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git-svn-id: svn://svn.lyx.org/lyx/lyx-devel/trunk@27425 a592a061-630c-0410-9148-cb99ea01b6c8
420 lines
9.0 KiB
C++
420 lines
9.0 KiB
C++
// -*- C++ -*-
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/**
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* \file MathStream.h
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* This file is part of LyX, the document processor.
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* Licence details can be found in the file COPYING.
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*
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* \author André Pönitz
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*
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* Full author contact details are available in file CREDITS.
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*/
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#ifndef MATH_MATHMLSTREAM_H
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#define MATH_MATHMLSTREAM_H
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#include "support/strfwd.h"
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#include "InsetMath.h"
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// FIXME: Move to individual insets
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#include "MetricsInfo.h"
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namespace lyx {
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class Encoding;
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class InsetMath;
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class MathAtom;
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class MathData;
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//
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// LaTeX/LyX
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//
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class WriteStream {
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public:
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///
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WriteStream(odocstream & os, bool fragile, bool latex, bool dryrun,
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Encoding const * encoding = 0);
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///
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explicit WriteStream(odocstream & os);
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///
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~WriteStream();
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///
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int line() const { return line_; }
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///
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bool fragile() const { return fragile_; }
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///
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bool latex() const { return latex_; }
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///
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bool dryrun() const { return dryrun_; }
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///
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odocstream & os() { return os_; }
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///
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bool & firstitem() { return firstitem_; }
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///
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void addlines(unsigned int);
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/// writes space if next thing is isalpha()
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void pendingSpace(bool how);
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/// writes space if next thing is isalpha()
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bool pendingSpace() const { return pendingspace_; }
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/// tell whether to write the closing brace of \ensuremath
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void pendingBrace(bool brace);
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/// tell whether to write the closing brace of \ensuremath
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bool pendingBrace() const { return pendingbrace_; }
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/// tell whether we are in text mode or not when producing latex code
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void textMode(bool textmode);
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/// tell whether we are in text mode or not when producing latex code
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bool textMode() const { return textmode_; }
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/// LaTeX encoding
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Encoding const * encoding() const { return encoding_; }
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private:
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///
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odocstream & os_;
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/// do we have to write \\protect sometimes
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bool fragile_;
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/// are we at the beginning of an MathData?
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bool firstitem_;
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/// are we writing to .tex?
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int latex_;
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/// is it for preview?
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bool dryrun_;
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/// do we have a space pending?
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bool pendingspace_;
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/// do we have a brace pending?
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bool pendingbrace_;
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/// are we in text mode when producing latex code?
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bool textmode_;
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///
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int line_;
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///
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Encoding const * encoding_;
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};
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///
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WriteStream & operator<<(WriteStream &, MathAtom const &);
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///
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WriteStream & operator<<(WriteStream &, MathData const &);
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///
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WriteStream & operator<<(WriteStream &, docstring const &);
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///
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WriteStream & operator<<(WriteStream &, char const * const);
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///
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WriteStream & operator<<(WriteStream &, char);
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///
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WriteStream & operator<<(WriteStream &, int);
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///
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WriteStream & operator<<(WriteStream &, unsigned int);
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/// ensure math mode, possibly by opening \ensuremath
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bool ensureMath(WriteStream & os, bool needs_math_mode = true, bool macro = false);
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/// ensure the requested mode, possibly by closing \ensuremath
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bool ensureMode(WriteStream & os, InsetMath::mode_type mode);
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/**
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* MathEnsurer - utility class for ensuring math mode
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*
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* A local variable of this type can be used to either ensure math mode
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* or delay the writing of a pending brace when outputting LaTeX.
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*
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* Example 1:
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*
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* MathEnsurer ensurer(os);
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*
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* If not already in math mode, inserts an \ensuremath command followed
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* by an open brace. This brace will be automatically closed when exiting
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* math mode. Math mode is automatically exited when writing something
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* that doesn't explicitly require math mode.
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*
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* Example 2:
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*
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* MathEnsurer ensurer(os, false);
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*
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* Simply suspend writing a closing brace until the end of ensurer's scope.
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*
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* Example 3:
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*
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* MathEnsurer ensurer(os, needs_math_mode, true);
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*
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* The third parameter is set to true only for a user defined macro, which
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* needs special handling. When it is a MathMacro, the needs_math_mode
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* parameter is true and the behavior is as in Example 1. When the
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* needs_math_mode parameter is false (not a MathMacro) and the macro
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* was entered in a text box and we are in math mode, the mode is reset
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* to text. This is because the macro was probably designed for text mode
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* (given that it was entered in text mode and we have no way to tell the
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* contrary).
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*/
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class MathEnsurer
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{
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public:
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///
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explicit MathEnsurer(WriteStream & os, bool needs_math_mode = true, bool macro = false)
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: os_(os), brace_(ensureMath(os, needs_math_mode, macro)) {}
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///
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~MathEnsurer() { os_.pendingBrace(brace_); }
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private:
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///
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WriteStream & os_;
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///
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bool brace_;
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};
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/**
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* ModeSpecifier - utility class for specifying a given mode (math or text)
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*
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* A local variable of this type can be used to specify that a command or
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* environment works in a given mode. For example, \mbox works in text
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* mode, but \boxed works in math mode. Note that no mode changing commands
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* are needed, but we have to track the current mode, hence this class.
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*
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* Example:
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*
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* ModeSpecifier specifier(os, TEXT_MODE);
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*
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* Sets the current mode to text mode.
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*
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* At the end of specifier's scope the mode is reset to its previous value.
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*/
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class ModeSpecifier
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{
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public:
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///
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explicit ModeSpecifier(WriteStream & os, InsetMath::mode_type mode)
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: os_(os), textmode_(ensureMode(os, mode)) {}
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///
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~ModeSpecifier() { os_.textMode(textmode_); }
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private:
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///
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WriteStream & os_;
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///
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bool textmode_;
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};
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//
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// MathML
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//
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class MTag {
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public:
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///
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MTag(char const * const tag) : tag_(tag) {}
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///
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char const * const tag_;
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};
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class ETag {
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public:
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///
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ETag(char const * const tag) : tag_(tag) {}
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///
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char const * const tag_;
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};
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class MathStream {
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public:
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///
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explicit MathStream(odocstream & os);
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///
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void cr();
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///
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odocstream & os() { return os_; }
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///
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int line() const { return line_; }
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///
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int & tab() { return tab_; }
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///
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friend MathStream & operator<<(MathStream &, char const *);
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private:
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///
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odocstream & os_;
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///
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int tab_;
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///
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int line_;
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///
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char lastchar_;
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};
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///
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MathStream & operator<<(MathStream &, MathAtom const &);
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///
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MathStream & operator<<(MathStream &, MathData const &);
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///
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MathStream & operator<<(MathStream &, docstring const &);
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///
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MathStream & operator<<(MathStream &, char const *);
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///
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MathStream & operator<<(MathStream &, char);
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///
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MathStream & operator<<(MathStream &, MTag const &);
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///
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MathStream & operator<<(MathStream &, ETag const &);
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//
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// Debugging
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//
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class NormalStream {
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public:
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///
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explicit NormalStream(odocstream & os) : os_(os) {}
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///
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odocstream & os() { return os_; }
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private:
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///
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odocstream & os_;
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};
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///
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NormalStream & operator<<(NormalStream &, MathAtom const &);
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///
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NormalStream & operator<<(NormalStream &, MathData const &);
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///
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NormalStream & operator<<(NormalStream &, docstring const &);
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///
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NormalStream & operator<<(NormalStream &, char const *);
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///
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NormalStream & operator<<(NormalStream &, char);
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///
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NormalStream & operator<<(NormalStream &, int);
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//
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// Maple
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//
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class MapleStream {
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public:
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///
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explicit MapleStream(odocstream & os) : os_(os) {}
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///
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odocstream & os() { return os_; }
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private:
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///
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odocstream & os_;
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};
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///
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MapleStream & operator<<(MapleStream &, MathAtom const &);
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///
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MapleStream & operator<<(MapleStream &, MathData const &);
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///
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MapleStream & operator<<(MapleStream &, docstring const &);
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///
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MapleStream & operator<<(MapleStream &, char_type);
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///
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MapleStream & operator<<(MapleStream &, char const *);
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///
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MapleStream & operator<<(MapleStream &, char);
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///
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MapleStream & operator<<(MapleStream &, int);
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//
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// Maxima
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//
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class MaximaStream {
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public:
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///
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explicit MaximaStream(odocstream & os) : os_(os) {}
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///
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odocstream & os() { return os_; }
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private:
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///
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odocstream & os_;
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};
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///
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MaximaStream & operator<<(MaximaStream &, MathAtom const &);
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///
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MaximaStream & operator<<(MaximaStream &, MathData const &);
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///
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MaximaStream & operator<<(MaximaStream &, docstring const &);
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///
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MaximaStream & operator<<(MaximaStream &, char_type);
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///
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MaximaStream & operator<<(MaximaStream &, char const *);
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///
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MaximaStream & operator<<(MaximaStream &, char);
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///
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MaximaStream & operator<<(MaximaStream &, int);
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//
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// Mathematica
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//
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class MathematicaStream {
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public:
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///
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explicit MathematicaStream(odocstream & os) : os_(os) {}
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///
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odocstream & os() { return os_; }
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private:
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///
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odocstream & os_;
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};
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///
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MathematicaStream & operator<<(MathematicaStream &, MathAtom const &);
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///
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MathematicaStream & operator<<(MathematicaStream &, MathData const &);
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///
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MathematicaStream & operator<<(MathematicaStream &, docstring const &);
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///
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MathematicaStream & operator<<(MathematicaStream &, char const *);
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///
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MathematicaStream & operator<<(MathematicaStream &, char);
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///
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MathematicaStream & operator<<(MathematicaStream &, int);
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//
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// Octave
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//
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class OctaveStream {
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public:
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///
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explicit OctaveStream(odocstream & os) : os_(os) {}
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///
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odocstream & os() { return os_; }
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private:
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///
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odocstream & os_;
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};
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///
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OctaveStream & operator<<(OctaveStream &, MathAtom const &);
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///
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OctaveStream & operator<<(OctaveStream &, MathData const &);
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///
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OctaveStream & operator<<(OctaveStream &, docstring const &);
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///
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OctaveStream & operator<<(OctaveStream &, char_type);
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///
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OctaveStream & operator<<(OctaveStream &, char const *);
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///
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OctaveStream & operator<<(OctaveStream &, char);
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///
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OctaveStream & operator<<(OctaveStream &, int);
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} // namespace lyx
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#endif
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