0ee6ffb257
Graphite is now available under: MIT OR MPL-2.0 OR LGPL-2.1-or-later OR GPL-2.0-or-later We pick MIT which is the same as Godot's main license for simplicity. Remove define to skip deprecation warnings, upstream fixed those.
231 lines
7.1 KiB
C++
231 lines
7.1 KiB
C++
// SPDX-License-Identifier: MIT OR MPL-2.0 OR LGPL-2.1-or-later OR GPL-2.0-or-later
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// Copyright 2010, SIL International, All rights reserved.
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#include "inc/Main.h"
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#include "inc/Endian.h"
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#include "inc/NameTable.h"
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#include "inc/UtfCodec.h"
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using namespace graphite2;
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NameTable::NameTable(const void* data, size_t length, uint16 platformId, uint16 encodingID)
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: m_platformId(0), m_encodingId(0), m_languageCount(0),
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m_platformOffset(0), m_platformLastRecord(0), m_nameDataLength(0),
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m_table(0), m_nameData(NULL)
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{
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void *pdata = gralloc<byte>(length);
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if (!pdata) return;
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memcpy(pdata, data, length);
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m_table = reinterpret_cast<const TtfUtil::Sfnt::FontNames*>(pdata);
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if ((length > sizeof(TtfUtil::Sfnt::FontNames)) &&
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(length > sizeof(TtfUtil::Sfnt::FontNames) +
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sizeof(TtfUtil::Sfnt::NameRecord) * ( be::swap<uint16>(m_table->count) - 1)))
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{
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uint16 offset = be::swap<uint16>(m_table->string_offset);
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if (offset < length)
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{
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m_nameData = reinterpret_cast<const uint8*>(pdata) + offset;
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setPlatformEncoding(platformId, encodingID);
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m_nameDataLength = uint16(length - offset);
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return;
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}
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}
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free(const_cast<TtfUtil::Sfnt::FontNames*>(m_table));
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m_table = NULL;
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}
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uint16 NameTable::setPlatformEncoding(uint16 platformId, uint16 encodingID)
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{
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if (!m_nameData) return 0;
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uint16 i = 0;
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uint16 count = be::swap<uint16>(m_table->count);
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for (; i < count; i++)
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{
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if (be::swap<uint16>(m_table->name_record[i].platform_id) == platformId &&
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be::swap<uint16>(m_table->name_record[i].platform_specific_id) == encodingID)
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{
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m_platformOffset = i;
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break;
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}
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}
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while ((++i < count) &&
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(be::swap<uint16>(m_table->name_record[i].platform_id) == platformId) &&
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(be::swap<uint16>(m_table->name_record[i].platform_specific_id) == encodingID))
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{
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m_platformLastRecord = i;
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}
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m_encodingId = encodingID;
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m_platformId = platformId;
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return 0;
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}
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void* NameTable::getName(uint16& languageId, uint16 nameId, gr_encform enc, uint32& length)
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{
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uint16 anyLang = 0;
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uint16 enUSLang = 0;
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uint16 bestLang = 0;
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if (!m_table)
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{
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languageId = 0;
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length = 0;
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return NULL;
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}
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for (uint16 i = m_platformOffset; i <= m_platformLastRecord; i++)
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{
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if (be::swap<uint16>(m_table->name_record[i].name_id) == nameId)
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{
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uint16 langId = be::swap<uint16>(m_table->name_record[i].language_id);
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if (langId == languageId)
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{
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bestLang = i;
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break;
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}
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// MS language tags have the language in the lower byte, region in the higher
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else if ((langId & 0xFF) == (languageId & 0xFF))
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{
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bestLang = i;
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}
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else if (langId == 0x409)
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{
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enUSLang = i;
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}
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else
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{
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anyLang = i;
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}
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}
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}
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if (!bestLang)
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{
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if (enUSLang) bestLang = enUSLang;
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else
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{
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bestLang = anyLang;
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if (!anyLang)
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{
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languageId = 0;
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length = 0;
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return NULL;
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}
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}
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}
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const TtfUtil::Sfnt::NameRecord & nameRecord = m_table->name_record[bestLang];
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languageId = be::swap<uint16>(nameRecord.language_id);
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uint16 utf16Length = be::swap<uint16>(nameRecord.length);
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uint16 offset = be::swap<uint16>(nameRecord.offset);
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if(offset + utf16Length > m_nameDataLength)
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{
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languageId = 0;
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length = 0;
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return NULL;
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}
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utf16Length >>= 1; // in utf16 units
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utf16::codeunit_t * utf16Name = gralloc<utf16::codeunit_t>(utf16Length + 1);
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if (!utf16Name)
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{
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languageId = 0;
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length = 0;
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return NULL;
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}
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const uint8* pName = m_nameData + offset;
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for (size_t i = 0; i < utf16Length; i++)
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{
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utf16Name[i] = be::read<uint16>(pName);
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}
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utf16Name[utf16Length] = 0;
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if (!utf16::validate(utf16Name, utf16Name + utf16Length))
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{
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free(utf16Name);
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languageId = 0;
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length = 0;
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return NULL;
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}
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switch (enc)
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{
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case gr_utf8:
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{
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utf8::codeunit_t* uniBuffer = gralloc<utf8::codeunit_t>(3 * utf16Length + 1);
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if (!uniBuffer)
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{
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free(utf16Name);
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languageId = 0;
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length = 0;
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return NULL;
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}
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utf8::iterator d = uniBuffer;
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for (utf16::const_iterator s = utf16Name, e = utf16Name + utf16Length; s != e; ++s, ++d)
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*d = *s;
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length = uint32(d - uniBuffer);
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uniBuffer[length] = 0;
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free(utf16Name);
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return uniBuffer;
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}
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case gr_utf16:
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length = utf16Length;
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return utf16Name;
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case gr_utf32:
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{
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utf32::codeunit_t * uniBuffer = gralloc<utf32::codeunit_t>(utf16Length + 1);
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if (!uniBuffer)
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{
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free(utf16Name);
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languageId = 0;
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length = 0;
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return NULL;
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}
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utf32::iterator d = uniBuffer;
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for (utf16::const_iterator s = utf16Name, e = utf16Name + utf16Length; s != e; ++s, ++d)
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*d = *s;
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length = uint32(d - uniBuffer);
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uniBuffer[length] = 0;
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free(utf16Name);
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return uniBuffer;
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}
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}
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free(utf16Name);
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languageId = 0;
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length = 0;
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return NULL;
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}
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uint16 NameTable::getLanguageId(const char * bcp47Locale)
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{
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size_t localeLength = strlen(bcp47Locale);
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uint16 localeId = m_locale2Lang.getMsId(bcp47Locale);
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if (m_table && (be::swap<uint16>(m_table->format) == 1))
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{
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const uint8 * pLangEntries = reinterpret_cast<const uint8*>(m_table) +
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sizeof(TtfUtil::Sfnt::FontNames)
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+ sizeof(TtfUtil::Sfnt::NameRecord) * ( be::swap<uint16>(m_table->count) - 1);
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uint16 numLangEntries = be::read<uint16>(pLangEntries);
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const TtfUtil::Sfnt::LangTagRecord * langTag =
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reinterpret_cast<const TtfUtil::Sfnt::LangTagRecord*>(pLangEntries);
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if (pLangEntries + numLangEntries * sizeof(TtfUtil::Sfnt::LangTagRecord) <= m_nameData)
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{
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for (uint16 i = 0; i < numLangEntries; i++)
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{
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uint16 offset = be::swap<uint16>(langTag[i].offset);
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uint16 length = be::swap<uint16>(langTag[i].length);
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if ((offset + length <= m_nameDataLength) && (length == 2 * localeLength))
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{
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const uint8* pName = m_nameData + offset;
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bool match = true;
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for (size_t j = 0; j < localeLength; j++)
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{
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uint16 code = be::read<uint16>(pName);
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if ((code > 0x7F) || (code != bcp47Locale[j]))
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{
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match = false;
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break;
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}
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}
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if (match)
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return 0x8000 + i;
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}
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}
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}
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}
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return localeId;
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}
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