InstEmitFlowHelper.cs 14 KB

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  1. using ARMeilleure.Decoders;
  2. using ARMeilleure.IntermediateRepresentation;
  3. using ARMeilleure.State;
  4. using ARMeilleure.Translation;
  5. using ARMeilleure.Translation.PTC;
  6. using System;
  7. using static ARMeilleure.Instructions.InstEmitHelper;
  8. using static ARMeilleure.IntermediateRepresentation.OperandHelper;
  9. namespace ARMeilleure.Instructions
  10. {
  11. static class InstEmitFlowHelper
  12. {
  13. public const ulong CallFlag = 1;
  14. public static void EmitCondBranch(ArmEmitterContext context, Operand target, Condition cond)
  15. {
  16. if (cond != Condition.Al)
  17. {
  18. context.BranchIfTrue(target, GetCondTrue(context, cond));
  19. }
  20. else
  21. {
  22. context.Branch(target);
  23. }
  24. }
  25. public static Operand GetCondTrue(ArmEmitterContext context, Condition condition)
  26. {
  27. Operand cmpResult = context.TryGetComparisonResult(condition);
  28. if (cmpResult != null)
  29. {
  30. return cmpResult;
  31. }
  32. Operand value = Const(1);
  33. Operand Inverse(Operand val)
  34. {
  35. return context.BitwiseExclusiveOr(val, Const(1));
  36. }
  37. switch (condition)
  38. {
  39. case Condition.Eq:
  40. value = GetFlag(PState.ZFlag);
  41. break;
  42. case Condition.Ne:
  43. value = Inverse(GetFlag(PState.ZFlag));
  44. break;
  45. case Condition.GeUn:
  46. value = GetFlag(PState.CFlag);
  47. break;
  48. case Condition.LtUn:
  49. value = Inverse(GetFlag(PState.CFlag));
  50. break;
  51. case Condition.Mi:
  52. value = GetFlag(PState.NFlag);
  53. break;
  54. case Condition.Pl:
  55. value = Inverse(GetFlag(PState.NFlag));
  56. break;
  57. case Condition.Vs:
  58. value = GetFlag(PState.VFlag);
  59. break;
  60. case Condition.Vc:
  61. value = Inverse(GetFlag(PState.VFlag));
  62. break;
  63. case Condition.GtUn:
  64. {
  65. Operand c = GetFlag(PState.CFlag);
  66. Operand z = GetFlag(PState.ZFlag);
  67. value = context.BitwiseAnd(c, Inverse(z));
  68. break;
  69. }
  70. case Condition.LeUn:
  71. {
  72. Operand c = GetFlag(PState.CFlag);
  73. Operand z = GetFlag(PState.ZFlag);
  74. value = context.BitwiseOr(Inverse(c), z);
  75. break;
  76. }
  77. case Condition.Ge:
  78. {
  79. Operand n = GetFlag(PState.NFlag);
  80. Operand v = GetFlag(PState.VFlag);
  81. value = context.ICompareEqual(n, v);
  82. break;
  83. }
  84. case Condition.Lt:
  85. {
  86. Operand n = GetFlag(PState.NFlag);
  87. Operand v = GetFlag(PState.VFlag);
  88. value = context.ICompareNotEqual(n, v);
  89. break;
  90. }
  91. case Condition.Gt:
  92. {
  93. Operand n = GetFlag(PState.NFlag);
  94. Operand z = GetFlag(PState.ZFlag);
  95. Operand v = GetFlag(PState.VFlag);
  96. value = context.BitwiseAnd(Inverse(z), context.ICompareEqual(n, v));
  97. break;
  98. }
  99. case Condition.Le:
  100. {
  101. Operand n = GetFlag(PState.NFlag);
  102. Operand z = GetFlag(PState.ZFlag);
  103. Operand v = GetFlag(PState.VFlag);
  104. value = context.BitwiseOr(z, context.ICompareNotEqual(n, v));
  105. break;
  106. }
  107. }
  108. return value;
  109. }
  110. public static void EmitCall(ArmEmitterContext context, ulong immediate)
  111. {
  112. bool isRecursive = immediate == (ulong)context.BaseAddress;
  113. EmitJumpTableBranch(context, Const(immediate), isRecursive);
  114. }
  115. private static void EmitNativeCall(ArmEmitterContext context, Operand nativeContextPtr, Operand funcAddr, bool isJump = false)
  116. {
  117. context.StoreToContext();
  118. if (isJump)
  119. {
  120. context.Tailcall(funcAddr, nativeContextPtr);
  121. }
  122. else
  123. {
  124. OpCode op = context.CurrOp;
  125. Operand returnAddress = context.Call(funcAddr, OperandType.I64, nativeContextPtr);
  126. context.LoadFromContext();
  127. // Note: The return value of a translated function is always an Int64 with the address execution has
  128. // returned to. We expect this address to be immediately after the current instruction, if it isn't we
  129. // keep returning until we reach the dispatcher.
  130. Operand nextAddr = Const((long)op.Address + op.OpCodeSizeInBytes);
  131. // Try to continue within this block.
  132. // If the return address isn't to our next instruction, we need to return so the JIT can figure out
  133. // what to do.
  134. Operand lblContinue = context.GetLabel(nextAddr.Value);
  135. // We need to clear out the call flag for the return address before comparing it.
  136. context.BranchIf(lblContinue, context.BitwiseAnd(returnAddress, Const(~CallFlag)), nextAddr, Comparison.Equal, BasicBlockFrequency.Cold);
  137. context.Return(returnAddress);
  138. }
  139. }
  140. private static void EmitNativeCall(ArmEmitterContext context, Operand funcAddr, bool isJump = false)
  141. {
  142. EmitNativeCall(context, context.LoadArgument(OperandType.I64, 0), funcAddr, isJump);
  143. }
  144. public static void EmitVirtualCall(ArmEmitterContext context, Operand target)
  145. {
  146. EmitVirtualCallOrJump(context, target, isJump: false);
  147. }
  148. public static void EmitVirtualJump(ArmEmitterContext context, Operand target, bool isReturn)
  149. {
  150. EmitVirtualCallOrJump(context, target, isJump: true, isReturn: isReturn);
  151. }
  152. private static void EmitVirtualCallOrJump(ArmEmitterContext context, Operand target, bool isJump, bool isReturn = false)
  153. {
  154. if (isReturn)
  155. {
  156. context.Return(target);
  157. }
  158. else
  159. {
  160. EmitJumpTableBranch(context, target, isJump);
  161. }
  162. }
  163. public static void EmitTailContinue(ArmEmitterContext context, Operand address, bool allowRejit = false)
  164. {
  165. // Left option here as it may be useful if we need to return to managed rather than tail call in future.
  166. // (eg. for debug)
  167. bool useTailContinue = true;
  168. if (useTailContinue)
  169. {
  170. if (context.HighCq)
  171. {
  172. // If we're doing a tail continue in HighCq, reserve a space in the jump table to avoid calling back
  173. // to the translator. This will always try to get a HighCq version of our continue target as well.
  174. EmitJumpTableBranch(context, address, true);
  175. }
  176. else
  177. {
  178. if (allowRejit)
  179. {
  180. address = context.BitwiseOr(address, Const(CallFlag));
  181. }
  182. Operand fallbackAddr = context.Call(typeof(NativeInterface).GetMethod(nameof(NativeInterface.GetFunctionAddress)), address);
  183. EmitNativeCall(context, fallbackAddr, true);
  184. }
  185. }
  186. else
  187. {
  188. context.Return(address);
  189. }
  190. }
  191. private static void EmitNativeCallWithGuestAddress(ArmEmitterContext context, Operand funcAddr, Operand guestAddress, bool isJump)
  192. {
  193. Operand nativeContextPtr = context.LoadArgument(OperandType.I64, 0);
  194. context.Store(context.Add(nativeContextPtr, Const((long)NativeContext.GetCallAddressOffset())), guestAddress);
  195. EmitNativeCall(context, nativeContextPtr, funcAddr, isJump);
  196. }
  197. private static void EmitBranchFallback(ArmEmitterContext context, Operand address, bool isJump)
  198. {
  199. address = context.BitwiseOr(address, Const(address.Type, (long)CallFlag)); // Set call flag.
  200. Operand fallbackAddr = context.Call(typeof(NativeInterface).GetMethod(nameof(NativeInterface.GetFunctionAddress)), address);
  201. EmitNativeCall(context, fallbackAddr, isJump);
  202. }
  203. public static void EmitDynamicTableCall(ArmEmitterContext context, Operand tableAddress, Operand address, bool isJump)
  204. {
  205. // Loop over elements of the dynamic table. Unrolled loop.
  206. Operand endLabel = Label();
  207. Operand fallbackLabel = Label();
  208. void EmitTableEntry(Operand entrySkipLabel)
  209. {
  210. // Try to take this entry in the table if its guest address equals 0.
  211. Operand gotResult = context.CompareAndSwap(tableAddress, Const(0L), address);
  212. // Is the address ours? (either taken via CompareAndSwap (0), or what was already here)
  213. context.BranchIfFalse(entrySkipLabel,
  214. context.BitwiseOr(
  215. context.ICompareEqual(gotResult, address),
  216. context.ICompareEqual(gotResult, Const(0L)))
  217. );
  218. // It's ours, so what function is it pointing to?
  219. Operand targetFunctionPtr = context.Add(tableAddress, Const(8L));
  220. Operand targetFunction = context.Load(OperandType.I64, targetFunctionPtr);
  221. // Call the function.
  222. // We pass in the entry address as the guest address, as the entry may need to be updated by the
  223. // indirect call stub.
  224. EmitNativeCallWithGuestAddress(context, targetFunction, tableAddress, isJump);
  225. context.Branch(endLabel);
  226. }
  227. // Currently this uses a size of 1, as higher values inflate code size for no real benefit.
  228. for (int i = 0; i < JumpTable.DynamicTableElems; i++)
  229. {
  230. if (i == JumpTable.DynamicTableElems - 1)
  231. {
  232. // If this is the last entry, avoid emitting the additional label and add.
  233. EmitTableEntry(fallbackLabel);
  234. }
  235. else
  236. {
  237. Operand nextLabel = Label();
  238. EmitTableEntry(nextLabel);
  239. context.MarkLabel(nextLabel);
  240. // Move to the next table entry.
  241. tableAddress = context.Add(tableAddress, Const((long)JumpTable.JumpTableStride));
  242. }
  243. }
  244. context.MarkLabel(fallbackLabel);
  245. EmitBranchFallback(context, address, isJump);
  246. context.MarkLabel(endLabel);
  247. }
  248. public static void EmitJumpTableBranch(ArmEmitterContext context, Operand address, bool isJump = false)
  249. {
  250. if (address.Type == OperandType.I32)
  251. {
  252. address = context.ZeroExtend32(OperandType.I64, address);
  253. }
  254. // TODO: Constant folding. Indirect calls are slower in the best case and emit more code so we want to
  255. // avoid them when possible.
  256. bool isConst = address.Kind == OperandKind.Constant;
  257. long constAddr = (long)address.Value;
  258. if (!context.HighCq)
  259. {
  260. // Don't emit indirect calls or jumps if we're compiling in lowCq mode. This avoids wasting space on the
  261. // jump and indirect tables. Just ask the translator for the function address.
  262. EmitBranchFallback(context, address, isJump);
  263. }
  264. else if (!isConst)
  265. {
  266. // Virtual branch/call - store first used addresses on a small table for fast lookup.
  267. int entry = context.JumpTable.ReserveDynamicEntry(isJump);
  268. int jumpOffset = entry * JumpTable.JumpTableStride * JumpTable.DynamicTableElems;
  269. Operand dynTablePtr;
  270. if (Ptc.State == PtcState.Disabled)
  271. {
  272. dynTablePtr = Const(context.JumpTable.DynamicPointer.ToInt64() + jumpOffset);
  273. }
  274. else
  275. {
  276. dynTablePtr = Const(context.JumpTable.DynamicPointer.ToInt64(), true, Ptc.DynamicPointerIndex);
  277. dynTablePtr = context.Add(dynTablePtr, Const((long)jumpOffset));
  278. }
  279. EmitDynamicTableCall(context, dynTablePtr, address, isJump);
  280. }
  281. else
  282. {
  283. int entry = context.JumpTable.ReserveTableEntry(context.BaseAddress & (~3L), constAddr, isJump);
  284. int jumpOffset = entry * JumpTable.JumpTableStride + 8; // Offset directly to the host address.
  285. Operand tableEntryPtr;
  286. if (Ptc.State == PtcState.Disabled)
  287. {
  288. tableEntryPtr = Const(context.JumpTable.JumpPointer.ToInt64() + jumpOffset);
  289. }
  290. else
  291. {
  292. tableEntryPtr = Const(context.JumpTable.JumpPointer.ToInt64(), true, Ptc.JumpPointerIndex);
  293. tableEntryPtr = context.Add(tableEntryPtr, Const((long)jumpOffset));
  294. }
  295. Operand funcAddr = context.Load(OperandType.I64, tableEntryPtr);
  296. // Call the function directly. If it's not present yet, this will call the direct call stub.
  297. EmitNativeCallWithGuestAddress(context, funcAddr, address, isJump);
  298. }
  299. }
  300. }
  301. }