mirror of
https://github.com/simon987/antiword.git
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1019 lines
27 KiB
C
1019 lines
27 KiB
C
/*
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* fonts.c
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* Copyright (C) 1998-2004 A.J. van Os; Released under GNU GPL
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*
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* Description:
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* Functions to deal with fonts (generic)
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*/
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#include <ctype.h>
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#include <string.h>
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#include "antiword.h"
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/* Maximum line length in the font file */
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#define FONT_LINE_LENGTH 81
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/* Pitch */
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#define PITCH_UNKNOWN 0
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#define PITCH_FIXED 1
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#define PITCH_VARIABLE 2
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/* Font Family */
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#define FAMILY_UNKNOWN 0
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#define FAMILY_ROMAN 1
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#define FAMILY_SWISS 2
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#define FAMILY_MODERN 3
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#define FAMILY_SCRIPT 4
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#define FAMILY_DECORATIVE 5
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/* Font Translation Table */
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static size_t tFontTableRecords = 0;
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static font_table_type *pFontTable = NULL;
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/*
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* Find the given font in the font table
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*
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* returns the index into the FontTable, -1 if not found
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*/
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int
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iGetFontByNumber(UCHAR ucWordFontNumber, USHORT usFontStyle)
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{
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int iIndex;
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for (iIndex = 0; iIndex < (int)tFontTableRecords; iIndex++) {
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if (ucWordFontNumber == pFontTable[iIndex].ucWordFontNumber &&
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usFontStyle == pFontTable[iIndex].usFontStyle &&
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pFontTable[iIndex].szOurFontname[0] != '\0') {
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return iIndex;
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}
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}
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DBG_DEC(ucWordFontNumber);
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DBG_HEX(usFontStyle);
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return -1;
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} /* end of iGetFontByNumber */
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/*
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* szGetOurFontname - Get our font name
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*
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* return our font name from the given index, NULL if not found
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*/
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const char *
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szGetOurFontname(int iIndex)
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{
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if (iIndex < 0 || iIndex >= (int)tFontTableRecords) {
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return NULL;
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}
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return pFontTable[iIndex].szOurFontname;
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} /* end of szGetOurFontname */
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/*
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* Find the given font in the font table
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*
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* returns the Word font number, -1 if not found
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*/
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int
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iFontname2Fontnumber(const char *szOurFontname, USHORT usFontStyle)
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{
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int iIndex;
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for (iIndex = 0; iIndex < (int)tFontTableRecords; iIndex++) {
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if (pFontTable[iIndex].usFontStyle == usFontStyle &&
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STREQ(pFontTable[iIndex].szOurFontname, szOurFontname)) {
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return (int)pFontTable[iIndex].ucWordFontNumber;
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}
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}
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return -1;
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} /* end of iFontname2Fontnumber */
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/*
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* szGetDefaultFont - get the default font that matches the parameters
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*/
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static const char *
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szGetDefaultFont(UCHAR ucFFN, int iEmphasis)
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{
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UCHAR ucPrq, ucFf;
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fail(iEmphasis < 0 || iEmphasis > 3);
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ucPrq = ucFFN & 0x03;
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ucFf = (ucFFN & 0x70) >> 4;
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NO_DBG_DEC(ucPrq);
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NO_DBG_DEC(ucFf);
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if (ucPrq == PITCH_FIXED) {
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/* Set to the default monospaced font */
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switch (iEmphasis) {
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case 1: return FONT_MONOSPACED_BOLD;
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case 2: return FONT_MONOSPACED_ITALIC;
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case 3: return FONT_MONOSPACED_BOLDITALIC;
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default: return FONT_MONOSPACED_PLAIN;
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}
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} else if (ucFf == FAMILY_ROMAN) {
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/* Set to the default serif font */
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switch (iEmphasis) {
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case 1: return FONT_SERIF_BOLD;
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case 2: return FONT_SERIF_ITALIC;
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case 3: return FONT_SERIF_BOLDITALIC;
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default: return FONT_SERIF_PLAIN;
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}
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} else if (ucFf == FAMILY_SWISS) {
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/* Set to the default sans serif font */
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switch (iEmphasis) {
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case 1: return FONT_SANS_SERIF_BOLD;
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case 2: return FONT_SANS_SERIF_ITALIC;
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case 3: return FONT_SANS_SERIF_BOLDITALIC;
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default: return FONT_SANS_SERIF_PLAIN;
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}
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} else {
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/* Set to the default default font */
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switch (iEmphasis) {
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case 1: return FONT_SERIF_BOLD;
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case 2: return FONT_SERIF_ITALIC;
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case 3: return FONT_SERIF_BOLDITALIC;
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default: return FONT_SERIF_PLAIN;
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}
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}
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} /* end of szGetDefaultFont */
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/*
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* See if the fontname from the Word file matches the fontname from the
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* font translation file.
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* If iBytesPerChar is one than aucWord is in ISO-8859-x (Word 2/6/7),
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* if iBytesPerChar is two than aucWord is in Unicode (Word 8/9/10).
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*/
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static BOOL
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bFontEqual(const UCHAR *aucWord, const char *szTable, int iBytesPerChar)
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{
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const UCHAR *pucTmp;
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const char *pcTmp;
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fail(aucWord == NULL || szTable == NULL);
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fail(iBytesPerChar != 1 && iBytesPerChar != 2);
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for (pucTmp = aucWord, pcTmp = szTable;
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*pucTmp != 0;
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pucTmp += iBytesPerChar, pcTmp++) {
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if (ulToUpper((ULONG)*pucTmp) !=
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ulToUpper((ULONG)(UCHAR)*pcTmp)) {
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return FALSE;
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}
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}
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return *pcTmp == '\0';
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} /* end of bFontEqual */
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/*
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* vFontname2Table - add fontnames to the font table
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*/
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static void
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vFontname2Table(const UCHAR *aucFont, const UCHAR *aucAltFont,
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int iBytesPerChar, int iEmphasis, UCHAR ucFFN,
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const char *szWordFont, const char *szOurFont,
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font_table_type *pFontTableRecord)
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{
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BOOL bMatchFound;
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fail(aucFont == NULL || aucFont[0] == 0);
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fail(aucAltFont != NULL && aucAltFont[0] == 0);
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fail(iBytesPerChar != 1 && iBytesPerChar != 2);
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fail(iEmphasis < 0 || iEmphasis > 3);
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fail(szWordFont == NULL || szWordFont[0] == '\0');
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fail(szOurFont == NULL || szOurFont[0] == '\0');
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fail(pFontTableRecord == NULL);
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bMatchFound = bFontEqual(aucFont, szWordFont, iBytesPerChar);
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if (!bMatchFound && aucAltFont != NULL) {
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bMatchFound = bFontEqual(aucAltFont, szWordFont, iBytesPerChar);
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}
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if (!bMatchFound &&
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pFontTableRecord->szWordFontname[0] == '\0' &&
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szWordFont[0] == '*' &&
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szWordFont[1] == '\0') {
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/*
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* szWordFont contains a "*", so szOurFont will contain the
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* "default default" font. See if we can do better than that.
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*/
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szOurFont = szGetDefaultFont(ucFFN, iEmphasis);
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bMatchFound = TRUE;
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}
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if (bMatchFound) {
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switch (iBytesPerChar) {
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case 1:
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(void)strncpy(pFontTableRecord->szWordFontname,
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(const char *)aucFont,
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sizeof(pFontTableRecord->szWordFontname) - 1);
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break;
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case 2:
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(void)unincpy(pFontTableRecord->szWordFontname,
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aucFont,
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sizeof(pFontTableRecord->szWordFontname) - 1);
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break;
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default:
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DBG_FIXME();
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pFontTableRecord->szWordFontname[0] = '\0';
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break;
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}
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pFontTableRecord->szWordFontname[
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sizeof(pFontTableRecord->szWordFontname) - 1] = '\0';
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(void)strncpy(pFontTableRecord->szOurFontname, szOurFont,
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sizeof(pFontTableRecord->szOurFontname) - 1);
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pFontTableRecord->szOurFontname[
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sizeof(pFontTableRecord->szOurFontname) - 1] = '\0';
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NO_DBG_MSG(pFontTableRecord->szWordFontname);
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NO_DBG_MSG(pFontTableRecord->szOurFontname);
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pFontTableRecord->ucFFN = ucFFN;
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pFontTableRecord->ucEmphasis = (UCHAR)iEmphasis;
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}
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} /* end of vFontname2Table */
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/*
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* vCreateFontTable - Create and initialize the internal font table
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*/
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static void
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vCreateFontTable(void)
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{
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font_table_type *pTmp;
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int iNbr;
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if (tFontTableRecords == 0) {
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pFontTable = xfree(pFontTable);
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return;
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}
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/* Create the font table */
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pFontTable = xcalloc(tFontTableRecords, sizeof(*pFontTable));
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/* Initialize the font table */
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for (iNbr = 0, pTmp = pFontTable;
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pTmp < pFontTable + tFontTableRecords;
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iNbr++, pTmp++) {
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pTmp->ucWordFontNumber = (UCHAR)(iNbr / 4);
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switch (iNbr % 4) {
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case 0:
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pTmp->usFontStyle = FONT_REGULAR;
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break;
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case 1:
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pTmp->usFontStyle = FONT_BOLD;
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break;
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case 2:
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pTmp->usFontStyle = FONT_ITALIC;
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break;
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case 3:
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pTmp->usFontStyle = FONT_BOLD|FONT_ITALIC;
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break;
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default:
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DBG_DEC(iNbr);
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break;
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}
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}
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} /* end of vCreateFontTable */
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/*
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* vMinimizeFontTable - make the font table as small as possible
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*/
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static void
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vMinimizeFontTable(void)
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{
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font_block_type tFontNext;
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const style_block_type *pStyle;
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const font_block_type *pFont;
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font_table_type *pTmp;
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int iUnUsed;
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BOOL bMustAddTableFont;
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NO_DBG_MSG("vMinimizeFontTable");
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if (tFontTableRecords == 0) {
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pFontTable = xfree(pFontTable);
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return;
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}
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/* See if we must add a font for our tables */
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bMustAddTableFont = TRUE;
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#if 0
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DBG_MSG("Before");
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DBG_DEC(tFontTableRecords);
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for (pTmp = pFontTable;
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pTmp < pFontTable + tFontTableRecords;
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pTmp++) {
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DBG_DEC(pTmp->ucWordFontNumber);
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DBG_HEX(pTmp->usFontStyle);
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DBG_MSG(pTmp->szWordFontname);
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DBG_MSG(pTmp->szOurFontname);
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}
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#endif /* DEBUG */
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/* See which fonts/styles we really need */
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/* Default font/style is by definition in use */
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pFontTable[0].ucInUse = 1;
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/* Make InUse 1 for all the fonts/styles that WILL be used */
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pFont = NULL;
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while((pFont = pGetNextFontInfoListItem(pFont)) != NULL) {
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pTmp = pFontTable + 4 * (int)pFont->ucFontNumber;
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if (bIsBold(pFont->usFontStyle)) {
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pTmp++;
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}
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if (bIsItalic(pFont->usFontStyle)) {
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pTmp += 2;
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}
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if (pTmp >= pFontTable + tFontTableRecords) {
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continue;
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}
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if (STREQ(pTmp->szOurFontname, TABLE_FONT)) {
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/* The table font is already present */
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bMustAddTableFont = FALSE;
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}
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pTmp->ucInUse = 1;
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}
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/* Make InUse 1 for all the fonts/styles that MIGHT be used */
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pStyle = NULL;
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while((pStyle = pGetNextStyleInfoListItem(pStyle)) != NULL) {
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vFillFontFromStylesheet(pStyle->usIstdNext, &tFontNext);
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vCorrectFontValues(&tFontNext);
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pTmp = pFontTable + 4 * (int)tFontNext.ucFontNumber;
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if (bIsBold(tFontNext.usFontStyle)) {
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pTmp++;
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}
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if (bIsItalic(tFontNext.usFontStyle)) {
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pTmp += 2;
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}
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if (pTmp >= pFontTable + tFontTableRecords) {
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continue;
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}
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if (STREQ(pTmp->szOurFontname, TABLE_FONT)) {
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/* The table font is already present */
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bMustAddTableFont = FALSE;
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}
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pTmp->ucInUse = 1;
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}
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/* Remove the unused font entries from the font table */
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iUnUsed = 0;
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for (pTmp = pFontTable;
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pTmp < pFontTable + tFontTableRecords;
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pTmp++) {
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if (pTmp->ucInUse == 0) {
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iUnUsed++;
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continue;
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}
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if (iUnUsed > 0) {
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fail(pTmp - iUnUsed <= pFontTable);
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*(pTmp - iUnUsed) = *pTmp;
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}
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}
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fail(iUnUsed < 0);
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fail(tFontTableRecords <= (size_t)iUnUsed);
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tFontTableRecords -= (size_t)iUnUsed;
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if (bMustAddTableFont) {
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pTmp = pFontTable + tFontTableRecords;
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fail(pTmp <= pFontTable);
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pTmp->ucWordFontNumber = (pTmp - 1)->ucWordFontNumber + 1;
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pTmp->usFontStyle = FONT_REGULAR;
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pTmp->ucInUse = 1;
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strcpy(pTmp->szWordFontname, "Extra Table Font");
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strcpy(pTmp->szOurFontname, TABLE_FONT);
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tFontTableRecords++;
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iUnUsed--;
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}
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if (iUnUsed > 0) {
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/* Resize the font table */
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pFontTable = xrealloc(pFontTable,
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tFontTableRecords * sizeof(*pFontTable));
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}
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#if defined(DEBUG)
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DBG_MSG("After");
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DBG_DEC(tFontTableRecords);
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for (pTmp = pFontTable;
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pTmp < pFontTable + tFontTableRecords;
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pTmp++) {
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DBG_DEC(pTmp->ucWordFontNumber);
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DBG_HEX(pTmp->usFontStyle);
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DBG_MSG(pTmp->szWordFontname);
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DBG_MSG(pTmp->szOurFontname);
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}
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#endif /* DEBUG */
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} /* end of vMinimizeFontTable */
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/*
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* bReadFontFile - read and check a line from the font translation file
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*
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* returns TRUE when a correct line has been read, otherwise FALSE
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*/
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static BOOL
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bReadFontFile(FILE *pFontTableFile, char *szWordFont,
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int *piItalic, int *piBold, char *szOurFont, int *piSpecial)
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{
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char *pcTmp;
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int iFields;
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char szLine[FONT_LINE_LENGTH];
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fail(szWordFont == NULL || szOurFont == NULL);
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fail(piItalic == NULL || piBold == NULL || piSpecial == NULL);
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while (fgets(szLine, (int)sizeof(szLine), pFontTableFile) != NULL) {
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if (szLine[0] == '#' ||
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szLine[0] == '\n' ||
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szLine[0] == '\r') {
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continue;
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}
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iFields = sscanf(szLine, "%[^,],%d,%d,%1s%[^,],%d",
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szWordFont, piItalic, piBold,
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&szOurFont[0], &szOurFont[1], piSpecial);
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if (iFields != 6) {
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pcTmp = strchr(szLine, '\r');
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if (pcTmp != NULL) {
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*pcTmp = '\0';
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}
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pcTmp = strchr(szLine, '\n');
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if (pcTmp != NULL) {
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*pcTmp = '\0';
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}
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DBG_DEC(iFields);
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werr(0, "Syntax error in: '%s'", szLine);
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continue;
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}
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if (strlen(szWordFont) >=
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sizeof(pFontTable[0].szWordFontname)) {
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werr(0, "Word fontname too long: '%s'", szWordFont);
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continue;
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}
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if (strlen(szOurFont) >=
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sizeof(pFontTable[0].szOurFontname)) {
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werr(0, "Local fontname too long: '%s'", szOurFont);
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continue;
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}
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/* The current line passed all the tests */
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return TRUE;
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}
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return FALSE;
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} /* end of bReadFontFile */
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/*
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* vCreate0FontTable - create a font table from Word for DOS
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*/
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void
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vCreate0FontTable(void)
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{
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FILE *pFontTableFile;
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font_table_type *pTmp;
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UCHAR *aucFont;
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int iBold, iItalic, iSpecial, iEmphasis, iFtc;
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UCHAR ucPrq, ucFf, ucFFN;
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char szWordFont[FONT_LINE_LENGTH], szOurFont[FONT_LINE_LENGTH];
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tFontTableRecords = 0;
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pFontTable = xfree(pFontTable);
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pFontTableFile = pOpenFontTableFile();
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if (pFontTableFile == NULL) {
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/* No translation table file, no translation table */
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return;
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}
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|
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/* Get the maximum number of entries in the font table */
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tFontTableRecords = 64;
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tFontTableRecords *= 4; /* Plain, Bold, Italic and Bold/italic */
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tFontTableRecords++; /* One extra for the table-font */
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vCreateFontTable();
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|
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/* Read the font translation file */
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iItalic = 0;
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iBold = 0;
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iSpecial = 0;
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while (bReadFontFile(pFontTableFile, szWordFont,
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&iItalic, &iBold, szOurFont, &iSpecial)) {
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iEmphasis = 0;
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if (iBold != 0) {
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iEmphasis++;
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}
|
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if (iItalic != 0) {
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iEmphasis += 2;
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}
|
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for (iFtc = 0, pTmp = pFontTable + iEmphasis;
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pTmp < pFontTable + tFontTableRecords;
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iFtc++, pTmp += 4) {
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if (iFtc >= 16 && iFtc <= 55) {
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ucPrq = PITCH_VARIABLE;
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ucFf = FAMILY_ROMAN;
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aucFont = (UCHAR *)"Times";
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} else {
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ucPrq = PITCH_FIXED;
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ucFf = FAMILY_MODERN;
|
|
aucFont = (UCHAR *)"Courier";
|
|
}
|
|
ucFFN = (ucFf << 4) | ucPrq;
|
|
vFontname2Table(aucFont, NULL, 1, iEmphasis,
|
|
ucFFN, szWordFont, szOurFont, pTmp);
|
|
}
|
|
}
|
|
(void)fclose(pFontTableFile);
|
|
vMinimizeFontTable();
|
|
} /* end of vCreate0FontTable */
|
|
|
|
/*
|
|
* vCreate2FontTable - create a font table from WinWord 1/2
|
|
*/
|
|
void
|
|
vCreate2FontTable(FILE *pFile, int iWordVersion, const UCHAR *aucHeader)
|
|
{
|
|
FILE *pFontTableFile;
|
|
font_table_type *pTmp;
|
|
UCHAR *aucFont;
|
|
UCHAR *aucBuffer;
|
|
ULONG ulBeginFontInfo;
|
|
size_t tFontInfoLen;
|
|
int iPos, iOff, iRecLen;
|
|
int iBold, iItalic, iSpecial, iEmphasis;
|
|
UCHAR ucFFN;
|
|
char szWordFont[FONT_LINE_LENGTH], szOurFont[FONT_LINE_LENGTH];
|
|
|
|
fail(pFile == NULL || aucHeader == NULL);
|
|
fail(iWordVersion != 1 && iWordVersion != 2);
|
|
|
|
tFontTableRecords = 0;
|
|
pFontTable = xfree(pFontTable);
|
|
|
|
pFontTableFile = pOpenFontTableFile();
|
|
if (pFontTableFile == NULL) {
|
|
/* No translation table file, no translation table */
|
|
return;
|
|
}
|
|
|
|
ulBeginFontInfo = ulGetLong(0xb2, aucHeader); /* fcSttbfffn */
|
|
DBG_HEX(ulBeginFontInfo);
|
|
tFontInfoLen = (size_t)usGetWord(0xb6, aucHeader); /* cbSttbfffn */
|
|
DBG_DEC(tFontInfoLen);
|
|
|
|
if (ulBeginFontInfo > (ULONG)LONG_MAX || tFontInfoLen == 0) {
|
|
/* Don't ask me why this is needed */
|
|
DBG_HEX_C(tFontInfoLen != 0, ulBeginFontInfo);
|
|
(void)fclose(pFontTableFile);
|
|
return;
|
|
}
|
|
|
|
aucBuffer = xmalloc(tFontInfoLen);
|
|
if (!bReadBytes(aucBuffer, tFontInfoLen, ulBeginFontInfo, pFile)) {
|
|
aucBuffer = xfree(aucBuffer);
|
|
(void)fclose(pFontTableFile);
|
|
return;
|
|
}
|
|
NO_DBG_PRINT_BLOCK(aucBuffer, tFontInfoLen);
|
|
DBG_DEC(usGetWord(0, aucBuffer));
|
|
|
|
/* Compute the maximum number of entries in the font table */
|
|
if (iWordVersion == 1) {
|
|
fail(tFontInfoLen < 2);
|
|
/* WinWord 1 has three implicit fonts */
|
|
tFontTableRecords = 3;
|
|
iOff = 2;
|
|
} else {
|
|
fail(tFontInfoLen < 6);
|
|
/* WinWord 2 and up have no implicit fonts */
|
|
tFontTableRecords = 0;
|
|
iOff = 3;
|
|
}
|
|
iPos = 2;
|
|
while (iPos + iOff < (int)tFontInfoLen) {
|
|
iRecLen = (int)ucGetByte(iPos, aucBuffer);
|
|
NO_DBG_DEC(iRecLen);
|
|
NO_DBG_MSG(aucBuffer + iPos + iOff);
|
|
iPos += iRecLen + 1;
|
|
tFontTableRecords++;
|
|
}
|
|
tFontTableRecords *= 4; /* Plain, Bold, Italic and Bold/Italic */
|
|
tFontTableRecords++; /* One extra for the table-font */
|
|
vCreateFontTable();
|
|
|
|
/* Add the tree implicit fonts (in four variations) */
|
|
if (iWordVersion == 1) {
|
|
fail(tFontTableRecords < 13);
|
|
vFontname2Table((UCHAR *)"Tms Rmn", NULL, 1, 0,
|
|
(UCHAR)((FAMILY_ROMAN << 4) | PITCH_VARIABLE),
|
|
"*", "Times-Roman", pFontTable + 0);
|
|
vFontname2Table((UCHAR *)"Tms Rmn", NULL, 1, 1,
|
|
(UCHAR)((FAMILY_ROMAN << 4) | PITCH_VARIABLE),
|
|
"*", "Times-Bold", pFontTable + 1);
|
|
vFontname2Table((UCHAR *)"Tms Rmn", NULL, 1, 2,
|
|
(UCHAR)((FAMILY_ROMAN << 4) | PITCH_VARIABLE),
|
|
"*", "Times-Italic", pFontTable + 2);
|
|
vFontname2Table((UCHAR *)"Tms Rmn", NULL, 1, 3,
|
|
(UCHAR)((FAMILY_ROMAN << 4) | PITCH_VARIABLE),
|
|
"*", "Times-BoldItalic", pFontTable + 3);
|
|
vFontname2Table((UCHAR *)"Symbol", NULL, 1, 0,
|
|
(UCHAR)((FAMILY_ROMAN << 4) | PITCH_VARIABLE),
|
|
"*", "Times-Roman", pFontTable + 4);
|
|
vFontname2Table((UCHAR *)"Symbol", NULL, 1, 1,
|
|
(UCHAR)((FAMILY_ROMAN << 4) | PITCH_VARIABLE),
|
|
"*", "Times-Bold", pFontTable + 5);
|
|
vFontname2Table((UCHAR *)"Symbol", NULL, 1, 2,
|
|
(UCHAR)((FAMILY_ROMAN << 4) | PITCH_VARIABLE),
|
|
"*", "Times-Italic", pFontTable + 6);
|
|
vFontname2Table((UCHAR *)"Symbol", NULL, 1, 3,
|
|
(UCHAR)((FAMILY_ROMAN << 4) | PITCH_VARIABLE),
|
|
"*", "Times-BoldItalic", pFontTable + 7);
|
|
vFontname2Table((UCHAR *)"Helv", NULL, 1, 0,
|
|
(UCHAR)((FAMILY_SWISS << 4) | PITCH_VARIABLE),
|
|
"*", "Helvetica", pFontTable + 8);
|
|
vFontname2Table((UCHAR *)"Helv", NULL, 1, 1,
|
|
(UCHAR)((FAMILY_SWISS << 4) | PITCH_VARIABLE),
|
|
"*", "Helvetica-Bold", pFontTable + 9);
|
|
vFontname2Table((UCHAR *)"Helv", NULL, 1, 2,
|
|
(UCHAR)((FAMILY_SWISS << 4) | PITCH_VARIABLE),
|
|
"*", "Helvetica-Oblique", pFontTable + 10);
|
|
vFontname2Table((UCHAR *)"Helv", NULL, 1, 3,
|
|
(UCHAR)((FAMILY_SWISS << 4) | PITCH_VARIABLE),
|
|
"*", "Helvetica-BoldOblique", pFontTable + 11);
|
|
}
|
|
|
|
/* Read the font translation file */
|
|
iItalic = 0;
|
|
iBold = 0;
|
|
iSpecial = 0;
|
|
while (bReadFontFile(pFontTableFile, szWordFont,
|
|
&iItalic, &iBold, szOurFont, &iSpecial)) {
|
|
iEmphasis = 0;
|
|
if (iBold != 0) {
|
|
iEmphasis++;
|
|
}
|
|
if (iItalic != 0) {
|
|
iEmphasis += 2;
|
|
}
|
|
pTmp = pFontTable + iEmphasis;
|
|
iPos = 2;
|
|
while (iPos + iOff < (int)tFontInfoLen) {
|
|
iRecLen = (int)ucGetByte(iPos, aucBuffer);
|
|
ucFFN = ucGetByte(iPos + 1, aucBuffer);
|
|
aucFont = aucBuffer + iPos + iOff;
|
|
vFontname2Table(aucFont, NULL, 1, iEmphasis,
|
|
ucFFN, szWordFont, szOurFont, pTmp);
|
|
pTmp += 4;
|
|
iPos += iRecLen + 1;
|
|
}
|
|
}
|
|
(void)fclose(pFontTableFile);
|
|
aucBuffer = xfree(aucBuffer);
|
|
vMinimizeFontTable();
|
|
} /* end of vCreate2FontTable */
|
|
|
|
/*
|
|
* vCreate6FontTable - create a font table from Word 6/7
|
|
*/
|
|
void
|
|
vCreate6FontTable(FILE *pFile, ULONG ulStartBlock,
|
|
const ULONG *aulBBD, size_t tBBDLen,
|
|
const UCHAR *aucHeader)
|
|
{
|
|
FILE *pFontTableFile;
|
|
font_table_type *pTmp;
|
|
UCHAR *aucFont, *aucAltFont;
|
|
UCHAR *aucBuffer;
|
|
ULONG ulBeginFontInfo;
|
|
size_t tFontInfoLen;
|
|
int iPos, iRecLen, iOffsetAltName;
|
|
int iBold, iItalic, iSpecial, iEmphasis;
|
|
UCHAR ucFFN;
|
|
char szWordFont[FONT_LINE_LENGTH], szOurFont[FONT_LINE_LENGTH];
|
|
|
|
fail(pFile == NULL || aucHeader == NULL);
|
|
fail(ulStartBlock > MAX_BLOCKNUMBER && ulStartBlock != END_OF_CHAIN);
|
|
fail(aulBBD == NULL);
|
|
|
|
tFontTableRecords = 0;
|
|
pFontTable = xfree(pFontTable);
|
|
|
|
pFontTableFile = pOpenFontTableFile();
|
|
if (pFontTableFile == NULL) {
|
|
/* No translation table file, no translation table */
|
|
return;
|
|
}
|
|
|
|
ulBeginFontInfo = ulGetLong(0xd0, aucHeader); /* fcSttbfffn */
|
|
DBG_HEX(ulBeginFontInfo);
|
|
tFontInfoLen = (size_t)ulGetLong(0xd4, aucHeader); /* lcbSttbfffn */
|
|
DBG_DEC(tFontInfoLen);
|
|
fail(tFontInfoLen < 9);
|
|
|
|
aucBuffer = xmalloc(tFontInfoLen);
|
|
if (!bReadBuffer(pFile, ulStartBlock,
|
|
aulBBD, tBBDLen, BIG_BLOCK_SIZE,
|
|
aucBuffer, ulBeginFontInfo, tFontInfoLen)) {
|
|
aucBuffer = xfree(aucBuffer);
|
|
(void)fclose(pFontTableFile);
|
|
return;
|
|
}
|
|
DBG_DEC(usGetWord(0, aucBuffer));
|
|
|
|
/* Compute the maximum number of entries in the font table */
|
|
tFontTableRecords = 0;
|
|
iPos = 2;
|
|
while (iPos + 6 < (int)tFontInfoLen) {
|
|
iRecLen = (int)ucGetByte(iPos, aucBuffer);
|
|
NO_DBG_DEC(iRecLen);
|
|
iOffsetAltName = (int)ucGetByte(iPos + 5, aucBuffer);
|
|
NO_DBG_MSG(aucBuffer + iPos + 6);
|
|
NO_DBG_MSG_C(iOffsetAltName > 0,
|
|
aucBuffer + iPos + 6 + iOffsetAltName);
|
|
iPos += iRecLen + 1;
|
|
tFontTableRecords++;
|
|
}
|
|
tFontTableRecords *= 4; /* Plain, Bold, Italic and Bold/italic */
|
|
tFontTableRecords++; /* One extra for the table-font */
|
|
vCreateFontTable();
|
|
|
|
/* Read the font translation file */
|
|
iItalic = 0;
|
|
iBold = 0;
|
|
iSpecial = 0;
|
|
while (bReadFontFile(pFontTableFile, szWordFont,
|
|
&iItalic, &iBold, szOurFont, &iSpecial)) {
|
|
iEmphasis = 0;
|
|
if (iBold != 0) {
|
|
iEmphasis++;
|
|
}
|
|
if (iItalic != 0) {
|
|
iEmphasis += 2;
|
|
}
|
|
pTmp = pFontTable + iEmphasis;
|
|
iPos = 2;
|
|
while (iPos + 6 < (int)tFontInfoLen) {
|
|
iRecLen = (int)ucGetByte(iPos, aucBuffer);
|
|
ucFFN = ucGetByte(iPos + 1, aucBuffer);
|
|
aucFont = aucBuffer + iPos + 6;
|
|
iOffsetAltName = (int)ucGetByte(iPos + 5, aucBuffer);
|
|
if (iOffsetAltName <= 0) {
|
|
aucAltFont = NULL;
|
|
} else {
|
|
aucAltFont = aucFont + iOffsetAltName;
|
|
NO_DBG_MSG(aucFont);
|
|
NO_DBG_MSG(aucAltFont);
|
|
}
|
|
vFontname2Table(aucFont, aucAltFont, 1, iEmphasis,
|
|
ucFFN, szWordFont, szOurFont, pTmp);
|
|
pTmp += 4;
|
|
iPos += iRecLen + 1;
|
|
}
|
|
}
|
|
(void)fclose(pFontTableFile);
|
|
aucBuffer = xfree(aucBuffer);
|
|
vMinimizeFontTable();
|
|
} /* end of vCreate6FontTable */
|
|
|
|
/*
|
|
* vCreate8FontTable - create a font table from Word 8/9/10
|
|
*/
|
|
void
|
|
vCreate8FontTable(FILE *pFile, const pps_info_type *pPPS,
|
|
const ULONG *aulBBD, size_t tBBDLen,
|
|
const ULONG *aulSBD, size_t tSBDLen,
|
|
const UCHAR *aucHeader)
|
|
{
|
|
FILE *pFontTableFile;
|
|
font_table_type *pTmp;
|
|
const ULONG *aulBlockDepot;
|
|
UCHAR *aucFont, *aucAltFont;
|
|
UCHAR *aucBuffer;
|
|
ULONG ulBeginFontInfo;
|
|
size_t tFontInfoLen, tBlockDepotLen, tBlockSize;
|
|
int iPos, iRecLen, iOffsetAltName;
|
|
int iBold, iItalic, iSpecial, iEmphasis;
|
|
UCHAR ucFFN;
|
|
char szWordFont[FONT_LINE_LENGTH], szOurFont[FONT_LINE_LENGTH];
|
|
|
|
fail(pFile == NULL || pPPS == NULL || aucHeader == NULL);
|
|
fail(aulBBD == NULL || aulSBD == NULL);
|
|
|
|
tFontTableRecords = 0;
|
|
pFontTable = xfree(pFontTable);
|
|
|
|
pFontTableFile = pOpenFontTableFile();
|
|
if (pFontTableFile == NULL) {
|
|
/* No translation table file, no translation table */
|
|
return;
|
|
}
|
|
|
|
ulBeginFontInfo = ulGetLong(0x112, aucHeader); /* fcSttbfffn */
|
|
DBG_HEX(ulBeginFontInfo);
|
|
tFontInfoLen = (size_t)ulGetLong(0x116, aucHeader); /* lcbSttbfffn */
|
|
DBG_DEC(tFontInfoLen);
|
|
fail(tFontInfoLen < 46);
|
|
|
|
DBG_DEC(pPPS->tTable.ulSB);
|
|
DBG_HEX(pPPS->tTable.ulSize);
|
|
if (pPPS->tTable.ulSize == 0) {
|
|
DBG_MSG("No fontname table");
|
|
(void)fclose(pFontTableFile);
|
|
return;
|
|
}
|
|
|
|
if (pPPS->tTable.ulSize < MIN_SIZE_FOR_BBD_USE) {
|
|
/* Use the Small Block Depot */
|
|
aulBlockDepot = aulSBD;
|
|
tBlockDepotLen = tSBDLen;
|
|
tBlockSize = SMALL_BLOCK_SIZE;
|
|
} else {
|
|
/* Use the Big Block Depot */
|
|
aulBlockDepot = aulBBD;
|
|
tBlockDepotLen = tBBDLen;
|
|
tBlockSize = BIG_BLOCK_SIZE;
|
|
}
|
|
aucBuffer = xmalloc(tFontInfoLen);
|
|
if (!bReadBuffer(pFile, pPPS->tTable.ulSB,
|
|
aulBlockDepot, tBlockDepotLen, tBlockSize,
|
|
aucBuffer, ulBeginFontInfo, tFontInfoLen)) {
|
|
aucBuffer = xfree(aucBuffer);
|
|
(void)fclose(pFontTableFile);
|
|
return;
|
|
}
|
|
NO_DBG_PRINT_BLOCK(aucBuffer, tFontInfoLen);
|
|
|
|
/* Get the maximum number of entries in the font table */
|
|
tFontTableRecords = (size_t)usGetWord(0, aucBuffer);
|
|
tFontTableRecords *= 4; /* Plain, Bold, Italic and Bold/italic */
|
|
tFontTableRecords++; /* One extra for the table-font */
|
|
vCreateFontTable();
|
|
|
|
/* Read the font translation file */
|
|
iItalic = 0;
|
|
iBold = 0;
|
|
iSpecial = 0;
|
|
while (bReadFontFile(pFontTableFile, szWordFont,
|
|
&iItalic, &iBold, szOurFont, &iSpecial)) {
|
|
iEmphasis = 0;
|
|
if (iBold != 0) {
|
|
iEmphasis++;
|
|
}
|
|
if (iItalic != 0) {
|
|
iEmphasis += 2;
|
|
}
|
|
pTmp = pFontTable + iEmphasis;
|
|
iPos = 4;
|
|
while (iPos + 40 < (int)tFontInfoLen) {
|
|
iRecLen = (int)ucGetByte(iPos, aucBuffer);
|
|
ucFFN = ucGetByte(iPos + 1, aucBuffer);
|
|
aucFont = aucBuffer + iPos + 40;
|
|
iOffsetAltName = (int)unilen(aucFont);
|
|
if (iPos + 40 + iOffsetAltName + 4 >= iRecLen) {
|
|
aucAltFont = NULL;
|
|
} else {
|
|
aucAltFont = aucFont + iOffsetAltName + 2;
|
|
NO_DBG_UNICODE(aucFont);
|
|
NO_DBG_UNICODE(aucAltFont);
|
|
}
|
|
vFontname2Table(aucFont, aucAltFont, 2, iEmphasis,
|
|
ucFFN, szWordFont, szOurFont, pTmp);
|
|
pTmp += 4;
|
|
iPos += iRecLen + 1;
|
|
}
|
|
}
|
|
(void)fclose(pFontTableFile);
|
|
aucBuffer = xfree(aucBuffer);
|
|
vMinimizeFontTable();
|
|
} /* end of vCreate8FontTable */
|
|
|
|
/*
|
|
* Destroy the internal font table by freeing its memory
|
|
*/
|
|
void
|
|
vDestroyFontTable(void)
|
|
{
|
|
DBG_MSG("vDestroyFontTable");
|
|
|
|
tFontTableRecords = 0;
|
|
pFontTable = xfree(pFontTable);
|
|
} /* end of vDestroyFontTable */
|
|
|
|
/*
|
|
* pGetNextFontTableRecord
|
|
*
|
|
* returns the next record in the table or NULL if there is no next record
|
|
*/
|
|
const font_table_type *
|
|
pGetNextFontTableRecord(const font_table_type *pRecordCurr)
|
|
{
|
|
size_t tIndexCurr;
|
|
|
|
if (pRecordCurr == NULL) {
|
|
/* No current record, so start with the first one */
|
|
return &pFontTable[0];
|
|
}
|
|
|
|
if (pRecordCurr < pFontTable ||
|
|
pRecordCurr >= pFontTable + tFontTableRecords) {
|
|
/* Not a pointer in the array */
|
|
DBG_HEX(pRecordCurr);
|
|
DBG_HEX(pFontTable);
|
|
return NULL;
|
|
}
|
|
|
|
tIndexCurr = (size_t)(pRecordCurr - pFontTable);
|
|
if (tIndexCurr + 1 < tFontTableRecords) {
|
|
/* There is a next record, so return it */
|
|
return &pFontTable[tIndexCurr + 1];
|
|
}
|
|
/* There is no next record */
|
|
return NULL;
|
|
} /* end of pGetNextFontTableRecord */
|
|
|
|
/*
|
|
* tGetFontTableLength
|
|
*
|
|
* returns the number of records in the internal font table
|
|
*/
|
|
size_t
|
|
tGetFontTableLength(void)
|
|
{
|
|
return tFontTableRecords;
|
|
} /* end of tGetFontTableLength */
|
|
|
|
#if !defined(__riscos)
|
|
/*
|
|
* vCorrect4PDF - only include PDF default fonts
|
|
*/
|
|
static void
|
|
vCorrect4PDF(void)
|
|
{
|
|
font_table_type *pTmp;
|
|
const char *szOurFont;
|
|
|
|
for (pTmp = pFontTable; pTmp < pFontTable + tFontTableRecords; pTmp++) {
|
|
if (STRCEQ(pTmp->szOurFontname, FONT_MONOSPACED_PLAIN) ||
|
|
STRCEQ(pTmp->szOurFontname, FONT_MONOSPACED_BOLD) ||
|
|
STRCEQ(pTmp->szOurFontname, FONT_MONOSPACED_ITALIC) ||
|
|
STRCEQ(pTmp->szOurFontname, FONT_MONOSPACED_BOLDITALIC) ||
|
|
STRCEQ(pTmp->szOurFontname, FONT_SERIF_PLAIN) ||
|
|
STRCEQ(pTmp->szOurFontname, FONT_SERIF_BOLD) ||
|
|
STRCEQ(pTmp->szOurFontname, FONT_SERIF_ITALIC) ||
|
|
STRCEQ(pTmp->szOurFontname, FONT_SERIF_BOLDITALIC) ||
|
|
STRCEQ(pTmp->szOurFontname, FONT_SANS_SERIF_PLAIN) ||
|
|
STRCEQ(pTmp->szOurFontname, FONT_SANS_SERIF_BOLD) ||
|
|
STRCEQ(pTmp->szOurFontname, FONT_SANS_SERIF_ITALIC) ||
|
|
STRCEQ(pTmp->szOurFontname, FONT_SANS_SERIF_BOLDITALIC)) {
|
|
/* Already a default font */
|
|
continue;
|
|
}
|
|
szOurFont =
|
|
szGetDefaultFont(pTmp->ucFFN, (int)pTmp->ucEmphasis);
|
|
(void)strncpy(pTmp->szOurFontname, szOurFont,
|
|
sizeof(pTmp->szOurFontname) - 1);
|
|
pTmp->szOurFontname[sizeof(pTmp->szOurFontname) - 1] = '\0';
|
|
}
|
|
} /* end of vCorrect4PDF */
|
|
|
|
/*
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* vCorrect4CyrPS - only include monospaced fonts
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*/
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static void
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vCorrect4CyrPS(void)
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{
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font_table_type *pTmp;
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const char *szOurFont;
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UCHAR ucFFN;
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ucFFN = (FAMILY_UNKNOWN << 4) | PITCH_FIXED;
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for (pTmp = pFontTable; pTmp < pFontTable + tFontTableRecords; pTmp++) {
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szOurFont = szGetDefaultFont(ucFFN, (int)pTmp->ucEmphasis);
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(void)strncpy(pTmp->szOurFontname, szOurFont,
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sizeof(pTmp->szOurFontname) - 1);
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pTmp->szOurFontname[sizeof(pTmp->szOurFontname) - 1] = '\0';
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}
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} /* end of vCorrect4CyrPS */
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#endif /* __riscos */
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/*
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* vCorrectFontTable - correct the font table in special cases
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*/
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void
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vCorrectFontTable(conversion_type eConversionType, encoding_type eEncoding)
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{
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#if !defined(__riscos)
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if (eConversionType == conversion_pdf) {
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vCorrect4PDF();
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}
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if (eConversionType == conversion_ps &&
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eEncoding == encoding_cyrillic) {
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vCorrect4CyrPS();
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}
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#endif /* __riscos */
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} /* end of vCorrectFontTable */
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/*
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* lComputeSpaceWidth - compute the width of a space character
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*
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* Returns the space width in millipoints
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*/
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long
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lComputeSpaceWidth(drawfile_fontref tFontRef, USHORT usFontSize)
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{
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char szSpace[] = " ";
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|
|
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fail(usFontSize < MIN_FONT_SIZE || usFontSize > MAX_FONT_SIZE);
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return lComputeStringWidth(szSpace, 1, tFontRef, usFontSize);
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} /* end of lComputeSpaceWidth */
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