ConstraintManager.cpp 10 KB

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  1. // Jolt Physics Library (https://github.com/jrouwe/JoltPhysics)
  2. // SPDX-FileCopyrightText: 2021 Jorrit Rouwe
  3. // SPDX-License-Identifier: MIT
  4. #include <Jolt/Jolt.h>
  5. #include <Jolt/Physics/Constraints/ConstraintManager.h>
  6. #include <Jolt/Physics/IslandBuilder.h>
  7. #include <Jolt/Physics/StateRecorder.h>
  8. #include <Jolt/Physics/PhysicsLock.h>
  9. #include <Jolt/Core/Profiler.h>
  10. #include <Jolt/Core/QuickSort.h>
  11. JPH_NAMESPACE_BEGIN
  12. void ConstraintManager::Add(Constraint **inConstraints, int inNumber)
  13. {
  14. UniqueLock lock(mConstraintsMutex JPH_IF_ENABLE_ASSERTS(, mLockContext, EPhysicsLockTypes::ConstraintsList));
  15. mConstraints.reserve(mConstraints.size() + inNumber);
  16. for (Constraint **c = inConstraints, **c_end = inConstraints + inNumber; c < c_end; ++c)
  17. {
  18. Constraint *constraint = *c;
  19. // Assume this constraint has not been added yet
  20. JPH_ASSERT(constraint->mConstraintIndex == Constraint::cInvalidConstraintIndex);
  21. // Add to the list
  22. constraint->mConstraintIndex = uint32(mConstraints.size());
  23. mConstraints.push_back(constraint);
  24. }
  25. }
  26. void ConstraintManager::Remove(Constraint **inConstraints, int inNumber)
  27. {
  28. UniqueLock lock(mConstraintsMutex JPH_IF_ENABLE_ASSERTS(, mLockContext, EPhysicsLockTypes::ConstraintsList));
  29. for (Constraint **c = inConstraints, **c_end = inConstraints + inNumber; c < c_end; ++c)
  30. {
  31. Constraint *constraint = *c;
  32. // Reset constraint index for this constraint
  33. uint32 this_constraint_idx = constraint->mConstraintIndex;
  34. constraint->mConstraintIndex = Constraint::cInvalidConstraintIndex;
  35. JPH_ASSERT(this_constraint_idx != Constraint::cInvalidConstraintIndex);
  36. // Check if this constraint is somewhere in the middle of the constraints, in this case we need to move the last constraint to this position
  37. uint32 last_constraint_idx = uint32(mConstraints.size() - 1);
  38. if (this_constraint_idx < last_constraint_idx)
  39. {
  40. Constraint *last_constraint = mConstraints[last_constraint_idx];
  41. last_constraint->mConstraintIndex = this_constraint_idx;
  42. mConstraints[this_constraint_idx] = last_constraint;
  43. }
  44. // Pop last constraint
  45. mConstraints.pop_back();
  46. }
  47. }
  48. Constraints ConstraintManager::GetConstraints() const
  49. {
  50. UniqueLock lock(mConstraintsMutex JPH_IF_ENABLE_ASSERTS(, mLockContext, EPhysicsLockTypes::ConstraintsList));
  51. Constraints copy = mConstraints;
  52. return copy;
  53. }
  54. void ConstraintManager::GetActiveConstraints(uint32 inStartConstraintIdx, uint32 inEndConstraintIdx, Constraint **outActiveConstraints, uint32 &outNumActiveConstraints) const
  55. {
  56. JPH_PROFILE_FUNCTION();
  57. JPH_ASSERT(inEndConstraintIdx <= mConstraints.size());
  58. uint32 num_active_constraints = 0;
  59. for (uint32 constraint_idx = inStartConstraintIdx; constraint_idx < inEndConstraintIdx; ++constraint_idx)
  60. {
  61. Constraint *c = mConstraints[constraint_idx];
  62. JPH_ASSERT(c->mConstraintIndex == constraint_idx);
  63. if (c->IsActive())
  64. {
  65. *(outActiveConstraints++) = c;
  66. num_active_constraints++;
  67. }
  68. }
  69. outNumActiveConstraints = num_active_constraints;
  70. }
  71. void ConstraintManager::sBuildIslands(Constraint **inActiveConstraints, uint32 inNumActiveConstraints, IslandBuilder &ioBuilder, BodyManager &inBodyManager)
  72. {
  73. JPH_PROFILE_FUNCTION();
  74. for (uint32 constraint_idx = 0; constraint_idx < inNumActiveConstraints; ++constraint_idx)
  75. {
  76. Constraint *c = inActiveConstraints[constraint_idx];
  77. c->BuildIslands(constraint_idx, ioBuilder, inBodyManager);
  78. }
  79. }
  80. void ConstraintManager::sSortConstraints(Constraint **inActiveConstraints, uint32 *inConstraintIdxBegin, uint32 *inConstraintIdxEnd)
  81. {
  82. JPH_PROFILE_FUNCTION();
  83. QuickSort(inConstraintIdxBegin, inConstraintIdxEnd, [inActiveConstraints](uint32 inLHS, uint32 inRHS) {
  84. const Constraint *lhs = inActiveConstraints[inLHS];
  85. const Constraint *rhs = inActiveConstraints[inRHS];
  86. if (lhs->GetConstraintPriority() != rhs->GetConstraintPriority())
  87. return lhs->GetConstraintPriority() < rhs->GetConstraintPriority();
  88. return lhs->mConstraintIndex < rhs->mConstraintIndex;
  89. });
  90. }
  91. void ConstraintManager::sSetupVelocityConstraints(Constraint **inActiveConstraints, uint32 inNumActiveConstraints, float inDeltaTime)
  92. {
  93. JPH_PROFILE_FUNCTION();
  94. for (Constraint **c = inActiveConstraints, **c_end = inActiveConstraints + inNumActiveConstraints; c < c_end; ++c)
  95. (*c)->SetupVelocityConstraint(inDeltaTime);
  96. }
  97. void ConstraintManager::sWarmStartVelocityConstraints(Constraint **inActiveConstraints, const uint32 *inConstraintIdxBegin, const uint32 *inConstraintIdxEnd, float inWarmStartImpulseRatio)
  98. {
  99. JPH_PROFILE_FUNCTION();
  100. for (const uint32 *constraint_idx = inConstraintIdxBegin; constraint_idx < inConstraintIdxEnd; ++constraint_idx)
  101. {
  102. Constraint *c = inActiveConstraints[*constraint_idx];
  103. c->WarmStartVelocityConstraint(inWarmStartImpulseRatio);
  104. }
  105. }
  106. void ConstraintManager::sWarmStartVelocityConstraints(Constraint **inActiveConstraints, const uint32 *inConstraintIdxBegin, const uint32 *inConstraintIdxEnd, float inWarmStartImpulseRatio, int &ioNumVelocitySteps)
  107. {
  108. JPH_PROFILE_FUNCTION();
  109. for (const uint32 *constraint_idx = inConstraintIdxBegin; constraint_idx < inConstraintIdxEnd; ++constraint_idx)
  110. {
  111. Constraint *c = inActiveConstraints[*constraint_idx];
  112. ioNumVelocitySteps = max(ioNumVelocitySteps, c->GetNumVelocityStepsOverride());
  113. c->WarmStartVelocityConstraint(inWarmStartImpulseRatio);
  114. }
  115. }
  116. bool ConstraintManager::sSolveVelocityConstraints(Constraint **inActiveConstraints, const uint32 *inConstraintIdxBegin, const uint32 *inConstraintIdxEnd, float inDeltaTime)
  117. {
  118. JPH_PROFILE_FUNCTION();
  119. bool any_impulse_applied = false;
  120. for (const uint32 *constraint_idx = inConstraintIdxBegin; constraint_idx < inConstraintIdxEnd; ++constraint_idx)
  121. {
  122. Constraint *c = inActiveConstraints[*constraint_idx];
  123. any_impulse_applied |= c->SolveVelocityConstraint(inDeltaTime);
  124. }
  125. return any_impulse_applied;
  126. }
  127. bool ConstraintManager::sSolvePositionConstraints(Constraint **inActiveConstraints, const uint32 *inConstraintIdxBegin, const uint32 *inConstraintIdxEnd, float inDeltaTime, float inBaumgarte)
  128. {
  129. JPH_PROFILE_FUNCTION();
  130. bool any_impulse_applied = false;
  131. for (const uint32 *constraint_idx = inConstraintIdxBegin; constraint_idx < inConstraintIdxEnd; ++constraint_idx)
  132. {
  133. Constraint *c = inActiveConstraints[*constraint_idx];
  134. any_impulse_applied |= c->SolvePositionConstraint(inDeltaTime, inBaumgarte);
  135. }
  136. return any_impulse_applied;
  137. }
  138. bool ConstraintManager::sSolvePositionConstraints(Constraint **inActiveConstraints, const uint32 *inConstraintIdxBegin, const uint32 *inConstraintIdxEnd, float inDeltaTime, float inBaumgarte, int &ioNumPositionSteps)
  139. {
  140. JPH_PROFILE_FUNCTION();
  141. bool any_impulse_applied = false;
  142. for (const uint32 *constraint_idx = inConstraintIdxBegin; constraint_idx < inConstraintIdxEnd; ++constraint_idx)
  143. {
  144. Constraint *c = inActiveConstraints[*constraint_idx];
  145. ioNumPositionSteps = max(ioNumPositionSteps, c->GetNumPositionStepsOverride());
  146. any_impulse_applied |= c->SolvePositionConstraint(inDeltaTime, inBaumgarte);
  147. }
  148. return any_impulse_applied;
  149. }
  150. #ifdef JPH_DEBUG_RENDERER
  151. void ConstraintManager::DrawConstraints(DebugRenderer *inRenderer) const
  152. {
  153. JPH_PROFILE_FUNCTION();
  154. UniqueLock lock(mConstraintsMutex JPH_IF_ENABLE_ASSERTS(, mLockContext, EPhysicsLockTypes::ConstraintsList));
  155. for (const Ref<Constraint> &c : mConstraints)
  156. c->DrawConstraint(inRenderer);
  157. }
  158. void ConstraintManager::DrawConstraintLimits(DebugRenderer *inRenderer) const
  159. {
  160. JPH_PROFILE_FUNCTION();
  161. UniqueLock lock(mConstraintsMutex JPH_IF_ENABLE_ASSERTS(, mLockContext, EPhysicsLockTypes::ConstraintsList));
  162. for (const Ref<Constraint> &c : mConstraints)
  163. c->DrawConstraintLimits(inRenderer);
  164. }
  165. void ConstraintManager::DrawConstraintReferenceFrame(DebugRenderer *inRenderer) const
  166. {
  167. JPH_PROFILE_FUNCTION();
  168. UniqueLock lock(mConstraintsMutex JPH_IF_ENABLE_ASSERTS(, mLockContext, EPhysicsLockTypes::ConstraintsList));
  169. for (const Ref<Constraint> &c : mConstraints)
  170. c->DrawConstraintReferenceFrame(inRenderer);
  171. }
  172. #endif // JPH_DEBUG_RENDERER
  173. void ConstraintManager::SaveState(StateRecorder &inStream, const StateRecorderFilter *inFilter) const
  174. {
  175. UniqueLock lock(mConstraintsMutex JPH_IF_ENABLE_ASSERTS(, mLockContext, EPhysicsLockTypes::ConstraintsList));
  176. // Write state of constraints
  177. if (inFilter != nullptr)
  178. {
  179. // Determine which constraints to save
  180. Array<Constraint *> constraints;
  181. constraints.reserve(mConstraints.size());
  182. for (const Ref<Constraint> &c : mConstraints)
  183. if (inFilter->ShouldSaveConstraint(*c))
  184. constraints.push_back(c);
  185. // Save them
  186. uint32 num_constraints = (uint32)constraints.size();
  187. inStream.Write(num_constraints);
  188. for (const Constraint *c : constraints)
  189. {
  190. inStream.Write(c->mConstraintIndex);
  191. c->SaveState(inStream);
  192. }
  193. }
  194. else
  195. {
  196. // Save all constraints
  197. uint32 num_constraints = (uint32)mConstraints.size();
  198. inStream.Write(num_constraints);
  199. for (const Ref<Constraint> &c : mConstraints)
  200. {
  201. inStream.Write(c->mConstraintIndex);
  202. c->SaveState(inStream);
  203. }
  204. }
  205. }
  206. bool ConstraintManager::RestoreState(StateRecorder &inStream)
  207. {
  208. UniqueLock lock(mConstraintsMutex JPH_IF_ENABLE_ASSERTS(, mLockContext, EPhysicsLockTypes::ConstraintsList));
  209. if (inStream.IsValidating())
  210. {
  211. // Read state of constraints
  212. uint32 num_constraints = (uint32)mConstraints.size(); // Initialize to current value for validation
  213. inStream.Read(num_constraints);
  214. if (num_constraints != mConstraints.size())
  215. {
  216. JPH_ASSERT(false, "Cannot handle adding/removing constraints");
  217. return false;
  218. }
  219. for (const Ref<Constraint> &c : mConstraints)
  220. {
  221. uint32 constraint_index = c->mConstraintIndex;
  222. inStream.Read(constraint_index);
  223. if (constraint_index != c->mConstraintIndex)
  224. {
  225. JPH_ASSERT(false, "Unexpected constraint index");
  226. return false;
  227. }
  228. c->RestoreState(inStream);
  229. }
  230. }
  231. else
  232. {
  233. // Not validating, use more flexible reading, read number of constraints
  234. uint32 num_constraints = 0;
  235. inStream.Read(num_constraints);
  236. for (uint32 idx = 0; idx < num_constraints; ++idx)
  237. {
  238. uint32 constraint_index;
  239. inStream.Read(constraint_index);
  240. if (mConstraints.size() <= constraint_index)
  241. {
  242. JPH_ASSERT(false, "Restoring state for non-existing constraint");
  243. return false;
  244. }
  245. mConstraints[constraint_index]->RestoreState(inStream);
  246. }
  247. }
  248. return true;
  249. }
  250. JPH_NAMESPACE_END