| 1 | /*
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| 2 | * Copyright 1988, 1989 Hans-J. Boehm, Alan J. Demers
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| 3 | * Copyright (c) 1991-1994 by Xerox Corporation. All rights reserved.
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| 4 | * Copyright (c) 2000 by Hewlett-Packard Company. All rights reserved.
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| 5 | *
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| 6 | * THIS MATERIAL IS PROVIDED AS IS, WITH ABSOLUTELY NO WARRANTY EXPRESSED
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| 7 | * OR IMPLIED. ANY USE IS AT YOUR OWN RISK.
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| 8 | *
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| 9 | * Permission is hereby granted to use or copy this program
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| 10 | * for any purpose, provided the above notices are retained on all copies.
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| 11 | * Permission to modify the code and to distribute modified code is granted,
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| 12 | * provided the above notices are retained, and a notice that the code was
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| 13 | * modified is included with the above copyright notice.
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| 14 | *
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| 15 | * This file contains the functions:
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| 16 | * ptr_t GC_build_flXXX(h, old_fl)
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| 17 | * void GC_new_hblk(n)
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| 18 | */
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| 19 | /* Boehm, May 19, 1994 2:09 pm PDT */
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| 20 |
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| 21 |
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| 22 | # include <stdio.h>
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| 23 | # include "private/gc_priv.h"
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| 24 |
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| 25 | #ifndef SMALL_CONFIG
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| 26 | /*
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| 27 | * Build a free list for size 1 objects inside hblk h. Set the last link to
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| 28 | * be ofl. Return a pointer tpo the first free list entry.
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| 29 | */
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| 30 | ptr_t GC_build_fl1(h, ofl)
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| 31 | struct hblk *h;
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| 32 | ptr_t ofl;
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| 33 | {
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| 34 | register word * p = h -> hb_body;
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| 35 | register word * lim = (word *)(h + 1);
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| 36 |
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| 37 | p[0] = (word)ofl;
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| 38 | p[1] = (word)(p);
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| 39 | p[2] = (word)(p+1);
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| 40 | p[3] = (word)(p+2);
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| 41 | p += 4;
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| 42 | for (; p < lim; p += 4) {
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| 43 | p[0] = (word)(p-1);
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| 44 | p[1] = (word)(p);
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| 45 | p[2] = (word)(p+1);
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| 46 | p[3] = (word)(p+2);
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| 47 | };
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| 48 | return((ptr_t)(p-1));
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| 49 | }
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| 50 |
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| 51 | /* The same for size 2 cleared objects */
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| 52 | ptr_t GC_build_fl_clear2(h, ofl)
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| 53 | struct hblk *h;
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| 54 | ptr_t ofl;
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| 55 | {
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| 56 | register word * p = h -> hb_body;
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| 57 | register word * lim = (word *)(h + 1);
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| 58 |
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| 59 | p[0] = (word)ofl;
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| 60 | p[1] = 0;
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| 61 | p[2] = (word)p;
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| 62 | p[3] = 0;
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| 63 | p += 4;
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| 64 | for (; p < lim; p += 4) {
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| 65 | p[0] = (word)(p-2);
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| 66 | p[1] = 0;
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| 67 | p[2] = (word)p;
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| 68 | p[3] = 0;
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| 69 | };
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| 70 | return((ptr_t)(p-2));
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| 71 | }
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| 72 |
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| 73 | /* The same for size 3 cleared objects */
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| 74 | ptr_t GC_build_fl_clear3(h, ofl)
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| 75 | struct hblk *h;
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| 76 | ptr_t ofl;
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| 77 | {
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| 78 | register word * p = h -> hb_body;
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| 79 | register word * lim = (word *)(h + 1) - 2;
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| 80 |
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| 81 | p[0] = (word)ofl;
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| 82 | p[1] = 0;
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| 83 | p[2] = 0;
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| 84 | p += 3;
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| 85 | for (; p < lim; p += 3) {
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| 86 | p[0] = (word)(p-3);
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| 87 | p[1] = 0;
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| 88 | p[2] = 0;
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| 89 | };
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| 90 | return((ptr_t)(p-3));
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| 91 | }
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| 92 |
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| 93 | /* The same for size 4 cleared objects */
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| 94 | ptr_t GC_build_fl_clear4(h, ofl)
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| 95 | struct hblk *h;
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| 96 | ptr_t ofl;
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| 97 | {
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| 98 | register word * p = h -> hb_body;
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| 99 | register word * lim = (word *)(h + 1);
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| 100 |
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| 101 | p[0] = (word)ofl;
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| 102 | p[1] = 0;
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| 103 | p[2] = 0;
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| 104 | p[3] = 0;
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| 105 | p += 4;
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| 106 | for (; p < lim; p += 4) {
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| 107 | PREFETCH_FOR_WRITE(p+64);
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| 108 | p[0] = (word)(p-4);
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| 109 | p[1] = 0;
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| 110 | CLEAR_DOUBLE(p+2);
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| 111 | };
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| 112 | return((ptr_t)(p-4));
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| 113 | }
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| 114 |
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| 115 | /* The same for size 2 uncleared objects */
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| 116 | ptr_t GC_build_fl2(h, ofl)
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| 117 | struct hblk *h;
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| 118 | ptr_t ofl;
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| 119 | {
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| 120 | register word * p = h -> hb_body;
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| 121 | register word * lim = (word *)(h + 1);
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| 122 |
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| 123 | p[0] = (word)ofl;
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| 124 | p[2] = (word)p;
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| 125 | p += 4;
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| 126 | for (; p < lim; p += 4) {
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| 127 | p[0] = (word)(p-2);
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| 128 | p[2] = (word)p;
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| 129 | };
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| 130 | return((ptr_t)(p-2));
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| 131 | }
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| 132 |
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| 133 | /* The same for size 4 uncleared objects */
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| 134 | ptr_t GC_build_fl4(h, ofl)
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| 135 | struct hblk *h;
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| 136 | ptr_t ofl;
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| 137 | {
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| 138 | register word * p = h -> hb_body;
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| 139 | register word * lim = (word *)(h + 1);
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| 140 |
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| 141 | p[0] = (word)ofl;
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| 142 | p[4] = (word)p;
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| 143 | p += 8;
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| 144 | for (; p < lim; p += 8) {
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| 145 | PREFETCH_FOR_WRITE(p+64);
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| 146 | p[0] = (word)(p-4);
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| 147 | p[4] = (word)p;
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| 148 | };
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| 149 | return((ptr_t)(p-4));
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| 150 | }
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| 151 |
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| 152 | #endif /* !SMALL_CONFIG */
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| 153 |
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| 154 |
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| 155 | /* Build a free list for objects of size sz inside heap block h. */
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| 156 | /* Clear objects inside h if clear is set. Add list to the end of */
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| 157 | /* the free list we build. Return the new free list. */
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| 158 | /* This could be called without the main GC lock, if we ensure that */
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| 159 | /* there is no concurrent collection which might reclaim objects that */
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| 160 | /* we have not yet allocated. */
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| 161 | ptr_t GC_build_fl(h, sz, clear, list)
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| 162 | struct hblk *h;
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| 163 | word sz;
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| 164 | GC_bool clear;
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| 165 | ptr_t list;
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| 166 | {
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| 167 | word *p, *prev;
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| 168 | word *last_object; /* points to last object in new hblk */
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| 169 |
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| 170 | /* Do a few prefetches here, just because its cheap. */
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| 171 | /* If we were more serious about it, these should go inside */
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| 172 | /* the loops. But write prefetches usually don't seem to */
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| 173 | /* matter much. */
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| 174 | PREFETCH_FOR_WRITE((char *)h);
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| 175 | PREFETCH_FOR_WRITE((char *)h + 128);
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| 176 | PREFETCH_FOR_WRITE((char *)h + 256);
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| 177 | PREFETCH_FOR_WRITE((char *)h + 378);
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| 178 | /* Handle small objects sizes more efficiently. For larger objects */
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| 179 | /* the difference is less significant. */
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| 180 | # ifndef SMALL_CONFIG
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| 181 | switch (sz) {
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| 182 | case 1: return GC_build_fl1(h, list);
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| 183 | case 2: if (clear) {
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| 184 | return GC_build_fl_clear2(h, list);
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| 185 | } else {
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| 186 | return GC_build_fl2(h, list);
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| 187 | }
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| 188 | case 3: if (clear) {
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| 189 | return GC_build_fl_clear3(h, list);
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| 190 | } else {
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| 191 | /* It's messy to do better than the default here. */
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| 192 | break;
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| 193 | }
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| 194 | case 4: if (clear) {
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| 195 | return GC_build_fl_clear4(h, list);
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| 196 | } else {
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| 197 | return GC_build_fl4(h, list);
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| 198 | }
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| 199 | default:
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| 200 | break;
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| 201 | }
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| 202 | # endif /* !SMALL_CONFIG */
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| 203 |
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| 204 | /* Clear the page if necessary. */
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| 205 | if (clear) BZERO(h, HBLKSIZE);
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| 206 |
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| 207 | /* Add objects to free list */
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| 208 | p = &(h -> hb_body[sz]); /* second object in *h */
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| 209 | prev = &(h -> hb_body[0]); /* One object behind p */
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| 210 | last_object = (word *)((char *)h + HBLKSIZE);
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| 211 | last_object -= sz;
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| 212 | /* Last place for last object to start */
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| 213 |
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| 214 | /* make a list of all objects in *h with head as last object */
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| 215 | while (p <= last_object) {
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| 216 | /* current object's link points to last object */
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| 217 | obj_link(p) = (ptr_t)prev;
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| 218 | prev = p;
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| 219 | p += sz;
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| 220 | }
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| 221 | p -= sz; /* p now points to last object */
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| 222 |
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| 223 | /*
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| 224 | * put p (which is now head of list of objects in *h) as first
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| 225 | * pointer in the appropriate free list for this size.
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| 226 | */
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| 227 | obj_link(h -> hb_body) = list;
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| 228 | return ((ptr_t)p);
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| 229 | }
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| 230 |
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| 231 | /*
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| 232 | * Allocate a new heapblock for small objects of size n.
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| 233 | * Add all of the heapblock's objects to the free list for objects
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| 234 | * of that size.
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| 235 | * Set all mark bits if objects are uncollectable.
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| 236 | * Will fail to do anything if we are out of memory.
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| 237 | */
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| 238 | void GC_new_hblk(sz, kind)
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| 239 | register word sz;
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| 240 | int kind;
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| 241 | {
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| 242 | register struct hblk *h; /* the new heap block */
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| 243 | register GC_bool clear = GC_obj_kinds[kind].ok_init;
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| 244 |
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| 245 | # ifdef PRINTSTATS
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| 246 | if ((sizeof (struct hblk)) > HBLKSIZE) {
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| 247 | ABORT("HBLK SZ inconsistency");
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| 248 | }
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| 249 | # endif
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| 250 | if (GC_debugging_started) clear = TRUE;
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| 251 |
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| 252 | /* Allocate a new heap block */
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| 253 | h = GC_allochblk(sz, kind, 0);
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| 254 | if (h == 0) return;
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| 255 |
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| 256 | /* Mark all objects if appropriate. */
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| 257 | if (IS_UNCOLLECTABLE(kind)) GC_set_hdr_marks(HDR(h));
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| 258 |
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| 259 | /* Build the free list */
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| 260 | GC_obj_kinds[kind].ok_freelist[sz] =
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| 261 | GC_build_fl(h, sz, clear, GC_obj_kinds[kind].ok_freelist[sz]);
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| 262 | }
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| 263 |
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