wait_tree.cpp 17 KB

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  1. // Copyright 2016 Citra Emulator Project
  2. // Licensed under GPLv2 or any later version
  3. // Refer to the license.txt file included.
  4. #include <array>
  5. #include <fmt/format.h>
  6. #include "yuzu/debugger/wait_tree.h"
  7. #include "yuzu/uisettings.h"
  8. #include "yuzu/util/util.h"
  9. #include "common/assert.h"
  10. #include "core/arm/arm_interface.h"
  11. #include "core/core.h"
  12. #include "core/hle/kernel/handle_table.h"
  13. #include "core/hle/kernel/mutex.h"
  14. #include "core/hle/kernel/process.h"
  15. #include "core/hle/kernel/readable_event.h"
  16. #include "core/hle/kernel/scheduler.h"
  17. #include "core/hle/kernel/synchronization_object.h"
  18. #include "core/hle/kernel/thread.h"
  19. #include "core/memory.h"
  20. namespace {
  21. constexpr std::array<std::array<Qt::GlobalColor, 2>, 10> WaitTreeColors{{
  22. {Qt::GlobalColor::darkGreen, Qt::GlobalColor::green},
  23. {Qt::GlobalColor::darkGreen, Qt::GlobalColor::green},
  24. {Qt::GlobalColor::darkBlue, Qt::GlobalColor::cyan},
  25. {Qt::GlobalColor::lightGray, Qt::GlobalColor::lightGray},
  26. {Qt::GlobalColor::lightGray, Qt::GlobalColor::lightGray},
  27. {Qt::GlobalColor::darkRed, Qt::GlobalColor::red},
  28. {Qt::GlobalColor::darkYellow, Qt::GlobalColor::yellow},
  29. {Qt::GlobalColor::red, Qt::GlobalColor::red},
  30. {Qt::GlobalColor::darkCyan, Qt::GlobalColor::cyan},
  31. {Qt::GlobalColor::gray, Qt::GlobalColor::gray},
  32. }};
  33. bool IsDarkTheme() {
  34. const auto& theme = UISettings::values.theme;
  35. return theme == QStringLiteral("qdarkstyle") ||
  36. theme == QStringLiteral("qdarkstyle_midnight_blue") ||
  37. theme == QStringLiteral("colorful_dark") ||
  38. theme == QStringLiteral("colorful_midnight_blue");
  39. }
  40. } // namespace
  41. WaitTreeItem::WaitTreeItem() = default;
  42. WaitTreeItem::~WaitTreeItem() = default;
  43. QColor WaitTreeItem::GetColor() const {
  44. if (IsDarkTheme()) {
  45. return QColor(Qt::GlobalColor::white);
  46. } else {
  47. return QColor(Qt::GlobalColor::black);
  48. }
  49. }
  50. std::vector<std::unique_ptr<WaitTreeItem>> WaitTreeItem::GetChildren() const {
  51. return {};
  52. }
  53. void WaitTreeItem::Expand() {
  54. if (IsExpandable() && !expanded) {
  55. children = GetChildren();
  56. for (std::size_t i = 0; i < children.size(); ++i) {
  57. children[i]->parent = this;
  58. children[i]->row = i;
  59. }
  60. expanded = true;
  61. }
  62. }
  63. WaitTreeItem* WaitTreeItem::Parent() const {
  64. return parent;
  65. }
  66. const std::vector<std::unique_ptr<WaitTreeItem>>& WaitTreeItem::Children() const {
  67. return children;
  68. }
  69. bool WaitTreeItem::IsExpandable() const {
  70. return false;
  71. }
  72. std::size_t WaitTreeItem::Row() const {
  73. return row;
  74. }
  75. std::vector<std::unique_ptr<WaitTreeThread>> WaitTreeItem::MakeThreadItemList() {
  76. std::vector<std::unique_ptr<WaitTreeThread>> item_list;
  77. std::size_t row = 0;
  78. auto add_threads = [&](const std::vector<std::shared_ptr<Kernel::Thread>>& threads) {
  79. for (std::size_t i = 0; i < threads.size(); ++i) {
  80. if (!threads[i]->IsHLEThread()) {
  81. item_list.push_back(std::make_unique<WaitTreeThread>(*threads[i]));
  82. item_list.back()->row = row;
  83. }
  84. ++row;
  85. }
  86. };
  87. const auto& system = Core::System::GetInstance();
  88. add_threads(system.GlobalScheduler().GetThreadList());
  89. return item_list;
  90. }
  91. WaitTreeText::WaitTreeText(QString t) : text(std::move(t)) {}
  92. WaitTreeText::~WaitTreeText() = default;
  93. QString WaitTreeText::GetText() const {
  94. return text;
  95. }
  96. WaitTreeMutexInfo::WaitTreeMutexInfo(VAddr mutex_address, const Kernel::HandleTable& handle_table)
  97. : mutex_address(mutex_address) {
  98. mutex_value = Core::System::GetInstance().Memory().Read32(mutex_address);
  99. owner_handle = static_cast<Kernel::Handle>(mutex_value & Kernel::Mutex::MutexOwnerMask);
  100. owner = handle_table.Get<Kernel::Thread>(owner_handle);
  101. }
  102. WaitTreeMutexInfo::~WaitTreeMutexInfo() = default;
  103. QString WaitTreeMutexInfo::GetText() const {
  104. return tr("waiting for mutex 0x%1").arg(mutex_address, 16, 16, QLatin1Char{'0'});
  105. }
  106. std::vector<std::unique_ptr<WaitTreeItem>> WaitTreeMutexInfo::GetChildren() const {
  107. const bool has_waiters = (mutex_value & Kernel::Mutex::MutexHasWaitersFlag) != 0;
  108. std::vector<std::unique_ptr<WaitTreeItem>> list;
  109. list.push_back(std::make_unique<WaitTreeText>(tr("has waiters: %1").arg(has_waiters)));
  110. list.push_back(std::make_unique<WaitTreeText>(
  111. tr("owner handle: 0x%1").arg(owner_handle, 8, 16, QLatin1Char{'0'})));
  112. if (owner != nullptr) {
  113. list.push_back(std::make_unique<WaitTreeThread>(*owner));
  114. }
  115. return list;
  116. }
  117. WaitTreeCallstack::WaitTreeCallstack(const Kernel::Thread& thread) : thread(thread) {}
  118. WaitTreeCallstack::~WaitTreeCallstack() = default;
  119. QString WaitTreeCallstack::GetText() const {
  120. return tr("Call stack");
  121. }
  122. std::vector<std::unique_ptr<WaitTreeItem>> WaitTreeCallstack::GetChildren() const {
  123. std::vector<std::unique_ptr<WaitTreeItem>> list;
  124. if (thread.IsHLEThread()) {
  125. return list;
  126. }
  127. if (thread.GetOwnerProcess() == nullptr || !thread.GetOwnerProcess()->Is64BitProcess()) {
  128. return list;
  129. }
  130. auto backtrace = Core::ARM_Interface::GetBacktraceFromContext(Core::System::GetInstance(),
  131. thread.GetContext64());
  132. for (auto& entry : backtrace) {
  133. std::string s = fmt::format("{:20}{:016X} {:016X} {:016X} {}", entry.module, entry.address,
  134. entry.original_address, entry.offset, entry.name);
  135. list.push_back(std::make_unique<WaitTreeText>(QString::fromStdString(s)));
  136. }
  137. return list;
  138. }
  139. WaitTreeSynchronizationObject::WaitTreeSynchronizationObject(const Kernel::SynchronizationObject& o)
  140. : object(o) {}
  141. WaitTreeSynchronizationObject::~WaitTreeSynchronizationObject() = default;
  142. WaitTreeExpandableItem::WaitTreeExpandableItem() = default;
  143. WaitTreeExpandableItem::~WaitTreeExpandableItem() = default;
  144. bool WaitTreeExpandableItem::IsExpandable() const {
  145. return true;
  146. }
  147. QString WaitTreeSynchronizationObject::GetText() const {
  148. return tr("[%1]%2 %3")
  149. .arg(object.GetObjectId())
  150. .arg(QString::fromStdString(object.GetTypeName()),
  151. QString::fromStdString(object.GetName()));
  152. }
  153. std::unique_ptr<WaitTreeSynchronizationObject> WaitTreeSynchronizationObject::make(
  154. const Kernel::SynchronizationObject& object) {
  155. switch (object.GetHandleType()) {
  156. case Kernel::HandleType::ReadableEvent:
  157. return std::make_unique<WaitTreeEvent>(static_cast<const Kernel::ReadableEvent&>(object));
  158. case Kernel::HandleType::Thread:
  159. return std::make_unique<WaitTreeThread>(static_cast<const Kernel::Thread&>(object));
  160. default:
  161. return std::make_unique<WaitTreeSynchronizationObject>(object);
  162. }
  163. }
  164. std::vector<std::unique_ptr<WaitTreeItem>> WaitTreeSynchronizationObject::GetChildren() const {
  165. std::vector<std::unique_ptr<WaitTreeItem>> list;
  166. const auto& threads = object.GetWaitingThreads();
  167. if (threads.empty()) {
  168. list.push_back(std::make_unique<WaitTreeText>(tr("waited by no thread")));
  169. } else {
  170. list.push_back(std::make_unique<WaitTreeThreadList>(threads));
  171. }
  172. return list;
  173. }
  174. WaitTreeObjectList::WaitTreeObjectList(
  175. const std::vector<std::shared_ptr<Kernel::SynchronizationObject>>& list, bool w_all)
  176. : object_list(list), wait_all(w_all) {}
  177. WaitTreeObjectList::~WaitTreeObjectList() = default;
  178. QString WaitTreeObjectList::GetText() const {
  179. if (wait_all)
  180. return tr("waiting for all objects");
  181. return tr("waiting for one of the following objects");
  182. }
  183. std::vector<std::unique_ptr<WaitTreeItem>> WaitTreeObjectList::GetChildren() const {
  184. std::vector<std::unique_ptr<WaitTreeItem>> list(object_list.size());
  185. std::transform(object_list.begin(), object_list.end(), list.begin(),
  186. [](const auto& t) { return WaitTreeSynchronizationObject::make(*t); });
  187. return list;
  188. }
  189. WaitTreeThread::WaitTreeThread(const Kernel::Thread& thread)
  190. : WaitTreeSynchronizationObject(thread) {}
  191. WaitTreeThread::~WaitTreeThread() = default;
  192. QString WaitTreeThread::GetText() const {
  193. const auto& thread = static_cast<const Kernel::Thread&>(object);
  194. QString status;
  195. switch (thread.GetStatus()) {
  196. case Kernel::ThreadStatus::Running:
  197. status = tr("running");
  198. break;
  199. case Kernel::ThreadStatus::Ready:
  200. if (!thread.IsPaused()) {
  201. if (thread.WasRunning()) {
  202. status = tr("running");
  203. } else {
  204. status = tr("ready");
  205. }
  206. } else {
  207. status = tr("paused");
  208. }
  209. break;
  210. case Kernel::ThreadStatus::Paused:
  211. status = tr("paused");
  212. break;
  213. case Kernel::ThreadStatus::WaitHLEEvent:
  214. status = tr("waiting for HLE return");
  215. break;
  216. case Kernel::ThreadStatus::WaitSleep:
  217. status = tr("sleeping");
  218. break;
  219. case Kernel::ThreadStatus::WaitIPC:
  220. status = tr("waiting for IPC reply");
  221. break;
  222. case Kernel::ThreadStatus::WaitSynch:
  223. status = tr("waiting for objects");
  224. break;
  225. case Kernel::ThreadStatus::WaitMutex:
  226. status = tr("waiting for mutex");
  227. break;
  228. case Kernel::ThreadStatus::WaitCondVar:
  229. status = tr("waiting for condition variable");
  230. break;
  231. case Kernel::ThreadStatus::WaitArb:
  232. status = tr("waiting for address arbiter");
  233. break;
  234. case Kernel::ThreadStatus::Dormant:
  235. status = tr("dormant");
  236. break;
  237. case Kernel::ThreadStatus::Dead:
  238. status = tr("dead");
  239. break;
  240. }
  241. const auto& context = thread.GetContext64();
  242. const QString pc_info = tr(" PC = 0x%1 LR = 0x%2")
  243. .arg(context.pc, 8, 16, QLatin1Char{'0'})
  244. .arg(context.cpu_registers[30], 8, 16, QLatin1Char{'0'});
  245. return QStringLiteral("%1%2 (%3) ")
  246. .arg(WaitTreeSynchronizationObject::GetText(), pc_info, status);
  247. }
  248. QColor WaitTreeThread::GetColor() const {
  249. const std::size_t color_index = IsDarkTheme() ? 1 : 0;
  250. const auto& thread = static_cast<const Kernel::Thread&>(object);
  251. switch (thread.GetStatus()) {
  252. case Kernel::ThreadStatus::Running:
  253. return QColor(WaitTreeColors[0][color_index]);
  254. case Kernel::ThreadStatus::Ready:
  255. if (!thread.IsPaused()) {
  256. if (thread.WasRunning()) {
  257. return QColor(WaitTreeColors[1][color_index]);
  258. } else {
  259. return QColor(WaitTreeColors[2][color_index]);
  260. }
  261. } else {
  262. return QColor(WaitTreeColors[3][color_index]);
  263. }
  264. case Kernel::ThreadStatus::Paused:
  265. return QColor(WaitTreeColors[4][color_index]);
  266. case Kernel::ThreadStatus::WaitHLEEvent:
  267. case Kernel::ThreadStatus::WaitIPC:
  268. return QColor(WaitTreeColors[5][color_index]);
  269. case Kernel::ThreadStatus::WaitSleep:
  270. return QColor(WaitTreeColors[6][color_index]);
  271. case Kernel::ThreadStatus::WaitSynch:
  272. case Kernel::ThreadStatus::WaitMutex:
  273. case Kernel::ThreadStatus::WaitCondVar:
  274. case Kernel::ThreadStatus::WaitArb:
  275. return QColor(WaitTreeColors[7][color_index]);
  276. case Kernel::ThreadStatus::Dormant:
  277. return QColor(WaitTreeColors[8][color_index]);
  278. case Kernel::ThreadStatus::Dead:
  279. return QColor(WaitTreeColors[9][color_index]);
  280. default:
  281. return WaitTreeItem::GetColor();
  282. }
  283. }
  284. std::vector<std::unique_ptr<WaitTreeItem>> WaitTreeThread::GetChildren() const {
  285. std::vector<std::unique_ptr<WaitTreeItem>> list(WaitTreeSynchronizationObject::GetChildren());
  286. const auto& thread = static_cast<const Kernel::Thread&>(object);
  287. QString processor;
  288. switch (thread.GetProcessorID()) {
  289. case Kernel::ThreadProcessorId::THREADPROCESSORID_IDEAL:
  290. processor = tr("ideal");
  291. break;
  292. case Kernel::ThreadProcessorId::THREADPROCESSORID_0:
  293. case Kernel::ThreadProcessorId::THREADPROCESSORID_1:
  294. case Kernel::ThreadProcessorId::THREADPROCESSORID_2:
  295. case Kernel::ThreadProcessorId::THREADPROCESSORID_3:
  296. processor = tr("core %1").arg(thread.GetProcessorID());
  297. break;
  298. default:
  299. processor = tr("Unknown processor %1").arg(thread.GetProcessorID());
  300. break;
  301. }
  302. list.push_back(std::make_unique<WaitTreeText>(tr("processor = %1").arg(processor)));
  303. list.push_back(
  304. std::make_unique<WaitTreeText>(tr("ideal core = %1").arg(thread.GetIdealCore())));
  305. list.push_back(
  306. std::make_unique<WaitTreeText>(tr("affinity mask = %1").arg(thread.GetAffinityMask())));
  307. list.push_back(std::make_unique<WaitTreeText>(tr("thread id = %1").arg(thread.GetThreadID())));
  308. list.push_back(std::make_unique<WaitTreeText>(tr("priority = %1(current) / %2(normal)")
  309. .arg(thread.GetPriority())
  310. .arg(thread.GetNominalPriority())));
  311. list.push_back(std::make_unique<WaitTreeText>(
  312. tr("last running ticks = %1").arg(thread.GetLastRunningTicks())));
  313. const VAddr mutex_wait_address = thread.GetMutexWaitAddress();
  314. if (mutex_wait_address != 0) {
  315. const auto& handle_table = thread.GetOwnerProcess()->GetHandleTable();
  316. list.push_back(std::make_unique<WaitTreeMutexInfo>(mutex_wait_address, handle_table));
  317. } else {
  318. list.push_back(std::make_unique<WaitTreeText>(tr("not waiting for mutex")));
  319. }
  320. if (thread.GetStatus() == Kernel::ThreadStatus::WaitSynch) {
  321. list.push_back(std::make_unique<WaitTreeObjectList>(thread.GetSynchronizationObjects(),
  322. thread.IsWaitingSync()));
  323. }
  324. list.push_back(std::make_unique<WaitTreeCallstack>(thread));
  325. return list;
  326. }
  327. WaitTreeEvent::WaitTreeEvent(const Kernel::ReadableEvent& object)
  328. : WaitTreeSynchronizationObject(object) {}
  329. WaitTreeEvent::~WaitTreeEvent() = default;
  330. WaitTreeThreadList::WaitTreeThreadList(const std::vector<std::shared_ptr<Kernel::Thread>>& list)
  331. : thread_list(list) {}
  332. WaitTreeThreadList::~WaitTreeThreadList() = default;
  333. QString WaitTreeThreadList::GetText() const {
  334. return tr("waited by thread");
  335. }
  336. std::vector<std::unique_ptr<WaitTreeItem>> WaitTreeThreadList::GetChildren() const {
  337. std::vector<std::unique_ptr<WaitTreeItem>> list(thread_list.size());
  338. std::transform(thread_list.begin(), thread_list.end(), list.begin(),
  339. [](const auto& t) { return std::make_unique<WaitTreeThread>(*t); });
  340. return list;
  341. }
  342. WaitTreeModel::WaitTreeModel(QObject* parent) : QAbstractItemModel(parent) {}
  343. WaitTreeModel::~WaitTreeModel() = default;
  344. QModelIndex WaitTreeModel::index(int row, int column, const QModelIndex& parent) const {
  345. if (!hasIndex(row, column, parent))
  346. return {};
  347. if (parent.isValid()) {
  348. WaitTreeItem* parent_item = static_cast<WaitTreeItem*>(parent.internalPointer());
  349. parent_item->Expand();
  350. return createIndex(row, column, parent_item->Children()[row].get());
  351. }
  352. return createIndex(row, column, thread_items[row].get());
  353. }
  354. QModelIndex WaitTreeModel::parent(const QModelIndex& index) const {
  355. if (!index.isValid())
  356. return {};
  357. WaitTreeItem* parent_item = static_cast<WaitTreeItem*>(index.internalPointer())->Parent();
  358. if (!parent_item) {
  359. return QModelIndex();
  360. }
  361. return createIndex(static_cast<int>(parent_item->Row()), 0, parent_item);
  362. }
  363. int WaitTreeModel::rowCount(const QModelIndex& parent) const {
  364. if (!parent.isValid())
  365. return static_cast<int>(thread_items.size());
  366. WaitTreeItem* parent_item = static_cast<WaitTreeItem*>(parent.internalPointer());
  367. parent_item->Expand();
  368. return static_cast<int>(parent_item->Children().size());
  369. }
  370. int WaitTreeModel::columnCount(const QModelIndex&) const {
  371. return 1;
  372. }
  373. QVariant WaitTreeModel::data(const QModelIndex& index, int role) const {
  374. if (!index.isValid())
  375. return {};
  376. switch (role) {
  377. case Qt::DisplayRole:
  378. return static_cast<WaitTreeItem*>(index.internalPointer())->GetText();
  379. case Qt::ForegroundRole:
  380. return static_cast<WaitTreeItem*>(index.internalPointer())->GetColor();
  381. default:
  382. return {};
  383. }
  384. }
  385. void WaitTreeModel::ClearItems() {
  386. thread_items.clear();
  387. }
  388. void WaitTreeModel::InitItems() {
  389. thread_items = WaitTreeItem::MakeThreadItemList();
  390. }
  391. WaitTreeWidget::WaitTreeWidget(QWidget* parent) : QDockWidget(tr("Wait Tree"), parent) {
  392. setObjectName(QStringLiteral("WaitTreeWidget"));
  393. view = new QTreeView(this);
  394. view->setHeaderHidden(true);
  395. setWidget(view);
  396. setEnabled(false);
  397. }
  398. WaitTreeWidget::~WaitTreeWidget() = default;
  399. void WaitTreeWidget::OnDebugModeEntered() {
  400. if (!Core::System::GetInstance().IsPoweredOn())
  401. return;
  402. model->InitItems();
  403. view->setModel(model);
  404. setEnabled(true);
  405. }
  406. void WaitTreeWidget::OnDebugModeLeft() {
  407. setEnabled(false);
  408. view->setModel(nullptr);
  409. model->ClearItems();
  410. }
  411. void WaitTreeWidget::OnEmulationStarting(EmuThread* emu_thread) {
  412. model = new WaitTreeModel(this);
  413. view->setModel(model);
  414. setEnabled(false);
  415. }
  416. void WaitTreeWidget::OnEmulationStopping() {
  417. view->setModel(nullptr);
  418. delete model;
  419. setEnabled(false);
  420. }