mirror of
https://github.com/ryujinx-mirror/ryujinx.git
synced 2024-11-25 19:45:13 +00:00
Generalize tail continues (#1298)
* Generalize tail continues * Fix DecodeBasicBlock `Next` and `Branch` would be null, which is not the state expected by the branch instructions. They end up branching or falling into a block which is never populated by the `Translator`. This causes an assert to be fired when building the CFG. * Clean up Decode overloads * Do not synchronize when branching into exit block If we're branching into an exit block, that exit block will tail continue into another translation which already has a synchronization. * Remove A32 predicate tail continue If `block` is not an exit block then the `block.Next` must exist (as per the last instruction of `block`). * Throw if decoded 0 blocks Address gdkchan's feedback * Rebuild block list instead of setting to null Address gdkchan's feedback
This commit is contained in:
parent
5e724cf24e
commit
2421186d97
9 changed files with 178 additions and 240 deletions
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@ -12,6 +12,7 @@ namespace ARMeilleure.Decoders
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public Block Branch { get; set; }
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public bool TailCall { get; set; }
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public bool Exit { get; set; }
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public List<OpCode> OpCodes { get; private set; }
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@ -29,7 +30,7 @@ namespace ARMeilleure.Decoders
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{
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int splitIndex = BinarySearch(OpCodes, rightBlock.Address);
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if ((ulong)OpCodes[splitIndex].Address < rightBlock.Address)
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if (OpCodes[splitIndex].Address < rightBlock.Address)
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{
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splitIndex++;
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}
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@ -17,16 +17,7 @@ namespace ARMeilleure.Decoders
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// For lower code quality translation, we set a lower limit since we're blocking execution.
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private const int MaxInstsPerFunctionLowCq = 500;
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public static Block[] DecodeBasicBlock(IMemoryManager memory, ulong address, ExecutionMode mode)
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{
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Block block = new Block(address);
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FillBlock(memory, mode, block, ulong.MaxValue);
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return new Block[] { block };
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}
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public static Block[] DecodeFunction(IMemoryManager memory, ulong address, ExecutionMode mode, bool highCq)
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public static Block[] Decode(IMemoryManager memory, ulong address, ExecutionMode mode, bool highCq, bool singleBlock)
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{
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List<Block> blocks = new List<Block>();
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@ -42,13 +33,14 @@ namespace ARMeilleure.Decoders
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{
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if (!visited.TryGetValue(blkAddress, out Block block))
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{
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if (opsCount > instructionLimit || !memory.IsMapped(blkAddress))
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{
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return null;
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}
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block = new Block(blkAddress);
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if ((singleBlock && visited.Count >= 1) || opsCount > instructionLimit || !memory.IsMapped(blkAddress))
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{
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block.Exit = true;
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block.EndAddress = blkAddress;
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}
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workQueue.Enqueue(block);
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visited.Add(blkAddress, block);
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@ -71,6 +63,8 @@ namespace ARMeilleure.Decoders
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throw new InvalidOperationException("Found duplicate block address on the list.");
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}
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currBlock.Exit = false;
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nBlock.Split(currBlock);
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blocks.Insert(nBlkIndex + 1, currBlock);
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@ -78,47 +72,50 @@ namespace ARMeilleure.Decoders
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continue;
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}
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// If we have a block after the current one, set the limit address.
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ulong limitAddress = ulong.MaxValue;
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if (nBlkIndex != blocks.Count)
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if (!currBlock.Exit)
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{
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Block nBlock = blocks[nBlkIndex];
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// If we have a block after the current one, set the limit address.
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ulong limitAddress = ulong.MaxValue;
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int nextIndex = nBlkIndex + 1;
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if (nBlock.Address < currBlock.Address && nextIndex < blocks.Count)
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if (nBlkIndex != blocks.Count)
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{
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limitAddress = blocks[nextIndex].Address;
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}
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else if (nBlock.Address > currBlock.Address)
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{
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limitAddress = blocks[nBlkIndex].Address;
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}
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}
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Block nBlock = blocks[nBlkIndex];
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FillBlock(memory, mode, currBlock, limitAddress);
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int nextIndex = nBlkIndex + 1;
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opsCount += currBlock.OpCodes.Count;
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if (currBlock.OpCodes.Count != 0)
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{
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// Set child blocks. "Branch" is the block the branch instruction
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// points to (when taken), "Next" is the block at the next address,
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// executed when the branch is not taken. For Unconditional Branches
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// (except BL/BLR that are sub calls) or end of executable, Next is null.
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OpCode lastOp = currBlock.GetLastOp();
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bool isCall = IsCall(lastOp);
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if (lastOp is IOpCodeBImm op && !isCall)
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{
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currBlock.Branch = GetBlock((ulong)op.Immediate);
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if (nBlock.Address < currBlock.Address && nextIndex < blocks.Count)
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{
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limitAddress = blocks[nextIndex].Address;
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}
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else if (nBlock.Address > currBlock.Address)
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{
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limitAddress = blocks[nBlkIndex].Address;
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}
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}
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if (!IsUnconditionalBranch(lastOp) || isCall)
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FillBlock(memory, mode, currBlock, limitAddress);
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opsCount += currBlock.OpCodes.Count;
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if (currBlock.OpCodes.Count != 0)
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{
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currBlock.Next = GetBlock(currBlock.EndAddress);
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// Set child blocks. "Branch" is the block the branch instruction
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// points to (when taken), "Next" is the block at the next address,
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// executed when the branch is not taken. For Unconditional Branches
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// (except BL/BLR that are sub calls) or end of executable, Next is null.
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OpCode lastOp = currBlock.GetLastOp();
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bool isCall = IsCall(lastOp);
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if (lastOp is IOpCodeBImm op && !isCall)
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{
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currBlock.Branch = GetBlock((ulong)op.Immediate);
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}
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if (!IsUnconditionalBranch(lastOp) || isCall)
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{
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currBlock.Next = GetBlock(currBlock.EndAddress);
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}
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}
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}
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@ -135,7 +132,15 @@ namespace ARMeilleure.Decoders
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}
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}
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TailCallRemover.RunPass(address, blocks);
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if (blocks.Count == 0)
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{
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throw new InvalidOperationException($"Decoded 0 blocks. Entry point = 0x{address:X}.");
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}
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if (!singleBlock)
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{
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return TailCallRemover.RunPass(address, blocks);
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}
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return blocks.ToArray();
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}
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@ -1,16 +1,15 @@
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using ARMeilleure.Decoders;
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using System;
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using System;
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using System.Collections.Generic;
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namespace ARMeilleure.Decoders.Optimizations
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{
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static class TailCallRemover
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{
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public static void RunPass(ulong entryAddress, List<Block> blocks)
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public static Block[] RunPass(ulong entryAddress, List<Block> blocks)
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{
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// Detect tail calls:
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// - Assume this function spans the space covered by contiguous code blocks surrounding the entry address.
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// - Unconditional jump to an area outside this contiguous region will be treated as a tail call.
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// - A jump to an area outside this contiguous region will be treated as an exit block.
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// - Include a small allowance for jumps outside the contiguous range.
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if (!Decoder.BinarySearch(blocks, entryAddress, out int entryBlockId))
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@ -19,57 +18,72 @@ namespace ARMeilleure.Decoders.Optimizations
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}
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const ulong allowance = 4;
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Block entryBlock = blocks[entryBlockId];
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int startBlockIndex = entryBlockId;
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Block startBlock = entryBlock;
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int endBlockIndex = entryBlockId;
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Block endBlock = entryBlock;
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Block endBlock = entryBlock;
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int startBlockIndex = entryBlockId;
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int endBlockIndex = entryBlockId;
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for (int i = entryBlockId + 1; i < blocks.Count; i++) // Search forwards.
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{
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Block block = blocks[i];
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if (endBlock.EndAddress < block.Address - allowance)
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{
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break; // End of contiguous function.
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}
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endBlock = block;
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endBlock = block;
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endBlockIndex = i;
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}
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for (int i = entryBlockId - 1; i >= 0; i--) // Search backwards.
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{
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Block block = blocks[i];
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if (startBlock.Address > block.EndAddress + allowance)
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{
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break; // End of contiguous function.
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}
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startBlock = block;
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startBlock = block;
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startBlockIndex = i;
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}
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if (startBlockIndex == 0 && endBlockIndex == blocks.Count - 1)
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{
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return; // Nothing to do here.
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return blocks.ToArray(); // Nothing to do here.
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}
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// Replace all branches to blocks outside the range with null, and force a tail call.
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// Mark branches outside of contiguous region as exit blocks.
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for (int i = startBlockIndex; i <= endBlockIndex; i++)
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{
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Block block = blocks[i];
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if (block.Branch != null && (block.Branch.Address > endBlock.EndAddress || block.Branch.EndAddress < startBlock.Address))
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{
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block.Branch = null;
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block.TailCall = true;
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block.Branch.Exit = true;
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block.Branch.TailCall = true;
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}
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}
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// Finally, delete all blocks outside the contiguous range.
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var newBlocks = new List<Block>(blocks.Count);
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blocks.RemoveRange(endBlockIndex + 1, (blocks.Count - endBlockIndex) - 1);
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blocks.RemoveRange(0, startBlockIndex);
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// Finally, rebuild decoded block list, ignoring blocks outside the contiguous range.
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for (int i = 0; i < blocks.Count; i++)
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{
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Block block = blocks[i];
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if (block.Exit || (i >= startBlockIndex && i <= endBlockIndex))
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{
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newBlocks.Add(block);
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}
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}
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return newBlocks.ToArray();
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}
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}
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}
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@ -27,11 +27,6 @@ namespace ARMeilleure.Instructions
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context.Call(typeof(NativeInterface).GetMethod(name), Const(op.Address), Const(op.Id));
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context.LoadFromContext();
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if (context.CurrBlock.Next == null)
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{
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EmitTailContinue(context, Const(op.Address + 4));
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}
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}
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public static void Und(ArmEmitterContext context)
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context.Call(typeof(NativeInterface).GetMethod(name), Const(op.Address), Const(op.RawOpCode));
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context.LoadFromContext();
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if (context.CurrBlock.Next == null)
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{
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EmitTailContinue(context, Const(op.Address + 4));
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}
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}
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}
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}
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@ -27,11 +27,6 @@ namespace ARMeilleure.Instructions
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context.Call(typeof(NativeInterface).GetMethod(name), Const(op.Address), Const(op.Id));
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context.LoadFromContext();
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if (context.CurrBlock.Next == null)
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{
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EmitTailContinue(context, Const(op.Address + 4));
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}
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}
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}
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}
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@ -15,14 +15,7 @@ namespace ARMeilleure.Instructions
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{
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OpCodeBImmAl op = (OpCodeBImmAl)context.CurrOp;
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if (context.CurrBlock.Branch != null)
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{
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context.Branch(context.GetLabel((ulong)op.Immediate));
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}
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else
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{
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EmitTailContinue(context, Const(op.Immediate), context.CurrBlock.TailCall);
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}
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context.Branch(context.GetLabel((ulong)op.Immediate));
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}
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public static void B_Cond(ArmEmitterContext context)
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@ -92,69 +85,22 @@ namespace ARMeilleure.Instructions
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{
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OpCodeBImm op = (OpCodeBImm)context.CurrOp;
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if (context.CurrBlock.Branch != null)
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{
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EmitCondBranch(context, context.GetLabel((ulong)op.Immediate), cond);
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if (context.CurrBlock.Next == null)
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{
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EmitTailContinue(context, Const(op.Address + 4));
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}
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}
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else
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{
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Operand lblTaken = Label();
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EmitCondBranch(context, lblTaken, cond);
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EmitTailContinue(context, Const(op.Address + 4));
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context.MarkLabel(lblTaken);
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EmitTailContinue(context, Const(op.Immediate));
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}
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EmitCondBranch(context, context.GetLabel((ulong)op.Immediate), cond);
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}
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private static void EmitBranch(ArmEmitterContext context, Operand value, bool onNotZero)
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{
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OpCodeBImm op = (OpCodeBImm)context.CurrOp;
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if (context.CurrBlock.Branch != null)
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Operand lblTarget = context.GetLabel((ulong)op.Immediate);
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if (onNotZero)
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{
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Operand lblTarget = context.GetLabel((ulong)op.Immediate);
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if (onNotZero)
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{
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context.BranchIfTrue(lblTarget, value);
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}
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else
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{
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context.BranchIfFalse(lblTarget, value);
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}
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if (context.CurrBlock.Next == null)
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{
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EmitTailContinue(context, Const(op.Address + 4));
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}
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context.BranchIfTrue(lblTarget, value);
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}
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else
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{
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Operand lblTaken = Label();
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if (onNotZero)
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{
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context.BranchIfTrue(lblTaken, value);
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}
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else
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{
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context.BranchIfFalse(lblTaken, value);
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}
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EmitTailContinue(context, Const(op.Address + 4));
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context.MarkLabel(lblTaken);
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EmitTailContinue(context, Const(op.Immediate));
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context.BranchIfFalse(lblTarget, value);
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}
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}
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}
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@ -15,14 +15,7 @@ namespace ARMeilleure.Instructions
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{
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IOpCode32BImm op = (IOpCode32BImm)context.CurrOp;
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if (context.CurrBlock.Branch != null)
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{
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context.Branch(context.GetLabel((ulong)op.Immediate));
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}
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else
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{
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EmitTailContinue(context, Const(op.Immediate));
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}
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context.Branch(context.GetLabel((ulong)op.Immediate));
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}
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public static void Bl(ArmEmitterContext context)
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@ -150,17 +150,32 @@ namespace ARMeilleure.Instructions
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private static void EmitNativeCall(ArmEmitterContext context, Operand nativeContextPtr, Operand funcAddr, bool isJump = false)
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{
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context.StoreToContext();
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Operand returnAddress;
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if (isJump)
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{
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context.Tailcall(funcAddr, nativeContextPtr);
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}
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else
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{
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returnAddress = context.Call(funcAddr, OperandType.I64, nativeContextPtr);
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OpCode op = context.CurrOp;
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Operand returnAddress = context.Call(funcAddr, OperandType.I64, nativeContextPtr);
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context.LoadFromContext();
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EmitContinueOrReturnCheck(context, returnAddress);
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// Note: The return value of a translated function is always an Int64 with the
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// address execution has returned to. We expect this address to be immediately after the
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// current instruction, if it isn't we keep returning until we reach the dispatcher.
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Operand nextAddr = Const((long)op.Address + op.OpCodeSizeInBytes);
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// Try to continue within this block.
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// If the return address isn't to our next instruction, we need to return so the JIT can figure out what to do.
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Operand lblContinue = context.GetLabel(nextAddr.Value);
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// We need to clear out the call flag for the return address before comparing it.
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context.BranchIfTrue(lblContinue, context.ICompareEqual(context.BitwiseAnd(returnAddress, Const(~CallFlag)), nextAddr));
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context.Return(returnAddress);
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}
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}
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@ -191,46 +206,18 @@ namespace ARMeilleure.Instructions
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}
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}
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private static void EmitContinueOrReturnCheck(ArmEmitterContext context, Operand returnAddress)
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{
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// Note: The return value of a translated function is always an Int64 with the
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// address execution has returned to. We expect this address to be immediately after the
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// current instruction, if it isn't we keep returning until we reach the dispatcher.
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Operand nextAddr = Const(GetNextOpAddress(context.CurrOp));
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// Try to continue within this block.
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// If the return address isn't to our next instruction, we need to return so the JIT can figure out what to do.
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Operand lblContinue = Label();
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// We need to clear out the call flag for the return address before comparing it.
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context.BranchIfTrue(lblContinue, context.ICompareEqual(context.BitwiseAnd(returnAddress, Const(~CallFlag)), nextAddr));
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context.Return(returnAddress);
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context.MarkLabel(lblContinue);
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if (context.CurrBlock.Next == null)
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{
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// No code following this instruction, try and find the next block and jump to it.
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EmitTailContinue(context, nextAddr);
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}
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}
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private static ulong GetNextOpAddress(OpCode op)
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{
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return op.Address + (ulong)op.OpCodeSizeInBytes;
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}
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|
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public static void EmitTailContinue(ArmEmitterContext context, Operand address, bool allowRejit = false)
|
||||
{
|
||||
bool useTailContinue = true; // Left option here as it may be useful if we need to return to managed rather than tail call in future. (eg. for debug)
|
||||
// Left option here as it may be useful if we need to return to managed rather than tail call in future.
|
||||
// (eg. for debug)
|
||||
bool useTailContinue = true;
|
||||
|
||||
if (useTailContinue)
|
||||
{
|
||||
if (context.HighCq)
|
||||
{
|
||||
// If we're doing a tail continue in HighCq, reserve a space in the jump table to avoid calling back to the translator.
|
||||
// This will always try to get a HighCq version of our continue target as well.
|
||||
// If we're doing a tail continue in HighCq, reserve a space in the jump table to avoid calling back
|
||||
// to the translator. This will always try to get a HighCq version of our continue target as well.
|
||||
EmitJumpTableBranch(context, address, true);
|
||||
}
|
||||
else
|
||||
|
@ -263,6 +250,7 @@ namespace ARMeilleure.Instructions
|
|||
{
|
||||
address = context.BitwiseOr(address, Const(address.Type, (long)CallFlag)); // Set call flag.
|
||||
Operand fallbackAddr = context.Call(typeof(NativeInterface).GetMethod(nameof(NativeInterface.GetFunctionAddress)), address);
|
||||
|
||||
EmitNativeCall(context, fallbackAddr, isJump);
|
||||
}
|
||||
|
||||
|
@ -273,39 +261,48 @@ namespace ARMeilleure.Instructions
|
|||
Operand endLabel = Label();
|
||||
Operand fallbackLabel = Label();
|
||||
|
||||
Action<Operand> emitTableEntry = (Operand entrySkipLabel) =>
|
||||
void EmitTableEntry(Operand entrySkipLabel)
|
||||
{
|
||||
// Try to take this entry in the table if its guest address equals 0.
|
||||
Operand gotResult = context.CompareAndSwap(tableAddress, Const(0L), address);
|
||||
|
||||
// Is the address ours? (either taken via CompareAndSwap (0), or what was already here)
|
||||
context.BranchIfFalse(entrySkipLabel, context.BitwiseOr(context.ICompareEqual(gotResult, address), context.ICompareEqual(gotResult, Const(0L))));
|
||||
context.BranchIfFalse(entrySkipLabel,
|
||||
context.BitwiseOr(
|
||||
context.ICompareEqual(gotResult, address),
|
||||
context.ICompareEqual(gotResult, Const(0L)))
|
||||
);
|
||||
|
||||
// It's ours, so what function is it pointing to?
|
||||
Operand targetFunctionPtr = context.Add(tableAddress, Const(8L));
|
||||
Operand targetFunction = context.Load(OperandType.I64, targetFunctionPtr);
|
||||
|
||||
// Call the function.
|
||||
// We pass in the entry address as the guest address, as the entry may need to be updated by the indirect call stub.
|
||||
// We pass in the entry address as the guest address, as the entry may need to be updated by the
|
||||
// indirect call stub.
|
||||
EmitNativeCallWithGuestAddress(context, targetFunction, tableAddress, isJump);
|
||||
|
||||
context.Branch(endLabel);
|
||||
};
|
||||
}
|
||||
|
||||
// Currently this uses a size of 1, as higher values inflate code size for no real benefit.
|
||||
for (int i = 0; i < JumpTable.DynamicTableElems; i++)
|
||||
{
|
||||
if (i == JumpTable.DynamicTableElems - 1)
|
||||
{
|
||||
emitTableEntry(fallbackLabel); // If this is the last entry, avoid emitting the additional label and add.
|
||||
}
|
||||
// If this is the last entry, avoid emitting the additional label and add.
|
||||
EmitTableEntry(fallbackLabel);
|
||||
}
|
||||
else
|
||||
{
|
||||
Operand nextLabel = Label();
|
||||
|
||||
emitTableEntry(nextLabel);
|
||||
EmitTableEntry(nextLabel);
|
||||
|
||||
context.MarkLabel(nextLabel);
|
||||
tableAddress = context.Add(tableAddress, Const((long)JumpTable.JumpTableStride)); // Move to the next table entry.
|
||||
|
||||
// Move to the next table entry.
|
||||
tableAddress = context.Add(tableAddress, Const((long)JumpTable.JumpTableStride));
|
||||
}
|
||||
}
|
||||
|
||||
|
@ -323,16 +320,15 @@ namespace ARMeilleure.Instructions
|
|||
address = context.ZeroExtend32(OperandType.I64, address);
|
||||
}
|
||||
|
||||
// TODO: Constant folding. Indirect calls are slower in the best case and emit more code so we want to avoid them when possible.
|
||||
// TODO: Constant folding. Indirect calls are slower in the best case and emit more code so we want to
|
||||
// avoid them when possible.
|
||||
bool isConst = address.Kind == OperandKind.Constant;
|
||||
long constAddr = (long)address.Value;
|
||||
|
||||
if (!context.HighCq)
|
||||
{
|
||||
// Don't emit indirect calls or jumps if we're compiling in lowCq mode.
|
||||
// This avoids wasting space on the jump and indirect tables.
|
||||
// Just ask the translator for the function address.
|
||||
|
||||
// Don't emit indirect calls or jumps if we're compiling in lowCq mode. This avoids wasting space on the
|
||||
// jump and indirect tables. Just ask the translator for the function address.
|
||||
EmitBranchFallback(context, address, isJump);
|
||||
}
|
||||
else if (!isConst)
|
||||
|
@ -376,7 +372,8 @@ namespace ARMeilleure.Instructions
|
|||
|
||||
Operand funcAddr = context.Load(OperandType.I64, tableEntryPtr);
|
||||
|
||||
EmitNativeCallWithGuestAddress(context, funcAddr, address, isJump); // Call the function directly. If it's not present yet, this will call the direct call stub.
|
||||
// Call the function directly. If it's not present yet, this will call the direct call stub.
|
||||
EmitNativeCallWithGuestAddress(context, funcAddr, address, isJump);
|
||||
}
|
||||
}
|
||||
}
|
||||
|
|
|
@ -183,7 +183,7 @@ namespace ARMeilleure.Translation
|
|||
|
||||
Logger.StartPass(PassName.Decoding);
|
||||
|
||||
Block[] blocks = Decoder.DecodeFunction(memory, address, mode, highCq);
|
||||
Block[] blocks = Decoder.Decode(memory, address, mode, highCq, singleBlock: false);
|
||||
|
||||
Logger.EndPass(PassName.Decoding);
|
||||
|
||||
|
@ -242,49 +242,46 @@ namespace ARMeilleure.Translation
|
|||
|
||||
context.MarkLabel(context.GetLabel(block.Address));
|
||||
|
||||
for (int opcIndex = 0; opcIndex < block.OpCodes.Count; opcIndex++)
|
||||
if (block.Exit)
|
||||
{
|
||||
OpCode opCode = block.OpCodes[opcIndex];
|
||||
|
||||
context.CurrOp = opCode;
|
||||
|
||||
bool isLastOp = opcIndex == block.OpCodes.Count - 1;
|
||||
|
||||
if (isLastOp && block.Branch != null && block.Branch.Address <= block.Address)
|
||||
InstEmitFlowHelper.EmitTailContinue(context, Const(block.Address), block.TailCall);
|
||||
}
|
||||
else
|
||||
{
|
||||
for (int opcIndex = 0; opcIndex < block.OpCodes.Count; opcIndex++)
|
||||
{
|
||||
EmitSynchronization(context);
|
||||
}
|
||||
OpCode opCode = block.OpCodes[opcIndex];
|
||||
|
||||
Operand lblPredicateSkip = null;
|
||||
context.CurrOp = opCode;
|
||||
|
||||
if (opCode is OpCode32 op && op.Cond < Condition.Al)
|
||||
{
|
||||
lblPredicateSkip = Label();
|
||||
bool isLastOp = opcIndex == block.OpCodes.Count - 1;
|
||||
|
||||
InstEmitFlowHelper.EmitCondBranch(context, lblPredicateSkip, op.Cond.Invert());
|
||||
}
|
||||
|
||||
if (opCode.Instruction.Emitter != null)
|
||||
{
|
||||
opCode.Instruction.Emitter(context);
|
||||
}
|
||||
else
|
||||
{
|
||||
throw new InvalidOperationException($"Invalid instruction \"{opCode.Instruction.Name}\".");
|
||||
}
|
||||
|
||||
if (lblPredicateSkip != null)
|
||||
{
|
||||
context.MarkLabel(lblPredicateSkip);
|
||||
|
||||
// If this is the last op on the block, and there's no "next" block
|
||||
// after this one, then we have to return right now, with the address
|
||||
// of the next instruction to be executed (in the case that the condition
|
||||
// is false, and the branch was not taken, as all basic blocks should end
|
||||
// with some kind of branch).
|
||||
if (isLastOp && block.Next == null)
|
||||
if (isLastOp && block.Branch != null && !block.Branch.Exit && block.Branch.Address <= block.Address)
|
||||
{
|
||||
InstEmitFlowHelper.EmitTailContinue(context, Const(opCode.Address + (ulong)opCode.OpCodeSizeInBytes));
|
||||
EmitSynchronization(context);
|
||||
}
|
||||
|
||||
Operand lblPredicateSkip = null;
|
||||
|
||||
if (opCode is OpCode32 op && op.Cond < Condition.Al)
|
||||
{
|
||||
lblPredicateSkip = Label();
|
||||
|
||||
InstEmitFlowHelper.EmitCondBranch(context, lblPredicateSkip, op.Cond.Invert());
|
||||
}
|
||||
|
||||
if (opCode.Instruction.Emitter != null)
|
||||
{
|
||||
opCode.Instruction.Emitter(context);
|
||||
}
|
||||
else
|
||||
{
|
||||
throw new InvalidOperationException($"Invalid instruction \"{opCode.Instruction.Name}\".");
|
||||
}
|
||||
|
||||
if (lblPredicateSkip != null)
|
||||
{
|
||||
context.MarkLabel(lblPredicateSkip);
|
||||
}
|
||||
}
|
||||
}
|
||||
|
|
Loading…
Reference in a new issue