/* -*- Mode: java; tab-width: 8; indent-tabs-mode: nil; c-basic-offset: 4 -*- * * ***** BEGIN LICENSE BLOCK ***** * Version: MPL 1.1/GPL 2.0 * * The contents of this file are subject to the Mozilla Public License Version * 1.1 (the "License"); you may not use this file except in compliance with * the License. You may obtain a copy of the License at * http://www.mozilla.org/MPL/ * * Software distributed under the License is distributed on an "AS IS" basis, * WITHOUT WARRANTY OF ANY KIND, either express or implied. See the License * for the specific language governing rights and limitations under the * License. * * The Original Code is Rhino code, released * May 6, 1998. * * The Initial Developer of the Original Code is * Netscape Communications Corporation. * Portions created by the Initial Developer are Copyright (C) 1997-1999 * the Initial Developer. All Rights Reserved. * * Contributor(s): * * Alternatively, the contents of this file may be used under the terms of * the GNU General Public License Version 2 or later (the "GPL"), in which * case the provisions of the GPL are applicable instead of those above. If * you wish to allow use of your version of this file only under the terms of * the GPL and not to allow others to use your version of this file under the * MPL, indicate your decision by deleting the provisions above and replacing * them with the notice and other provisions required by the GPL. If you do * not delete the provisions above, a recipient may use your version of this * file under either the MPL or the GPL. * * ***** END LICENSE BLOCK ***** */ package org.mozilla.javascript.regexp; import org.mozilla.javascript.*; /** * */ public class RegExpImpl implements RegExpProxy { public boolean isRegExp(Scriptable obj) { return obj instanceof NativeRegExp; } public Object compileRegExp(Context cx, String source, String flags) { return NativeRegExp.compileRE(cx, source, flags, false); } public Scriptable wrapRegExp(Context cx, Scriptable scope, Object compiled) { return new NativeRegExp(scope, compiled); } public Object action(Context cx, Scriptable scope, Scriptable thisObj, Object[] args, int actionType) { GlobData data = new GlobData(); data.mode = actionType; switch (actionType) { case RA_MATCH: { Object rval; data.optarg = 1; rval = matchOrReplace(cx, scope, thisObj, args, this, data, false); return data.arrayobj == null ? rval : data.arrayobj; } case RA_SEARCH: data.optarg = 1; return matchOrReplace(cx, scope, thisObj, args, this, data, false); case RA_REPLACE: { Object arg1 = args.length < 2 ? Undefined.instance : args[1]; String repstr = null; Function lambda = null; if (arg1 instanceof Function) { lambda = (Function) arg1; } else { repstr = ScriptRuntime.toString(arg1); } data.optarg = 2; data.lambda = lambda; data.repstr = repstr; data.dollar = repstr == null ? -1 : repstr.indexOf('$'); data.charBuf = null; data.leftIndex = 0; Object val = matchOrReplace(cx, scope, thisObj, args, this, data, true); SubString rc = this.rightContext; if (data.charBuf == null) { if (data.global || val == null || !val.equals(Boolean.TRUE)) { /* Didn't match even once. */ return data.str; } SubString lc = this.leftContext; replace_glob(data, cx, scope, this, lc.index, lc.length); } data.charBuf.append(rc.charArray, rc.index, rc.length); return data.charBuf.toString(); } default: throw Kit.codeBug(); } } /** * Analog of C match_or_replace. */ private static Object matchOrReplace(Context cx, Scriptable scope, Scriptable thisObj, Object[] args, RegExpImpl reImpl, GlobData data, boolean forceFlat) { NativeRegExp re; String str = ScriptRuntime.toString(thisObj); data.str = str; Scriptable topScope = ScriptableObject.getTopLevelScope(scope); if (args.length == 0) { Object compiled = NativeRegExp.compileRE(cx, "", "", false); re = new NativeRegExp(topScope, compiled); } else if (args[0] instanceof NativeRegExp) { re = (NativeRegExp) args[0]; } else { String src = ScriptRuntime.toString(args[0]); String opt; if (data.optarg < args.length) { args[0] = src; opt = ScriptRuntime.toString(args[data.optarg]); } else { opt = null; } Object compiled = NativeRegExp.compileRE(cx, src, opt, forceFlat); re = new NativeRegExp(topScope, compiled); } data.regexp = re; data.global = (re.getFlags() & NativeRegExp.JSREG_GLOB) != 0; int[] indexp = { 0 }; Object result = null; if (data.mode == RA_SEARCH) { result = re.executeRegExp(cx, scope, reImpl, str, indexp, NativeRegExp.TEST); if (result != null && result.equals(Boolean.TRUE)) result = new Integer(reImpl.leftContext.length); else result = new Integer(-1); } else if (data.global) { re.lastIndex = 0; for (int count = 0; indexp[0] <= str.length(); count++) { result = re.executeRegExp(cx, scope, reImpl, str, indexp, NativeRegExp.TEST); if (result == null || !result.equals(Boolean.TRUE)) break; if (data.mode == RA_MATCH) { match_glob(data, cx, scope, count, reImpl); } else { if (data.mode != RA_REPLACE) Kit.codeBug(); SubString lastMatch = reImpl.lastMatch; int leftIndex = data.leftIndex; int leftlen = lastMatch.index - leftIndex; data.leftIndex = lastMatch.index + lastMatch.length; replace_glob(data, cx, scope, reImpl, leftIndex, leftlen); } if (reImpl.lastMatch.length == 0) { if (indexp[0] == str.length()) break; indexp[0]++; } } } else { result = re.executeRegExp(cx, scope, reImpl, str, indexp, ((data.mode == RA_REPLACE) ? NativeRegExp.TEST : NativeRegExp.MATCH)); } return result; } public int find_split(Context cx, Scriptable scope, String target, String separator, Scriptable reObj, int[] ip, int[] matchlen, boolean[] matched, String[][] parensp) { int i = ip[0]; int length = target.length(); int result; int version = cx.getLanguageVersion(); NativeRegExp re = (NativeRegExp) reObj; again: while (true) { // imitating C label /* JS1.2 deviated from Perl by never matching at end of string. */ int ipsave = ip[0]; // reuse ip to save object creation ip[0] = i; Object ret = re.executeRegExp(cx, scope, this, target, ip, NativeRegExp.TEST); if (ret != Boolean.TRUE) { // Mismatch: ensure our caller advances i past end of string. ip[0] = ipsave; matchlen[0] = 1; matched[0] = false; return length; } i = ip[0]; ip[0] = ipsave; matched[0] = true; SubString sep = this.lastMatch; matchlen[0] = sep.length; if (matchlen[0] == 0) { /* * Empty string match: never split on an empty * match at the start of a find_split cycle. Same * rule as for an empty global match in * match_or_replace. */ if (i == ip[0]) { /* * "Bump-along" to avoid sticking at an empty * match, but don't bump past end of string -- * our caller must do that by adding * sep->length to our return value. */ if (i == length) { if (version == Context.VERSION_1_2) { matchlen[0] = 1; result = i; } else result = -1; break; } i++; continue again; // imitating C goto } } // PR_ASSERT((size_t)i >= sep->length); result = i - matchlen[0]; break; } int size = (parens == null) ? 0 : parens.length; parensp[0] = new String[size]; for (int num = 0; num < size; num++) { SubString parsub = getParenSubString(num); parensp[0][num] = parsub.toString(); } return result; } /** * Analog of REGEXP_PAREN_SUBSTRING in C jsregexp.h. * Assumes zero-based; i.e., for $3, i==2 */ SubString getParenSubString(int i) { if (parens != null && i < parens.length) { SubString parsub = parens[i]; if (parsub != null) { return parsub; } } return SubString.emptySubString; } /* * Analog of match_glob() in jsstr.c */ private static void match_glob(GlobData mdata, Context cx, Scriptable scope, int count, RegExpImpl reImpl) { if (mdata.arrayobj == null) { Scriptable s = ScriptableObject.getTopLevelScope(scope); mdata.arrayobj = ScriptRuntime.newObject(cx, s, "Array", null); } SubString matchsub = reImpl.lastMatch; String matchstr = matchsub.toString(); mdata.arrayobj.put(count, mdata.arrayobj, matchstr); } /* * Analog of replace_glob() in jsstr.c */ private static void replace_glob(GlobData rdata, Context cx, Scriptable scope, RegExpImpl reImpl, int leftIndex, int leftlen) { int replen; String lambdaStr; if (rdata.lambda != null) { // invoke lambda function with args lastMatch, $1, $2, ... $n, // leftContext.length, whole string. SubString[] parens = reImpl.parens; int parenCount = (parens == null) ? 0 : parens.length; Object[] args = new Object[parenCount + 3]; args[0] = reImpl.lastMatch.toString(); for (int i=0; i < parenCount; i++) { SubString sub = parens[i]; if (sub != null) { args[i+1] = sub.toString(); } else { args[i+1] = Undefined.instance; } } args[parenCount+1] = new Integer(reImpl.leftContext.length); args[parenCount+2] = rdata.str; // This is a hack to prevent expose of reImpl data to // JS function which can run new regexps modifing // regexp that are used later by the engine. // TODO: redesign is necessary if (reImpl != ScriptRuntime.getRegExpProxy(cx)) Kit.codeBug(); RegExpImpl re2 = new RegExpImpl(); re2.multiline = reImpl.multiline; re2.input = reImpl.input; ScriptRuntime.setRegExpProxy(cx, re2); try { Scriptable parent = ScriptableObject.getTopLevelScope(scope); Object result = rdata.lambda.call(cx, parent, parent, args); lambdaStr = ScriptRuntime.toString(result); } finally { ScriptRuntime.setRegExpProxy(cx, reImpl); } replen = lambdaStr.length(); } else { lambdaStr = null; replen = rdata.repstr.length(); if (rdata.dollar >= 0) { int[] skip = new int[1]; int dp = rdata.dollar; do { SubString sub = interpretDollar(cx, reImpl, rdata.repstr, dp, skip); if (sub != null) { replen += sub.length - skip[0]; dp += skip[0]; } else { ++dp; } dp = rdata.repstr.indexOf('$', dp); } while (dp >= 0); } } int growth = leftlen + replen + reImpl.rightContext.length; StringBuffer charBuf = rdata.charBuf; if (charBuf == null) { charBuf = new StringBuffer(growth); rdata.charBuf = charBuf; } else { charBuf.ensureCapacity(rdata.charBuf.length() + growth); } charBuf.append(reImpl.leftContext.charArray, leftIndex, leftlen); if (rdata.lambda != null) { charBuf.append(lambdaStr); } else { do_replace(rdata, cx, reImpl); } } private static SubString interpretDollar(Context cx, RegExpImpl res, String da, int dp, int[] skip) { char dc; int num, tmp; if (da.charAt(dp) != '$') Kit.codeBug(); /* Allow a real backslash (literal "\\") to escape "$1" etc. */ int version = cx.getLanguageVersion(); if (version != Context.VERSION_DEFAULT && version <= Context.VERSION_1_4) { if (dp > 0 && da.charAt(dp - 1) == '\\') return null; } int daL = da.length(); if (dp + 1 >= daL) return null; /* Interpret all Perl match-induced dollar variables. */ dc = da.charAt(dp + 1); if (NativeRegExp.isDigit(dc)) { int cp; if (version != Context.VERSION_DEFAULT && version <= Context.VERSION_1_4) { if (dc == '0') return null; /* Check for overflow to avoid gobbling arbitrary decimal digits. */ num = 0; cp = dp; while (++cp < daL && NativeRegExp.isDigit(dc = da.charAt(cp))) { tmp = 10 * num + (dc - '0'); if (tmp < num) break; num = tmp; } } else { /* ECMA 3, 1-9 or 01-99 */ int parenCount = (res.parens == null) ? 0 : res.parens.length; num = dc - '0'; if (num > parenCount) return null; cp = dp + 2; if ((dp + 2) < daL) { dc = da.charAt(dp + 2); if (NativeRegExp.isDigit(dc)) { tmp = 10 * num + (dc - '0'); if (tmp <= parenCount) { cp++; num = tmp; } } } if (num == 0) return null; /* $0 or $00 is not valid */ } /* Adjust num from 1 $n-origin to 0 array-index-origin. */ num--; skip[0] = cp - dp; return res.getParenSubString(num); } skip[0] = 2; switch (dc) { case '$': return new SubString("$"); case '&': return res.lastMatch; case '+': return res.lastParen; case '`': if (version == Context.VERSION_1_2) { /* * JS1.2 imitated the Perl4 bug where left context at each step * in an iterative use of a global regexp started from last match, * not from the start of the target string. But Perl4 does start * $` at the beginning of the target string when it is used in a * substitution, so we emulate that special case here. */ res.leftContext.index = 0; res.leftContext.length = res.lastMatch.index; } return res.leftContext; case '\'': return res.rightContext; } return null; } /** * Analog of do_replace in jsstr.c */ private static void do_replace(GlobData rdata, Context cx, RegExpImpl regExpImpl) { StringBuffer charBuf = rdata.charBuf; int cp = 0; String da = rdata.repstr; int dp = rdata.dollar; if (dp != -1) { int[] skip = new int[1]; do { int len = dp - cp; charBuf.append(da.substring(cp, dp)); cp = dp; SubString sub = interpretDollar(cx, regExpImpl, da, dp, skip); if (sub != null) { len = sub.length; if (len > 0) { charBuf.append(sub.charArray, sub.index, len); } cp += skip[0]; dp += skip[0]; } else { ++dp; } dp = da.indexOf('$', dp); } while (dp >= 0); } int daL = da.length(); if (daL > cp) { charBuf.append(da.substring(cp, daL)); } } String input; /* input string to match (perl $_, GC root) */ boolean multiline; /* whether input contains newlines (perl $*) */ SubString[] parens; /* Vector of SubString; last set of parens matched (perl $1, $2) */ SubString lastMatch; /* last string matched (perl $&) */ SubString lastParen; /* last paren matched (perl $+) */ SubString leftContext; /* input to left of last match (perl $`) */ SubString rightContext; /* input to right of last match (perl $') */ } final class GlobData { int mode; /* input: return index, match object, or void */ int optarg; /* input: index of optional flags argument */ boolean global; /* output: whether regexp was global */ String str; /* output: 'this' parameter object as string */ NativeRegExp regexp;/* output: regexp parameter object private data */ // match-specific data Scriptable arrayobj; // replace-specific data Function lambda; /* replacement function object or null */ String repstr; /* replacement string */ int dollar = -1; /* -1 or index of first $ in repstr */ StringBuffer charBuf; /* result characters, null initially */ int leftIndex; /* leftContext index, always 0 for JS1.2 */ }