885 lines
29 KiB
C++
885 lines
29 KiB
C++
// Copyright 2015 The PDFium Authors
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// Use of this source code is governed by a BSD-style license that can be
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// found in the LICENSE file.
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// Original code copyright 2014 Foxit Software Inc. http://www.foxitsoftware.com
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#include "xfa/fgas/font/cfgas_fontmgr.h"
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#include <stdint.h>
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#include <algorithm>
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#include <iterator>
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#include <memory>
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#include <utility>
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#include "build/build_config.h"
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#include "core/fxcrt/cfx_read_only_vector_stream.h"
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#include "core/fxcrt/data_vector.h"
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#include "core/fxcrt/fixed_uninit_data_vector.h"
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#include "core/fxcrt/fx_codepage.h"
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#include "core/fxcrt/fx_extension.h"
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#include "core/fxcrt/fx_memory_wrappers.h"
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#include "core/fxcrt/fx_system.h"
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#include "core/fxge/cfx_font.h"
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#include "core/fxge/cfx_fontmapper.h"
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#include "core/fxge/cfx_fontmgr.h"
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#include "core/fxge/cfx_gemodule.h"
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#include "core/fxge/fx_font.h"
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#include "third_party/base/check.h"
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#include "third_party/base/containers/contains.h"
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#include "third_party/base/numerics/safe_conversions.h"
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#include "third_party/base/span.h"
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#include "xfa/fgas/font/cfgas_gefont.h"
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#include "xfa/fgas/font/fgas_fontutils.h"
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namespace {
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bool VerifyUnicode(const RetainPtr<CFGAS_GEFont>& pFont, wchar_t wcUnicode) {
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RetainPtr<CFX_Face> pFace = pFont->GetDevFont()->GetFace();
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if (!pFace)
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return false;
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FXFT_FaceRec* pFaceRec = pFace->GetRec();
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FT_CharMap charmap = pFaceRec->charmap;
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if (FXFT_Select_Charmap(pFaceRec, FT_ENCODING_UNICODE) != 0)
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return false;
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if (FT_Get_Char_Index(pFaceRec, wcUnicode) == 0) {
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FT_Set_Charmap(pFaceRec, charmap);
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return false;
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}
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return true;
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}
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uint32_t ShortFormHash(FX_CodePage wCodePage,
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uint32_t dwFontStyles,
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WideStringView wsFontFamily) {
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ByteString bsHash = ByteString::Format("%d, %d", wCodePage, dwFontStyles);
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bsHash += FX_UTF8Encode(wsFontFamily);
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return FX_HashCode_GetA(bsHash.AsStringView());
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}
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uint32_t LongFormHash(FX_CodePage wCodePage,
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uint16_t wBitField,
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uint32_t dwFontStyles,
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WideStringView wsFontFamily) {
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ByteString bsHash =
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ByteString::Format("%d, %d, %d", wCodePage, wBitField, dwFontStyles);
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bsHash += FX_UTF8Encode(wsFontFamily);
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return FX_HashCode_GetA(bsHash.AsStringView());
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}
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} // namespace
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#if BUILDFLAG(IS_WIN)
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namespace {
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struct FX_FONTMATCHPARAMS {
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const wchar_t* pwsFamily;
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uint32_t dwFontStyles;
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uint32_t dwUSB;
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bool matchParagraphStyle;
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wchar_t wUnicode;
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FX_CodePage wCodePage;
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};
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int32_t GetSimilarityScore(FX_FONTDESCRIPTOR const* pFont,
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uint32_t dwFontStyles) {
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int32_t iValue = 0;
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if (FontStyleIsSymbolic(dwFontStyles) ==
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FontStyleIsSymbolic(pFont->dwFontStyles)) {
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iValue += 64;
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}
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if (FontStyleIsFixedPitch(dwFontStyles) ==
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FontStyleIsFixedPitch(pFont->dwFontStyles)) {
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iValue += 32;
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}
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if (FontStyleIsSerif(dwFontStyles) == FontStyleIsSerif(pFont->dwFontStyles))
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iValue += 16;
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if (FontStyleIsScript(dwFontStyles) == FontStyleIsScript(pFont->dwFontStyles))
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iValue += 8;
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return iValue;
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}
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const FX_FONTDESCRIPTOR* MatchDefaultFont(
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FX_FONTMATCHPARAMS* pParams,
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const std::deque<FX_FONTDESCRIPTOR>& fonts) {
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const FX_FONTDESCRIPTOR* pBestFont = nullptr;
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int32_t iBestSimilar = 0;
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for (const auto& font : fonts) {
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if (FontStyleIsForceBold(font.dwFontStyles) &&
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FontStyleIsItalic(font.dwFontStyles)) {
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continue;
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}
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if (pParams->pwsFamily) {
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if (FXSYS_wcsicmp(pParams->pwsFamily, font.wsFontFace))
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continue;
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if (font.uCharSet == FX_Charset::kSymbol)
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return &font;
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}
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if (font.uCharSet == FX_Charset::kSymbol)
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continue;
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if (pParams->wCodePage != FX_CodePage::kFailure) {
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if (FX_GetCodePageFromCharset(font.uCharSet) != pParams->wCodePage)
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continue;
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} else {
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if (pParams->dwUSB < 128) {
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uint32_t dwByte = pParams->dwUSB / 32;
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uint32_t dwUSB = 1 << (pParams->dwUSB % 32);
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if ((font.FontSignature.fsUsb[dwByte] & dwUSB) == 0)
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continue;
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}
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}
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if (pParams->matchParagraphStyle) {
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if ((font.dwFontStyles & 0x0F) == (pParams->dwFontStyles & 0x0F))
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return &font;
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continue;
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}
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if (pParams->pwsFamily) {
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if (FXSYS_wcsicmp(pParams->pwsFamily, font.wsFontFace) == 0)
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return &font;
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}
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int32_t iSimilarValue = GetSimilarityScore(&font, pParams->dwFontStyles);
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if (iBestSimilar < iSimilarValue) {
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iBestSimilar = iSimilarValue;
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pBestFont = &font;
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}
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}
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return iBestSimilar < 1 ? nullptr : pBestFont;
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}
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uint32_t GetGdiFontStyles(const LOGFONTW& lf) {
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uint32_t dwStyles = 0;
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if ((lf.lfPitchAndFamily & 0x03) == FIXED_PITCH)
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dwStyles |= FXFONT_FIXED_PITCH;
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uint8_t nFamilies = lf.lfPitchAndFamily & 0xF0;
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if (nFamilies == FF_ROMAN)
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dwStyles |= FXFONT_SERIF;
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if (nFamilies == FF_SCRIPT)
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dwStyles |= FXFONT_SCRIPT;
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if (lf.lfCharSet == SYMBOL_CHARSET)
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dwStyles |= FXFONT_SYMBOLIC;
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return dwStyles;
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}
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int32_t CALLBACK GdiFontEnumProc(ENUMLOGFONTEX* lpelfe,
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NEWTEXTMETRICEX* lpntme,
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DWORD dwFontType,
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LPARAM lParam) {
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if (dwFontType != TRUETYPE_FONTTYPE)
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return 1;
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const LOGFONTW& lf = ((LPENUMLOGFONTEXW)lpelfe)->elfLogFont;
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if (lf.lfFaceName[0] == L'@')
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return 1;
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FX_FONTDESCRIPTOR font;
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memset(&font, 0, sizeof(FX_FONTDESCRIPTOR));
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font.uCharSet = FX_GetCharsetFromInt(lf.lfCharSet);
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font.dwFontStyles = GetGdiFontStyles(lf);
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FXSYS_wcsncpy(font.wsFontFace, (const wchar_t*)lf.lfFaceName, 31);
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font.wsFontFace[31] = 0;
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memcpy(&font.FontSignature, &lpntme->ntmFontSig, sizeof(lpntme->ntmFontSig));
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reinterpret_cast<std::deque<FX_FONTDESCRIPTOR>*>(lParam)->push_back(font);
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return 1;
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}
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std::deque<FX_FONTDESCRIPTOR> EnumGdiFonts(const wchar_t* pwsFaceName,
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wchar_t wUnicode) {
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std::deque<FX_FONTDESCRIPTOR> fonts;
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LOGFONTW lfFind;
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memset(&lfFind, 0, sizeof(lfFind));
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lfFind.lfCharSet = DEFAULT_CHARSET;
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if (pwsFaceName) {
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FXSYS_wcsncpy(lfFind.lfFaceName, pwsFaceName, 31);
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lfFind.lfFaceName[31] = 0;
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}
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HDC hDC = ::GetDC(nullptr);
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EnumFontFamiliesExW(hDC, (LPLOGFONTW)&lfFind, (FONTENUMPROCW)GdiFontEnumProc,
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(LPARAM)&fonts, 0);
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::ReleaseDC(nullptr, hDC);
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return fonts;
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}
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} // namespace
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CFGAS_FontMgr::CFGAS_FontMgr() : m_FontFaces(EnumGdiFonts(nullptr, 0xFEFF)) {}
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CFGAS_FontMgr::~CFGAS_FontMgr() = default;
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bool CFGAS_FontMgr::EnumFonts() {
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return true;
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}
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RetainPtr<CFGAS_GEFont> CFGAS_FontMgr::GetFontByUnicodeImpl(
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wchar_t wUnicode,
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uint32_t dwFontStyles,
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const wchar_t* pszFontFamily,
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uint32_t dwHash,
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FX_CodePage wCodePage,
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uint16_t wBitField) {
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const FX_FONTDESCRIPTOR* pFD = FindFont(pszFontFamily, dwFontStyles, false,
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wCodePage, wBitField, wUnicode);
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if (!pFD && pszFontFamily) {
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pFD =
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FindFont(nullptr, dwFontStyles, false, wCodePage, wBitField, wUnicode);
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}
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if (!pFD)
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return nullptr;
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FX_CodePage newCodePage = FX_GetCodePageFromCharset(pFD->uCharSet);
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RetainPtr<CFGAS_GEFont> pFont =
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CFGAS_GEFont::LoadFont(pFD->wsFontFace, dwFontStyles, newCodePage);
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if (!pFont)
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return nullptr;
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pFont->SetLogicalFontStyle(dwFontStyles);
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if (!VerifyUnicode(pFont, wUnicode)) {
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m_FailedUnicodesSet.insert(wUnicode);
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return nullptr;
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}
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m_Hash2Fonts[dwHash].push_back(pFont);
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return pFont;
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}
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const FX_FONTDESCRIPTOR* CFGAS_FontMgr::FindFont(const wchar_t* pszFontFamily,
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uint32_t dwFontStyles,
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bool matchParagraphStyle,
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FX_CodePage wCodePage,
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uint32_t dwUSB,
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wchar_t wUnicode) {
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FX_FONTMATCHPARAMS params;
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memset(¶ms, 0, sizeof(params));
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params.dwUSB = dwUSB;
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params.wUnicode = wUnicode;
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params.wCodePage = wCodePage;
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params.pwsFamily = pszFontFamily;
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params.dwFontStyles = dwFontStyles;
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params.matchParagraphStyle = matchParagraphStyle;
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const FX_FONTDESCRIPTOR* pDesc = MatchDefaultFont(¶ms, m_FontFaces);
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if (pDesc)
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return pDesc;
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if (!pszFontFamily)
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return nullptr;
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// Use a named object to store the returned value of EnumGdiFonts() instead
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// of using a temporary object. This can prevent use-after-free issues since
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// pDesc may point to one of std::deque object's elements.
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std::deque<FX_FONTDESCRIPTOR> namedFonts =
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EnumGdiFonts(pszFontFamily, wUnicode);
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params.pwsFamily = nullptr;
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pDesc = MatchDefaultFont(¶ms, namedFonts);
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if (!pDesc)
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return nullptr;
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auto it = std::find(m_FontFaces.rbegin(), m_FontFaces.rend(), *pDesc);
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if (it != m_FontFaces.rend())
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return &*it;
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m_FontFaces.push_back(*pDesc);
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return &m_FontFaces.back();
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}
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#else // BUILDFLAG(IS_WIN)
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namespace {
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const FX_CodePage kCodePages[] = {FX_CodePage::kMSWin_WesternEuropean,
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FX_CodePage::kMSWin_EasternEuropean,
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FX_CodePage::kMSWin_Cyrillic,
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FX_CodePage::kMSWin_Greek,
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FX_CodePage::kMSWin_Turkish,
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FX_CodePage::kMSWin_Hebrew,
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FX_CodePage::kMSWin_Arabic,
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FX_CodePage::kMSWin_Baltic,
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FX_CodePage::kMSWin_Vietnamese,
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FX_CodePage::kDefANSI,
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FX_CodePage::kDefANSI,
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FX_CodePage::kDefANSI,
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FX_CodePage::kDefANSI,
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FX_CodePage::kDefANSI,
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FX_CodePage::kDefANSI,
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FX_CodePage::kDefANSI,
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FX_CodePage::kMSDOS_Thai,
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FX_CodePage::kShiftJIS,
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FX_CodePage::kChineseSimplified,
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FX_CodePage::kHangul,
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FX_CodePage::kChineseTraditional,
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FX_CodePage::kJohab,
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FX_CodePage::kDefANSI,
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FX_CodePage::kDefANSI,
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FX_CodePage::kDefANSI,
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FX_CodePage::kDefANSI,
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FX_CodePage::kDefANSI,
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FX_CodePage::kDefANSI,
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FX_CodePage::kDefANSI,
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FX_CodePage::kDefANSI,
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FX_CodePage::kDefANSI,
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FX_CodePage::kDefANSI,
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FX_CodePage::kDefANSI,
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FX_CodePage::kDefANSI,
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FX_CodePage::kDefANSI,
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FX_CodePage::kDefANSI,
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FX_CodePage::kDefANSI,
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FX_CodePage::kDefANSI,
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FX_CodePage::kDefANSI,
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FX_CodePage::kDefANSI,
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FX_CodePage::kDefANSI,
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FX_CodePage::kDefANSI,
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FX_CodePage::kDefANSI,
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FX_CodePage::kDefANSI,
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FX_CodePage::kDefANSI,
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FX_CodePage::kDefANSI,
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FX_CodePage::kDefANSI,
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FX_CodePage::kDefANSI,
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FX_CodePage::kMSDOS_Greek2,
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FX_CodePage::kMSDOS_Russian,
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FX_CodePage::kMSDOS_Norwegian,
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FX_CodePage::kMSDOS_Arabic,
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FX_CodePage::kMSDOS_FrenchCanadian,
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FX_CodePage::kMSDOS_Hebrew,
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FX_CodePage::kMSDOS_Icelandic,
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FX_CodePage::kMSDOS_Portuguese,
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FX_CodePage::kMSDOS_Turkish,
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FX_CodePage::kMSDOS_Cyrillic,
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FX_CodePage::kMSDOS_EasternEuropean,
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FX_CodePage::kMSDOS_Baltic,
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FX_CodePage::kMSDOS_Greek1,
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FX_CodePage::kArabic_ASMO708,
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FX_CodePage::kMSDOS_WesternEuropean,
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FX_CodePage::kMSDOS_US};
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uint16_t FX_GetCodePageBit(FX_CodePage wCodePage) {
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for (size_t i = 0; i < std::size(kCodePages); ++i) {
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if (kCodePages[i] == wCodePage)
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return static_cast<uint16_t>(i);
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}
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return static_cast<uint16_t>(-1);
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}
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uint16_t FX_GetUnicodeBit(wchar_t wcUnicode) {
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const FGAS_FONTUSB* x = FGAS_GetUnicodeBitField(wcUnicode);
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return x ? x->wBitField : FGAS_FONTUSB::kNoBitField;
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}
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uint16_t ReadUInt16FromSpanAtOffset(pdfium::span<const uint8_t> data,
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size_t offset) {
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const uint8_t* p = &data[offset];
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return FXSYS_UINT16_GET_MSBFIRST(p);
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}
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extern "C" {
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unsigned long ftStreamRead(FXFT_StreamRec* stream,
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unsigned long offset,
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unsigned char* buffer,
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unsigned long count) {
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if (count == 0)
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return 0;
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IFX_SeekableReadStream* pFile =
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static_cast<IFX_SeekableReadStream*>(stream->descriptor.pointer);
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if (!pFile->ReadBlockAtOffset({buffer, count}, offset))
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return 0;
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return count;
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}
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void ftStreamClose(FXFT_StreamRec* stream) {}
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} // extern "C"
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std::vector<WideString> GetNames(pdfium::span<const uint8_t> name_table) {
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std::vector<WideString> results;
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if (name_table.empty())
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return results;
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uint16_t nNameCount = ReadUInt16FromSpanAtOffset(name_table, 2);
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pdfium::span<const uint8_t> str =
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name_table.subspan(ReadUInt16FromSpanAtOffset(name_table, 4));
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pdfium::span<const uint8_t> name_record = name_table.subspan(6);
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for (uint16_t i = 0; i < nNameCount; ++i) {
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uint16_t nNameID = ReadUInt16FromSpanAtOffset(name_table, i * 12 + 6);
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if (nNameID != 1)
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continue;
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uint16_t nPlatformID = ReadUInt16FromSpanAtOffset(name_record, i * 12);
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uint16_t nNameLength = ReadUInt16FromSpanAtOffset(name_record, i * 12 + 8);
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uint16_t nNameOffset = ReadUInt16FromSpanAtOffset(name_record, i * 12 + 10);
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if (nPlatformID != 1) {
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WideString wsFamily;
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for (uint16_t j = 0; j < nNameLength / 2; ++j) {
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wchar_t wcTemp = ReadUInt16FromSpanAtOffset(str, nNameOffset + j * 2);
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wsFamily += wcTemp;
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}
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results.push_back(wsFamily);
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continue;
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}
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WideString wsFamily;
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for (uint16_t j = 0; j < nNameLength; ++j) {
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wchar_t wcTemp = str[nNameOffset + j];
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wsFamily += wcTemp;
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}
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results.push_back(wsFamily);
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}
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return results;
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}
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void GetUSBCSB(FXFT_FaceRec* pFace, uint32_t* USB, uint32_t* CSB) {
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TT_OS2* pOS2 = static_cast<TT_OS2*>(FT_Get_Sfnt_Table(pFace, ft_sfnt_os2));
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if (!pOS2) {
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USB[0] = 0;
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USB[1] = 0;
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USB[2] = 0;
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USB[3] = 0;
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CSB[0] = 0;
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CSB[1] = 0;
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return;
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}
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USB[0] = static_cast<uint32_t>(pOS2->ulUnicodeRange1);
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USB[1] = static_cast<uint32_t>(pOS2->ulUnicodeRange2);
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USB[2] = static_cast<uint32_t>(pOS2->ulUnicodeRange3);
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USB[3] = static_cast<uint32_t>(pOS2->ulUnicodeRange4);
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CSB[0] = static_cast<uint32_t>(pOS2->ulCodePageRange1);
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CSB[1] = static_cast<uint32_t>(pOS2->ulCodePageRange2);
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}
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uint32_t GetFlags(FXFT_FaceRec* pFace) {
|
|
uint32_t flags = 0;
|
|
if (FXFT_Is_Face_Bold(pFace))
|
|
flags |= FXFONT_FORCE_BOLD;
|
|
if (FXFT_Is_Face_Italic(pFace))
|
|
flags |= FXFONT_ITALIC;
|
|
if (FT_IS_FIXED_WIDTH(pFace))
|
|
flags |= FXFONT_FIXED_PITCH;
|
|
|
|
TT_OS2* pOS2 = static_cast<TT_OS2*>(FT_Get_Sfnt_Table(pFace, ft_sfnt_os2));
|
|
if (!pOS2)
|
|
return flags;
|
|
|
|
if (pOS2->ulCodePageRange1 & (1 << 31))
|
|
flags |= FXFONT_SYMBOLIC;
|
|
if (pOS2->panose[0] == 2) {
|
|
uint8_t uSerif = pOS2->panose[1];
|
|
if ((uSerif > 1 && uSerif < 10) || uSerif > 13)
|
|
flags |= FXFONT_SERIF;
|
|
}
|
|
return flags;
|
|
}
|
|
|
|
RetainPtr<IFX_SeekableReadStream> CreateFontStream(CFX_FontMapper* pFontMapper,
|
|
size_t index) {
|
|
FixedUninitDataVector<uint8_t> buffer = pFontMapper->RawBytesForIndex(index);
|
|
if (buffer.empty())
|
|
return nullptr;
|
|
|
|
return pdfium::MakeRetain<CFX_ReadOnlyVectorStream>(std::move(buffer));
|
|
}
|
|
|
|
RetainPtr<IFX_SeekableReadStream> CreateFontStream(
|
|
const ByteString& bsFaceName) {
|
|
CFX_FontMgr* pFontMgr = CFX_GEModule::Get()->GetFontMgr();
|
|
CFX_FontMapper* pFontMapper = pFontMgr->GetBuiltinMapper();
|
|
pFontMapper->LoadInstalledFonts();
|
|
|
|
for (size_t i = 0; i < pFontMapper->GetFaceSize(); ++i) {
|
|
if (pFontMapper->GetFaceName(i) == bsFaceName)
|
|
return CreateFontStream(pFontMapper, i);
|
|
}
|
|
return nullptr;
|
|
}
|
|
|
|
RetainPtr<CFX_Face> LoadFace(
|
|
const RetainPtr<IFX_SeekableReadStream>& pFontStream,
|
|
int32_t iFaceIndex) {
|
|
if (!pFontStream)
|
|
return nullptr;
|
|
|
|
CFX_FontMgr* pFontMgr = CFX_GEModule::Get()->GetFontMgr();
|
|
FXFT_LibraryRec* library = pFontMgr->GetFTLibrary();
|
|
if (!library)
|
|
return nullptr;
|
|
|
|
// TODO(palmer): This memory will be freed with |ft_free| (which is |free|).
|
|
// Ultimately, we want to change this to:
|
|
// FXFT_Stream ftStream = FX_Alloc(FXFT_StreamRec, 1);
|
|
// https://bugs.chromium.org/p/pdfium/issues/detail?id=690
|
|
FXFT_StreamRec* ftStream =
|
|
static_cast<FXFT_StreamRec*>(ft_scalloc(sizeof(FXFT_StreamRec), 1));
|
|
memset(ftStream, 0, sizeof(FXFT_StreamRec));
|
|
ftStream->base = nullptr;
|
|
ftStream->descriptor.pointer = static_cast<void*>(pFontStream.Get());
|
|
ftStream->pos = 0;
|
|
ftStream->size = static_cast<unsigned long>(pFontStream->GetSize());
|
|
ftStream->read = ftStreamRead;
|
|
ftStream->close = ftStreamClose;
|
|
|
|
FT_Open_Args ftArgs;
|
|
memset(&ftArgs, 0, sizeof(FT_Open_Args));
|
|
ftArgs.flags |= FT_OPEN_STREAM;
|
|
ftArgs.stream = ftStream;
|
|
|
|
RetainPtr<CFX_Face> pFace = CFX_Face::Open(library, &ftArgs, iFaceIndex);
|
|
if (!pFace) {
|
|
ft_sfree(ftStream);
|
|
return nullptr;
|
|
}
|
|
FT_Set_Pixel_Sizes(pFace->GetRec(), 0, 64);
|
|
return pFace;
|
|
}
|
|
|
|
bool VerifyUnicodeForFontDescriptor(CFGAS_FontDescriptor* pDesc,
|
|
wchar_t wcUnicode) {
|
|
RetainPtr<IFX_SeekableReadStream> pFileRead =
|
|
CreateFontStream(pDesc->m_wsFaceName.ToUTF8());
|
|
if (!pFileRead)
|
|
return false;
|
|
|
|
RetainPtr<CFX_Face> pFace = LoadFace(pFileRead, pDesc->m_nFaceIndex);
|
|
if (!pFace)
|
|
return false;
|
|
|
|
FT_Error retCharmap =
|
|
FXFT_Select_Charmap(pFace->GetRec(), FT_ENCODING_UNICODE);
|
|
FT_Error retIndex = FT_Get_Char_Index(pFace->GetRec(), wcUnicode);
|
|
|
|
if (FXFT_Get_Face_External_Stream(pFace->GetRec()))
|
|
FXFT_Clear_Face_External_Stream(pFace->GetRec());
|
|
|
|
return !retCharmap && retIndex;
|
|
}
|
|
|
|
bool IsPartName(const WideString& name1, const WideString& name2) {
|
|
return name1.Contains(name2.AsStringView());
|
|
}
|
|
|
|
int32_t CalcPenalty(CFGAS_FontDescriptor* pInstalled,
|
|
FX_CodePage wCodePage,
|
|
uint32_t dwFontStyles,
|
|
const WideString& FontName,
|
|
wchar_t wcUnicode) {
|
|
int32_t nPenalty = 30000;
|
|
if (FontName.GetLength() != 0) {
|
|
if (FontName != pInstalled->m_wsFaceName) {
|
|
size_t i;
|
|
for (i = 0; i < pInstalled->m_wsFamilyNames.size(); ++i) {
|
|
if (pInstalled->m_wsFamilyNames[i] == FontName)
|
|
break;
|
|
}
|
|
if (i == pInstalled->m_wsFamilyNames.size())
|
|
nPenalty += 0xFFFF;
|
|
else
|
|
nPenalty -= 28000;
|
|
} else {
|
|
nPenalty -= 30000;
|
|
}
|
|
if (nPenalty == 30000 && !IsPartName(pInstalled->m_wsFaceName, FontName)) {
|
|
size_t i;
|
|
for (i = 0; i < pInstalled->m_wsFamilyNames.size(); i++) {
|
|
if (IsPartName(pInstalled->m_wsFamilyNames[i], FontName))
|
|
break;
|
|
}
|
|
if (i == pInstalled->m_wsFamilyNames.size())
|
|
nPenalty += 0xFFFF;
|
|
else
|
|
nPenalty -= 26000;
|
|
} else {
|
|
nPenalty -= 27000;
|
|
}
|
|
}
|
|
uint32_t dwStyleMask = pInstalled->m_dwFontStyles ^ dwFontStyles;
|
|
if (FontStyleIsForceBold(dwStyleMask))
|
|
nPenalty += 4500;
|
|
if (FontStyleIsFixedPitch(dwStyleMask))
|
|
nPenalty += 10000;
|
|
if (FontStyleIsItalic(dwStyleMask))
|
|
nPenalty += 10000;
|
|
if (FontStyleIsSerif(dwStyleMask))
|
|
nPenalty += 500;
|
|
if (FontStyleIsSymbolic(dwStyleMask))
|
|
nPenalty += 0xFFFF;
|
|
if (nPenalty >= 0xFFFF)
|
|
return 0xFFFF;
|
|
|
|
uint16_t wBit =
|
|
(wCodePage == FX_CodePage::kDefANSI || wCodePage == FX_CodePage::kFailure)
|
|
? static_cast<uint16_t>(-1)
|
|
: FX_GetCodePageBit(wCodePage);
|
|
if (wBit != static_cast<uint16_t>(-1)) {
|
|
DCHECK(wBit < 64);
|
|
if ((pInstalled->m_dwCsb[wBit / 32] & (1 << (wBit % 32))) == 0)
|
|
nPenalty += 0xFFFF;
|
|
else
|
|
nPenalty -= 60000;
|
|
}
|
|
wBit = (wcUnicode == 0 || wcUnicode == 0xFFFE) ? FGAS_FONTUSB::kNoBitField
|
|
: FX_GetUnicodeBit(wcUnicode);
|
|
if (wBit != FGAS_FONTUSB::kNoBitField) {
|
|
DCHECK(wBit < 128);
|
|
if ((pInstalled->m_dwUsb[wBit / 32] & (1 << (wBit % 32))) == 0)
|
|
nPenalty += 0xFFFF;
|
|
else
|
|
nPenalty -= 60000;
|
|
}
|
|
return nPenalty;
|
|
}
|
|
|
|
} // namespace
|
|
|
|
CFGAS_FontDescriptor::CFGAS_FontDescriptor() = default;
|
|
|
|
CFGAS_FontDescriptor::~CFGAS_FontDescriptor() = default;
|
|
|
|
CFGAS_FontMgr::CFGAS_FontMgr() = default;
|
|
|
|
CFGAS_FontMgr::~CFGAS_FontMgr() = default;
|
|
|
|
bool CFGAS_FontMgr::EnumFontsFromFontMapper() {
|
|
CFX_FontMapper* pFontMapper =
|
|
CFX_GEModule::Get()->GetFontMgr()->GetBuiltinMapper();
|
|
pFontMapper->LoadInstalledFonts();
|
|
|
|
for (size_t i = 0; i < pFontMapper->GetFaceSize(); ++i) {
|
|
RetainPtr<IFX_SeekableReadStream> pFontStream =
|
|
CreateFontStream(pFontMapper, i);
|
|
if (!pFontStream)
|
|
continue;
|
|
|
|
WideString wsFaceName =
|
|
WideString::FromDefANSI(pFontMapper->GetFaceName(i).AsStringView());
|
|
RegisterFaces(pFontStream, wsFaceName);
|
|
}
|
|
|
|
return !m_InstalledFonts.empty();
|
|
}
|
|
|
|
bool CFGAS_FontMgr::EnumFonts() {
|
|
return EnumFontsFromFontMapper();
|
|
}
|
|
|
|
RetainPtr<CFGAS_GEFont> CFGAS_FontMgr::GetFontByUnicodeImpl(
|
|
wchar_t wUnicode,
|
|
uint32_t dwFontStyles,
|
|
const wchar_t* pszFontFamily,
|
|
uint32_t dwHash,
|
|
FX_CodePage wCodePage,
|
|
uint16_t /* wBitField*/) {
|
|
if (!pdfium::Contains(m_Hash2CandidateList, dwHash)) {
|
|
m_Hash2CandidateList[dwHash] =
|
|
MatchFonts(wCodePage, dwFontStyles, pszFontFamily, wUnicode);
|
|
}
|
|
for (const auto& info : m_Hash2CandidateList[dwHash]) {
|
|
CFGAS_FontDescriptor* pDesc = info.pFont;
|
|
if (!VerifyUnicodeForFontDescriptor(pDesc, wUnicode))
|
|
continue;
|
|
RetainPtr<CFGAS_GEFont> pFont =
|
|
LoadFontInternal(pDesc->m_wsFaceName, pDesc->m_nFaceIndex);
|
|
if (!pFont)
|
|
continue;
|
|
pFont->SetLogicalFontStyle(dwFontStyles);
|
|
m_Hash2Fonts[dwHash].push_back(pFont);
|
|
return pFont;
|
|
}
|
|
if (!pszFontFamily)
|
|
m_FailedUnicodesSet.insert(wUnicode);
|
|
return nullptr;
|
|
}
|
|
|
|
RetainPtr<CFGAS_GEFont> CFGAS_FontMgr::LoadFontInternal(
|
|
const WideString& wsFaceName,
|
|
int32_t iFaceIndex) {
|
|
RetainPtr<IFX_SeekableReadStream> pFontStream =
|
|
CreateFontStream(wsFaceName.ToUTF8());
|
|
if (!pFontStream)
|
|
return nullptr;
|
|
|
|
auto pInternalFont = std::make_unique<CFX_Font>();
|
|
if (!pInternalFont->LoadFile(std::move(pFontStream), iFaceIndex))
|
|
return nullptr;
|
|
|
|
return CFGAS_GEFont::LoadFont(std::move(pInternalFont));
|
|
}
|
|
|
|
std::vector<CFGAS_FontDescriptorInfo> CFGAS_FontMgr::MatchFonts(
|
|
FX_CodePage wCodePage,
|
|
uint32_t dwFontStyles,
|
|
const WideString& FontName,
|
|
wchar_t wcUnicode) {
|
|
std::vector<CFGAS_FontDescriptorInfo> matched_fonts;
|
|
for (const auto& pFont : m_InstalledFonts) {
|
|
int32_t nPenalty =
|
|
CalcPenalty(pFont.get(), wCodePage, dwFontStyles, FontName, wcUnicode);
|
|
if (nPenalty >= 0xffff)
|
|
continue;
|
|
matched_fonts.push_back({pFont.get(), nPenalty});
|
|
if (matched_fonts.size() == 0xffff)
|
|
break;
|
|
}
|
|
std::stable_sort(matched_fonts.begin(), matched_fonts.end());
|
|
return matched_fonts;
|
|
}
|
|
|
|
void CFGAS_FontMgr::RegisterFace(RetainPtr<CFX_Face> pFace,
|
|
const WideString& wsFaceName) {
|
|
if ((pFace->GetRec()->face_flags & FT_FACE_FLAG_SCALABLE) == 0)
|
|
return;
|
|
|
|
auto pFont = std::make_unique<CFGAS_FontDescriptor>();
|
|
pFont->m_dwFontStyles |= GetFlags(pFace->GetRec());
|
|
|
|
GetUSBCSB(pFace->GetRec(), pFont->m_dwUsb, pFont->m_dwCsb);
|
|
|
|
FT_ULong dwTag;
|
|
FT_ENC_TAG(dwTag, 'n', 'a', 'm', 'e');
|
|
|
|
DataVector<uint8_t> table;
|
|
unsigned long nLength = 0;
|
|
unsigned int error =
|
|
FT_Load_Sfnt_Table(pFace->GetRec(), dwTag, 0, nullptr, &nLength);
|
|
if (error == 0 && nLength != 0) {
|
|
table.resize(nLength);
|
|
if (FT_Load_Sfnt_Table(pFace->GetRec(), dwTag, 0, table.data(), nullptr))
|
|
table.clear();
|
|
}
|
|
pFont->m_wsFamilyNames = GetNames(table);
|
|
pFont->m_wsFamilyNames.push_back(
|
|
WideString::FromUTF8(pFace->GetRec()->family_name));
|
|
pFont->m_wsFaceName = wsFaceName;
|
|
pFont->m_nFaceIndex =
|
|
pdfium::base::checked_cast<int32_t>(pFace->GetRec()->face_index);
|
|
m_InstalledFonts.push_back(std::move(pFont));
|
|
}
|
|
|
|
void CFGAS_FontMgr::RegisterFaces(
|
|
const RetainPtr<IFX_SeekableReadStream>& pFontStream,
|
|
const WideString& wsFaceName) {
|
|
int32_t index = 0;
|
|
int32_t num_faces = 0;
|
|
do {
|
|
RetainPtr<CFX_Face> pFace = LoadFace(pFontStream, index++);
|
|
if (!pFace)
|
|
continue;
|
|
// All faces keep number of faces. It can be retrieved from any one face.
|
|
if (num_faces == 0) {
|
|
num_faces =
|
|
pdfium::base::checked_cast<int32_t>(pFace->GetRec()->num_faces);
|
|
}
|
|
RegisterFace(pFace, wsFaceName);
|
|
if (FXFT_Get_Face_External_Stream(pFace->GetRec()))
|
|
FXFT_Clear_Face_External_Stream(pFace->GetRec());
|
|
} while (index < num_faces);
|
|
}
|
|
|
|
#endif // BUILDFLAG(IS_WIN)
|
|
|
|
RetainPtr<CFGAS_GEFont> CFGAS_FontMgr::GetFontByCodePage(
|
|
FX_CodePage wCodePage,
|
|
uint32_t dwFontStyles,
|
|
const wchar_t* pszFontFamily) {
|
|
uint32_t dwHash = ShortFormHash(wCodePage, dwFontStyles, pszFontFamily);
|
|
auto* pFontVector = &m_Hash2Fonts[dwHash];
|
|
if (!pFontVector->empty()) {
|
|
for (auto iter = pFontVector->begin(); iter != pFontVector->end(); ++iter) {
|
|
if (*iter != nullptr)
|
|
return *iter;
|
|
}
|
|
return nullptr;
|
|
}
|
|
|
|
#if BUILDFLAG(IS_WIN)
|
|
const FX_FONTDESCRIPTOR* pFD =
|
|
FindFont(pszFontFamily, dwFontStyles, true, wCodePage,
|
|
FGAS_FONTUSB::kNoBitField, 0);
|
|
if (!pFD) {
|
|
pFD = FindFont(nullptr, dwFontStyles, true, wCodePage,
|
|
FGAS_FONTUSB::kNoBitField, 0);
|
|
}
|
|
if (!pFD) {
|
|
pFD = FindFont(nullptr, dwFontStyles, false, wCodePage,
|
|
FGAS_FONTUSB::kNoBitField, 0);
|
|
}
|
|
if (!pFD)
|
|
return nullptr;
|
|
|
|
RetainPtr<CFGAS_GEFont> pFont =
|
|
CFGAS_GEFont::LoadFont(pFD->wsFontFace, dwFontStyles, wCodePage);
|
|
#else // BUILDFLAG(IS_WIN)
|
|
if (!pdfium::Contains(m_Hash2CandidateList, dwHash)) {
|
|
m_Hash2CandidateList[dwHash] =
|
|
MatchFonts(wCodePage, dwFontStyles, WideString(pszFontFamily), 0);
|
|
}
|
|
if (m_Hash2CandidateList[dwHash].empty())
|
|
return nullptr;
|
|
|
|
CFGAS_FontDescriptor* pDesc = m_Hash2CandidateList[dwHash].front().pFont;
|
|
RetainPtr<CFGAS_GEFont> pFont =
|
|
LoadFontInternal(pDesc->m_wsFaceName, pDesc->m_nFaceIndex);
|
|
#endif // BUILDFLAG(IS_WIN)
|
|
|
|
if (!pFont)
|
|
return nullptr;
|
|
|
|
pFont->SetLogicalFontStyle(dwFontStyles);
|
|
pFontVector->push_back(pFont);
|
|
return pFont;
|
|
}
|
|
|
|
RetainPtr<CFGAS_GEFont> CFGAS_FontMgr::GetFontByUnicode(
|
|
wchar_t wUnicode,
|
|
uint32_t dwFontStyles,
|
|
const wchar_t* pszFontFamily) {
|
|
if (pdfium::Contains(m_FailedUnicodesSet, wUnicode))
|
|
return nullptr;
|
|
|
|
const FGAS_FONTUSB* x = FGAS_GetUnicodeBitField(wUnicode);
|
|
FX_CodePage wCodePage = x ? x->wCodePage : FX_CodePage::kFailure;
|
|
uint16_t wBitField = x ? x->wBitField : FGAS_FONTUSB::kNoBitField;
|
|
uint32_t dwHash =
|
|
wCodePage == FX_CodePage::kFailure
|
|
? LongFormHash(wCodePage, wBitField, dwFontStyles, pszFontFamily)
|
|
: ShortFormHash(wCodePage, dwFontStyles, pszFontFamily);
|
|
for (auto& pFont : m_Hash2Fonts[dwHash]) {
|
|
if (VerifyUnicode(pFont, wUnicode))
|
|
return pFont;
|
|
}
|
|
return GetFontByUnicodeImpl(wUnicode, dwFontStyles, pszFontFamily, dwHash,
|
|
wCodePage, wBitField);
|
|
}
|
|
|
|
RetainPtr<CFGAS_GEFont> CFGAS_FontMgr::LoadFont(const wchar_t* pszFontFamily,
|
|
uint32_t dwFontStyles,
|
|
FX_CodePage wCodePage) {
|
|
#if BUILDFLAG(IS_WIN)
|
|
uint32_t dwHash = ShortFormHash(wCodePage, dwFontStyles, pszFontFamily);
|
|
std::vector<RetainPtr<CFGAS_GEFont>>* pFontArray = &m_Hash2Fonts[dwHash];
|
|
if (!pFontArray->empty())
|
|
return pFontArray->front();
|
|
|
|
const FX_FONTDESCRIPTOR* pFD =
|
|
FindFont(pszFontFamily, dwFontStyles, true, wCodePage,
|
|
FGAS_FONTUSB::kNoBitField, 0);
|
|
if (!pFD) {
|
|
pFD = FindFont(pszFontFamily, dwFontStyles, false, wCodePage,
|
|
FGAS_FONTUSB::kNoBitField, 0);
|
|
}
|
|
if (!pFD)
|
|
return nullptr;
|
|
|
|
RetainPtr<CFGAS_GEFont> pFont =
|
|
CFGAS_GEFont::LoadFont(pFD->wsFontFace, dwFontStyles, wCodePage);
|
|
if (!pFont)
|
|
return nullptr;
|
|
|
|
pFont->SetLogicalFontStyle(dwFontStyles);
|
|
pFontArray->push_back(pFont);
|
|
return pFont;
|
|
#else // BUILDFLAG(IS_WIN)
|
|
return GetFontByCodePage(wCodePage, dwFontStyles, pszFontFamily);
|
|
#endif // BUILDFLAG(IS_WIN)
|
|
}
|