mirror of
https://github.com/Atmosphere-NX/Atmosphere.git
synced 2024-11-15 11:33:32 +01:00
creport: update for new sf semantics
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parent
204539664b
commit
eb1e979257
@ -219,7 +219,7 @@ namespace ams::creport {
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void CrashReport::HandleDebugEventInfoCreateThread(const svc::DebugEventInfo &d) {
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/* Save info on the thread's TLS address for later. */
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this->thread_tls_map[d.info.create_thread.thread_id] = d.info.create_thread.tls_address;
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this->thread_tls_map.SetThreadTls(d.info.create_thread.thread_id, d.info.create_thread.tls_address);
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}
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void CrashReport::HandleDebugEventInfoException(const svc::DebugEventInfo &d) {
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@ -30,7 +30,7 @@ namespace ams::creport {
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Result result = ResultIncompleteReport();
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/* Meta, used for building module/thread list. */
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std::map<u64, u64> thread_tls_map;
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ThreadTlsMap thread_tls_map = {};
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/* Attach process info. */
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svc::DebugInfoCreateProcess process_info = {};
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@ -49,9 +49,11 @@ namespace ams::creport {
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ThreadList *thread_list = nullptr;
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/* Memory heap. */
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lmem::HeapHandle heap_handle;
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u8 heap_storage[MemoryHeapSize];
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lmem::HeapHandle heap_handle = nullptr;
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u8 heap_storage[MemoryHeapSize] = {};
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public:
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constexpr CrashReport() = default;
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Result GetResult() const {
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return this->result;
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}
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@ -24,7 +24,7 @@ extern "C" {
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u32 __nx_applet_type = AppletType_None;
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u32 __nx_fs_num_sessions = 1;
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#define INNER_HEAP_SIZE 0x4000
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#define INNER_HEAP_SIZE 0x0
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size_t nx_inner_heap_size = INNER_HEAP_SIZE;
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char nx_inner_heap[INNER_HEAP_SIZE];
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@ -68,9 +68,32 @@ void __libnx_initheap(void) {
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fake_heap_end = (char*)addr + size;
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}
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namespace {
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constinit u8 g_fs_heap_memory[4_KB];
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lmem::HeapHandle g_fs_heap_handle;
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void *AllocateForFs(size_t size) {
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return lmem::AllocateFromExpHeap(g_fs_heap_handle, size);
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}
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void DeallocateForFs(void *p, size_t size) {
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return lmem::FreeToExpHeap(g_fs_heap_handle, p);
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}
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void InitializeFsHeap() {
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g_fs_heap_handle = lmem::CreateExpHeap(g_fs_heap_memory, sizeof(g_fs_heap_memory), lmem::CreateOption_None);
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}
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}
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void __appInit(void) {
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hos::InitializeForStratosphere();
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InitializeFsHeap();
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fs::SetAllocator(AllocateForFs, DeallocateForFs);
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sm::DoWithSession([&]() {
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R_ABORT_UNLESS(fsInitialize());
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});
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@ -83,7 +106,31 @@ void __appExit(void) {
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fsExit();
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}
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static creport::CrashReport g_crash_report;
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namespace ams {
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void *Malloc(size_t size) {
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AMS_ABORT("ams::Malloc was called");
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}
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void Free(void *ptr) {
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AMS_ABORT("ams::Free was called");
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}
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}
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void *operator new(size_t size) {
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AMS_ABORT("operator new(size_t) was called");
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}
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void operator delete(void *p) {
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AMS_ABORT("operator delete(void *) was called");
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}
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namespace {
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constinit creport::CrashReport g_crash_report;
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}
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int main(int argc, char **argv) {
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/* Set thread name. */
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@ -113,7 +113,7 @@ namespace ams::creport {
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}
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}
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bool ThreadInfo::ReadFromProcess(Handle debug_handle, std::map<u64, u64> &tls_map, u64 thread_id, bool is_64_bit) {
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bool ThreadInfo::ReadFromProcess(Handle debug_handle, ThreadTlsMap &tls_map, u64 thread_id, bool is_64_bit) {
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/* Set thread id. */
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this->thread_id = thread_id;
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@ -145,8 +145,8 @@ namespace ams::creport {
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/* Read TLS, if present. */
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/* TODO: struct definitions for nnSdk's ThreadType/TLS Layout? */
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if (tls_map.find(thread_id) != tls_map.end()) {
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this->tls_address = tls_map[thread_id];
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this->tls_address = 0;
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if (tls_map.GetThreadTls(std::addressof(this->tls_address), thread_id)) {
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u8 thread_tls[0x200];
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if (R_SUCCEEDED(svcReadDebugProcessMemory(thread_tls, debug_handle, this->tls_address, sizeof(thread_tls)))) {
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std::memcpy(this->tls, thread_tls, sizeof(this->tls));
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@ -243,7 +243,7 @@ namespace ams::creport {
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}
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}
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void ThreadList::ReadFromProcess(Handle debug_handle, std::map<u64, u64> &tls_map, bool is_64_bit) {
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void ThreadList::ReadFromProcess(Handle debug_handle, ThreadTlsMap &tls_map, bool is_64_bit) {
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this->thread_count = 0;
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/* Get thread list. */
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@ -22,6 +22,39 @@ namespace ams::creport {
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/* Forward declare ModuleList class. */
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class ModuleList;
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static constexpr size_t ThreadCountMax = 0x60;
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template<size_t MaxThreadCount>
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class ThreadTlsMapImpl {
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private:
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std::pair<u64, u64> m_map[MaxThreadCount];
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size_t m_index;
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public:
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constexpr ThreadTlsMapImpl() : m_map(), m_index(0) { /* ... */ }
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constexpr void ResetThreadTlsMap() {
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m_index = 0;
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}
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constexpr void SetThreadTls(u64 thread_id, u64 tls) {
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if (m_index < util::size(m_map)) {
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m_map[m_index++] = std::make_pair(thread_id, tls);
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}
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}
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constexpr bool GetThreadTls(u64 *out, u64 thread_id) const {
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for (size_t i = 0; i < m_index; ++i) {
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if (m_map[i].first == thread_id) {
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*out = m_map[i].second;
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return true;
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}
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}
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return false;
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}
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};
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using ThreadTlsMap = ThreadTlsMapImpl<ThreadCountMax>;
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class ThreadInfo {
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private:
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static constexpr size_t StackTraceSizeMax = 0x20;
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@ -76,7 +109,7 @@ namespace ams::creport {
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this->module_list = ml;
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}
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bool ReadFromProcess(Handle debug_handle, std::map<u64, u64> &tls_map, u64 thread_id, bool is_64_bit);
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bool ReadFromProcess(Handle debug_handle, ThreadTlsMap &tls_map, u64 thread_id, bool is_64_bit);
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void SaveToFile(ScopedFile &file);
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void DumpBinary(ScopedFile &file);
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private:
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@ -84,8 +117,6 @@ namespace ams::creport {
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};
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class ThreadList {
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private:
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static constexpr size_t ThreadCountMax = 0x60;
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private:
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size_t thread_count = 0;
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ThreadInfo threads[ThreadCountMax];
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@ -104,7 +135,7 @@ namespace ams::creport {
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}
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}
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void ReadFromProcess(Handle debug_handle, std::map<u64, u64> &tls_map, bool is_64_bit);
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void ReadFromProcess(Handle debug_handle, ThreadTlsMap &tls_map, bool is_64_bit);
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void SaveToFile(ScopedFile &file);
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void DumpBinary(ScopedFile &file, u64 crashed_thread_id);
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};
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@ -30,28 +30,38 @@ namespace ams::fatal::srv {
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constexpr inline size_t MaxThreads = 0x60;
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constinit std::pair<u64, u64> g_thread_id_to_tls_map[MaxThreads];
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constinit size_t g_tls_map_index = 0;
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template<size_t MaxThreadCount>
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class ThreadTlsMapImpl {
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private:
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std::pair<u64, u64> m_map[MaxThreadCount];
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size_t m_index;
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public:
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constexpr ThreadTlsMapImpl() : m_map(), m_index(0) { /* ... */ }
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void ResetThreadTlsMap() {
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g_tls_map_index = 0;
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}
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void SetThreadTls(u64 thread_id, u64 tls) {
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if (g_tls_map_index < MaxThreads) {
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g_thread_id_to_tls_map[g_tls_map_index++] = std::make_pair(thread_id, tls);
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}
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}
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bool GetThreadTls(u64 *out, u64 thread_id) {
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for (size_t i = 0; i < g_tls_map_index; ++i) {
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if (g_thread_id_to_tls_map[i].first == thread_id) {
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*out = g_thread_id_to_tls_map[i].second;
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return true;
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constexpr void ResetThreadTlsMap() {
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m_index = 0;
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}
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}
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return false;
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}
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constexpr void SetThreadTls(u64 thread_id, u64 tls) {
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if (m_index < util::size(m_map)) {
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m_map[m_index++] = std::make_pair(thread_id, tls);
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}
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}
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constexpr bool GetThreadTls(u64 *out, u64 thread_id) const {
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for (size_t i = 0; i < m_index; ++i) {
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if (m_map[i].first == thread_id) {
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*out = m_map[i].second;
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return true;
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}
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}
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return false;
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}
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};
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using ThreadTlsMap = ThreadTlsMapImpl<MaxThreads>;
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constinit ThreadTlsMap g_thread_id_to_tls_map;
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bool IsThreadFatalCaller(Result result, u32 debug_handle, u64 thread_id, u64 thread_tls_addr, ThreadContext *thread_ctx) {
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/* Verify that the thread is running or waiting. */
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@ -202,7 +212,7 @@ namespace ams::fatal::srv {
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ON_SCOPE_EXIT { R_ABORT_UNLESS(svc::CloseHandle(debug_handle)); };
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/* First things first, check if process is 64 bits, and get list of thread infos. */
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ResetThreadTlsMap();
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g_thread_id_to_tls_map.ResetThreadTlsMap();
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{
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bool got_create_process = false;
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svc::DebugEventInfo d;
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@ -214,7 +224,7 @@ namespace ams::fatal::srv {
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got_create_process = true;
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break;
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case svc::DebugEvent_CreateThread:
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SetThreadTls(d.info.create_thread.thread_id, d.info.create_thread.tls_address);
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g_thread_id_to_tls_map.SetThreadTls(d.info.create_thread.thread_id, d.info.create_thread.tls_address);
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break;
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case svc::DebugEvent_Exception:
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case svc::DebugEvent_ExitProcess:
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@ -250,7 +260,7 @@ namespace ams::fatal::srv {
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for (s32 i = 0; i < thread_count; i++) {
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const u64 cur_thread_id = thread_ids[i];
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u64 cur_thread_tls;
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if (!GetThreadTls(std::addressof(cur_thread_tls), cur_thread_id)) {
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if (!g_thread_id_to_tls_map.GetThreadTls(std::addressof(cur_thread_tls), cur_thread_id)) {
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continue;
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}
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