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Added SharedFonts loading via TTF
By having the following TTF files in your yuzu sysdata directory. You can load sharedfonts via TTF files. FontStandard.ttf FontChineseSimplified.ttf FontExtendedChineseSimplified.ttf FontChineseTraditional.ttf FontKorean.ttf FontNintendoExtended.ttf FontNintendoExtended2.ttf
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1 changed files with 50 additions and 5 deletions
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@ -35,6 +35,14 @@ static constexpr std::array<std::pair<FontArchives, const char*>, 7> SHARED_FONT
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std::make_pair(FontArchives::Extension, "nintendo_ext_003.bfttf"),
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std::make_pair(FontArchives::Extension, "nintendo_ext_003.bfttf"),
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std::make_pair(FontArchives::Extension, "nintendo_ext2_003.bfttf")};
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std::make_pair(FontArchives::Extension, "nintendo_ext2_003.bfttf")};
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static constexpr std::array<const char*, 7> SHARED_FONTS_TTF{"FontStandard.ttf",
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"FontChineseSimplified.ttf",
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"FontExtendedChineseSimplified.ttf",
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"FontChineseTraditional.ttf",
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"FontKorean.ttf",
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"FontNintendoExtended.ttf",
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"FontNintendoExtended2.ttf"};
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// The below data is specific to shared font data dumped from Switch on f/w 2.2
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// The below data is specific to shared font data dumped from Switch on f/w 2.2
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// Virtual address and offsets/sizes likely will vary by dump
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// Virtual address and offsets/sizes likely will vary by dump
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static constexpr VAddr SHARED_FONT_MEM_VADDR{0x00000009d3016000ULL};
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static constexpr VAddr SHARED_FONT_MEM_VADDR{0x00000009d3016000ULL};
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@ -76,6 +84,16 @@ void DecryptSharedFont(const std::vector<u32>& input, std::vector<u8>& output, s
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offset += transformed_font.size() * sizeof(u32);
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offset += transformed_font.size() * sizeof(u32);
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}
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}
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void EncryptSharedFont(const std::vector<u8>& input, std::vector<u8>& output, size_t& offset) {
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ASSERT_MSG(offset + input.size() + 8 < SHARED_FONT_MEM_SIZE, "Shared fonts exceeds 17mb!");
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const u32 KEY = EXPECTED_MAGIC ^ EXPECTED_RESULT;
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std::memcpy(output.data() + offset, &EXPECTED_RESULT, sizeof(u32)); // Magic header
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const u32 ENC_SIZE = static_cast<u32>(input.size()) ^ KEY;
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std::memcpy(output.data() + offset + sizeof(u32), &ENC_SIZE, sizeof(u32));
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std::memcpy(output.data() + offset + (sizeof(u32) * 2), input.data(), input.size());
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offset += input.size() + (sizeof(u32) * 2);
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}
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static u32 GetU32Swapped(const u8* data) {
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static u32 GetU32Swapped(const u8* data) {
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u32 value;
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u32 value;
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std::memcpy(&value, data, sizeof(value));
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std::memcpy(&value, data, sizeof(value));
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@ -109,10 +127,10 @@ PL_U::PL_U() : ServiceFramework("pl:u") {
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RegisterHandlers(functions);
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RegisterHandlers(functions);
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// Attempt to load shared font data from disk
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// Attempt to load shared font data from disk
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const auto nand = FileSystem::GetSystemNANDContents();
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const auto nand = FileSystem::GetSystemNANDContents();
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size_t offset = 0;
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// Rebuild shared fonts from data ncas
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// Rebuild shared fonts from data ncas
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if (nand->HasEntry(static_cast<u64>(FontArchives::Standard),
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if (nand->HasEntry(static_cast<u64>(FontArchives::Standard),
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FileSys::ContentRecordType::Data)) {
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FileSys::ContentRecordType::Data)) {
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size_t offset = 0;
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shared_font = std::make_shared<std::vector<u8>>(SHARED_FONT_MEM_SIZE);
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shared_font = std::make_shared<std::vector<u8>>(SHARED_FONT_MEM_SIZE);
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for (auto font : SHARED_FONTS) {
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for (auto font : SHARED_FONTS) {
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const auto nca =
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const auto nca =
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@ -152,18 +170,45 @@ PL_U::PL_U() : ServiceFramework("pl:u") {
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DecryptSharedFont(font_data_u32, *shared_font, offset);
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DecryptSharedFont(font_data_u32, *shared_font, offset);
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SHARED_FONT_REGIONS.push_back(region);
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SHARED_FONT_REGIONS.push_back(region);
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}
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}
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} else {
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} else {
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const std::string filepath{FileUtil::GetUserPath(FileUtil::UserPath::SysDataDir) +
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shared_font = std::make_shared<std::vector<u8>>(
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SHARED_FONT};
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SHARED_FONT_MEM_SIZE); // Shared memory needs to always be allocated and a fixed size
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const std::string user_path = FileUtil::GetUserPath(FileUtil::UserPath::SysDataDir);
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const std::string filepath{user_path + SHARED_FONT};
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// Create path if not already created
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// Create path if not already created
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if (!FileUtil::CreateFullPath(filepath)) {
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if (!FileUtil::CreateFullPath(filepath)) {
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LOG_ERROR(Service_NS, "Failed to create sharedfonts path \"{}\"!", filepath);
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LOG_ERROR(Service_NS, "Failed to create sharedfonts path \"{}\"!", filepath);
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return;
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return;
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}
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}
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bool using_ttf = false;
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for (auto FontTTF : SHARED_FONTS_TTF) {
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if (FileUtil::Exists(user_path + FontTTF)) {
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using_ttf = true;
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FileUtil::IOFile file(user_path + FontTTF, "rb");
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if (file.IsOpen()) {
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std::vector<u8> ttf_bytes(file.GetSize());
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file.ReadBytes<u8>(ttf_bytes.data(), ttf_bytes.size());
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FontRegion region{
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static_cast<u32>(offset + 8),
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static_cast<u32>(ttf_bytes.size())}; // Font offset and size do not account
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// for the header
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EncryptSharedFont(ttf_bytes, *shared_font, offset);
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SHARED_FONT_REGIONS.push_back(region);
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} else {
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LOG_WARNING(Service_NS, "Unable to load font: {}", FontTTF);
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}
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} else if (using_ttf) {
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LOG_WARNING(Service_NS, "Unable to find font: {}", FontTTF);
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}
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}
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if (using_ttf)
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return;
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FileUtil::IOFile file(filepath, "rb");
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FileUtil::IOFile file(filepath, "rb");
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shared_font = std::make_shared<std::vector<u8>>(
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SHARED_FONT_MEM_SIZE); // Shared memory needs to always be allocated and a fixed size
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if (file.IsOpen()) {
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if (file.IsOpen()) {
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// Read shared font data
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// Read shared font data
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ASSERT(file.GetSize() == SHARED_FONT_MEM_SIZE);
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ASSERT(file.GetSize() == SHARED_FONT_MEM_SIZE);
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