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Signed-off-by: Sergey Isakov <isakov-sl@bk.ru>
210 lines
10 KiB
Groff
210 lines
10 KiB
Groff
.TH ANTLR 1 "September 1995" "ANTLR" "PCCTS Manual Pages"
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.SH NAME
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antlr \- ANother Tool for Language Recognition
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.SH SYNTAX
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.LP
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\fBantlr\fR [\fIoptions\fR] \fIgrammar_files\fR
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.SH DESCRIPTION
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.PP
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\fIAntlr\fP converts an extended form of context-free grammar into a
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set of C functions which directly implement an efficient form of
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deterministic recursive-descent LL(k) parser. Context-free grammars
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may be augmented with predicates to allow semantics to influence
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parsing; this allows a form of context-sensitive parsing. Selective
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backtracking is also available to handle non-LL(k) and even
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non-LALR(k) constructs. \fIAntlr\fP also produces a definition of a
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lexer which can be automatically converted into C code for a DFA-based
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lexer by \fIdlg\fR. Hence, \fIantlr\fR serves a function much like
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that of \fIyacc\fR, however, it is notably more flexible and is more
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integrated with a lexer generator (\fIantlr\fR directly generates
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\fIdlg\fR code, whereas \fIyacc\fR and \fIlex\fR are given independent
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descriptions). Unlike \fIyacc\fR which accepts LALR(1) grammars,
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\fIantlr\fR accepts LL(k) grammars in an extended BNF notation \(em
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which eliminates the need for precedence rules.
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.PP
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Like \fIyacc\fR grammars, \fIantlr\fR grammars can use
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automatically-maintained symbol attribute values referenced as dollar
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variables. Further, because \fIantlr\fR generates top-down parsers,
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arbitrary values may be inherited from parent rules (passed like
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function parameters). \fIAntlr\fP also has a mechanism for creating
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and manipulating abstract-syntax-trees.
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.PP
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There are various other niceties in \fIantlr\fR, including the ability to
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spread one grammar over multiple files or even multiple grammars in a single
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file, the ability to generate a version of the grammar with actions stripped
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out (for documentation purposes), and lots more.
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.SH OPTIONS
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.IP "\fB-ck \fIn\fR"
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Use up to \fIn\fR symbols of lookahead when using compressed (linear
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approximation) lookahead. This type of lookahead is very cheap to
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compute and is attempted before full LL(k) lookahead, which is of
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exponential complexity in the worst case. In general, the compressed
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lookahead can be much deeper (e.g, \f(CW-ck 10\fP) than the full
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lookahead (which usually must be less than 4).
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.IP \fB-CC\fP
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Generate C++ output from both ANTLR and DLG.
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.IP \fB-cr\fP
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Generate a cross-reference for all rules. For each rule, print a list
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of all other rules that reference it.
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.IP \fB-e1\fP
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Ambiguities/errors shown in low detail (default).
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.IP \fB-e2\fP
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Ambiguities/errors shown in more detail.
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.IP \fB-e3\fP
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Ambiguities/errors shown in excruciating detail.
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.IP "\fB-fe\fP file"
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Rename \fBerr.c\fP to file.
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.IP "\fB-fh\fP file"
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Rename \fBstdpccts.h\fP header (turns on \fB-gh\fP) to file.
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.IP "\fB-fl\fP file"
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Rename lexical output, \fBparser.dlg\fP, to file.
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.IP "\fB-fm\fP file"
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Rename file with lexical mode definitions, \fBmode.h\fP, to file.
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.IP "\fB-fr\fP file"
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Rename file which remaps globally visible symbols, \fBremap.h\fP, to file.
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.IP "\fB-ft\fP file"
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Rename \fBtokens.h\fP to file.
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.IP \fB-ga\fP
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Generate ANSI-compatible code (default case). This has not been
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rigorously tested to be ANSI XJ11 C compliant, but it is close. The
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normal output of \fIantlr\fP is currently compilable under both K&R,
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ANSI C, and C++\(emthis option does nothing because \fIantlr\fP
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generates a bunch of #ifdef's to do the right thing depending on the
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language.
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.IP \fB-gc\fP
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Indicates that \fIantlr\fP should generate no C code, i.e., only
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perform analysis on the grammar.
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.IP \fB-gd\fP
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C code is inserted in each of the \fIantlr\fR generated parsing functions to
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provide for user-defined handling of a detailed parse trace. The inserted
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code consists of calls to the user-supplied macros or functions called
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\fBzzTRACEIN\fR and \fBzzTRACEOUT\fP. The only argument is a
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\fIchar *\fR pointing to a C-style string which is the grammar rule
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recognized by the current parsing function. If no definition is given
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for the trace functions, upon rule entry and exit, a message will be
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printed indicating that a particular rule as been entered or exited.
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.IP \fB-ge\fP
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Generate an error class for each non-terminal.
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.IP \fB-gh\fP
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Generate \fBstdpccts.h\fP for non-ANTLR-generated files to include.
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This file contains all defines needed to describe the type of parser
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generated by \fIantlr\fP (e.g. how much lookahead is used and whether
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or not trees are constructed) and contains the \fBheader\fP action
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specified by the user.
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.IP \fB-gk\fP
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Generate parsers that delay lookahead fetches until needed. Without
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this option, \fIantlr\fP generates parsers which always have \fIk\fP
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tokens of lookahead available.
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.IP \fB-gl\fP
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Generate line info about grammar actions in C parser of the form
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\fB#\ \fIline\fP\ "\fIfile\fP"\fR which makes error messages from
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the C/C++ compiler make more sense as they will \*Qpoint\*U into the
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grammar file not the resulting C file. Debugging is easier as well,
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because you will step through the grammar not C file.
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.IP \fB-gs\fR
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Do not generate sets for token expression lists; instead generate a
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\fB||\fP-separated sequence of \fBLA(1)==\fItoken_number\fR. The
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default is to generate sets.
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.IP \fB-gt\fP
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Generate code for Abstract-Syntax Trees.
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.IP \fB-gx\fP
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Do not create the lexical analyzer files (dlg-related). This option
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should be given when the user wishes to provide a customized lexical
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analyzer. It may also be used in \fImake\fR scripts to cause only the
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parser to be rebuilt when a change not affecting the lexical structure
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is made to the input grammars.
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.IP "\fB-k \fIn\fR"
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Set k of LL(k) to \fIn\fR; i.e. set tokens of look-ahead (default==1).
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.IP "\fB-o\fP dir
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Directory where output files should go (default="."). This is very
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nice for keeping the source directory clear of ANTLR and DLG spawn.
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.IP \fB-p\fP
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The complete grammar, collected from all input grammar files and
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stripped of all comments and embedded actions, is listed to
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\fBstdout\fP. This is intended to aid in viewing the entire grammar
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as a whole and to eliminate the need to keep actions concisely stated
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so that the grammar is easier to read. Hence, it is preferable to
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embed even complex actions directly in the grammar, rather than to
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call them as subroutines, since the subroutine call overhead will be
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saved.
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.IP \fB-pa\fP
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This option is the same as \fB-p\fP except that the output is
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annotated with the first sets determined from grammar analysis.
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.IP "\fB-prc on\fR
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Turn on the computation and hoisting of predicate context.
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.IP "\fB-prc off\fR
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Turn off the computation and hoisting of predicate context. This
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option makes 1.10 behave like the 1.06 release with option \fB-pr\fR
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on. Context computation is off by default.
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.IP "\fB-rl \fIn\fR
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Limit the maximum number of tree nodes used by grammar analysis to
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\fIn\fP. Occasionally, \fIantlr\fP is unable to analyze a grammar
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submitted by the user. This rare situation can only occur when the
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grammar is large and the amount of lookahead is greater than one. A
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nonlinear analysis algorithm is used by PCCTS to handle the general
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case of LL(k) parsing. The average complexity of analysis, however, is
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near linear due to some fancy footwork in the implementation which
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reduces the number of calls to the full LL(k) algorithm. An error
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message will be displayed, if this limit is reached, which indicates
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the grammar construct being analyzed when \fIantlr\fP hit a
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non-linearity. Use this option if \fIantlr\fP seems to go out to
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lunch and your disk start thrashing; try \fIn\fP=10000 to start. Once
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the offending construct has been identified, try to remove the
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ambiguity that \fIantlr\fP was trying to overcome with large lookahead
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analysis. The introduction of (...)? backtracking blocks eliminates
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some of these problems\ \(em \fIantlr\fP does not analyze alternatives
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that begin with (...)? (it simply backtracks, if necessary, at run
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time).
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.IP \fB-w1\fR
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Set low warning level. Do not warn if semantic predicates and/or
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(...)? blocks are assumed to cover ambiguous alternatives.
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.IP \fB-w2\fR
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Ambiguous parsing decisions yield warnings even if semantic predicates
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or (...)? blocks are used. Warn if predicate context computed and
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semantic predicates incompletely disambiguate alternative productions.
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.IP \fB-\fR
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Read grammar from standard input and generate \fBstdin.c\fP as the
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parser file.
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.SH "SPECIAL CONSIDERATIONS"
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.PP
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\fIAntlr\fP works... we think. There is no implicit guarantee of
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anything. We reserve no \fBlegal\fP rights to the software known as
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the Purdue Compiler Construction Tool Set (PCCTS) \(em PCCTS is in the
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public domain. An individual or company may do whatever they wish
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with source code distributed with PCCTS or the code generated by
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PCCTS, including the incorporation of PCCTS, or its output, into
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commercial software. We encourage users to develop software with
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PCCTS. However, we do ask that credit is given to us for developing
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PCCTS. By "credit", we mean that if you incorporate our source code
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into one of your programs (commercial product, research project, or
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otherwise) that you acknowledge this fact somewhere in the
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documentation, research report, etc... If you like PCCTS and have
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developed a nice tool with the output, please mention that you
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developed it using PCCTS. As long as these guidelines are followed,
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we expect to continue enhancing this system and expect to make other
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tools available as they are completed.
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.SH FILES
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.IP *.c
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output C parser.
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.IP *.cpp
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output C++ parser when C++ mode is used.
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.IP \fBparser.dlg\fP
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output \fIdlg\fR lexical analyzer.
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.IP \fBerr.c\fP
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token string array, error sets and error support routines. Not used in
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C++ mode.
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.IP \fBremap.h\fP
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file that redefines all globally visible parser symbols. The use of
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the #parser directive creates this file. Not used in
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C++ mode.
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.IP \fBstdpccts.h\fP
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list of definitions needed by C files, not generated by PCCTS, that
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reference PCCTS objects. This is not generated by default. Not used in
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C++ mode.
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.IP \fBtokens.h\fP
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output \fI#defines\fR for tokens used and function prototypes for
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functions generated for rules.
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.SH "SEE ALSO"
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.LP
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dlg(1), pccts(1)
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