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c59375d679
This will be useful to other insets as well.
372 lines
13 KiB
C++
372 lines
13 KiB
C++
// -*- C++ -*-
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/**
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* \file lstrings.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 Lars Gullik Bjønnes
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* \author Jean-Marc Lasgouttes
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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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* A collection of string helper functions that works with string.
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* Some of these would certainly benefit from a rewrite/optimization.
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*/
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#ifndef LSTRINGS_H
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#define LSTRINGS_H
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#include "support/docstring.h"
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#include <vector>
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namespace lyx {
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namespace support {
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/// Compare \p s and \p s2, ignoring the case.
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/// Does not depend on the locale.
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int compare_no_case(docstring const & s, docstring const & s2);
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/// Compare \p s and \p s2 using the collating rules of the current locale.
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int compare_locale(docstring const & s, docstring const & s2);
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/// Compare \p s and \p s2, ignoring the case of ASCII characters only.
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int compare_ascii_no_case(std::string const & s, std::string const & s2);
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/// Compare \p s and \p s2, ignoring the case of ASCII characters only.
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int compare_ascii_no_case(docstring const & s, docstring const & s2);
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///
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bool isStrInt(std::string const & str);
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/// does the std::string represent an unsigned integer value ?
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bool isStrUnsignedInt(std::string const & str);
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///
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bool isStrDbl(std::string const & str);
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/// does the string contain a digit?
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bool hasDigitASCII(docstring const & str);
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bool isHexChar(char_type);
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bool isHex(docstring const & str);
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int hexToInt(docstring const & str);
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/// is \p str pure ascii?
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bool isAscii(docstring const & str);
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/// is \p str pure ascii?
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bool isAscii(std::string const & str);
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/**
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* Changes the case of \p c to lowercase.
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* Don't use this for non-ASCII characters, since it depends on the locale.
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* This overloaded function is only implemented because the char_type variant
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* would be used otherwise, and we assert in this function that \p c is in
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* the ASCII range.
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*/
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char lowercase(char c);
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/**
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* Changes the case of \p c to uppercase.
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* Don't use this for non-ASCII characters, since it depends on the locale.
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* This overloaded function is only implemented because the char_type variant
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* would be used otherwise, and we assert in this function that \p c is in
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* the ASCII range.
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*/
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char uppercase(char c);
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/// Changes the case of \p c to lowercase.
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/// Does not depend on the locale.
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char_type lowercase(char_type c);
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/// Changes the case of \p c to uppercase.
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/// Does not depend on the locale.
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char_type uppercase(char_type c);
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/// Checks if the supplied character is lower-case
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bool isLowerCase(char_type ch);
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/// Checks if the supplied character is upper-case
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bool isUpperCase(char_type ch);
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/// same as lowercase(), but ignores locale
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std::string const ascii_lowercase(std::string const &);
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docstring const ascii_lowercase(docstring const &);
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/// Changes the case of \p s to lowercase.
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/// Does not depend on the locale.
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docstring const lowercase(docstring const & s);
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// Currently unused, but the code is there if needed.
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// std::string const lowercase(std::string const & s);
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/// Changes the case of \p s to uppercase.
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/// Does not depend on the locale.
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docstring const uppercase(docstring const & s);
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/// Returns the superscript of \p c or \p c if no superscript exists.
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/// Does not depend on the locale.
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char_type superscript(char_type c);
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/// Returns the subscript of \p c or \p c if no subscript exists.
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/// Does not depend on the locale.
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char_type subscript(char_type c);
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/// Does str start with c?
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bool prefixIs(docstring const & str, char_type c);
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/// Does str start with pre?
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bool prefixIs(std::string const & str, std::string const & pre);
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bool prefixIs(docstring const & str, docstring const & pre);
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/// Does the string end with this char?
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bool suffixIs(std::string const &, char);
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bool suffixIs(docstring const &, char_type);
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/// Does the string end with this suffix?
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bool suffixIs(std::string const &, std::string const &);
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bool suffixIs(docstring const &, docstring const &);
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/// Is b contained in a?
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inline bool contains(std::string const & a, std::string const & b)
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{
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return a.find(b) != std::string::npos;
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}
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inline bool contains(docstring const & a, docstring const & b)
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{
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return a.find(b) != docstring::npos;
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}
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inline bool contains(std::string const & a, char b)
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{
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return a.find(b) != std::string::npos;
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}
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inline bool contains(docstring const & a, char_type b)
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{
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return a.find(b) != docstring::npos;
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}
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/// Returns true if the first argument is made of ascii chars given in the
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/// second argument.
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bool containsOnly(std::string const &, std::string const &);
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///
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bool containsOnly(docstring const &, std::string const &);
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/** Extracts a token from this string at the nth delim.
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Doesn't modify the original string. Similar to strtok.
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Example:
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\code
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token("a;bc;d", ';', 1) == "bc";
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token("a;bc;d", ';', 2) == "d";
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\endcode
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*/
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std::string const token(std::string const & a, char delim, int n);
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docstring const token(docstring const & a, char_type delim, int n);
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/** Search a token in this string using the delim.
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Doesn't modify the original string. Returns -1 in case of
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failure.
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Example:
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\code
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tokenPos("a;bc;d", ';', "bc") == 1;
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tokenPos("a;bc;d", ';', "d") == 2;
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\endcode
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*/
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int tokenPos(std::string const & a, char delim, std::string const & tok);
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int tokenPos(docstring const & a, char_type delim, docstring const & tok);
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/// Substitute all \a oldchar with \a newchar
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std::string const subst(std::string const & a, char oldchar, char newchar);
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/// Substitute all \a oldchar with \a newchar
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docstring const subst(docstring const & a, char_type oldchar, char_type newchar);
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/// substitutes all instances of \a oldstr with \a newstr
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std::string const subst(std::string const & a,
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std::string const & oldstr, std::string const & newstr);
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/// substitutes all instances of \a oldstr with \a newstr
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docstring const subst(docstring const & a,
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docstring const & oldstr, docstring const & newstr);
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/// Count all occurences of char \a chr inside \a str
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int count_char(std::string const & str, char chr);
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/// Count all occurences of char \a chr inside \a str
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int count_char(docstring const & str, docstring::value_type chr);
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/** Count all occurences of binary chars inside \a str.
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It is assumed that \a str is utf-8 encoded and that a binary char
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belongs to the unicode class names Zl, Zp, Cc, Cf, Cs, Co, or Cn
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(excluding white space characters such as '\t', '\n', '\v', '\f', '\r').
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See http://www.unicode.org/Public/6.2.0/ucd/UnicodeData.txt
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*/
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int count_bin_chars(std::string const & str);
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/** Trims characters off the end and beginning of a string.
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\code
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trim("ccabccc", "c") == "ab".
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\endcode
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*/
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docstring const trim(docstring const & a, char const * p = " ");
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/** Trims characters off the end and beginning of a string.
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\code
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trim("ccabccc", "c") == "ab".
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\endcode
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*/
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std::string const trim(std::string const & a, char const * p = " ");
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/** Trims characters off the end of a string, removing any character
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in p.
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\code
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rtrim("abcde", "dec") == "ab".
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\endcode
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*/
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std::string const rtrim(std::string const & a, char const * p = " ");
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docstring const rtrim(docstring const & a, char const * p = " ");
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/** Trims characters off the beginning of a string.
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\code
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("abbabcdef", "ab") = "cdef"
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\endcode
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*/
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std::string const ltrim(std::string const & a, char const * p = " ");
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docstring const ltrim(docstring const & a, char const * p = " ");
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/** Splits the string given in the first argument at the first occurence
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of the third argument, delim.
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What precedes delim is returned in the second argument, piece; this
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will be the whole of the string if no delimiter is found.
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The return value is what follows delim, if anything. So the return
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value is the null string if no delimiter is found.
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'a' and 'piece' must be different variables.
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Examples:
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\code
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s1= "a;bc"; s2= ""
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ret = split(s1, s2, ';') -> ret = "bc", s2 == "a"
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\endcode
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*/
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std::string const split(std::string const & a, std::string & piece, char delim);
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docstring const split(docstring const & a, docstring & piece, char_type delim);
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/// Same as split but does not return a piece
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std::string const split(std::string const & a, char delim);
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/// Same as split but uses the last delim.
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std::string const rsplit(std::string const & a, std::string & piece, char delim);
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docstring const rsplit(docstring const & a, docstring & piece, char_type delim);
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docstring const rsplit(docstring const & a, char_type delim);
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/// Escapes non ASCII chars and other problematic characters that cause
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/// problems in latex labels.
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docstring const escape(docstring const & lab);
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/// Group contents of an argument if needed
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docstring const protectArgument(docstring & arg, char const l = '[',
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char const r = ']');
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/// Truncates a string with an ellipsis at the end. Leaves str unchanged and
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/// returns false if it is shorter than len. Otherwise resizes str to len, with
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/// U+2026 HORIZONTAL ELLIPSIS at the end, and returns true.
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///
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/// Warning (Unicode): The cases where we want to truncate the text and it does
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/// not end up converted into a QString for UI display must be really
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/// rare. Whenever possible, we should prefer calling QFontMetrics::elidedText()
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/// instead, which takes into account the actual length on the screen and the
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/// layout direction (RTL or LTR). Or a similar function taking into account the
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/// font metrics from the buffer view, which still has to be defined. Or set up
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/// the widgets such that Qt elides the string automatically with the exact
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/// needed width. Recall that not only graphemes vary greatly in width, but also
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/// can be made of several code points. See:
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/// <http://utf8everywhere.org/#myth.strlen>
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///
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/// What is acceptable is when we know that the string is probably going to be
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/// elided by Qt anyway, and len is chosen such that our own ellipsis will only
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/// be displayed in worst-case scenarios.
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///
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/// FIXME: apply those principles in the current code.
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///
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bool truncateWithEllipsis(docstring & str, size_t const len);
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/// Word-wraps the provided docstring, returning a line-broken string
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/// of width no wider than width, with the string broken at spaces.
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/// If the string cannot be broken appropriately, it returns something
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/// with "..." at the end, again no wider than width.
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/// We assume here that str does not contain newlines.
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/// If indent is positive, then the first line is indented that many
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/// spaces. If it is negative, then successive lines are indented, as
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/// if the first line were "outdented".
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///
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/// Warning (Unicode): uses truncateWithEllipsis() internally. Therefore it is
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/// subject to the same warning and FIXME as above.
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///
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docstring wrap(docstring const & str, int const indent = 0,
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size_t const width = 80);
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/// Like the preceding, except it is intended to operate on strings
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/// that may contain embedded newlines.
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/// \param numlines Don't return more than numlines lines. If numlines
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/// is 0, we return everything.
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///
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/// Warning (Unicode): uses truncateWithEllipsis() internally. Therefore it is
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/// subject to the same warning and FIXME as above.
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///
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docstring wrapParas(docstring const & str, int const indent = 0,
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size_t const width = 80, size_t const maxlines = 10);
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/// gives a vector of stringparts which have the delimiter delim
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/// If \p keepempty is true, empty strings will be pushed to the vector as well
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std::vector<std::string> const getVectorFromString(std::string const & str,
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std::string const & delim = std::string(","),
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bool keepempty = false);
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std::vector<docstring> const getVectorFromString(docstring const & str,
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docstring const & delim = from_ascii(","), bool keepempty = false);
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/// the same vice versa
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std::string const getStringFromVector(std::vector<std::string> const & vec,
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std::string const & delim = std::string(","));
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docstring const getStringFromVector(std::vector<docstring> const & vec,
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docstring const & delim = from_ascii(","));
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/// Search \p search_token in \p str and return the position if it is
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/// found, else -1. The last item in \p str must be "".
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int findToken(char const * const str[], std::string const & search_token);
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/// Format a floating point number with at least 6 siginificant digits, but
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/// without scientific notation.
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/// Scientific notation would be invalid in some contexts, such as lengths for
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/// LaTeX. Simply using std::ostream with std::fixed would produce results
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/// like "1000000.000000", and precision control would not be that easy either.
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std::string formatFPNumber(double);
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docstring bformat(docstring const & fmt, int arg1);
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docstring bformat(docstring const & fmt, long arg1);
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#ifdef LYX_USE_LONG_LONG
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docstring bformat(docstring const & fmt, long long arg1);
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#endif
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docstring bformat(docstring const & fmt, unsigned int arg1);
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docstring bformat(docstring const & fmt, docstring const & arg1);
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docstring bformat(docstring const & fmt, char * arg1);
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docstring bformat(docstring const & fmt, docstring const & arg1, docstring const & arg2);
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docstring bformat(docstring const & fmt, docstring const & arg1, int arg2);
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docstring bformat(docstring const & fmt, char const * arg1, docstring const & arg2);
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docstring bformat(docstring const & fmt, int arg1, int arg2);
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docstring bformat(docstring const & fmt, docstring const & arg1, docstring const & arg2, docstring const & arg3);
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docstring bformat(docstring const & fmt, docstring const & arg1, docstring const & arg2, docstring const & arg3, docstring const & arg4);
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} // namespace support
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} // namespace lyx
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#endif
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