// Compiled by ClojureScript 1.9.473 {} goog.provide('clojure.string'); goog.require('cljs.core'); goog.require('goog.string'); goog.require('goog.string.StringBuffer'); clojure.string.seq_reverse = (function clojure$string$seq_reverse(coll){ return cljs.core.reduce.call(null,cljs.core.conj,cljs.core.List.EMPTY,coll); }); clojure.string.re_surrogate_pair = (new RegExp("([\\uD800-\\uDBFF])([\\uDC00-\\uDFFF])","g")); /** * Returns s with its characters reversed. */ clojure.string.reverse = (function clojure$string$reverse(s){ return s.replace(clojure.string.re_surrogate_pair,"$2$1").split("").reverse().join(""); }); clojure.string.replace_all = (function clojure$string$replace_all(s,re,replacement){ return s.replace((new RegExp(re.source,"g")),replacement); }); clojure.string.replace_with = (function clojure$string$replace_with(f){ return (function() { var G__8073__delegate = function (args){ var matches = cljs.core.drop_last.call(null,(2),args); if(cljs.core._EQ_.call(null,cljs.core.count.call(null,matches),(1))){ return f.call(null,cljs.core.first.call(null,matches)); } else { return f.call(null,cljs.core.vec.call(null,matches)); } }; var G__8073 = function (var_args){ var args = null; if (arguments.length > 0) { var G__8074__i = 0, G__8074__a = new Array(arguments.length - 0); while (G__8074__i < G__8074__a.length) {G__8074__a[G__8074__i] = arguments[G__8074__i + 0]; ++G__8074__i;} args = new cljs.core.IndexedSeq(G__8074__a,0); } return G__8073__delegate.call(this,args);}; G__8073.cljs$lang$maxFixedArity = 0; G__8073.cljs$lang$applyTo = (function (arglist__8075){ var args = cljs.core.seq(arglist__8075); return G__8073__delegate(args); }); G__8073.cljs$core$IFn$_invoke$arity$variadic = G__8073__delegate; return G__8073; })() ; }); /** * Replaces all instance of match with replacement in s. * match/replacement can be: * * string / string * pattern / (string or function of match). */ clojure.string.replace = (function clojure$string$replace(s,match,replacement){ if(typeof match === 'string'){ return s.replace((new RegExp(goog.string.regExpEscape(match),"g")),replacement); } else { if((match instanceof RegExp)){ if(typeof replacement === 'string'){ return clojure.string.replace_all.call(null,s,match,replacement); } else { return clojure.string.replace_all.call(null,s,match,clojure.string.replace_with.call(null,replacement)); } } else { throw [cljs.core.str.cljs$core$IFn$_invoke$arity$1("Invalid match arg: "),cljs.core.str.cljs$core$IFn$_invoke$arity$1(match)].join(''); } } }); /** * Replaces the first instance of match with replacement in s. * match/replacement can be: * * string / string * pattern / (string or function of match). */ clojure.string.replace_first = (function clojure$string$replace_first(s,match,replacement){ return s.replace(match,replacement); }); /** * Returns a string of all elements in coll, as returned by (seq coll), * separated by an optional separator. */ clojure.string.join = (function clojure$string$join(var_args){ var args8076 = []; var len__7927__auto___8079 = arguments.length; var i__7928__auto___8080 = (0); while(true){ if((i__7928__auto___8080 < len__7927__auto___8079)){ args8076.push((arguments[i__7928__auto___8080])); var G__8081 = (i__7928__auto___8080 + (1)); i__7928__auto___8080 = G__8081; continue; } else { } break; } var G__8078 = args8076.length; switch (G__8078) { case 1: return clojure.string.join.cljs$core$IFn$_invoke$arity$1((arguments[(0)])); break; case 2: return clojure.string.join.cljs$core$IFn$_invoke$arity$2((arguments[(0)]),(arguments[(1)])); break; default: throw (new Error([cljs.core.str.cljs$core$IFn$_invoke$arity$1("Invalid arity: "),cljs.core.str.cljs$core$IFn$_invoke$arity$1(args8076.length)].join(''))); } }); clojure.string.join.cljs$core$IFn$_invoke$arity$1 = (function (coll){ var sb = (new goog.string.StringBuffer()); var coll__$1 = cljs.core.seq.call(null,coll); while(true){ if(!((coll__$1 == null))){ var G__8083 = sb.append([cljs.core.str.cljs$core$IFn$_invoke$arity$1(cljs.core.first.call(null,coll__$1))].join('')); var G__8084 = cljs.core.next.call(null,coll__$1); sb = G__8083; coll__$1 = G__8084; continue; } else { return sb.toString(); } break; } }); clojure.string.join.cljs$core$IFn$_invoke$arity$2 = (function (separator,coll){ var sb = (new goog.string.StringBuffer()); var coll__$1 = cljs.core.seq.call(null,coll); while(true){ if(!((coll__$1 == null))){ sb.append([cljs.core.str.cljs$core$IFn$_invoke$arity$1(cljs.core.first.call(null,coll__$1))].join('')); var coll__$2 = cljs.core.next.call(null,coll__$1); if((coll__$2 == null)){ } else { sb.append(separator); } var G__8085 = sb; var G__8086 = coll__$2; sb = G__8085; coll__$1 = G__8086; continue; } else { return sb.toString(); } break; } }); clojure.string.join.cljs$lang$maxFixedArity = 2; /** * Converts string to all upper-case. */ clojure.string.upper_case = (function clojure$string$upper_case(s){ return s.toUpperCase(); }); /** * Converts string to all lower-case. */ clojure.string.lower_case = (function clojure$string$lower_case(s){ return s.toLowerCase(); }); /** * Converts first character of the string to upper-case, all other * characters to lower-case. */ clojure.string.capitalize = (function clojure$string$capitalize(s){ if((cljs.core.count.call(null,s) < (2))){ return clojure.string.upper_case.call(null,s); } else { return [cljs.core.str.cljs$core$IFn$_invoke$arity$1(clojure.string.upper_case.call(null,cljs.core.subs.call(null,s,(0),(1)))),cljs.core.str.cljs$core$IFn$_invoke$arity$1(clojure.string.lower_case.call(null,cljs.core.subs.call(null,s,(1))))].join(''); } }); clojure.string.pop_last_while_empty = (function clojure$string$pop_last_while_empty(v){ var v__$1 = v; while(true){ if(("" === cljs.core.peek.call(null,v__$1))){ var G__8087 = cljs.core.pop.call(null,v__$1); v__$1 = G__8087; continue; } else { return v__$1; } break; } }); clojure.string.discard_trailing_if_needed = (function clojure$string$discard_trailing_if_needed(limit,v){ if((((0) === limit)) && (((1) < cljs.core.count.call(null,v)))){ return clojure.string.pop_last_while_empty.call(null,v); } else { return v; } }); clojure.string.split_with_empty_regex = (function clojure$string$split_with_empty_regex(s,limit){ if(((limit <= (0))) || ((limit >= ((2) + cljs.core.count.call(null,s))))){ return cljs.core.conj.call(null,cljs.core.vec.call(null,cljs.core.cons.call(null,"",cljs.core.map.call(null,cljs.core.str,cljs.core.seq.call(null,s)))),""); } else { var pred__8091 = cljs.core._EQ__EQ_; var expr__8092 = limit; if(cljs.core.truth_(pred__8091.call(null,(1),expr__8092))){ return (new cljs.core.PersistentVector(null,1,(5),cljs.core.PersistentVector.EMPTY_NODE,[s],null)); } else { if(cljs.core.truth_(pred__8091.call(null,(2),expr__8092))){ return (new cljs.core.PersistentVector(null,2,(5),cljs.core.PersistentVector.EMPTY_NODE,["",s],null)); } else { var c = (limit - (2)); return cljs.core.conj.call(null,cljs.core.vec.call(null,cljs.core.cons.call(null,"",cljs.core.subvec.call(null,cljs.core.vec.call(null,cljs.core.map.call(null,cljs.core.str,cljs.core.seq.call(null,s))),(0),c))),cljs.core.subs.call(null,s,c)); } } } }); /** * Splits string on a regular expression. Optional argument limit is * the maximum number of splits. Not lazy. Returns vector of the splits. */ clojure.string.split = (function clojure$string$split(var_args){ var args8094 = []; var len__7927__auto___8097 = arguments.length; var i__7928__auto___8098 = (0); while(true){ if((i__7928__auto___8098 < len__7927__auto___8097)){ args8094.push((arguments[i__7928__auto___8098])); var G__8099 = (i__7928__auto___8098 + (1)); i__7928__auto___8098 = G__8099; continue; } else { } break; } var G__8096 = args8094.length; switch (G__8096) { case 2: return clojure.string.split.cljs$core$IFn$_invoke$arity$2((arguments[(0)]),(arguments[(1)])); break; case 3: return clojure.string.split.cljs$core$IFn$_invoke$arity$3((arguments[(0)]),(arguments[(1)]),(arguments[(2)])); break; default: throw (new Error([cljs.core.str.cljs$core$IFn$_invoke$arity$1("Invalid arity: "),cljs.core.str.cljs$core$IFn$_invoke$arity$1(args8094.length)].join(''))); } }); clojure.string.split.cljs$core$IFn$_invoke$arity$2 = (function (s,re){ return clojure.string.split.call(null,s,re,(0)); }); clojure.string.split.cljs$core$IFn$_invoke$arity$3 = (function (s,re,limit){ return clojure.string.discard_trailing_if_needed.call(null,limit,((("/(?:)/" === [cljs.core.str.cljs$core$IFn$_invoke$arity$1(re)].join('')))?clojure.string.split_with_empty_regex.call(null,s,limit):(((limit < (1)))?cljs.core.vec.call(null,[cljs.core.str.cljs$core$IFn$_invoke$arity$1(s)].join('').split(re)):(function (){var s__$1 = s; var limit__$1 = limit; var parts = cljs.core.PersistentVector.EMPTY; while(true){ if(((1) === limit__$1)){ return cljs.core.conj.call(null,parts,s__$1); } else { var m = cljs.core.re_find.call(null,re,s__$1); if(!((m == null))){ var index = s__$1.indexOf(m); var G__8101 = s__$1.substring((index + cljs.core.count.call(null,m))); var G__8102 = (limit__$1 - (1)); var G__8103 = cljs.core.conj.call(null,parts,s__$1.substring((0),index)); s__$1 = G__8101; limit__$1 = G__8102; parts = G__8103; continue; } else { return cljs.core.conj.call(null,parts,s__$1); } } break; } })()))); }); clojure.string.split.cljs$lang$maxFixedArity = 3; /** * Splits s on * or * . */ clojure.string.split_lines = (function clojure$string$split_lines(s){ return clojure.string.split.call(null,s,/\n|\r\n/); }); /** * Removes whitespace from both ends of string. */ clojure.string.trim = (function clojure$string$trim(s){ return goog.string.trim(s); }); /** * Removes whitespace from the left side of string. */ clojure.string.triml = (function clojure$string$triml(s){ return goog.string.trimLeft(s); }); /** * Removes whitespace from the right side of string. */ clojure.string.trimr = (function clojure$string$trimr(s){ return goog.string.trimRight(s); }); /** * Removes all trailing newline \n or return \r characters from * string. Similar to Perl's chomp. */ clojure.string.trim_newline = (function clojure$string$trim_newline(s){ var index = s.length; while(true){ if((index === (0))){ return ""; } else { var ch = cljs.core.get.call(null,s,(index - (1))); if((("\n" === ch)) || (("\r" === ch))){ var G__8104 = (index - (1)); index = G__8104; continue; } else { return s.substring((0),index); } } break; } }); /** * True is s is nil, empty, or contains only whitespace. */ clojure.string.blank_QMARK_ = (function clojure$string$blank_QMARK_(s){ return goog.string.isEmptySafe(s); }); /** * Return a new string, using cmap to escape each character ch * from s as follows: * * If (cmap ch) is nil, append ch to the new string. * If (cmap ch) is non-nil, append (str (cmap ch)) instead. */ clojure.string.escape = (function clojure$string$escape(s,cmap){ var buffer = (new goog.string.StringBuffer()); var length = s.length; var index = (0); while(true){ if((length === index)){ return buffer.toString(); } else { var ch = s.charAt(index); var replacement = cljs.core.get.call(null,cmap,ch); if(!((replacement == null))){ buffer.append([cljs.core.str.cljs$core$IFn$_invoke$arity$1(replacement)].join('')); } else { buffer.append(ch); } var G__8105 = (index + (1)); index = G__8105; continue; } break; } }); /** * Return index of value (string or char) in s, optionally searching * forward from from-index or nil if not found. */ clojure.string.index_of = (function clojure$string$index_of(var_args){ var args8106 = []; var len__7927__auto___8109 = arguments.length; var i__7928__auto___8110 = (0); while(true){ if((i__7928__auto___8110 < len__7927__auto___8109)){ args8106.push((arguments[i__7928__auto___8110])); var G__8111 = (i__7928__auto___8110 + (1)); i__7928__auto___8110 = G__8111; continue; } else { } break; } var G__8108 = args8106.length; switch (G__8108) { case 2: return clojure.string.index_of.cljs$core$IFn$_invoke$arity$2((arguments[(0)]),(arguments[(1)])); break; case 3: return clojure.string.index_of.cljs$core$IFn$_invoke$arity$3((arguments[(0)]),(arguments[(1)]),(arguments[(2)])); break; default: throw (new Error([cljs.core.str.cljs$core$IFn$_invoke$arity$1("Invalid arity: "),cljs.core.str.cljs$core$IFn$_invoke$arity$1(args8106.length)].join(''))); } }); clojure.string.index_of.cljs$core$IFn$_invoke$arity$2 = (function (s,value){ var result = s.indexOf(value); if((result < (0))){ return null; } else { return result; } }); clojure.string.index_of.cljs$core$IFn$_invoke$arity$3 = (function (s,value,from_index){ var result = s.indexOf(value,from_index); if((result < (0))){ return null; } else { return result; } }); clojure.string.index_of.cljs$lang$maxFixedArity = 3; /** * Return last index of value (string or char) in s, optionally * searching backward from from-index or nil if not found. */ clojure.string.last_index_of = (function clojure$string$last_index_of(var_args){ var args8113 = []; var len__7927__auto___8116 = arguments.length; var i__7928__auto___8117 = (0); while(true){ if((i__7928__auto___8117 < len__7927__auto___8116)){ args8113.push((arguments[i__7928__auto___8117])); var G__8118 = (i__7928__auto___8117 + (1)); i__7928__auto___8117 = G__8118; continue; } else { } break; } var G__8115 = args8113.length; switch (G__8115) { case 2: return clojure.string.last_index_of.cljs$core$IFn$_invoke$arity$2((arguments[(0)]),(arguments[(1)])); break; case 3: return clojure.string.last_index_of.cljs$core$IFn$_invoke$arity$3((arguments[(0)]),(arguments[(1)]),(arguments[(2)])); break; default: throw (new Error([cljs.core.str.cljs$core$IFn$_invoke$arity$1("Invalid arity: "),cljs.core.str.cljs$core$IFn$_invoke$arity$1(args8113.length)].join(''))); } }); clojure.string.last_index_of.cljs$core$IFn$_invoke$arity$2 = (function (s,value){ var result = s.lastIndexOf(value); if((result < (0))){ return null; } else { return result; } }); clojure.string.last_index_of.cljs$core$IFn$_invoke$arity$3 = (function (s,value,from_index){ var result = s.lastIndexOf(value,from_index); if((result < (0))){ return null; } else { return result; } }); clojure.string.last_index_of.cljs$lang$maxFixedArity = 3; /** * True if s starts with substr. */ clojure.string.starts_with_QMARK_ = (function clojure$string$starts_with_QMARK_(s,substr){ return goog.string.startsWith(s,substr); }); /** * True if s ends with substr. */ clojure.string.ends_with_QMARK_ = (function clojure$string$ends_with_QMARK_(s,substr){ return goog.string.endsWith(s,substr); }); /** * True if s includes substr. */ clojure.string.includes_QMARK_ = (function clojure$string$includes_QMARK_(s,substr){ return goog.string.contains(s,substr); }); //# sourceMappingURL=string.js.map