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574
include/_regex.h
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574
include/_regex.h
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/* Definitions for data structures and routines for the regular
|
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expression library.
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Copyright (C) 1985,1989-93,1995-98,2000,2001,2002
|
||||
Free Software Foundation, Inc.
|
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This file is part of the GNU C Library.
|
||||
|
||||
The GNU C Library is free software; you can redistribute it and/or
|
||||
modify it under the terms of the GNU Lesser General Public
|
||||
License as published by the Free Software Foundation; either
|
||||
version 2.1 of the License, or (at your option) any later version.
|
||||
|
||||
The GNU C Library is distributed in the hope that it will be useful,
|
||||
but WITHOUT ANY WARRANTY; without even the implied warranty of
|
||||
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
|
||||
Lesser General Public License for more details.
|
||||
|
||||
You should have received a copy of the GNU Lesser General Public
|
||||
License along with the GNU C Library; if not, write to the Free
|
||||
Software Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA
|
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02111-1307 USA. */
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#ifndef _REGEX_H
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#define _REGEX_H 1
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|
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/* Allow the use in C++ code. */
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#ifdef __cplusplus
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extern "C" {
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#endif
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/* POSIX says that <sys/types.h> must be included (by the caller) before
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<regex.h>. */
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#if !defined _POSIX_C_SOURCE && !defined _POSIX_SOURCE && defined VMS
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/* VMS doesn't have `size_t' in <sys/types.h>, even though POSIX says it
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should be there. */
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# include <stddef.h>
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#endif
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/* The following two types have to be signed and unsigned integer type
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||||
wide enough to hold a value of a pointer. For most ANSI compilers
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ptrdiff_t and size_t should be likely OK. Still size of these two
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types is 2 for Microsoft C. Ugh... */
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typedef long int s_reg_t;
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typedef unsigned long int active_reg_t;
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/* The following bits are used to determine the regexp syntax we
|
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recognize. The set/not-set meanings are chosen so that Emacs syntax
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remains the value 0. The bits are given in alphabetical order, and
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the definitions shifted by one from the previous bit; thus, when we
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add or remove a bit, only one other definition need change. */
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typedef unsigned long int reg_syntax_t;
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/* If this bit is not set, then \ inside a bracket expression is literal.
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If set, then such a \ quotes the following character. */
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#define RE_BACKSLASH_ESCAPE_IN_LISTS ((unsigned long int) 1)
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/* If this bit is not set, then + and ? are operators, and \+ and \? are
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literals.
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If set, then \+ and \? are operators and + and ? are literals. */
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#define RE_BK_PLUS_QM (RE_BACKSLASH_ESCAPE_IN_LISTS << 1)
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/* If this bit is set, then character classes are supported. They are:
|
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[:alpha:], [:upper:], [:lower:], [:digit:], [:alnum:], [:xdigit:],
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[:space:], [:print:], [:punct:], [:graph:], and [:cntrl:].
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If not set, then character classes are not supported. */
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#define RE_CHAR_CLASSES (RE_BK_PLUS_QM << 1)
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|
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/* If this bit is set, then ^ and $ are always anchors (outside bracket
|
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expressions, of course).
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If this bit is not set, then it depends:
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^ is an anchor if it is at the beginning of a regular
|
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expression or after an open-group or an alternation operator;
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$ is an anchor if it is at the end of a regular expression, or
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before a close-group or an alternation operator.
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|
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This bit could be (re)combined with RE_CONTEXT_INDEP_OPS, because
|
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POSIX draft 11.2 says that * etc. in leading positions is undefined.
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We already implemented a previous draft which made those constructs
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invalid, though, so we haven't changed the code back. */
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#define RE_CONTEXT_INDEP_ANCHORS (RE_CHAR_CLASSES << 1)
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/* If this bit is set, then special characters are always special
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regardless of where they are in the pattern.
|
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If this bit is not set, then special characters are special only in
|
||||
some contexts; otherwise they are ordinary. Specifically,
|
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* + ? and intervals are only special when not after the beginning,
|
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open-group, or alternation operator. */
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#define RE_CONTEXT_INDEP_OPS (RE_CONTEXT_INDEP_ANCHORS << 1)
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/* If this bit is set, then *, +, ?, and { cannot be first in an re or
|
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immediately after an alternation or begin-group operator. */
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#define RE_CONTEXT_INVALID_OPS (RE_CONTEXT_INDEP_OPS << 1)
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/* If this bit is set, then . matches newline.
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If not set, then it doesn't. */
|
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#define RE_DOT_NEWLINE (RE_CONTEXT_INVALID_OPS << 1)
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|
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/* If this bit is set, then . doesn't match NUL.
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If not set, then it does. */
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#define RE_DOT_NOT_NULL (RE_DOT_NEWLINE << 1)
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/* If this bit is set, nonmatching lists [^...] do not match newline.
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If not set, they do. */
|
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#define RE_HAT_LISTS_NOT_NEWLINE (RE_DOT_NOT_NULL << 1)
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|
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/* If this bit is set, either \{...\} or {...} defines an
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interval, depending on RE_NO_BK_BRACES.
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||||
If not set, \{, \}, {, and } are literals. */
|
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#define RE_INTERVALS (RE_HAT_LISTS_NOT_NEWLINE << 1)
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|
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/* If this bit is set, +, ? and | aren't recognized as operators.
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If not set, they are. */
|
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#define RE_LIMITED_OPS (RE_INTERVALS << 1)
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|
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/* If this bit is set, newline is an alternation operator.
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If not set, newline is literal. */
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#define RE_NEWLINE_ALT (RE_LIMITED_OPS << 1)
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|
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/* If this bit is set, then `{...}' defines an interval, and \{ and \}
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are literals.
|
||||
If not set, then `\{...\}' defines an interval. */
|
||||
#define RE_NO_BK_BRACES (RE_NEWLINE_ALT << 1)
|
||||
|
||||
/* If this bit is set, (...) defines a group, and \( and \) are literals.
|
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If not set, \(...\) defines a group, and ( and ) are literals. */
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#define RE_NO_BK_PARENS (RE_NO_BK_BRACES << 1)
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/* If this bit is set, then \<digit> matches <digit>.
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If not set, then \<digit> is a back-reference. */
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#define RE_NO_BK_REFS (RE_NO_BK_PARENS << 1)
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/* If this bit is set, then | is an alternation operator, and \| is literal.
|
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If not set, then \| is an alternation operator, and | is literal. */
|
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#define RE_NO_BK_VBAR (RE_NO_BK_REFS << 1)
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|
||||
/* If this bit is set, then an ending range point collating higher
|
||||
than the starting range point, as in [z-a], is invalid.
|
||||
If not set, then when ending range point collates higher than the
|
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starting range point, the range is ignored. */
|
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#define RE_NO_EMPTY_RANGES (RE_NO_BK_VBAR << 1)
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/* If this bit is set, then an unmatched ) is ordinary.
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If not set, then an unmatched ) is invalid. */
|
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#define RE_UNMATCHED_RIGHT_PAREN_ORD (RE_NO_EMPTY_RANGES << 1)
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/* If this bit is set, succeed as soon as we match the whole pattern,
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without further backtracking. */
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#define RE_NO_POSIX_BACKTRACKING (RE_UNMATCHED_RIGHT_PAREN_ORD << 1)
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/* If this bit is set, do not process the GNU regex operators.
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If not set, then the GNU regex operators are recognized. */
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#define RE_NO_GNU_OPS (RE_NO_POSIX_BACKTRACKING << 1)
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/* If this bit is set, turn on internal regex debugging.
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If not set, and debugging was on, turn it off.
|
||||
This only works if regex.c is compiled -DDEBUG.
|
||||
We define this bit always, so that all that's needed to turn on
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||||
debugging is to recompile regex.c; the calling code can always have
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this bit set, and it won't affect anything in the normal case. */
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#define RE_DEBUG (RE_NO_GNU_OPS << 1)
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/* If this bit is set, a syntactically invalid interval is treated as
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a string of ordinary characters. For example, the ERE 'a{1' is
|
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treated as 'a\{1'. */
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#define RE_INVALID_INTERVAL_ORD (RE_DEBUG << 1)
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/* If this bit is set, then ignore case when matching.
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If not set, then case is significant. */
|
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#define RE_ICASE (RE_INVALID_INTERVAL_ORD << 1)
|
||||
|
||||
/* This global variable defines the particular regexp syntax to use (for
|
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some interfaces). When a regexp is compiled, the syntax used is
|
||||
stored in the pattern buffer, so changing this does not affect
|
||||
already-compiled regexps. */
|
||||
extern reg_syntax_t re_syntax_options;
|
||||
|
||||
/* Define combinations of the above bits for the standard possibilities.
|
||||
(The [[[ comments delimit what gets put into the Texinfo file, so
|
||||
don't delete them!) */
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/* [[[begin syntaxes]]] */
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#define RE_SYNTAX_EMACS 0
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|
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#define RE_SYNTAX_AWK \
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(RE_BACKSLASH_ESCAPE_IN_LISTS | RE_DOT_NOT_NULL \
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| RE_NO_BK_PARENS | RE_NO_BK_REFS \
|
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| RE_NO_BK_VBAR | RE_NO_EMPTY_RANGES \
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| RE_DOT_NEWLINE | RE_CONTEXT_INDEP_ANCHORS \
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| RE_UNMATCHED_RIGHT_PAREN_ORD | RE_NO_GNU_OPS)
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#define RE_SYNTAX_GNU_AWK \
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((RE_SYNTAX_POSIX_EXTENDED | RE_BACKSLASH_ESCAPE_IN_LISTS | RE_DEBUG) \
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& ~(RE_DOT_NOT_NULL | RE_INTERVALS | RE_CONTEXT_INDEP_OPS \
|
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| RE_CONTEXT_INVALID_OPS ))
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|
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#define RE_SYNTAX_POSIX_AWK \
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(RE_SYNTAX_POSIX_EXTENDED | RE_BACKSLASH_ESCAPE_IN_LISTS \
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| RE_INTERVALS | RE_NO_GNU_OPS)
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|
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#define RE_SYNTAX_GREP \
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(RE_BK_PLUS_QM | RE_CHAR_CLASSES \
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| RE_HAT_LISTS_NOT_NEWLINE | RE_INTERVALS \
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| RE_NEWLINE_ALT)
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#define RE_SYNTAX_EGREP \
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(RE_CHAR_CLASSES | RE_CONTEXT_INDEP_ANCHORS \
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| RE_CONTEXT_INDEP_OPS | RE_HAT_LISTS_NOT_NEWLINE \
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| RE_NEWLINE_ALT | RE_NO_BK_PARENS \
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| RE_NO_BK_VBAR)
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#define RE_SYNTAX_POSIX_EGREP \
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(RE_SYNTAX_EGREP | RE_INTERVALS | RE_NO_BK_BRACES \
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| RE_INVALID_INTERVAL_ORD)
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/* P1003.2/D11.2, section 4.20.7.1, lines 5078ff. */
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#define RE_SYNTAX_ED RE_SYNTAX_POSIX_BASIC
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#define RE_SYNTAX_SED RE_SYNTAX_POSIX_BASIC
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/* Syntax bits common to both basic and extended POSIX regex syntax. */
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#define _RE_SYNTAX_POSIX_COMMON \
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(RE_CHAR_CLASSES | RE_DOT_NEWLINE | RE_DOT_NOT_NULL \
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| RE_INTERVALS | RE_NO_EMPTY_RANGES)
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#define RE_SYNTAX_POSIX_BASIC \
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(_RE_SYNTAX_POSIX_COMMON | RE_BK_PLUS_QM)
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/* Differs from ..._POSIX_BASIC only in that RE_BK_PLUS_QM becomes
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RE_LIMITED_OPS, i.e., \? \+ \| are not recognized. Actually, this
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isn't minimal, since other operators, such as \`, aren't disabled. */
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#define RE_SYNTAX_POSIX_MINIMAL_BASIC \
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(_RE_SYNTAX_POSIX_COMMON | RE_LIMITED_OPS)
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#define RE_SYNTAX_POSIX_EXTENDED \
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(_RE_SYNTAX_POSIX_COMMON | RE_CONTEXT_INDEP_ANCHORS \
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| RE_CONTEXT_INDEP_OPS | RE_NO_BK_BRACES \
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| RE_NO_BK_PARENS | RE_NO_BK_VBAR \
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| RE_CONTEXT_INVALID_OPS | RE_UNMATCHED_RIGHT_PAREN_ORD)
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/* Differs from ..._POSIX_EXTENDED in that RE_CONTEXT_INDEP_OPS is
|
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removed and RE_NO_BK_REFS is added. */
|
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#define RE_SYNTAX_POSIX_MINIMAL_EXTENDED \
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(_RE_SYNTAX_POSIX_COMMON | RE_CONTEXT_INDEP_ANCHORS \
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| RE_CONTEXT_INVALID_OPS | RE_NO_BK_BRACES \
|
||||
| RE_NO_BK_PARENS | RE_NO_BK_REFS \
|
||||
| RE_NO_BK_VBAR | RE_UNMATCHED_RIGHT_PAREN_ORD)
|
||||
/* [[[end syntaxes]]] */
|
||||
|
||||
/* Maximum number of duplicates an interval can allow. Some systems
|
||||
(erroneously) define this in other header files, but we want our
|
||||
value, so remove any previous define. */
|
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#ifdef RE_DUP_MAX
|
||||
# undef RE_DUP_MAX
|
||||
#endif
|
||||
/* If sizeof(int) == 2, then ((1 << 15) - 1) overflows. */
|
||||
#define RE_DUP_MAX (0x7fff)
|
||||
|
||||
|
||||
/* POSIX `cflags' bits (i.e., information for `regcomp'). */
|
||||
|
||||
/* If this bit is set, then use extended regular expression syntax.
|
||||
If not set, then use basic regular expression syntax. */
|
||||
#define REG_EXTENDED 1
|
||||
|
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/* If this bit is set, then ignore case when matching.
|
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If not set, then case is significant. */
|
||||
#define REG_ICASE (REG_EXTENDED << 1)
|
||||
|
||||
/* If this bit is set, then anchors do not match at newline
|
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characters in the string.
|
||||
If not set, then anchors do match at newlines. */
|
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#define REG_NEWLINE (REG_ICASE << 1)
|
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|
||||
/* If this bit is set, then report only success or fail in regexec.
|
||||
If not set, then returns differ between not matching and errors. */
|
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#define REG_NOSUB (REG_NEWLINE << 1)
|
||||
|
||||
|
||||
/* POSIX `eflags' bits (i.e., information for regexec). */
|
||||
|
||||
/* If this bit is set, then the beginning-of-line operator doesn't match
|
||||
the beginning of the string (presumably because it's not the
|
||||
beginning of a line).
|
||||
If not set, then the beginning-of-line operator does match the
|
||||
beginning of the string. */
|
||||
#define REG_NOTBOL 1
|
||||
|
||||
/* Like REG_NOTBOL, except for the end-of-line. */
|
||||
#define REG_NOTEOL (1 << 1)
|
||||
|
||||
|
||||
/* If any error codes are removed, changed, or added, update the
|
||||
`re_error_msg' table in regex.c. */
|
||||
typedef enum
|
||||
{
|
||||
#ifdef _XOPEN_SOURCE
|
||||
REG_ENOSYS = -1, /* This will never happen for this implementation. */
|
||||
#endif
|
||||
|
||||
REG_NOERROR = 0, /* Success. */
|
||||
REG_NOMATCH, /* Didn't find a match (for regexec). */
|
||||
|
||||
/* POSIX regcomp return error codes. (In the order listed in the
|
||||
standard.) */
|
||||
REG_BADPAT, /* Invalid pattern. */
|
||||
REG_ECOLLATE, /* Not implemented. */
|
||||
REG_ECTYPE, /* Invalid character class name. */
|
||||
REG_EESCAPE, /* Trailing backslash. */
|
||||
REG_ESUBREG, /* Invalid back reference. */
|
||||
REG_EBRACK, /* Unmatched left bracket. */
|
||||
REG_EPAREN, /* Parenthesis imbalance. */
|
||||
REG_EBRACE, /* Unmatched \{. */
|
||||
REG_BADBR, /* Invalid contents of \{\}. */
|
||||
REG_ERANGE, /* Invalid range end. */
|
||||
REG_ESPACE, /* Ran out of memory. */
|
||||
REG_BADRPT, /* No preceding re for repetition op. */
|
||||
|
||||
/* Error codes we've added. */
|
||||
REG_EEND, /* Premature end. */
|
||||
REG_ESIZE, /* Compiled pattern bigger than 2^16 bytes. */
|
||||
REG_ERPAREN /* Unmatched ) or \); not returned from regcomp. */
|
||||
} reg_errcode_t;
|
||||
|
||||
/* This data structure represents a compiled pattern. Before calling
|
||||
the pattern compiler, the fields `buffer', `allocated', `fastmap',
|
||||
`translate', and `no_sub' can be set. After the pattern has been
|
||||
compiled, the `re_nsub' field is available. All other fields are
|
||||
private to the regex routines. */
|
||||
|
||||
#ifndef RE_TRANSLATE_TYPE
|
||||
# define RE_TRANSLATE_TYPE char *
|
||||
#endif
|
||||
|
||||
struct re_pattern_buffer
|
||||
{
|
||||
/* [[[begin pattern_buffer]]] */
|
||||
/* Space that holds the compiled pattern. It is declared as
|
||||
`unsigned char *' because its elements are
|
||||
sometimes used as array indexes. */
|
||||
unsigned char *buffer;
|
||||
|
||||
/* Number of bytes to which `buffer' points. */
|
||||
unsigned long int allocated;
|
||||
|
||||
/* Number of bytes actually used in `buffer'. */
|
||||
unsigned long int used;
|
||||
|
||||
/* Syntax setting with which the pattern was compiled. */
|
||||
reg_syntax_t syntax;
|
||||
|
||||
/* Pointer to a fastmap, if any, otherwise zero. re_search uses
|
||||
the fastmap, if there is one, to skip over impossible
|
||||
starting points for matches. */
|
||||
char *fastmap;
|
||||
|
||||
/* Either a translate table to apply to all characters before
|
||||
comparing them, or zero for no translation. The translation
|
||||
is applied to a pattern when it is compiled and to a string
|
||||
when it is matched. */
|
||||
RE_TRANSLATE_TYPE translate;
|
||||
|
||||
/* Number of subexpressions found by the compiler. */
|
||||
size_t re_nsub;
|
||||
|
||||
/* Zero if this pattern cannot match the empty string, one else.
|
||||
Well, in truth it's used only in `re_search_2', to see
|
||||
whether or not we should use the fastmap, so we don't set
|
||||
this absolutely perfectly; see `re_compile_fastmap' (the
|
||||
`duplicate' case). */
|
||||
unsigned can_be_null : 1;
|
||||
|
||||
/* If REGS_UNALLOCATED, allocate space in the `regs' structure
|
||||
for `max (RE_NREGS, re_nsub + 1)' groups.
|
||||
If REGS_REALLOCATE, reallocate space if necessary.
|
||||
If REGS_FIXED, use what's there. */
|
||||
#define REGS_UNALLOCATED 0
|
||||
#define REGS_REALLOCATE 1
|
||||
#define REGS_FIXED 2
|
||||
unsigned regs_allocated : 2;
|
||||
|
||||
/* Set to zero when `regex_compile' compiles a pattern; set to one
|
||||
by `re_compile_fastmap' if it updates the fastmap. */
|
||||
unsigned fastmap_accurate : 1;
|
||||
|
||||
/* If set, `re_match_2' does not return information about
|
||||
subexpressions. */
|
||||
unsigned no_sub : 1;
|
||||
|
||||
/* If set, a beginning-of-line anchor doesn't match at the
|
||||
beginning of the string. */
|
||||
unsigned not_bol : 1;
|
||||
|
||||
/* Similarly for an end-of-line anchor. */
|
||||
unsigned not_eol : 1;
|
||||
|
||||
/* If true, an anchor at a newline matches. */
|
||||
unsigned newline_anchor : 1;
|
||||
|
||||
/* [[[end pattern_buffer]]] */
|
||||
};
|
||||
|
||||
typedef struct re_pattern_buffer regex_t;
|
||||
|
||||
/* Type for byte offsets within the string. POSIX mandates this. */
|
||||
typedef int regoff_t;
|
||||
|
||||
|
||||
/* This is the structure we store register match data in. See
|
||||
regex.texinfo for a full description of what registers match. */
|
||||
struct re_registers
|
||||
{
|
||||
unsigned num_regs;
|
||||
regoff_t *start;
|
||||
regoff_t *end;
|
||||
};
|
||||
|
||||
|
||||
/* If `regs_allocated' is REGS_UNALLOCATED in the pattern buffer,
|
||||
`re_match_2' returns information about at least this many registers
|
||||
the first time a `regs' structure is passed. */
|
||||
#ifndef RE_NREGS
|
||||
# define RE_NREGS 30
|
||||
#endif
|
||||
|
||||
|
||||
/* POSIX specification for registers. Aside from the different names than
|
||||
`re_registers', POSIX uses an array of structures, instead of a
|
||||
structure of arrays. */
|
||||
typedef struct
|
||||
{
|
||||
regoff_t rm_so; /* Byte offset from string's start to substring's start. */
|
||||
regoff_t rm_eo; /* Byte offset from string's start to substring's end. */
|
||||
} regmatch_t;
|
||||
|
||||
/* Declarations for routines. */
|
||||
|
||||
/* To avoid duplicating every routine declaration -- once with a
|
||||
prototype (if we are ANSI), and once without (if we aren't) -- we
|
||||
use the following macro to declare argument types. This
|
||||
unfortunately clutters up the declarations a bit, but I think it's
|
||||
worth it. */
|
||||
|
||||
#if __STDC__
|
||||
|
||||
# define _RE_ARGS(args) args
|
||||
|
||||
#else /* not __STDC__ */
|
||||
|
||||
# define _RE_ARGS(args) ()
|
||||
|
||||
#endif /* not __STDC__ */
|
||||
|
||||
/* Sets the current default syntax to SYNTAX, and return the old syntax.
|
||||
You can also simply assign to the `re_syntax_options' variable. */
|
||||
extern reg_syntax_t re_set_syntax _RE_ARGS ((reg_syntax_t syntax));
|
||||
|
||||
/* Compile the regular expression PATTERN, with length LENGTH
|
||||
and syntax given by the global `re_syntax_options', into the buffer
|
||||
BUFFER. Return NULL if successful, and an error string if not. */
|
||||
extern const char *re_compile_pattern
|
||||
_RE_ARGS ((const char *pattern, size_t length,
|
||||
struct re_pattern_buffer *buffer));
|
||||
|
||||
|
||||
/* Compile a fastmap for the compiled pattern in BUFFER; used to
|
||||
accelerate searches. Return 0 if successful and -2 if was an
|
||||
internal error. */
|
||||
extern int re_compile_fastmap _RE_ARGS ((struct re_pattern_buffer *buffer));
|
||||
|
||||
|
||||
/* Search in the string STRING (with length LENGTH) for the pattern
|
||||
compiled into BUFFER. Start searching at position START, for RANGE
|
||||
characters. Return the starting position of the match, -1 for no
|
||||
match, or -2 for an internal error. Also return register
|
||||
information in REGS (if REGS and BUFFER->no_sub are nonzero). */
|
||||
extern int re_search
|
||||
_RE_ARGS ((struct re_pattern_buffer *buffer, const char *string,
|
||||
int length, int start, int range, struct re_registers *regs));
|
||||
|
||||
|
||||
/* Like `re_search', but search in the concatenation of STRING1 and
|
||||
STRING2. Also, stop searching at index START + STOP. */
|
||||
extern int re_search_2
|
||||
_RE_ARGS ((struct re_pattern_buffer *buffer, const char *string1,
|
||||
int length1, const char *string2, int length2,
|
||||
int start, int range, struct re_registers *regs, int stop));
|
||||
|
||||
|
||||
/* Like `re_search', but return how many characters in STRING the regexp
|
||||
in BUFFER matched, starting at position START. */
|
||||
extern int re_match
|
||||
_RE_ARGS ((struct re_pattern_buffer *buffer, const char *string,
|
||||
int length, int start, struct re_registers *regs));
|
||||
|
||||
|
||||
/* Relates to `re_match' as `re_search_2' relates to `re_search'. */
|
||||
extern int re_match_2
|
||||
_RE_ARGS ((struct re_pattern_buffer *buffer, const char *string1,
|
||||
int length1, const char *string2, int length2,
|
||||
int start, struct re_registers *regs, int stop));
|
||||
|
||||
|
||||
/* Set REGS to hold NUM_REGS registers, storing them in STARTS and
|
||||
ENDS. Subsequent matches using BUFFER and REGS will use this memory
|
||||
for recording register information. STARTS and ENDS must be
|
||||
allocated with malloc, and must each be at least `NUM_REGS * sizeof
|
||||
(regoff_t)' bytes long.
|
||||
|
||||
If NUM_REGS == 0, then subsequent matches should allocate their own
|
||||
register data.
|
||||
|
||||
Unless this function is called, the first search or match using
|
||||
PATTERN_BUFFER will allocate its own register data, without
|
||||
freeing the old data. */
|
||||
extern void re_set_registers
|
||||
_RE_ARGS ((struct re_pattern_buffer *buffer, struct re_registers *regs,
|
||||
unsigned num_regs, regoff_t *starts, regoff_t *ends));
|
||||
|
||||
#if defined _REGEX_RE_COMP || defined _LIBC
|
||||
# ifndef _CRAY
|
||||
/* 4.2 bsd compatibility. */
|
||||
extern char *re_comp _RE_ARGS ((const char *));
|
||||
extern int re_exec _RE_ARGS ((const char *));
|
||||
# endif
|
||||
#endif
|
||||
|
||||
/* GCC 2.95 and later have "__restrict"; C99 compilers have
|
||||
"restrict", and "configure" may have defined "restrict". */
|
||||
#ifndef __restrict
|
||||
# if ! (2 < __GNUC__ || (2 == __GNUC__ && 95 <= __GNUC_MINOR__))
|
||||
# if defined restrict || 199901L <= __STDC_VERSION__
|
||||
# define __restrict restrict
|
||||
# else
|
||||
# define __restrict
|
||||
# endif
|
||||
# endif
|
||||
#endif
|
||||
/* gcc 3.1 and up support the [restrict] syntax. */
|
||||
#ifndef __restrict_arr
|
||||
# if __GNUC__ > 3 || (__GNUC__ == 3 && __GNUC_MINOR__ >= 1)
|
||||
# define __restrict_arr __restrict
|
||||
# else
|
||||
# define __restrict_arr
|
||||
# endif
|
||||
#endif
|
||||
|
||||
/* POSIX compatibility. */
|
||||
extern int regcomp _RE_ARGS ((regex_t *__restrict __preg,
|
||||
const char *__restrict __pattern,
|
||||
int __cflags));
|
||||
|
||||
extern int regexec _RE_ARGS ((const regex_t *__restrict __preg,
|
||||
const char *__restrict __string, size_t __nmatch,
|
||||
regmatch_t __pmatch[__restrict_arr],
|
||||
int __eflags));
|
||||
|
||||
extern size_t regerror _RE_ARGS ((int __errcode, const regex_t *__preg,
|
||||
char *__errbuf, size_t __errbuf_size));
|
||||
|
||||
extern void regfree _RE_ARGS ((regex_t *__preg));
|
||||
|
||||
|
||||
#ifdef __cplusplus
|
||||
}
|
||||
#endif /* C++ */
|
||||
|
||||
#endif /* regex.h */
|
||||
|
||||
/*
|
||||
Local variables:
|
||||
make-backup-files: t
|
||||
version-control: t
|
||||
trim-versions-without-asking: nil
|
||||
End:
|
||||
*/
|
15
include/distfiles
Normal file
15
include/distfiles
Normal file
|
@ -0,0 +1,15 @@
|
|||
cipher.h
|
||||
errors.h
|
||||
iobuf.h
|
||||
memory.h
|
||||
mpi.h
|
||||
ttyio.h
|
||||
types.h
|
||||
util.h
|
||||
i18n.h
|
||||
host2net.h
|
||||
http.h
|
||||
keyserver.h
|
||||
_regex.h
|
||||
|
||||
ChangeLog
|
40
include/ttyio.h
Normal file
40
include/ttyio.h
Normal file
|
@ -0,0 +1,40 @@
|
|||
/* ttyio.h
|
||||
* Copyright (C) 1998, 1999, 2000, 2001 Free Software Foundation, Inc.
|
||||
*
|
||||
* This file is part of GNUPG.
|
||||
*
|
||||
* GNUPG is free software; you can redistribute it and/or modify
|
||||
* it under the terms of the GNU General Public License as published by
|
||||
* the Free Software Foundation; either version 2 of the License, or
|
||||
* (at your option) any later version.
|
||||
*
|
||||
* GNUPG is distributed in the hope that it will be useful,
|
||||
* but WITHOUT ANY WARRANTY; without even the implied warranty of
|
||||
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
|
||||
* GNU General Public License for more details.
|
||||
*
|
||||
* You should have received a copy of the GNU General Public License
|
||||
* along with this program; if not, write to the Free Software
|
||||
* Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA
|
||||
*/
|
||||
#ifndef G10_TTYIO_H
|
||||
#define G10_TTYIO_H
|
||||
|
||||
const char *tty_get_ttyname (void);
|
||||
int tty_batchmode( int onoff );
|
||||
#if __GNUC__ > 2 || (__GNUC__ == 2 && __GNUC_MINOR__ >= 5 )
|
||||
void tty_printf (const char *fmt, ... ) __attribute__ ((format (printf,1,2)));
|
||||
#else
|
||||
void tty_printf (const char *fmt, ... );
|
||||
#endif
|
||||
void tty_print_string( byte *p, size_t n );
|
||||
void tty_print_utf8_string( byte *p, size_t n );
|
||||
void tty_print_utf8_string2( byte *p, size_t n, size_t max_n );
|
||||
char *tty_get( const char *prompt );
|
||||
char *tty_get_hidden( const char *prompt );
|
||||
void tty_kill_prompt(void);
|
||||
int tty_get_answer_is_yes( const char *prompt );
|
||||
int tty_no_terminal(int onoff);
|
||||
|
||||
|
||||
#endif /*G10_TTYIO_H*/
|
134
include/zlib-riscos.h
Normal file
134
include/zlib-riscos.h
Normal file
|
@ -0,0 +1,134 @@
|
|||
/* zlib-riscos.h
|
||||
* Copyright (C) 2002 Free Software Foundation, Inc.
|
||||
*
|
||||
* This file is part of GNUPG.
|
||||
*
|
||||
* GNUPG is free software; you can redistribute it and/or modify
|
||||
* it under the terms of the GNU General Public License as published by
|
||||
* the Free Software Foundation; either version 2 of the License, or
|
||||
* (at your option) any later version.
|
||||
*
|
||||
* GNUPG is distributed in the hope that it will be useful,
|
||||
* but WITHOUT ANY WARRANTY; without even the implied warranty of
|
||||
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
|
||||
* GNU General Public License for more details.
|
||||
*
|
||||
* You should have received a copy of the GNU General Public License
|
||||
* along with this program; if not, write to the Free Software
|
||||
* Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA
|
||||
*/
|
||||
#ifndef G10_ZLIB_RISCOS_H
|
||||
#define G10_ZLIB_RISCOS_H
|
||||
|
||||
#include <kernel.h>
|
||||
#include <swis.h>
|
||||
|
||||
static const char * const zlib_path[] = {
|
||||
"System:310.Modules.ZLib",
|
||||
NULL
|
||||
};
|
||||
|
||||
#define ZLib_Compress 0x53AC0
|
||||
#define ZLib_Decompress 0x53AC1
|
||||
#define ZLib_CRC32 0x53AC2
|
||||
#define ZLib_Adler32 0x53AC3
|
||||
#define ZLib_Version 0x53AC4
|
||||
#define ZLib_ZCompress 0x53AC5
|
||||
#define ZLib_ZCompress2 0x53AC6
|
||||
#define ZLib_ZUncompress 0x53AC7
|
||||
#define ZLib_DeflateInit 0x53AC8
|
||||
#define ZLib_InflateInit 0x53AC9
|
||||
#define ZLib_DeflateInit2 0x53ACA
|
||||
#define ZLib_InflateInit2 0x53ACB
|
||||
#define ZLib_Deflate 0x53ACC
|
||||
#define ZLib_DeflateEnd 0x53ACD
|
||||
#define ZLib_Inflate 0x53ACE
|
||||
#define ZLib_InflateEnd 0x53ACF
|
||||
#define ZLib_DeflateSetDictionary 0x53AD0
|
||||
#define ZLib_DeflateCopy 0x53AD1
|
||||
#define ZLib_DeflateReset 0x53AD2
|
||||
#define ZLib_DeflateParams 0x53AD3
|
||||
#define ZLib_InflateSetDictionary 0x53AD4
|
||||
#define ZLib_InflateSync 0x53AD5
|
||||
#define ZLib_InflateReset 0x53AD6
|
||||
#define ZLib_GZOpen 0x53AD7
|
||||
#define ZLib_GZRead 0x53AD8
|
||||
#define ZLib_GRWrite 0x53AD9
|
||||
#define ZLib_GZFlush 0x53ADA
|
||||
#define ZLib_GZClose 0x53ADB
|
||||
#define ZLib_GZError 0x53ADC
|
||||
#define ZLib_GZSeek 0x53ADD
|
||||
#define ZLib_GZTell 0x53ADE
|
||||
#define ZLib_GZEOF 0x53ADF
|
||||
#define ZLib_TaskAssociate 0x53AE0
|
||||
|
||||
#define crc32(r0,r1,r2) \
|
||||
_swi(ZLib_CRC32, _INR(0,2) | _RETURN(0), r0,r1,r2)
|
||||
#define adler32(r0,r1,r2) \
|
||||
_swi(ZLib_Adler32, _INR(0,2) | _RETURN(0), r0,r1,r2)
|
||||
#define zlibVersion() \
|
||||
_swi(ZLib_Version, _RETURN(0))
|
||||
#define compress(r0,r1,r2,r3) \
|
||||
_swi(ZLib_ZCompress, _INR(0,3) | _RETURN(0)|_OUT(1), r0,r1,r2,r3, &r1)
|
||||
#define compress2(r0,r1,r2,r3,r4) \
|
||||
_swi(ZLib_ZCompress2, _INR(0,4) | _RETURN(0)|_OUT(1), r0,r1,r2,r3,r4, &r1)
|
||||
#define uncompress(r0,r1,r2,r3) \
|
||||
_swi(ZLib_ZUncompress, _INR(0,3) | _RETURN(0)|_OUT(1), r0,r1,r2,r3, &r1)
|
||||
#define deflateInit_(r0,r1,r2,r3) \
|
||||
_swi(ZLib_DeflateInit, _INR(0,3) | _RETURN(0), r0,r1,r2,r3)
|
||||
#define inflateInit_(r0,r1,r2) \
|
||||
_swi(ZLib_InflateInit, _INR(0,2) | _RETURN(0), r0,r1,r2)
|
||||
#define deflateInit2_(r0,r1,r2,r3,r4,r5,r6,r7) \
|
||||
_swi(ZLib_DeflateInit2, _INR(0,7) | _RETURN(0), r0,r1,r2,r3,r4,r5,r6,r7)
|
||||
#define inflateInit2_(r0,r1,r2,r3) \
|
||||
_swi(ZLib_InflateInit2, _INR(0,3) | _RETURN(0), r0,r1,r2,r3)
|
||||
#define deflate(r0,r1) \
|
||||
_swi(ZLib_Deflate, _INR(0,1) | _RETURN(0), r0,r1)
|
||||
#define deflateEnd(r0) \
|
||||
_swi(ZLib_DeflateEnd, _IN(0) | _RETURN(0), r0)
|
||||
#define inflate(r0,r1) \
|
||||
_swi(ZLib_Inflate, _INR(0,1) | _RETURN(0), r0,r1)
|
||||
#define inflateEnd(r0) \
|
||||
_swi(ZLib_InflateEnd, _IN(0) | _RETURN(0), r0)
|
||||
#define deflateSetDictionary(r0,r1,r2) \
|
||||
_swi(ZLib_DeflateSetDictionary, _INR(0,2) | _RETURN(0), r0,r1,r2)
|
||||
#define deflateCopy(r0,r1) \
|
||||
_swi(ZLib_DeflateCopy, _INR(0,1) | _RETURN(0), r0,r1)
|
||||
#define deflateReset(r0) \
|
||||
_swi(ZLib_DeflateReset, _IN(0) | _RETURN(0), r0)
|
||||
#define deflateParams(r0,r1,r2) \
|
||||
_swi(ZLib_DeflateParams, _INR(0,2) | _RETURN(0), r0,r1,r2)
|
||||
#define inflateSetDictionary(r0,r1,r2) \
|
||||
_swi(ZLib_InflateSetDictionary, _INR(0,2) | _RETURN(0), r0,r1,r2)
|
||||
#define inflateSync(r0) \
|
||||
_swi(ZLib_InflateSync, _IN(0) | _RETURN(0), r0)
|
||||
#define inflateReset(r0) \
|
||||
_swi(ZLib_InflateReset, _IN(0) | _RETURN(0), r0)
|
||||
#define gzopen(r0,r1) \
|
||||
_swi(ZLib_GZOpen, _INR(0,1) | _RETURN(0), r0)
|
||||
#define gzdopen(r0,r1) BUG()
|
||||
#define gzsetparams(r0,r1,r2) BUG()
|
||||
#define gzread(r0,r1,r2) \
|
||||
_swi(ZLib_GZRead, _INR(0,2) | _RETURN(0), r0,r1,r2)
|
||||
#define gzwrite(r0,r1,r2) \
|
||||
_swi(ZLib_GZWrite, _INR(0,2) | _RETURN(0), r0,r1,r2)
|
||||
#define gzprintf(r0,r1,...) BUG()
|
||||
#define gzputs(r0,r1) BUG()
|
||||
#define gzgets(r0,r1,r2) BUG()
|
||||
#define gzputc(r0,r1) BUG()
|
||||
#define gzgetc(r0) BUG()
|
||||
#define gzflush(r0,r1) \
|
||||
_swi(ZLib_GZFlush, _INR(0,1) | _RETURN(0), r0,r1)
|
||||
#define gzclose(r0) \
|
||||
_swi(ZLib_GZClose, _IN(0) | _RETURN(0), r0)
|
||||
#define gzerror(r0,r1) \
|
||||
_swi(ZLib_GZError, _IN(0) | _RETURN(0)|_OUT(1), r0, &r1)
|
||||
#define gzseek(r0,r1,r2) \
|
||||
_swi(ZLib_GZSeek, _INR(0,2) | _RETURN(0), r0,r1,r2)
|
||||
#define gzrewind(r0) BUG()
|
||||
#define gztell(r0) \
|
||||
_swi(ZLib_GZTell, _IN(0) | _RETURN(0), r0)
|
||||
#define gzeof(r0) \
|
||||
_swi(ZLib_GZEOF, _IN(0) | _RETURN(0), r0)
|
||||
|
||||
#endif /* G10_ZLIB_RISCOS_H */
|
Loading…
Add table
Add a link
Reference in a new issue