mirror of
https://github.com/Atmosphere-NX/Atmosphere
synced 2024-12-27 15:11:16 +00:00
160 lines
7 KiB
C++
160 lines
7 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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namespace ams::fs {
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namespace {
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constexpr bool IsValidPriority(fs::Priority priority) {
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return priority == Priority_Low || priority == Priority_Normal || priority == Priority_Realtime;
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}
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constexpr bool IsValidPriorityRaw(fs::PriorityRaw priority_raw) {
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return priority_raw == PriorityRaw_Background || priority_raw == PriorityRaw_Low || priority_raw == PriorityRaw_Normal || priority_raw == PriorityRaw_Realtime;
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}
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fs::PriorityRaw ConvertPriorityToPriorityRaw(fs::Priority priority) {
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AMS_ASSERT(IsValidPriority(priority));
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switch (priority) {
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case Priority_Low: return PriorityRaw_Low;
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case Priority_Normal: return PriorityRaw_Normal;
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case Priority_Realtime: return PriorityRaw_Realtime;
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AMS_UNREACHABLE_DEFAULT_CASE();
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}
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}
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fs::Priority ConvertPriorityRawToPriority(fs::PriorityRaw priority_raw) {
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AMS_ASSERT(IsValidPriorityRaw(priority_raw));
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switch (priority_raw) {
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case PriorityRaw_Background: return Priority_Low;
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case PriorityRaw_Low: return Priority_Low;
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case PriorityRaw_Normal: return Priority_Normal;
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case PriorityRaw_Realtime: return Priority_Realtime;
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AMS_UNREACHABLE_DEFAULT_CASE();
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}
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}
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void UpdateTlsIoPriority(os::ThreadType *thread, u8 tls_io) {
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sf::SetFsInlineContext(thread, (tls_io & impl::TlsIoPriorityMask) | (sf::GetFsInlineContext(thread) & ~impl::TlsIoPriorityMask));
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}
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Result GetPriorityRawImpl(fs::PriorityRaw *out, os::ThreadType *thread) {
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/* Validate arguments. */
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R_UNLESS(thread != nullptr, fs::ResultNullptrArgument());
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/* Get the raw priority. */
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PriorityRaw priority_raw;
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R_TRY(impl::ConvertTlsIoPriorityToFsPriority(std::addressof(priority_raw), impl::GetTlsIoPriority(thread)));
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/* Set output. */
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*out = priority_raw;
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R_SUCCEED();
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}
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Result GetPriorityImpl(fs::Priority *out, os::ThreadType *thread) {
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/* Validate arguments. */
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R_UNLESS(thread != nullptr, fs::ResultNullptrArgument());
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/* Get the raw priority. */
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PriorityRaw priority_raw;
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R_TRY(impl::ConvertTlsIoPriorityToFsPriority(std::addressof(priority_raw), impl::GetTlsIoPriority(thread)));
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/* Set output. */
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*out = ConvertPriorityRawToPriority(priority_raw);
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R_SUCCEED();
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}
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Result SetPriorityRawImpl(os::ThreadType *thread, fs::PriorityRaw priority_raw) {
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/* Validate arguments. */
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R_UNLESS(thread != nullptr, fs::ResultNullptrArgument());
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R_UNLESS(IsValidPriorityRaw(priority_raw), fs::ResultInvalidArgument());
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/* Convert to tls io. */
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u8 tls_io;
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R_TRY(impl::ConvertFsPriorityToTlsIoPriority(std::addressof(tls_io), priority_raw));
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/* Update the priority. */
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UpdateTlsIoPriority(thread, tls_io);
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R_SUCCEED();
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}
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Result SetPriorityImpl(os::ThreadType *thread, fs::Priority priority) {
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/* Validate arguments. */
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R_UNLESS(thread != nullptr, fs::ResultNullptrArgument());
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R_UNLESS(IsValidPriority(priority), fs::ResultInvalidArgument());
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/* Convert to tls io. */
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u8 tls_io;
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R_TRY(impl::ConvertFsPriorityToTlsIoPriority(std::addressof(tls_io), ConvertPriorityToPriorityRaw(priority)));
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/* Update the priority. */
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UpdateTlsIoPriority(thread, tls_io);
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R_SUCCEED();
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}
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}
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Priority GetPriorityOnCurrentThread() {
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fs::Priority priority;
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AMS_FS_R_ABORT_UNLESS(AMS_FS_IMPL_ACCESS_LOG(GetPriorityImpl(std::addressof(priority), os::GetCurrentThread()), nullptr, AMS_FS_IMPL_ACCESS_LOG_FORMAT_NONE));
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return priority;
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}
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Priority GetPriority(os::ThreadType *thread) {
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fs::Priority priority;
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AMS_FS_R_ABORT_UNLESS(AMS_FS_IMPL_ACCESS_LOG(GetPriorityImpl(std::addressof(priority), thread), nullptr, AMS_FS_IMPL_ACCESS_LOG_FORMAT_THREAD_ID, reinterpret_cast<u64>(thread != nullptr ? os::GetThreadId(thread) : os::ThreadId{})));
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return priority;
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}
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PriorityRaw GetPriorityRawOnCurrentThread() {
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fs::PriorityRaw priority_raw;
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AMS_FS_R_ABORT_UNLESS(AMS_FS_IMPL_ACCESS_LOG(GetPriorityRawImpl(std::addressof(priority_raw), os::GetCurrentThread()), nullptr, AMS_FS_IMPL_ACCESS_LOG_FORMAT_NONE));
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return priority_raw;
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}
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PriorityRaw GetPriorityRawOnCurrentThreadInternal() {
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fs::PriorityRaw priority_raw;
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R_ABORT_UNLESS(GetPriorityRawImpl(std::addressof(priority_raw), os::GetCurrentThread()));
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return priority_raw;
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}
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PriorityRaw GetPriorityRaw(os::ThreadType *thread) {
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fs::PriorityRaw priority_raw;
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AMS_FS_R_ABORT_UNLESS(AMS_FS_IMPL_ACCESS_LOG(GetPriorityRawImpl(std::addressof(priority_raw), thread), nullptr, AMS_FS_IMPL_ACCESS_LOG_FORMAT_THREAD_ID, reinterpret_cast<u64>(thread != nullptr ? os::GetThreadId(thread) : os::ThreadId{})));
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return priority_raw;
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}
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void SetPriorityOnCurrentThread(Priority priority) {
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AMS_FS_R_ABORT_UNLESS(AMS_FS_IMPL_ACCESS_LOG(SetPriorityImpl(os::GetCurrentThread(), priority), nullptr, AMS_FS_IMPL_ACCESS_LOG_FORMAT_NONE));
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}
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void SetPriority(os::ThreadType *thread, Priority priority) {
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AMS_FS_R_ABORT_UNLESS(AMS_FS_IMPL_ACCESS_LOG(SetPriorityImpl(os::GetCurrentThread(), priority), nullptr, AMS_FS_IMPL_ACCESS_LOG_FORMAT_THREAD_ID, reinterpret_cast<u64>(thread != nullptr ? os::GetThreadId(thread) : os::ThreadId{})));
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}
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void SetPriorityRawOnCurrentThread(PriorityRaw priority_raw) {
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AMS_FS_R_ABORT_UNLESS(AMS_FS_IMPL_ACCESS_LOG(SetPriorityRawImpl(os::GetCurrentThread(), priority_raw), nullptr, AMS_FS_IMPL_ACCESS_LOG_FORMAT_NONE));
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}
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void SetPriorityRaw(os::ThreadType *thread, PriorityRaw priority_raw) {
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AMS_FS_R_ABORT_UNLESS(AMS_FS_IMPL_ACCESS_LOG(SetPriorityRawImpl(os::GetCurrentThread(), priority_raw), nullptr, AMS_FS_IMPL_ACCESS_LOG_FORMAT_THREAD_ID, reinterpret_cast<u64>(thread != nullptr ? os::GetThreadId(thread) : os::ThreadId{})));
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}
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}
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