mirror of
https://gitlab.winehq.org/wine/wine-gecko.git
synced 2024-09-13 09:24:08 -07:00
8c296bbcd4
This patch was generated by a script. Here's the source of the script for future reference: function convert() { echo "Converting $1 to $2..." find . ! -wholename "*nsprpub*" \ ! -wholename "*security/nss*" \ ! -wholename "*/.hg*" \ ! -wholename "obj-ff-dbg*" \ ! -name nsXPCOMCID.h \ ! -name prtypes.h \ -type f \ \( -iname "*.cpp" \ -o -iname "*.h" \ -o -iname "*.c" \ -o -iname "*.cc" \ -o -iname "*.idl" \ -o -iname "*.ipdl" \ -o -iname "*.ipdlh" \ -o -iname "*.mm" \) | \ xargs -n 1 sed -i -e "s/\b$1\b/$2/g" } convert PRInt8 int8_t convert PRUint8 uint8_t convert PRInt16 int16_t convert PRUint16 uint16_t convert PRInt32 int32_t convert PRUint32 uint32_t convert PRInt64 int64_t convert PRUint64 uint64_t convert PRIntn int convert PRUintn unsigned convert PRSize size_t convert PROffset32 int32_t convert PROffset64 int64_t convert PRPtrdiff ptrdiff_t convert PRFloat64 double
190 lines
5.7 KiB
C++
190 lines
5.7 KiB
C++
/* -*- Mode: C; tab-width: 4; indent-tabs-mode: nil; c-basic-offset: 2 -*- */
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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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#include "nsISO2022KRToUnicode.h"
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#include "nsUCSupport.h"
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#include "nsICharsetConverterManager.h"
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#include "nsIServiceManager.h"
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static NS_DEFINE_CID(kCharsetConverterManagerCID, NS_ICHARSETCONVERTERMANAGER_CID);
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NS_IMETHODIMP nsISO2022KRToUnicode::Convert(const char * aSrc, int32_t * aSrcLen, PRUnichar * aDest, int32_t * aDestLen)
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{
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const unsigned char* srcEnd = (unsigned char*)aSrc + *aSrcLen;
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const unsigned char* src =(unsigned char*) aSrc;
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PRUnichar* destEnd = aDest + *aDestLen;
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PRUnichar* dest = aDest;
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while((src < srcEnd))
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{
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// if LF/CR, return to US-ASCII unconditionally.
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if ( *src == 0x0a || *src == 0x0d )
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mState = mState_Init;
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switch(mState)
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{
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case mState_Init:
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if(0x1b == *src) {
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mLastLegalState = mState_ASCII;
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mState = mState_ESC;
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break;
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}
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mState = mState_ASCII;
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// fall through
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case mState_ASCII:
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if(0x0e == *src) { // Shift-Out
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mState = mState_KSX1001_1992;
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mRunLength = 0;
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}
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else if(*src & 0x80) {
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if (CHECK_OVERRUN(dest, destEnd, 1))
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goto error1;
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*dest++ = 0xFFFD;
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}
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else {
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if (CHECK_OVERRUN(dest, destEnd, 1))
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goto error1;
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*dest++ = (PRUnichar) *src;
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}
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break;
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case mState_ESC:
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if('$' == *src) {
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mState = mState_ESC_24;
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}
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else {
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if (CHECK_OVERRUN(dest, destEnd, 2))
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goto error1;
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*dest++ = (PRUnichar) 0x1b;
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*dest++ = (0x80 & *src) ? 0xFFFD : (PRUnichar) *src;
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mState = mLastLegalState;
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}
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break;
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case mState_ESC_24: // ESC $
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if(')' == *src) {
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mState = mState_ESC_24_29;
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}
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else {
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if (CHECK_OVERRUN(dest, destEnd, 3))
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goto error1;
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*dest++ = (PRUnichar) 0x1b;
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*dest++ = (PRUnichar) '$';
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*dest++ = (0x80 & *src) ? 0xFFFD : (PRUnichar) *src;
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mState = mLastLegalState;
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}
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break;
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case mState_ESC_24_29: // ESC $ )
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mState = mLastLegalState;
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if('C' == *src) {
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mState = mState_ASCII;
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mRunLength = 0;
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}
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else {
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if (CHECK_OVERRUN(dest, destEnd, 4))
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goto error1;
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*dest++ = (PRUnichar) 0x1b;
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*dest++ = (PRUnichar) '$';
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*dest++ = (PRUnichar) ')';
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*dest++ = (0x80 & *src) ? 0xFFFD : (PRUnichar) *src;
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mState = mLastLegalState;
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}
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break;
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case mState_KSX1001_1992:
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if (0x20 < (uint8_t) *src && (uint8_t) *src < 0x7f) {
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mData = (uint8_t) *src;
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mState = mState_KSX1001_1992_2ndbyte;
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}
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else if (0x0f == *src) { // Shift-In (SI)
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mState = mState_ASCII;
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if (mRunLength == 0) {
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if (CHECK_OVERRUN(dest, destEnd, 1))
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goto error1;
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*dest++ = 0xFFFD;
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}
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mRunLength = 0;
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}
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else if ((uint8_t) *src == 0x20 || (uint8_t) *src == 0x09) {
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// Allow space and tab between SO and SI (i.e. in Hangul segment)
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if (CHECK_OVERRUN(dest, destEnd, 1))
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goto error1;
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mState = mState_KSX1001_1992;
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*dest++ = (PRUnichar) *src;
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++mRunLength;
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}
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else { // Everything else is invalid.
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if (CHECK_OVERRUN(dest, destEnd, 1))
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goto error1;
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*dest++ = 0xFFFD;
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}
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break;
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case mState_KSX1001_1992_2ndbyte:
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if ( 0x20 < (uint8_t) *src && (uint8_t) *src < 0x7f ) {
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if (!mEUCKRDecoder) {
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// creating a delegate converter (EUC-KR)
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nsresult rv;
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nsCOMPtr<nsICharsetConverterManager> ccm =
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do_GetService(kCharsetConverterManagerCID, &rv);
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if (NS_SUCCEEDED(rv)) {
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rv = ccm->GetUnicodeDecoderRaw("EUC-KR", &mEUCKRDecoder);
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}
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}
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if (!mEUCKRDecoder) {// failed creating a delegate converter
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*dest++ = 0xFFFD;
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}
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else {
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if (CHECK_OVERRUN(dest, destEnd, 1))
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goto error1;
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unsigned char ksx[2];
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PRUnichar uni;
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int32_t ksxLen = 2, uniLen = 1;
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// mData is the original 1st byte.
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// *src is the present 2nd byte.
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// Put 2 bytes (one character) to ksx[] with EUC-KR encoding.
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ksx[0] = mData | 0x80;
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ksx[1] = *src | 0x80;
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// Convert EUC-KR to unicode.
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mEUCKRDecoder->Convert((const char *)ksx, &ksxLen, &uni, &uniLen);
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*dest++ = uni;
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++mRunLength;
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}
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mState = mState_KSX1001_1992;
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}
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else { // Invalid
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if ( 0x0f == *src ) { // Shift-In (SI)
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mState = mState_ASCII;
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}
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else {
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mState = mState_KSX1001_1992;
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}
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if (CHECK_OVERRUN(dest, destEnd, 1))
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goto error1;
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*dest++ = 0xFFFD;
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}
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break;
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case mState_ERROR:
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mState = mLastLegalState;
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if (CHECK_OVERRUN(dest, destEnd, 1))
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goto error1;
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*dest++ = 0xFFFD;
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break;
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} // switch
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src++;
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}
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*aDestLen = dest - aDest;
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return NS_OK;
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error1:
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*aDestLen = dest-aDest;
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*aSrcLen = src-(unsigned char*)aSrc;
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return NS_OK_UDEC_MOREOUTPUT;
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}
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