Coverage Report

Created: 2025-06-10 07:17

/src/ghostpdl/base/gxclmem.c
Line
Count
Source (jump to first uncovered line)
1
/* Copyright (C) 2001-2024 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
/* RAM-based command list implementation */
18
#include "memory_.h"
19
#include "gx.h"
20
#include "gserrors.h"
21
#include "gxclmem.h"
22
#include "gssprintf.h"
23
24
#include "valgrind.h"
25
26
/*
27
 * Based on: memfile.c        Version: 1.4 3/21/95 14:59:33 by Ray Johnston.
28
 * Copyright assigned to Aladdin Enterprises.
29
 */
30
31
/*****************************************************************************
32
33
   This package is more or less optimal for use by the clist routines, with
34
   a couple of the more likely to change "tuning" parameters given in the
35
   two macros below -- NEED_TO_COMPRESS and GET_NUM_RAW_BUFFERS. Usually
36
   the NEED_TO_COMPRESS decision will be deferred as long as possible based
37
   on some total system free RAM space remaining.
38
39
   The data structures are in "memfile.h", and the primary 'tuning' parameter
40
   is MEMFILE_DATA_SIZE. This should not be too small to keep the overhead
41
   ratio of the block structures to the clist data small. A value of 16384
42
   is probably in the ballpark.
43
44
   The concept is that a memory based "file" is created initially without
45
   compression, with index blocks every MEMFILE_DATA_SIZE of the file. The
46
   primary blocks (used by the memfile_fseek logic) for indexing into the
47
   file are called 'logical' (LOG_MEMFILE_BLK) and the data in stored in a
48
   different block called a 'physical' block (PHYS_MEMFILE_BLK). When the
49
   file is not yet compressed, indicated by (f->phys_curr==NULL), then there
50
   is one physical block for each logical block. The physical block also has
51
   the 'data_limit' set to NULL if the data is not compressed. Thus when a
52
   file is not compressed there is one physical block for each logical block.
53
54
COMPRESSION.
55
56
   When compression is triggered for a file then all of the blocks except
57
   the last are compressed.  Compression will result in a physical block
58
   that holds data for more than one logical block. Each logical block now
59
   points to the start of compressed data in a physical block with the
60
   'phys_pdata' pointer. The 'data_limit' pointer in the physical block is
61
   where the compression logic stopped storing data (as stream data
62
   compressors are allowed to do). The data for the logical block may span
63
   to the next physical block. Once physical blocks are compressed, they are
64
   chained together using the 'link' field.
65
66
   The 'f->phys_curr' points to the block being filled by compression, with
67
   the 'f->wt.ptr' pointing to the last byte filled in the block. These are
68
   used during subsequent compression when the last logical block of the
69
   file fills the physical block.
70
71
DECOMPRESSION.
72
73
   During reading the clist, if the logical block points to an uncompressed
74
   physical block, then 'memfile_get_pdata' simply sets the 'pdata' and the
75
   'pdata_end' pointers. If the logical block was compressed, then it may
76
   still be resident in a cache of decompression buffers. The number of these
77
   decompression buffers is not critical -- even one is enough, but having
78
   more may prevent decompressing blocks more than once (a cache_miss). The
79
   number of decompression buffers, called "raw" buffers, that are attempted
80
   to allocate can be changed with the GET_NUM_RAW_BUFFERS macro, but no
81
   error occurs if less than that number can be allocated.
82
83
   If the logical block still resides in a decompression cache buffer, then
84
   the 'raw_block' will identify the block. If the data for a logical block
85
   only exists in compressed form, then the "tail" of the list of decompression
86
   buffers is re-used, marking the 'raw_block' of the logical block that was
87
   previously associated with this data to NULL.
88
89
   Whichever raw decompression buffer is accessed is moved to the head of the
90
   decompression buffer list in order to keep the tail of the list as the
91
   "least recently used".
92
93
   There are some DEBUG global static variables used to count the number of
94
   cache hits "tot_cache_hits" and the number of times a logical block is
95
   decompressed "tot_cache_miss". Note that the actual number of cache miss
96
   events is 'f->log_length/MEMFILE_DATA_SIZE - tot_cache_miss' since we
97
   assume that every logical block must be decmpressed at least once.
98
99
   Empirical results so far indicate that if one cache raw buffer for every
100
   32 logical blocks, then the hit/miss ratio exceeds 99%. Of course, the
101
   number of raw buffers should be more than 1 if possible, and in many
102
   implementations (single threaded), the memory usage does not increase
103
   during the page output step so almost all of memory can be used for
104
   these raw buffers to prevent the likelihood of a cache miss.
105
106
   Of course, this is dependent on reasonably efficient clist blocking
107
   during writing which is dependent on the data and on the BufferSpace
108
   value which determines the number of clist band data buffers available.
109
   Empirical testing shows that the overall efficiency is best if the
110
   BufferSpace value is 1,000,000 (as in the original Ghostscript source).
111
   [Note: I expected to be able to use smaller buffer sizes for some cases,
112
    but this resulted in a high level of thrashing...RJJ]
113
114
LIMITATIONS.
115
116
   The most serious limitation is caused by the way 'memfile_fwrite' decides
117
   to free up and re-initialize a file. If memfile_fwrite is called after
118
   a seek to any location except the start of the file, then an error is
119
   issued since logic is not present to properly free up on a partial file.
120
   This is not a problem as used by the 'clist' logic since rewind is used
121
   to position to the start of a file when re-using it after an 'erasepage'.
122
123
   Since the 'clist' logic always traverses the clist using fseek's to ever
124
   increasing locations, no optimizations of backward seeks was implemented.
125
   This would be relatively easy with back chain links or bi-directional
126
   "X-OR" pointer information to link the logical block chain. The rewind
127
   function is optimal and moves directly to the start of the file.
128
129
********************************************************************************/
130
131
/*
132
   The need to compress should be conditional on the amount of available
133
   memory, but we don't have a way to communicate this to these routines.
134
   Instead, we simply start compressing when we've allocated more than
135
   COMPRESSION_THRESHOLD amount of data.  The threshold should be at
136
   least as large as the fixed overhead of the compressor plus the
137
   decompressor, plus the expected compressed size of a block that size.
138
139
   As a testing measure we have a a define TEST_BAND_LIST_COMPRESSION
140
   which, if set, will set the threshold to a low value so as to cause
141
   compression to trigger.
142
 */
143
static const int64_t COMPRESSION_THRESHOLD =
144
#ifdef TEST_BAND_LIST_COMPRESSION
145
    1024; /* Low value to force compression */
146
#else
147
    500000000;  /* 0.5 Gb for host machines */
148
#endif
149
150
#define NEED_TO_COMPRESS(f)\
151
0
  ((f)->ok_to_compress && (f)->total_space > COMPRESSION_THRESHOLD)
152
153
   /* FOR NOW ALLOCATE 1 raw buffer for every 32 blocks (at least 8, no more than 64)    */
154
#define GET_NUM_RAW_BUFFERS( f ) \
155
0
         min(64, max(f->log_length/MEMFILE_DATA_SIZE/32, 8))
156
157
#define MALLOC(f, siz, cname)\
158
60.7k
  (void *)gs_alloc_bytes((f)->data_memory, siz, cname)
159
#define FREE(f, obj, cname)\
160
60.7k
  do {gs_free_object((f)->data_memory, obj, cname);\
161
60.7k
    (f)->total_space -= sizeof(*(obj));} while (0)
162
163
/* Structure descriptor for GC */
164
private_st_MEMFILE();
165
166
        /* forward references */
167
static void memfile_free_mem(MEMFILE * f);
168
static int memfile_init_empty(MEMFILE * f);
169
static int memfile_set_memory_warning(clist_file_ptr cf, int bytes_left);
170
static int memfile_fclose(clist_file_ptr cf, const char *fname, bool delete);
171
static int memfile_get_pdata(MEMFILE * f);
172
173
/************************************************/
174
/*   #define DEBUG      /- force statistics -/  */
175
/************************************************/
176
177
#ifdef DEBUG
178
int64_t tot_compressed;
179
int64_t tot_raw;
180
int64_t tot_cache_miss;
181
int64_t tot_cache_hits;
182
int64_t tot_swap_out;
183
184
/*
185
   The following pointers are here only for helping with a dumb debugger
186
   that can't inspect local variables!
187
 */
188
byte *decomp_wt_ptr0, *decomp_wt_limit0;
189
const byte *decomp_rd_ptr0, *decomp_rd_limit0;
190
byte *decomp_wt_ptr1, *decomp_wt_limit1;
191
const byte *decomp_rd_ptr1, *decomp_rd_limit1;
192
193
#endif
194
195
/* ----------------------------- Memory Allocation --------------------- */
196
static void *   /* allocated memory's address, 0 if failure */
197
allocateWithReserve(
198
                MEMFILE  *f,                    /* file to allocate mem to */
199
                int      sizeofBlock,           /* size of block to allocate */
200
                int      *return_code,          /* RET 0 ok, -ve GS-style error, or +1 if OK but low memory */
201
                const   char     *allocName,    /* name to allocate by */
202
                const   char     *errorMessage  /* error message to print */
203
)
204
0
{
205
0
    int code = 0;       /* assume success */
206
0
    void *block = MALLOC(f, sizeofBlock, allocName);
207
208
0
    if (block == NULL) {
209
        /* Try to recover block from reserve */
210
0
        if (sizeofBlock == sizeof(LOG_MEMFILE_BLK)) {
211
0
            if (f->reserveLogBlockCount > 0) {
212
0
                block = f->reserveLogBlockChain;
213
0
                f->reserveLogBlockChain = f->reserveLogBlockChain->link;
214
0
                --f->reserveLogBlockCount;
215
0
            }
216
0
        } else if (sizeofBlock == sizeof(PHYS_MEMFILE_BLK) ||
217
0
                   sizeofBlock == sizeof(RAW_BUFFER)
218
0
                   ) {
219
0
            if (f->reservePhysBlockCount > 0) {
220
0
                block = f->reservePhysBlockChain;
221
0
                f->reservePhysBlockChain = f->reservePhysBlockChain->link;
222
0
                --f->reservePhysBlockCount;
223
0
            }
224
0
        }
225
0
        if (block != NULL)
226
0
            code = 1;   /* successful, but allocated from reserve */
227
0
    }
228
0
    if (block != NULL)
229
0
        f->total_space += sizeofBlock;
230
0
    else
231
0
        code = gs_note_error(gs_error_VMerror);
232
0
    *return_code = code;
233
0
    return block;
234
0
}
235
236
/* ---------------- Open/close/unlink ---------------- */
237
238
static int
239
memfile_fopen(char fname[gp_file_name_sizeof], const char *fmode,
240
              clist_file_ptr /*MEMFILE * */  * pf,
241
              gs_memory_t *mem, gs_memory_t *data_mem, bool ok_to_compress)
242
12.1k
{
243
12.1k
    MEMFILE *f = NULL;
244
12.1k
    int code = 0;
245
246
12.1k
    *pf = NULL;         /* in case we have an error */
247
248
    /* fname[0] == 0 if this is not reopening */
249
    /* memfile file names begin with a flag byte == 0xff */
250
12.1k
    if (fname[0] == '\377' && (fmode[0] == 'r' || fmode[0] == 'a')) {
251
0
        MEMFILE *base_f = NULL;
252
253
        /* reopening an existing file. */
254
0
        code = sscanf(fname+1, "%p", &base_f);
255
0
        if (code != 1) {
256
0
            code = gs_note_error(gs_error_ioerror);
257
0
            goto finish;
258
0
        }
259
        /* Reopen an existing file for 'read' */
260
0
        if (base_f->is_open == false) {
261
            /* File is not is use, just re-use it. */
262
0
            f = base_f;
263
0
            code = 0;
264
0
            goto finish;
265
0
        } else {
266
            /* We need to 'clone' this memfile so that each reader instance     */
267
            /* will be able to maintain it's own 'state'                        */
268
0
            f = gs_alloc_struct(mem, MEMFILE, &st_MEMFILE,
269
0
                                "memfile_fopen_instance(MEMFILE)");
270
0
            if (f == NULL) {
271
0
                emprintf1(mem,
272
0
                          "memfile_open_scratch(%s): gs_alloc_struct failed\n",
273
0
                          fname);
274
0
                code = gs_note_error(gs_error_VMerror);
275
0
                goto finish;
276
0
            }
277
0
            memcpy(f, base_f, sizeof(MEMFILE));
278
0
            f->memory = mem;
279
0
            f->data_memory = data_mem;
280
0
            f->compress_state = 0;              /* Not used by reader instance */
281
0
            f->decompress_state = 0;    /* make clean for GC, or alloc'n failure */
282
0
            f->reservePhysBlockChain = NULL;
283
0
            f->reservePhysBlockCount = 0;
284
0
            f->reserveLogBlockChain = NULL;
285
0
            f->reserveLogBlockCount = 0;
286
0
            f->openlist = base_f->openlist;
287
0
            base_f->openlist = f;               /* link this one in to the base memfile */
288
0
            f->base_memfile = base_f;
289
0
            f->log_curr_pos = 0;
290
0
            f->raw_head = NULL;
291
0
            f->error_code = 0;
292
293
0
            if (f->log_head->phys_blk->data_limit != NULL) {
294
                /* The file is compressed, so we need to copy the logical block */
295
                /* list so that it is unique to this instance, and initialize   */
296
                /* the decompressor.                                            */
297
0
                LOG_MEMFILE_BLK *log_block, *new_log_block;
298
0
                int i;
299
0
                int num_log_blocks = (f->log_length + MEMFILE_DATA_SIZE - 1) / MEMFILE_DATA_SIZE;
300
0
                const stream_template *decompress_template = clist_decompressor_template();
301
302
0
                new_log_block = MALLOC(f, num_log_blocks * sizeof(LOG_MEMFILE_BLK), "memfile_fopen" );
303
0
                if (new_log_block == NULL) {
304
0
                    code = gs_note_error(gs_error_VMerror);
305
0
                    goto finish;
306
0
                }
307
308
                /* copy the logical blocks to the new list just allocated */
309
0
                for (log_block=f->log_head, i=0; log_block != NULL; log_block=log_block->link, i++) {
310
0
                    new_log_block[i].phys_blk = log_block->phys_blk;
311
0
                    new_log_block[i].phys_pdata = log_block->phys_pdata;
312
0
                    new_log_block[i].raw_block = NULL;
313
0
                    new_log_block[i].link = log_block->link == NULL ? NULL : new_log_block + i + 1;
314
0
                }
315
0
                f->log_head = new_log_block;
316
317
                /* NB: don't need compress_state for reading */
318
0
                f->decompress_state =
319
0
                    gs_alloc_struct(mem, stream_state, decompress_template->stype,
320
0
                                    "memfile_open_scratch(decompress_state)");
321
0
                if (f->decompress_state == 0) {
322
0
                    emprintf1(mem,
323
0
                              "memfile_open_scratch(%s): gs_alloc_struct failed\n",
324
0
                              fname);
325
0
                    code = gs_note_error(gs_error_VMerror);
326
0
                    goto finish;
327
0
                }
328
0
                clist_decompressor_init(f->decompress_state);
329
0
                f->decompress_state->memory = mem;
330
0
                if (decompress_template->set_defaults)
331
0
                    (*decompress_template->set_defaults) (f->decompress_state);
332
0
            }
333
0
            f->log_curr_blk = f->log_head;
334
0
            memfile_get_pdata(f);               /* set up the initial block */
335
336
0
            goto finish;
337
0
        }
338
0
    }
339
12.1k
    fname[0] = 0;       /* no file name yet */
340
12.1k
    f = gs_alloc_struct(mem, MEMFILE, &st_MEMFILE,
341
12.1k
                        "memfile_open_scratch(MEMFILE)");
342
12.1k
    if (f == NULL) {
343
0
        emprintf1(mem,
344
0
                  "memfile_open_scratch(%s): gs_alloc_struct failed\n",
345
0
                  fname);
346
0
        code = gs_note_error(gs_error_VMerror);
347
0
        goto finish;
348
0
    }
349
12.1k
    f->memory = mem;
350
12.1k
    f->data_memory = data_mem;
351
    /* init an empty file, BEFORE allocating de/compress state */
352
12.1k
    f->compress_state = 0;      /* make clean for GC, or alloc'n failure */
353
12.1k
    f->decompress_state = 0;
354
12.1k
    f->openlist = NULL;
355
12.1k
    f->base_memfile = NULL;
356
12.1k
    f->total_space = 0;
357
12.1k
    f->reservePhysBlockChain = NULL;
358
12.1k
    f->reservePhysBlockCount = 0;
359
12.1k
    f->reserveLogBlockChain = NULL;
360
12.1k
    f->reserveLogBlockCount = 0;
361
    /* init an empty file           */
362
12.1k
    if ((code = memfile_init_empty(f)) < 0)
363
0
        goto finish;
364
12.1k
    if ((code = memfile_set_memory_warning(f, 0)) < 0)
365
0
        goto finish;
366
    /*
367
     * Disregard the ok_to_compress flag, since the size threshold gives us
368
     * a much better criterion for deciding when compression is appropriate.
369
     */
370
12.1k
    f->ok_to_compress = /*ok_to_compress */ true;
371
12.1k
    f->compress_state = 0;      /* make clean for GC */
372
12.1k
    f->decompress_state = 0;
373
12.1k
    if (f->ok_to_compress) {
374
12.1k
        const stream_template *compress_template = clist_compressor_template();
375
12.1k
        const stream_template *decompress_template = clist_decompressor_template();
376
377
12.1k
        f->compress_state =
378
12.1k
            gs_alloc_struct(mem, stream_state, compress_template->stype,
379
12.1k
                            "memfile_open_scratch(compress_state)");
380
12.1k
        f->decompress_state =
381
12.1k
            gs_alloc_struct(mem, stream_state, decompress_template->stype,
382
12.1k
                            "memfile_open_scratch(decompress_state)");
383
12.1k
        if (f->compress_state == 0 || f->decompress_state == 0) {
384
0
            emprintf1(mem,
385
0
                      "memfile_open_scratch(%s): gs_alloc_struct failed\n",
386
0
                      fname);
387
0
            code = gs_note_error(gs_error_VMerror);
388
0
            goto finish;
389
0
        }
390
12.1k
        clist_compressor_init(f->compress_state);
391
12.1k
        clist_decompressor_init(f->decompress_state);
392
12.1k
        f->compress_state->memory = mem;
393
12.1k
        f->decompress_state->memory = mem;
394
12.1k
        if (compress_template->set_defaults)
395
12.1k
            (*compress_template->set_defaults) (f->compress_state);
396
12.1k
        if (decompress_template->set_defaults)
397
12.1k
            (*decompress_template->set_defaults) (f->decompress_state);
398
12.1k
    }
399
12.1k
    f->total_space = 0;
400
401
    /* Return the address of this memfile as a string for use in future clist_fopen calls */
402
12.1k
    fname[0] = 0xff;        /* a flag that this is a memfile name */
403
12.1k
    gs_snprintf(fname+1, gp_file_name_sizeof-1, "%p", f);
404
405
#ifdef DEBUG
406
        tot_compressed = 0;
407
        tot_raw = 0;
408
        tot_cache_miss = 0;
409
        tot_cache_hits = 0;
410
        tot_swap_out = 0;
411
#endif
412
413
12.1k
finish:
414
    /* 'f' shouldn't be NULL unless code < 0, but be careful */
415
12.1k
    if (code < 0 || f == NULL) {
416
        /* return failure, clean up memory before leaving */
417
0
        if (f != NULL)
418
0
            memfile_fclose((clist_file_ptr)f, fname, true);
419
0
        if (code >= 0)
420
0
            code = gs_error_ioerror;
421
12.1k
    } else {
422
        /* return success */
423
12.1k
        f->is_open = true;
424
12.1k
        *pf = f;
425
12.1k
    }
426
12.1k
    return code;
427
12.1k
}
428
429
static int
430
memfile_fclose(clist_file_ptr cf, const char *fname, bool delete)
431
12.1k
{
432
12.1k
    MEMFILE *const f = (MEMFILE *)cf;
433
434
12.1k
    f->is_open = false;
435
12.1k
    if (!delete) {
436
0
        if (f->base_memfile) {
437
0
            MEMFILE *prev_f;
438
439
            /* Here we need to delete this instance from the 'openlist' */
440
            /* in case this file was opened for 'read' on a previously  */
441
            /* written file (base_memfile != NULL)                          */
442
0
            for (prev_f = f->base_memfile; prev_f != NULL; prev_f = prev_f->openlist)
443
0
                if (prev_f->openlist == f)
444
0
                    break;
445
0
            if (prev_f == NULL) {
446
0
                emprintf1(f->memory,
447
0
                          "Could not find %p on memfile openlist\n",
448
0
                          f);
449
0
                return_error(gs_error_invalidfileaccess);
450
0
            }
451
0
            prev_f->openlist = f->openlist;     /* link around the one being fclosed */
452
            /* Now delete this MEMFILE reader instance */
453
            /* NB: we don't delete 'base' instances until we delete */
454
            /* If the file is compressed, free the logical blocks, but not */
455
            /* the phys_blk info (that is still used by the base memfile   */
456
0
            if (f->log_head->phys_blk->data_limit != NULL) {
457
0
                LOG_MEMFILE_BLK *tmpbp, *bp = f->log_head;
458
459
0
                while (bp != NULL) {
460
0
                    tmpbp = bp->link;
461
0
                    FREE(f, bp, "memfile_free_mem(log_blk)");
462
0
                    bp = tmpbp;
463
0
                }
464
0
                f->log_head = NULL;
465
466
                /* Free any internal compressor state. */
467
0
                if (f->compressor_initialized) {
468
0
                    if (f->decompress_state->templat->release != 0)
469
0
                        (*f->decompress_state->templat->release) (f->decompress_state);
470
0
                    if (f->compress_state->templat->release != 0)
471
0
                        (*f->compress_state->templat->release) (f->compress_state);
472
0
                    f->compressor_initialized = false;
473
0
                }
474
                /* free the raw buffers                                           */
475
0
                while (f->raw_head != NULL) {
476
0
                    RAW_BUFFER *tmpraw = f->raw_head->fwd;
477
478
0
                    FREE(f, f->raw_head, "memfile_free_mem(raw)");
479
0
                    f->raw_head = tmpraw;
480
0
                }
481
0
            }
482
            /* deallocate the memfile object proper */
483
0
            gs_free_object(f->memory, f, "memfile_close_and_unlink(MEMFILE)");
484
0
        }
485
0
        return 0;
486
0
    }
487
488
    /* TODO: If there are open read memfile structures, set them so that  */
489
    /* future accesses will use the current contents. This may result in  */
490
    /* leaks if other users of the memfile don't 'fclose with delete=true */
491
12.1k
    if (f->openlist != NULL || ((f->base_memfile != NULL) && f->base_memfile->is_open)) {
492
        /* TODO: do the cleanup rather than just giving an error */
493
0
        if_debug1(':', "Attempt to delete a memfile still open for read: "PRI_INTPTR"\n",
494
0
                  (intptr_t)f);
495
0
        return_error(gs_error_invalidfileaccess);
496
12.1k
    } else {
497
        /* Free the memory used by this memfile */
498
12.1k
        memfile_free_mem(f);
499
500
        /* Free reserve blocks; don't do it in memfile_free_mem because */
501
        /* that routine gets called to reinit file */
502
12.1k
        while (f->reserveLogBlockChain != NULL) {
503
0
            LOG_MEMFILE_BLK *block = f->reserveLogBlockChain;
504
505
0
            f->reserveLogBlockChain = block->link;
506
0
            FREE(f, block, "memfile_set_block_size");
507
0
        }
508
24.3k
        while (f->reservePhysBlockChain != NULL) {
509
12.1k
            PHYS_MEMFILE_BLK *block = f->reservePhysBlockChain;
510
511
12.1k
            f->reservePhysBlockChain = block->link;
512
12.1k
            FREE(f, block, "memfile_set_block_size");
513
12.1k
        }
514
515
        /* deallocate de/compress state */
516
12.1k
        gs_free_object(f->memory, f->decompress_state,
517
12.1k
                       "memfile_close_and_unlink(decompress_state)");
518
12.1k
        gs_free_object(f->memory, f->compress_state,
519
12.1k
                       "memfile_close_and_unlink(compress_state)");
520
521
        /* deallocate the memfile object proper */
522
12.1k
        gs_free_object(f->memory, f, "memfile_close_and_unlink(MEMFILE)");
523
12.1k
        return 0;
524
12.1k
    }
525
12.1k
}
526
527
static int
528
memfile_unlink(const char *fname)
529
0
{
530
0
    int code;
531
0
    MEMFILE *f;
532
533
    /* memfile file names begin with a flag byte == 0xff */
534
0
    if (fname[0] == '\377' && (code = sscanf(fname+1, "%p", &f) == 1)) {
535
0
        return memfile_fclose((clist_file_ptr)f, fname, true);
536
0
    } else
537
0
        return_error(gs_error_invalidfileaccess);
538
0
}
539
540
/* ---------------- Writing ---------------- */
541
542
/* Pre-alloc enough reserve mem blox to guarantee a write of N bytes will succeed */
543
static int      /* returns 0 ok, gs_error_VMerror if insufficient */
544
memfile_set_memory_warning(clist_file_ptr cf, int bytes_left)
545
12.2k
{
546
12.2k
    MEMFILE *const f = (MEMFILE *)cf;
547
12.2k
    int code = 0;
548
    /*
549
     * Determine req'd memory block count from bytes_left.
550
     * Allocate enough phys & log blocks to hold bytes_left
551
     * + 1 phys blk for compress_log_blk + 1 phys blk for decompress.
552
     */
553
12.2k
    int logNeeded =
554
12.2k
        (bytes_left + MEMFILE_DATA_SIZE - 1) / MEMFILE_DATA_SIZE;
555
12.2k
    int physNeeded = logNeeded;
556
557
12.2k
    if (bytes_left > 0)
558
0
        ++physNeeded;
559
12.2k
    if (f->raw_head == NULL)
560
12.2k
        ++physNeeded;   /* have yet to allocate read buffers */
561
562
    /* Allocate or free memory depending on need */
563
12.2k
    while (logNeeded > f->reserveLogBlockCount) {
564
0
        LOG_MEMFILE_BLK *block =
565
0
            MALLOC( f, sizeof(LOG_MEMFILE_BLK), "memfile_set_block_size" );
566
567
0
        if (block == NULL) {
568
0
            code = gs_note_error(gs_error_VMerror);
569
0
            goto finish;
570
0
        }
571
0
        block->link = f->reserveLogBlockChain;
572
0
        f->reserveLogBlockChain = block;
573
0
        ++f->reserveLogBlockCount;
574
0
    }
575
12.2k
    while (logNeeded < f->reserveLogBlockCount) {
576
0
        LOG_MEMFILE_BLK *block = f->reserveLogBlockChain;
577
578
0
        f->reserveLogBlockChain = block->link;
579
0
        FREE(f, block, "memfile_set_block_size");
580
0
        --f->reserveLogBlockCount;
581
0
    }
582
24.3k
    while (physNeeded > f->reservePhysBlockCount) {
583
12.1k
        PHYS_MEMFILE_BLK *block =
584
12.1k
            MALLOC( f,
585
12.1k
                    max( sizeof(PHYS_MEMFILE_BLK), sizeof(RAW_BUFFER) ),
586
12.1k
                    "memfile_set_block_size");
587
588
12.1k
        if (block == NULL) {
589
0
            code = gs_note_error(gs_error_VMerror);
590
0
            goto finish;
591
0
        }
592
12.1k
        block->link = f->reservePhysBlockChain;
593
12.1k
        f->reservePhysBlockChain = block;
594
12.1k
        ++f->reservePhysBlockCount;
595
12.1k
    }
596
12.2k
    while (physNeeded < f->reservePhysBlockCount) {
597
0
        PHYS_MEMFILE_BLK *block = f->reservePhysBlockChain;
598
599
0
        f->reservePhysBlockChain = block->link;
600
0
        FREE(f, block, "memfile_set_block_size");
601
0
        --f->reservePhysBlockCount;
602
0
    }
603
12.2k
    f->error_code = 0;  /* memfile_set_block_size is how user resets this */
604
12.2k
finish:
605
12.2k
    return code;
606
12.2k
}
607
608
static int
609
compress_log_blk(MEMFILE * f, LOG_MEMFILE_BLK * bp)
610
0
{
611
0
    int status;
612
0
    int ecode = 0;              /* accumulate low-memory warnings */
613
0
    int code;
614
0
    long compressed_size;
615
0
    byte *start_ptr;
616
0
    PHYS_MEMFILE_BLK *newphys;
617
618
    /* compress this block */
619
0
    f->rd.ptr = (const byte *)(bp->phys_blk->data) - 1;
620
0
    f->rd.limit = f->rd.ptr + MEMFILE_DATA_SIZE;
621
622
0
    bp->phys_blk = f->phys_curr;
623
0
    bp->phys_pdata = (char *)(f->wt.ptr) + 1;
624
0
    if (f->compress_state->templat->reinit != 0)
625
0
        (*f->compress_state->templat->reinit)(f->compress_state);
626
0
    compressed_size = 0;
627
628
0
    start_ptr = f->wt.ptr;
629
0
    status = (*f->compress_state->templat->process)(f->compress_state,
630
0
                                                    &(f->rd), &(f->wt), true);
631
0
    bp->phys_blk->data_limit = (char *)(f->wt.ptr);
632
633
0
    if (status == 1) {          /* More output space needed (see strimpl.h) */
634
        /* allocate another physical block, then compress remainder       */
635
0
        compressed_size = f->wt.limit - start_ptr;
636
0
        newphys =
637
0
            allocateWithReserve(f, sizeof(*newphys), &code, "memfile newphys",
638
0
                        "compress_log_blk : MALLOC for 'newphys' failed\n");
639
0
        if (code < 0)
640
0
            return code;
641
0
        ecode |= code;  /* accumulate any low-memory warnings */
642
0
        newphys->link = NULL;
643
0
        bp->phys_blk->link = newphys;
644
0
        f->phys_curr = newphys;
645
0
        f->wt.ptr = (byte *) (newphys->data) - 1;
646
0
        f->wt.limit = f->wt.ptr + MEMFILE_DATA_SIZE;
647
648
0
        start_ptr = f->wt.ptr;
649
0
        status =
650
0
            (*f->compress_state->templat->process)(f->compress_state,
651
0
                                                   &(f->rd), &(f->wt), true);
652
0
        if (status != 0) {
653
            /*
654
             * You'd think the above line is a bug, but in real life 1 src
655
             * block never ends up getting split across 3 dest blocks.
656
             */
657
            /* CHANGE memfile_set_memory_warning if this assumption changes. */
658
0
            emprintf(f->memory,
659
0
                     "Compression required more than one full block!\n");
660
0
            return_error(gs_error_Fatal);
661
0
        }
662
0
        newphys->data_limit = (char *)(f->wt.ptr);
663
0
    }
664
0
    compressed_size += f->wt.ptr - start_ptr;
665
0
    if (compressed_size > MEMFILE_DATA_SIZE) {
666
0
        emprintf2(f->memory,
667
0
                  "\nCompression didn't - raw=%d, compressed=%ld\n",
668
0
                  MEMFILE_DATA_SIZE,
669
0
                  compressed_size);
670
0
    }
671
#ifdef DEBUG
672
    tot_compressed += compressed_size;
673
#endif
674
0
    return (status < 0 ? gs_note_error(gs_error_ioerror) : ecode);
675
0
}                               /* end "compress_log_blk()"                                     */
676
677
/*      Internal (private) routine to handle end of logical block       */
678
static int      /* ret 0 ok, -ve error, or +ve low-memory warning */
679
memfile_next_blk(MEMFILE * f)
680
0
{
681
0
    LOG_MEMFILE_BLK *bp = f->log_curr_blk;
682
0
    LOG_MEMFILE_BLK *newbp;
683
0
    PHYS_MEMFILE_BLK *newphys, *oldphys;
684
0
    int ecode = 0;              /* accumulate low-memory warnings */
685
0
    int code;
686
687
0
    if (f->phys_curr == NULL) { /* means NOT compressing                */
688
        /* allocate a new block                                           */
689
0
        newphys =
690
0
            allocateWithReserve(f, sizeof(*newphys), &code, "memfile newphys",
691
0
                        "memfile_next_blk: MALLOC 1 for 'newphys' failed\n");
692
0
        if (code < 0)
693
0
            return code;
694
0
        ecode |= code;  /* accumulate low-mem warnings */
695
0
        newphys->link = NULL;
696
0
        newphys->data_limit = NULL;     /* raw                          */
697
698
0
        newbp =
699
0
            allocateWithReserve(f, sizeof(*newbp), &code, "memfile newbp",
700
0
                        "memfile_next_blk: MALLOC 1 for 'newbp' failed\n");
701
0
        if (code < 0) {
702
0
            FREE(f, newphys, "memfile newphys");
703
0
            return code;
704
0
        }
705
0
        ecode |= code;  /* accumulate low-mem warnings */
706
0
        bp->link = newbp;
707
0
        newbp->link = NULL;
708
0
        newbp->raw_block = NULL;
709
0
        f->log_curr_blk = newbp;
710
711
        /* check if need to start compressing                             */
712
0
        if (NEED_TO_COMPRESS(f)) {
713
0
            if_debug0m(':', f->memory, "[:]Beginning compression\n");
714
            /* compress the entire file up to this point                   */
715
0
            if (!f->compressor_initialized) {
716
0
                int code = 0;
717
718
0
                if (f->compress_state->templat->init != 0)
719
0
                    code = (*f->compress_state->templat->init) (f->compress_state);
720
0
                if (code < 0)
721
0
                    return_error(gs_error_VMerror);  /****** BOGUS ******/
722
0
                f->compressor_initialized = true;
723
0
            }
724
            /* Write into the new physical block we just allocated,        */
725
            /* replace it after the loop (after some blocks are freed)     */
726
0
            f->phys_curr = newphys;
727
0
            f->wt.ptr = (byte *) (newphys->data) - 1;
728
0
            f->wt.limit = f->wt.ptr + MEMFILE_DATA_SIZE;
729
0
            bp = f->log_head;
730
0
            while (bp != newbp) {       /* don't compress last block    */
731
0
                int code;
732
733
0
                oldphys = bp->phys_blk;
734
0
                if ((code = compress_log_blk(f, bp)) < 0)
735
0
                    return code;
736
0
                ecode |= code;
737
0
                FREE(f, oldphys, "memfile_next_blk(oldphys)");
738
0
                bp = bp->link;
739
0
            }                   /* end while( ) compress loop                           */
740
            /* Allocate a physical block for this (last) logical block     */
741
0
            newphys =
742
0
                allocateWithReserve(f, sizeof(*newphys), &code,
743
0
                        "memfile newphys",
744
0
                        "memfile_next_blk: MALLOC 2 for 'newphys' failed\n");
745
0
            if (code < 0)
746
0
                return code;
747
0
            ecode |= code;      /* accumulate low-mem warnings */
748
0
            newphys->link = NULL;
749
0
            newphys->data_limit = NULL;         /* raw                  */
750
751
0
        }                       /* end convert file to compressed                                 */
752
0
        newbp->phys_blk = newphys;
753
0
        f->pdata = newphys->data;
754
0
        f->pdata_end = newphys->data + MEMFILE_DATA_SIZE;
755
0
    }    /* end if NOT compressing                                 */
756
    /* File IS being compressed                                       */
757
0
    else {
758
0
        int code;
759
760
0
        oldphys = bp->phys_blk; /* save raw phys block ID               */
761
        /* compresses bp on phys list  */
762
0
        if ((code = compress_log_blk(f, bp)) < 0)
763
0
            return code;
764
0
        ecode |= code;
765
0
        newbp =
766
0
            allocateWithReserve(f, sizeof(*newbp), &code, "memfile newbp",
767
0
                        "memfile_next_blk: MALLOC 2 for 'newbp' failed\n");
768
0
        if (code < 0)
769
0
            return code;
770
0
        ecode |= code;
771
0
        bp->link = newbp;
772
0
        newbp->link = NULL;
773
0
        newbp->raw_block = NULL;
774
        /* Re-use the raw phys block for this new logical blk             */
775
0
        newbp->phys_blk = oldphys;
776
0
        f->pdata = oldphys->data;
777
0
        f->pdata_end = f->pdata + MEMFILE_DATA_SIZE;
778
0
        f->log_curr_blk = newbp;
779
0
    }                           /* end else (when we are compressing)                           */
780
781
0
    return (ecode);
782
0
}
783
784
static int      /* returns # of chars actually written */
785
memfile_fwrite_chars(const void *data, uint len, clist_file_ptr cf)
786
12.4k
{
787
12.4k
    const char *str = (const char *)data;
788
12.4k
    MEMFILE *f = (MEMFILE *) cf;
789
12.4k
    uint count = len;
790
12.4k
    int ecode;
791
792
    /* check if we are writing to the start of the file.  If so, then    */
793
    /* free the file memory and re-initialize it (frees memory)          */
794
12.4k
    if (f->log_curr_pos == 0) {
795
12.1k
        int code;
796
797
12.1k
        memfile_free_mem(f);
798
12.1k
        if ((code = memfile_init_empty(f)) < 0) {
799
0
            f->error_code = code;
800
0
            return 0;
801
0
        }
802
12.1k
    }
803
12.4k
    if (f->log_curr_blk->link != 0) {
804
0
        emprintf(f->memory,
805
0
                 " Write file truncate -- need to free physical blocks.\n");
806
0
    }
807
24.9k
    while (count) {
808
12.4k
        uint move_count = f->pdata_end - f->pdata;
809
810
12.4k
        if (move_count > count)
811
12.4k
            move_count = count;
812
12.4k
        memmove(f->pdata, str, move_count);
813
12.4k
        f->pdata += move_count;
814
12.4k
        str += move_count;
815
12.4k
        count -= move_count;
816
12.4k
        if (f->pdata == f->pdata_end) {
817
0
            if ((ecode = memfile_next_blk(f)) != 0) {
818
0
                f->error_code = ecode;
819
0
                if (ecode < 0)
820
0
                    return 0;
821
0
            }
822
0
        }
823
12.4k
    }
824
12.4k
    f->log_curr_pos += len;
825
12.4k
    f->log_length = f->log_curr_pos;    /* truncate length to here      */
826
#ifdef DEBUG
827
    tot_raw += len;
828
#endif
829
12.4k
    return (len);
830
12.4k
}
831
832
/*                                                                      */
833
/*      Internal routine to set the f->pdata and f->pdata_end pointers  */
834
/*      for the current logical block f->log_curr_blk                   */
835
/*                                                                      */
836
/*      If data only exists in compressed form, allocate a raw buffer   */
837
/*      and decompress it.                                              */
838
/*                                                                      */
839
840
static int
841
memfile_get_pdata(MEMFILE * f)
842
58.1k
{
843
58.1k
    int code, i, num_raw_buffers, status;
844
58.1k
    LOG_MEMFILE_BLK *bp = f->log_curr_blk;
845
846
58.1k
    if (bp->phys_blk->data_limit == NULL) {
847
        /* Not compressed, return this data pointer                       */
848
58.1k
        f->pdata = (bp->phys_blk)->data;
849
58.1k
        i = f->log_curr_pos % MEMFILE_DATA_SIZE;        /* pos within block     */
850
58.1k
        i = f->log_curr_pos - i;        /* base of block        */
851
58.1k
        if (i + MEMFILE_DATA_SIZE > f->log_length)
852
58.1k
            f->pdata_end = f->pdata + f->log_length - i;
853
0
        else
854
0
            f->pdata_end = f->pdata + MEMFILE_DATA_SIZE;
855
58.1k
    } else {
856
857
        /* data was compressed                                            */
858
0
        if (f->raw_head == NULL) {
859
0
            code = 0;
860
            /* need to allocate the raw buffer pool                        */
861
0
            num_raw_buffers = GET_NUM_RAW_BUFFERS(f);
862
0
            if (f->reservePhysBlockCount) {
863
                /* HACK: allocate reserve block that's been reserved for
864
                 * decompression.  This buffer's block was pre-allocated to make
865
                 * sure we won't come up short here. Take from chain instead of
866
                 * allocateWithReserve() since this buf would just be wasted if
867
                 * allowed to remain preallocated. */
868
0
                f->raw_head = (RAW_BUFFER *)f->reservePhysBlockChain;
869
0
                f->reservePhysBlockChain = f->reservePhysBlockChain->link;
870
0
                --f->reservePhysBlockCount;
871
0
            } else {
872
0
                f->raw_head =
873
0
                    allocateWithReserve(f, sizeof(*f->raw_head), &code,
874
0
                                        "memfile raw buffer",
875
0
                        "memfile_get_pdata: MALLOC for 'raw_head' failed\n");
876
0
                if (code < 0)
877
0
                    return code;
878
0
            }
879
0
            f->raw_head->back = NULL;
880
0
            f->raw_tail = f->raw_head;
881
0
            f->raw_tail->log_blk = NULL;
882
0
            for (i = 0; i < num_raw_buffers; i++) {
883
0
                f->raw_tail->fwd = (RAW_BUFFER *) MALLOC(f, sizeof(RAW_BUFFER),
884
0
                                                      "memfile raw buffer");
885
                /* if MALLOC fails, then just stop allocating            */
886
0
                if (!f->raw_tail->fwd)
887
0
                    break;
888
0
                f->total_space += sizeof(RAW_BUFFER);
889
0
                f->raw_tail->fwd->back = f->raw_tail;
890
0
                f->raw_tail = f->raw_tail->fwd;
891
0
                f->raw_tail->log_blk = NULL;
892
0
            }
893
0
            f->raw_tail->fwd = NULL;
894
0
            num_raw_buffers = i + 1;    /* if MALLOC failed, then OK    */
895
0
            if_debug1m(':', f->memory, "[:]Number of raw buffers allocated=%d\n",
896
0
                       num_raw_buffers);
897
0
            if (f->decompress_state->templat->init != 0)
898
0
                code = (*f->decompress_state->templat->init)
899
0
                    (f->decompress_state);
900
0
            if (code < 0)
901
0
                return_error(gs_error_VMerror);
902
903
0
        }                       /* end allocating the raw buffer pool (first time only)           */
904
0
        if (bp->raw_block == NULL) {
905
#ifdef DEBUG
906
            tot_cache_miss++;   /* count every decompress       */
907
#endif
908
            /* find a raw buffer and decompress                            */
909
0
            if (f->raw_tail->log_blk != NULL) {
910
                /* This block was in use, grab it                           */
911
#ifdef DEBUG
912
                tot_swap_out++;
913
#endif
914
0
                f->raw_tail->log_blk->raw_block = NULL;         /* data no longer here */
915
0
                f->raw_tail->log_blk = NULL;
916
0
            }
917
            /* Use the last raw block in the chain (the oldest)            */
918
0
            f->raw_tail->back->fwd = NULL;      /* disconnect from tail */
919
0
            f->raw_tail->fwd = f->raw_head;     /* new head             */
920
0
            f->raw_head->back = f->raw_tail;
921
0
            f->raw_tail = f->raw_tail->back;
922
0
            f->raw_head = f->raw_head->back;
923
0
            f->raw_head->back = NULL;
924
0
            f->raw_head->log_blk = bp;
925
926
            /* Decompress the data into this raw block                     */
927
            /* Initialize the decompressor                              */
928
0
            if (f->decompress_state->templat->reinit != 0)
929
0
                (*f->decompress_state->templat->reinit) (f->decompress_state);
930
            /* Set pointers and call the decompress routine             */
931
0
            f->wt.ptr = (byte *) (f->raw_head->data) - 1;
932
0
            f->wt.limit = f->wt.ptr + MEMFILE_DATA_SIZE;
933
0
            f->rd.ptr = (const byte *)(bp->phys_pdata) - 1;
934
0
            f->rd.limit = (const byte *)bp->phys_blk->data_limit;
935
#ifdef DEBUG
936
            decomp_wt_ptr0 = f->wt.ptr;
937
            decomp_wt_limit0 = f->wt.limit;
938
            decomp_rd_ptr0 = f->rd.ptr;
939
            decomp_rd_limit0 = f->rd.limit;
940
#endif
941
0
            status = (*f->decompress_state->templat->process)
942
0
                (f->decompress_state, &(f->rd), &(f->wt), true);
943
0
            if (status == 0) {  /* More input data needed */
944
                /* switch to next block and continue decompress             */
945
0
                int back_up = 0;        /* adjust pointer backwards     */
946
947
0
                if (f->rd.ptr != f->rd.limit) {
948
                    /* transfer remainder bytes from the previous block      */
949
0
                    back_up = f->rd.limit - f->rd.ptr;
950
0
                    for (i = 0; i < back_up; i++)
951
0
                        *(bp->phys_blk->link->data - back_up + i) = *++f->rd.ptr;
952
0
                }
953
0
                f->rd.ptr = (const byte *)bp->phys_blk->link->data - back_up - 1;
954
0
                f->rd.limit = (const byte *)bp->phys_blk->link->data_limit;
955
#ifdef DEBUG
956
                decomp_wt_ptr1 = f->wt.ptr;
957
                decomp_wt_limit1 = f->wt.limit;
958
                decomp_rd_ptr1 = f->rd.ptr;
959
                decomp_rd_limit1 = f->rd.limit;
960
#endif
961
0
                status = (*f->decompress_state->templat->process)
962
0
                    (f->decompress_state, &(f->rd), &(f->wt), true);
963
0
                if (status == 0) {
964
0
                    emprintf(f->memory,
965
0
                             "Decompression required more than one full block!\n");
966
0
                    return_error(gs_error_Fatal);
967
0
                }
968
0
            }
969
0
            bp->raw_block = f->raw_head;        /* point to raw block           */
970
0
        }
971
        /* end if( raw_block == NULL ) meaning need to decompress data    */
972
0
        else {
973
            /* data exists in the raw data cache, if not raw_head, move it */
974
0
            if (bp->raw_block != f->raw_head) {
975
                /*          move to raw_head                                */
976
                /*          prev.fwd = this.fwd                             */
977
0
                bp->raw_block->back->fwd = bp->raw_block->fwd;
978
0
                if (bp->raw_block->fwd != NULL)
979
                    /*               next.back = this.back                   */
980
0
                    bp->raw_block->fwd->back = bp->raw_block->back;
981
0
                else
982
0
                    f->raw_tail = bp->raw_block->back;  /* tail = prev        */
983
0
                f->raw_head->back = bp->raw_block;      /* head.back = this     */
984
0
                bp->raw_block->fwd = f->raw_head;       /* this.fwd = orig head */
985
0
                f->raw_head = bp->raw_block;    /* head = this          */
986
0
                f->raw_head->back = NULL;       /* this.back = NULL     */
987
#ifdef DEBUG
988
                tot_cache_hits++;       /* counting here prevents repeats since */
989
                /* won't count if already at head       */
990
#endif
991
0
            }
992
0
        }
993
0
        f->pdata = bp->raw_block->data;
994
0
        f->pdata_end = f->pdata + MEMFILE_DATA_SIZE;
995
        /* NOTE: last block is never compressed, so a compressed block    */
996
        /*        is always full size.                                    */
997
0
    }                           /* end else (when data was compressed)                             */
998
999
58.1k
    return 0;
1000
58.1k
}
1001
1002
/* ---------------- Reading ---------------- */
1003
1004
static int
1005
memfile_fread_chars(void *data, uint len, clist_file_ptr cf)
1006
34.3k
{
1007
34.3k
    char *str = (char *)data;
1008
34.3k
    MEMFILE *f = (MEMFILE *) cf;
1009
34.3k
    uint count = len, move_count;
1010
34.3k
    int64_t num_read;
1011
1012
34.3k
    num_read = f->log_length - f->log_curr_pos;
1013
34.3k
    if ((int64_t)count > num_read)
1014
0
        count = (int)num_read;
1015
34.3k
    num_read = count;
1016
1017
68.6k
    while (count) {
1018
34.3k
        f->log_curr_pos++;      /* move into next byte */
1019
34.3k
        if (f->pdata == f->pdata_end) {
1020
0
            f->log_curr_blk = (f->log_curr_blk)->link;
1021
0
            memfile_get_pdata(f);
1022
0
        }
1023
34.3k
        move_count = f->pdata_end - f->pdata;
1024
34.3k
        if (move_count > count)
1025
18.9k
            move_count = count;
1026
34.3k
        f->log_curr_pos += move_count - 1;      /* new position         */
1027
34.3k
        memmove(str, f->pdata, move_count);
1028
34.3k
        str += move_count;
1029
34.3k
        f->pdata += move_count;
1030
34.3k
        count -= move_count;
1031
34.3k
    }
1032
1033
34.3k
    return (num_read);
1034
34.3k
}
1035
1036
/* ---------------- Position/status ---------------- */
1037
1038
static int
1039
memfile_ferror_code(clist_file_ptr cf)
1040
5.52k
{
1041
5.52k
    return (((MEMFILE *) cf)->error_code);      /* errors stored here */
1042
5.52k
}
1043
1044
static int64_t
1045
memfile_ftell(clist_file_ptr cf)
1046
38.1k
{
1047
38.1k
    return (((MEMFILE *) cf)->log_curr_pos);
1048
38.1k
}
1049
1050
static int
1051
memfile_rewind(clist_file_ptr cf, bool discard_data, const char *ignore_fname)
1052
4.83k
{
1053
4.83k
    MEMFILE *f = (MEMFILE *) cf;
1054
1055
4.83k
    if (discard_data) {
1056
        /* This affects the memfile data, not just the MEMFILE * access struct */
1057
        /* Check first to make sure that we have exclusive access */
1058
0
        if (f->openlist != NULL || f->base_memfile != NULL) {
1059
            /* TODO: Move the data so it is still connected to other open files */
1060
0
            emprintf1(f->memory,
1061
0
                      "memfile_rewind("PRI_INTPTR") with discard_data=true failed: ",
1062
0
                      (intptr_t)f);
1063
0
            f->error_code = gs_note_error(gs_error_ioerror);
1064
0
            return f->error_code;
1065
0
        }
1066
0
        memfile_free_mem(f);
1067
        /* We have to call memfile_init_empty to preserve invariants. */
1068
0
        memfile_init_empty(f);
1069
4.83k
    } else {
1070
4.83k
        f->log_curr_blk = f->log_head;
1071
4.83k
        f->log_curr_pos = 0;
1072
4.83k
        memfile_get_pdata(f);
1073
4.83k
    }
1074
4.83k
    return 0;
1075
4.83k
}
1076
1077
static int
1078
memfile_fseek(clist_file_ptr cf, int64_t offset, int mode, const char *ignore_fname)
1079
53.3k
{
1080
53.3k
    MEMFILE *f = (MEMFILE *) cf;
1081
53.3k
    int64_t i, block_num, new_pos;
1082
1083
53.3k
    switch (mode) {
1084
29.0k
        case SEEK_SET:          /* offset from the beginning of the file */
1085
29.0k
            new_pos = offset;
1086
29.0k
            break;
1087
1088
0
        case SEEK_CUR:          /* offset from the current position in the file */
1089
0
            new_pos = offset + f->log_curr_pos;
1090
0
            break;
1091
1092
24.2k
        case SEEK_END:          /* offset back from the end of the file */
1093
24.2k
            new_pos = f->log_length - offset;
1094
24.2k
            break;
1095
1096
0
        default:
1097
0
            return (-1);
1098
53.3k
    }
1099
53.3k
    if (new_pos < 0 || new_pos > f->log_length)
1100
0
        return -1;
1101
53.3k
    if ((f->pdata == f->pdata_end) && (f->log_curr_blk->link != NULL)) {
1102
        /* log_curr_blk is actually one block behind log_curr_pos         */
1103
0
        f->log_curr_blk = f->log_curr_blk->link;
1104
0
    }
1105
53.3k
    block_num = new_pos / MEMFILE_DATA_SIZE;
1106
53.3k
    i = f->log_curr_pos / MEMFILE_DATA_SIZE;
1107
53.3k
    if (block_num < i) {        /* if moving backwards, start at beginning */
1108
0
        f->log_curr_blk = f->log_head;
1109
0
        i = 0;
1110
0
    }
1111
53.3k
    for (; i < block_num; i++) {
1112
0
        f->log_curr_blk = f->log_curr_blk->link;
1113
0
    }
1114
53.3k
    f->log_curr_pos = new_pos;
1115
53.3k
    memfile_get_pdata(f);       /* pointers to start of block           */
1116
53.3k
    f->pdata += new_pos - (block_num * MEMFILE_DATA_SIZE);
1117
1118
53.3k
    return 0;                   /* return "normal" status                       */
1119
53.3k
}
1120
1121
/* ---------------- Internal routines ---------------- */
1122
1123
static void
1124
memfile_free_mem(MEMFILE * f)
1125
24.3k
{
1126
24.3k
    LOG_MEMFILE_BLK *bp, *tmpbp;
1127
1128
#ifdef DEBUG
1129
    /* output some diagnostics about the effectiveness                   */
1130
    if (tot_raw > 100) {
1131
        if (tot_raw > 0xFFFFFFFF)
1132
            if_debug4m(':', f->memory, "[:]tot_raw=%lu%0lu, tot_compressed=%lu%0lu\n",
1133
                       tot_raw >> 32, tot_raw & 0xFFFFFFFF,
1134
                       tot_compressed >> 32, tot_compressed & 0xFFFFFFFF);
1135
         else
1136
            if_debug2m(':', f->memory, "[:]tot_raw=%lu, tot_compressed=%lu\n",
1137
                       tot_raw, tot_compressed);
1138
    }
1139
    if (tot_cache_hits != 0) {
1140
        if_debug3m(':', f->memory, "[:]Cache hits=%lu, cache misses=%lu, swapouts=%lu\n",
1141
                   tot_cache_hits,
1142
                   (long)(tot_cache_miss - (f->log_length / MEMFILE_DATA_SIZE)),
1143
                   tot_swap_out);
1144
    }
1145
    tot_raw = 0;
1146
    tot_compressed = 0;
1147
    tot_cache_hits = 0;
1148
    tot_cache_miss = 0;
1149
    tot_swap_out = 0;
1150
#endif
1151
1152
    /* Free up memory that was allocated for the memfile              */
1153
24.3k
    bp = f->log_head;
1154
1155
24.3k
    if (bp != NULL) {
1156
        /* Null out phys_blk pointers to compressed data. */
1157
24.3k
        PHYS_MEMFILE_BLK *pphys = bp->phys_blk;
1158
1159
24.3k
        {
1160
48.6k
            for (tmpbp = bp; tmpbp != NULL; tmpbp = tmpbp->link)
1161
24.3k
                if (tmpbp->phys_blk->data_limit != NULL)
1162
0
                    tmpbp->phys_blk = 0;
1163
24.3k
        }
1164
        /* Free the physical blocks that make up the compressed data      */
1165
24.3k
        if (pphys->data_limit != NULL) {
1166
            /* the data was compressed, free the chain of blocks             */
1167
0
            while (pphys != NULL) {
1168
0
                PHYS_MEMFILE_BLK *tmpphys = pphys->link;
1169
1170
0
                FREE(f, pphys, "memfile_free_mem(pphys)");
1171
0
                pphys = tmpphys;
1172
0
            }
1173
0
        }
1174
24.3k
    }
1175
    /* Now free the logical blocks, and any uncompressed physical blocks. */
1176
48.6k
    while (bp != NULL) {
1177
24.3k
        if (bp->phys_blk != NULL) {
1178
24.3k
            FREE(f, bp->phys_blk, "memfile_free_mem(phys_blk)");
1179
24.3k
        }
1180
24.3k
        tmpbp = bp->link;
1181
24.3k
        FREE(f, bp, "memfile_free_mem(log_blk)");
1182
24.3k
        bp = tmpbp;
1183
24.3k
    }
1184
1185
24.3k
    f->log_head = NULL;
1186
1187
    /* Free any internal compressor state. */
1188
24.3k
    if (f->compressor_initialized) {
1189
0
        if (f->decompress_state->templat->release != 0)
1190
0
            (*f->decompress_state->templat->release) (f->decompress_state);
1191
0
        if (f->compress_state->templat->release != 0)
1192
0
            (*f->compress_state->templat->release) (f->compress_state);
1193
0
        f->compressor_initialized = false;
1194
0
    }
1195
    /* free the raw buffers                                           */
1196
24.3k
    while (f->raw_head != NULL) {
1197
0
        RAW_BUFFER *tmpraw = f->raw_head->fwd;
1198
1199
0
        FREE(f, f->raw_head, "memfile_free_mem(raw)");
1200
0
        f->raw_head = tmpraw;
1201
0
    }
1202
24.3k
}
1203
1204
static int
1205
memfile_init_empty(MEMFILE * f)
1206
24.3k
{
1207
24.3k
    PHYS_MEMFILE_BLK *pphys;
1208
24.3k
    LOG_MEMFILE_BLK *plog;
1209
1210
   /* Zero out key fields so that allocation failure will be unwindable */
1211
24.3k
    f->phys_curr = NULL;        /* flag as file not compressed          */
1212
24.3k
    f->log_head = NULL;
1213
24.3k
    f->log_curr_blk = NULL;
1214
24.3k
    f->log_curr_pos = 0;
1215
24.3k
    f->log_length = 0;
1216
24.3k
    f->raw_head = NULL;
1217
24.3k
    f->compressor_initialized = false;
1218
24.3k
    f->total_space = 0;
1219
1220
    /* File empty - get a physical mem block (includes the buffer area)  */
1221
24.3k
    pphys = MALLOC(f, sizeof(*pphys), "memfile pphys");
1222
24.3k
    if (!pphys) {
1223
0
        emprintf(f->memory, "memfile_init_empty: MALLOC for 'pphys' failed\n");
1224
0
        return_error(gs_error_VMerror);
1225
0
    }
1226
24.3k
    f->total_space += sizeof(*pphys);
1227
24.3k
    pphys->data_limit = NULL;   /* raw data for now     */
1228
1229
   /* Get logical mem block to go with physical one */
1230
24.3k
    plog = (LOG_MEMFILE_BLK *)MALLOC( f, sizeof(*plog), "memfile_init_empty" );
1231
24.3k
    if (plog == NULL) {
1232
0
        FREE(f, pphys, "memfile_init_empty");
1233
0
        emprintf(f->memory,
1234
0
                 "memfile_init_empty: MALLOC for log_curr_blk failed\n");
1235
0
        return_error(gs_error_VMerror);
1236
0
    }
1237
24.3k
    f->total_space += sizeof(*plog);
1238
24.3k
    f->log_head = f->log_curr_blk = plog;
1239
24.3k
    f->log_curr_blk->link = NULL;
1240
24.3k
    f->log_curr_blk->phys_blk = pphys;
1241
24.3k
    f->log_curr_blk->phys_pdata = NULL;
1242
24.3k
    f->log_curr_blk->raw_block = NULL;
1243
1244
24.3k
    f->pdata = pphys->data;
1245
24.3k
    f->pdata_end = f->pdata + MEMFILE_DATA_SIZE;
1246
1247
24.3k
    f->error_code = 0;
1248
1249
24.3k
    return 0;
1250
24.3k
}
1251
1252
clist_io_procs_t clist_io_procs_memory = {
1253
    memfile_fopen,
1254
    memfile_fclose,
1255
    memfile_unlink,
1256
    memfile_fwrite_chars,
1257
    memfile_fread_chars,
1258
    memfile_set_memory_warning,
1259
    memfile_ferror_code,
1260
    memfile_ftell,
1261
    memfile_rewind,
1262
    memfile_fseek,
1263
};
1264
1265
init_proc(gs_gxclmem_init);
1266
int
1267
gs_gxclmem_init(gs_memory_t *mem)
1268
9.56k
{
1269
9.56k
    gs_lib_ctx_core_t *core = mem->gs_lib_ctx->core;
1270
9.56k
#ifdef PACIFY_VALGRIND
1271
9.56k
    VALGRIND_HG_DISABLE_CHECKING(&core->clist_io_procs_memory, sizeof(core->clist_io_procs_memory));
1272
9.56k
#endif
1273
9.56k
    core->clist_io_procs_memory = &clist_io_procs_memory;
1274
9.56k
    return 0;
1275
9.56k
}