fiber.cpp 6.5 KB

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  1. // Copyright 2020 yuzu Emulator Project
  2. // Licensed under GPLv2 or any later version
  3. // Refer to the license.txt file included.
  4. #include "common/assert.h"
  5. #include "common/fiber.h"
  6. #if defined(_WIN32) || defined(WIN32)
  7. #include <windows.h>
  8. #else
  9. #include <boost/context/detail/fcontext.hpp>
  10. #endif
  11. namespace Common {
  12. constexpr std::size_t default_stack_size = 256 * 1024; // 256kb
  13. #if defined(_WIN32) || defined(WIN32)
  14. struct Fiber::FiberImpl {
  15. LPVOID handle = nullptr;
  16. LPVOID rewind_handle = nullptr;
  17. };
  18. void Fiber::start() {
  19. ASSERT(previous_fiber != nullptr);
  20. previous_fiber->guard.unlock();
  21. previous_fiber.reset();
  22. entry_point(start_parameter);
  23. UNREACHABLE();
  24. }
  25. void Fiber::onRewind() {
  26. ASSERT(impl->handle != nullptr);
  27. DeleteFiber(impl->handle);
  28. impl->handle = impl->rewind_handle;
  29. impl->rewind_handle = nullptr;
  30. rewind_point(rewind_parameter);
  31. UNREACHABLE();
  32. }
  33. void __stdcall Fiber::FiberStartFunc(void* fiber_parameter) {
  34. auto fiber = static_cast<Fiber*>(fiber_parameter);
  35. fiber->start();
  36. }
  37. void __stdcall Fiber::RewindStartFunc(void* fiber_parameter) {
  38. auto fiber = static_cast<Fiber*>(fiber_parameter);
  39. fiber->onRewind();
  40. }
  41. Fiber::Fiber(std::function<void(void*)>&& entry_point_func, void* start_parameter)
  42. : entry_point{std::move(entry_point_func)}, start_parameter{start_parameter} {
  43. impl = std::make_unique<FiberImpl>();
  44. impl->handle = CreateFiber(default_stack_size, &FiberStartFunc, this);
  45. }
  46. Fiber::Fiber() {
  47. impl = std::make_unique<FiberImpl>();
  48. }
  49. Fiber::~Fiber() {
  50. // Make sure the Fiber is not being used
  51. bool locked = guard.try_lock();
  52. ASSERT_MSG(locked, "Destroying a fiber that's still running");
  53. if (locked) {
  54. guard.unlock();
  55. }
  56. DeleteFiber(impl->handle);
  57. }
  58. void Fiber::Exit() {
  59. ASSERT_MSG(is_thread_fiber, "Exitting non main thread fiber");
  60. if (!is_thread_fiber) {
  61. return;
  62. }
  63. ConvertFiberToThread();
  64. guard.unlock();
  65. }
  66. void Fiber::SetRewindPoint(std::function<void(void*)>&& rewind_func, void* start_parameter) {
  67. rewind_point = std::move(rewind_func);
  68. rewind_parameter = start_parameter;
  69. }
  70. void Fiber::Rewind() {
  71. ASSERT(rewind_point);
  72. ASSERT(impl->rewind_handle == nullptr);
  73. impl->rewind_handle = CreateFiber(default_stack_size, &RewindStartFunc, this);
  74. SwitchToFiber(impl->rewind_handle);
  75. }
  76. void Fiber::YieldTo(std::shared_ptr<Fiber> from, std::shared_ptr<Fiber> to) {
  77. ASSERT_MSG(from != nullptr, "Yielding fiber is null!");
  78. ASSERT_MSG(to != nullptr, "Next fiber is null!");
  79. to->guard.lock();
  80. to->previous_fiber = from;
  81. SwitchToFiber(to->impl->handle);
  82. auto previous_fiber = from->previous_fiber;
  83. ASSERT(previous_fiber != nullptr);
  84. previous_fiber->guard.unlock();
  85. previous_fiber.reset();
  86. }
  87. std::shared_ptr<Fiber> Fiber::ThreadToFiber() {
  88. std::shared_ptr<Fiber> fiber = std::shared_ptr<Fiber>{new Fiber()};
  89. fiber->guard.lock();
  90. fiber->impl->handle = ConvertThreadToFiber(NULL);
  91. fiber->is_thread_fiber = true;
  92. return fiber;
  93. }
  94. #else
  95. struct Fiber::FiberImpl {
  96. alignas(64) std::array<u8, default_stack_size> stack;
  97. u8* stack_limit;
  98. alignas(64) std::array<u8, default_stack_size> rewind_stack;
  99. u8* rewind_stack_limit;
  100. boost::context::detail::fcontext_t context;
  101. boost::context::detail::fcontext_t rewind_context;
  102. };
  103. void Fiber::start(boost::context::detail::transfer_t& transfer) {
  104. ASSERT(previous_fiber != nullptr);
  105. previous_fiber->impl->context = transfer.fctx;
  106. previous_fiber->guard.unlock();
  107. previous_fiber.reset();
  108. entry_point(start_parameter);
  109. UNREACHABLE();
  110. }
  111. void Fiber::onRewind(boost::context::detail::transfer_t& [[maybe_unused]] transfer) {
  112. ASSERT(impl->context != nullptr);
  113. impl->context = impl->rewind_context;
  114. impl->rewind_context = nullptr;
  115. u8* tmp = impl->stack_limit;
  116. impl->stack_limit = impl->rewind_stack_limit;
  117. impl->rewind_stack_limit = tmp;
  118. rewind_point(rewind_parameter);
  119. UNREACHABLE();
  120. }
  121. void Fiber::FiberStartFunc(boost::context::detail::transfer_t transfer) {
  122. auto fiber = static_cast<Fiber*>(transfer.data);
  123. fiber->start(transfer);
  124. }
  125. void Fiber::RewindStartFunc(boost::context::detail::transfer_t transfer) {
  126. auto fiber = static_cast<Fiber*>(transfer.data);
  127. fiber->onRewind(transfer);
  128. }
  129. Fiber::Fiber(std::function<void(void*)>&& entry_point_func, void* start_parameter)
  130. : guard{}, entry_point{std::move(entry_point_func)}, start_parameter{start_parameter},
  131. previous_fiber{} {
  132. impl = std::make_unique<FiberImpl>();
  133. impl->stack_limit = impl->stack.data();
  134. impl->rewind_stack_limit = impl->rewind_stack.data();
  135. u8* stack_base = impl->stack_limit + default_stack_size;
  136. impl->context =
  137. boost::context::detail::make_fcontext(stack_base, impl->stack.size(), FiberStartFunc);
  138. }
  139. void Fiber::SetRewindPoint(std::function<void(void*)>&& rewind_func, void* start_parameter) {
  140. rewind_point = std::move(rewind_func);
  141. rewind_parameter = start_parameter;
  142. }
  143. Fiber::Fiber() {
  144. impl = std::make_unique<FiberImpl>();
  145. }
  146. Fiber::~Fiber() {
  147. // Make sure the Fiber is not being used
  148. bool locked = guard.try_lock();
  149. ASSERT_MSG(locked, "Destroying a fiber that's still running");
  150. if (locked) {
  151. guard.unlock();
  152. }
  153. }
  154. void Fiber::Exit() {
  155. ASSERT_MSG(is_thread_fiber, "Exitting non main thread fiber");
  156. if (!is_thread_fiber) {
  157. return;
  158. }
  159. guard.unlock();
  160. }
  161. void Fiber::Rewind() {
  162. ASSERT(rewind_point);
  163. ASSERT(impl->rewind_context == nullptr);
  164. u8* stack_base = impl->rewind_stack_limit + default_stack_size;
  165. impl->rewind_context =
  166. boost::context::detail::make_fcontext(stack_base, impl->stack.size(), RewindStartFunc);
  167. boost::context::detail::jump_fcontext(impl->rewind_context, this);
  168. }
  169. void Fiber::YieldTo(std::shared_ptr<Fiber> from, std::shared_ptr<Fiber> to) {
  170. ASSERT_MSG(from != nullptr, "Yielding fiber is null!");
  171. ASSERT_MSG(to != nullptr, "Next fiber is null!");
  172. to->guard.lock();
  173. to->previous_fiber = from;
  174. auto transfer = boost::context::detail::jump_fcontext(to->impl->context, to.get());
  175. auto previous_fiber = from->previous_fiber;
  176. ASSERT(previous_fiber != nullptr);
  177. previous_fiber->impl->context = transfer.fctx;
  178. previous_fiber->guard.unlock();
  179. previous_fiber.reset();
  180. }
  181. std::shared_ptr<Fiber> Fiber::ThreadToFiber() {
  182. std::shared_ptr<Fiber> fiber = std::shared_ptr<Fiber>{new Fiber()};
  183. fiber->guard.lock();
  184. fiber->is_thread_fiber = true;
  185. return fiber;
  186. }
  187. #endif
  188. } // namespace Common