Coverage Report

Created: 2025-06-10 06:59

/src/ghostpdl/psi/ireclaim.c
Line
Count
Source (jump to first uncovered line)
1
/* Copyright (C) 2001-2023 Artifex Software, Inc.
2
   All Rights Reserved.
3
4
   This software is provided AS-IS with no warranty, either express or
5
   implied.
6
7
   This software is distributed under license and may not be copied,
8
   modified or distributed except as expressly authorized under the terms
9
   of the license contained in the file LICENSE in this distribution.
10
11
   Refer to licensing information at http://www.artifex.com or contact
12
   Artifex Software, Inc.,  39 Mesa Street, Suite 108A, San Francisco,
13
   CA 94129, USA, for further information.
14
*/
15
16
17
/* Interpreter's interface to garbage collector */
18
#include "ghost.h"
19
#include "ierrors.h"
20
#include "gsstruct.h"
21
#include "iastate.h"
22
#include "icontext.h"
23
#include "interp.h"
24
#include "isave.h"    /* for isstate.h */
25
#include "isstate.h"    /* for mem->saved->state */
26
#include "dstack.h"   /* for dsbot, dsp, dict_set_top */
27
#include "estack.h"   /* for esbot, esp */
28
#include "ostack.h"   /* for osbot, osp */
29
#include "opdef.h"    /* for defining init procedure */
30
#include "store.h"    /* for make_array */
31
32
/* Import preparation and cleanup routines. */
33
extern void ialloc_gc_prepare(gs_ref_memory_t *);
34
35
/* Forward references */
36
static int gs_vmreclaim(gs_dual_memory_t *, bool);
37
38
/* Initialize the GC hook in the allocator. */
39
static int ireclaim(gs_dual_memory_t *, int);
40
static int
41
ireclaim_init(i_ctx_t *i_ctx_p)
42
9.86k
{
43
9.86k
    gs_imemory.reclaim = ireclaim;
44
9.86k
    return 0;
45
9.86k
}
46
47
/* GC hook called when the allocator signals a GC is needed (space = -1), */
48
/* or for vmreclaim (space = the space to collect). */
49
static int
50
ireclaim(gs_dual_memory_t * dmem, int space)
51
20.5k
{
52
20.5k
    bool global;
53
20.5k
    gs_ref_memory_t *mem = NULL;
54
20.5k
    int code;
55
56
20.5k
    if (space < 0) {
57
        /* Determine which allocator exceeded the limit. */
58
821
        int i;
59
60
3.27k
        for (i = 0; i < countof(dmem->spaces_indexed); i++) {
61
3.27k
            mem = dmem->spaces_indexed[i];
62
3.27k
            if (mem == 0)
63
821
                continue;
64
2.45k
            if (mem->gc_status.requested > 0 ||
65
2.45k
                ((gs_ref_memory_t *)mem->stable_memory)->gc_status.requested > 0
66
2.45k
                )
67
821
                break;
68
2.45k
        }
69
821
        if (!mem) {
70
0
            mem = dmem->space_global; /* just in case */
71
0
        }
72
19.7k
    } else {
73
19.7k
        mem = dmem->spaces_indexed[space >> r_space_shift];
74
19.7k
    }
75
20.5k
    if_debug3m('0', (gs_memory_t *)mem, "[0]GC called, space=%d, requestor=%d, requested=%ld\n",
76
20.5k
               space, mem->space, (long)mem->gc_status.requested);
77
20.5k
    global = mem->space != avm_local;
78
    /* Since dmem may move, reset the request now. */
79
20.5k
    ialloc_reset_requested(dmem);
80
20.5k
    code = gs_vmreclaim(dmem, global);
81
20.5k
    if (code < 0)
82
0
        return code;
83
20.5k
    ialloc_set_limit(mem);
84
20.5k
    if (space < 0) {
85
821
        gs_memory_status_t stats;
86
821
        size_t allocated;
87
88
        /* If the ammount still allocated after the GC is complete */
89
        /* exceeds the max_vm setting, then return a VMerror       */
90
821
        gs_memory_status((gs_memory_t *) mem, &stats);
91
821
        allocated = stats.allocated;
92
821
        if (mem->stable_memory != (gs_memory_t *)mem) {
93
821
            gs_memory_status(mem->stable_memory, &stats);
94
821
            allocated += stats.allocated;
95
821
        }
96
821
        if (allocated >= mem->gc_status.max_vm) {
97
            /* We can't satisfy this request within max_vm. */
98
0
            return_error(gs_error_VMerror);
99
0
        }
100
821
    }
101
20.5k
    return 0;
102
20.5k
}
103
104
/* Interpreter entry to garbage collector. */
105
static int
106
gs_vmreclaim(gs_dual_memory_t *dmem, bool global)
107
20.5k
{
108
    /* HACK: we know the gs_dual_memory_t is embedded in a context state. */
109
20.5k
    i_ctx_t *i_ctx_p =
110
20.5k
        (i_ctx_t *)((char *)dmem - offset_of(i_ctx_t, memory));
111
20.5k
    gs_ref_memory_t *lmem = dmem->space_local;
112
20.5k
    int code = context_state_store(i_ctx_p);
113
20.5k
    gs_ref_memory_t *memories[5];
114
20.5k
    gs_ref_memory_t *mem;
115
20.5k
    int nmem, i;
116
117
20.5k
    if (code < 0)
118
0
        return code;
119
120
20.5k
    memories[0] = dmem->space_system;
121
20.5k
    memories[1] = mem = dmem->space_global;
122
20.5k
    nmem = 2;
123
20.5k
    if (lmem != dmem->space_global)
124
20.5k
        memories[nmem++] = lmem;
125
82.1k
    for (i = nmem; --i >= 0;) {
126
61.6k
        mem = memories[i];
127
61.6k
        if (mem->stable_memory != (gs_memory_t *)mem)
128
41.0k
            memories[nmem++] = (gs_ref_memory_t *)mem->stable_memory;
129
61.6k
    }
130
131
    /****** ABORT IF code < 0 ******/
132
123k
    for (i = nmem; --i >= 0; )
133
102k
        alloc_close_clump(memories[i]);
134
135
    /* Prune the file list so it won't retain potentially collectible */
136
    /* files. */
137
138
20.5k
    for (i = (global ? i_vm_system : i_vm_local);
139
80.5k
         i < countof(dmem->spaces_indexed);
140
60.0k
         ++i
141
60.0k
         ) {
142
60.0k
        gs_ref_memory_t *mem = dmem->spaces_indexed[i];
143
144
        /* Always safe to substract 1 from i here, as i is always at
145
         * least i_vm_system (1) or i_vm_local (2). */
146
60.0k
        if (mem == 0 || (mem == dmem->spaces_indexed[i - 1]))
147
0
            continue;
148
60.0k
        if (mem->stable_memory != (gs_memory_t *)mem)
149
40.2k
            ialloc_gc_prepare((gs_ref_memory_t *)mem->stable_memory);
150
376k
        for (;; mem = &mem->saved->state) {
151
376k
            ialloc_gc_prepare(mem);
152
376k
            if (mem->saved == 0)
153
60.0k
                break;
154
376k
        }
155
60.0k
    }
156
157
    /* Do the actual collection. */
158
159
20.5k
    {
160
20.5k
        void *ctxp = i_ctx_p;
161
20.5k
        gs_gc_root_t context_root, *r = &context_root;
162
163
20.5k
        gs_register_struct_root((gs_memory_t *)lmem, &r,
164
20.5k
                                &ctxp, "i_ctx_p root");
165
20.5k
        GS_RECLAIM(&dmem->spaces, global);
166
20.5k
        gs_unregister_root((gs_memory_t *)lmem, r, "i_ctx_p root");
167
20.5k
        i_ctx_p = ctxp;
168
20.5k
        dmem = &i_ctx_p->memory;
169
20.5k
    }
170
171
    /* Update caches not handled by context_state_load. */
172
173
20.5k
    *systemdict = *ref_stack_index(&d_stack, ref_stack_count(&d_stack) - 1);
174
175
    /* Update the cached value pointers in names. */
176
177
20.5k
    dicts_gc_cleanup();
178
179
    /* Reopen the active clumps. */
180
181
123k
    for (i = 0; i < nmem; ++i)
182
102k
        alloc_open_clump(memories[i]);
183
184
    /* Reload the context state.  Note this should be done
185
       AFTER the clumps are reopened, since the context state
186
       load could do allocations that must remain.
187
       If it were done while the clumps were still closed,
188
       we would lose those allocations when the clumps were opened */
189
190
20.5k
    code = context_state_load(i_ctx_p);
191
20.5k
    return code;
192
20.5k
}
193
194
/* ------ Initialization procedure ------ */
195
196
const op_def ireclaim_l2_op_defs[] =
197
{
198
    op_def_end(ireclaim_init)
199
};