authorgravatar for kubkon@jakubkonka.comJakub Konka <kubkon@jakubkonka.com> 2023-06-04 13:45:56+02:00
committergravatar for kubkon@jakubkonka.comJakub Konka <kubkon@jakubkonka.com> 2023-06-04 16:37:53+02:00
log7e0a02ee2593d99236bc9a1ff98a8f957add6ec4
treeb3d72149fc03dbc4f24c20d9e6d7b59948d0c1bd
parent629f0d23b5c0768b5957688591f6fa6216ae4dd3

macos+libc: add zlib.h,sys/paths.h,netinet/{ip.h,udp.h}


6 files changed, 2920 insertions(+), 0 deletions(-)

lib/libc/include/any-macos-any/netinet/in_systm.h created+89
...@@ -0,0 +1,89 @@
1/*
2 * Copyright (c) 2000-2018 Apple Computer, Inc. All rights reserved.
3 *
4 * @APPLE_OSREFERENCE_LICENSE_HEADER_START@
5 *
6 * This file contains Original Code and/or Modifications of Original Code
7 * as defined in and that are subject to the Apple Public Source License
8 * Version 2.0 (the 'License'). You may not use this file except in
9 * compliance with the License. The rights granted to you under the License
10 * may not be used to create, or enable the creation or redistribution of,
11 * unlawful or unlicensed copies of an Apple operating system, or to
12 * circumvent, violate, or enable the circumvention or violation of, any
13 * terms of an Apple operating system software license agreement.
14 *
15 * Please obtain a copy of the License at
16 * http://www.opensource.apple.com/apsl/ and read it before using this file.
17 *
18 * The Original Code and all software distributed under the License are
19 * distributed on an 'AS IS' basis, WITHOUT WARRANTY OF ANY KIND, EITHER
20 * EXPRESS OR IMPLIED, AND APPLE HEREBY DISCLAIMS ALL SUCH WARRANTIES,
21 * INCLUDING WITHOUT LIMITATION, ANY WARRANTIES OF MERCHANTABILITY,
22 * FITNESS FOR A PARTICULAR PURPOSE, QUIET ENJOYMENT OR NON-INFRINGEMENT.
23 * Please see the License for the specific language governing rights and
24 * limitations under the License.
25 *
26 * @APPLE_OSREFERENCE_LICENSE_HEADER_END@
27 */
28/*
29 * Copyright (c) 1982, 1986, 1993
30 * The Regents of the University of California. All rights reserved.
31 *
32 * Redistribution and use in source and binary forms, with or without
33 * modification, are permitted provided that the following conditions
34 * are met:
35 * 1. Redistributions of source code must retain the above copyright
36 * notice, this list of conditions and the following disclaimer.
37 * 2. Redistributions in binary form must reproduce the above copyright
38 * notice, this list of conditions and the following disclaimer in the
39 * documentation and/or other materials provided with the distribution.
40 * 3. All advertising materials mentioning features or use of this software
41 * must display the following acknowledgement:
42 * This product includes software developed by the University of
43 * California, Berkeley and its contributors.
44 * 4. Neither the name of the University nor the names of its contributors
45 * may be used to endorse or promote products derived from this software
46 * without specific prior written permission.
47 *
48 * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
49 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
50 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
51 * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
52 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
53 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
54 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
55 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
56 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
57 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
58 * SUCH DAMAGE.
59 *
60 * @(#)in_systm.h 8.1 (Berkeley) 6/10/93
61 * $FreeBSD: src/sys/netinet/in_systm.h,v 1.9 1999/12/29 04:41:00 peter Exp $
62 */
63
64#ifndef _NETINET_IN_SYSTM_H_
65#define _NETINET_IN_SYSTM_H_
66
67#include <sys/appleapiopts.h>
68
69#include <sys/_types.h>
70
71/*
72 * Miscellaneous internetwork
73 * definitions for kernel.
74 */
75
76/*
77 * Network types.
78 *
79 * Internally the system keeps counters in the headers with the bytes
80 * swapped so that VAX instructions will work on them. It reverses
81 * the bytes before transmission at each protocol level. The n_ types
82 * represent the types with the bytes in ``high-ender'' order.
83 */
84typedef __uint16_t n_short; /* short as received from the net */
85typedef __uint32_t n_long; /* long as received from the net */
86
87typedef __uint32_t n_time; /* ms since 00:00 GMT, byte rev */
88
89#endif /* _NETINET_IN_SYSTM_H_ */
\ No newline at end of file
lib/libc/include/any-macos-any/netinet/ip.h created+233
...@@ -0,0 +1,233 @@
1/*
2 * Copyright (c) 2000-2016 Apple Inc. All rights reserved.
3 *
4 * @APPLE_OSREFERENCE_LICENSE_HEADER_START@
5 *
6 * This file contains Original Code and/or Modifications of Original Code
7 * as defined in and that are subject to the Apple Public Source License
8 * Version 2.0 (the 'License'). You may not use this file except in
9 * compliance with the License. The rights granted to you under the License
10 * may not be used to create, or enable the creation or redistribution of,
11 * unlawful or unlicensed copies of an Apple operating system, or to
12 * circumvent, violate, or enable the circumvention or violation of, any
13 * terms of an Apple operating system software license agreement.
14 *
15 * Please obtain a copy of the License at
16 * http://www.opensource.apple.com/apsl/ and read it before using this file.
17 *
18 * The Original Code and all software distributed under the License are
19 * distributed on an 'AS IS' basis, WITHOUT WARRANTY OF ANY KIND, EITHER
20 * EXPRESS OR IMPLIED, AND APPLE HEREBY DISCLAIMS ALL SUCH WARRANTIES,
21 * INCLUDING WITHOUT LIMITATION, ANY WARRANTIES OF MERCHANTABILITY,
22 * FITNESS FOR A PARTICULAR PURPOSE, QUIET ENJOYMENT OR NON-INFRINGEMENT.
23 * Please see the License for the specific language governing rights and
24 * limitations under the License.
25 *
26 * @APPLE_OSREFERENCE_LICENSE_HEADER_END@
27 */
28/*
29 * Copyright (c) 1982, 1986, 1993
30 * The Regents of the University of California. All rights reserved.
31 *
32 * Redistribution and use in source and binary forms, with or without
33 * modification, are permitted provided that the following conditions
34 * are met:
35 * 1. Redistributions of source code must retain the above copyright
36 * notice, this list of conditions and the following disclaimer.
37 * 2. Redistributions in binary form must reproduce the above copyright
38 * notice, this list of conditions and the following disclaimer in the
39 * documentation and/or other materials provided with the distribution.
40 * 3. All advertising materials mentioning features or use of this software
41 * must display the following acknowledgement:
42 * This product includes software developed by the University of
43 * California, Berkeley and its contributors.
44 * 4. Neither the name of the University nor the names of its contributors
45 * may be used to endorse or promote products derived from this software
46 * without specific prior written permission.
47 *
48 * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
49 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
50 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
51 * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
52 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
53 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
54 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
55 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
56 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
57 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
58 * SUCH DAMAGE.
59 *
60 * @(#)ip.h 8.2 (Berkeley) 6/1/94
61 * $FreeBSD: src/sys/netinet/ip.h,v 1.17 1999/12/22 19:13:20 shin Exp $
62 */
63
64#ifndef _NETINET_IP_H_
65#define _NETINET_IP_H_
66#include <sys/appleapiopts.h>
67#include <sys/types.h> /* XXX temporary hack to get u_ types */
68
69#include <netinet/in.h>
70#include <netinet/in_systm.h>
71
72/*
73 * Definitions for internet protocol version 4.
74 * Per RFC 791, September 1981.
75 */
76#define IPVERSION 4
77
78/*
79 * Structure of an internet header, naked of options.
80 */
81struct ip {
82#ifdef _IP_VHL
83 u_char ip_vhl; /* version << 4 | header length >> 2 */
84#else
85#if BYTE_ORDER == LITTLE_ENDIAN
86 u_int ip_hl:4, /* header length */
87 ip_v:4; /* version */
88#endif
89#if BYTE_ORDER == BIG_ENDIAN
90 u_int ip_v:4, /* version */
91 ip_hl:4; /* header length */
92#endif
93#endif /* not _IP_VHL */
94 u_char ip_tos; /* type of service */
95 u_short ip_len; /* total length */
96 u_short ip_id; /* identification */
97 u_short ip_off; /* fragment offset field */
98#define IP_RF 0x8000 /* reserved fragment flag */
99#define IP_DF 0x4000 /* dont fragment flag */
100#define IP_MF 0x2000 /* more fragments flag */
101#define IP_OFFMASK 0x1fff /* mask for fragmenting bits */
102 u_char ip_ttl; /* time to live */
103 u_char ip_p; /* protocol */
104 u_short ip_sum; /* checksum */
105 struct in_addr ip_src, ip_dst; /* source and dest address */
106};
107
108#ifdef _IP_VHL
109#define IP_MAKE_VHL(v, hl) ((uint8_t)((v) << 4 | (hl)))
110#define IP_VHL_HL(vhl) ((vhl) & 0x0f)
111#define IP_VHL_V(vhl) ((vhl) >> 4)
112#define IP_VHL_BORING 0x45
113#endif
114
115#define IP_MAXPACKET 65535 /* maximum packet size */
116
117/*
118 * Definitions for IP type of service (ip_tos)
119 */
120#define IPTOS_LOWDELAY 0x10
121#define IPTOS_THROUGHPUT 0x08
122#define IPTOS_RELIABILITY 0x04
123#define IPTOS_MINCOST 0x02
124#if 1
125/* ECN RFC3168 obsoletes RFC2481, and these will be deprecated soon. */
126#define IPTOS_CE 0x01
127#define IPTOS_ECT 0x02
128#endif
129
130#define IPTOS_DSCP_SHIFT 2
131
132/*
133 * ECN (Explicit Congestion Notification) codepoints in RFC3168
134 * mapped to the lower 2 bits of the TOS field.
135 */
136#define IPTOS_ECN_NOTECT 0x00 /* not-ECT */
137#define IPTOS_ECN_ECT1 0x01 /* ECN-capable transport (1) */
138#define IPTOS_ECN_ECT0 0x02 /* ECN-capable transport (0) */
139#define IPTOS_ECN_CE 0x03 /* congestion experienced */
140#define IPTOS_ECN_MASK 0x03 /* ECN field mask */
141
142/*
143 * Definitions for IP precedence (also in ip_tos) (hopefully unused)
144 */
145#define IPTOS_PREC_NETCONTROL 0xe0
146#define IPTOS_PREC_INTERNETCONTROL 0xc0
147#define IPTOS_PREC_CRITIC_ECP 0xa0
148#define IPTOS_PREC_FLASHOVERRIDE 0x80
149#define IPTOS_PREC_FLASH 0x60
150#define IPTOS_PREC_IMMEDIATE 0x40
151#define IPTOS_PREC_PRIORITY 0x20
152#define IPTOS_PREC_ROUTINE 0x00
153
154/*
155 * Definitions for options.
156 */
157#define IPOPT_COPIED(o) ((o)&0x80)
158#define IPOPT_CLASS(o) ((o)&0x60)
159#define IPOPT_NUMBER(o) ((o)&0x1f)
160
161#define IPOPT_CONTROL 0x00
162#define IPOPT_RESERVED1 0x20
163#define IPOPT_DEBMEAS 0x40
164#define IPOPT_RESERVED2 0x60
165
166#define IPOPT_EOL 0 /* end of option list */
167#define IPOPT_NOP 1 /* no operation */
168
169#define IPOPT_RR 7 /* record packet route */
170#define IPOPT_TS 68 /* timestamp */
171#define IPOPT_SECURITY 130 /* provide s,c,h,tcc */
172#define IPOPT_LSRR 131 /* loose source route */
173#define IPOPT_SATID 136 /* satnet id */
174#define IPOPT_SSRR 137 /* strict source route */
175#define IPOPT_RA 148 /* router alert */
176
177/*
178 * Offsets to fields in options other than EOL and NOP.
179 */
180#define IPOPT_OPTVAL 0 /* option ID */
181#define IPOPT_OLEN 1 /* option length */
182#define IPOPT_OFFSET 2 /* offset within option */
183#define IPOPT_MINOFF 4 /* min value of above */
184
185/*
186 * Time stamp option structure.
187 */
188struct ip_timestamp {
189 u_char ipt_code; /* IPOPT_TS */
190 u_char ipt_len; /* size of structure (variable) */
191 u_char ipt_ptr; /* index of current entry */
192#if BYTE_ORDER == LITTLE_ENDIAN
193 u_int ipt_flg:4, /* flags, see below */
194 ipt_oflw:4; /* overflow counter */
195#endif
196#if BYTE_ORDER == BIG_ENDIAN
197 u_int ipt_oflw:4, /* overflow counter */
198 ipt_flg:4; /* flags, see below */
199#endif
200 union ipt_timestamp {
201 n_long ipt_time[1];
202 struct ipt_ta {
203 struct in_addr ipt_addr;
204 n_long ipt_time;
205 } ipt_ta[1];
206 } ipt_timestamp;
207};
208
209/* flag bits for ipt_flg */
210#define IPOPT_TS_TSONLY 0 /* timestamps only */
211#define IPOPT_TS_TSANDADDR 1 /* timestamps and addresses */
212#define IPOPT_TS_PRESPEC 3 /* specified modules only */
213
214/* bits for security (not byte swapped) */
215#define IPOPT_SECUR_UNCLASS 0x0000
216#define IPOPT_SECUR_CONFID 0xf135
217#define IPOPT_SECUR_EFTO 0x789a
218#define IPOPT_SECUR_MMMM 0xbc4d
219#define IPOPT_SECUR_RESTR 0xaf13
220#define IPOPT_SECUR_SECRET 0xd788
221#define IPOPT_SECUR_TOPSECRET 0x6bc5
222
223/*
224 * Internet implementation parameters.
225 */
226#define MAXTTL 255 /* maximum time to live (seconds) */
227#define IPDEFTTL 64 /* default ttl, from RFC 1340 */
228#define IPFRAGTTL 30 /* time to live for frags (seconds) */
229#define IPTTLDEC 1 /* subtracted when forwarding */
230
231#define IP_MSS 576 /* default maximum segment size */
232
233#endif
\ No newline at end of file
lib/libc/include/any-macos-any/netinet/udp.h created+85
...@@ -0,0 +1,85 @@
1/*
2 * Copyright (c) 2000 Apple Computer, Inc. All rights reserved.
3 *
4 * @APPLE_OSREFERENCE_LICENSE_HEADER_START@
5 *
6 * This file contains Original Code and/or Modifications of Original Code
7 * as defined in and that are subject to the Apple Public Source License
8 * Version 2.0 (the 'License'). You may not use this file except in
9 * compliance with the License. The rights granted to you under the License
10 * may not be used to create, or enable the creation or redistribution of,
11 * unlawful or unlicensed copies of an Apple operating system, or to
12 * circumvent, violate, or enable the circumvention or violation of, any
13 * terms of an Apple operating system software license agreement.
14 *
15 * Please obtain a copy of the License at
16 * http://www.opensource.apple.com/apsl/ and read it before using this file.
17 *
18 * The Original Code and all software distributed under the License are
19 * distributed on an 'AS IS' basis, WITHOUT WARRANTY OF ANY KIND, EITHER
20 * EXPRESS OR IMPLIED, AND APPLE HEREBY DISCLAIMS ALL SUCH WARRANTIES,
21 * INCLUDING WITHOUT LIMITATION, ANY WARRANTIES OF MERCHANTABILITY,
22 * FITNESS FOR A PARTICULAR PURPOSE, QUIET ENJOYMENT OR NON-INFRINGEMENT.
23 * Please see the License for the specific language governing rights and
24 * limitations under the License.
25 *
26 * @APPLE_OSREFERENCE_LICENSE_HEADER_END@
27 */
28/*
29 * Copyright (c) 1982, 1986, 1993
30 * The Regents of the University of California. All rights reserved.
31 *
32 * Redistribution and use in source and binary forms, with or without
33 * modification, are permitted provided that the following conditions
34 * are met:
35 * 1. Redistributions of source code must retain the above copyright
36 * notice, this list of conditions and the following disclaimer.
37 * 2. Redistributions in binary form must reproduce the above copyright
38 * notice, this list of conditions and the following disclaimer in the
39 * documentation and/or other materials provided with the distribution.
40 * 3. All advertising materials mentioning features or use of this software
41 * must display the following acknowledgement:
42 * This product includes software developed by the University of
43 * California, Berkeley and its contributors.
44 * 4. Neither the name of the University nor the names of its contributors
45 * may be used to endorse or promote products derived from this software
46 * without specific prior written permission.
47 *
48 * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
49 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
50 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
51 * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
52 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
53 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
54 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
55 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
56 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
57 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
58 * SUCH DAMAGE.
59 *
60 * @(#)udp.h 8.1 (Berkeley) 6/10/93
61 */
62
63#ifndef _NETINET_UDP_H_
64#define _NETINET_UDP_H_
65
66#include <sys/appleapiopts.h>
67#include <sys/types.h> /* u_short */
68
69/*
70 * Udp protocol header.
71 * Per RFC 768, September, 1981.
72 */
73struct udphdr {
74 u_short uh_sport; /* source port */
75 u_short uh_dport; /* destination port */
76 u_short uh_ulen; /* udp length */
77 u_short uh_sum; /* udp checksum */
78};
79
80/*
81 * User-settable options (used with setsockopt).
82 */
83#define UDP_NOCKSUM 0x01 /* don't checksum outbound payloads */
84
85#endif /* _NETINET_UDP_H */
\ No newline at end of file
lib/libc/include/any-macos-any/sys/paths.h created+44
...@@ -0,0 +1,44 @@
1/*
2 * Copyright (c) 2000-2002 Apple Computer, Inc. All rights reserved.
3 *
4 * @APPLE_OSREFERENCE_LICENSE_HEADER_START@
5 *
6 * This file contains Original Code and/or Modifications of Original Code
7 * as defined in and that are subject to the Apple Public Source License
8 * Version 2.0 (the 'License'). You may not use this file except in
9 * compliance with the License. The rights granted to you under the License
10 * may not be used to create, or enable the creation or redistribution of,
11 * unlawful or unlicensed copies of an Apple operating system, or to
12 * circumvent, violate, or enable the circumvention or violation of, any
13 * terms of an Apple operating system software license agreement.
14 *
15 * Please obtain a copy of the License at
16 * http://www.opensource.apple.com/apsl/ and read it before using this file.
17 *
18 * The Original Code and all software distributed under the License are
19 * distributed on an 'AS IS' basis, WITHOUT WARRANTY OF ANY KIND, EITHER
20 * EXPRESS OR IMPLIED, AND APPLE HEREBY DISCLAIMS ALL SUCH WARRANTIES,
21 * INCLUDING WITHOUT LIMITATION, ANY WARRANTIES OF MERCHANTABILITY,
22 * FITNESS FOR A PARTICULAR PURPOSE, QUIET ENJOYMENT OR NON-INFRINGEMENT.
23 * Please see the License for the specific language governing rights and
24 * limitations under the License.
25 *
26 * @APPLE_OSREFERENCE_LICENSE_HEADER_END@
27 */
28/* @(#)paths.h 1.0 11/13/00 */
29
30#ifndef _SYS_PATHS_H_
31#define _SYS_PATHS_H_
32
33#include <sys/appleapiopts.h>
34
35#ifdef __APPLE_API_PRIVATE
36
37/* Provides support for system wide forks */
38#define _PATH_FORKSPECIFIER "/..namedfork/"
39#define _PATH_DATANAME "data"
40#define _PATH_RSRCNAME "rsrc"
41#define _PATH_RSRCFORKSPEC "/..namedfork/rsrc"
42
43#endif /* __APPLE_API_PRIVATE */
44#endif /* !_SYS_PATHS_H_ */
\ No newline at end of file
lib/libc/include/any-macos-any/zconf.h created+523
...@@ -0,0 +1,523 @@
1/* zconf.h -- configuration of the zlib compression library
2 * Copyright (C) 1995-2016 Jean-loup Gailly, Mark Adler
3 * For conditions of distribution and use, see copyright notice in zlib.h
4 */
5
6/* @(#) $Id$ */
7
8#ifndef ZCONF_H
9#define ZCONF_H
10
11/*
12 * If you *really* need a unique prefix for all types and library functions,
13 * compile with -DZ_PREFIX. The "standard" zlib should be compiled without it.
14 * Even better than compiling with -DZ_PREFIX would be to use configure to set
15 * this permanently in zconf.h using "./configure --zprefix".
16 */
17#ifdef Z_PREFIX /* may be set to #if 1 by ./configure */
18# define Z_PREFIX_SET
19
20/* all linked symbols and init macros */
21# define _dist_code z__dist_code
22# define _length_code z__length_code
23# define _tr_align z__tr_align
24# define _tr_flush_bits z__tr_flush_bits
25# define _tr_flush_block z__tr_flush_block
26# define _tr_init z__tr_init
27# define _tr_stored_block z__tr_stored_block
28# define _tr_tally z__tr_tally
29# define adler32 z_adler32
30# define adler32_combine z_adler32_combine
31# define adler32_combine64 z_adler32_combine64
32# define adler32_z z_adler32_z
33# ifndef Z_SOLO
34# define compress z_compress
35# define compress2 z_compress2
36# define compressBound z_compressBound
37# endif
38# define crc32 z_crc32
39# define crc32_combine z_crc32_combine
40# define crc32_combine64 z_crc32_combine64
41# define crc32_z z_crc32_z
42# define deflate z_deflate
43# define deflateBound z_deflateBound
44# define deflateCopy z_deflateCopy
45# define deflateEnd z_deflateEnd
46# define deflateGetDictionary z_deflateGetDictionary
47# define deflateInit z_deflateInit
48# define deflateInit2 z_deflateInit2
49# define deflateInit2_ z_deflateInit2_
50# define deflateInit_ z_deflateInit_
51# define deflateParams z_deflateParams
52# define deflatePending z_deflatePending
53# define deflatePrime z_deflatePrime
54# define deflateReset z_deflateReset
55# define deflateResetKeep z_deflateResetKeep
56# define deflateSetDictionary z_deflateSetDictionary
57# define deflateSetHeader z_deflateSetHeader
58# define deflateTune z_deflateTune
59# define deflate_copyright z_deflate_copyright
60# define get_crc_table z_get_crc_table
61# ifndef Z_SOLO
62# define gz_error z_gz_error
63# define gz_intmax z_gz_intmax
64# define gz_strwinerror z_gz_strwinerror
65# define gzbuffer z_gzbuffer
66# define gzclearerr z_gzclearerr
67# define gzclose z_gzclose
68# define gzclose_r z_gzclose_r
69# define gzclose_w z_gzclose_w
70# define gzdirect z_gzdirect
71# define gzdopen z_gzdopen
72# define gzeof z_gzeof
73# define gzerror z_gzerror
74# define gzflush z_gzflush
75# define gzfread z_gzfread
76# define gzfwrite z_gzfwrite
77# define gzgetc z_gzgetc
78# define gzgetc_ z_gzgetc_
79# define gzgets z_gzgets
80# define gzoffset z_gzoffset
81# define gzoffset64 z_gzoffset64
82# define gzopen z_gzopen
83# define gzopen64 z_gzopen64
84# ifdef _WIN32
85# define gzopen_w z_gzopen_w
86# endif
87# define gzprintf z_gzprintf
88# define gzputc z_gzputc
89# define gzputs z_gzputs
90# define gzread z_gzread
91# define gzrewind z_gzrewind
92# define gzseek z_gzseek
93# define gzseek64 z_gzseek64
94# define gzsetparams z_gzsetparams
95# define gztell z_gztell
96# define gztell64 z_gztell64
97# define gzungetc z_gzungetc
98# define gzvprintf z_gzvprintf
99# define gzwrite z_gzwrite
100# endif
101# define inflate z_inflate
102# define inflateBack z_inflateBack
103# define inflateBackEnd z_inflateBackEnd
104# define inflateBackInit z_inflateBackInit
105# define inflateBackInit_ z_inflateBackInit_
106# define inflateCodesUsed z_inflateCodesUsed
107# define inflateCopy z_inflateCopy
108# define inflateEnd z_inflateEnd
109# define inflateGetDictionary z_inflateGetDictionary
110# define inflateGetHeader z_inflateGetHeader
111# define inflateInit z_inflateInit
112# define inflateInit2 z_inflateInit2
113# define inflateInit2_ z_inflateInit2_
114# define inflateInit_ z_inflateInit_
115# define inflateMark z_inflateMark
116# define inflatePrime z_inflatePrime
117# define inflateReset z_inflateReset
118# define inflateReset2 z_inflateReset2
119# define inflateResetKeep z_inflateResetKeep
120# define inflateSetDictionary z_inflateSetDictionary
121# define inflateSync z_inflateSync
122# define inflateSyncPoint z_inflateSyncPoint
123# define inflateUndermine z_inflateUndermine
124# define inflateValidate z_inflateValidate
125# define inflate_copyright z_inflate_copyright
126# define inflate_fast z_inflate_fast
127# define inflate_table z_inflate_table
128# ifndef Z_SOLO
129# define uncompress z_uncompress
130# define uncompress2 z_uncompress2
131# endif
132# define zError z_zError
133# ifndef Z_SOLO
134# define zcalloc z_zcalloc
135# define zcfree z_zcfree
136# endif
137# define zlibCompileFlags z_zlibCompileFlags
138# define zlibVersion z_zlibVersion
139
140/* all zlib typedefs in zlib.h and zconf.h */
141# define Byte z_Byte
142# define Bytef z_Bytef
143# define alloc_func z_alloc_func
144# define charf z_charf
145# define free_func z_free_func
146# ifndef Z_SOLO
147# define gzFile z_gzFile
148# endif
149# define gz_header z_gz_header
150# define gz_headerp z_gz_headerp
151# define in_func z_in_func
152# define intf z_intf
153# define out_func z_out_func
154# define uInt z_uInt
155# define uIntf z_uIntf
156# define uLong z_uLong
157# define uLongf z_uLongf
158# define voidp z_voidp
159# define voidpc z_voidpc
160# define voidpf z_voidpf
161
162/* all zlib structs in zlib.h and zconf.h */
163# define gz_header_s z_gz_header_s
164# define internal_state z_internal_state
165
166#endif
167
168#if defined(__MSDOS__) && !defined(MSDOS)
169# define MSDOS
170#endif
171#if (defined(OS_2) || defined(__OS2__)) && !defined(OS2)
172# define OS2
173#endif
174#if defined(_WINDOWS) && !defined(WINDOWS)
175# define WINDOWS
176#endif
177#if defined(_WIN32) || defined(_WIN32_WCE) || defined(__WIN32__)
178# ifndef WIN32
179# define WIN32
180# endif
181#endif
182#if (defined(MSDOS) || defined(OS2) || defined(WINDOWS)) && !defined(WIN32)
183# if !defined(__GNUC__) && !defined(__FLAT__) && !defined(__386__)
184# ifndef SYS16BIT
185# define SYS16BIT
186# endif
187# endif
188#endif
189
190/*
191 * Compile with -DMAXSEG_64K if the alloc function cannot allocate more
192 * than 64k bytes at a time (needed on systems with 16-bit int).
193 */
194#ifdef SYS16BIT
195# define MAXSEG_64K
196#endif
197#ifdef MSDOS
198# define UNALIGNED_OK
199#endif
200
201#ifdef __STDC_VERSION__
202# ifndef STDC
203# define STDC
204# endif
205# if __STDC_VERSION__ >= 199901L
206# ifndef STDC99
207# define STDC99
208# endif
209# endif
210#endif
211#if !defined(STDC) && (defined(__STDC__) || defined(__cplusplus))
212# define STDC
213#endif
214#if !defined(STDC) && (defined(__GNUC__) || defined(__BORLANDC__))
215# define STDC
216#endif
217#if !defined(STDC) && (defined(MSDOS) || defined(WINDOWS) || defined(WIN32))
218# define STDC
219#endif
220#if !defined(STDC) && (defined(OS2) || defined(__HOS_AIX__))
221# define STDC
222#endif
223
224#if defined(__OS400__) && !defined(STDC) /* iSeries (formerly AS/400). */
225# define STDC
226#endif
227
228#ifndef STDC
229# ifndef const /* cannot use !defined(STDC) && !defined(const) on Mac */
230# define const /* note: need a more gentle solution here */
231# endif
232#endif
233
234#if defined(ZLIB_CONST) && !defined(z_const)
235# define z_const const
236#else
237# define z_const
238#endif
239
240#ifdef Z_SOLO
241 typedef unsigned long z_size_t;
242#else
243# define z_longlong long long
244# if defined(NO_SIZE_T)
245 typedef unsigned NO_SIZE_T z_size_t;
246# elif defined(STDC)
247# include <stddef.h>
248 typedef size_t z_size_t;
249# else
250 typedef unsigned long z_size_t;
251# endif
252# undef z_longlong
253#endif
254
255/* Maximum value for memLevel in deflateInit2 */
256#ifndef MAX_MEM_LEVEL
257# ifdef MAXSEG_64K
258# define MAX_MEM_LEVEL 8
259# else
260# define MAX_MEM_LEVEL 9
261# endif
262#endif
263
264/* Maximum value for windowBits in deflateInit2 and inflateInit2.
265 * WARNING: reducing MAX_WBITS makes minigzip unable to extract .gz files
266 * created by gzip. (Files created by minigzip can still be extracted by
267 * gzip.)
268 */
269#ifndef MAX_WBITS
270# define MAX_WBITS 15 /* 32K LZ77 window */
271#endif
272
273/* The memory requirements for deflate are (in bytes):
274 (1 << (windowBits+2)) + (1 << (memLevel+9))
275 that is: 128K for windowBits=15 + 128K for memLevel = 8 (default values)
276 plus a few kilobytes for small objects. For example, if you want to reduce
277 the default memory requirements from 256K to 128K, compile with
278 make CFLAGS="-O -DMAX_WBITS=14 -DMAX_MEM_LEVEL=7"
279 Of course this will generally degrade compression (there's no free lunch).
280
281 The memory requirements for inflate are (in bytes) 1 << windowBits
282 that is, 32K for windowBits=15 (default value) plus about 7 kilobytes
283 for small objects.
284*/
285
286 /* Type declarations */
287
288#ifndef OF /* function prototypes */
289# ifdef STDC
290# define OF(args) args
291# else
292# define OF(args) ()
293# endif
294#endif
295
296#ifndef Z_ARG /* function prototypes for stdarg */
297# if defined(STDC) || defined(Z_HAVE_STDARG_H)
298# define Z_ARG(args) args
299# else
300# define Z_ARG(args) ()
301# endif
302#endif
303
304/* The following definitions for FAR are needed only for MSDOS mixed
305 * model programming (small or medium model with some far allocations).
306 * This was tested only with MSC; for other MSDOS compilers you may have
307 * to define NO_MEMCPY in zutil.h. If you don't need the mixed model,
308 * just define FAR to be empty.
309 */
310#ifdef SYS16BIT
311# if defined(M_I86SM) || defined(M_I86MM)
312 /* MSC small or medium model */
313# define SMALL_MEDIUM
314# ifdef _MSC_VER
315# define FAR _far
316# else
317# define FAR far
318# endif
319# endif
320# if (defined(__SMALL__) || defined(__MEDIUM__))
321 /* Turbo C small or medium model */
322# define SMALL_MEDIUM
323# ifdef __BORLANDC__
324# define FAR _far
325# else
326# define FAR far
327# endif
328# endif
329#endif
330
331#if defined(WINDOWS) || defined(WIN32)
332 /* If building or using zlib as a DLL, define ZLIB_DLL.
333 * This is not mandatory, but it offers a little performance increase.
334 */
335# ifdef ZLIB_DLL
336# if defined(WIN32) && (!defined(__BORLANDC__) || (__BORLANDC__ >= 0x500))
337# ifdef ZLIB_INTERNAL
338# define ZEXTERN extern __declspec(dllexport)
339# else
340# define ZEXTERN extern __declspec(dllimport)
341# endif
342# endif
343# endif /* ZLIB_DLL */
344 /* If building or using zlib with the WINAPI/WINAPIV calling convention,
345 * define ZLIB_WINAPI.
346 * Caution: the standard ZLIB1.DLL is NOT compiled using ZLIB_WINAPI.
347 */
348# ifdef ZLIB_WINAPI
349# ifdef FAR
350# undef FAR
351# endif
352# include <windows.h>
353 /* No need for _export, use ZLIB.DEF instead. */
354 /* For complete Windows compatibility, use WINAPI, not __stdcall. */
355# define ZEXPORT WINAPI
356# ifdef WIN32
357# define ZEXPORTVA WINAPIV
358# else
359# define ZEXPORTVA FAR CDECL
360# endif
361# endif
362#endif
363
364#if defined (__BEOS__)
365# ifdef ZLIB_DLL
366# ifdef ZLIB_INTERNAL
367# define ZEXPORT __declspec(dllexport)
368# define ZEXPORTVA __declspec(dllexport)
369# else
370# define ZEXPORT __declspec(dllimport)
371# define ZEXPORTVA __declspec(dllimport)
372# endif
373# endif
374#endif
375
376#ifndef ZEXTERN
377# define ZEXTERN extern
378#endif
379#ifndef ZEXPORT
380# define ZEXPORT
381#endif
382#ifndef ZEXPORTVA
383# define ZEXPORTVA
384#endif
385
386#ifndef FAR
387# define FAR
388#endif
389
390#if !defined(__MACTYPES__)
391typedef unsigned char Byte; /* 8 bits */
392#endif
393typedef unsigned int uInt; /* 16 bits or more */
394typedef unsigned long uLong; /* 32 bits or more */
395
396#ifdef SMALL_MEDIUM
397 /* Borland C/C++ and some old MSC versions ignore FAR inside typedef */
398# define Bytef Byte FAR
399#else
400 typedef Byte FAR Bytef;
401#endif
402typedef char FAR charf;
403typedef int FAR intf;
404typedef uInt FAR uIntf;
405typedef uLong FAR uLongf;
406
407#ifdef STDC
408 typedef void const *voidpc;
409 typedef void FAR *voidpf;
410 typedef void *voidp;
411#else
412 typedef Byte const *voidpc;
413 typedef Byte FAR *voidpf;
414 typedef Byte *voidp;
415#endif
416
417typedef unsigned long z_crc_t;
418
419#if defined(__APPLE__) /* avoid unistd.h on Win32 */
420#if 1 /* was set to #if 1 by ./configure */
421# define Z_HAVE_UNISTD_H
422#endif
423#endif /* defined(__APPLE__) */
424
425#if 1 /* was set to #if 1 by ./configure */
426# define Z_HAVE_STDARG_H
427#endif
428
429#ifdef STDC
430# ifndef Z_SOLO
431# include <sys/types.h> /* for off_t */
432# endif
433#endif
434
435#if defined(STDC) || defined(Z_HAVE_STDARG_H)
436# ifndef Z_SOLO
437# include <stdarg.h> /* for va_list */
438# endif
439#endif
440
441#ifdef _WIN32
442# ifndef Z_SOLO
443# include <stddef.h> /* for wchar_t */
444# endif
445#endif
446
447/* a little trick to accommodate both "#define _LARGEFILE64_SOURCE" and
448 * "#define _LARGEFILE64_SOURCE 1" as requesting 64-bit operations, (even
449 * though the former does not conform to the LFS document), but considering
450 * both "#undef _LARGEFILE64_SOURCE" and "#define _LARGEFILE64_SOURCE 0" as
451 * equivalently requesting no 64-bit operations
452 */
453#if defined(_LARGEFILE64_SOURCE) && -_LARGEFILE64_SOURCE - -1 == 1
454# undef _LARGEFILE64_SOURCE
455#endif
456
457#if defined(__WATCOMC__) && !defined(Z_HAVE_UNISTD_H)
458# define Z_HAVE_UNISTD_H
459#endif
460#ifndef Z_SOLO
461# if defined(Z_HAVE_UNISTD_H) || defined(_LARGEFILE64_SOURCE)
462# include <unistd.h> /* for SEEK_*, off_t, and _LFS64_LARGEFILE */
463# ifdef VMS
464# include <unixio.h> /* for off_t */
465# endif
466# if !defined(z_off_t) && !defined(__APPLE__)
467# define z_off_t off_t
468# endif
469# endif
470#endif
471
472#if defined(_LFS64_LARGEFILE) && _LFS64_LARGEFILE-0
473# define Z_LFS64
474#endif
475
476#if defined(_LARGEFILE64_SOURCE) && defined(Z_LFS64)
477# define Z_LARGE64
478#endif
479
480#if defined(_FILE_OFFSET_BITS) && _FILE_OFFSET_BITS-0 == 64 && defined(Z_LFS64)
481# define Z_WANT64
482#endif
483
484#if !defined(SEEK_SET) && !defined(Z_SOLO)
485# define SEEK_SET 0 /* Seek from beginning of file. */
486# define SEEK_CUR 1 /* Seek from current position. */
487# define SEEK_END 2 /* Set file pointer to EOF plus "offset" */
488#endif
489
490#ifndef z_off_t
491# define z_off_t long
492#endif
493
494#if !defined(_WIN32) && defined(Z_LARGE64)
495# define z_off64_t off64_t
496#elif defined(__APPLE__)
497# define z_off64_t off_t
498#else
499# if defined(_WIN32) && !defined(__GNUC__) && !defined(Z_SOLO)
500# define z_off64_t __int64
501# else
502# define z_off64_t z_off_t
503# endif
504#endif
505
506/* MVS linker does not support external names larger than 8 bytes */
507#if defined(__MVS__)
508 #pragma map(deflateInit_,"DEIN")
509 #pragma map(deflateInit2_,"DEIN2")
510 #pragma map(deflateEnd,"DEEND")
511 #pragma map(deflateBound,"DEBND")
512 #pragma map(inflateInit_,"ININ")
513 #pragma map(inflateInit2_,"ININ2")
514 #pragma map(inflateEnd,"INEND")
515 #pragma map(inflateSync,"INSY")
516 #pragma map(inflateSetDictionary,"INSEDI")
517 #pragma map(compressBound,"CMBND")
518 #pragma map(inflate_table,"INTABL")
519 #pragma map(inflate_fast,"INFA")
520 #pragma map(inflate_copyright,"INCOPY")
521#endif
522
523#endif /* ZCONF_H */
\ No newline at end of file
lib/libc/include/any-macos-any/zlib.h created+1946
...@@ -0,0 +1,1946 @@
1/* zlib.h -- interface of the 'zlib' general purpose compression library
2 version 1.2.11, January 15th, 2017
3
4 Copyright (C) 1995-2017 Jean-loup Gailly and Mark Adler
5
6 This software is provided 'as-is', without any express or implied
7 warranty. In no event will the authors be held liable for any damages
8 arising from the use of this software.
9
10 Permission is granted to anyone to use this software for any purpose,
11 including commercial applications, and to alter it and redistribute it
12 freely, subject to the following restrictions:
13
14 1. The origin of this software must not be misrepresented; you must not
15 claim that you wrote the original software. If you use this software
16 in a product, an acknowledgment in the product documentation would be
17 appreciated but is not required.
18 2. Altered source versions must be plainly marked as such, and must not be
19 misrepresented as being the original software.
20 3. This notice may not be removed or altered from any source distribution.
21
22 Jean-loup Gailly Mark Adler
23 jloup@gzip.org madler@alumni.caltech.edu
24
25
26 The data format used by the zlib library is described by RFCs (Request for
27 Comments) 1950 to 1952 in the files http://tools.ietf.org/html/rfc1950
28 (zlib format), rfc1951 (deflate format) and rfc1952 (gzip format).
29*/
30
31#ifndef ZLIB_H
32#define ZLIB_H
33
34#include "zconf.h"
35#ifdef __APPLE__
36#include <Availability.h>
37#else /* !__APPLE__ */
38#define __API_AVAILABLE(...) /* nothing */
39#endif /* !__APPLE__ */
40
41#ifdef __cplusplus
42extern "C" {
43#endif
44
45#define ZLIB_VERSION "1.2.11"
46#define ZLIB_VERNUM 0x12b0
47#define ZLIB_VER_MAJOR 1
48#define ZLIB_VER_MINOR 2
49#define ZLIB_VER_REVISION 11
50#define ZLIB_VER_SUBREVISION 0
51
52/*
53 The 'zlib' compression library provides in-memory compression and
54 decompression functions, including integrity checks of the uncompressed data.
55 This version of the library supports only one compression method (deflation)
56 but other algorithms will be added later and will have the same stream
57 interface.
58
59 Compression can be done in a single step if the buffers are large enough,
60 or can be done by repeated calls of the compression function. In the latter
61 case, the application must provide more input and/or consume the output
62 (providing more output space) before each call.
63
64 The compressed data format used by default by the in-memory functions is
65 the zlib format, which is a zlib wrapper documented in RFC 1950, wrapped
66 around a deflate stream, which is itself documented in RFC 1951.
67
68 The library also supports reading and writing files in gzip (.gz) format
69 with an interface similar to that of stdio using the functions that start
70 with "gz". The gzip format is different from the zlib format. gzip is a
71 gzip wrapper, documented in RFC 1952, wrapped around a deflate stream.
72
73 This library can optionally read and write gzip and raw deflate streams in
74 memory as well.
75
76 The zlib format was designed to be compact and fast for use in memory
77 and on communications channels. The gzip format was designed for single-
78 file compression on file systems, has a larger header than zlib to maintain
79 directory information, and uses a different, slower check method than zlib.
80
81 The library does not install any signal handler. The decoder checks
82 the consistency of the compressed data, so the library should never crash
83 even in the case of corrupted input.
84*/
85
86typedef voidpf (*alloc_func) OF((voidpf opaque, uInt items, uInt size));
87typedef void (*free_func) OF((voidpf opaque, voidpf address));
88
89struct internal_state;
90
91typedef struct z_stream_s {
92 z_const Bytef *next_in; /* next input byte */
93 uInt avail_in; /* number of bytes available at next_in */
94 uLong total_in; /* total number of input bytes read so far */
95
96 Bytef *next_out; /* next output byte will go here */
97 uInt avail_out; /* remaining free space at next_out */
98 uLong total_out; /* total number of bytes output so far */
99
100 z_const char *msg; /* last error message, NULL if no error */
101 struct internal_state FAR *state; /* not visible by applications */
102
103 alloc_func zalloc; /* used to allocate the internal state */
104 free_func zfree; /* used to free the internal state */
105 voidpf opaque; /* private data object passed to zalloc and zfree */
106
107 int data_type; /* best guess about the data type: binary or text
108 for deflate, or the decoding state for inflate */
109 uLong adler; /* Adler-32 or CRC-32 value of the uncompressed data */
110 uLong reserved; /* reserved for future use */
111} z_stream;
112
113typedef z_stream FAR *z_streamp;
114
115/*
116 gzip header information passed to and from zlib routines. See RFC 1952
117 for more details on the meanings of these fields.
118*/
119typedef struct gz_header_s {
120 int text; /* true if compressed data believed to be text */
121 uLong time; /* modification time */
122 int xflags; /* extra flags (not used when writing a gzip file) */
123 int os; /* operating system */
124 Bytef *extra; /* pointer to extra field or Z_NULL if none */
125 uInt extra_len; /* extra field length (valid if extra != Z_NULL) */
126 uInt extra_max; /* space at extra (only when reading header) */
127 Bytef *name; /* pointer to zero-terminated file name or Z_NULL */
128 uInt name_max; /* space at name (only when reading header) */
129 Bytef *comment; /* pointer to zero-terminated comment or Z_NULL */
130 uInt comm_max; /* space at comment (only when reading header) */
131 int hcrc; /* true if there was or will be a header crc */
132 int done; /* true when done reading gzip header (not used
133 when writing a gzip file) */
134} gz_header;
135
136typedef gz_header FAR *gz_headerp;
137
138/*
139 The application must update next_in and avail_in when avail_in has dropped
140 to zero. It must update next_out and avail_out when avail_out has dropped
141 to zero. The application must initialize zalloc, zfree and opaque before
142 calling the init function. All other fields are set by the compression
143 library and must not be updated by the application.
144
145 The opaque value provided by the application will be passed as the first
146 parameter for calls of zalloc and zfree. This can be useful for custom
147 memory management. The compression library attaches no meaning to the
148 opaque value.
149
150 zalloc must return Z_NULL if there is not enough memory for the object.
151 If zlib is used in a multi-threaded application, zalloc and zfree must be
152 thread safe. In that case, zlib is thread-safe. When zalloc and zfree are
153 Z_NULL on entry to the initialization function, they are set to internal
154 routines that use the standard library functions malloc() and free().
155
156 On 16-bit systems, the functions zalloc and zfree must be able to allocate
157 exactly 65536 bytes, but will not be required to allocate more than this if
158 the symbol MAXSEG_64K is defined (see zconf.h). WARNING: On MSDOS, pointers
159 returned by zalloc for objects of exactly 65536 bytes *must* have their
160 offset normalized to zero. The default allocation function provided by this
161 library ensures this (see zutil.c). To reduce memory requirements and avoid
162 any allocation of 64K objects, at the expense of compression ratio, compile
163 the library with -DMAX_WBITS=14 (see zconf.h).
164
165 The fields total_in and total_out can be used for statistics or progress
166 reports. After compression, total_in holds the total size of the
167 uncompressed data and may be saved for use by the decompressor (particularly
168 if the decompressor wants to decompress everything in a single step).
169*/
170
171 /* constants */
172
173#define Z_NO_FLUSH 0
174#define Z_PARTIAL_FLUSH 1
175#define Z_SYNC_FLUSH 2
176#define Z_FULL_FLUSH 3
177#define Z_FINISH 4
178#define Z_BLOCK 5
179#define Z_TREES 6
180/* Allowed flush values; see deflate() and inflate() below for details */
181
182#define Z_OK 0
183#define Z_STREAM_END 1
184#define Z_NEED_DICT 2
185#define Z_ERRNO (-1)
186#define Z_STREAM_ERROR (-2)
187#define Z_DATA_ERROR (-3)
188#define Z_MEM_ERROR (-4)
189#define Z_BUF_ERROR (-5)
190#define Z_VERSION_ERROR (-6)
191/* Return codes for the compression/decompression functions. Negative values
192 * are errors, positive values are used for special but normal events.
193 */
194
195#define Z_NO_COMPRESSION 0
196#define Z_BEST_SPEED 1
197#define Z_BEST_COMPRESSION 9
198#define Z_DEFAULT_COMPRESSION (-1)
199/* compression levels */
200
201#define Z_FILTERED 1
202#define Z_HUFFMAN_ONLY 2
203#define Z_RLE 3
204#define Z_FIXED 4
205#define Z_DEFAULT_STRATEGY 0
206/* compression strategy; see deflateInit2() below for details */
207
208#define Z_BINARY 0
209#define Z_TEXT 1
210#define Z_ASCII Z_TEXT /* for compatibility with 1.2.2 and earlier */
211#define Z_UNKNOWN 2
212/* Possible values of the data_type field for deflate() */
213
214#define Z_DEFLATED 8
215/* The deflate compression method (the only one supported in this version) */
216
217#define Z_NULL 0 /* for initializing zalloc, zfree, opaque */
218
219#define zlib_version zlibVersion()
220/* for compatibility with versions < 1.0.2 */
221
222
223 /* basic functions */
224
225ZEXTERN const char * ZEXPORT zlibVersion OF((void));
226/* The application can compare zlibVersion and ZLIB_VERSION for consistency.
227 If the first character differs, the library code actually used is not
228 compatible with the zlib.h header file used by the application. This check
229 is automatically made by deflateInit and inflateInit.
230 */
231
232/*
233ZEXTERN int ZEXPORT deflateInit OF((z_streamp strm, int level));
234
235 Initializes the internal stream state for compression. The fields
236 zalloc, zfree and opaque must be initialized before by the caller. If
237 zalloc and zfree are set to Z_NULL, deflateInit updates them to use default
238 allocation functions.
239
240 The compression level must be Z_DEFAULT_COMPRESSION, or between 0 and 9:
241 1 gives best speed, 9 gives best compression, 0 gives no compression at all
242 (the input data is simply copied a block at a time). Z_DEFAULT_COMPRESSION
243 requests a default compromise between speed and compression (currently
244 equivalent to level 6).
245
246 deflateInit returns Z_OK if success, Z_MEM_ERROR if there was not enough
247 memory, Z_STREAM_ERROR if level is not a valid compression level, or
248 Z_VERSION_ERROR if the zlib library version (zlib_version) is incompatible
249 with the version assumed by the caller (ZLIB_VERSION). msg is set to null
250 if there is no error message. deflateInit does not perform any compression:
251 this will be done by deflate().
252*/
253
254
255ZEXTERN int ZEXPORT deflate OF((z_streamp strm, int flush));
256/*
257 deflate compresses as much data as possible, and stops when the input
258 buffer becomes empty or the output buffer becomes full. It may introduce
259 some output latency (reading input without producing any output) except when
260 forced to flush.
261
262 The detailed semantics are as follows. deflate performs one or both of the
263 following actions:
264
265 - Compress more input starting at next_in and update next_in and avail_in
266 accordingly. If not all input can be processed (because there is not
267 enough room in the output buffer), next_in and avail_in are updated and
268 processing will resume at this point for the next call of deflate().
269
270 - Generate more output starting at next_out and update next_out and avail_out
271 accordingly. This action is forced if the parameter flush is non zero.
272 Forcing flush frequently degrades the compression ratio, so this parameter
273 should be set only when necessary. Some output may be provided even if
274 flush is zero.
275
276 Before the call of deflate(), the application should ensure that at least
277 one of the actions is possible, by providing more input and/or consuming more
278 output, and updating avail_in or avail_out accordingly; avail_out should
279 never be zero before the call. The application can consume the compressed
280 output when it wants, for example when the output buffer is full (avail_out
281 == 0), or after each call of deflate(). If deflate returns Z_OK and with
282 zero avail_out, it must be called again after making room in the output
283 buffer because there might be more output pending. See deflatePending(),
284 which can be used if desired to determine whether or not there is more ouput
285 in that case.
286
287 Normally the parameter flush is set to Z_NO_FLUSH, which allows deflate to
288 decide how much data to accumulate before producing output, in order to
289 maximize compression.
290
291 If the parameter flush is set to Z_SYNC_FLUSH, all pending output is
292 flushed to the output buffer and the output is aligned on a byte boundary, so
293 that the decompressor can get all input data available so far. (In
294 particular avail_in is zero after the call if enough output space has been
295 provided before the call.) Flushing may degrade compression for some
296 compression algorithms and so it should be used only when necessary. This
297 completes the current deflate block and follows it with an empty stored block
298 that is three bits plus filler bits to the next byte, followed by four bytes
299 (00 00 ff ff).
300
301 If flush is set to Z_PARTIAL_FLUSH, all pending output is flushed to the
302 output buffer, but the output is not aligned to a byte boundary. All of the
303 input data so far will be available to the decompressor, as for Z_SYNC_FLUSH.
304 This completes the current deflate block and follows it with an empty fixed
305 codes block that is 10 bits long. This assures that enough bytes are output
306 in order for the decompressor to finish the block before the empty fixed
307 codes block.
308
309 If flush is set to Z_BLOCK, a deflate block is completed and emitted, as
310 for Z_SYNC_FLUSH, but the output is not aligned on a byte boundary, and up to
311 seven bits of the current block are held to be written as the next byte after
312 the next deflate block is completed. In this case, the decompressor may not
313 be provided enough bits at this point in order to complete decompression of
314 the data provided so far to the compressor. It may need to wait for the next
315 block to be emitted. This is for advanced applications that need to control
316 the emission of deflate blocks.
317
318 If flush is set to Z_FULL_FLUSH, all output is flushed as with
319 Z_SYNC_FLUSH, and the compression state is reset so that decompression can
320 restart from this point if previous compressed data has been damaged or if
321 random access is desired. Using Z_FULL_FLUSH too often can seriously degrade
322 compression.
323
324 If deflate returns with avail_out == 0, this function must be called again
325 with the same value of the flush parameter and more output space (updated
326 avail_out), until the flush is complete (deflate returns with non-zero
327 avail_out). In the case of a Z_FULL_FLUSH or Z_SYNC_FLUSH, make sure that
328 avail_out is greater than six to avoid repeated flush markers due to
329 avail_out == 0 on return.
330
331 If the parameter flush is set to Z_FINISH, pending input is processed,
332 pending output is flushed and deflate returns with Z_STREAM_END if there was
333 enough output space. If deflate returns with Z_OK or Z_BUF_ERROR, this
334 function must be called again with Z_FINISH and more output space (updated
335 avail_out) but no more input data, until it returns with Z_STREAM_END or an
336 error. After deflate has returned Z_STREAM_END, the only possible operations
337 on the stream are deflateReset or deflateEnd.
338
339 Z_FINISH can be used in the first deflate call after deflateInit if all the
340 compression is to be done in a single step. In order to complete in one
341 call, avail_out must be at least the value returned by deflateBound (see
342 below). Then deflate is guaranteed to return Z_STREAM_END. If not enough
343 output space is provided, deflate will not return Z_STREAM_END, and it must
344 be called again as described above.
345
346 deflate() sets strm->adler to the Adler-32 checksum of all input read
347 so far (that is, total_in bytes). If a gzip stream is being generated, then
348 strm->adler will be the CRC-32 checksum of the input read so far. (See
349 deflateInit2 below.)
350
351 deflate() may update strm->data_type if it can make a good guess about
352 the input data type (Z_BINARY or Z_TEXT). If in doubt, the data is
353 considered binary. This field is only for information purposes and does not
354 affect the compression algorithm in any manner.
355
356 deflate() returns Z_OK if some progress has been made (more input
357 processed or more output produced), Z_STREAM_END if all input has been
358 consumed and all output has been produced (only when flush is set to
359 Z_FINISH), Z_STREAM_ERROR if the stream state was inconsistent (for example
360 if next_in or next_out was Z_NULL or the state was inadvertently written over
361 by the application), or Z_BUF_ERROR if no progress is possible (for example
362 avail_in or avail_out was zero). Note that Z_BUF_ERROR is not fatal, and
363 deflate() can be called again with more input and more output space to
364 continue compressing.
365*/
366
367
368ZEXTERN int ZEXPORT deflateEnd OF((z_streamp strm));
369/*
370 All dynamically allocated data structures for this stream are freed.
371 This function discards any unprocessed input and does not flush any pending
372 output.
373
374 deflateEnd returns Z_OK if success, Z_STREAM_ERROR if the
375 stream state was inconsistent, Z_DATA_ERROR if the stream was freed
376 prematurely (some input or output was discarded). In the error case, msg
377 may be set but then points to a static string (which must not be
378 deallocated).
379*/
380
381
382/*
383ZEXTERN int ZEXPORT inflateInit OF((z_streamp strm));
384
385 Initializes the internal stream state for decompression. The fields
386 next_in, avail_in, zalloc, zfree and opaque must be initialized before by
387 the caller. In the current version of inflate, the provided input is not
388 read or consumed. The allocation of a sliding window will be deferred to
389 the first call of inflate (if the decompression does not complete on the
390 first call). If zalloc and zfree are set to Z_NULL, inflateInit updates
391 them to use default allocation functions.
392
393 inflateInit returns Z_OK if success, Z_MEM_ERROR if there was not enough
394 memory, Z_VERSION_ERROR if the zlib library version is incompatible with the
395 version assumed by the caller, or Z_STREAM_ERROR if the parameters are
396 invalid, such as a null pointer to the structure. msg is set to null if
397 there is no error message. inflateInit does not perform any decompression.
398 Actual decompression will be done by inflate(). So next_in, and avail_in,
399 next_out, and avail_out are unused and unchanged. The current
400 implementation of inflateInit() does not process any header information --
401 that is deferred until inflate() is called.
402*/
403
404
405ZEXTERN int ZEXPORT inflate OF((z_streamp strm, int flush));
406/*
407 inflate decompresses as much data as possible, and stops when the input
408 buffer becomes empty or the output buffer becomes full. It may introduce
409 some output latency (reading input without producing any output) except when
410 forced to flush.
411
412 The detailed semantics are as follows. inflate performs one or both of the
413 following actions:
414
415 - Decompress more input starting at next_in and update next_in and avail_in
416 accordingly. If not all input can be processed (because there is not
417 enough room in the output buffer), then next_in and avail_in are updated
418 accordingly, and processing will resume at this point for the next call of
419 inflate().
420
421 - Generate more output starting at next_out and update next_out and avail_out
422 accordingly. inflate() provides as much output as possible, until there is
423 no more input data or no more space in the output buffer (see below about
424 the flush parameter).
425
426 Before the call of inflate(), the application should ensure that at least
427 one of the actions is possible, by providing more input and/or consuming more
428 output, and updating the next_* and avail_* values accordingly. If the
429 caller of inflate() does not provide both available input and available
430 output space, it is possible that there will be no progress made. The
431 application can consume the uncompressed output when it wants, for example
432 when the output buffer is full (avail_out == 0), or after each call of
433 inflate(). If inflate returns Z_OK and with zero avail_out, it must be
434 called again after making room in the output buffer because there might be
435 more output pending.
436
437 The flush parameter of inflate() can be Z_NO_FLUSH, Z_SYNC_FLUSH, Z_FINISH,
438 Z_BLOCK, or Z_TREES. Z_SYNC_FLUSH requests that inflate() flush as much
439 output as possible to the output buffer. Z_BLOCK requests that inflate()
440 stop if and when it gets to the next deflate block boundary. When decoding
441 the zlib or gzip format, this will cause inflate() to return immediately
442 after the header and before the first block. When doing a raw inflate,
443 inflate() will go ahead and process the first block, and will return when it
444 gets to the end of that block, or when it runs out of data.
445
446 The Z_BLOCK option assists in appending to or combining deflate streams.
447 To assist in this, on return inflate() always sets strm->data_type to the
448 number of unused bits in the last byte taken from strm->next_in, plus 64 if
449 inflate() is currently decoding the last block in the deflate stream, plus
450 128 if inflate() returned immediately after decoding an end-of-block code or
451 decoding the complete header up to just before the first byte of the deflate
452 stream. The end-of-block will not be indicated until all of the uncompressed
453 data from that block has been written to strm->next_out. The number of
454 unused bits may in general be greater than seven, except when bit 7 of
455 data_type is set, in which case the number of unused bits will be less than
456 eight. data_type is set as noted here every time inflate() returns for all
457 flush options, and so can be used to determine the amount of currently
458 consumed input in bits.
459
460 The Z_TREES option behaves as Z_BLOCK does, but it also returns when the
461 end of each deflate block header is reached, before any actual data in that
462 block is decoded. This allows the caller to determine the length of the
463 deflate block header for later use in random access within a deflate block.
464 256 is added to the value of strm->data_type when inflate() returns
465 immediately after reaching the end of the deflate block header.
466
467 inflate() should normally be called until it returns Z_STREAM_END or an
468 error. However if all decompression is to be performed in a single step (a
469 single call of inflate), the parameter flush should be set to Z_FINISH. In
470 this case all pending input is processed and all pending output is flushed;
471 avail_out must be large enough to hold all of the uncompressed data for the
472 operation to complete. (The size of the uncompressed data may have been
473 saved by the compressor for this purpose.) The use of Z_FINISH is not
474 required to perform an inflation in one step. However it may be used to
475 inform inflate that a faster approach can be used for the single inflate()
476 call. Z_FINISH also informs inflate to not maintain a sliding window if the
477 stream completes, which reduces inflate's memory footprint. If the stream
478 does not complete, either because not all of the stream is provided or not
479 enough output space is provided, then a sliding window will be allocated and
480 inflate() can be called again to continue the operation as if Z_NO_FLUSH had
481 been used.
482
483 In this implementation, inflate() always flushes as much output as
484 possible to the output buffer, and always uses the faster approach on the
485 first call. So the effects of the flush parameter in this implementation are
486 on the return value of inflate() as noted below, when inflate() returns early
487 when Z_BLOCK or Z_TREES is used, and when inflate() avoids the allocation of
488 memory for a sliding window when Z_FINISH is used.
489
490 If a preset dictionary is needed after this call (see inflateSetDictionary
491 below), inflate sets strm->adler to the Adler-32 checksum of the dictionary
492 chosen by the compressor and returns Z_NEED_DICT; otherwise it sets
493 strm->adler to the Adler-32 checksum of all output produced so far (that is,
494 total_out bytes) and returns Z_OK, Z_STREAM_END or an error code as described
495 below. At the end of the stream, inflate() checks that its computed Adler-32
496 checksum is equal to that saved by the compressor and returns Z_STREAM_END
497 only if the checksum is correct.
498
499 inflate() can decompress and check either zlib-wrapped or gzip-wrapped
500 deflate data. The header type is detected automatically, if requested when
501 initializing with inflateInit2(). Any information contained in the gzip
502 header is not retained unless inflateGetHeader() is used. When processing
503 gzip-wrapped deflate data, strm->adler32 is set to the CRC-32 of the output
504 produced so far. The CRC-32 is checked against the gzip trailer, as is the
505 uncompressed length, modulo 2^32.
506
507 inflate() returns Z_OK if some progress has been made (more input processed
508 or more output produced), Z_STREAM_END if the end of the compressed data has
509 been reached and all uncompressed output has been produced, Z_NEED_DICT if a
510 preset dictionary is needed at this point, Z_DATA_ERROR if the input data was
511 corrupted (input stream not conforming to the zlib format or incorrect check
512 value, in which case strm->msg points to a string with a more specific
513 error), Z_STREAM_ERROR if the stream structure was inconsistent (for example
514 next_in or next_out was Z_NULL, or the state was inadvertently written over
515 by the application), Z_MEM_ERROR if there was not enough memory, Z_BUF_ERROR
516 if no progress was possible or if there was not enough room in the output
517 buffer when Z_FINISH is used. Note that Z_BUF_ERROR is not fatal, and
518 inflate() can be called again with more input and more output space to
519 continue decompressing. If Z_DATA_ERROR is returned, the application may
520 then call inflateSync() to look for a good compression block if a partial
521 recovery of the data is to be attempted.
522*/
523
524
525ZEXTERN int ZEXPORT inflateEnd OF((z_streamp strm));
526/*
527 All dynamically allocated data structures for this stream are freed.
528 This function discards any unprocessed input and does not flush any pending
529 output.
530
531 inflateEnd returns Z_OK if success, or Z_STREAM_ERROR if the stream state
532 was inconsistent.
533*/
534
535
536 /* Advanced functions */
537
538/*
539 The following functions are needed only in some special applications.
540*/
541
542/*
543ZEXTERN int ZEXPORT deflateInit2 OF((z_streamp strm,
544 int level,
545 int method,
546 int windowBits,
547 int memLevel,
548 int strategy));
549
550 This is another version of deflateInit with more compression options. The
551 fields next_in, zalloc, zfree and opaque must be initialized before by the
552 caller.
553
554 The method parameter is the compression method. It must be Z_DEFLATED in
555 this version of the library.
556
557 The windowBits parameter is the base two logarithm of the window size
558 (the size of the history buffer). It should be in the range 8..15 for this
559 version of the library. Larger values of this parameter result in better
560 compression at the expense of memory usage. The default value is 15 if
561 deflateInit is used instead.
562
563 For the current implementation of deflate(), a windowBits value of 8 (a
564 window size of 256 bytes) is not supported. As a result, a request for 8
565 will result in 9 (a 512-byte window). In that case, providing 8 to
566 inflateInit2() will result in an error when the zlib header with 9 is
567 checked against the initialization of inflate(). The remedy is to not use 8
568 with deflateInit2() with this initialization, or at least in that case use 9
569 with inflateInit2().
570
571 windowBits can also be -8..-15 for raw deflate. In this case, -windowBits
572 determines the window size. deflate() will then generate raw deflate data
573 with no zlib header or trailer, and will not compute a check value.
574
575 windowBits can also be greater than 15 for optional gzip encoding. Add
576 16 to windowBits to write a simple gzip header and trailer around the
577 compressed data instead of a zlib wrapper. The gzip header will have no
578 file name, no extra data, no comment, no modification time (set to zero), no
579 header crc, and the operating system will be set to the appropriate value,
580 if the operating system was determined at compile time. If a gzip stream is
581 being written, strm->adler is a CRC-32 instead of an Adler-32.
582
583 For raw deflate or gzip encoding, a request for a 256-byte window is
584 rejected as invalid, since only the zlib header provides a means of
585 transmitting the window size to the decompressor.
586
587 The memLevel parameter specifies how much memory should be allocated
588 for the internal compression state. memLevel=1 uses minimum memory but is
589 slow and reduces compression ratio; memLevel=9 uses maximum memory for
590 optimal speed. The default value is 8. See zconf.h for total memory usage
591 as a function of windowBits and memLevel.
592
593 The strategy parameter is used to tune the compression algorithm. Use the
594 value Z_DEFAULT_STRATEGY for normal data, Z_FILTERED for data produced by a
595 filter (or predictor), Z_HUFFMAN_ONLY to force Huffman encoding only (no
596 string match), or Z_RLE to limit match distances to one (run-length
597 encoding). Filtered data consists mostly of small values with a somewhat
598 random distribution. In this case, the compression algorithm is tuned to
599 compress them better. The effect of Z_FILTERED is to force more Huffman
600 coding and less string matching; it is somewhat intermediate between
601 Z_DEFAULT_STRATEGY and Z_HUFFMAN_ONLY. Z_RLE is designed to be almost as
602 fast as Z_HUFFMAN_ONLY, but give better compression for PNG image data. The
603 strategy parameter only affects the compression ratio but not the
604 correctness of the compressed output even if it is not set appropriately.
605 Z_FIXED prevents the use of dynamic Huffman codes, allowing for a simpler
606 decoder for special applications.
607
608 deflateInit2 returns Z_OK if success, Z_MEM_ERROR if there was not enough
609 memory, Z_STREAM_ERROR if any parameter is invalid (such as an invalid
610 method), or Z_VERSION_ERROR if the zlib library version (zlib_version) is
611 incompatible with the version assumed by the caller (ZLIB_VERSION). msg is
612 set to null if there is no error message. deflateInit2 does not perform any
613 compression: this will be done by deflate().
614*/
615
616ZEXTERN int ZEXPORT deflateSetDictionary OF((z_streamp strm,
617 const Bytef *dictionary,
618 uInt dictLength));
619/*
620 Initializes the compression dictionary from the given byte sequence
621 without producing any compressed output. When using the zlib format, this
622 function must be called immediately after deflateInit, deflateInit2 or
623 deflateReset, and before any call of deflate. When doing raw deflate, this
624 function must be called either before any call of deflate, or immediately
625 after the completion of a deflate block, i.e. after all input has been
626 consumed and all output has been delivered when using any of the flush
627 options Z_BLOCK, Z_PARTIAL_FLUSH, Z_SYNC_FLUSH, or Z_FULL_FLUSH. The
628 compressor and decompressor must use exactly the same dictionary (see
629 inflateSetDictionary).
630
631 The dictionary should consist of strings (byte sequences) that are likely
632 to be encountered later in the data to be compressed, with the most commonly
633 used strings preferably put towards the end of the dictionary. Using a
634 dictionary is most useful when the data to be compressed is short and can be
635 predicted with good accuracy; the data can then be compressed better than
636 with the default empty dictionary.
637
638 Depending on the size of the compression data structures selected by
639 deflateInit or deflateInit2, a part of the dictionary may in effect be
640 discarded, for example if the dictionary is larger than the window size
641 provided in deflateInit or deflateInit2. Thus the strings most likely to be
642 useful should be put at the end of the dictionary, not at the front. In
643 addition, the current implementation of deflate will use at most the window
644 size minus 262 bytes of the provided dictionary.
645
646 Upon return of this function, strm->adler is set to the Adler-32 value
647 of the dictionary; the decompressor may later use this value to determine
648 which dictionary has been used by the compressor. (The Adler-32 value
649 applies to the whole dictionary even if only a subset of the dictionary is
650 actually used by the compressor.) If a raw deflate was requested, then the
651 Adler-32 value is not computed and strm->adler is not set.
652
653 deflateSetDictionary returns Z_OK if success, or Z_STREAM_ERROR if a
654 parameter is invalid (e.g. dictionary being Z_NULL) or the stream state is
655 inconsistent (for example if deflate has already been called for this stream
656 or if not at a block boundary for raw deflate). deflateSetDictionary does
657 not perform any compression: this will be done by deflate().
658*/
659
660ZEXTERN int ZEXPORT deflateGetDictionary OF((z_streamp strm,
661 Bytef *dictionary,
662 uInt *dictLength))
663 __API_AVAILABLE(macos(10.13),ios(11.0));
664/*
665 Returns the sliding dictionary being maintained by deflate. dictLength is
666 set to the number of bytes in the dictionary, and that many bytes are copied
667 to dictionary. dictionary must have enough space, where 32768 bytes is
668 always enough. If deflateGetDictionary() is called with dictionary equal to
669 Z_NULL, then only the dictionary length is returned, and nothing is copied.
670 Similary, if dictLength is Z_NULL, then it is not set.
671
672 deflateGetDictionary() may return a length less than the window size, even
673 when more than the window size in input has been provided. It may return up
674 to 258 bytes less in that case, due to how zlib's implementation of deflate
675 manages the sliding window and lookahead for matches, where matches can be
676 up to 258 bytes long. If the application needs the last window-size bytes of
677 input, then that would need to be saved by the application outside of zlib.
678
679 deflateGetDictionary returns Z_OK on success, or Z_STREAM_ERROR if the
680 stream state is inconsistent.
681*/
682
683ZEXTERN int ZEXPORT deflateCopy OF((z_streamp dest,
684 z_streamp source));
685/*
686 Sets the destination stream as a complete copy of the source stream.
687
688 This function can be useful when several compression strategies will be
689 tried, for example when there are several ways of pre-processing the input
690 data with a filter. The streams that will be discarded should then be freed
691 by calling deflateEnd. Note that deflateCopy duplicates the internal
692 compression state which can be quite large, so this strategy is slow and can
693 consume lots of memory.
694
695 deflateCopy returns Z_OK if success, Z_MEM_ERROR if there was not
696 enough memory, Z_STREAM_ERROR if the source stream state was inconsistent
697 (such as zalloc being Z_NULL). msg is left unchanged in both source and
698 destination.
699*/
700
701ZEXTERN int ZEXPORT deflateReset OF((z_streamp strm));
702/*
703 This function is equivalent to deflateEnd followed by deflateInit, but
704 does not free and reallocate the internal compression state. The stream
705 will leave the compression level and any other attributes that may have been
706 set unchanged.
707
708 deflateReset returns Z_OK if success, or Z_STREAM_ERROR if the source
709 stream state was inconsistent (such as zalloc or state being Z_NULL).
710*/
711
712ZEXTERN int ZEXPORT deflateParams OF((z_streamp strm,
713 int level,
714 int strategy));
715/*
716 Dynamically update the compression level and compression strategy. The
717 interpretation of level and strategy is as in deflateInit2(). This can be
718 used to switch between compression and straight copy of the input data, or
719 to switch to a different kind of input data requiring a different strategy.
720 If the compression approach (which is a function of the level) or the
721 strategy is changed, and if any input has been consumed in a previous
722 deflate() call, then the input available so far is compressed with the old
723 level and strategy using deflate(strm, Z_BLOCK). There are three approaches
724 for the compression levels 0, 1..3, and 4..9 respectively. The new level
725 and strategy will take effect at the next call of deflate().
726
727 If a deflate(strm, Z_BLOCK) is performed by deflateParams(), and it does
728 not have enough output space to complete, then the parameter change will not
729 take effect. In this case, deflateParams() can be called again with the
730 same parameters and more output space to try again.
731
732 In order to assure a change in the parameters on the first try, the
733 deflate stream should be flushed using deflate() with Z_BLOCK or other flush
734 request until strm.avail_out is not zero, before calling deflateParams().
735 Then no more input data should be provided before the deflateParams() call.
736 If this is done, the old level and strategy will be applied to the data
737 compressed before deflateParams(), and the new level and strategy will be
738 applied to the the data compressed after deflateParams().
739
740 deflateParams returns Z_OK on success, Z_STREAM_ERROR if the source stream
741 state was inconsistent or if a parameter was invalid, or Z_BUF_ERROR if
742 there was not enough output space to complete the compression of the
743 available input data before a change in the strategy or approach. Note that
744 in the case of a Z_BUF_ERROR, the parameters are not changed. A return
745 value of Z_BUF_ERROR is not fatal, in which case deflateParams() can be
746 retried with more output space.
747*/
748
749ZEXTERN int ZEXPORT deflateTune OF((z_streamp strm,
750 int good_length,
751 int max_lazy,
752 int nice_length,
753 int max_chain));
754/*
755 Fine tune deflate's internal compression parameters. This should only be
756 used by someone who understands the algorithm used by zlib's deflate for
757 searching for the best matching string, and even then only by the most
758 fanatic optimizer trying to squeeze out the last compressed bit for their
759 specific input data. Read the deflate.c source code for the meaning of the
760 max_lazy, good_length, nice_length, and max_chain parameters.
761
762 deflateTune() can be called after deflateInit() or deflateInit2(), and
763 returns Z_OK on success, or Z_STREAM_ERROR for an invalid deflate stream.
764 */
765
766ZEXTERN uLong ZEXPORT deflateBound OF((z_streamp strm,
767 uLong sourceLen));
768/*
769 deflateBound() returns an upper bound on the compressed size after
770 deflation of sourceLen bytes. It must be called after deflateInit() or
771 deflateInit2(), and after deflateSetHeader(), if used. This would be used
772 to allocate an output buffer for deflation in a single pass, and so would be
773 called before deflate(). If that first deflate() call is provided the
774 sourceLen input bytes, an output buffer allocated to the size returned by
775 deflateBound(), and the flush value Z_FINISH, then deflate() is guaranteed
776 to return Z_STREAM_END. Note that it is possible for the compressed size to
777 be larger than the value returned by deflateBound() if flush options other
778 than Z_FINISH or Z_NO_FLUSH are used.
779*/
780
781ZEXTERN int ZEXPORT deflatePending OF((z_streamp strm,
782 unsigned *pending,
783 int *bits))
784 __API_AVAILABLE(macos(10.10),ios(8.0));
785/*
786 deflatePending() returns the number of bytes and bits of output that have
787 been generated, but not yet provided in the available output. The bytes not
788 provided would be due to the available output space having being consumed.
789 The number of bits of output not provided are between 0 and 7, where they
790 await more bits to join them in order to fill out a full byte. If pending
791 or bits are Z_NULL, then those values are not set.
792
793 deflatePending returns Z_OK if success, or Z_STREAM_ERROR if the source
794 stream state was inconsistent.
795 */
796
797ZEXTERN int ZEXPORT deflatePrime OF((z_streamp strm,
798 int bits,
799 int value));
800/*
801 deflatePrime() inserts bits in the deflate output stream. The intent
802 is that this function is used to start off the deflate output with the bits
803 leftover from a previous deflate stream when appending to it. As such, this
804 function can only be used for raw deflate, and must be used before the first
805 deflate() call after a deflateInit2() or deflateReset(). bits must be less
806 than or equal to 16, and that many of the least significant bits of value
807 will be inserted in the output.
808
809 deflatePrime returns Z_OK if success, Z_BUF_ERROR if there was not enough
810 room in the internal buffer to insert the bits, or Z_STREAM_ERROR if the
811 source stream state was inconsistent.
812*/
813
814ZEXTERN int ZEXPORT deflateSetHeader OF((z_streamp strm,
815 gz_headerp head));
816/*
817 deflateSetHeader() provides gzip header information for when a gzip
818 stream is requested by deflateInit2(). deflateSetHeader() may be called
819 after deflateInit2() or deflateReset() and before the first call of
820 deflate(). The text, time, os, extra field, name, and comment information
821 in the provided gz_header structure are written to the gzip header (xflag is
822 ignored -- the extra flags are set according to the compression level). The
823 caller must assure that, if not Z_NULL, name and comment are terminated with
824 a zero byte, and that if extra is not Z_NULL, that extra_len bytes are
825 available there. If hcrc is true, a gzip header crc is included. Note that
826 the current versions of the command-line version of gzip (up through version
827 1.3.x) do not support header crc's, and will report that it is a "multi-part
828 gzip file" and give up.
829
830 If deflateSetHeader is not used, the default gzip header has text false,
831 the time set to zero, and os set to 255, with no extra, name, or comment
832 fields. The gzip header is returned to the default state by deflateReset().
833
834 deflateSetHeader returns Z_OK if success, or Z_STREAM_ERROR if the source
835 stream state was inconsistent.
836*/
837
838/*
839ZEXTERN int ZEXPORT inflateInit2 OF((z_streamp strm,
840 int windowBits));
841
842 This is another version of inflateInit with an extra parameter. The
843 fields next_in, avail_in, zalloc, zfree and opaque must be initialized
844 before by the caller.
845
846 The windowBits parameter is the base two logarithm of the maximum window
847 size (the size of the history buffer). It should be in the range 8..15 for
848 this version of the library. The default value is 15 if inflateInit is used
849 instead. windowBits must be greater than or equal to the windowBits value
850 provided to deflateInit2() while compressing, or it must be equal to 15 if
851 deflateInit2() was not used. If a compressed stream with a larger window
852 size is given as input, inflate() will return with the error code
853 Z_DATA_ERROR instead of trying to allocate a larger window.
854
855 windowBits can also be zero to request that inflate use the window size in
856 the zlib header of the compressed stream.
857
858 windowBits can also be -8..-15 for raw inflate. In this case, -windowBits
859 determines the window size. inflate() will then process raw deflate data,
860 not looking for a zlib or gzip header, not generating a check value, and not
861 looking for any check values for comparison at the end of the stream. This
862 is for use with other formats that use the deflate compressed data format
863 such as zip. Those formats provide their own check values. If a custom
864 format is developed using the raw deflate format for compressed data, it is
865 recommended that a check value such as an Adler-32 or a CRC-32 be applied to
866 the uncompressed data as is done in the zlib, gzip, and zip formats. For
867 most applications, the zlib format should be used as is. Note that comments
868 above on the use in deflateInit2() applies to the magnitude of windowBits.
869
870 windowBits can also be greater than 15 for optional gzip decoding. Add
871 32 to windowBits to enable zlib and gzip decoding with automatic header
872 detection, or add 16 to decode only the gzip format (the zlib format will
873 return a Z_DATA_ERROR). If a gzip stream is being decoded, strm->adler is a
874 CRC-32 instead of an Adler-32. Unlike the gunzip utility and gzread() (see
875 below), inflate() will not automatically decode concatenated gzip streams.
876 inflate() will return Z_STREAM_END at the end of the gzip stream. The state
877 would need to be reset to continue decoding a subsequent gzip stream.
878
879 inflateInit2 returns Z_OK if success, Z_MEM_ERROR if there was not enough
880 memory, Z_VERSION_ERROR if the zlib library version is incompatible with the
881 version assumed by the caller, or Z_STREAM_ERROR if the parameters are
882 invalid, such as a null pointer to the structure. msg is set to null if
883 there is no error message. inflateInit2 does not perform any decompression
884 apart from possibly reading the zlib header if present: actual decompression
885 will be done by inflate(). (So next_in and avail_in may be modified, but
886 next_out and avail_out are unused and unchanged.) The current implementation
887 of inflateInit2() does not process any header information -- that is
888 deferred until inflate() is called.
889*/
890
891ZEXTERN int ZEXPORT inflateSetDictionary OF((z_streamp strm,
892 const Bytef *dictionary,
893 uInt dictLength));
894/*
895 Initializes the decompression dictionary from the given uncompressed byte
896 sequence. This function must be called immediately after a call of inflate,
897 if that call returned Z_NEED_DICT. The dictionary chosen by the compressor
898 can be determined from the Adler-32 value returned by that call of inflate.
899 The compressor and decompressor must use exactly the same dictionary (see
900 deflateSetDictionary). For raw inflate, this function can be called at any
901 time to set the dictionary. If the provided dictionary is smaller than the
902 window and there is already data in the window, then the provided dictionary
903 will amend what's there. The application must insure that the dictionary
904 that was used for compression is provided.
905
906 inflateSetDictionary returns Z_OK if success, Z_STREAM_ERROR if a
907 parameter is invalid (e.g. dictionary being Z_NULL) or the stream state is
908 inconsistent, Z_DATA_ERROR if the given dictionary doesn't match the
909 expected one (incorrect Adler-32 value). inflateSetDictionary does not
910 perform any decompression: this will be done by subsequent calls of
911 inflate().
912*/
913
914ZEXTERN int ZEXPORT inflateGetDictionary OF((z_streamp strm,
915 Bytef *dictionary,
916 uInt *dictLength))
917 __API_AVAILABLE(macos(10.10),ios(8.0));
918/*
919 Returns the sliding dictionary being maintained by inflate. dictLength is
920 set to the number of bytes in the dictionary, and that many bytes are copied
921 to dictionary. dictionary must have enough space, where 32768 bytes is
922 always enough. If inflateGetDictionary() is called with dictionary equal to
923 Z_NULL, then only the dictionary length is returned, and nothing is copied.
924 Similary, if dictLength is Z_NULL, then it is not set.
925
926 inflateGetDictionary returns Z_OK on success, or Z_STREAM_ERROR if the
927 stream state is inconsistent.
928*/
929
930ZEXTERN int ZEXPORT inflateSync OF((z_streamp strm));
931/*
932 Skips invalid compressed data until a possible full flush point (see above
933 for the description of deflate with Z_FULL_FLUSH) can be found, or until all
934 available input is skipped. No output is provided.
935
936 inflateSync searches for a 00 00 FF FF pattern in the compressed data.
937 All full flush points have this pattern, but not all occurrences of this
938 pattern are full flush points.
939
940 inflateSync returns Z_OK if a possible full flush point has been found,
941 Z_BUF_ERROR if no more input was provided, Z_DATA_ERROR if no flush point
942 has been found, or Z_STREAM_ERROR if the stream structure was inconsistent.
943 In the success case, the application may save the current current value of
944 total_in which indicates where valid compressed data was found. In the
945 error case, the application may repeatedly call inflateSync, providing more
946 input each time, until success or end of the input data.
947*/
948
949ZEXTERN int ZEXPORT inflateCopy OF((z_streamp dest,
950 z_streamp source));
951/*
952 Sets the destination stream as a complete copy of the source stream.
953
954 This function can be useful when randomly accessing a large stream. The
955 first pass through the stream can periodically record the inflate state,
956 allowing restarting inflate at those points when randomly accessing the
957 stream.
958
959 inflateCopy returns Z_OK if success, Z_MEM_ERROR if there was not
960 enough memory, Z_STREAM_ERROR if the source stream state was inconsistent
961 (such as zalloc being Z_NULL). msg is left unchanged in both source and
962 destination.
963*/
964
965ZEXTERN int ZEXPORT inflateReset OF((z_streamp strm));
966/*
967 This function is equivalent to inflateEnd followed by inflateInit,
968 but does not free and reallocate the internal decompression state. The
969 stream will keep attributes that may have been set by inflateInit2.
970
971 inflateReset returns Z_OK if success, or Z_STREAM_ERROR if the source
972 stream state was inconsistent (such as zalloc or state being Z_NULL).
973*/
974
975ZEXTERN int ZEXPORT inflateReset2 OF((z_streamp strm,
976 int windowBits))
977 __API_AVAILABLE(macos(10.7),ios(5.0));
978/*
979 This function is the same as inflateReset, but it also permits changing
980 the wrap and window size requests. The windowBits parameter is interpreted
981 the same as it is for inflateInit2. If the window size is changed, then the
982 memory allocated for the window is freed, and the window will be reallocated
983 by inflate() if needed.
984
985 inflateReset2 returns Z_OK if success, or Z_STREAM_ERROR if the source
986 stream state was inconsistent (such as zalloc or state being Z_NULL), or if
987 the windowBits parameter is invalid.
988*/
989
990ZEXTERN int ZEXPORT inflatePrime OF((z_streamp strm,
991 int bits,
992 int value));
993/*
994 This function inserts bits in the inflate input stream. The intent is
995 that this function is used to start inflating at a bit position in the
996 middle of a byte. The provided bits will be used before any bytes are used
997 from next_in. This function should only be used with raw inflate, and
998 should be used before the first inflate() call after inflateInit2() or
999 inflateReset(). bits must be less than or equal to 16, and that many of the
1000 least significant bits of value will be inserted in the input.
1001
1002 If bits is negative, then the input stream bit buffer is emptied. Then
1003 inflatePrime() can be called again to put bits in the buffer. This is used
1004 to clear out bits leftover after feeding inflate a block description prior
1005 to feeding inflate codes.
1006
1007 inflatePrime returns Z_OK if success, or Z_STREAM_ERROR if the source
1008 stream state was inconsistent.
1009*/
1010
1011ZEXTERN long ZEXPORT inflateMark OF((z_streamp strm))
1012 __API_AVAILABLE(macos(10.7),ios(5.0));
1013/*
1014 This function returns two values, one in the lower 16 bits of the return
1015 value, and the other in the remaining upper bits, obtained by shifting the
1016 return value down 16 bits. If the upper value is -1 and the lower value is
1017 zero, then inflate() is currently decoding information outside of a block.
1018 If the upper value is -1 and the lower value is non-zero, then inflate is in
1019 the middle of a stored block, with the lower value equaling the number of
1020 bytes from the input remaining to copy. If the upper value is not -1, then
1021 it is the number of bits back from the current bit position in the input of
1022 the code (literal or length/distance pair) currently being processed. In
1023 that case the lower value is the number of bytes already emitted for that
1024 code.
1025
1026 A code is being processed if inflate is waiting for more input to complete
1027 decoding of the code, or if it has completed decoding but is waiting for
1028 more output space to write the literal or match data.
1029
1030 inflateMark() is used to mark locations in the input data for random
1031 access, which may be at bit positions, and to note those cases where the
1032 output of a code may span boundaries of random access blocks. The current
1033 location in the input stream can be determined from avail_in and data_type
1034 as noted in the description for the Z_BLOCK flush parameter for inflate.
1035
1036 inflateMark returns the value noted above, or -65536 if the provided
1037 source stream state was inconsistent.
1038*/
1039
1040ZEXTERN int ZEXPORT inflateGetHeader OF((z_streamp strm,
1041 gz_headerp head));
1042/*
1043 inflateGetHeader() requests that gzip header information be stored in the
1044 provided gz_header structure. inflateGetHeader() may be called after
1045 inflateInit2() or inflateReset(), and before the first call of inflate().
1046 As inflate() processes the gzip stream, head->done is zero until the header
1047 is completed, at which time head->done is set to one. If a zlib stream is
1048 being decoded, then head->done is set to -1 to indicate that there will be
1049 no gzip header information forthcoming. Note that Z_BLOCK or Z_TREES can be
1050 used to force inflate() to return immediately after header processing is
1051 complete and before any actual data is decompressed.
1052
1053 The text, time, xflags, and os fields are filled in with the gzip header
1054 contents. hcrc is set to true if there is a header CRC. (The header CRC
1055 was valid if done is set to one.) If extra is not Z_NULL, then extra_max
1056 contains the maximum number of bytes to write to extra. Once done is true,
1057 extra_len contains the actual extra field length, and extra contains the
1058 extra field, or that field truncated if extra_max is less than extra_len.
1059 If name is not Z_NULL, then up to name_max characters are written there,
1060 terminated with a zero unless the length is greater than name_max. If
1061 comment is not Z_NULL, then up to comm_max characters are written there,
1062 terminated with a zero unless the length is greater than comm_max. When any
1063 of extra, name, or comment are not Z_NULL and the respective field is not
1064 present in the header, then that field is set to Z_NULL to signal its
1065 absence. This allows the use of deflateSetHeader() with the returned
1066 structure to duplicate the header. However if those fields are set to
1067 allocated memory, then the application will need to save those pointers
1068 elsewhere so that they can be eventually freed.
1069
1070 If inflateGetHeader is not used, then the header information is simply
1071 discarded. The header is always checked for validity, including the header
1072 CRC if present. inflateReset() will reset the process to discard the header
1073 information. The application would need to call inflateGetHeader() again to
1074 retrieve the header from the next gzip stream.
1075
1076 inflateGetHeader returns Z_OK if success, or Z_STREAM_ERROR if the source
1077 stream state was inconsistent.
1078*/
1079
1080/*
1081ZEXTERN int ZEXPORT inflateBackInit OF((z_streamp strm, int windowBits,
1082 unsigned char FAR *window));
1083
1084 Initialize the internal stream state for decompression using inflateBack()
1085 calls. The fields zalloc, zfree and opaque in strm must be initialized
1086 before the call. If zalloc and zfree are Z_NULL, then the default library-
1087 derived memory allocation routines are used. windowBits is the base two
1088 logarithm of the window size, in the range 8..15. window is a caller
1089 supplied buffer of that size. Except for special applications where it is
1090 assured that deflate was used with small window sizes, windowBits must be 15
1091 and a 32K byte window must be supplied to be able to decompress general
1092 deflate streams.
1093
1094 See inflateBack() for the usage of these routines.
1095
1096 inflateBackInit will return Z_OK on success, Z_STREAM_ERROR if any of
1097 the parameters are invalid, Z_MEM_ERROR if the internal state could not be
1098 allocated, or Z_VERSION_ERROR if the version of the library does not match
1099 the version of the header file.
1100*/
1101
1102typedef unsigned (*in_func) OF((void FAR *,
1103 z_const unsigned char FAR * FAR *));
1104typedef int (*out_func) OF((void FAR *, unsigned char FAR *, unsigned));
1105
1106ZEXTERN int ZEXPORT inflateBack OF((z_streamp strm,
1107 in_func in, void FAR *in_desc,
1108 out_func out, void FAR *out_desc));
1109/*
1110 inflateBack() does a raw inflate with a single call using a call-back
1111 interface for input and output. This is potentially more efficient than
1112 inflate() for file i/o applications, in that it avoids copying between the
1113 output and the sliding window by simply making the window itself the output
1114 buffer. inflate() can be faster on modern CPUs when used with large
1115 buffers. inflateBack() trusts the application to not change the output
1116 buffer passed by the output function, at least until inflateBack() returns.
1117
1118 inflateBackInit() must be called first to allocate the internal state
1119 and to initialize the state with the user-provided window buffer.
1120 inflateBack() may then be used multiple times to inflate a complete, raw
1121 deflate stream with each call. inflateBackEnd() is then called to free the
1122 allocated state.
1123
1124 A raw deflate stream is one with no zlib or gzip header or trailer.
1125 This routine would normally be used in a utility that reads zip or gzip
1126 files and writes out uncompressed files. The utility would decode the
1127 header and process the trailer on its own, hence this routine expects only
1128 the raw deflate stream to decompress. This is different from the default
1129 behavior of inflate(), which expects a zlib header and trailer around the
1130 deflate stream.
1131
1132 inflateBack() uses two subroutines supplied by the caller that are then
1133 called by inflateBack() for input and output. inflateBack() calls those
1134 routines until it reads a complete deflate stream and writes out all of the
1135 uncompressed data, or until it encounters an error. The function's
1136 parameters and return types are defined above in the in_func and out_func
1137 typedefs. inflateBack() will call in(in_desc, &buf) which should return the
1138 number of bytes of provided input, and a pointer to that input in buf. If
1139 there is no input available, in() must return zero -- buf is ignored in that
1140 case -- and inflateBack() will return a buffer error. inflateBack() will
1141 call out(out_desc, buf, len) to write the uncompressed data buf[0..len-1].
1142 out() should return zero on success, or non-zero on failure. If out()
1143 returns non-zero, inflateBack() will return with an error. Neither in() nor
1144 out() are permitted to change the contents of the window provided to
1145 inflateBackInit(), which is also the buffer that out() uses to write from.
1146 The length written by out() will be at most the window size. Any non-zero
1147 amount of input may be provided by in().
1148
1149 For convenience, inflateBack() can be provided input on the first call by
1150 setting strm->next_in and strm->avail_in. If that input is exhausted, then
1151 in() will be called. Therefore strm->next_in must be initialized before
1152 calling inflateBack(). If strm->next_in is Z_NULL, then in() will be called
1153 immediately for input. If strm->next_in is not Z_NULL, then strm->avail_in
1154 must also be initialized, and then if strm->avail_in is not zero, input will
1155 initially be taken from strm->next_in[0 .. strm->avail_in - 1].
1156
1157 The in_desc and out_desc parameters of inflateBack() is passed as the
1158 first parameter of in() and out() respectively when they are called. These
1159 descriptors can be optionally used to pass any information that the caller-
1160 supplied in() and out() functions need to do their job.
1161
1162 On return, inflateBack() will set strm->next_in and strm->avail_in to
1163 pass back any unused input that was provided by the last in() call. The
1164 return values of inflateBack() can be Z_STREAM_END on success, Z_BUF_ERROR
1165 if in() or out() returned an error, Z_DATA_ERROR if there was a format error
1166 in the deflate stream (in which case strm->msg is set to indicate the nature
1167 of the error), or Z_STREAM_ERROR if the stream was not properly initialized.
1168 In the case of Z_BUF_ERROR, an input or output error can be distinguished
1169 using strm->next_in which will be Z_NULL only if in() returned an error. If
1170 strm->next_in is not Z_NULL, then the Z_BUF_ERROR was due to out() returning
1171 non-zero. (in() will always be called before out(), so strm->next_in is
1172 assured to be defined if out() returns non-zero.) Note that inflateBack()
1173 cannot return Z_OK.
1174*/
1175
1176ZEXTERN int ZEXPORT inflateBackEnd OF((z_streamp strm));
1177/*
1178 All memory allocated by inflateBackInit() is freed.
1179
1180 inflateBackEnd() returns Z_OK on success, or Z_STREAM_ERROR if the stream
1181 state was inconsistent.
1182*/
1183
1184ZEXTERN uLong ZEXPORT zlibCompileFlags OF((void));
1185/* Return flags indicating compile-time options.
1186
1187 Type sizes, two bits each, 00 = 16 bits, 01 = 32, 10 = 64, 11 = other:
1188 1.0: size of uInt
1189 3.2: size of uLong
1190 5.4: size of voidpf (pointer)
1191 7.6: size of z_off_t
1192
1193 Compiler, assembler, and debug options:
1194 8: ZLIB_DEBUG
1195 9: ASMV or ASMINF -- use ASM code
1196 10: ZLIB_WINAPI -- exported functions use the WINAPI calling convention
1197 11: 0 (reserved)
1198
1199 One-time table building (smaller code, but not thread-safe if true):
1200 12: BUILDFIXED -- build static block decoding tables when needed
1201 13: DYNAMIC_CRC_TABLE -- build CRC calculation tables when needed
1202 14,15: 0 (reserved)
1203
1204 Library content (indicates missing functionality):
1205 16: NO_GZCOMPRESS -- gz* functions cannot compress (to avoid linking
1206 deflate code when not needed)
1207 17: NO_GZIP -- deflate can't write gzip streams, and inflate can't detect
1208 and decode gzip streams (to avoid linking crc code)
1209 18-19: 0 (reserved)
1210
1211 Operation variations (changes in library functionality):
1212 20: PKZIP_BUG_WORKAROUND -- slightly more permissive inflate
1213 21: FASTEST -- deflate algorithm with only one, lowest compression level
1214 22,23: 0 (reserved)
1215
1216 The sprintf variant used by gzprintf (zero is best):
1217 24: 0 = vs*, 1 = s* -- 1 means limited to 20 arguments after the format
1218 25: 0 = *nprintf, 1 = *printf -- 1 means gzprintf() not secure!
1219 26: 0 = returns value, 1 = void -- 1 means inferred string length returned
1220
1221 Remainder:
1222 27-31: 0 (reserved)
1223 */
1224
1225#ifndef Z_SOLO
1226
1227 /* utility functions */
1228
1229/*
1230 The following utility functions are implemented on top of the basic
1231 stream-oriented functions. To simplify the interface, some default options
1232 are assumed (compression level and memory usage, standard memory allocation
1233 functions). The source code of these utility functions can be modified if
1234 you need special options.
1235*/
1236
1237ZEXTERN int ZEXPORT compress OF((Bytef *dest, uLongf *destLen,
1238 const Bytef *source, uLong sourceLen));
1239/*
1240 Compresses the source buffer into the destination buffer. sourceLen is
1241 the byte length of the source buffer. Upon entry, destLen is the total size
1242 of the destination buffer, which must be at least the value returned by
1243 compressBound(sourceLen). Upon exit, destLen is the actual size of the
1244 compressed data. compress() is equivalent to compress2() with a level
1245 parameter of Z_DEFAULT_COMPRESSION.
1246
1247 compress returns Z_OK if success, Z_MEM_ERROR if there was not
1248 enough memory, Z_BUF_ERROR if there was not enough room in the output
1249 buffer.
1250*/
1251
1252ZEXTERN int ZEXPORT compress2 OF((Bytef *dest, uLongf *destLen,
1253 const Bytef *source, uLong sourceLen,
1254 int level));
1255/*
1256 Compresses the source buffer into the destination buffer. The level
1257 parameter has the same meaning as in deflateInit. sourceLen is the byte
1258 length of the source buffer. Upon entry, destLen is the total size of the
1259 destination buffer, which must be at least the value returned by
1260 compressBound(sourceLen). Upon exit, destLen is the actual size of the
1261 compressed data.
1262
1263 compress2 returns Z_OK if success, Z_MEM_ERROR if there was not enough
1264 memory, Z_BUF_ERROR if there was not enough room in the output buffer,
1265 Z_STREAM_ERROR if the level parameter is invalid.
1266*/
1267
1268ZEXTERN uLong ZEXPORT compressBound OF((uLong sourceLen));
1269/*
1270 compressBound() returns an upper bound on the compressed size after
1271 compress() or compress2() on sourceLen bytes. It would be used before a
1272 compress() or compress2() call to allocate the destination buffer.
1273*/
1274
1275ZEXTERN int ZEXPORT uncompress OF((Bytef *dest, uLongf *destLen,
1276 const Bytef *source, uLong sourceLen));
1277/*
1278 Decompresses the source buffer into the destination buffer. sourceLen is
1279 the byte length of the source buffer. Upon entry, destLen is the total size
1280 of the destination buffer, which must be large enough to hold the entire
1281 uncompressed data. (The size of the uncompressed data must have been saved
1282 previously by the compressor and transmitted to the decompressor by some
1283 mechanism outside the scope of this compression library.) Upon exit, destLen
1284 is the actual size of the uncompressed data.
1285
1286 uncompress returns Z_OK if success, Z_MEM_ERROR if there was not
1287 enough memory, Z_BUF_ERROR if there was not enough room in the output
1288 buffer, or Z_DATA_ERROR if the input data was corrupted or incomplete. In
1289 the case where there is not enough room, uncompress() will fill the output
1290 buffer with the uncompressed data up to that point.
1291*/
1292
1293ZEXTERN int ZEXPORT uncompress2 OF((Bytef *dest, uLongf *destLen,
1294 const Bytef *source, uLong *sourceLen))
1295 __API_AVAILABLE(macos(10.13),ios(11.0));
1296/*
1297 Same as uncompress, except that sourceLen is a pointer, where the
1298 length of the source is *sourceLen. On return, *sourceLen is the number of
1299 source bytes consumed.
1300*/
1301
1302 /* gzip file access functions */
1303
1304/*
1305 This library supports reading and writing files in gzip (.gz) format with
1306 an interface similar to that of stdio, using the functions that start with
1307 "gz". The gzip format is different from the zlib format. gzip is a gzip
1308 wrapper, documented in RFC 1952, wrapped around a deflate stream.
1309*/
1310
1311typedef struct gzFile_s *gzFile; /* semi-opaque gzip file descriptor */
1312
1313/*
1314ZEXTERN gzFile ZEXPORT gzopen OF((const char *path, const char *mode));
1315
1316 Opens a gzip (.gz) file for reading or writing. The mode parameter is as
1317 in fopen ("rb" or "wb") but can also include a compression level ("wb9") or
1318 a strategy: 'f' for filtered data as in "wb6f", 'h' for Huffman-only
1319 compression as in "wb1h", 'R' for run-length encoding as in "wb1R", or 'F'
1320 for fixed code compression as in "wb9F". (See the description of
1321 deflateInit2 for more information about the strategy parameter.) 'T' will
1322 request transparent writing or appending with no compression and not using
1323 the gzip format.
1324
1325 "a" can be used instead of "w" to request that the gzip stream that will
1326 be written be appended to the file. "+" will result in an error, since
1327 reading and writing to the same gzip file is not supported. The addition of
1328 "x" when writing will create the file exclusively, which fails if the file
1329 already exists. On systems that support it, the addition of "e" when
1330 reading or writing will set the flag to close the file on an execve() call.
1331
1332 These functions, as well as gzip, will read and decode a sequence of gzip
1333 streams in a file. The append function of gzopen() can be used to create
1334 such a file. (Also see gzflush() for another way to do this.) When
1335 appending, gzopen does not test whether the file begins with a gzip stream,
1336 nor does it look for the end of the gzip streams to begin appending. gzopen
1337 will simply append a gzip stream to the existing file.
1338
1339 gzopen can be used to read a file which is not in gzip format; in this
1340 case gzread will directly read from the file without decompression. When
1341 reading, this will be detected automatically by looking for the magic two-
1342 byte gzip header.
1343
1344 gzopen returns NULL if the file could not be opened, if there was
1345 insufficient memory to allocate the gzFile state, or if an invalid mode was
1346 specified (an 'r', 'w', or 'a' was not provided, or '+' was provided).
1347 errno can be checked to determine if the reason gzopen failed was that the
1348 file could not be opened.
1349*/
1350
1351ZEXTERN gzFile ZEXPORT gzdopen OF((int fd, const char *mode));
1352/*
1353 gzdopen associates a gzFile with the file descriptor fd. File descriptors
1354 are obtained from calls like open, dup, creat, pipe or fileno (if the file
1355 has been previously opened with fopen). The mode parameter is as in gzopen.
1356
1357 The next call of gzclose on the returned gzFile will also close the file
1358 descriptor fd, just like fclose(fdopen(fd, mode)) closes the file descriptor
1359 fd. If you want to keep fd open, use fd = dup(fd_keep); gz = gzdopen(fd,
1360 mode);. The duplicated descriptor should be saved to avoid a leak, since
1361 gzdopen does not close fd if it fails. If you are using fileno() to get the
1362 file descriptor from a FILE *, then you will have to use dup() to avoid
1363 double-close()ing the file descriptor. Both gzclose() and fclose() will
1364 close the associated file descriptor, so they need to have different file
1365 descriptors.
1366
1367 gzdopen returns NULL if there was insufficient memory to allocate the
1368 gzFile state, if an invalid mode was specified (an 'r', 'w', or 'a' was not
1369 provided, or '+' was provided), or if fd is -1. The file descriptor is not
1370 used until the next gz* read, write, seek, or close operation, so gzdopen
1371 will not detect if fd is invalid (unless fd is -1).
1372*/
1373
1374ZEXTERN int ZEXPORT gzbuffer OF((gzFile file, unsigned size))
1375 __API_AVAILABLE(macos(10.7),ios(5.0));
1376/*
1377 Set the internal buffer size used by this library's functions. The
1378 default buffer size is 8192 bytes. This function must be called after
1379 gzopen() or gzdopen(), and before any other calls that read or write the
1380 file. The buffer memory allocation is always deferred to the first read or
1381 write. Three times that size in buffer space is allocated. A larger buffer
1382 size of, for example, 64K or 128K bytes will noticeably increase the speed
1383 of decompression (reading).
1384
1385 The new buffer size also affects the maximum length for gzprintf().
1386
1387 gzbuffer() returns 0 on success, or -1 on failure, such as being called
1388 too late.
1389*/
1390
1391ZEXTERN int ZEXPORT gzsetparams OF((gzFile file, int level, int strategy));
1392/*
1393 Dynamically update the compression level or strategy. See the description
1394 of deflateInit2 for the meaning of these parameters. Previously provided
1395 data is flushed before the parameter change.
1396
1397 gzsetparams returns Z_OK if success, Z_STREAM_ERROR if the file was not
1398 opened for writing, Z_ERRNO if there is an error writing the flushed data,
1399 or Z_MEM_ERROR if there is a memory allocation error.
1400*/
1401
1402ZEXTERN int ZEXPORT gzread OF((gzFile file, voidp buf, unsigned len));
1403/*
1404 Reads the given number of uncompressed bytes from the compressed file. If
1405 the input file is not in gzip format, gzread copies the given number of
1406 bytes into the buffer directly from the file.
1407
1408 After reaching the end of a gzip stream in the input, gzread will continue
1409 to read, looking for another gzip stream. Any number of gzip streams may be
1410 concatenated in the input file, and will all be decompressed by gzread().
1411 If something other than a gzip stream is encountered after a gzip stream,
1412 that remaining trailing garbage is ignored (and no error is returned).
1413
1414 gzread can be used to read a gzip file that is being concurrently written.
1415 Upon reaching the end of the input, gzread will return with the available
1416 data. If the error code returned by gzerror is Z_OK or Z_BUF_ERROR, then
1417 gzclearerr can be used to clear the end of file indicator in order to permit
1418 gzread to be tried again. Z_OK indicates that a gzip stream was completed
1419 on the last gzread. Z_BUF_ERROR indicates that the input file ended in the
1420 middle of a gzip stream. Note that gzread does not return -1 in the event
1421 of an incomplete gzip stream. This error is deferred until gzclose(), which
1422 will return Z_BUF_ERROR if the last gzread ended in the middle of a gzip
1423 stream. Alternatively, gzerror can be used before gzclose to detect this
1424 case.
1425
1426 gzread returns the number of uncompressed bytes actually read, less than
1427 len for end of file, or -1 for error. If len is too large to fit in an int,
1428 then nothing is read, -1 is returned, and the error state is set to
1429 Z_STREAM_ERROR.
1430*/
1431
1432ZEXTERN z_size_t ZEXPORT gzfread OF((voidp buf, z_size_t size, z_size_t nitems,
1433 gzFile file))
1434 __API_AVAILABLE(macos(10.13),ios(11.0));
1435/*
1436 Read up to nitems items of size size from file to buf, otherwise operating
1437 as gzread() does. This duplicates the interface of stdio's fread(), with
1438 size_t request and return types. If the library defines size_t, then
1439 z_size_t is identical to size_t. If not, then z_size_t is an unsigned
1440 integer type that can contain a pointer.
1441
1442 gzfread() returns the number of full items read of size size, or zero if
1443 the end of the file was reached and a full item could not be read, or if
1444 there was an error. gzerror() must be consulted if zero is returned in
1445 order to determine if there was an error. If the multiplication of size and
1446 nitems overflows, i.e. the product does not fit in a z_size_t, then nothing
1447 is read, zero is returned, and the error state is set to Z_STREAM_ERROR.
1448
1449 In the event that the end of file is reached and only a partial item is
1450 available at the end, i.e. the remaining uncompressed data length is not a
1451 multiple of size, then the final partial item is nevetheless read into buf
1452 and the end-of-file flag is set. The length of the partial item read is not
1453 provided, but could be inferred from the result of gztell(). This behavior
1454 is the same as the behavior of fread() implementations in common libraries,
1455 but it prevents the direct use of gzfread() to read a concurrently written
1456 file, reseting and retrying on end-of-file, when size is not 1.
1457*/
1458
1459ZEXTERN int ZEXPORT gzwrite OF((gzFile file,
1460 voidpc buf, unsigned len));
1461/*
1462 Writes the given number of uncompressed bytes into the compressed file.
1463 gzwrite returns the number of uncompressed bytes written or 0 in case of
1464 error.
1465*/
1466
1467ZEXTERN z_size_t ZEXPORT gzfwrite OF((voidpc buf, z_size_t size,
1468 z_size_t nitems, gzFile file))
1469 __API_AVAILABLE(macos(10.13),ios(11.0));
1470/*
1471 gzfwrite() writes nitems items of size size from buf to file, duplicating
1472 the interface of stdio's fwrite(), with size_t request and return types. If
1473 the library defines size_t, then z_size_t is identical to size_t. If not,
1474 then z_size_t is an unsigned integer type that can contain a pointer.
1475
1476 gzfwrite() returns the number of full items written of size size, or zero
1477 if there was an error. If the multiplication of size and nitems overflows,
1478 i.e. the product does not fit in a z_size_t, then nothing is written, zero
1479 is returned, and the error state is set to Z_STREAM_ERROR.
1480*/
1481
1482ZEXTERN int ZEXPORTVA gzprintf Z_ARG((gzFile file, const char *format, ...));
1483/*
1484 Converts, formats, and writes the arguments to the compressed file under
1485 control of the format string, as in fprintf. gzprintf returns the number of
1486 uncompressed bytes actually written, or a negative zlib error code in case
1487 of error. The number of uncompressed bytes written is limited to 8191, or
1488 one less than the buffer size given to gzbuffer(). The caller should assure
1489 that this limit is not exceeded. If it is exceeded, then gzprintf() will
1490 return an error (0) with nothing written. In this case, there may also be a
1491 buffer overflow with unpredictable consequences, which is possible only if
1492 zlib was compiled with the insecure functions sprintf() or vsprintf()
1493 because the secure snprintf() or vsnprintf() functions were not available.
1494 This can be determined using zlibCompileFlags().
1495*/
1496
1497ZEXTERN int ZEXPORT gzputs OF((gzFile file, const char *s));
1498/*
1499 Writes the given null-terminated string to the compressed file, excluding
1500 the terminating null character.
1501
1502 gzputs returns the number of characters written, or -1 in case of error.
1503*/
1504
1505ZEXTERN char * ZEXPORT gzgets OF((gzFile file, char *buf, int len));
1506/*
1507 Reads bytes from the compressed file until len-1 characters are read, or a
1508 newline character is read and transferred to buf, or an end-of-file
1509 condition is encountered. If any characters are read or if len == 1, the
1510 string is terminated with a null character. If no characters are read due
1511 to an end-of-file or len < 1, then the buffer is left untouched.
1512
1513 gzgets returns buf which is a null-terminated string, or it returns NULL
1514 for end-of-file or in case of error. If there was an error, the contents at
1515 buf are indeterminate.
1516*/
1517
1518ZEXTERN int ZEXPORT gzputc OF((gzFile file, int c));
1519/*
1520 Writes c, converted to an unsigned char, into the compressed file. gzputc
1521 returns the value that was written, or -1 in case of error.
1522*/
1523
1524ZEXTERN int ZEXPORT gzgetc OF((gzFile file));
1525/*
1526 Reads one byte from the compressed file. gzgetc returns this byte or -1
1527 in case of end of file or error. This is implemented as a macro for speed.
1528 As such, it does not do all of the checking the other functions do. I.e.
1529 it does not check to see if file is NULL, nor whether the structure file
1530 points to has been clobbered or not.
1531*/
1532
1533ZEXTERN int ZEXPORT gzungetc OF((int c, gzFile file));
1534/*
1535 Push one character back onto the stream to be read as the first character
1536 on the next read. At least one character of push-back is allowed.
1537 gzungetc() returns the character pushed, or -1 on failure. gzungetc() will
1538 fail if c is -1, and may fail if a character has been pushed but not read
1539 yet. If gzungetc is used immediately after gzopen or gzdopen, at least the
1540 output buffer size of pushed characters is allowed. (See gzbuffer above.)
1541 The pushed character will be discarded if the stream is repositioned with
1542 gzseek() or gzrewind().
1543*/
1544
1545ZEXTERN int ZEXPORT gzflush OF((gzFile file, int flush));
1546/*
1547 Flushes all pending output into the compressed file. The parameter flush
1548 is as in the deflate() function. The return value is the zlib error number
1549 (see function gzerror below). gzflush is only permitted when writing.
1550
1551 If the flush parameter is Z_FINISH, the remaining data is written and the
1552 gzip stream is completed in the output. If gzwrite() is called again, a new
1553 gzip stream will be started in the output. gzread() is able to read such
1554 concatenated gzip streams.
1555
1556 gzflush should be called only when strictly necessary because it will
1557 degrade compression if called too often.
1558*/
1559
1560/*
1561ZEXTERN z_off_t ZEXPORT gzseek OF((gzFile file,
1562 z_off_t offset, int whence));
1563
1564 Sets the starting position for the next gzread or gzwrite on the given
1565 compressed file. The offset represents a number of bytes in the
1566 uncompressed data stream. The whence parameter is defined as in lseek(2);
1567 the value SEEK_END is not supported.
1568
1569 If the file is opened for reading, this function is emulated but can be
1570 extremely slow. If the file is opened for writing, only forward seeks are
1571 supported; gzseek then compresses a sequence of zeroes up to the new
1572 starting position.
1573
1574 gzseek returns the resulting offset location as measured in bytes from
1575 the beginning of the uncompressed stream, or -1 in case of error, in
1576 particular if the file is opened for writing and the new starting position
1577 would be before the current position.
1578*/
1579
1580ZEXTERN int ZEXPORT gzrewind OF((gzFile file));
1581/*
1582 Rewinds the given file. This function is supported only for reading.
1583
1584 gzrewind(file) is equivalent to (int)gzseek(file, 0L, SEEK_SET)
1585*/
1586
1587/*
1588ZEXTERN z_off_t ZEXPORT gztell OF((gzFile file));
1589
1590 Returns the starting position for the next gzread or gzwrite on the given
1591 compressed file. This position represents a number of bytes in the
1592 uncompressed data stream, and is zero when starting, even if appending or
1593 reading a gzip stream from the middle of a file using gzdopen().
1594
1595 gztell(file) is equivalent to gzseek(file, 0L, SEEK_CUR)
1596*/
1597
1598/*
1599ZEXTERN z_off_t ZEXPORT gzoffset OF((gzFile file));
1600
1601 Returns the current offset in the file being read or written. This offset
1602 includes the count of bytes that precede the gzip stream, for example when
1603 appending or when using gzdopen() for reading. When reading, the offset
1604 does not include as yet unused buffered input. This information can be used
1605 for a progress indicator. On error, gzoffset() returns -1.
1606*/
1607
1608ZEXTERN int ZEXPORT gzeof OF((gzFile file));
1609/*
1610 Returns true (1) if the end-of-file indicator has been set while reading,
1611 false (0) otherwise. Note that the end-of-file indicator is set only if the
1612 read tried to go past the end of the input, but came up short. Therefore,
1613 just like feof(), gzeof() may return false even if there is no more data to
1614 read, in the event that the last read request was for the exact number of
1615 bytes remaining in the input file. This will happen if the input file size
1616 is an exact multiple of the buffer size.
1617
1618 If gzeof() returns true, then the read functions will return no more data,
1619 unless the end-of-file indicator is reset by gzclearerr() and the input file
1620 has grown since the previous end of file was detected.
1621*/
1622
1623ZEXTERN int ZEXPORT gzdirect OF((gzFile file));
1624/*
1625 Returns true (1) if file is being copied directly while reading, or false
1626 (0) if file is a gzip stream being decompressed.
1627
1628 If the input file is empty, gzdirect() will return true, since the input
1629 does not contain a gzip stream.
1630
1631 If gzdirect() is used immediately after gzopen() or gzdopen() it will
1632 cause buffers to be allocated to allow reading the file to determine if it
1633 is a gzip file. Therefore if gzbuffer() is used, it should be called before
1634 gzdirect().
1635
1636 When writing, gzdirect() returns true (1) if transparent writing was
1637 requested ("wT" for the gzopen() mode), or false (0) otherwise. (Note:
1638 gzdirect() is not needed when writing. Transparent writing must be
1639 explicitly requested, so the application already knows the answer. When
1640 linking statically, using gzdirect() will include all of the zlib code for
1641 gzip file reading and decompression, which may not be desired.)
1642*/
1643
1644ZEXTERN int ZEXPORT gzclose OF((gzFile file));
1645/*
1646 Flushes all pending output if necessary, closes the compressed file and
1647 deallocates the (de)compression state. Note that once file is closed, you
1648 cannot call gzerror with file, since its structures have been deallocated.
1649 gzclose must not be called more than once on the same file, just as free
1650 must not be called more than once on the same allocation.
1651
1652 gzclose will return Z_STREAM_ERROR if file is not valid, Z_ERRNO on a
1653 file operation error, Z_MEM_ERROR if out of memory, Z_BUF_ERROR if the
1654 last read ended in the middle of a gzip stream, or Z_OK on success.
1655*/
1656
1657ZEXTERN int ZEXPORT gzclose_r OF((gzFile file))
1658 __API_AVAILABLE(macos(10.7),ios(5.0));
1659ZEXTERN int ZEXPORT gzclose_w OF((gzFile file))
1660 __API_AVAILABLE(macos(10.7),ios(5.0));
1661/*
1662 Same as gzclose(), but gzclose_r() is only for use when reading, and
1663 gzclose_w() is only for use when writing or appending. The advantage to
1664 using these instead of gzclose() is that they avoid linking in zlib
1665 compression or decompression code that is not used when only reading or only
1666 writing respectively. If gzclose() is used, then both compression and
1667 decompression code will be included the application when linking to a static
1668 zlib library.
1669
1670 Because Mac OS X doesn't use a static zlib library, these routine are of
1671 no value for Mac OS X-only applications, and gzclose() is recommended
1672 instead.
1673*/
1674
1675ZEXTERN const char * ZEXPORT gzerror OF((gzFile file, int *errnum));
1676/*
1677 Returns the error message for the last error which occurred on the given
1678 compressed file. errnum is set to zlib error number. If an error occurred
1679 in the file system and not in the compression library, errnum is set to
1680 Z_ERRNO and the application may consult errno to get the exact error code.
1681
1682 The application must not modify the returned string. Future calls to
1683 this function may invalidate the previously returned string. If file is
1684 closed, then the string previously returned by gzerror will no longer be
1685 available.
1686
1687 gzerror() should be used to distinguish errors from end-of-file for those
1688 functions above that do not distinguish those cases in their return values.
1689*/
1690
1691ZEXTERN void ZEXPORT gzclearerr OF((gzFile file));
1692/*
1693 Clears the error and end-of-file flags for file. This is analogous to the
1694 clearerr() function in stdio. This is useful for continuing to read a gzip
1695 file that is being written concurrently.
1696*/
1697
1698#endif /* !Z_SOLO */
1699
1700 /* checksum functions */
1701
1702/*
1703 These functions are not related to compression but are exported
1704 anyway because they might be useful in applications using the compression
1705 library.
1706*/
1707
1708ZEXTERN uLong ZEXPORT adler32 OF((uLong adler, const Bytef *buf, uInt len));
1709/*
1710 Update a running Adler-32 checksum with the bytes buf[0..len-1] and
1711 return the updated checksum. If buf is Z_NULL, this function returns the
1712 required initial value for the checksum.
1713
1714 An Adler-32 checksum is almost as reliable as a CRC-32 but can be computed
1715 much faster.
1716
1717 Usage example:
1718
1719 uLong adler = adler32(0L, Z_NULL, 0);
1720
1721 while (read_buffer(buffer, length) != EOF) {
1722 adler = adler32(adler, buffer, length);
1723 }
1724 if (adler != original_adler) error();
1725*/
1726
1727ZEXTERN uLong ZEXPORT adler32_z OF((uLong adler, const Bytef *buf,
1728 z_size_t len))
1729 __API_AVAILABLE(macos(10.13),ios(11.0));
1730/*
1731 Same as adler32(), but with a size_t length.
1732*/
1733
1734/*
1735ZEXTERN uLong ZEXPORT adler32_combine OF((uLong adler1, uLong adler2,
1736 z_off_t len2));
1737
1738 Combine two Adler-32 checksums into one. For two sequences of bytes, seq1
1739 and seq2 with lengths len1 and len2, Adler-32 checksums were calculated for
1740 each, adler1 and adler2. adler32_combine() returns the Adler-32 checksum of
1741 seq1 and seq2 concatenated, requiring only adler1, adler2, and len2. Note
1742 that the z_off_t type (like off_t) is a signed integer. If len2 is
1743 negative, the result has no meaning or utility.
1744*/
1745
1746ZEXTERN uLong ZEXPORT crc32 OF((uLong crc, const Bytef *buf, uInt len));
1747/*
1748 Update a running CRC-32 with the bytes buf[0..len-1] and return the
1749 updated CRC-32. If buf is Z_NULL, this function returns the required
1750 initial value for the crc. Pre- and post-conditioning (one's complement) is
1751 performed within this function so it shouldn't be done by the application.
1752
1753 Usage example:
1754
1755 uLong crc = crc32(0L, Z_NULL, 0);
1756
1757 while (read_buffer(buffer, length) != EOF) {
1758 crc = crc32(crc, buffer, length);
1759 }
1760 if (crc != original_crc) error();
1761*/
1762
1763ZEXTERN uLong ZEXPORT crc32_z OF((uLong adler, const Bytef *buf,
1764 z_size_t len))
1765 __API_AVAILABLE(macos(10.13),ios(11.0));
1766/*
1767 Same as crc32(), but with a size_t length.
1768*/
1769
1770/*
1771ZEXTERN uLong ZEXPORT crc32_combine OF((uLong crc1, uLong crc2, z_off_t len2));
1772
1773 Combine two CRC-32 check values into one. For two sequences of bytes,
1774 seq1 and seq2 with lengths len1 and len2, CRC-32 check values were
1775 calculated for each, crc1 and crc2. crc32_combine() returns the CRC-32
1776 check value of seq1 and seq2 concatenated, requiring only crc1, crc2, and
1777 len2.
1778*/
1779
1780
1781 /* various hacks, don't look :) */
1782
1783/* deflateInit and inflateInit are macros to allow checking the zlib version
1784 * and the compiler's view of z_stream:
1785 */
1786ZEXTERN int ZEXPORT deflateInit_ OF((z_streamp strm, int level,
1787 const char *version, int stream_size));
1788ZEXTERN int ZEXPORT inflateInit_ OF((z_streamp strm,
1789 const char *version, int stream_size));
1790ZEXTERN int ZEXPORT deflateInit2_ OF((z_streamp strm, int level, int method,
1791 int windowBits, int memLevel,
1792 int strategy, const char *version,
1793 int stream_size));
1794ZEXTERN int ZEXPORT inflateInit2_ OF((z_streamp strm, int windowBits,
1795 const char *version, int stream_size));
1796ZEXTERN int ZEXPORT inflateBackInit_ OF((z_streamp strm, int windowBits,
1797 unsigned char FAR *window,
1798 const char *version,
1799 int stream_size));
1800#ifdef Z_PREFIX_SET
1801# define z_deflateInit(strm, level) \
1802 deflateInit_((strm), (level), ZLIB_VERSION, (int)sizeof(z_stream))
1803# define z_inflateInit(strm) \
1804 inflateInit_((strm), ZLIB_VERSION, (int)sizeof(z_stream))
1805# define z_deflateInit2(strm, level, method, windowBits, memLevel, strategy) \
1806 deflateInit2_((strm),(level),(method),(windowBits),(memLevel),\
1807 (strategy), ZLIB_VERSION, (int)sizeof(z_stream))
1808# define z_inflateInit2(strm, windowBits) \
1809 inflateInit2_((strm), (windowBits), ZLIB_VERSION, \
1810 (int)sizeof(z_stream))
1811# define z_inflateBackInit(strm, windowBits, window) \
1812 inflateBackInit_((strm), (windowBits), (window), \
1813 ZLIB_VERSION, (int)sizeof(z_stream))
1814#else
1815# define deflateInit(strm, level) \
1816 deflateInit_((strm), (level), ZLIB_VERSION, (int)sizeof(z_stream))
1817# define inflateInit(strm) \
1818 inflateInit_((strm), ZLIB_VERSION, (int)sizeof(z_stream))
1819# define deflateInit2(strm, level, method, windowBits, memLevel, strategy) \
1820 deflateInit2_((strm),(level),(method),(windowBits),(memLevel),\
1821 (strategy), ZLIB_VERSION, (int)sizeof(z_stream))
1822# define inflateInit2(strm, windowBits) \
1823 inflateInit2_((strm), (windowBits), ZLIB_VERSION, \
1824 (int)sizeof(z_stream))
1825# define inflateBackInit(strm, windowBits, window) \
1826 inflateBackInit_((strm), (windowBits), (window), \
1827 ZLIB_VERSION, (int)sizeof(z_stream))
1828#endif
1829
1830#ifndef Z_SOLO
1831
1832/* gzgetc() macro and its supporting function and exposed data structure. Note
1833 * that the real internal state is much larger than the exposed structure.
1834 * This abbreviated structure exposes just enough for the gzgetc() macro. The
1835 * user should not mess with these exposed elements, since their names or
1836 * behavior could change in the future, perhaps even capriciously. They can
1837 * only be used by the gzgetc() macro. You have been warned.
1838 */
1839struct gzFile_s {
1840 unsigned have;
1841 unsigned char *next;
1842 z_off64_t pos;
1843};
1844ZEXTERN int ZEXPORT gzgetc_ OF((gzFile file))
1845 __API_AVAILABLE(macos(10.10),ios(8.0)); /* backward compatibility */
1846#ifdef Z_PREFIX_SET
1847# undef z_gzgetc
1848# define z_gzgetc(g) \
1849 ((g)->have ? ((g)->have--, (g)->pos++, *((g)->next)++) : (gzgetc)(g))
1850#else
1851# define gzgetc(g) \
1852 ((g)->have ? ((g)->have--, (g)->pos++, *((g)->next)++) : (gzgetc)(g))
1853#endif
1854
1855/* provide 64-bit offset functions if _LARGEFILE64_SOURCE defined, and/or
1856 * change the regular functions to 64 bits if _FILE_OFFSET_BITS is 64 (if
1857 * both are true, the application gets the *64 functions, and the regular
1858 * functions are changed to 64 bits) -- in case these are set on systems
1859 * without large file support, _LFS64_LARGEFILE must also be true
1860 */
1861#ifdef Z_LARGE64
1862 ZEXTERN gzFile ZEXPORT gzopen64 OF((const char *, const char *));
1863 ZEXTERN z_off64_t ZEXPORT gzseek64 OF((gzFile, z_off64_t, int));
1864 ZEXTERN z_off64_t ZEXPORT gztell64 OF((gzFile));
1865 ZEXTERN z_off64_t ZEXPORT gzoffset64 OF((gzFile));
1866 ZEXTERN uLong ZEXPORT adler32_combine64 OF((uLong, uLong, z_off64_t));
1867 ZEXTERN uLong ZEXPORT crc32_combine64 OF((uLong, uLong, z_off64_t));
1868#endif
1869
1870#if !defined(ZLIB_INTERNAL) && defined(Z_WANT64)
1871# ifdef Z_PREFIX_SET
1872# define z_gzopen z_gzopen64
1873# define z_gzseek z_gzseek64
1874# define z_gztell z_gztell64
1875# define z_gzoffset z_gzoffset64
1876# define z_adler32_combine z_adler32_combine64
1877# define z_crc32_combine z_crc32_combine64
1878# else
1879# define gzopen gzopen64
1880# define gzseek gzseek64
1881# define gztell gztell64
1882# define gzoffset gzoffset64
1883# define adler32_combine adler32_combine64
1884# define crc32_combine crc32_combine64
1885# endif
1886# ifndef Z_LARGE64
1887 ZEXTERN gzFile ZEXPORT gzopen64 OF((const char *, const char *));
1888 ZEXTERN z_off_t ZEXPORT gzseek64 OF((gzFile, z_off_t, int));
1889 ZEXTERN z_off_t ZEXPORT gztell64 OF((gzFile));
1890 ZEXTERN z_off_t ZEXPORT gzoffset64 OF((gzFile));
1891 ZEXTERN uLong ZEXPORT adler32_combine64 OF((uLong, uLong, z_off_t));
1892 ZEXTERN uLong ZEXPORT crc32_combine64 OF((uLong, uLong, z_off_t));
1893# endif
1894#else
1895 ZEXTERN gzFile ZEXPORT gzopen OF((const char *, const char *));
1896 ZEXTERN z_off_t ZEXPORT gzseek OF((gzFile, z_off_t, int));
1897 ZEXTERN z_off_t ZEXPORT gztell OF((gzFile));
1898 ZEXTERN z_off_t ZEXPORT gzoffset OF((gzFile))
1899 __API_AVAILABLE(macos(10.7),ios(5.0));
1900 ZEXTERN uLong ZEXPORT adler32_combine OF((uLong, uLong, z_off_t));
1901 ZEXTERN uLong ZEXPORT crc32_combine OF((uLong, uLong, z_off_t));
1902#endif
1903
1904#else /* Z_SOLO */
1905
1906 ZEXTERN uLong ZEXPORT adler32_combine OF((uLong, uLong, z_off_t));
1907 ZEXTERN uLong ZEXPORT crc32_combine OF((uLong, uLong, z_off_t));
1908
1909#endif /* !Z_SOLO */
1910
1911/* undocumented functions */
1912ZEXTERN const char * ZEXPORT zError OF((int));
1913ZEXTERN int ZEXPORT inflateSyncPoint OF((z_streamp));
1914ZEXTERN const z_crc_t FAR * ZEXPORT get_crc_table OF((void));
1915ZEXTERN int ZEXPORT inflateUndermine OF((z_streamp, int))
1916 __API_AVAILABLE(macos(10.7),ios(5.0));
1917ZEXTERN int ZEXPORT inflateValidate OF((z_streamp, int))
1918 __API_AVAILABLE(macos(10.13),ios(11.0));
1919ZEXTERN unsigned long ZEXPORT inflateCodesUsed OF ((z_streamp))
1920 __API_AVAILABLE(macos(10.13),ios(11.0));
1921ZEXTERN int ZEXPORT inflateResetKeep OF((z_streamp))
1922 __API_AVAILABLE(macos(10.10),ios(8.0));
1923ZEXTERN int ZEXPORT deflateResetKeep OF((z_streamp))
1924 __API_AVAILABLE(macos(10.10),ios(8.0));
1925#if (defined(_WIN32) || defined(__CYGWIN__)) && !defined(Z_SOLO)
1926ZEXTERN gzFile ZEXPORT gzopen_w OF((const wchar_t *path,
1927 const char *mode));
1928#endif
1929#if defined(STDC) || defined(Z_HAVE_STDARG_H)
1930# ifndef Z_SOLO
1931ZEXTERN int ZEXPORTVA gzvprintf Z_ARG((gzFile file,
1932 const char *format,
1933 va_list va))
1934 __API_AVAILABLE(macos(10.10),ios(8.0));
1935# endif
1936#endif
1937
1938#ifdef __cplusplus
1939}
1940#endif
1941
1942#ifndef __APPLE__
1943#undef __API_AVAILABLE
1944#endif /* !__APPLE__ */
1945
1946#endif /* ZLIB_H */
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