizeof(heap_block_foot_t));
|
---|
[6db6fd1] | 581 |
|
---|
[0b37882] | 582 | heap_block_head_t *prev_head = (heap_block_head_t *)
|
---|
| 583 | ((void *) cur - prev_foot->size);
|
---|
[6db6fd1] | 584 |
|
---|
| 585 | block_check(prev_head);
|
---|
| 586 |
|
---|
| 587 | size_t reduced_size = cur->size - excess;
|
---|
[d851f597] | 588 | heap_block_head_t *next_head = ((void *) cur) + excess;
|
---|
[6db6fd1] | 589 |
|
---|
[0b37882] | 590 | if ((!prev_head->free) &&
|
---|
| 591 | (excess >= STRUCT_OVERHEAD)) {
|
---|
| 592 | /*
|
---|
| 593 | * The previous block is not free and there
|
---|
| 594 | * is enough free space left to fill in
|
---|
| 595 | * a new free block between the previous
|
---|
| 596 | * and current block.
|
---|
| 597 | */
|
---|
| 598 | block_init(cur, excess, true, area);
|
---|
[d851f597] | 599 | } else {
|
---|
[0b37882] | 600 | /*
|
---|
| 601 | * The previous block is free (thus there
|
---|
| 602 | * is no need to induce additional
|
---|
| 603 | * fragmentation to the heap) or the
|
---|
| 604 | * excess is small. Therefore just enlarge
|
---|
| 605 | * the previous block.
|
---|
| 606 | */
|
---|
| 607 | block_init(prev_head, prev_head->size + excess,
|
---|
| 608 | prev_head->free, area);
|
---|
[d851f597] | 609 | }
|
---|
| 610 |
|
---|
[0b37882] | 611 | block_init(next_head, reduced_size, true, area);
|
---|
[d851f597] | 612 | split_mark(next_head, real_size);
|
---|
[0b37882] | 613 |
|
---|
[207533f] | 614 | next_fit = next_head;
|
---|
[0b37882] | 615 | return aligned;
|
---|
[6db6fd1] | 616 | } else {
|
---|
[0b37882] | 617 | /*
|
---|
| 618 | * The current block is the first block
|
---|
| 619 | * in the heap area. We have to make sure
|
---|
| 620 | * that the alignment excess is large enough
|
---|
| 621 | * to fit a new free block just before the
|
---|
| 622 | * current block.
|
---|
| 623 | */
|
---|
[6db6fd1] | 624 | while (excess < STRUCT_OVERHEAD) {
|
---|
| 625 | aligned += falign;
|
---|
| 626 | excess += falign;
|
---|
| 627 | }
|
---|
| 628 |
|
---|
[d851f597] | 629 | /* Check for current block size again */
|
---|
[6db6fd1] | 630 | if (cur->size >= real_size + excess) {
|
---|
| 631 | size_t reduced_size = cur->size - excess;
|
---|
[0b37882] | 632 | cur = (heap_block_head_t *)
|
---|
[013a5d7] | 633 | (AREA_FIRST_BLOCK_HEAD(area) + excess);
|
---|
[6db6fd1] | 634 |
|
---|
[013a5d7] | 635 | block_init((void *) AREA_FIRST_BLOCK_HEAD(area),
|
---|
| 636 | excess, true, area);
|
---|
[0b37882] | 637 | block_init(cur, reduced_size, true, area);
|
---|
[6db6fd1] | 638 | split_mark(cur, real_size);
|
---|
[0b37882] | 639 |
|
---|
[207533f] | 640 | next_fit = cur;
|
---|
[0b37882] | 641 | return aligned;
|
---|
[6db6fd1] | 642 | }
|
---|
| 643 | }
|
---|
| 644 | }
|
---|
| 645 | }
|
---|
| 646 | }
|
---|
[0b37882] | 647 | }
|
---|
| 648 |
|
---|
| 649 | return NULL;
|
---|
| 650 | }
|
---|
| 651 |
|
---|
[7aafdb86] | 652 | /** Try to enlarge any of the heap areas.
|
---|
| 653 | * If successful, allocate block of the given size in the area.
|
---|
| 654 | *
|
---|
| 655 | * Should be called only inside the critical section.
|
---|
| 656 | *
|
---|
| 657 | * @param size Gross size of item to allocate (bytes).
|
---|
| 658 | * @param align Memory address alignment.
|
---|
| 659 | *
|
---|
| 660 | */
|
---|
| 661 | static void *heap_grow_and_alloc(size_t size, size_t align)
|
---|
| 662 | {
|
---|
| 663 | if (size == 0)
|
---|
| 664 | return NULL;
|
---|
| 665 |
|
---|
| 666 | /* First try to enlarge some existing area */
|
---|
| 667 | for (heap_area_t *area = first_heap_area; area != NULL;
|
---|
| 668 | area = area->next) {
|
---|
| 669 |
|
---|
| 670 | if (area_grow(area, size + align)) {
|
---|
| 671 | heap_block_head_t *first = (heap_block_head_t *) AREA_LAST_BLOCK_HEAD(area);
|
---|
| 672 |
|
---|
| 673 | void *addr = malloc_area(area, first, NULL, size, align);
|
---|
| 674 | malloc_assert(addr != NULL);
|
---|
| 675 | return addr;
|
---|
| 676 | }
|
---|
| 677 | }
|
---|
| 678 |
|
---|
| 679 | /* Eventually try to create a new area */
|
---|
| 680 | if (area_create(AREA_OVERHEAD(size + align))) {
|
---|
| 681 | heap_block_head_t *first = (heap_block_head_t *) AREA_FIRST_BLOCK_HEAD(last_heap_area);
|
---|
| 682 |
|
---|
| 683 | void *addr = malloc_area(last_heap_area, first, NULL, size, align);
|
---|
| 684 | malloc_assert(addr != NULL);
|
---|
| 685 | return addr;
|
---|
| 686 | }
|
---|
| 687 |
|
---|
| 688 | return NULL;
|
---|
| 689 | }
|
---|
| 690 |
|
---|
[0b37882] | 691 | /** Allocate a memory block
|
---|
| 692 | *
|
---|
| 693 | * Should be called only inside the critical section.
|
---|
| 694 | *
|
---|
| 695 | * @param size The size of the block to allocate.
|
---|
| 696 | * @param align Memory address alignment.
|
---|
| 697 | *
|
---|
| 698 | * @return Address of the allocated block or NULL on not enough memory.
|
---|
| 699 | *
|
---|
| 700 | */
|
---|
| 701 | static void *malloc_internal(const size_t size, const size_t align)
|
---|
| 702 | {
|
---|
[13f2461] | 703 | malloc_assert(first_heap_area != NULL);
|
---|
[0b37882] | 704 |
|
---|
| 705 | if (align == 0)
|
---|
| 706 | return NULL;
|
---|
| 707 |
|
---|
| 708 | size_t falign = lcm(align, BASE_ALIGN);
|
---|
[e7c3fa0] | 709 |
|
---|
| 710 | /* Check for integer overflow. */
|
---|
| 711 | if (falign < align)
|
---|
| 712 | return NULL;
|
---|
| 713 |
|
---|
[b078a42] | 714 | size_t gross_size = GROSS_SIZE(ALIGN_UP(size, BASE_ALIGN));
|
---|
[0b37882] | 715 |
|
---|
| 716 | heap_block_head_t *split;
|
---|
| 717 |
|
---|
| 718 | /* Try the next fit approach */
|
---|
[207533f] | 719 | split = next_fit;
|
---|
[0b37882] | 720 |
|
---|
| 721 | if (split != NULL) {
|
---|
[7aafdb86] | 722 | void *addr = malloc_area(split->area, split, NULL, gross_size,
|
---|
[0b37882] | 723 | falign);
|
---|
[6db6fd1] | 724 |
|
---|
[0b37882] | 725 | if (addr != NULL)
|
---|
| 726 | return addr;
|
---|
[6db6fd1] | 727 | }
|
---|
| 728 |
|
---|
[0b37882] | 729 | /* Search the entire heap */
|
---|
[013a5d7] | 730 | for (heap_area_t *area = first_heap_area; area != NULL;
|
---|
| 731 | area = area->next) {
|
---|
[0b37882] | 732 | heap_block_head_t *first = (heap_block_head_t *)
|
---|
[013a5d7] | 733 | AREA_FIRST_BLOCK_HEAD(area);
|
---|
[0b37882] | 734 |
|
---|
[7aafdb86] | 735 | void *addr = malloc_area(area, first, split, gross_size,
|
---|
[0b37882] | 736 | falign);
|
---|
| 737 |
|
---|
| 738 | if (addr != NULL)
|
---|
| 739 | return addr;
|
---|
| 740 | }
|
---|
| 741 |
|
---|
[7aafdb86] | 742 | /* Finally, try to grow heap space and allocate in the new area. */
|
---|
| 743 | return heap_grow_and_alloc(gross_size, falign);
|
---|
[6db6fd1] | 744 | }
|
---|
| 745 |
|
---|
[3292623] | 746 | /** Allocate memory by number of elements
|
---|
| 747 | *
|
---|
| 748 | * @param nmemb Number of members to allocate.
|
---|
| 749 | * @param size Size of one member in bytes.
|
---|
| 750 | *
|
---|
| 751 | * @return Allocated memory or NULL.
|
---|
| 752 | *
|
---|
| 753 | */
|
---|
[15b8e495] | 754 | void *calloc(const size_t nmemb, const size_t size)
|
---|
| 755 | {
|
---|
[e6b73ad0] | 756 | void *block = malloc(nmemb * size);
|
---|
| 757 | if (block == NULL)
|
---|
| 758 | return NULL;
|
---|
[3292623] | 759 |
|
---|
[e6b73ad0] | 760 | memset(block, 0, nmemb * size);
|
---|
| 761 | return block;
|
---|
[15b8e495] | 762 | }
|
---|
| 763 |
|
---|
[3292623] | 764 | /** Allocate memory
|
---|
| 765 | *
|
---|
| 766 | * @param size Number of bytes to allocate.
|
---|
| 767 | *
|
---|
| 768 | * @return Allocated memory or NULL.
|
---|
| 769 | *
|
---|
| 770 | */
|
---|
[6db6fd1] | 771 | void *malloc(const size_t size)
|
---|
| 772 | {
|
---|
[3292623] | 773 | futex_down(&malloc_futex);
|
---|
| 774 | void *block = malloc_internal(size, BASE_ALIGN);
|
---|
| 775 | futex_up(&malloc_futex);
|
---|
| 776 |
|
---|
| 777 | return block;
|
---|
[6db6fd1] | 778 | }
|
---|
| 779 |
|
---|
[3292623] | 780 | /** Allocate memory with specified alignment
|
---|
| 781 | *
|
---|
| 782 | * @param align Alignment in byes.
|
---|
| 783 | * @param size Number of bytes to allocate.
|
---|
| 784 | *
|
---|
| 785 | * @return Allocated memory or NULL.
|
---|
| 786 | *
|
---|
| 787 | */
|
---|
[6db6fd1] | 788 | void *memalign(const size_t align, const size_t size)
|
---|
| 789 | {
|
---|
| 790 | if (align == 0)
|
---|
| 791 | return NULL;
|
---|
| 792 |
|
---|
| 793 | size_t palign =
|
---|
| 794 | 1 << (fnzb(max(sizeof(void *), align) - 1) + 1);
|
---|
| 795 |
|
---|
[3292623] | 796 | futex_down(&malloc_futex);
|
---|
| 797 | void *block = malloc_internal(size, palign);
|
---|
| 798 | futex_up(&malloc_futex);
|
---|
| 799 |
|
---|
| 800 | return block;
|
---|
[6db6fd1] | 801 | }
|
---|
| 802 |
|
---|
[3292623] | 803 | /** Reallocate memory block
|
---|
| 804 | *
|
---|
| 805 | * @param addr Already allocated memory or NULL.
|
---|
| 806 | * @param size New size of the memory block.
|
---|
| 807 | *
|
---|
| 808 | * @return Reallocated memory or NULL.
|
---|
| 809 | *
|
---|
| 810 | */
|
---|
[6db6fd1] | 811 | void *realloc(const void *addr, const size_t size)
|
---|
| 812 | {
|
---|
| 813 | if (addr == NULL)
|
---|
| 814 | return malloc(size);
|
---|
| 815 |
|
---|
[3292623] | 816 | futex_down(&malloc_futex);
|
---|
| 817 |
|
---|
[6db6fd1] | 818 | /* Calculate the position of the header. */
|
---|
| 819 | heap_block_head_t *head =
|
---|
| 820 | (heap_block_head_t *) (addr - sizeof(heap_block_head_t));
|
---|
| 821 |
|
---|
| 822 | block_check(head);
|
---|
[13f2461] | 823 | malloc_assert(!head->free);
|
---|
[6db6fd1] | 824 |
|
---|
[0b37882] | 825 | heap_area_t *area = head->area;
|
---|
| 826 |
|
---|
| 827 | area_check(area);
|
---|
[13f2461] | 828 | malloc_assert((void *) head >= (void *) AREA_FIRST_BLOCK_HEAD(area));
|
---|
| 829 | malloc_assert((void *) head < area->end);
|
---|
[0b37882] | 830 |
|
---|
[6db6fd1] | 831 | void *ptr = NULL;
|
---|
[3292623] | 832 | bool reloc = false;
|
---|
[f450280] | 833 | size_t real_size = GROSS_SIZE(ALIGN_UP(size, BASE_ALIGN));
|
---|
[6db6fd1] | 834 | size_t orig_size = head->size;
|
---|
| 835 |
|
---|
| 836 | if (orig_size > real_size) {
|
---|
| 837 | /* Shrink */
|
---|
| 838 | if (orig_size - real_size >= STRUCT_OVERHEAD) {
|
---|
[0b37882] | 839 | /*
|
---|
| 840 | * Split the original block to a full block
|
---|
| 841 | * and a trailing free block.
|
---|
| 842 | */
|
---|
| 843 | block_init((void *) head, real_size, false, area);
|
---|
[6db6fd1] | 844 | block_init((void *) head + real_size,
|
---|
[0b37882] | 845 | orig_size - real_size, true, area);
|
---|
[013a5d7] | 846 | heap_shrink(area);
|
---|
[6db6fd1] | 847 | }
|
---|
| 848 |
|
---|
| 849 | ptr = ((void *) head) + sizeof(heap_block_head_t);
|
---|
| 850 | } else {
|
---|
[0b37882] | 851 | /*
|
---|
| 852 | * Look at the next block. If it is free and the size is
|
---|
| 853 | * sufficient then merge the two. Otherwise just allocate
|
---|
| 854 | * a new block, copy the original data into it and
|
---|
| 855 | * free the original block.
|
---|
| 856 | */
|
---|
[6db6fd1] | 857 | heap_block_head_t *next_head =
|
---|
| 858 | (heap_block_head_t *) (((void *) head) + head->size);
|
---|
| 859 |
|
---|
[0b37882] | 860 | if (((void *) next_head < area->end) &&
|
---|
[7d88587] | 861 | (head->size + next_head->size >= real_size) &&
|
---|
| 862 | (next_head->free)) {
|
---|
[6db6fd1] | 863 | block_check(next_head);
|
---|
[0b37882] | 864 | block_init(head, head->size + next_head->size, false, area);
|
---|
[ba0aa6f] | 865 | split_mark(head, real_size);
|
---|
[6db6fd1] | 866 |
|
---|
| 867 | ptr = ((void *) head) + sizeof(heap_block_head_t);
|
---|
[207533f] | 868 | next_fit = NULL;
|
---|
[3292623] | 869 | } else
|
---|
| 870 | reloc = true;
|
---|
| 871 | }
|
---|
| 872 |
|
---|
| 873 | futex_up(&malloc_futex);
|
---|
| 874 |
|
---|
| 875 | if (reloc) {
|
---|
| 876 | ptr = malloc(size);
|
---|
| 877 | if (ptr != NULL) {
|
---|
| 878 | memcpy(ptr, addr, NET_SIZE(orig_size));
|
---|
| 879 | free(addr);
|
---|
[6db6fd1] | 880 | }
|
---|
| 881 | }
|
---|
| 882 |
|
---|
| 883 | return ptr;
|
---|
| 884 | }
|
---|
| 885 |
|
---|
| 886 | /** Free a memory block
|
---|
| 887 | *
|
---|
| 888 | * @param addr The address of the block.
|
---|
[3292623] | 889 | *
|
---|
[6db6fd1] | 890 | */
|
---|
| 891 | void free(const void *addr)
|
---|
| 892 | {
|
---|
[3019612] | 893 | if (addr == NULL)
|
---|
| 894 | return;
|
---|
| 895 |
|
---|
[3292623] | 896 | futex_down(&malloc_futex);
|
---|
| 897 |
|
---|
[6db6fd1] | 898 | /* Calculate the position of the header. */
|
---|
| 899 | heap_block_head_t *head
|
---|
| 900 | = (heap_block_head_t *) (addr - sizeof(heap_block_head_t));
|
---|
| 901 |
|
---|
| 902 | block_check(head);
|
---|
[13f2461] | 903 | malloc_assert(!head->free);
|
---|
[6db6fd1] | 904 |
|
---|
[0b37882] | 905 | heap_area_t *area = head->area;
|
---|
| 906 |
|
---|
| 907 | area_check(area);
|
---|
[13f2461] | 908 | malloc_assert((void *) head >= (void *) AREA_FIRST_BLOCK_HEAD(area));
|
---|
| 909 | malloc_assert((void *) head < area->end);
|
---|
[0b37882] | 910 |
|
---|
[6db6fd1] | 911 | /* Mark the block itself as free. */
|
---|
| 912 | head->free = true;
|
---|
| 913 |
|
---|
| 914 | /* Look at the next block. If it is free, merge the two. */
|
---|
| 915 | heap_block_head_t *next_head
|
---|
| 916 | = (heap_block_head_t *) (((void *) head) + head->size);
|
---|
| 917 |
|
---|
[0b37882] | 918 | if ((void *) next_head < area->end) {
|
---|
[6db6fd1] | 919 | block_check(next_head);
|
---|
| 920 | if (next_head->free)
|
---|
[0b37882] | 921 | block_init(head, head->size + next_head->size, true, area);
|
---|
[6db6fd1] | 922 | }
|
---|
| 923 |
|
---|
| 924 | /* Look at the previous block. If it is free, merge the two. */
|
---|
[013a5d7] | 925 | if ((void *) head > (void *) AREA_FIRST_BLOCK_HEAD(area)) {
|
---|
[6db6fd1] | 926 | heap_block_foot_t *prev_foot =
|
---|
| 927 | (heap_block_foot_t *) (((void *) head) - sizeof(heap_block_foot_t));
|
---|
| 928 |
|
---|
| 929 | heap_block_head_t *prev_head =
|
---|
| 930 | (heap_block_head_t *) (((void *) head) - prev_foot->size);
|
---|
| 931 |
|
---|
| 932 | block_check(prev_head);
|
---|
| 933 |
|
---|
| 934 | if (prev_head->free)
|
---|
[0b37882] | 935 | block_init(prev_head, prev_head->size + head->size, true,
|
---|
| 936 | area);
|
---|
[6db6fd1] | 937 | }
|
---|
| 938 |
|
---|
[013a5d7] | 939 | heap_shrink(area);
|
---|
[3292623] | 940 |
|
---|
| 941 | futex_up(&malloc_futex);
|
---|
[6db6fd1] | 942 | }
|
---|
| 943 |
|
---|
[1b3e854] | 944 | void *heap_check(void)
|
---|
| 945 | {
|
---|
| 946 | futex_down(&malloc_futex);
|
---|
| 947 |
|
---|
| 948 | if (first_heap_area == NULL) {
|
---|
| 949 | futex_up(&malloc_futex);
|
---|
| 950 | return (void *) -1;
|
---|
| 951 | }
|
---|
| 952 |
|
---|
| 953 | /* Walk all heap areas */
|
---|
| 954 | for (heap_area_t *area = first_heap_area; area != NULL;
|
---|
| 955 | area = area->next) {
|
---|
| 956 |
|
---|
| 957 | /* Check heap area consistency */
|
---|
| 958 | if ((area->magic != HEAP_AREA_MAGIC) ||
|
---|
| 959 | ((void *) area != area->start) ||
|
---|
| 960 | (area->start >= area->end) ||
|
---|
| 961 | (((uintptr_t) area->start % PAGE_SIZE) != 0) ||
|
---|
| 962 | (((uintptr_t) area->end % PAGE_SIZE) != 0)) {
|
---|
| 963 | futex_up(&malloc_futex);
|
---|
| 964 | return (void *) area;
|
---|
| 965 | }
|
---|
| 966 |
|
---|
| 967 | /* Walk all heap blocks */
|
---|
| 968 | for (heap_block_head_t *head = (heap_block_head_t *)
|
---|
| 969 | AREA_FIRST_BLOCK_HEAD(area); (void *) head < area->end;
|
---|
| 970 | head = (heap_block_head_t *) (((void *) head) + head->size)) {
|
---|
| 971 |
|
---|
| 972 | /* Check heap block consistency */
|
---|
| 973 | if (head->magic != HEAP_BLOCK_HEAD_MAGIC) {
|
---|
| 974 | futex_up(&malloc_futex);
|
---|
| 975 | return (void *) head;
|
---|
| 976 | }
|
---|
| 977 |
|
---|
| 978 | heap_block_foot_t *foot = BLOCK_FOOT(head);
|
---|
| 979 |
|
---|
| 980 | if ((foot->magic != HEAP_BLOCK_FOOT_MAGIC) ||
|
---|
| 981 | (head->size != foot->size)) {
|
---|
| 982 | futex_up(&malloc_futex);
|
---|
| 983 | return (void *) foot;
|
---|
| 984 | }
|
---|
| 985 | }
|
---|
| 986 | }
|
---|
| 987 |
|
---|
| 988 | futex_up(&malloc_futex);
|
---|
| 989 |
|
---|
| 990 | return NULL;
|
---|
| 991 | }
|
---|
| 992 |
|
---|
[6db6fd1] | 993 | /** @}
|
---|
| 994 | */
|
---|