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Merge pull request #11763 from liamwhite/lto-noinline
kernel: mark TLS accessors as noinline for non-MSVC LTO
This commit is contained in:
commit
d74fd9e2fe
2 changed files with 12 additions and 8 deletions
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@ -39,8 +39,12 @@
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#define Crash() exit(1)
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#define Crash() exit(1)
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#endif
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#endif
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#define LTO_NOINLINE __attribute__((noinline))
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#else // _MSC_VER
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#else // _MSC_VER
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#define LTO_NOINLINE
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// Locale Cross-Compatibility
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// Locale Cross-Compatibility
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#define locale_t _locale_t
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#define locale_t _locale_t
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@ -373,7 +373,7 @@ struct KernelCore::Impl {
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static inline thread_local u8 host_thread_id = UINT8_MAX;
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static inline thread_local u8 host_thread_id = UINT8_MAX;
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/// Sets the host thread ID for the caller.
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/// Sets the host thread ID for the caller.
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u32 SetHostThreadId(std::size_t core_id) {
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LTO_NOINLINE u32 SetHostThreadId(std::size_t core_id) {
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// This should only be called during core init.
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// This should only be called during core init.
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ASSERT(host_thread_id == UINT8_MAX);
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ASSERT(host_thread_id == UINT8_MAX);
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@ -384,13 +384,13 @@ struct KernelCore::Impl {
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}
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}
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/// Gets the host thread ID for the caller
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/// Gets the host thread ID for the caller
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u32 GetHostThreadId() const {
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LTO_NOINLINE u32 GetHostThreadId() const {
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return host_thread_id;
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return host_thread_id;
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}
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}
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// Gets the dummy KThread for the caller, allocating a new one if this is the first time
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// Gets the dummy KThread for the caller, allocating a new one if this is the first time
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KThread* GetHostDummyThread(KThread* existing_thread) {
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LTO_NOINLINE KThread* GetHostDummyThread(KThread* existing_thread) {
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const auto initialize{[](KThread* thread) {
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const auto initialize{[](KThread* thread) LTO_NOINLINE {
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ASSERT(KThread::InitializeDummyThread(thread, nullptr).IsSuccess());
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ASSERT(KThread::InitializeDummyThread(thread, nullptr).IsSuccess());
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return thread;
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return thread;
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}};
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}};
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@ -424,11 +424,11 @@ struct KernelCore::Impl {
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static inline thread_local bool is_phantom_mode_for_singlecore{false};
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static inline thread_local bool is_phantom_mode_for_singlecore{false};
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bool IsPhantomModeForSingleCore() const {
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LTO_NOINLINE bool IsPhantomModeForSingleCore() const {
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return is_phantom_mode_for_singlecore;
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return is_phantom_mode_for_singlecore;
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}
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}
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void SetIsPhantomModeForSingleCore(bool value) {
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LTO_NOINLINE void SetIsPhantomModeForSingleCore(bool value) {
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ASSERT(!is_multicore);
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ASSERT(!is_multicore);
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is_phantom_mode_for_singlecore = value;
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is_phantom_mode_for_singlecore = value;
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}
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}
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@ -439,14 +439,14 @@ struct KernelCore::Impl {
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static inline thread_local KThread* current_thread{nullptr};
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static inline thread_local KThread* current_thread{nullptr};
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KThread* GetCurrentEmuThread() {
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LTO_NOINLINE KThread* GetCurrentEmuThread() {
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if (!current_thread) {
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if (!current_thread) {
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current_thread = GetHostDummyThread(nullptr);
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current_thread = GetHostDummyThread(nullptr);
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}
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}
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return current_thread;
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return current_thread;
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}
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}
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void SetCurrentEmuThread(KThread* thread) {
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LTO_NOINLINE void SetCurrentEmuThread(KThread* thread) {
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current_thread = thread;
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current_thread = thread;
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}
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}
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