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WebSVN – planix.SVN – Blame – /os/branches/feature-vt/sys/src/cmd/gs/zlib/zutil.c – Rev 2

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/* zutil.c -- target dependent utility functions for the compression library
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 * Copyright (C) 1995-2003 Jean-loup Gailly.
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 * For conditions of distribution and use, see copyright notice in zlib.h
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 */
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/* @(#) $Id: zutil.c,v 1.1.1.1 2005/04/24 21:39:38 giles Exp $ */
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#include "zutil.h"
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#ifndef NO_DUMMY_DECL
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struct internal_state      {int dummy;}; /* for buggy compilers */
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#endif
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#ifndef STDC
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extern void exit OF((int));
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#endif
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const char * const z_errmsg[10] = {
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"need dictionary",     /* Z_NEED_DICT       2  */
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"stream end",          /* Z_STREAM_END      1  */
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"",                    /* Z_OK              0  */
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"file error",          /* Z_ERRNO         (-1) */
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"stream error",        /* Z_STREAM_ERROR  (-2) */
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"data error",          /* Z_DATA_ERROR    (-3) */
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"insufficient memory", /* Z_MEM_ERROR     (-4) */
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"buffer error",        /* Z_BUF_ERROR     (-5) */
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"incompatible version",/* Z_VERSION_ERROR (-6) */
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""};
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const char * ZEXPORT zlibVersion()
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{
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    return ZLIB_VERSION;
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}
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uLong ZEXPORT zlibCompileFlags()
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{
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    uLong flags;
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    flags = 0;
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    switch (sizeof(uInt)) {
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    case 2:     break;
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    case 4:     flags += 1;     break;
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    case 8:     flags += 2;     break;
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    default:    flags += 3;
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    }
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    switch (sizeof(uLong)) {
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    case 2:     break;
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    case 4:     flags += 1 << 2;        break;
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    case 8:     flags += 2 << 2;        break;
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    default:    flags += 3 << 2;
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    }
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    switch (sizeof(voidpf)) {
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    case 2:     break;
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    case 4:     flags += 1 << 4;        break;
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    case 8:     flags += 2 << 4;        break;
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    default:    flags += 3 << 4;
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    }
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    switch (sizeof(z_off_t)) {
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    case 2:     break;
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    case 4:     flags += 1 << 6;        break;
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    case 8:     flags += 2 << 6;        break;
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    default:    flags += 3 << 6;
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    }
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#ifdef DEBUG
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    flags += 1 << 8;
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#endif
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#if defined(ASMV) || defined(ASMINF)
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    flags += 1 << 9;
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#endif
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#ifdef ZLIB_WINAPI
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    flags += 1 << 10;
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#endif
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#ifdef BUILDFIXED
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    flags += 1 << 12;
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#endif
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#ifdef DYNAMIC_CRC_TABLE
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    flags += 1 << 13;
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#endif
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#ifdef NO_GZCOMPRESS
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    flags += 1 << 16;
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#endif
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#ifdef NO_GZIP
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    flags += 1 << 17;
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#endif
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#ifdef PKZIP_BUG_WORKAROUND
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    flags += 1 << 20;
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#endif
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#ifdef FASTEST
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    flags += 1 << 21;
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#endif
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#ifdef STDC
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#  ifdef NO_vsnprintf
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        flags += 1 << 25;
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#    ifdef HAS_vsprintf_void
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        flags += 1 << 26;
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#    endif
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#  else
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#    ifdef HAS_vsnprintf_void
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        flags += 1 << 26;
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#    endif
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#  endif
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#else
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        flags += 1 << 24;
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#  ifdef NO_snprintf
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        flags += 1 << 25;
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#    ifdef HAS_sprintf_void
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        flags += 1 << 26;
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#    endif
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#  else
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#    ifdef HAS_snprintf_void
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        flags += 1 << 26;
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#    endif
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#  endif
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#endif
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    return flags;
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}
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#ifdef DEBUG
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#  ifndef verbose
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#    define verbose 0
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#  endif
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int z_verbose = verbose;
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void z_error (m)
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    char *m;
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{
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    fprintf(stderr, "%s\n", m);
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    exit(1);
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}
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#endif
133
 
134
/* exported to allow conversion of error code to string for compress() and
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 * uncompress()
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 */
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const char * ZEXPORT zError(err)
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    int err;
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{
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    return ERR_MSG(err);
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}
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143
#if defined(_WIN32_WCE)
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    /* does not exist on WCE */
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    int errno = 0;
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#endif
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#ifndef HAVE_MEMCPY
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void zmemcpy(dest, source, len)
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    Bytef* dest;
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    const Bytef* source;
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    uInt  len;
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{
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    if (len == 0) return;
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    do {
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        *dest++ = *source++; /* ??? to be unrolled */
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    } while (--len != 0);
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}
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int zmemcmp(s1, s2, len)
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    const Bytef* s1;
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    const Bytef* s2;
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    uInt  len;
165
{
166
    uInt j;
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168
    for (j = 0; j < len; j++) {
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        if (s1[j] != s2[j]) return 2*(s1[j] > s2[j])-1;
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    }
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    return 0;
172
}
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void zmemzero(dest, len)
175
    Bytef* dest;
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    uInt  len;
177
{
178
    if (len == 0) return;
179
    do {
180
        *dest++ = 0;  /* ??? to be unrolled */
181
    } while (--len != 0);
182
}
183
#endif
184
 
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#ifdef SYS16BIT
187
 
188
#ifdef __TURBOC__
189
/* Turbo C in 16-bit mode */
190
 
191
#  define MY_ZCALLOC
192
 
193
/* Turbo C malloc() does not allow dynamic allocation of 64K bytes
194
 * and farmalloc(64K) returns a pointer with an offset of 8, so we
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 * must fix the pointer. Warning: the pointer must be put back to its
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 * original form in order to free it, use zcfree().
197
 */
198
 
199
#define MAX_PTR 10
200
/* 10*64K = 640K */
201
 
202
local int next_ptr = 0;
203
 
204
typedef struct ptr_table_s {
205
    voidpf org_ptr;
206
    voidpf new_ptr;
207
} ptr_table;
208
 
209
local ptr_table table[MAX_PTR];
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/* This table is used to remember the original form of pointers
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 * to large buffers (64K). Such pointers are normalized with a zero offset.
212
 * Since MSDOS is not a preemptive multitasking OS, this table is not
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 * protected from concurrent access. This hack doesn't work anyway on
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 * a protected system like OS/2. Use Microsoft C instead.
215
 */
216
 
217
voidpf zcalloc (voidpf opaque, unsigned items, unsigned size)
218
{
219
    voidpf buf = opaque; /* just to make some compilers happy */
220
    ulg bsize = (ulg)items*size;
221
 
222
    /* If we allocate less than 65520 bytes, we assume that farmalloc
223
     * will return a usable pointer which doesn't have to be normalized.
224
     */
225
    if (bsize < 65520L) {
226
        buf = farmalloc(bsize);
227
        if (*(ush*)&buf != 0) return buf;
228
    } else {
229
        buf = farmalloc(bsize + 16L);
230
    }
231
    if (buf == NULL || next_ptr >= MAX_PTR) return NULL;
232
    table[next_ptr].org_ptr = buf;
233
 
234
    /* Normalize the pointer to seg:0 */
235
    *((ush*)&buf+1) += ((ush)((uch*)buf-0) + 15) >> 4;
236
    *(ush*)&buf = 0;
237
    table[next_ptr++].new_ptr = buf;
238
    return buf;
239
}
240
 
241
void  zcfree (voidpf opaque, voidpf ptr)
242
{
243
    int n;
244
    if (*(ush*)&ptr != 0) { /* object < 64K */
245
        farfree(ptr);
246
        return;
247
    }
248
    /* Find the original pointer */
249
    for (n = 0; n < next_ptr; n++) {
250
        if (ptr != table[n].new_ptr) continue;
251
 
252
        farfree(table[n].org_ptr);
253
        while (++n < next_ptr) {
254
            table[n-1] = table[n];
255
        }
256
        next_ptr--;
257
        return;
258
    }
259
    ptr = opaque; /* just to make some compilers happy */
260
    Assert(0, "zcfree: ptr not found");
261
}
262
 
263
#endif /* __TURBOC__ */
264
 
265
 
266
#ifdef M_I86
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/* Microsoft C in 16-bit mode */
268
 
269
#  define MY_ZCALLOC
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271
#if (!defined(_MSC_VER) || (_MSC_VER <= 600))
272
#  define _halloc  halloc
273
#  define _hfree   hfree
274
#endif
275
 
276
voidpf zcalloc (voidpf opaque, unsigned items, unsigned size)
277
{
278
    if (opaque) opaque = 0; /* to make compiler happy */
279
    return _halloc((long)items, size);
280
}
281
 
282
void  zcfree (voidpf opaque, voidpf ptr)
283
{
284
    if (opaque) opaque = 0; /* to make compiler happy */
285
    _hfree(ptr);
286
}
287
 
288
#endif /* M_I86 */
289
 
290
#endif /* SYS16BIT */
291
 
292
 
293
#ifndef MY_ZCALLOC /* Any system without a special alloc function */
294
 
295
#ifndef STDC
296
extern voidp  malloc OF((uInt size));
297
extern voidp  calloc OF((uInt items, uInt size));
298
extern void   free   OF((voidpf ptr));
299
#endif
300
 
301
voidpf zcalloc (opaque, items, size)
302
    voidpf opaque;
303
    unsigned items;
304
    unsigned size;
305
{
306
    if (opaque) items += size - size; /* make compiler happy */
307
    return sizeof(uInt) > 2 ? (voidpf)malloc(items * size) :
308
                              (voidpf)calloc(items, size);
309
}
310
 
311
void  zcfree (opaque, ptr)
312
    voidpf opaque;
313
    voidpf ptr;
314
{
315
    free(ptr);
316
    if (opaque) return; /* make compiler happy */
317
}
318
 
319
#endif /* MY_ZCALLOC */