alpar@9: /* zutil.c -- target dependent utility functions for the compression library alpar@9: * Copyright (C) 1995-2005, 2010 Jean-loup Gailly. alpar@9: * For conditions of distribution and use, see copyright notice in zlib.h alpar@9: */ alpar@9: alpar@9: /* @(#) $Id$ */ alpar@9: alpar@9: #include "zutil.h" alpar@9: alpar@9: #ifndef NO_DUMMY_DECL alpar@9: struct internal_state {int dummy;}; /* for buggy compilers */ alpar@9: #endif alpar@9: alpar@9: const char * const z_errmsg[10] = { alpar@9: "need dictionary", /* Z_NEED_DICT 2 */ alpar@9: "stream end", /* Z_STREAM_END 1 */ alpar@9: "", /* Z_OK 0 */ alpar@9: "file error", /* Z_ERRNO (-1) */ alpar@9: "stream error", /* Z_STREAM_ERROR (-2) */ alpar@9: "data error", /* Z_DATA_ERROR (-3) */ alpar@9: "insufficient memory", /* Z_MEM_ERROR (-4) */ alpar@9: "buffer error", /* Z_BUF_ERROR (-5) */ alpar@9: "incompatible version",/* Z_VERSION_ERROR (-6) */ alpar@9: ""}; alpar@9: alpar@9: alpar@9: const char * ZEXPORT zlibVersion() alpar@9: { alpar@9: return ZLIB_VERSION; alpar@9: } alpar@9: alpar@9: uLong ZEXPORT zlibCompileFlags() alpar@9: { alpar@9: uLong flags; alpar@9: alpar@9: flags = 0; alpar@9: switch ((int)(sizeof(uInt))) { alpar@9: case 2: break; alpar@9: case 4: flags += 1; break; alpar@9: case 8: flags += 2; break; alpar@9: default: flags += 3; alpar@9: } alpar@9: switch ((int)(sizeof(uLong))) { alpar@9: case 2: break; alpar@9: case 4: flags += 1 << 2; break; alpar@9: case 8: flags += 2 << 2; break; alpar@9: default: flags += 3 << 2; alpar@9: } alpar@9: switch ((int)(sizeof(voidpf))) { alpar@9: case 2: break; alpar@9: case 4: flags += 1 << 4; break; alpar@9: case 8: flags += 2 << 4; break; alpar@9: default: flags += 3 << 4; alpar@9: } alpar@9: switch ((int)(sizeof(z_off_t))) { alpar@9: case 2: break; alpar@9: case 4: flags += 1 << 6; break; alpar@9: case 8: flags += 2 << 6; break; alpar@9: default: flags += 3 << 6; alpar@9: } alpar@9: #ifdef DEBUG alpar@9: flags += 1 << 8; alpar@9: #endif alpar@9: #if defined(ASMV) || defined(ASMINF) alpar@9: flags += 1 << 9; alpar@9: #endif alpar@9: #ifdef ZLIB_WINAPI alpar@9: flags += 1 << 10; alpar@9: #endif alpar@9: #ifdef BUILDFIXED alpar@9: flags += 1 << 12; alpar@9: #endif alpar@9: #ifdef DYNAMIC_CRC_TABLE alpar@9: flags += 1 << 13; alpar@9: #endif alpar@9: #ifdef NO_GZCOMPRESS alpar@9: flags += 1L << 16; alpar@9: #endif alpar@9: #ifdef NO_GZIP alpar@9: flags += 1L << 17; alpar@9: #endif alpar@9: #ifdef PKZIP_BUG_WORKAROUND alpar@9: flags += 1L << 20; alpar@9: #endif alpar@9: #ifdef FASTEST alpar@9: flags += 1L << 21; alpar@9: #endif alpar@9: #ifdef STDC alpar@9: # ifdef NO_vsnprintf alpar@9: flags += 1L << 25; alpar@9: # ifdef HAS_vsprintf_void alpar@9: flags += 1L << 26; alpar@9: # endif alpar@9: # else alpar@9: # ifdef HAS_vsnprintf_void alpar@9: flags += 1L << 26; alpar@9: # endif alpar@9: # endif alpar@9: #else alpar@9: flags += 1L << 24; alpar@9: # ifdef NO_snprintf alpar@9: flags += 1L << 25; alpar@9: # ifdef HAS_sprintf_void alpar@9: flags += 1L << 26; alpar@9: # endif alpar@9: # else alpar@9: # ifdef HAS_snprintf_void alpar@9: flags += 1L << 26; alpar@9: # endif alpar@9: # endif alpar@9: #endif alpar@9: return flags; alpar@9: } alpar@9: alpar@9: #ifdef DEBUG alpar@9: alpar@9: # ifndef verbose alpar@9: # define verbose 0 alpar@9: # endif alpar@9: int ZLIB_INTERNAL z_verbose = verbose; alpar@9: alpar@9: void ZLIB_INTERNAL z_error (m) alpar@9: char *m; alpar@9: { alpar@9: fprintf(stderr, "%s\n", m); alpar@9: exit(1); alpar@9: } alpar@9: #endif alpar@9: alpar@9: /* exported to allow conversion of error code to string for compress() and alpar@9: * uncompress() alpar@9: */ alpar@9: const char * ZEXPORT zError(err) alpar@9: int err; alpar@9: { alpar@9: return ERR_MSG(err); alpar@9: } alpar@9: alpar@9: #if defined(_WIN32_WCE) alpar@9: /* The Microsoft C Run-Time Library for Windows CE doesn't have alpar@9: * errno. We define it as a global variable to simplify porting. alpar@9: * Its value is always 0 and should not be used. alpar@9: */ alpar@9: int errno = 0; alpar@9: #endif alpar@9: alpar@9: #ifndef HAVE_MEMCPY alpar@9: alpar@9: void ZLIB_INTERNAL zmemcpy(dest, source, len) alpar@9: Bytef* dest; alpar@9: const Bytef* source; alpar@9: uInt len; alpar@9: { alpar@9: if (len == 0) return; alpar@9: do { alpar@9: *dest++ = *source++; /* ??? to be unrolled */ alpar@9: } while (--len != 0); alpar@9: } alpar@9: alpar@9: int ZLIB_INTERNAL zmemcmp(s1, s2, len) alpar@9: const Bytef* s1; alpar@9: const Bytef* s2; alpar@9: uInt len; alpar@9: { alpar@9: uInt j; alpar@9: alpar@9: for (j = 0; j < len; j++) { alpar@9: if (s1[j] != s2[j]) return 2*(s1[j] > s2[j])-1; alpar@9: } alpar@9: return 0; alpar@9: } alpar@9: alpar@9: void ZLIB_INTERNAL zmemzero(dest, len) alpar@9: Bytef* dest; alpar@9: uInt len; alpar@9: { alpar@9: if (len == 0) return; alpar@9: do { alpar@9: *dest++ = 0; /* ??? to be unrolled */ alpar@9: } while (--len != 0); alpar@9: } alpar@9: #endif alpar@9: alpar@9: alpar@9: #ifdef SYS16BIT alpar@9: alpar@9: #ifdef __TURBOC__ alpar@9: /* Turbo C in 16-bit mode */ alpar@9: alpar@9: # define MY_ZCALLOC alpar@9: alpar@9: /* Turbo C malloc() does not allow dynamic allocation of 64K bytes alpar@9: * and farmalloc(64K) returns a pointer with an offset of 8, so we alpar@9: * must fix the pointer. Warning: the pointer must be put back to its alpar@9: * original form in order to free it, use zcfree(). alpar@9: */ alpar@9: alpar@9: #define MAX_PTR 10 alpar@9: /* 10*64K = 640K */ alpar@9: alpar@9: local int next_ptr = 0; alpar@9: alpar@9: typedef struct ptr_table_s { alpar@9: voidpf org_ptr; alpar@9: voidpf new_ptr; alpar@9: } ptr_table; alpar@9: alpar@9: local ptr_table table[MAX_PTR]; alpar@9: /* This table is used to remember the original form of pointers alpar@9: * to large buffers (64K). Such pointers are normalized with a zero offset. alpar@9: * Since MSDOS is not a preemptive multitasking OS, this table is not alpar@9: * protected from concurrent access. This hack doesn't work anyway on alpar@9: * a protected system like OS/2. Use Microsoft C instead. alpar@9: */ alpar@9: alpar@9: voidpf ZLIB_INTERNAL zcalloc (voidpf opaque, unsigned items, unsigned size) alpar@9: { alpar@9: voidpf buf = opaque; /* just to make some compilers happy */ alpar@9: ulg bsize = (ulg)items*size; alpar@9: alpar@9: /* If we allocate less than 65520 bytes, we assume that farmalloc alpar@9: * will return a usable pointer which doesn't have to be normalized. alpar@9: */ alpar@9: if (bsize < 65520L) { alpar@9: buf = farmalloc(bsize); alpar@9: if (*(ush*)&buf != 0) return buf; alpar@9: } else { alpar@9: buf = farmalloc(bsize + 16L); alpar@9: } alpar@9: if (buf == NULL || next_ptr >= MAX_PTR) return NULL; alpar@9: table[next_ptr].org_ptr = buf; alpar@9: alpar@9: /* Normalize the pointer to seg:0 */ alpar@9: *((ush*)&buf+1) += ((ush)((uch*)buf-0) + 15) >> 4; alpar@9: *(ush*)&buf = 0; alpar@9: table[next_ptr++].new_ptr = buf; alpar@9: return buf; alpar@9: } alpar@9: alpar@9: void ZLIB_INTERNAL zcfree (voidpf opaque, voidpf ptr) alpar@9: { alpar@9: int n; alpar@9: if (*(ush*)&ptr != 0) { /* object < 64K */ alpar@9: farfree(ptr); alpar@9: return; alpar@9: } alpar@9: /* Find the original pointer */ alpar@9: for (n = 0; n < next_ptr; n++) { alpar@9: if (ptr != table[n].new_ptr) continue; alpar@9: alpar@9: farfree(table[n].org_ptr); alpar@9: while (++n < next_ptr) { alpar@9: table[n-1] = table[n]; alpar@9: } alpar@9: next_ptr--; alpar@9: return; alpar@9: } alpar@9: ptr = opaque; /* just to make some compilers happy */ alpar@9: Assert(0, "zcfree: ptr not found"); alpar@9: } alpar@9: alpar@9: #endif /* __TURBOC__ */ alpar@9: alpar@9: alpar@9: #ifdef M_I86 alpar@9: /* Microsoft C in 16-bit mode */ alpar@9: alpar@9: # define MY_ZCALLOC alpar@9: alpar@9: #if (!defined(_MSC_VER) || (_MSC_VER <= 600)) alpar@9: # define _halloc halloc alpar@9: # define _hfree hfree alpar@9: #endif alpar@9: alpar@9: voidpf ZLIB_INTERNAL zcalloc (voidpf opaque, uInt items, uInt size) alpar@9: { alpar@9: if (opaque) opaque = 0; /* to make compiler happy */ alpar@9: return _halloc((long)items, size); alpar@9: } alpar@9: alpar@9: void ZLIB_INTERNAL zcfree (voidpf opaque, voidpf ptr) alpar@9: { alpar@9: if (opaque) opaque = 0; /* to make compiler happy */ alpar@9: _hfree(ptr); alpar@9: } alpar@9: alpar@9: #endif /* M_I86 */ alpar@9: alpar@9: #endif /* SYS16BIT */ alpar@9: alpar@9: alpar@9: #ifndef MY_ZCALLOC /* Any system without a special alloc function */ alpar@9: alpar@9: #ifndef STDC alpar@9: extern voidp malloc OF((uInt size)); alpar@9: extern voidp calloc OF((uInt items, uInt size)); alpar@9: extern void free OF((voidpf ptr)); alpar@9: #endif alpar@9: alpar@9: voidpf ZLIB_INTERNAL zcalloc (opaque, items, size) alpar@9: voidpf opaque; alpar@9: unsigned items; alpar@9: unsigned size; alpar@9: { alpar@9: if (opaque) items += size - size; /* make compiler happy */ alpar@9: return sizeof(uInt) > 2 ? (voidpf)malloc(items * size) : alpar@9: (voidpf)calloc(items, size); alpar@9: } alpar@9: alpar@9: void ZLIB_INTERNAL zcfree (opaque, ptr) alpar@9: voidpf opaque; alpar@9: voidpf ptr; alpar@9: { alpar@9: free(ptr); alpar@9: if (opaque) return; /* make compiler happy */ alpar@9: } alpar@9: alpar@9: #endif /* MY_ZCALLOC */