| 1 | /*
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| 2 | * Copyright (c) 2001 by Hewlett-Packard Company. All rights reserved.
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| 3 | *
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| 4 | * THIS MATERIAL IS PROVIDED AS IS, WITH ABSOLUTELY NO WARRANTY EXPRESSED
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| 5 | * OR IMPLIED. ANY USE IS AT YOUR OWN RISK.
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| 6 | *
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| 7 | * Permission is hereby granted to use or copy this program
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| 8 | * for any purpose, provided the above notices are retained on all copies.
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| 9 | * Permission to modify the code and to distribute modified code is granted,
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| 10 | * provided the above notices are retained, and a notice that the code was
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| 11 | * modified is included with the above copyright notice.
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| 12 | *
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| 13 | */
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| 14 |
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| 15 | /*
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| 16 | * This implements a full, though not well-tuned, representation of the
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| 17 | * backwards points-to graph. This is used to test for non-GC-robust
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| 18 | * data structures; the code is not used during normal garbage collection.
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| 19 | *
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| 20 | * One restriction is that we drop all back-edges from nodes with very
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| 21 | * high in-degree, and simply add them add them to a list of such
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| 22 | * nodes. They are then treated as permanent roots. Id this by itself
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| 23 | * doesn't introduce a space leak, then such nodes can't contribute to
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| 24 | * a growing space leak.
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| 25 | */
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| 26 |
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| 27 | #ifdef MAKE_BACK_GRAPH
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| 28 |
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| 29 | #define MAX_IN 10 /* Maximum in-degree we handle directly */
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| 30 |
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| 31 | #include "private/dbg_mlc.h"
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| 32 | #include <unistd.h>
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| 33 |
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| 34 | #if !defined(DBG_HDRS_ALL) || (ALIGNMENT != CPP_WORDSZ/8) || !defined(UNIX_LIKE)
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| 35 | # error Configuration doesnt support MAKE_BACK_GRAPH
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| 36 | #endif
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| 37 |
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| 38 | /* We store single back pointers directly in the object's oh_bg_ptr field. */
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| 39 | /* If there is more than one ptr to an object, we store q | FLAG_MANY, */
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| 40 | /* where q is a pointer to a back_edges object. */
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| 41 | /* Every once in a while we use a back_edges object even for a single */
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| 42 | /* pointer, since we need the other fields in the back_edges structure to */
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| 43 | /* be present in some fraction of the objects. Otherwise we get serious */
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| 44 | /* performance issues. */
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| 45 | #define FLAG_MANY 2
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| 46 |
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| 47 | typedef struct back_edges_struct {
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| 48 | word n_edges; /* Number of edges, including those in continuation */
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| 49 | /* structures. */
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| 50 | unsigned short flags;
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| 51 | # define RETAIN 1 /* Directly points to a reachable object; */
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| 52 | /* retain for next GC. */
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| 53 | unsigned short height_gc_no;
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| 54 | /* If height > 0, then the GC_gc_no value when it */
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| 55 | /* was computed. If it was computed this cycle, then */
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| 56 | /* it is current. If it was computed during the */
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| 57 | /* last cycle, then it represents the old height, */
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| 58 | /* which is only saved for live objects referenced by */
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| 59 | /* dead ones. This may grow due to refs from newly */
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| 60 | /* dead objects. */
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| 61 | signed_word height;
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| 62 | /* Longest path through unreachable nodes to this node */
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| 63 | /* that we found using depth first search. */
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| 64 |
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| 65 | # define HEIGHT_UNKNOWN ((signed_word)(-2))
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| 66 | # define HEIGHT_IN_PROGRESS ((signed_word)(-1))
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| 67 | ptr_t edges[MAX_IN];
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| 68 | struct back_edges_struct *cont;
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| 69 | /* Pointer to continuation structure; we use only the */
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| 70 | /* edges field in the continuation. */
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| 71 | /* also used as free list link. */
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| 72 | } back_edges;
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| 73 |
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| 74 | /* Allocate a new back edge structure. Should be more sophisticated */
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| 75 | /* if this were production code. */
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| 76 | #define MAX_BACK_EDGE_STRUCTS 100000
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| 77 | static back_edges *back_edge_space = 0;
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| 78 | int GC_n_back_edge_structs = 0; /* Serves as pointer to never used */
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| 79 | /* back_edges space. */
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| 80 | static back_edges *avail_back_edges = 0;
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| 81 | /* Pointer to free list of deallocated */
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| 82 | /* back_edges structures. */
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| 83 |
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| 84 | static back_edges * new_back_edges(void)
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| 85 | {
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| 86 | if (0 == back_edge_space) {
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| 87 | back_edge_space = (back_edges *)
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| 88 | sbrk(MAX_BACK_EDGE_STRUCTS*sizeof(back_edges));
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| 89 | }
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| 90 | if (0 != avail_back_edges) {
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| 91 | back_edges * result = avail_back_edges;
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| 92 | avail_back_edges = result -> cont;
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| 93 | result -> cont = 0;
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| 94 | return result;
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| 95 | }
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| 96 | if (GC_n_back_edge_structs >= MAX_BACK_EDGE_STRUCTS - 1) {
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| 97 | ABORT("needed too much space for back edges: adjust "
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| 98 | "MAX_BACK_EDGE_STRUCTS");
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| 99 | }
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| 100 | return back_edge_space + (GC_n_back_edge_structs++);
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| 101 | }
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| 102 |
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| 103 | /* Deallocate p and its associated continuation structures. */
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| 104 | static void deallocate_back_edges(back_edges *p)
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| 105 | {
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| 106 | back_edges *last = p;
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| 107 |
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| 108 | while (0 != last -> cont) last = last -> cont;
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| 109 | last -> cont = avail_back_edges;
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| 110 | avail_back_edges = p;
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| 111 | }
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| 112 |
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| 113 | /* Table of objects that are currently on the depth-first search */
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| 114 | /* stack. Only objects with in-degree one are in this table. */
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| 115 | /* Other objects are identified using HEIGHT_IN_PROGRESS. */
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| 116 | /* This data structure NEEDS IMPROVEMENT. */
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| 117 | #define MAX_IN_PROGRESS 10000
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| 118 | static ptr_t * in_progress_space = 0;
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| 119 | static int n_in_progress = 0;
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| 120 |
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| 121 | static void push_in_progress(ptr_t p)
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| 122 | {
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| 123 | if (in_progress_space == 0)
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| 124 | in_progress_space = sbrk(MAX_IN_PROGRESS * sizeof(ptr_t));
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| 125 | if (n_in_progress == MAX_IN_PROGRESS)
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| 126 | ABORT("Exceeded MAX_IN_PROGRESS");
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| 127 | in_progress_space[n_in_progress++] = p;
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| 128 | }
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| 129 |
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| 130 | static GC_bool is_in_progress(ptr_t p)
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| 131 | {
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| 132 | int i;
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| 133 | for (i = 0; i < n_in_progress; ++i) {
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| 134 | if (in_progress_space[i] == p) return TRUE;
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| 135 | }
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| 136 | return FALSE;
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| 137 | }
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| 138 |
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| 139 | static void pop_in_progress(ptr_t p)
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| 140 | {
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| 141 | --n_in_progress;
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| 142 | GC_ASSERT(in_progress_space[n_in_progress] == p);
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| 143 | }
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| 144 |
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| 145 | #define GET_OH_BG_PTR(p) \
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| 146 | (ptr_t)REVEAL_POINTER(((oh *)(p)) -> oh_bg_ptr)
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| 147 | #define SET_OH_BG_PTR(p,q) (((oh *)(p)) -> oh_bg_ptr) = HIDE_POINTER(q)
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| 148 |
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| 149 | /* Execute s once for each predecessor q of p in the points-to graph. */
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| 150 | /* s should be a bracketed statement. We declare q. */
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| 151 | #define FOR_EACH_PRED(q, p, s) \
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| 152 | { \
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| 153 | ptr_t q = GET_OH_BG_PTR(p); \
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| 154 | if (!((word)q & FLAG_MANY)) { \
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| 155 | if (q && !((word)q & 1)) s \
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| 156 | /* !((word)q & 1) checks for a misnterpreted freelist link */ \
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| 157 | } else { \
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| 158 | back_edges *orig_be_ = (back_edges *)((word)q & ~FLAG_MANY); \
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| 159 | back_edges *be_ = orig_be_; \
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| 160 | int total_, local_; \
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| 161 | int n_edges_ = be_ -> n_edges; \
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| 162 | for (total_ = 0, local_ = 0; total_ < n_edges_; ++local_, ++total_) { \
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| 163 | if (local_ == MAX_IN) { \
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| 164 | be_ = be_ -> cont; \
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| 165 | local_ = 0; \
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| 166 | } \
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| 167 | q = be_ -> edges[local_]; s \
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| 168 | } \
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| 169 | } \
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| 170 | }
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| 171 |
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| 172 | /* Ensure that p has a back_edges structure associated with it. */
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| 173 | static void ensure_struct(ptr_t p)
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| 174 | {
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| 175 | ptr_t old_back_ptr = GET_OH_BG_PTR(p);
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| 176 |
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| 177 | if (!((word)old_back_ptr & FLAG_MANY)) {
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| 178 | back_edges *be = new_back_edges();
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| 179 | be -> flags = 0;
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| 180 | if (0 == old_back_ptr) {
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| 181 | be -> n_edges = 0;
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| 182 | } else {
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| 183 | be -> n_edges = 1;
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| 184 | be -> edges[0] = old_back_ptr;
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| 185 | }
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| 186 | be -> height = HEIGHT_UNKNOWN;
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| 187 | be -> height_gc_no = GC_gc_no - 1;
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| 188 | GC_ASSERT(be >= back_edge_space);
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| 189 | SET_OH_BG_PTR(p, (word)be | FLAG_MANY);
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| 190 | }
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| 191 | }
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| 192 |
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| 193 | /* Add the (forward) edge from p to q to the backward graph. Both p */
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| 194 | /* q are pointers to the object base, i.e. pointers to an oh. */
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| 195 | static void add_edge(ptr_t p, ptr_t q)
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| 196 | {
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| 197 | ptr_t old_back_ptr = GET_OH_BG_PTR(q);
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| 198 | back_edges * be, *be_cont;
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| 199 | word i;
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| 200 | static unsigned random_number = 13;
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| 201 | # define GOT_LUCKY_NUMBER (((++random_number) & 0x7f) == 0)
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| 202 | /* A not very random number we use to occasionally allocate a */
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| 203 | /* back_edges structure even for a single backward edge. This */
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| 204 | /* prevents us from repeatedly tracing back through very long */
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| 205 | /* chains, since we will have some place to store height and */
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| 206 | /* in_progress flags along the way. */
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| 207 |
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| 208 | GC_ASSERT(p == GC_base(p) && q == GC_base(q));
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| 209 | if (!GC_HAS_DEBUG_INFO(q) || !GC_HAS_DEBUG_INFO(p)) {
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| 210 | /* This is really a misinterpreted free list link, since we saw */
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| 211 | /* a pointer to a free list. Dont overwrite it! */
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| 212 | return;
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| 213 | }
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| 214 | if (0 == old_back_ptr) {
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| 215 | SET_OH_BG_PTR(q, p);
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| 216 | if (GOT_LUCKY_NUMBER) ensure_struct(q);
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| 217 | return;
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| 218 | }
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| 219 | /* Check whether it was already in the list of predecessors. */
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| 220 | FOR_EACH_PRED(pred, q, { if (p == pred) return; });
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| 221 | ensure_struct(q);
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| 222 | old_back_ptr = GET_OH_BG_PTR(q);
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| 223 | be = (back_edges *)((word)old_back_ptr & ~FLAG_MANY);
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| 224 | for (i = be -> n_edges, be_cont = be; i > MAX_IN;
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| 225 | be_cont = be_cont -> cont, i -= MAX_IN) {}
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| 226 | if (i == MAX_IN) {
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| 227 | be_cont -> cont = new_back_edges();
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| 228 | be_cont = be_cont -> cont;
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| 229 | i = 0;
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| 230 | }
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| 231 | be_cont -> edges[i] = p;
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| 232 | be -> n_edges++;
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| 233 | if (be -> n_edges == 100) {
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| 234 | # if 0
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| 235 | if (GC_print_stats) {
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| 236 | GC_err_printf0("The following object has in-degree >= 100:\n");
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| 237 | GC_print_heap_obj(q);
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| 238 | }
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| 239 | # endif
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| 240 | }
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| 241 | }
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| 242 |
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| 243 | typedef void (*per_object_func)(ptr_t p, word n_words, word gc_descr);
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| 244 |
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| 245 | static void per_object_helper(struct hblk *h, word fn)
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| 246 | {
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| 247 | hdr * hhdr = HDR(h);
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| 248 | word sz = hhdr -> hb_sz;
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| 249 | word descr = hhdr -> hb_descr;
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| 250 | per_object_func f = (per_object_func)fn;
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| 251 | int i = 0;
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| 252 |
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| 253 | do {
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| 254 | f((ptr_t)(h -> hb_body + i), sz, descr);
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| 255 | i += sz;
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| 256 | } while (i + sz <= BYTES_TO_WORDS(HBLKSIZE));
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| 257 | }
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| 258 |
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| 259 | void GC_apply_to_each_object(per_object_func f)
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| 260 | {
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| 261 | GC_apply_to_all_blocks(per_object_helper, (word)f);
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| 262 | }
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| 263 |
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| 264 | static void reset_back_edge(ptr_t p, word n_words, word gc_descr)
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| 265 | {
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| 266 | /* Skip any free list links, or dropped blocks */
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| 267 | if (GC_HAS_DEBUG_INFO(p)) {
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| 268 | ptr_t old_back_ptr = GET_OH_BG_PTR(p);
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| 269 | if ((word)old_back_ptr & FLAG_MANY) {
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| 270 | back_edges *be = (back_edges *)((word)old_back_ptr & ~FLAG_MANY);
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| 271 | if (!(be -> flags & RETAIN)) {
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| 272 | deallocate_back_edges(be);
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| 273 | SET_OH_BG_PTR(p, 0);
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| 274 | } else {
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| 275 | word *currentp;
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| 276 |
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| 277 | GC_ASSERT(GC_is_marked(p));
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| 278 |
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| 279 | /* Back edges may point to objects that will not be retained. */
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| 280 | /* Delete them for now, but remember the height. */
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| 281 | /* Some will be added back at next GC. */
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| 282 | be -> n_edges = 0;
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| 283 | if (0 != be -> cont) {
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| 284 | deallocate_back_edges(be -> cont);
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| 285 | be -> cont = 0;
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| 286 | }
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| 287 |
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| 288 | GC_ASSERT(GC_is_marked(p));
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| 289 |
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| 290 | /* We only retain things for one GC cycle at a time. */
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| 291 | be -> flags &= ~RETAIN;
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| 292 | }
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| 293 | } else /* Simple back pointer */ {
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| 294 | /* Clear to avoid dangling pointer. */
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| 295 | SET_OH_BG_PTR(p, 0);
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| 296 | }
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| 297 | }
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| 298 | }
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| 299 |
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| 300 | static void add_back_edges(ptr_t p, word n_words, word gc_descr)
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| 301 | {
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| 302 | word *currentp = (word *)(p + sizeof(oh));
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| 303 |
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| 304 | /* For now, fix up non-length descriptors conservatively. */
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| 305 | if((gc_descr & GC_DS_TAGS) != GC_DS_LENGTH) {
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| 306 | gc_descr = WORDS_TO_BYTES(n_words);
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| 307 | }
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| 308 | while (currentp < (word *)(p + gc_descr)) {
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| 309 | word current = *currentp++;
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| 310 | if (current >= (word)GC_least_plausible_heap_addr &&
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| 311 | current <= (word)GC_greatest_plausible_heap_addr) {
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| 312 | ptr_t target = GC_base((GC_PTR)current);
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| 313 | if (0 != target) {
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| 314 | add_edge(p, target);
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| 315 | }
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| 316 | }
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| 317 | }
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| 318 | }
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| 319 |
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| 320 | /* Rebuild the reprentation of the backward reachability graph. */
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| 321 | /* Does not examine mark bits. Can be called before GC. */
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| 322 | void GC_build_back_graph(void)
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| 323 | {
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| 324 | GC_apply_to_each_object(add_back_edges);
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| 325 | }
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| 326 |
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| 327 | /* Return an approximation to the length of the longest simple path */
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| 328 | /* through unreachable objects to p. We refer to this as the height */
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| 329 | /* of p. */
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| 330 | static word backwards_height(ptr_t p)
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| 331 | {
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| 332 | word result;
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| 333 | ptr_t back_ptr = GET_OH_BG_PTR(p);
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| 334 | back_edges *be;
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| 335 |
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| 336 | if (0 == back_ptr) return 1;
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| 337 | if (!((word)back_ptr & FLAG_MANY)) {
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| 338 | if (is_in_progress(p)) return 0; /* DFS back edge, i.e. we followed */
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| 339 | /* an edge to an object already */
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| 340 | /* on our stack: ignore */
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| 341 | push_in_progress(p);
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| 342 | result = backwards_height(back_ptr)+1;
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| 343 | pop_in_progress(p);
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| 344 | return result;
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| 345 | }
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| 346 | be = (back_edges *)((word)back_ptr & ~FLAG_MANY);
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| 347 | if (be -> height >= 0 && be -> height_gc_no == GC_gc_no)
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| 348 | return be -> height;
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| 349 | /* Ignore back edges in DFS */
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| 350 | if (be -> height == HEIGHT_IN_PROGRESS) return 0;
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| 351 | result = (be -> height > 0? be -> height : 1);
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| 352 | be -> height = HEIGHT_IN_PROGRESS;
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| 353 | FOR_EACH_PRED(q, p, {
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| 354 | word this_height;
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| 355 | if (GC_is_marked(q) && !(FLAG_MANY & (word)GET_OH_BG_PTR(p))) {
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| 356 | if (GC_print_stats)
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| 357 | GC_printf2("Found bogus pointer from 0x%lx to 0x%lx\n", q, p);
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| 358 | /* Reachable object "points to" unreachable one. */
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| 359 | /* Could be caused by our lax treatment of GC descriptors. */
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| 360 | this_height = 1;
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| 361 | } else {
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| 362 | this_height = backwards_height(q);
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| 363 | }
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| 364 | if (this_height >= result) result = this_height + 1;
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| 365 | });
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| 366 | be -> height = result;
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| 367 | be -> height_gc_no = GC_gc_no;
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| 368 | return result;
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| 369 | }
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| 370 |
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| 371 | word GC_max_height;
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| 372 | ptr_t GC_deepest_obj;
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| 373 |
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| 374 | /* Compute the maximum height of every unreachable predecessor p of a */
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| 375 | /* reachable object. Arrange to save the heights of all such objects p */
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| 376 | /* so that they can be used in calculating the height of objects in the */
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| 377 | /* next GC. */
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| 378 | /* Set GC_max_height to be the maximum height we encounter, and */
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| 379 | /* GC_deepest_obj to be the corresponding object. */
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| 380 | static void update_max_height(ptr_t p, word n_words, word gc_descr)
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| 381 | {
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| 382 | if (GC_is_marked(p) && GC_HAS_DEBUG_INFO(p)) {
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| 383 | int i;
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| 384 | word p_height = 0;
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| 385 | ptr_t p_deepest_obj = 0;
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| 386 | ptr_t back_ptr;
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| 387 | back_edges *be = 0;
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| 388 |
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| 389 | /* If we remembered a height last time, use it as a minimum. */
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| 390 | /* It may have increased due to newly unreachable chains pointing */
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| 391 | /* to p, but it can't have decreased. */
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| 392 | back_ptr = GET_OH_BG_PTR(p);
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| 393 | if (0 != back_ptr && ((word)back_ptr & FLAG_MANY)) {
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| 394 | be = (back_edges *)((word)back_ptr & ~FLAG_MANY);
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| 395 | if (be -> height != HEIGHT_UNKNOWN) p_height = be -> height;
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| 396 | }
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| 397 | FOR_EACH_PRED(q, p, {
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| 398 | if (!GC_is_marked(q) && GC_HAS_DEBUG_INFO(q)) {
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| 399 | word q_height;
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| 400 |
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| 401 | q_height = backwards_height(q);
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| 402 | if (q_height > p_height) {
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| 403 | p_height = q_height;
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| 404 | p_deepest_obj = q;
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| 405 | }
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| 406 | }
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| 407 | });
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| 408 | if (p_height > 0) {
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| 409 | /* Remember the height for next time. */
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| 410 | if (be == 0) {
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| 411 | ensure_struct(p);
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| 412 | back_ptr = GET_OH_BG_PTR(p);
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| 413 | be = (back_edges *)((word)back_ptr & ~FLAG_MANY);
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| 414 | }
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| 415 | be -> flags |= RETAIN;
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| 416 | be -> height = p_height;
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| 417 | be -> height_gc_no = GC_gc_no;
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| 418 | }
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| 419 | if (p_height > GC_max_height) {
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| 420 | GC_max_height = p_height;
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| 421 | GC_deepest_obj = p_deepest_obj;
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| 422 | }
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| 423 | }
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| 424 | }
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| 425 |
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| 426 | void GC_traverse_back_graph(void)
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| 427 | {
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| 428 | static word max_max_height = 0;
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| 429 | GC_max_height = 0;
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| 430 | GC_apply_to_each_object(update_max_height);
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| 431 | GC_printf2("Maximum backwards height of reachable objects at GC %lu is %ld\n",
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| 432 | (unsigned long) GC_gc_no, GC_max_height);
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| 433 | if (GC_max_height > max_max_height) {
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| 434 | max_max_height = GC_max_height;
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| 435 | GC_printf0("The following unreachable object is last in a longest chain "
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| 436 | "of unreachable objects:\n");
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| 437 | GC_print_heap_obj(GC_deepest_obj);
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| 438 | }
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| 439 | if (GC_print_stats) {
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| 440 | GC_printf1("Needed max total of %ld back-edge structs\n",
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| 441 | GC_n_back_edge_structs);
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| 442 | }
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| 443 | GC_apply_to_each_object(reset_back_edge);
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| 444 | GC_deepest_obj = 0;
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| 445 | }
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| 446 |
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| 447 | #endif /* MAKE_BACK_GRAPH */
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