5f0ddb2d20
Change-Id: Ic92cc594979cac2edac04a085957398672a5dfcc Reviewed-on: https://gerrit.libreoffice.org/62450 Tested-by: Jenkins Reviewed-by: Mike Kaganski <mike.kaganski@collabora.com>
495 lines
16 KiB
C++
495 lines
16 KiB
C++
/* -*- Mode: C++; tab-width: 4; indent-tabs-mode: nil; c-basic-offset: 4 -*- */
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/*
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* This file is part of the LibreOffice project.
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*
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* This Source Code Form is subject to the terms of the Mozilla Public
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* License, v. 2.0. If a copy of the MPL was not distributed with this
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* file, You can obtain one at http://mozilla.org/MPL/2.0/.
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*/
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#include "converter.hxx"
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#include "unichars.hxx"
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#include "convertisciidevangari.hxx"
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#include "convertsinglebytetobmpunicode.hxx"
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#include <rtl/textcvt.h>
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using namespace sal::detail::textenc;
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using namespace rtl::textenc;
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struct IsciiDevanagariToUnicode
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{
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sal_uInt8 m_cPrevChar;
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IsciiDevanagariToUnicode()
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: m_cPrevChar(0)
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{
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}
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void reset()
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{
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m_cPrevChar = 0;
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}
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sal_Size convert(char const* pSrcBuf, sal_Size nSrcBytes,
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sal_Unicode* pDestBuf, sal_Size nDestChars, sal_uInt32 nFlags,
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sal_uInt32* pInfo, sal_Size* pSrcCvtBytes);
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};
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struct UnicodeToIsciiDevanagari
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{
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sal_Unicode m_cPrevChar;
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sal_Unicode m_cHighSurrogate;
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UnicodeToIsciiDevanagari()
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: m_cPrevChar(0)
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, m_cHighSurrogate(0)
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{
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}
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void reset()
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{
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m_cPrevChar = 0;
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m_cHighSurrogate = 0;
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}
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sal_Size convert(sal_Unicode const* pSrcBuf, sal_Size nSrcChars,
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char* pDestBuf, sal_Size nDestBytes, sal_uInt32 nFlags,
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sal_uInt32 * pInfo, sal_Size * pSrcCvtChars);
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};
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static const sal_Unicode IsciiDevanagariMap[256] =
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{
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0x0000,0x0001,0x0002,0x0003,0x0004,0x0005,0x0006,0x0007,
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0x0008,0x0009,0x000A,0x000B,0x000C,0x000D,0x000E,0x000F,
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0x0010,0x0011,0x0012,0x0013,0x0014,0x0015,0x0016,0x0017,
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0x0018,0x0019,0x001A,0x001B,0x001C,0x001D,0x001E,0x001F,
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0x0020,0x0021,0x0022,0x0023,0x0024,0x0025,0x0026,0x0027,
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0x0028,0x0029,0x002A,0x002B,0x002C,0x002D,0x002E,0x002F,
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0x0030,0x0031,0x0032,0x0033,0x0034,0x0035,0x0036,0x0037,
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0x0038,0x0039,0x003A,0x003B,0x003C,0x003D,0x003E,0x003F,
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0x0040,0x0041,0x0042,0x0043,0x0044,0x0045,0x0046,0x0047,
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0x0048,0x0049,0x004A,0x004B,0x004C,0x004D,0x004E,0x004F,
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0x0050,0x0051,0x0052,0x0053,0x0054,0x0055,0x0056,0x0057,
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0x0058,0x0059,0x005A,0x005B,0x005C,0x005D,0x005E,0x005F,
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0x0060,0x0061,0x0062,0x0063,0x0064,0x0065,0x0066,0x0067,
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0x0068,0x0069,0x006A,0x006B,0x006C,0x006D,0x006E,0x006F,
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0x0070,0x0071,0x0072,0x0073,0x0074,0x0075,0x0076,0x0077,
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0x0078,0x0079,0x007A,0x007B,0x007C,0x007D,0x007E,0x007F,
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0xFFFF,0xFFFF,0xFFFF,0xFFFF,0xFFFF,0xFFFF,0xFFFF,0xFFFF,
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0xFFFF,0xFFFF,0xFFFF,0xFFFF,0xFFFF,0xFFFF,0xFFFF,0xFFFF,
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0xFFFF,0xFFFF,0xFFFF,0xFFFF,0xFFFF,0xFFFF,0xFFFF,0xFFFF,
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0xFFFF,0xFFFF,0xFFFF,0xFFFF,0xFFFF,0xFFFF,0xFFFF,0xFFFF,
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0xFFFF,0x0901,0x0902,0x0903,0x0905,0x0906,0x0907,0x0908,
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0x0909,0x090A,0x090B,0x090E,0x090F,0x0910,0x090D,0x0912,
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0x0913,0x0914,0x0911,0x0915,0x0916,0x0917,0x0918,0x0919,
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0x091A,0x091B,0x091C,0x091D,0x091E,0x091F,0x0920,0x0921,
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0x0922,0x0923,0x0924,0x0925,0x0926,0x0927,0x0928,0x0929,
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0x092A,0x092B,0x092C,0x092D,0x092E,0x092F,0x095F,0x0930,
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0x0931,0x0932,0x0933,0x0934,0x0935,0x0936,0x0937,0x0938,
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0x0939,0xFFFF,0x093E,0x093F,0x0940,0x0941,0x0942,0x0943,
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0x0946,0x0947,0x0948,0x0945,0x094A,0x094B,0x094C,0x0949,
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0x094D,0x093C,0x0964,0xFFFF,0xFFFF,0xFFFF,0xFFFF,0xFFFF,
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0xFFFF,0x0966,0x0967,0x0968,0x0969,0x096A,0x096B,0x096C,
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0x096D,0x096E,0x096F,0xFFFF,0xFFFF,0xFFFF,0xFFFF,0xFFFF
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};
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sal_Size IsciiDevanagariToUnicode::convert(
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char const* pSrcBuf, sal_Size nSrcBytes,
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sal_Unicode* pDestBuf, sal_Size nDestChars, sal_uInt32 nFlags,
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sal_uInt32* pInfo, sal_Size* pSrcCvtBytes)
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{
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sal_uInt32 nInfo = 0;
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sal_Size nConverted = 0;
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sal_Unicode* pDestBufPtr = pDestBuf;
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sal_Unicode* pDestBufEnd = pDestBuf + nDestChars;
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while (nConverted < nSrcBytes)
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{
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if (pDestBufPtr == pDestBufEnd)
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{
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nInfo |= RTL_TEXTTOUNICODE_INFO_DESTBUFFERTOOSMALL;
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break;
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}
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sal_Unicode cChar = sal_Unicode();
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sal_uInt8 nIn = static_cast<sal_uInt8>(pSrcBuf[nConverted]);
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sal_uInt8 nNext = nConverted < nSrcBytes + 1 ? static_cast<sal_uInt8>(pSrcBuf[nConverted+1]) : 0;
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bool bNormal = true;
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bool bDouble = false;
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//halant + halant E8 E8 -> halant + ZWNJ 094D 200C
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//halant + nukta E8 E9 halant + ZWJ 094D 200D
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if (m_cPrevChar == 0xE8 && nIn == 0xE8)
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{
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cChar = 0x200C;
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bNormal = false;
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}
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else if (m_cPrevChar == 0xE8 && nIn == 0xE9)
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{
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cChar = 0x200D;
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bNormal = false;
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}
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else if (nNext == 0xE9)
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{
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bNormal = false;
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bDouble = true;
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switch(nIn)
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{
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case 0xA1:
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cChar = 0x0950;
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break;
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case 0xA6:
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cChar = 0x090C;
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break;
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case 0xA7:
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cChar = 0x0961;
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break;
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case 0xAA:
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cChar = 0x0960;
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break;
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case 0xB3:
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cChar = 0x0958;
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break;
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case 0xB4:
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cChar = 0x0959;
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break;
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case 0xB5:
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cChar = 0x095A;
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break;
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case 0xBA:
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cChar = 0x095B;
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break;
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case 0xBF:
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cChar = 0x095C;
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break;
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case 0xC0:
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cChar = 0x095D;
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break;
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case 0xC9:
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cChar = 0x095E;
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break;
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case 0xDB:
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cChar = 0x0962;
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break;
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case 0xDC:
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cChar = 0x0963;
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break;
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case 0xDF:
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cChar = 0x0944;
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break;
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case 0xEA:
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cChar = 0x093D;
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break;
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default:
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bNormal = true;
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bDouble = false;
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break;
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}
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}
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if (bNormal)
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cChar = IsciiDevanagariMap[nIn];
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bool bUndefined = cChar == 0xffff;
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if (bUndefined)
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{
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BadInputConversionAction eAction = handleBadInputTextToUnicodeConversion(
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bUndefined, true, 0, nFlags, &pDestBufPtr, pDestBufEnd,
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&nInfo);
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if (eAction == BAD_INPUT_CONTINUE)
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continue;
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if (eAction == BAD_INPUT_STOP)
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break;
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assert(eAction == BAD_INPUT_NO_OUTPUT);
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nInfo |= RTL_TEXTTOUNICODE_INFO_DESTBUFFERTOOSMALL;
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break;
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}
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++nConverted;
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if (bDouble)
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++nConverted;
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*pDestBufPtr++ = cChar;
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m_cPrevChar = bNormal ? nIn : 0;
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}
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if (pInfo)
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*pInfo = nInfo;
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if (pSrcCvtBytes)
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*pSrcCvtBytes = nConverted;
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return pDestBufPtr - pDestBuf;
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}
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BmpUnicodeToSingleByteRange const unicodeToISCIIEncoding[] =
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{
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{ 0x0000, 0x007F - 0x0000, 0x00 }, { 0x0901, 0x0903 - 0x0901, 0xA1 },
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{ 0x0905, 0x090B - 0x0905, 0xA4 }, { 0x090D, 0x090D - 0x090D, 0xAE },
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{ 0x090E, 0x0910 - 0x090E, 0xAB }, { 0x0911, 0x0911 - 0x0911, 0xB2 },
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{ 0x0912, 0x0914 - 0x0912, 0xAF }, { 0x0915, 0x092F - 0x0915, 0xB3 },
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{ 0x0930, 0x0939 - 0x0930, 0xCF }, { 0x093C, 0x093C - 0x093C, 0xE9 },
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{ 0x093E, 0x0943 - 0x093E, 0xDA }, { 0x0945, 0x0945 - 0x0945, 0xE3 },
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{ 0x0946, 0x0948 - 0x0946, 0xE0 }, { 0x0949, 0x0949 - 0x0949, 0xE7 },
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{ 0x094A, 0x094C - 0x094A, 0xE4 }, { 0x094D, 0x094D - 0x094D, 0xE8 },
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{ 0x095F, 0x095F - 0x095F, 0xCE }, { 0x0964, 0x0964 - 0x0964, 0xEA },
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{ 0x0966, 0x096F - 0x0966, 0xF1 }
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};
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sal_Size UnicodeToIsciiDevanagari::convert(sal_Unicode const* pSrcBuf, sal_Size nSrcChars,
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char* pDestBuf, sal_Size nDestBytes, sal_uInt32 nFlags,
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sal_uInt32 * pInfo, sal_Size* pSrcCvtChars)
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{
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size_t const entries = SAL_N_ELEMENTS(unicodeToISCIIEncoding);
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BmpUnicodeToSingleByteRange const * ranges = unicodeToISCIIEncoding;
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sal_Unicode cHighSurrogate = m_cHighSurrogate;
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sal_uInt32 nInfo = 0;
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sal_Size nConverted = 0;
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sal_Char* pDestBufPtr = pDestBuf;
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sal_Char* pDestBufEnd = pDestBuf + nDestBytes;
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for (; nConverted < nSrcChars; ++nConverted)
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{
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bool bUndefined = true;
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sal_uInt32 c = *pSrcBuf++;
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sal_Char cSpecialChar = 0;
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if (cHighSurrogate == 0)
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{
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if (ImplIsHighSurrogate(c))
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{
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cHighSurrogate = static_cast< sal_Unicode >(c);
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continue;
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}
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}
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else if (ImplIsLowSurrogate(c))
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{
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c = ImplCombineSurrogates(cHighSurrogate, c);
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}
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else
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{
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bUndefined = false;
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goto bad_input;
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}
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if (ImplIsLowSurrogate(c) || ImplIsNoncharacter(c))
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{
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bUndefined = false;
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goto bad_input;
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}
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//halant + halant E8 E8 -> halant + ZWNJ 094D 200C
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//halant + nukta E8 E9 halant + ZWJ 094D 200D
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if (m_cPrevChar == 0x094D && c == 0x200C)
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cSpecialChar = '\xE8';
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else if (m_cPrevChar == 0x094D && c == 0x200D)
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cSpecialChar = '\xE9';
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if (cSpecialChar)
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{
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if (pDestBufEnd - pDestBufPtr < 1)
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{
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nInfo |= RTL_UNICODETOTEXT_INFO_DESTBUFFERTOSMALL;
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break;
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}
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*pDestBufPtr++ = cSpecialChar;
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m_cPrevChar = 0;
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goto done;
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}
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switch (c)
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{
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case 0x0950:
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cSpecialChar = '\xA1';
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break;
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case 0x090C:
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cSpecialChar = '\xA6';
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break;
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case 0x0961:
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cSpecialChar = '\xA7';
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break;
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case 0x0960:
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cSpecialChar = '\xAA';
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break;
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case 0x0958:
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cSpecialChar = '\xB3';
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break;
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case 0x0959:
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cSpecialChar = '\xB4';
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break;
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case 0x095A:
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cSpecialChar = '\xB5';
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break;
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case 0x095B:
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cSpecialChar = '\xBA';
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break;
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case 0x095C:
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cSpecialChar = '\xBF';
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break;
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case 0x095D:
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cSpecialChar = '\xC0';
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break;
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case 0x095E:
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cSpecialChar = '\xC9';
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break;
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case 0x0962:
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cSpecialChar = '\xDB';
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break;
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case 0x0963:
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cSpecialChar = '\xDC';
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break;
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case 0x0944:
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cSpecialChar = '\xDF';
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break;
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case 0x093D:
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cSpecialChar = '\xEA';
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break;
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default:
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break;
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}
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if (cSpecialChar)
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{
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if (pDestBufEnd - pDestBufPtr < 2)
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{
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nInfo |= RTL_UNICODETOTEXT_INFO_DESTBUFFERTOSMALL;
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break;
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}
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*pDestBufPtr++ = cSpecialChar;
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*pDestBufPtr++ = '\xE9';
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m_cPrevChar = 0;
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goto done;
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}
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// Linearly searching through the ranges if probably fastest, assuming
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// that most converted characters belong to the ASCII subset:
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for (size_t i = 0; i < entries; ++i)
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{
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if (c < ranges[i].unicode)
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{
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break;
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}
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if (c <= sal::static_int_cast< sal_uInt32 >(
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ranges[i].unicode + ranges[i].range))
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{
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if (pDestBufEnd - pDestBufPtr < 1)
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{
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goto no_output;
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}
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*pDestBufPtr++ = static_cast< sal_Char >(
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ranges[i].byte + (c - ranges[i].unicode));
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m_cPrevChar = c;
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goto done;
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}
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}
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goto bad_input;
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done:
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cHighSurrogate = 0;
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continue;
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bad_input:
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switch (sal::detail::textenc::handleBadInputUnicodeToTextConversion(
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bUndefined, c, nFlags, &pDestBufPtr, pDestBufEnd, &nInfo, nullptr,
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0, nullptr))
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{
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case sal::detail::textenc::BAD_INPUT_STOP:
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cHighSurrogate = 0;
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break;
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case sal::detail::textenc::BAD_INPUT_CONTINUE:
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cHighSurrogate = 0;
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continue;
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case sal::detail::textenc::BAD_INPUT_NO_OUTPUT:
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goto no_output;
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}
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break;
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no_output:
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--pSrcBuf;
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nInfo |= RTL_UNICODETOTEXT_INFO_DESTBUFFERTOSMALL;
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break;
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}
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if (cHighSurrogate != 0
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&& ((nInfo
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& (RTL_UNICODETOTEXT_INFO_ERROR
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| RTL_UNICODETOTEXT_INFO_DESTBUFFERTOSMALL))
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== 0))
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{
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if ((nFlags & RTL_UNICODETOTEXT_FLAGS_FLUSH) != 0)
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{
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nInfo |= RTL_UNICODETOTEXT_INFO_SRCBUFFERTOSMALL;
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}
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else
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{
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switch (sal::detail::textenc::handleBadInputUnicodeToTextConversion(
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false, 0, nFlags, &pDestBufPtr, pDestBufEnd, &nInfo, nullptr,
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0, nullptr))
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{
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case sal::detail::textenc::BAD_INPUT_STOP:
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case sal::detail::textenc::BAD_INPUT_CONTINUE:
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cHighSurrogate = 0;
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break;
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case sal::detail::textenc::BAD_INPUT_NO_OUTPUT:
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nInfo |= RTL_UNICODETOTEXT_INFO_DESTBUFFERTOSMALL;
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break;
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}
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}
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}
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m_cHighSurrogate = cHighSurrogate;
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if (pInfo)
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*pInfo = nInfo;
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if (pSrcCvtChars)
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*pSrcCvtChars = nConverted;
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return pDestBufPtr - pDestBuf;
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}
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sal_Size ImplConvertIsciiDevanagariToUnicode(void const*,
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void* pContext, char const* pSrcBuf, sal_Size nSrcBytes,
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sal_Unicode* pDestBuf, sal_Size nDestChars, sal_uInt32 nFlags,
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sal_uInt32* pInfo, sal_Size* pSrcCvtBytes)
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{
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IsciiDevanagariToUnicode *pCtx =
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static_cast<IsciiDevanagariToUnicode*>(pContext);
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return pCtx->convert(pSrcBuf, nSrcBytes, pDestBuf, nDestChars, nFlags,
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pInfo, pSrcCvtBytes);
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}
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sal_Size ImplConvertUnicodeToIsciiDevanagari(void const*,
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void * pContext, sal_Unicode const * pSrcBuf, sal_Size nSrcChars,
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char * pDestBuf, sal_Size nDestBytes, sal_uInt32 nFlags,
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sal_uInt32 * pInfo, sal_Size * pSrcCvtChars)
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{
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UnicodeToIsciiDevanagari *pCtx =
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static_cast<UnicodeToIsciiDevanagari*>(pContext);
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return pCtx->convert(pSrcBuf, nSrcChars,
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pDestBuf, nDestBytes, nFlags, pInfo, pSrcCvtChars);
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}
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void *ImplCreateIsciiDevanagariToUnicodeContext()
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{
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return new IsciiDevanagariToUnicode;
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}
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void ImplDestroyIsciiDevanagariToUnicodeContext(void * pContext)
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{
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IsciiDevanagariToUnicode *pCtx =
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static_cast<IsciiDevanagariToUnicode*>(pContext);
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delete pCtx;
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}
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void ImplResetIsciiDevanagariToUnicodeContext(void * pContext)
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{
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IsciiDevanagariToUnicode *pCtx =
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static_cast<IsciiDevanagariToUnicode*>(pContext);
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pCtx->reset();
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}
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void *ImplCreateUnicodeToIsciiDevanagariContext()
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{
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return new UnicodeToIsciiDevanagari;
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}
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void ImplResetUnicodeToIsciiDevanagariContext(void * pContext)
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{
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UnicodeToIsciiDevanagari *pCtx =
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static_cast<UnicodeToIsciiDevanagari*>(pContext);
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pCtx->reset();
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}
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void ImplDestroyUnicodeToIsciiDevanagariContext(void * pContext)
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{
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UnicodeToIsciiDevanagari *pCtx =
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static_cast<UnicodeToIsciiDevanagari*>(pContext);
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delete pCtx;
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}
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/* vim:set shiftwidth=4 softtabstop=4 expandtab: */
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