mirror of
https://github.com/Atmosphere-NX/Atmosphere
synced 2024-11-16 01:49:32 +00:00
223 lines
7.6 KiB
C++
223 lines
7.6 KiB
C++
/*
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* Copyright (c) Atmosphère-NX
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*
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* This program is free software; you can redistribute it and/or modify it
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* under the terms and conditions of the GNU General Public License,
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* version 2, as published by the Free Software Foundation.
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*
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* This program is distributed in the hope it will be useful, but WITHOUT
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* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
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* more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include <stratosphere.hpp>
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#include "erpt_srv_allocator.hpp"
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#include "erpt_srv_stream.hpp"
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namespace ams::erpt::srv {
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constinit bool Stream::s_can_access_fs = true;
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constinit os::SdkMutex Stream::s_fs_commit_mutex;
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void Stream::EnableFsAccess(bool en) {
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s_can_access_fs = en;
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}
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Result Stream::DeleteStream(const char *path) {
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R_UNLESS(s_can_access_fs, erpt::ResultInvalidPowerState());
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R_RETURN(fs::DeleteFile(path));
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}
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Result Stream::CommitStream() {
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R_UNLESS(s_can_access_fs, erpt::ResultInvalidPowerState());
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std::scoped_lock lk(s_fs_commit_mutex);
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fs::CommitSaveData(ReportStoragePath);
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R_SUCCEED();
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}
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Result Stream::GetStreamSize(s64 *out, const char *path) {
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R_UNLESS(s_can_access_fs, erpt::ResultInvalidPowerState());
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fs::FileHandle file;
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R_TRY(fs::OpenFile(std::addressof(file), path, fs::OpenMode_Read));
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ON_SCOPE_EXIT { fs::CloseFile(file); };
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R_RETURN(fs::GetFileSize(out, file));
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}
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Stream::Stream() : m_buffer_size(0), m_file_position(0), m_buffer_count(0), m_buffer(nullptr), m_stream_mode(StreamMode_Invalid), m_initialized(false) {
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/* ... */
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}
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Stream::~Stream() {
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this->CloseStream();
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AMS_ASSERT(!s_fs_commit_mutex.IsLockedByCurrentThread());
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}
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Result Stream::OpenStream(const char *path, StreamMode mode, u32 buffer_size) {
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R_UNLESS(s_can_access_fs, erpt::ResultInvalidPowerState());
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R_UNLESS(!m_initialized, erpt::ResultAlreadyInitialized());
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auto lock_guard = SCOPE_GUARD {
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if (s_fs_commit_mutex.IsLockedByCurrentThread()) {
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s_fs_commit_mutex.Unlock();
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}
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};
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if (mode == StreamMode_Write) {
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s_fs_commit_mutex.Lock();
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while (true) {
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R_TRY_CATCH(fs::OpenFile(std::addressof(m_file_handle), path, fs::OpenMode_Write | fs::OpenMode_AllowAppend)) {
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R_CATCH(fs::ResultPathNotFound) {
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R_TRY(fs::CreateFile(path, 0));
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continue;
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}
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} R_END_TRY_CATCH;
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break;
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}
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fs::SetFileSize(m_file_handle, 0);
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} else {
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R_UNLESS(mode == StreamMode_Read, erpt::ResultInvalidArgument());
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R_TRY(fs::OpenFile(std::addressof(m_file_handle), path, fs::OpenMode_Read));
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}
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auto file_guard = SCOPE_GUARD { fs::CloseFile(m_file_handle); };
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std::strncpy(m_file_name, path, sizeof(m_file_name));
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m_file_name[sizeof(m_file_name) - 1] = '\x00';
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if (buffer_size > 0) {
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m_buffer = reinterpret_cast<u8 *>(Allocate(buffer_size));
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AMS_ASSERT(m_buffer != nullptr);
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} else {
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m_buffer = nullptr;
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}
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m_buffer_size = m_buffer != nullptr ? buffer_size : 0;
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m_buffer_count = 0;
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m_buffer_position = 0;
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m_file_position = 0;
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m_stream_mode = mode;
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m_initialized = true;
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file_guard.Cancel();
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lock_guard.Cancel();
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R_SUCCEED();
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}
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Result Stream::ReadStream(u32 *out, u8 *dst, u32 dst_size) {
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R_UNLESS(s_can_access_fs, erpt::ResultInvalidPowerState());
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R_UNLESS(m_initialized, erpt::ResultNotInitialized());
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R_UNLESS(m_stream_mode == StreamMode_Read, erpt::ResultNotInitialized());
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R_UNLESS(out != nullptr, erpt::ResultInvalidArgument());
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R_UNLESS(dst != nullptr, erpt::ResultInvalidArgument());
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size_t fs_read_size;
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u32 read_count = 0;
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ON_SCOPE_EXIT {
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*out = read_count;
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};
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if (m_buffer != nullptr) {
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while (dst_size > 0) {
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if (u32 cur = std::min<u32>(m_buffer_count - m_buffer_position, dst_size); cur > 0) {
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std::memcpy(dst, m_buffer + m_buffer_position, cur);
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m_buffer_position += cur;
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dst += cur;
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dst_size -= cur;
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read_count += cur;
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} else {
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R_TRY(fs::ReadFile(std::addressof(fs_read_size), m_file_handle, m_file_position, m_buffer, m_buffer_size));
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m_buffer_position = 0;
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m_file_position += static_cast<u32>(fs_read_size);
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m_buffer_count = static_cast<u32>(fs_read_size);
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if (m_buffer_count == 0) {
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break;
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}
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}
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}
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} else {
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R_TRY(fs::ReadFile(std::addressof(fs_read_size), m_file_handle, m_file_position, dst, dst_size));
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m_file_position += static_cast<u32>(fs_read_size);
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read_count = static_cast<u32>(fs_read_size);
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}
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R_SUCCEED();
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}
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Result Stream::WriteStream(const u8 *src, u32 src_size) {
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R_UNLESS(s_can_access_fs, erpt::ResultInvalidPowerState());
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R_UNLESS(m_initialized, erpt::ResultNotInitialized());
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R_UNLESS(m_stream_mode == StreamMode_Write, erpt::ResultNotInitialized());
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R_UNLESS(src != nullptr || src_size == 0, erpt::ResultInvalidArgument());
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if (m_buffer != nullptr) {
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while (src_size > 0) {
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if (u32 cur = std::min<u32>(m_buffer_size - m_buffer_count, src_size); cur > 0) {
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std::memcpy(m_buffer + m_buffer_count, src, cur);
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m_buffer_count += cur;
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src += cur;
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src_size -= cur;
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}
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if (m_buffer_count == m_buffer_size) {
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R_TRY(this->Flush());
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}
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}
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} else {
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R_TRY(fs::WriteFile(m_file_handle, m_file_position, src, src_size, fs::WriteOption::None));
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m_file_position += src_size;
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}
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R_SUCCEED();
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}
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void Stream::CloseStream() {
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if (m_initialized) {
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if (s_can_access_fs) {
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if (m_stream_mode == StreamMode_Write) {
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this->Flush();
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fs::FlushFile(m_file_handle);
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}
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fs::CloseFile(m_file_handle);
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}
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if (m_buffer != nullptr) {
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Deallocate(m_buffer);
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}
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m_initialized = false;
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if (s_fs_commit_mutex.IsLockedByCurrentThread()) {
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s_fs_commit_mutex.Unlock();
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}
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}
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}
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Result Stream::GetStreamSize(s64 *out) const {
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R_RETURN(GetStreamSize(out, m_file_name));
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}
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Result Stream::Flush() {
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AMS_ASSERT(s_fs_commit_mutex.IsLockedByCurrentThread());
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R_SUCCEED_IF(m_buffer_count == 0);
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R_TRY(fs::WriteFile(m_file_handle, m_file_position, m_buffer, m_buffer_count, fs::WriteOption::None));
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m_file_position += m_buffer_count;
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m_buffer_count = 0;
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R_SUCCEED();
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}
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}
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