// Copyright (c) 2014 Daniel Grunwald // // Permission is hereby granted, free of charge, to any person obtaining a copy of this // software and associated documentation files (the "Software"), to deal in the Software // without restriction, including without limitation the rights to use, copy, modify, merge, // publish, distribute, sublicense, and/or sell copies of the Software, and to permit persons // to whom the Software is furnished to do so, subject to the following conditions: // // The above copyright notice and this permission notice shall be included in all copies or // substantial portions of the Software. // // THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, // INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR // PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE // FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR // OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER // DEALINGS IN THE SOFTWARE. using System; using System.Collections.Generic; using System.Collections.Immutable; using System.Diagnostics; using System.Linq; using System.Text; using System.Threading.Tasks; using ICSharpCode.NRefactory.TypeSystem; using ICSharpCode.NRefactory.TypeSystem.Implementation; namespace ICSharpCode.Decompiler.IL { /// /// A block consists of a list of IL instructions. /// /// Phase-1 execution of a block is a no-op: any peek/pop instructions within the block are ignored at this stage. /// /// /// Phase-2 execution will execute the instructions in order, pseudo-code: /// /// /// foreach (var inst in Instructions) { /// var result = inst.Phase1().Phase2(); /// if (result != void) evalStack.Push(result); /// } /// return FinalInstruction.Phase1().Phase2(); /// /// /// Note: if execution reaches the end of the instruction list, /// the FinalInstruction (which is not part of the list) will be executed. /// The block returns returns the result value of the FinalInstruction. /// For blocks returning void, the FinalInstruction will usually be 'nop'. /// /// /// /// Fun fact: wrapping a pop instruction in a block /// (new Block { FinalInstruction = popInst }) turns it /// from a phase-1 pop instruction to a phase-2 pop instruction. /// However, this is just of theoretical interest; we currently don't plan to use inline blocks that /// pop elements that they didn't push themselves. /// partial class Block : ILInstruction { public readonly InstructionCollection Instructions; ILInstruction finalInstruction; /// /// For blocks in a block container, this field holds /// the number of incoming control flow edges to this block. /// /// /// This variable is automatically updated when adding/removing branch instructions from the ILAst, /// or when adding the block as an entry point to a BlockContainer. /// public int IncomingEdgeCount { get; internal set; } public ILInstruction FinalInstruction { get { return finalInstruction; } set { ValidateChild(value); SetChildInstruction(ref finalInstruction, value, Instructions.Count); } } protected internal override void InstructionCollectionUpdateComplete() { base.InstructionCollectionUpdateComplete(); if (finalInstruction.Parent == this) finalInstruction.ChildIndex = Instructions.Count; } public Block() : base(OpCode.Block) { this.Instructions = new InstructionCollection(this, 0); this.FinalInstruction = new Nop(); } public override ILInstruction Clone() { Block clone = new Block(); clone.ILRange = this.ILRange; clone.Instructions.AddRange(this.Instructions.Select(inst => inst.Clone())); clone.FinalInstruction = this.FinalInstruction.Clone(); return clone; } internal override void CheckInvariant() { base.CheckInvariant(); for (int i = 0; i < Instructions.Count - 1; i++) { // only the last instruction may have an unreachable endpoint Debug.Assert(!Instructions[i].HasFlag(InstructionFlags.EndPointUnreachable)); } } public override StackType ResultType { get { return finalInstruction.ResultType; } } /// /// Gets the name of this block. /// public string Label { get { return Disassembler.DisassemblerHelpers.OffsetToString(this.ILRange.Start); } } public override void WriteTo(ITextOutput output) { output.Write("Block "); output.WriteDefinition(Label, this); if (Parent is BlockContainer) output.Write(" (incoming: {0})", IncomingEdgeCount); output.WriteLine(" {"); output.Indent(); foreach (var inst in Instructions) { inst.WriteTo(output); output.WriteLine(); } if (finalInstruction.OpCode != OpCode.Nop) { output.Write("final: "); finalInstruction.WriteTo(output); output.WriteLine(); } output.Unindent(); output.Write("}"); } protected override int GetChildCount() { return Instructions.Count + 1; } protected override ILInstruction GetChild(int index) { if (index == Instructions.Count) return finalInstruction; return Instructions[index]; } protected override void SetChild(int index, ILInstruction value) { if (index == Instructions.Count) FinalInstruction = value; else Instructions[index] = value; } protected override InstructionFlags ComputeFlags() { var flags = InstructionFlags.None; foreach (var inst in Instructions) { flags |= Phase1Boundary(inst.Flags); if (inst.ResultType != StackType.Void) { // implicit push flags |= InstructionFlags.MayWriteEvaluationStack; } } flags |= Phase1Boundary(FinalInstruction.Flags); return flags; } /// /// Adjust flags for a phase-1 boundary: /// The MayPop and MayPeek flags are removed and converted into /// MayReadEvaluationStack and/or MayWriteEvaluationStack flags. /// internal static InstructionFlags Phase1Boundary(InstructionFlags flags) { // Convert phase-1 flags to phase-2 flags if ((flags & InstructionFlags.MayPop) != 0) flags |= InstructionFlags.MayWriteEvaluationStack; if ((flags & (InstructionFlags.MayPeek | InstructionFlags.MayPop)) != 0) flags |= InstructionFlags.MayReadEvaluationStack; // an inline block has no phase-1 effects flags &= ~(InstructionFlags.MayPeek | InstructionFlags.MayPop); return flags; } internal override ILInstruction Inline(InstructionFlags flagsBefore, IInlineContext context) { // an inline block has no phase-1 effects, so we're immediately done with inlining return this; } internal override void TransformStackIntoVariables(TransformStackIntoVariablesState state) { for (int i = 0; i < Instructions.Count; i++) { var inst = Instructions[i].Inline(InstructionFlags.None, state); inst.TransformStackIntoVariables(state); if (inst.ResultType != StackType.Void) { var type = state.TypeSystem.Compilation.FindType(inst.ResultType.ToKnownTypeCode()); ILVariable variable = new ILVariable(VariableKind.StackSlot, type, state.Variables.Count); state.Variables.Push(variable); inst = new Void(new StLoc(inst, variable)); } Instructions[i] = inst; if (inst.HasFlag(InstructionFlags.EndPointUnreachable)) return; } FinalInstruction = FinalInstruction.Inline(InstructionFlags.None, state); FinalInstruction.TransformStackIntoVariables(state); } } }