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// Copyright 2014 The Chromium Authors. All rights reserved.
// Use of this source code is governed by a BSD-style license that can be
// found in the LICENSE file.
#include <fcntl.h>
#include <fontconfig/fontconfig.h>
#include <sys/stat.h>
#include <sys/types.h>
#include <string>
#include "base/posix/eintr_wrapper.h"
#include "ppapi/c/trusted/ppb_browser_font_trusted.h"
#include "third_party/npapi/bindings/npapi_extensions.h"
namespace {
// MSCharSetToFontconfig translates a Microsoft charset identifier to a
// fontconfig language set by appending to |langset|.
// Returns true if |langset| is Latin/Greek/Cyrillic.
bool MSCharSetToFontconfig(FcLangSet* langset, unsigned fdwCharSet) {
// We have need to translate raw fdwCharSet values into terms that
// fontconfig can understand. (See the description of fdwCharSet in the MSDN
// documentation for CreateFont:
// http://msdn.microsoft.com/en-us/library/dd183499(VS.85).aspx )
//
// Although the argument is /called/ 'charset', the actual values conflate
// character sets (which are sets of Unicode code points) and character
// encodings (which are algorithms for turning a series of bits into a
// series of code points.) Sometimes the values will name a language,
// sometimes they'll name an encoding. In the latter case I'm assuming that
// they mean the set of code points in the domain of that encoding.
//
// fontconfig deals with ISO 639-1 language codes:
// http://en.wikipedia.org/wiki/List_of_ISO_639-1_codes
//
// So, for each of the documented fdwCharSet values I've had to take a
// guess at the set of ISO 639-1 languages intended.
bool is_lgc = false;
switch (fdwCharSet) {
case NPCharsetAnsi:
// These values I don't really know what to do with, so I'm going to map
// them to English also.
case NPCharsetDefault:
case NPCharsetMac:
case NPCharsetOEM:
case NPCharsetSymbol:
is_lgc = true;
FcLangSetAdd(langset, reinterpret_cast<const FcChar8*>("en"));
break;
case NPCharsetBaltic:
// The three baltic languages.
is_lgc = true;
FcLangSetAdd(langset, reinterpret_cast<const FcChar8*>("et"));
FcLangSetAdd(langset, reinterpret_cast<const FcChar8*>("lv"));
FcLangSetAdd(langset, reinterpret_cast<const FcChar8*>("lt"));
break;
case NPCharsetChineseBIG5:
FcLangSetAdd(langset, reinterpret_cast<const FcChar8*>("zh-tw"));
break;
case NPCharsetGB2312:
FcLangSetAdd(langset, reinterpret_cast<const FcChar8*>("zh-cn"));
break;
case NPCharsetEastEurope:
// A scattering of eastern European languages.
is_lgc = true;
FcLangSetAdd(langset, reinterpret_cast<const FcChar8*>("pl"));
FcLangSetAdd(langset, reinterpret_cast<const FcChar8*>("cs"));
FcLangSetAdd(langset, reinterpret_cast<const FcChar8*>("sk"));
FcLangSetAdd(langset, reinterpret_cast<const FcChar8*>("hu"));
FcLangSetAdd(langset, reinterpret_cast<const FcChar8*>("hr"));
break;
case NPCharsetGreek:
is_lgc = true;
FcLangSetAdd(langset, reinterpret_cast<const FcChar8*>("el"));
break;
case NPCharsetHangul:
case NPCharsetJohab:
// Korean
FcLangSetAdd(langset, reinterpret_cast<const FcChar8*>("ko"));
break;
case NPCharsetRussian:
is_lgc = true;
FcLangSetAdd(langset, reinterpret_cast<const FcChar8*>("ru"));
break;
case NPCharsetShiftJIS:
// Japanese
FcLangSetAdd(langset, reinterpret_cast<const FcChar8*>("ja"));
break;
case NPCharsetTurkish:
is_lgc = true;
FcLangSetAdd(langset, reinterpret_cast<const FcChar8*>("tr"));
break;
case NPCharsetVietnamese:
is_lgc = true;
FcLangSetAdd(langset, reinterpret_cast<const FcChar8*>("vi"));
break;
case NPCharsetArabic:
FcLangSetAdd(langset, reinterpret_cast<const FcChar8*>("ar"));
break;
case NPCharsetHebrew:
FcLangSetAdd(langset, reinterpret_cast<const FcChar8*>("he"));
break;
case NPCharsetThai:
FcLangSetAdd(langset, reinterpret_cast<const FcChar8*>("th"));
break;
// default:
// Don't add any languages in that case that we don't recognise the
// constant.
}
return is_lgc;
}
} // namespace
namespace content {
int MatchFontFaceWithFallback(const std::string& face,
bool is_bold,
bool is_italic,
uint32 charset,
uint32 fallback_family) {
FcLangSet* langset = FcLangSetCreate();
bool is_lgc = MSCharSetToFontconfig(langset, charset);
FcPattern* pattern = FcPatternCreate();
FcPatternAddString(
pattern, FC_FAMILY, reinterpret_cast<const FcChar8*>(face.c_str()));
// TODO(thestig) Check if we can access Chrome's per-script font preference
// here and select better default fonts for non-LGC case.
std::string generic_font_name;
if (is_lgc) {
switch (fallback_family) {
case PP_BROWSERFONT_TRUSTED_FAMILY_SERIF:
generic_font_name = "Times New Roman";
break;
case PP_BROWSERFONT_TRUSTED_FAMILY_SANSSERIF:
generic_font_name = "Arial";
break;
case PP_BROWSERFONT_TRUSTED_FAMILY_MONOSPACE:
generic_font_name = "Courier New";
break;
}
}
if (!generic_font_name.empty()) {
const FcChar8* fc_generic_font_name =
reinterpret_cast<const FcChar8*>(generic_font_name.c_str());
FcPatternAddString(pattern, FC_FAMILY, fc_generic_font_name);
}
if (is_bold)
FcPatternAddInteger(pattern, FC_WEIGHT, FC_WEIGHT_BOLD);
if (is_italic)
FcPatternAddInteger(pattern, FC_SLANT, FC_SLANT_ITALIC);
FcPatternAddLangSet(pattern, FC_LANG, langset);
FcPatternAddBool(pattern, FC_SCALABLE, FcTrue);
FcConfigSubstitute(NULL, pattern, FcMatchPattern);
FcDefaultSubstitute(pattern);
FcResult result;
FcFontSet* font_set = FcFontSort(0, pattern, 0, 0, &result);
int font_fd = -1;
int good_enough_index = -1;
bool good_enough_index_set = false;
if (font_set) {
for (int i = 0; i < font_set->nfont; ++i) {
FcPattern* current = font_set->fonts[i];
// Older versions of fontconfig have a bug where they cannot select
// only scalable fonts so we have to manually filter the results.
FcBool is_scalable;
if (FcPatternGetBool(current, FC_SCALABLE, 0, &is_scalable) !=
FcResultMatch ||
!is_scalable) {
continue;
}
FcChar8* c_filename;
if (FcPatternGetString(current, FC_FILE, 0, &c_filename) !=
FcResultMatch) {
continue;
}
// We only want to return sfnt (TrueType) based fonts. We don't have a
// very good way of detecting this so we'll filter based on the
// filename.
bool is_sfnt = false;
static const char kSFNTExtensions[][5] = {".ttf", ".otc", ".TTF", ".ttc",
""};
const size_t filename_len = strlen(reinterpret_cast<char*>(c_filename));
for (unsigned j = 0;; j++) {
if (kSFNTExtensions[j][0] == 0) {
// None of the extensions matched.
break;
}
const size_t ext_len = strlen(kSFNTExtensions[j]);
if (filename_len > ext_len &&
memcmp(c_filename + filename_len - ext_len,
kSFNTExtensions[j],
ext_len) == 0) {
is_sfnt = true;
break;
}
}
if (!is_sfnt)
continue;
// This font is good enough to pass muster, but we might be able to do
// better with subsequent ones.
if (!good_enough_index_set) {
good_enough_index = i;
good_enough_index_set = true;
}
FcValue matrix;
bool have_matrix = FcPatternGet(current, FC_MATRIX, 0, &matrix) == 0;
if (is_italic && have_matrix) {
// we asked for an italic font, but fontconfig is giving us a
// non-italic font with a transformation matrix.
continue;
}
FcValue embolden;
const bool have_embolden =
FcPatternGet(current, FC_EMBOLDEN, 0, &embolden) == 0;
if (is_bold && have_embolden) {
// we asked for a bold font, but fontconfig gave us a non-bold font
// and asked us to apply fake bolding.
continue;
}
font_fd =
HANDLE_EINTR(open(reinterpret_cast<char*>(c_filename), O_RDONLY));
if (font_fd >= 0)
break;
}
}
if (font_fd == -1 && good_enough_index_set) {
// We didn't find a font that we liked, so we fallback to something
// acceptable.
FcPattern* current = font_set->fonts[good_enough_index];
FcChar8* c_filename;
FcPatternGetString(current, FC_FILE, 0, &c_filename);
font_fd = HANDLE_EINTR(open(reinterpret_cast<char*>(c_filename), O_RDONLY));
}
if (font_set)
FcFontSetDestroy(font_set);
FcPatternDestroy(pattern);
return font_fd;
}
} // namespace content
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