#include "stdafx.h" #include "stdafx_gui.h" #include "Emu/Memory/Memory.h" #include "Emu/System.h" #include "Emu/IdManager.h" #include "Emu/Cell/PPUThread.h" #include "Emu/Cell/SPUThread.h" #include "Emu/Cell/RawSPUThread.h" #include "Emu/Cell/lv2/sys_lwmutex.h" #include "Emu/Cell/lv2/sys_lwcond.h" #include "Emu/Cell/lv2/sys_mutex.h" #include "Emu/Cell/lv2/sys_cond.h" #include "Emu/Cell/lv2/sys_semaphore.h" #include "Emu/Cell/lv2/sys_event.h" #include "Emu/Cell/lv2/sys_event_flag.h" #include "Emu/Cell/lv2/sys_rwlock.h" #include "Emu/Cell/lv2/sys_prx.h" #include "Emu/Cell/lv2/sys_memory.h" #include "Emu/Cell/lv2/sys_mmapper.h" #include "Emu/Cell/lv2/sys_spu.h" #include "KernelExplorer.h" KernelExplorer::KernelExplorer(wxWindow* parent) : wxDialog(parent, wxID_ANY, "Kernel Explorer", wxDefaultPosition, wxSize(700, 450)) { this->SetBackgroundColour(wxColour(240,240,240)); //This fix the ugly background color under Windows wxBoxSizer* s_panel = new wxBoxSizer(wxVERTICAL); // Buttons wxBoxSizer* box_buttons = new wxBoxSizer(wxHORIZONTAL); wxButton* b_refresh = new wxButton(this, wxID_ANY, "Refresh"); box_buttons->AddSpacer(10); box_buttons->Add(b_refresh); box_buttons->AddSpacer(10); wxStaticBoxSizer* box_tree = new wxStaticBoxSizer(wxHORIZONTAL, this, "Kernel"); m_tree = new wxTreeCtrl(this, wxID_ANY, wxDefaultPosition, wxSize(600,300)); box_tree->Add(m_tree); // Merge and display everything s_panel->AddSpacer(10); s_panel->Add(box_buttons); s_panel->AddSpacer(10); s_panel->Add(box_tree, 0, 0, 100); s_panel->AddSpacer(10); SetSizerAndFit(s_panel); // Events b_refresh->Bind(wxEVT_BUTTON, &KernelExplorer::OnRefresh, this); // Fill the wxTreeCtrl Update(); }; void KernelExplorer::Update() { m_tree->DeleteAllItems(); const u32 total_memory_usage = vm::get(vm::user_space)->used(); const auto& root = m_tree->AddRoot(fmt::format("Process, ID = 0x00000001, Total Memory Usage = 0x%x (%0.2f MB)", total_memory_usage, (float)total_memory_usage / (1024 * 1024))); union name64 { u64 u64_data; char string[8]; name64(u64 data) : u64_data(data & 0x00ffffffffffffffull) { } const char* operator &() const { return string; } }; // TODO: FileSystem // Semaphores if (const u32 count = idm::get_count()) { const auto& node = m_tree->AppendItem(root, fmt::format("Semaphores (%zu)", count)); idm::select([&](u32 id, lv2_sema_t& sema) { m_tree->AppendItem(node, fmt::format("Semaphore: ID = 0x%08x '%s', Count = %d, Max Count = %d, Waiters = %#zu", id, &name64(sema.name), sema.value.load(), sema.max, sema.sq.size())); }); } // Mutexes if (const u32 count = idm::get_count()) { const auto& node = m_tree->AppendItem(root, fmt::format("Mutexes (%zu)", count)); idm::select([&](u32 id, lv2_mutex_t& mutex) { m_tree->AppendItem(node, fmt::format("Mutex: ID = 0x%08x '%s'", id, &name64(mutex.name))); }); } // Lightweight Mutexes if (const u32 count = idm::get_count()) { const auto& node = m_tree->AppendItem(root, fmt::format("Lightweight Mutexes (%zu)", count)); idm::select([&](u32 id, lv2_lwmutex_t& lwm) { m_tree->AppendItem(node, fmt::format("LWMutex: ID = 0x%08x '%s'", id, &name64(lwm.name))); }); } // Condition Variables if (const u32 count = idm::get_count()) { const auto& node = m_tree->AppendItem(root, fmt::format("Condition Variables (%zu)", count)); idm::select([&](u32 id, lv2_cond_t& cond) { m_tree->AppendItem(node, fmt::format("Cond: ID = 0x%08x '%s'", id, &name64(cond.name))); }); } // Lightweight Condition Variables if (const u32 count = idm::get_count()) { const auto& node = m_tree->AppendItem(root, fmt::format("Lightweight Condition Variables (%zu)", count)); idm::select([&](u32 id, lv2_lwcond_t& lwc) { m_tree->AppendItem(node, fmt::format("LWCond: ID = 0x%08x '%s'", id, &name64(lwc.name))); }); } // Event Queues if (const u32 count = idm::get_count()) { const auto& node = m_tree->AppendItem(root, fmt::format("Event Queues (%zu)", count)); idm::select([&](u32 id, lv2_event_queue_t& eq) { m_tree->AppendItem(node, fmt::format("Event Queue: ID = 0x%08x '%s', %s, Key = %#llx, Events = %zu/%d, Waiters = %zu", id, &name64(eq.name), eq.type == SYS_SPU_QUEUE ? "SPU" : "PPU", eq.ipc_key, eq.events(), eq.size, eq.waiters())); }); } // Event Ports if (const u32 count = idm::get_count()) { const auto& node = m_tree->AppendItem(root, fmt::format("Event Ports (%zu)", count)); idm::select([&](u32 id, lv2_event_port_t& ep) { m_tree->AppendItem(node, fmt::format("Event Port: ID = 0x%08x, Name = %#llx", id, ep.name)); }); } // Event Flags if (const u32 count = idm::get_count()) { const auto& node = m_tree->AppendItem(root, fmt::format("Event Flags (%zu)", count)); idm::select([&](u32 id, lv2_event_flag_t& ef) { m_tree->AppendItem(node, fmt::format("Event Flag: ID = 0x%08x '%s', Type = 0x%x, Pattern = 0x%llx", id, &name64(ef.name), ef.type, ef.pattern.load())); }); } // Reader/writer Locks if (const u32 count = idm::get_count()) { const auto& node = m_tree->AppendItem(root, fmt::format("Reader/writer Locks (%zu)", count)); idm::select([&](u32 id, lv2_rwlock_t&) { m_tree->AppendItem(node, fmt::format("RWLock: ID = 0x%08x", id)); }); } // PRX Libraries if (const u32 count = idm::get_count()) { const auto& node = m_tree->AppendItem(root, fmt::format("PRX Libraries (%zu)", count)); idm::select([&](u32 id, lv2_prx_t&) { m_tree->AppendItem(node, fmt::format("PRX: ID = 0x%08x", id)); }); } // Memory Containers if (const u32 count = idm::get_count()) { const auto& node = m_tree->AppendItem(root, fmt::format("Memory Containers (%zu)", count)); idm::select([&](u32 id, lv2_memory_container&) { m_tree->AppendItem(node, fmt::format("Memory Container: ID = 0x%08x", id)); }); } // Memory Objects if (const u32 count = idm::get_count()) { const auto& node = m_tree->AppendItem(root, fmt::format("Memory Objects (%zu)", count)); idm::select([&](u32 id, lv2_memory&) { m_tree->AppendItem(node, fmt::format("Memory Object: ID = 0x%08x", id)); }); } // PPU Threads if (const u32 count = idm::get_count()) { const auto& node = m_tree->AppendItem(root, fmt::format("PPU Threads (%zu)", count)); idm::select([&](u32 id, ppu_thread& ppu) { m_tree->AppendItem(node, fmt::format("PPU Thread: ID = 0x%08x '%s'", id, ppu.get_name())); }); } // SPU Thread Groups if (const u32 count = idm::get_count()) { const auto& node = m_tree->AppendItem(root, fmt::format("SPU Thread Groups (%d)", count)); idm::select([&](u32 id, lv2_spu_group_t& tg) { m_tree->AppendItem(node, fmt::format("SPU Thread Group: ID = 0x%08x '%s'", id, tg.name.c_str())); }); } // RawSPU Threads (TODO) m_tree->Expand(root); } void KernelExplorer::OnRefresh(wxCommandEvent& WXUNUSED(event)) { Update(); }